Publications for Severe Plastic Deformation (SPD) and Related Structures and Properties
from January 2016 to May 2021 in Materials Transactions
edited by Zenji Horita
(Kyushu Institute of Technology, Kumamoto University, and Saga University, Japan) in June 2021
The articles assembled below are those from the research on the process
of severe plastic deformation (SPD) and the related structures and
properties. The SPD process is now a key technology contributing to
materials development. This assembly contains the SPD-related papers
appeared from January 2016 to May 2021 in Materials Transactions. The
authors index and keywords index are added so that they facilitate the
search for the subjects concerned.
(Acknowledgment: Grant-in-Aid for Scientific Research (A) (JP19H00830)).
Articles | Authors Index | Keywords Index
O Overview R Review C Current Trends in Research
2021
- 62-02-0167
-
In Situ Synchrotron X-ray Analysis: Application of High-Pressure Sliding Process to Ti Allotropic Transformation
Zenji Horita, Daisuke Maruno, Yukimasa Ikeda, Takahiro Masuda, Yongpeng
Tang, Makoto Arita, Yuji Higo, Yoshinori Tange and Yasuo Ohishi
- 62-02-0213
-
Temperature-Dependent Deformation Behavior of Al-Mg-Sc Alloys Fabricated by Multi-Directional Forging at Room Temperature
Shunsuke Yamazaki, Syutaro Sawa, Chihiro Watanabe, Ryoichi Monzen, Tomoya Aoba and Hiromi Miura
- 62-04-0479
-
Tensile Deformation Behavior of High-Strength Nanostructured Cu-Si Solid-Solution Alloys Processed by Severe Plastic Deformation
Takahiro Kunimine, Yohei Tomaru, Minami Watanabe and Ryoichi Monzen
- 62-04-0519
-
Mechanical Behavior of Graphite-Reinforced Aluminum Alloy Composite via Friction Stir Processing
Tomonobu Owa, Yasuo Shimizu, Shoji Kaiume and Yoshio Hashimoto
- 62-05-0610
-
Multi-Directional Forging and Warm Extrusion of AZ80Mg Alloys
Hiromi Miura, Keiichiro Minami, Masakazu Kobayashi and Chihiro Watanabe
2020
- 61-02-0234
-
Mechanism Study and Optimized Technology of Multi-Pass Drawing Process for Ultrafine-Grained Inconel 718 Micro-Tubes
Biao Cui, Min Wan, Rui Zhao and Bao Meng
- 61-02-0276
-
Effects of Tool Surface Geometry on Temperature Distribution and
Material Properties of an Aluminum Alloy in Friction Stir Welding
Arunagiri Azhagar and Kunio Hayakawa
- 61-02-0305
-
Change in Mechanical and Electrical Properties of Accumulative Roll
Bonding Processed High-Purity Aluminum, Al-0.02 mass%Fe and Al-0.2
mass%Fe Alloys
Yoji Miyajima, Kojiro Fukuda, Hiroki Adachi, Toshiyuki Fujii and Masaharu Kato
- 61-02-0361
-
Fatigue Property and Cytocompatibility of a Biomedical Co-Cr-Mo Alloy
Subjected to a High Pressure Torsion and a Subsequent Short Time
Annealing
Peng Chen, Huihong Liu, Mitsuo Niinomi, Zenji Horita, Hidetoshi Fujii and Takao Hanawa
- 61-05-0893
-
Microstructure Evolution and Mechanical Properties of AZ31 Alloy with Accumulative Roll Bonding
Liangshun Huang, Xiaobin Pei, Lan Luo, Xixin Rao, Yuhai Jing and Yong Liu
- 61-05-1000
-
Improvement of Forming Limit in Height with Alternating Tool Path in Penetrating Tool Friction Stir Incremental Forming
Wei Jiang, Takuya Miura, Masato Okada, Ryo Matsumoto and Masaaki Otsu
- 61-07-1177
-
O Severe Plastic Deformation under High Pressure: Upsizing Sample Dimensions
Zenji Horita, Yongpeng Tang, Takahiro Masuda and Yoichi Takizawa
- 61-07-1387
-
Achieving Grain Refinement of Upsized Al-3Mg-0.2Sc (mass%) Round Rods Using Multi-Pass High-Pressure Sliding (MP-HPS)
Yongpeng Tang, Yoichi Takizawa, Manabu Yumoto, Yoshiharu Otagiri and Zenji Horita
- 61-08-1613
-
Surface Microstructure Modifications of Low Carbon Steel Welds Produced by Low-Heat-Input Friction Stir Processing
Hajime Yamamoto, Tomohiro Nishiura, Hitomi Nishibata, Mitsuharu Yonemura, Kazuki Fujiwara, Kaori Kawano and Kazuhiro Ito
- 61-11-2241
-
C Severe Plastic Deformation for Nanostructure Controls
Zenji Horita and Kaveh Edalati
- 61-12-2320
-
Dependences of Grain Size and Strain-Rate on Deformation Behavior of
Commercial Purity Titanium Processed by Multi-Directional Forging
S. Yamamoto, Y. Miyajima, C. Watanabe, R. Monzen, T. Tsuru and H. Miura
- 61-12-2378
-
Simulation and Experimental Study on Temperature and Flow Field in Friction Stir Welding of TC4 Titanium Alloy Process
Yiming Qi, Junping Li, Yifu Shen and Wentao Hou
2019
- 60-03-0450
-
Evaluation of Work Hardening and Tensile Strength for Press Worked Products Plastic Strained from Multiaxial Direction
Tetsuro Ishimura and Souichiro Nishino
- 60-04-0490
-
Microstructure Formation Driven by Stored Energy and Mechanical
Property of Pure Titanium Recycled from Chips by Severe Plastic
Deformation
Peng Luo
- 60-05-0751
-
Refinement and Coarsening of Grains Caused by Tensile-Shear Tests in
Ultra-Fine Grained Cu Processed by Severe Plastic Deformation
Ryosuke Matsutani, Yoji Miyajima and Susumu Onaka
- 60-06-0969
-
Effect of Friction Stir Processing on Hardness and Microstructure in La-Based Bulk Metallic Glass Composites
Xiangyun Zhang, Dong Jiao, Shixia Li, Chunyan Li and Zizhou Yuan
- 60-06-1018
-
Effect of Sintered Reinforcement on Characteristics of MWCNT-Reinforced Aluminum Alloy Composite via Friction Stir Processing
Tomonobu Owa, Yasuo Shimizu, Shoji Kaiume and Yoshio Hashimoto
- 60-07-1103
-
PREFACE Severe Plastic Deformation for Nanomaterials with Advanced Functionality
Kaveh Edalati and Zenji Horita
- 60-07-1104
-
Grain Refinement of AZ31 and AZ61 Mg Alloys through Room Temperature Processing by UP-Scaled High-Pressure Torsion
Takahiro Masuda and Zenji Horita
- 60-07-1111
-
Comparisons of Microstructures and Mechanical Properties of
Heterogeneous Nano-Structure Induced by Heavy Cold Rolling and
Ultrafine-Grained Structure by Multi-Directional Forging of Cu-Al Alloy
Hiromi Miura, Yu Iwama and Masakazu Kobayashi
- 60-07-1116
-
O Severe Plastic Deformation to Achieve High Strength and High Ductility in Fe-Ni Based Alloys with Lattice Softening
Shigeru Kuramoto and Tadahiko Furuta
- 60-07-1123
-
O The Contribution of Severe Plastic Deformation to Research on Superplasticity
Megumi Kawasaki and Terence G. Langdon
- 60-07-1131
-
O Bulk-State Reactions and Improving the Mechanical Properties of Metals through High-Pressure Torsion
Jae-Kyung Han, Jae-il Jang, Terence G. Langdon and Megumi Kawasaki
- 60-07-1139
-
O Finite Element Modelling of High-Pressure Torsion: An Overview
Pedro Henrique R. Pereira and Roberto B. Figueiredo
- 60-07-1151
-
R Strain Induced Segregations in Severely Deformed Materials
Xavier Sauvage, Amandine Duchaussoy and Ghenwa Zaher
- 60-07-1159
-
O Room Temperature Superplaticity in Fine/Ultrafine Grained Materials Subjected to Severe Plastic Deformation
M. Demirtas and G. Purcek
- 60-07-1168
-
O Severe Plastic Deformation of Semiconductor Materials Using High-Pressure Torsion
Yoshifumi Ikoma
- 60-07-1177
-
R High Pressure Tube Twisting for Producing Ultra Fine Grained Materials: A Review
Laszlo S. Toth, Cai Chen, Arnaud Pougis, Mandana Arzaghi, Jean-Jacques Fundenberger, Roxane Massion and Satyam Suwas
- 60-07-1192
-
O Severe Plastic Deformation of Polymers
V. Beloshenko, Iu. Vozniak, Y. Beygelzimer, Y. Estrin and R. Kulagin
- 60-07-1203
-
R Development of Metal Oxide High-Pressure Phases for Photocatalytic Properties by Severe Plastic Deformation
Hadi Razavi-Khosroshahi and Masayoshi Fuji
- 60-07-1209
-
O Behavior of Nb and Cu-Nb Composites under Severe Plastic Deformation and Annealing
V.V. Popov and E.N. Popova
- 60-07-1221
-
O Metallurgical Alchemy by Ultra-Severe Plastic Deformation via High-Pressure Torsion Process
Kaveh Edalati
- 60-07-1230
-
O Lattice Defects and Their Influence on the Mechanical Properties of Bulk Materials Processed by Severe Plastic Deformation
Jenő Gubicza
- 60-07-1243
-
O Corrosion Behavior of Severely Deformed Pure and Single-Phase Materials
Hiroyuki Miyamoto, Motohiro Yuasa, Muhammad Rifai and Hiroshi Fujiwara
- 60-07-1256
-
O High-Pressure
Torsion Deformation Induced Phase Transformations and Formations: New
Material Combinations and Advanced Properties
Andrea Bachmaier and Reinhard Pippan
- 60-07-1270
-
O Saturation
of Grain Refinement during Severe Plastic Deformation of Single Phase
Materials: Reconsiderations, Current Status and Open Questions
O. Renk and R. Pippan
- 60-07-1283
-
O Severe Plastic Deformation of Amorphous Alloys
Ádám Révész and Zsolt Kovács
- 60-07-1294
-
R High-Pressure Phase Transformations under Severe Plastic Deformation by Torsion in Rotational Anvils
Valery I. Levitas
- 60-07-1302
-
O Grain Boundaries and Diffusion Phenomena in Severely Deformed Materials
Gerhard Wilde and Sergiy Divinski
- 60-07-1316
-
O An Overview on the Continuous Severe Plastic Deformation Methods
Ghader Faraji and Hesam Torabzadeh
- 60-07-1331
-
O Deformation Heterogeneities in Equal Channel Angular Pressing
Werner Skrotzki
- 60-07-1344
-
O Recent
Developments in the Application of Surface Mechanical Attrition
Treatments for Improved Gradient Structures: Processing Parameters and
Surface Reactivity
Thierry Grosdidier and Marc Novelli
- 60-07-1356
-
O Developing Nanostructured Metals for Manufacturing of Medical Implants with Improved Design and Biofunctionality
Ruslan Z. Valiev, Evgeny V. Parfenov and Lyudmila V. Parfenova
- 60-07-1367
-
O Critical Temperature in Bulk Ultrafine-Grained Superconductors of Nb, V, and Ta Processed by High-Pressure Torsion
Terukazu Nishizaki, Kaveh Edalati, Seungwon Lee, Zenji Horita, Tadahiro
Akune, Tsutomu Nojima, Satoshi Iguchi and Takahiko Sasaki
- 60-08-1457
-
R Texture Evolution in Severe Plastic Deformation Processes
Satyam Suwas and Soumita Mondal
- 60-08-1472
-
O Hydrostatic Compression Effects on Fifth-Group Element Superconductors V, Nb, and Ta Subjected to High-Pressure Torsion
Masaki Mito, Shun Shigeoka, Hirotaka Kondo, Nozomi Noumi, Yuichiro
Kitamura, Kunihiko Irie, Kazuma Nakamura, Seishi Takagi, Hiroyuki
Deguchi, Takayuki Tajiri, Mamoru Ishizuka, Terukazu Nishizaki, Kaveh
Edalati and Zenji Horita
- 60-08-1484
-
A Comparative Study of Hardness in Nanostructured Cu-Zn, Cu-Si and
Cu-Ni Solid-Solution Alloys Processed by Severe Plastic Deformation
Takahiro Kunimine and Minami Watanabe
- 60-08-1489
-
R Phase Transformations Induced by Severe Plastic Deformation
Andrey Mazilkin, Boris Straumal, Askar Kilmametov, Petr Straumal and Brigitte Baretzky
- 60-08-1500
-
O The Effect of Severe Plastic Deformations on Phase Transitions and Structure of Solids
Vladimir D. Blank, Mikhail Yu. Popov and Boris A. Kulnitskiy
- 60-08-1506
-
O The Characteristics of Creep in Metallic Materials Processed by Severe Plastic Deformation
Petr Kral, Jiri Dvorak, Vaclav Sklenicka and Terence G. Langdon
- 60-08-1518
-
O Formation
Mechanism of Ultrafine Grained Microstructures: Various Possibilities
for Fabricating Bulk Nanostructured Metals and Alloys
Nobuhiro Tsuji, Reza Gholizadeh, Rintaro Ueji, Naoya Kamikawa, Lijia Zhao, Yanzhong Tian, Yu Bai and Akinobu Shibata
- 60-08-1533
-
O The Development of Vacancies during Severe Plastic Deformation
J. Čížek, M. Janeček, T. Vlasák, B. Smola, O. Melikhova, R.K. Islamgaliev and S.V. Dobatkin
- 60-08-1543
-
O Progress in Mechanical Properties of Gradient Structured Metallic Materials Induced by Surface Mechanical Attrition Treatment
Xu Yang, Hongjiang Pan, Jinxu Zhang, Hongliang Gao, Baipo Shu, Yulan Gong and Xinkun Zhu
- 60-08-1553
-
O Historical Studies by Polish Scientist on Ultrafine-Grained Materials by Severe Plastic Deformation
Krzysztof Bryła and Kaveh Edalati
- 60-08-1561
-
R Hydrogen Storage in Mg and Mg-Based Alloys and Composites Processed by Severe Plastic Deformation
D.R. Leiva, A.M. Jorge Jr., T.T. Ishikawa and W.J. Botta
- 60-08-1571
-
R Effect of Cold Rolling on Metal Hydrides
Jacques Huot and Manuel Tousignant
- 60-08-1629
-
Improving Corrosion Resistance Properties of Nickel-Aluminum Bronze (NAB) Alloys via Shot Peening Treatment
Yuting Lv, Bingjie Zhao, Hongbin Zhang, Chunjian Su, Bin Nie, Rui Wang, Lianmin Cao and Fuyan Lyu
- 60-08-1680
-
Development of High-Strength Bolt Material of Al-Mg-Si Alloy by ECAP and Various Aging Treatments
Tomoyasu Obata, Yongpeng Tang, Hideaki Iwaoka, Shoichi Hirosawa, Keiki Mouri and Masahiko Shimoda
- 60-09-1723
-
O Radiation Tolerance of Ultrafine-Grained Materials Fabricated by Severe Plastic Deformation
Nariman A. Enikeev, Valentin K. Shamardin and Bertrand Radiguet
- 60-09-1785
-
Production of Superplastic Ti-6Al-7Nb Alloy Using High-Pressure Sliding Process
Kyohei Watanabe, Maki Ashida, Takahiro Masuda, Petr Kral, Yoichi
Takizawa, Manabu Yumoto, Yoshiharu Otagiri, Vaclav Sklenicka, Takao
Hanawa and Zenji Horita
- 60-09-2003
-
Microscopic Observation of Precipitation Behavior at Friction Stirring Zone of Super Duplex Stainless Steel
Itto Sugimoto, Seung Hwan C. Park, Satoshi Hirano, Hikaru Saito and Satoshi Hata
- 60-10-2071
-
O The Effect of Severe Plastic Deformation on Thermoelectric Performance of Skutterudites, Half-Heuslers and Bi-Tellurides
Gerda Rogl, Michael J. Zehetbauer and Peter F. Rogl
- 60-10-2160
-
Anisotropy of Tensile and Fracture Behavior of Pure Titanium after Hydrostatic Extrusion
E.C. Moreno-Valle, W. Pachla, M. Kulczyk, I. Sabirov and A. Hohenwarter
- 60-10-2229
-
Simulation of Microstructure Evolution during Static Recrystallization of Ultrafine-Grained Purity Copper
Xiang Ji and Ren Li
- 60-11-2319
-
Microstructural Evolution and Mechanical Properties of 6061 Aluminum
Alloy Processed with Equal Channel Angular Pressing (ECAP) and
Multi-Axial Compression (MAC)
Zhi-chao Xu, Xue-feng Guo, Wen-peng Yang, Hong-bao Cui and Ying Wang
- 60-11-2361
-
Effect of Multi-Pass Equal Channel Angular Pressing on the
Microstructure and Mechanical Properties of a Directional Solidification
Mg98.5Zn0.5Y1 Alloy
Zhi-chao Xu, Chang Zhu, Xue-feng Guo, Wen-peng Yang, Hong-bao Cui and Ying Wang
- 60-11-2416
-
Development of Penetrating Tool Friction Stir Incremental Forming
Wei Jiang, Takuya Miura, Masaaki Otsu, Masato Okada, Ryo Matsumoto, Hidenori Yoshimura and Takayuki Muranaka
- 60-11-2451
-
Preparation of a High-Performance Nanocrystalline Lithium/Graphene Composite Battery via High-Pressure Torsion Method
Chenhao Qian, Ziyang He, Chen Liang and Weixi Ji
- 60-12-2506
-
Friction Stir Welding of High Tensile Strength Steel Plate Using SiAlON Tool
Ryoichi Furushima, Koji Shimojima, Hiroyuki Hosokawa and Ryo Suzuki
- 60-12-2558
-
Investigation on Surface Layers Characteristics of Pre-Stressed Shot Peening Inconel 625
Lihong Wu and Chuanhai Jiang
2018
- 59-01-0047
-
Glass-Transition-Like Behavior of Grain Boundaries in Nanocrystalline Gold
Terigele Xi, Takahiro Sato, Ryoma Suzuki and Hisanori Tanimoto
- 59-01-0053
-
Development of High Ductility and Adequate Strength in Pure Titanium
Recycled from Chips by Multi-Pass Equal Channel Angular Pressing
Peng Luo
- 59-03-0373
-
Microstructural Evolution and Enhanced Mechanical Properties by
Multi-Directional Forging and Aging of 6000 Series Aluminum Alloy
Tomoya Aoba, Masakazu Kobayashi and Hiromi Miura
- 59-03-0393
-
Change in Electrical Resistivity of Pure Cu Processed by Accumulative Roll Bonding
Yoji Miyajima, Takahiko Shinohara, Hiroki Adachi, Toshiyuki Fujii, Susumu Onaka and Masaharu Kato
- 59-03-0475
-
Fabrication of Recycled Carbon Fiber Reinforced Magnesium Alloy
Composite by Friction Stir Processing Using 3-Flat Pin Tool and Its
Fatigue Properties
Angga Afrinaldi, Toshifumi Kakiuchi, Shohei Nakagawa, Hiroshi Moritomi,
Kazuhiro Kumabe, Asami Nakai, Akio Ohtani, Yoshiki Mizutani and
Yoshihiko Uematsu
- 59-04-0669
-
Microstructure and Mechanical Properties of Mg-Gd-Y-Zn-Zr Alloy Prepared by Repetitive Upsetting and Extrusion
Zhimin Zhang, Yue Du, Guanshi Zhang, Zhaoming Yan, Jianmin Yu and Mu Meng
- 59-05-0741
-
New Mg-V-Cr BCC Alloys Synthesized by High-Pressure Torsion and Ball Milling
Keisuke Fujiwara, Ryoko Uehiro, Kaveh Edalati, Hai-Wen Li, Ricardo Floriano, Etsuo Akiba and Zenji Horita
- 59-05-0760
-
Strength and Microstructure of Copper Tube in Cross-Roll Straightening
Hirokazu Tamagawa
- 59-06-1009
-
Combination of High-Pressure Torsion with Incremental Feeding for Upsizing Sample
Etsuko Shigeno, Takuya Komatsu, Kosei Sumikawa, Takahiro Masuda, Yoichi
Takizawa, Manabu Yumoto, Yoshiharu Otagiri and Zenji Horita
- 59-07-1142
-
Effect of Rotary Forging on Microstructure and Mechanical Properties of Mg-3Al-1Zn Magnesium Alloy
Shan Jiang, Chengrong Wu and Taibin Wu
- 59-07-1147
-
Texture and Mechanical Properties of Al-Mg Alloy with Unimodal and
Bimodal Grain-Structures Formed by Accumulative Roll Bonding and
Annealing
Keizo Kashihara and Nobuhiro Tsuji
- 59-07-1161
-
Analysis of Microstructure and Its Effect on Yield Strength of Pure
Alpha-Titanium Consolidated by Equal Channel Angular Pressing
Peng Luo
- 59-08-1296
-
Fatigue Behavior of Multi-Directionally Forged Commercial Purity Grade 2 Ti Plate in Laboratory Air and Ringer’s Solution
Ilhamdi, Toshifumi Kakiuchi, Hiromi Miura, Tomohiko Fukihara and Yoshihiko Uematsu
- 59-08-1341
-
Low-Temperature and High-Strain-Rate Superplasticity of Ultrafine-Grained A7075 Processed by High-Pressure Torsion
Seungwon Lee, Katsumi Watanabe, Kenji Matsuda and Zenji Horita
- 59-09-1513
-
Enhanced Mechanical Properties of Al-36Si Composite via Friction Stir Processing and Subsequent Heat Treatment
Chen Wang, Beibei Wang, Quanzhao Wang, Liqing Chen, Peng Xue, Bolv Xiao and Zongyi Ma
- 59-11-1798
-
Fabrication and Strength Behavior of MWCNT-Reinforced 5083 Aluminum Alloy Composite via Friction Stir Processing
Tomonobu Owa and Yasuo Shimizu
- 58-01-0006
-
Effects of Friction Stir Process and Stabilization Heat Treatment on
Tensile Characteristics and Punch-Shear Properties of AZ61 Alloy
Hsiang-Ching Chen, Fei-Yi Hung, Truan-Sheng Lui and Li-Hui Chen
- 58-02-0164
-
Effect of Shot Peening on Residual Stress and Microstructure in the Deformed Layer of Inconel 625
L.H. Wu and C.H. Jiang
- 58-02-0259
-
Microstructure and Mechanical Properties of Multilayered Cu/Ti Composites Fabricated by Accumulative Roll Bonding
S. Jiang, N. Jia, X.H. Zhou, H. Zhang, T. He and X. Zhao
- 58-02-0291
-
Accelerated Formation of an Ultrafine-Grained Microstructure in
Closed-Cell Aluminum Foam after Extrusion and Differential Speed Rolling
W.Y. Kim, W.J. Kim and H. Utsunomiya
- 58-04-0543
-
Stress Corrosion Behavior of Mg-2 mass% Sn Alloy by Equal-Channel Angular Extrusion
Pei-Shan Chang, Chuen-Guang Chao and Tzeng-Feng Liu
- 58-08-1127
-
Ultimate Rolling Texture in Pure Aluminum Highly Deformed by
Accumulative Roll Bonding: Taylor Orientation Formed beyond Grain
Subdivision
Yoji Miyajima, Daisuke Kashioka and Nobuhiro Tsuji
- 58-10-1346
-
Effects of Natural Aging on Age-Hardening Behavior of Cu-Be-Co and Cu-Ti Alloys Severely Deformed by High-Pressure Torsion
M. Hibino, C. Watanabe, Y. Tsuji, R. Monzen, Y. Todaka and W. Sato
- 58-10-1487
-
Strength and Ductility at High-speed Tensile Deformation of Low-carbon Steel with Ultrafine Grains
Rintaro Ueji, Hai Qiu and Tadanobu Inoue
- 58-10-1505
-
Brittle Fracture Stress of Ultrafine-Grained Low-Carbon Steel
Tadanobu Inoue
- 58-12-1647
-
Extra Strengthening and Superplasticity of Ultrafine-Grained A2024 Alloy Produced by High-Pressure Sliding
Takahiro Masuda, Yoichi Takizawa, Manabu Yumoto, Yoshiharu Otagiri and Zenji Horita
2017
- 57-04-0533
-
Real Hydrostatic Pressure in High-Pressure Torsion Measured by Bismuth Phase Transformations and FEM Simulations
Kaveh Edalati, Dong Jun Lee, Takashi Nagaoka, Makoto Arita, Hyoung Seop Kim, Zenji Horita and Reinhard Pippan
- 57-05-0559
-
O Corrosion of Ultrafine Grained Materials by Severe Plastic Deformation, an Overview
Hiroyuki Miyamoto
- 57-06-0927
-
Grain Refinement and Ductility Improvement by Hot Extrusion Using a Heteromorphic Die with Small Holes
Kaho Tomita, Toko Tokunaga, Munekazu Ohno and Kiyotaka Matsuura
- 57-07-1109
-
Grain Refinement Mechanism and Evolution of Dislocation Structure of Co-Cr-Mo Alloy Subjected to High-Pressure Torsion
Murat Isik, Mitsuo Niinomi, Huihong Liu, Ken Cho, Masaaki Nakai, Zenji
Horita, Shigeo Sato, Takayuki Narushima, Hakan Yilmazer and Makoto
Nagasako
- 57-09-1385
-
PREFACE Special Issue on Advanced Materials Science in Bulk Nanostructured Metals III
Naoya Kamikawa, Tomohiro Tsuru and Nobuhiro Tsuji
- 57-09-1386
-
Texture Changes during Simple Shear Extrusion (SSE) Processing of Pure Copper
E. Bagherpour, F. Qods, R. Ebrahimi and H. Miyamoto
- 57-09-1392
-
Grain Subdivision Mechanism Related to Partial Disclinations in Severe Plastic Deformation: A Molecular Dynamics Study
Tomotsugu Shimokawa, Tomoaki Yamashita, Tomoaki Niiyama and Nobuhiro Tsuji
- 57-09-1399
-
Numerical Estimation of Frictional Effects in Equal Channel Angular Extrusion
Vinicius Aguiar de Souza, Ikumu Watanabe and Akira Yanagida
- 57-09-1404
-
Multiscale Characterization of a Polycrystalline Aggregate Subjected
to Severe Plastic Deformation with the Finite Element Method
Ikumu Watanabe and Daigo Setoyama
- 57-09-1411
-
Effect of Roll-Bonding and Subsequent Annealing on Microstructure Evolution of Accumulative Roll Bonded Pure Copper
Yoji Miyajima, Midori Uchiyama, Hiroki Adachi, Toshiyuki Fujii, Susumu Onaka and Masaharu Kato
- 57-09-1418
-
Effects of Strain Rate during Multi-Directional Forging on Grain Refinement and Mechanical Properties of AZ80Mg Alloy
H. Miura, M. Kobayashi and T. Benjanarasuth
- 57-09-1424
-
Three-Dimensionally Gradient and Periodic Harmonic Structure for High Performance Advanced Structural Materials
Sanjay Kumar Vajpai, Han Yu, Mie Ota, Ikumu Watanabe, Guy Dirras and Kei Ameyama
- 57-09-1433
-
Application of Al-Si Semi-Solid Reaction for Fabricating Harmonic Structured Al Based Alloy
Nur Zalikha Khalil, Sanjay Kumar Vajpai, Mie Ota and Kei Ameyama
- 57-09-1440
-
Synthesis of Ternary Ti-25Nb-11Sn Alloy by Powder Metallurgy Route Using Titanium Hydride Powder
Bhupendra Sharma, Sanjay Kumar Vajpai and Kei Ameyama
- 57-09-1447
-
Elastic and Plastic Deformation Behavior Studied by In-Situ Synchrotron X-ray Diffraction in Nanocrystalline Nickel
Hiroki Adachi, Yui Karamatsu, Shota Nakayama, Tomotaka Miyazawa, Masugu Sato and Tohru Yamasaki
- 57-09-1454
-
Effect of Grain Size on Fatigue Behavior in AZ61 Mg Alloys Fabricated by MDFing
Yoshihiko Uematsu, Toshifumi Kakiuchi, Hiromi Miura and Taishi Nozaki
- 57-09-1462
-
Effect of Accumulative Roll Bonding (ARB) and Subsequent Aging on Microstructure and Mechanical Properties of 2024 Al Alloy
Ruixiao Zheng, Tilak Bhattacharjee, Akinobu Shibata, Nobuhiro Tsuji and Chaoli Ma
- 57-09-1471
-
Effects of Natural Aging on Age-Hardening Behavior of Cu-Be-Co and Cu-Ti Alloys Processed by High-Pressure Torsion
Chihiro Watanabe, Masakazu Hibino, Ryoichi Monzen, Seiichiro Ii and Koichi Tsuchiya
- 57-09-1476
-
Atomic Scale Simulations of Relationship between Macroscopic
Mechanical Properties and Microscopic Defect Evolution in
Ultrafine-grained Metals
Tomohito Tsuru, Yoshiteru Aoyagi and Tomotsugu Shimokawa
- 57-10-1720
-
Microstructure and Mechanical Properties of ARB Processed Aluminium with Different Purities
Naoya Kamikawa and Nobuhiro Tsuji
- 57-10-1735
-
Improved Combination of Strength and Ductility in Zirconium-Added Al-Zn-Mg-Cu Alloy Processed with High-Pressure Torsion
Hiroyuki Kawabata, Ichiro Aoi, Keiichiro Oh-ishi, Takanori Nakagaki, Yoshihiro Shimizu and Shigeru Kuramoto
- 57-11-1887
-
Optimization of Microstructure and Mechanical Properties of Co-Cr-Mo
Alloys by High-Pressure Torsion and Subsequent Short Annealing
Murat Isik, Mitsuo Niinomi, Huihong Liu, Ken Cho, Masaaki Nakai, Zenji Horita, Takayuki Narushima and Kyosuke Ueda
- 57-12-2020
-
Cytocompatibility of Ti-6Al-7Nb through High-Pressure Torsion Processing
Peng Chen, Maki Ashida, Hisashi Doi, Yusuke Tsutsumi, Zenji Horita and Takao Hanawa
Authors Index
- A
-
Hiroki Adachi
57-09-1411, 57-09-1447, 59-03-0393, 61-02-0305
-
Angga Afrinaldi
59-03-0475
-
Etsuo Akiba
59-05-0741
-
Tadahiro Akune
60-07-1367
-
Kei Ameyama
57-09-1424, 57-09-1433, 57-09-1440
-
Tomoya Aoba
59-03-0373, 62-02-0213
-
Ichiro Aoi
57-10-1735
-
Yoshiteru Aoyagi
57-09-1476
-
Makoto Arita
57-04-0533, 62-02-0167
-
Mandana Arzaghi
60-07-1177
-
Maki Ashida
57-12-2020, 60-09-1785
-
Arunagiri Azhagar
61-02-0276
- B
-
Andrea Bachmaier
60-07-1256
-
E. Bagherpour
57-09-1386
-
Yu Bai
60-08-1518
-
Brigitte Baretzky
60-08-1489
-
V. Beloshenko
60-07-1192
-
T. Benjanarasuth
57-09-1418
-
Y. Beygelzimer
60-07-1192
-
Tilak Bhattacharjee
57-09-1462
-
Vladimir D. Blank
60-08-1500
-
W.J. Botta
60-08-1561
-
Krzysztof Bryła
60-08-1553
- C
-
Lianmin Cao
60-08-1629
-
Pei-Shan Chang
58-04-0543
-
Chuen-Guang Chao
58-04-0543
-
Cai Chen
60-07-1177
-
Hsiang-Ching Chen
58-01-0006
-
Li-Hui Chen
58-01-0006
-
Liqing Chen
59-09-1513
-
Peng Chen
57-12-2020, 61-02-0361
-
Ken Cho
57-07-1109, 57-11-1887
-
J. Čížek
60-08-1533
-
Biao Cui
61-02-0234
-
Hong-bao Cui
60-11-2319, 60-11-2361
- D
-
Hiroyuki Deguchi
60-08-1472
-
M. Demirtas
60-07-1159
-
Guy Dirras
57-09-1424
-
Sergiy Divinski
60-07-1302
-
S.V. Dobatkin
60-08-1533
-
Hisashi Doi
57-12-2020
-
Yue Du
59-04-0669
-
Amandine Duchaussoy
60-07-1151
-
Jiri Dvorak
60-08-1506
- E
-
R. Ebrahimi
57-09-1386
-
Kaveh Edalati
57-04-0533, 59-05-0741, 60-07-1103, 60-07-1221, 60-07-1367, 60-08-1472, 60-08-1553, 61-11-2241
-
Nariman A. Enikeev
60-09-1723
-
Y. Estrin
60-07-1192
- F
-
Ghader Faraji
60-07-1316
-
Roberto B. Figueiredo
60-07-1139
-
Ricardo Floriano
59-05-0741
-
Masayoshi Fuji
60-07-1203
-
Hidetoshi Fujii
61-02-0361
-
Toshiyuki Fujii
57-09-1411, 59-03-0393, 61-02-0305
-
Hiroshi Fujiwara
60-07-1243
-
Kazuki Fujiwara
61-08-1613
-
Keisuke Fujiwara
59-05-0741
-
Tomohiko Fukihara
59-08-1296
-
Kojiro Fukuda
61-02-0305
-
Jean-Jacques Fundenberger
60-07-1177
-
Ryoichi Furushima
60-12-2506
-
Tadahiko Furuta
60-07-1116
- G
-
Hongliang Gao
60-08-1543
-
Reza Gholizadeh
60-08-1518
-
Yulan Gong
60-08-1543
-
Thierry Grosdidier
60-07-1344
-
Jenő Gubicza
60-07-1230
-
Xue-feng Guo
60-11-2319, 60-11-2361
- H
-
Jae-Kyung Han
60-07-1131
-
Takao Hanawa
57-12-2020, 60-09-1785, 61-02-0361
-
Yoshio Hashimoto
60-06-1018, 62-04-0519
-
Satoshi Hata
60-09-2003
-
Kunio Hayakawa
61-02-0276
-
T. He
58-02-0259
-
Ziyang He
60-11-2451
-
Masakazu Hibino
57-09-1471, 58-10-1346
-
Yuji Higo
62-02-0167
-
Satoshi Hirano
60-09-2003
-
Shoichi Hirosawa
60-08-1680
-
A. Hohenwarter
60-10-2160
-
Zenji Horita
57-04-0533, 57-07-1109, 57-11-1887, 57-12-2020, 58-12-1647, 59-05-0741, 59-06-1009, 59-08-1341, 60-07-1103, 60-07-1104, 60-07-1367, 60-08-1472, 60-09-1785, 61-02-0361, 61-07-1177, 61-07-1387, 61-11-2241, 62-02-0167
-
Hiroyuki Hosokawa
60-12-2506
-
Wentao Hou
61-12-2378
-
Liangshun Huang
61-05-0893
-
Fei-Yi Hung
58-01-0006
-
Jacques Huot
60-08-1571
- I
-
Satoshi Iguchi
60-07-1367
-
Seiichiro Ii
57-09-1471
-
Yukimasa Ikeda
62-02-0167
-
Yoshifumi Ikoma
60-07-1168
-
Ilhamdi
59-08-1296
-
Tadanobu Inoue
58-10-1487, 58-10-1505
-
Kunihiko Irie
60-08-1472
-
T.T. Ishikawa
60-08-1561
-
Tetsuro Ishimura
60-03-0450
-
Mamoru Ishizuka
60-08-1472
-
Murat Isik
57-07-1109, 57-11-1887
-
R.K. Islamgaliev
60-08-1533
-
Kazuhiro Ito
61-08-1613
-
Yu Iwama
60-07-1111
-
Hideaki Iwaoka
60-08-1680
- J
-
M. Janeček
60-08-1533
-
Jae-il Jang
60-07-1131
-
Weixi Ji
60-11-2451
-
Xiang Ji
60-10-2229
-
N. Jia
58-02-0259
-
C.H. Jiang
58-02-0164
-
Chuanhai Jiang
60-12-2558
-
S. Jiang
58-02-0259
-
Shan Jiang
59-07-1142
-
Wei Jiang
60-11-2416, 61-05-1000
-
Dong Jiao
60-06-0969
-
Yuhai Jing
61-05-0893
-
A.M. Jorge Jr.
60-08-1561
-
Shoji Kaiume
60-06-1018, 62-04-0519
-
Toshifumi Kakiuchi
57-09-1454, 59-03-0475, 59-08-1296
-
Naoya Kamikawa
57-09-1385, 57-10-1720, 60-08-1518
-
Yui Karamatsu
57-09-1447
-
Keizo Kashihara
59-07-1147
-
Daisuke Kashioka
58-08-1127
-
Masaharu Kato
57-09-1411, 59-03-0393, 61-02-0305
-
Hiroyuki Kawabata
57-10-1735
-
Kaori Kawano
61-08-1613
-
Megumi Kawasaki
60-07-1123, 60-07-1131
-
Nur Zalikha Khalil
57-09-1433
-
Askar Kilmametov
60-08-1489
-
Hyoung Seop Kim
57-04-0533
-
W.J. Kim
58-02-0291
-
W.Y. Kim
58-02-0291
-
Yuichiro Kitamura
60-08-1472
-
M. Kobayashi
57-09-1418
-
Masakazu Kobayashi
59-03-0373, 60-07-1111, 62-05-0610
-
Takuya Komatsu
59-06-1009
-
Hirotaka Kondo
60-08-1472
-
Zsolt Kovács
60-07-1283
-
Petr Kral
60-08-1506, 60-09-1785
-
R. Kulagin
60-07-1192
-
M. Kulczyk
60-10-2160
-
Boris A. Kulnitskiy
60-08-1500
-
Kazuhiro Kumabe
59-03-0475
-
Takahiro Kunimine
60-08-1484, 62-04-0479
-
Shigeru Kuramoto
57-10-1735, 60-07-1116
-
Terence G. Langdon
60-07-1123, 60-07-1131, 60-08-1506
-
Dong Jun Lee
57-04-0533
-
Seungwon Lee
59-08-1341, 60-07-1367
-
D.R. Leiva
60-08-1561
-
Valery I. Levitas
60-07-1294
-
Chunyan Li
60-06-0969
-
Hai-Wen Li
59-05-0741
-
Junping Li
61-12-2378
-
Ren Li
60-10-2229
-
Shixia Li
60-06-0969
-
Chen Liang
60-11-2451
-
Huihong Liu
57-07-1109, 57-11-1887, 61-02-0361
-
Tzeng-Feng Liu
58-04-0543
-
Yong Liu
61-05-0893
-
Truan-Sheng Lui
58-01-0006
-
Lan Luo
61-05-0893
-
Peng Luo
59-01-0053, 59-07-1161, 60-04-0490
-
Yuting Lv
60-08-1629
-
Fuyan Lyu
60-08-1629
- M
-
Chaoli Ma
57-09-1462
-
Zongyi Ma
59-09-1513
-
Daisuke Maruno
62-02-0167
-
Roxane Massion
60-07-1177
-
Takahiro Masuda
58-12-1647, 59-06-1009, 60-07-1104, 60-09-1785, 61-07-1177, 62-02-0167
-
Kenji Matsuda
59-08-1341
-
Ryo Matsumoto
60-11-2416, 61-05-1000
-
Ryosuke Matsutani
60-05-0751
-
Kiyotaka Matsuura
57-06-0927
-
Andrey Mazilkin
60-08-1489
-
O. Melikhova
60-08-1533
-
Bao Meng
61-02-0234
-
Mu Meng
59-04-0669
-
Keiichiro Minami
62-05-0610
-
Masaki Mito
60-08-1472
-
Hiromi Miura
57-09-1418, 57-09-1454, 59-03-0373, 59-08-1296, 60-07-1111, 61-12-2320, 62-02-0213, 62-05-0610
-
Takuya Miura
60-11-2416, 61-05-1000
-
Yoji Miyajima
57-09-1411, 58-08-1127, 59-03-0393, 60-05-0751, 61-02-0305, 61-12-2320
-
Hiroyuki Miyamoto
57-05-0559, 57-09-1386, 60-07-1243
-
Tomotaka Miyazawa
57-09-1447
-
Yoshiki Mizutani
59-03-0475
-
Soumita Mondal
60-08-1457
-
Ryoichi Monzen
57-09-1471, 58-10-1346, 61-12-2320, 62-02-0213, 62-04-0479
-
E.C. Moreno-Valle
60-10-2160
-
Hiroshi Moritomi
59-03-0475
-
Keiki Mouri
60-08-1680
-
Takayuki Muranaka
60-11-2416
- N
-
Takashi Nagaoka
57-04-0533
-
Makoto Nagasako
57-07-1109
-
Takanori Nakagaki
57-10-1735
-
Shohei Nakagawa
59-03-0475
-
Asami Nakai
59-03-0475
-
Masaaki Nakai
57-07-1109, 57-11-1887
-
Kazuma Nakamura
60-08-1472
-
Shota Nakayama
57-09-1447
-
Takayuki Narushima
57-07-1109, 57-11-1887
-
Bin Nie
60-08-1629
-
Mitsuo Niinomi
57-07-1109, 57-11-1887, 61-02-0361
-
Tomoaki Niiyama
57-09-1392
-
Hitomi Nishibata
61-08-1613
-
Souichiro Nishino
60-03-0450
-
Tomohiro Nishiura
61-08-1613
-
Terukazu Nishizaki
60-07-1367, 60-08-1472
-
Tsutomu Nojima
60-07-1367
-
Nozomi Noumi
60-08-1472
-
Marc Novelli
60-07-1344
-
Taishi Nozaki
57-09-1454
- O
-
Tomoyasu Obata
60-08-1680
-
Yasuo Ohishi
62-02-0167
-
Keiichiro Oh-ishi
57-10-1735
-
Munekazu Ohno
57-06-0927
-
Akio Ohtani
59-03-0475
-
Masato Okada
60-11-2416, 61-05-1000
-
Susumu Onaka
57-09-1411, 59-03-0393, 60-05-0751
-
Mie Ota
57-09-1424, 57-09-1433
-
Yoshiharu Otagiri
58-12-1647, 59-06-1009, 60-09-1785, 61-07-1387
-
Masaaki Otsu
60-11-2416, 61-05-1000
-
Tomonobu Owa
59-11-1798, 60-06-1018, 62-04-0519
- P
-
W. Pachla
60-10-2160
-
Hongjiang Pan
60-08-1543
-
Evgeny V. Parfenov
60-07-1356
-
Lyudmila V. Parfenova
60-07-1356
-
Seung Hwan C. Park
60-09-2003
-
Xiaobin Pei
61-05-0893
-
Pedro Henrique R. Pereira
60-07-1139
-
Reinhard Pippan
57-04-0533, 60-07-1270, 60-07-1256
-
Mikhail Yu. Popov
60-08-1500
-
V.V. Popov
60-07-1209
-
E.N. Popova
60-07-1209
-
Arnaud Pougis
60-07-1177
-
G. Purcek
60-07-1159
- Q
-
Yiming Qi
61-12-2378
-
Chenhao Qian
60-11-2451
-
Hai Qiu
58-10-1487
-
F. Qods
57-09-1386
- R
-
Bertrand Radiguet
60-09-1723
-
Xixin Rao
61-05-0893
-
Hadi Razavi-Khosroshahi
60-07-1203
-
O. Renk
60-07-1270
-
Ádám Révész
60-07-1283
-
Muhammad Rifai
60-07-1243
-
Gerda Rogl
60-10-2071
-
Peter F. Rogl
60-10-2071
- S
-
I. Sabirov
60-10-2160
-
Hikaru Saito
60-09-2003
-
Takahiko Sasaki
60-07-1367
-
Masugu Sato
57-09-1447
-
Shigeo Sato
57-07-1109
-
Takahiro Sato
59-01-0047
-
W. Sato
58-10-1346
-
Xavier Sauvage
60-07-1151
-
Syutaro Sawa
62-02-0213
-
Daigo Setoyama
57-09-1404
-
Valentin K. Shamardin
60-09-1723
-
Bhupendra Sharma
57-09-1440
-
Yifu Shen
61-12-2378
-
Akinobu Shibata
57-09-1462, 60-08-1518
-
Etsuko Shigeno
59-06-1009
-
Shun Shigeoka
60-08-1472
-
Yasuo Shimizu
59-11-1798, 60-06-1018, 62-04-0519
-
Yoshihiro Shimizu
57-10-1735
-
Masahiko Shimoda
60-08-1680
-
Koji Shimojima
60-12-2506
-
Tomotsugu Shimokawa
57-09-1392, 57-09-1476
-
Takahiko Shinohara
59-03-0393
-
Baipo Shu
60-08-1543
-
Vaclav Sklenicka
60-08-1506, 60-09-1785
-
Werner Skrotzki
60-07-1331
-
B. Smola
60-08-1533
-
Vinicius Aguiar de Souza
57-09-1399
-
Boris Straumal
60-08-1489
-
Petr Straumal
60-08-1489
-
Chunjian Su
60-08-1629
-
Itto Sugimoto
60-09-2003
-
Kosei Sumikawa
59-06-1009
-
Satyam Suwas
60-07-1177, 60-08-1457
-
Ryo Suzuki
60-12-2506
-
Ryoma Suzuki
59-01-0047
- T
-
Takayuki Tajiri
60-08-1472
-
Seishi Takagi
60-08-1472
-
Yoichi Takizawa
58-12-1647, 59-06-1009, 60-09-1785, 61-07-1177, 61-07-1387
-
Hirokazu Tamagawa
59-05-0760
-
Yongpeng Tang
60-08-1680, 61-07-1177, 61-07-1387, 62-02-0167
-
Yoshinori Tange
62-02-0167
-
Hisanori Tanimoto
59-01-0047
-
Yanzhong Tian
60-08-1518
-
Y. Todaka
58-10-1346
-
Toko Tokunaga
57-06-0927
-
Yohei Tomaru
62-04-0479
-
Kaho Tomita
57-06-0927
-
Hesam Torabzadeh
60-07-1316
-
Laszlo S. Toth
60-07-1177
-
Manuel Tousignant
60-08-1571
-
Koichi Tsuchiya
57-09-1471
-
Nobuhiro Tsuji
57-09-1385, 57-09-1392, 57-09-1462, 57-10-1720, 58-08-1127, 59-07-1147, 60-08-1518
-
Y. Tsuji
58-10-1346
-
Tomohito Tsuru
57-09-1385, 57-09-1476, 61-12-2320
-
Yusuke Tsutsumi
57-12-2020
- U
-
Midori Uchiyama
57-09-1411
-
Kyosuke Ueda
57-11-1887
-
Ryoko Uehiro
59-05-0741
-
Rintaro Ueji
58-10-1487, 60-08-1518
-
Yoshihiko Uematsu
57-09-1454, 59-03-0475, 59-08-1296
-
H. Utsunomiya
58-02-0291
-
Sanjay Kumar Vajpai
57-09-1424, 57-09-1433, 57-09-1440
-
Ruslan Z. Valiev
60-07-1356
-
T. Vlasák
60-08-1533
-
Iu. Vozniak
60-07-1192
- W
-
Min Wan
61-02-0234
-
Beibei Wang
59-09-1513
-
Chen Wang
59-09-1513
-
Quanzhao Wang
59-09-1513
-
Rui Wang
60-08-1629
-
Ying Wang
60-11-2319, 60-11-2361
-
C. Watanabe
58-10-1346, 61-12-2320
-
Chihiro Watanabe
57-09-1471, 62-02-0213, 62-05-0610
-
Ikumu Watanabe
57-09-1399, 57-09-1404, 57-09-1424
-
Katsumi Watanabe
59-08-1341
-
Kyohei Watanabe
60-09-1785
-
Minami Watanabe
60-08-1484, 62-04-0479
-
Gerhard Wilde
60-07-1302
-
Chengrong Wu
59-07-1142
-
L.H. Wu
58-02-0164
-
Lihong Wu
60-12-2558
-
Taibin Wu
59-07-1142
- X
-
Terigele Xi
59-01-0047
-
Bolv Xiao
59-09-1513
-
Zhi-chao Xu
60-11-2319, 60-11-2361
-
Peng Xue
59-09-1513
- Y
-
Hajime Yamamoto
61-08-1613
-
S. Yamamoto
61-12-2320
-
Tohru Yamasaki
57-09-1447
-
Tomoaki Yamashita
57-09-1392
-
Shunsuke Yamazaki
62-02-0213
-
Zhaoming Yan
59-04-0669
-
Akira Yanagida
57-09-1399
-
Wen-peng Yang
60-11-2319, 60-11-2361
-
Xu Yang
60-08-1543
-
Hakan Yilmazer
57-07-1109
-
Mitsuharu Yonemura
61-08-1613
-
Hidenori Yoshimura
60-11-2416
-
Han Yu
57-09-1424
-
Jianmin Yu
59-04-0669
-
Zizhou Yuan
60-06-0969
-
Motohiro Yuasa
60-07-1243
-
Manabu Yumoto
58-12-1647, 59-06-1009, 60-09-1785, 61-07-1387
- Z
-
Ghenwa Zaher
60-07-1151
-
Michael J. Zehetbauer
60-10-2071
-
Guanshi Zhang
59-04-0669
-
H. Zhang
58-02-0259
-
Hongbin Zhang
60-08-1629
-
Jinxu Zhang
60-08-1543
-
Xiangyun Zhang
60-06-0969
-
Zhimin Zhang
59-04-0669
-
Bingjie Zhao
60-08-1629
-
Lijia Zhao
60-08-1518
-
Rui Zhao
61-02-0234
-
X. Zhao
58-02-0259
-
Ruixiao Zheng
57-09-1462
-
X.H. Zhou
58-02-0259
-
Chang Zhu
60-11-2361
-
Xinkun Zhu
60-08-1543
Keywords Index
- A
-
A7075 alloy
59-08-1341
-
accumulative roll bonding, accumulative roll bonding (ARB), accumulative roll-bonding (ARB)
57-09-1411, 57-09-1462, 57-10-1720, 58-02-0259, 58-08-1127, 61-02-0305
-
activation volume
62-02-0213
-
adhesion
57-12-2020
-
age-hardening
57-09-1471, 58-10-1346
-
aging
57-09-1462
-
aging treatment
60-08-1680
-
Al
60-07-1177
-
Al-6061
60-11-2319
-
allotropic phase transformation
62-02-0167
-
Al-Mg-Si
60-08-1680
-
Al-Si composite
59-09-1513
-
alternating tool path
61-05-1000
-
aluminium
58-08-1127
-
aluminum
57-06-0927
-
aluminum alloy
57-09-1433, 57-10-1735, 58-12-1647, 59-03-0373, 61-02-0276, 61-07-1387
-
aluminum carbide
60-06-1018, 62-04-0519
-
aluminum-iron alloy
61-02-0305
-
aluminum-magnesium alloy
59-07-1147
-
aluminum-magnesium-scandium alloy
62-02-0213
-
amorphization
60-07-1256
-
amorphous
60-07-1283
-
anisotropy
60-10-2160
-
annealing
61-02-0361
-
artificial aging
58-10-1346
-
atomistic simulations
57-09-1476
-
AZ80 magnesium alloy
57-09-1418
- B
-
beta titanium-niobium-tin alloys
57-09-1440
-
bimodal grain-structure
59-07-1147
-
bimodal Titanium
57-09-1424
-
bioactive coatings
60-07-1356
-
biomaterials
57-11-1887
-
brittle fracture stress
58-10-1505
-
bulk metallic glass
60-07-1283
-
bulk metallic glass composites
60-06-0969
-
bulk ultrafine-grained metals
60-07-1367
-
bulk-state reaction
60-07-1131
- C
-
carbon
60-08-1500
-
carbon fiber
59-03-0475
-
cellular automata
60-10-2229
-
chi phase
60-09-2003
-
chromium nitride
60-09-2003
-
clathrates
60-10-2071
-
cobalt-chrome-molybdenum alloys, cobalt-chromium-molybdenum alloys, Co-Cr-Mo alloy
57-07-1109, 57-11-1887, 61-02-0361
-
cold rolling
60-08-1571
-
commercial purity titanium (CP-Ti)
61-12-2320
-
composite
59-11-1798, 60-06-1018, 62-04-0519
-
composite strength
59-11-1798, 60-06-1018, 62-04-0519
-
concave-convex shape
60-11-2416
-
continuous
60-07-1316
-
continuous processing
61-07-1177
-
copper
57-09-1411, 59-03-0393, 60-05-0751, 60-08-1484, 62-04-0479
-
copper tube
59-05-0760
-
copper/titanium multilayered composite
58-02-0259
-
copper-beryllium system alloy
58-10-1346
-
copper-nickel alloys
60-08-1484
-
copper-silicon alloys
60-08-1484, 62-04-0479
-
copper-titanium system alloy
58-10-1346
-
copper-zinc alloys
60-08-1484
-
corrosion
57-05-0559, 60-07-1243
-
corrosion fatigue
59-08-1296
-
corrosion resistance properties
60-08-1629
-
creep
60-08-1506
-
critical temperature
60-07-1367
-
cryogenic treatment
60-07-1344
-
crystal plasticity
57-09-1404
-
crystalline defects
60-07-1151
-
crystallization
60-07-1256
-
Cu
60-07-1177
-
Cu-Be-Co alloy
57-09-1471
-
Cu-Nb composites
60-07-1209
-
Cu-Ti alloy
57-09-1471
-
cytocompatibility
61-02-0361
- D
-
deformation microstructure
60-08-1518
-
differential speed rolling
58-02-0291
-
diffusion
60-07-1151, 60-07-1302
-
diffusion bonding
60-07-1131
-
Dillamore
58-08-1127
-
directional solidification
60-11-2361
-
disclination
57-09-1392
-
dislocation cell
60-03-0450
-
dislocation density
57-07-1109, 57-09-1447, 59-03-0393, 61-02-0305
-
dislocation, dislocations
60-07-1230, 60-07-1243, 60-07-1302
-
drawing
61-02-0234
-
ductility
57-10-1720, 59-01-0053, 60-08-1543
-
dynamic recrystallization
61-05-0893, 62-05-0610
- E
-
elastic and plastic deformation
57-09-1447
-
electrical conductivity
61-02-0305
-
electrical resistivity
59-01-0047, 59-03-0393, 61-02-0305
-
electron back scatter diffraction, electron back scattering
diffraction (EBSD), electron backscatter diffraction, electron
backscatter diffraction (EBSD)
57-09-1411, 58-02-0291, 59-07-1161, 60-05-0751
-
electron-atom ratio
60-08-1484
-
elongation
60-07-1123
-
enhanced strength
60-07-1356
-
ECAP, equal channel angular extrusion, equal-channel angular
extrusion, equal channel angular pressing, equal channel angular
pressing (ECAP), equal-channel angular pressing (ECAP)
57-09-1399, 58-04-0543, 59-07-1161, 60-05-0751, 60-07-1302, 60-07-1331, 60-08-1506, 60-08-1680, 60-11-2319, 60-11-2361
-
extensive plastic deformation
60-08-1561
-
extrusion
57-06-0927, 58-02-0291, 62-05-0610
- F
-
fatigue
57-09-1454, 59-03-0475, 59-08-1296
-
fatigue property
61-02-0361, 61-08-1613
-
fatigue strength
60-03-0450
-
finite element analysis
57-09-1399, 57-09-1404, 58-10-1505
-
finite element method (FEM)
57-04-0533
-
finite element modelling
60-07-1139
-
flow mechanisms
60-08-1506
-
formability
59-07-1142
-
forming limit in height
61-05-1000
-
fracture toughness
60-10-2160
-
friction model
57-09-1399
-
friction stir process
58-01-0006
-
friction stir processing
59-03-0475, 59-09-1513, 59-11-1798, 60-06-0969, 60-06-1018, 61-08-1613, 62-04-0519
-
friction stir welding
60-09-2003, 60-12-2506, 61-02-0276, 61-12-2378
-
friction stirring
60-11-2416, 61-05-1000
-
full width at half maximum intensity
60-03-0450
-
fullerens (C60)
60-08-1500
-
functional properties
60-07-1221, 61-11-2241
- G
-
geometrically necessary boundary
57-09-1392
-
glass forming ability
60-07-1283
-
glass transition
59-01-0047
-
gradient structure
60-07-1344
-
gradient structured materials
60-08-1543
-
grain boundaries, grain boundary
59-01-0047, 60-04-0490, 60-07-1151, 60-07-1209, 60-07-1230, 60-07-1243, 60-07-1302, 60-09-1723
-
grain boundary migration
60-07-1270
-
grain boundary sliding
60-07-1123, 60-08-1506, 60-09-1785
-
grain refinement
57-06-0927, 57-09-1392, 57-10-1735, 57-11-1887, 58-02-0291, 58-12-1647, 59-08-1341, 60-05-0751, 60-07-1104, 60-09-1785, 60-10-2160, 61-07-1177, 61-07-1387, 61-08-1613
-
grain refinement mechanism
57-07-1109
-
grain size
57-09-1454, 57-09-1476
-
grain subdivision
57-09-1392, 60-08-1518
-
graphene
60-11-2451
-
graphite
62-04-0519
- H
-
Half Heusler
60-10-2071
-
hardness
59-11-1798
-
harmonic structure
57-09-1424, 57-09-1433
-
heat transfer
61-02-0276
-
heat treatment
59-09-1513
-
heterogeneity
60-07-1331
-
heterogeneous nano-structure
60-07-1111
-
high ductility
57-09-1433, 60-07-1116
-
high pressure torsion, high pressure torsion (HPT), high-pressure torsion, high-pressure torsion (HPT), HPT
57-04-0533, 57-07-1109, 57-09-1471, 57-10-1735, 57-11-1887, 57-12-2020, 58-10-1346, 59-06-1009, 59-08-1341, 60-07-1104, 60-07-1131, 60-07-1139, 60-07-1168, 60-07-1203, 60-07-1221, 60-07-1256, 60-07-1283, 60-07-1294, 60-07-1302, 60-07-1367, 60-08-1472, 60-08-1484, 60-08-1553, 60-10-2071, 60-11-2451, 61-02-0361, 61-07-1177, 62-04-0479
-
high pressure tube twisting (HPTT)
60-07-1177
-
high strength
57-09-1433, 58-12-1647, 60-07-1116
-
high strength and high ductility
57-10-1735
-
high tensile strength steel
60-12-2506
-
high-pressure sliding
61-07-1177, 61-07-1387, 62-02-0167
-
high-speed deformation
58-10-1487
-
high-strength bolt
60-08-1680
-
history
60-08-1553
-
hydrogen storage
59-05-0741, 60-08-1561, 60-08-1571
-
hydrostatic extrusion
60-10-2160
-
hydrostatic pressure
60-07-1139, 60-08-1472
- I
-
IF steel
60-07-1177
-
in situ X-ray diffraction analysis
62-02-0167
-
Inconel 625
58-02-0164, 60-12-2558
-
Inconel 718
61-02-0234
-
incremental forming
60-11-2416, 61-05-1000
-
in-situ X-ray diffraction, in-situ XRD
57-09-1447, 61-12-2320
-
interface bonding
61-05-0893
-
intergrain-contact
60-08-1472
-
intermetallic compound
60-07-1131
-
intragranular dislocation
57-09-1476
-
ion irradiation
60-09-1723
-
isothermal annealing
60-10-2229
- K
-
kinetics
60-08-1489
- L
-
lattice defects
59-03-0393
-
lattice softening
60-07-1116
-
lightweight materials
57-09-1424
-
lithium metal battery
60-11-2451
-
low carbon steel
61-08-1613
- M
-
magnesium, Mg
60-07-1177, 62-05-0610
-
magnesium alloy, magnesium alloys
57-09-1454, 58-01-0006, 59-03-0475, 59-07-1142, 60-07-1104
-
magnesium-based hydrides
60-08-1561
-
magnesium-tin alloy
58-04-0543
-
magnesium-vanadium-chromium alloys
59-05-0741
-
magnetization
60-07-1367
-
material flow
61-05-1000
-
materials synthesis
61-11-2241
-
measured shoulder temperature
60-12-2506
-
mechanical alloying
57-09-1440, 59-05-0741, 60-07-1256
-
mechanical performance
60-09-1723
-
mechanical properties, mechanical property
57-06-0927, 57-09-1418, 57-09-1433, 57-09-1462, 58-02-0259, 59-04-0669, 59-07-1142, 59-07-1147, 59-09-1513, 60-04-0490, 60-07-1111, 60-08-1518, 60-08-1553, 60-08-1680, 60-10-2071, 60-11-2319, 60-11-2361, 61-02-0276, 61-02-0305, 62-05-0610
-
mechanical strength
60-07-1151
-
medical implants with improved design
60-07-1356
-
metal hydrides
59-05-0741, 60-08-1571
-
metal oxides
60-07-1203
-
metallic alloys
60-07-1151
-
metastable phase, metastable phases
60-07-1168, 60-07-1256
-
Mg98.5Zn0.5Y1 alloy
60-11-2361
-
Mg-Gd-Y-Zn-Zr alloy
59-04-0669
-
micro hardness, micro-hardness
60-06-0969, 60-12-2558
-
microcrack
61-05-0893
-
microstructural refinement
61-11-2241
-
microstructure characterization
60-08-1553
-
microstructure evolution
60-08-1518, 60-10-2229, 61-05-0893
-
microstructure, microstructures
57-09-1462, 58-02-0164, 58-02-0259, 59-03-0393, 59-04-0669, 59-07-1142, 59-07-1161, 59-09-1513, 59-11-1798, 60-04-0490, 60-05-0751, 60-06-0969, 60-07-1177, 60-07-1316, 60-07-1331, 60-08-1629, 60-09-1723, 60-11-2319, 60-11-2361, 60-12-2558, 61-08-1613
-
micro-tube
61-02-0234
-
mild steel plate
60-03-0450
-
molecular dynamics
57-09-1392
-
Mössbauer spectroscopy
60-07-1209
-
multi walled carbon nanotube
59-11-1798
-
multi-axial compression (MAC)
60-11-2319
-
multi-directional forging, multi-directional forging (MDF)
57-09-1418, 57-09-1454, 59-03-0373, 59-08-1296, 60-07-1111, 61-12-2320, 62-02-0213, 62-05-0610
-
multiscale theory and simulations
60-07-1294
-
multi-walled carbon nanotube
60-06-1018
- N
-
nanocomposite
60-07-1256
-
nanocrystalline metals
59-01-0047
-
nanocrystalline nickel
57-09-1447
-
nanocrystallization
60-08-1543
-
nanoindentation
60-06-0969
-
nanostructure
60-07-1256
-
nanostructured materials
60-09-1723
-
nanostructured metals
57-10-1720, 60-07-1356
-
natural aging
58-10-1346
-
neutron irradiation
60-09-1723
-
nickel-aluminum bronze (NAB)
60-08-1629
-
niobium
60-07-1209, 60-07-1367
-
novel forming process
60-11-2416
-
numerical simulation
61-12-2378
- O
-
omega phase
57-04-0533
-
orientation investigation
57-09-1386
-
osteogenic differentiation
57-12-2020
- P
-
penetrating tool
60-11-2416
-
phase diagram
60-08-1500
-
phase transformation, phase transformations
60-07-1168, 60-07-1221, 60-07-1256, 60-08-1489, 60-08-1500, 60-08-1518
-
physical metallurgical preparation of nanomaterials
60-11-2451
-
plastic flow
60-07-1139, 60-11-2416
-
plasticity
57-06-0927
-
point defects
60-07-1302
-
polymers
60-07-1192
-
porous materials
58-02-0291
-
positron annihilation spectroscopy
60-08-1533
-
post-weld treatment
61-08-1613
-
powder metallurgy
57-09-1424
-
precipitation
59-03-0373, 60-07-1151
-
pressure
60-08-1500
-
pre-stressed shot peening
60-12-2558
-
proof strength
60-06-1018
-
properties
60-07-1316
-
punch-shear
58-01-0006
-
pure aluminium, pure aluminum
57-10-1720, 60-11-2416
-
pure Ti
59-08-1296, 62-02-0167
- R
-
radiation resistance
60-09-1723
-
radiation-induced defects
60-09-1723
-
recrystallization
57-09-1418, 58-02-0291, 60-08-1518
-
recycle
59-03-0475
-
repetitive upsetting and extrusion (RUE)
59-04-0669
-
residual stress
58-02-0164, 60-12-2558, 61-08-1613
-
resistivity
60-07-1367
-
restoration
60-07-1270
-
Ringer’s solution
59-08-1296
-
rolling
60-07-1111
-
room temperature superplasticity
60-07-1159
-
rotary forging
59-07-1142
-
rotational Bridgman anvils
60-07-1294
-
rotational diamond anvils
60-07-1294
- S
-
sample size
60-07-1316
-
saturation
60-07-1270
-
segregations
60-07-1151
-
semiconductor
60-07-1168
-
semi-solid reaction
57-09-1433
-
severe plastic deformation, severe deformation, severe plastic deformation (SPD)
57-04-0533, 57-05-0559, 57-09-1386, 57-09-1392, 57-09-1404, 57-09-1411, 57-09-1424, 58-12-1647, 59-01-0053, 59-03-0373, 59-05-0741, 59-06-1009, 59-07-1147, 60-07-1104, 60-07-1116, 60-07-1123, 60-07-1131, 60-07-1151, 60-07-1159, 60-07-1168, 60-07-1177, 60-07-1192, 60-07-1209, 60-07-1221, 60-07-1230, 60-07-1243, 60-07-1256, 60-07-1283, 60-07-1302, 60-07-1316, 60-07-1331, 60-08-1457, 60-08-1484, 60-08-1489, 60-08-1500, 60-08-1518, 60-08-1533, 60-08-1553, 60-08-1561, 60-09-1723, 60-09-1785, 60-10-2071, 61-07-1387, 61-11-2241, 62-02-0167, 62-04-0479
-
shear diamond anvil cell
60-08-1500
-
short annealing
57-11-1887
-
shot peening
58-02-0164
-
shot peening (SP)
60-07-1344
-
shot-peening treatment
60-08-1629
-
SiAlON
60-12-2506
-
sigma phase
60-09-2003
-
silicon
60-08-1500
-
simple shear extrusion (SSE) technique
57-09-1386
-
skutterudites
60-10-2071
-
sliding wear
62-04-0519
-
solid-solution alloy
60-08-1484, 62-04-0479
-
spark plasma sintering
57-09-1440
-
stacking fault energy, stacking fault energy (SFE)
60-08-1484, 62-04-0479
-
stain rate dependence
61-12-2320
-
static recrystallization
60-10-2229
-
steady state
60-07-1270
-
steels
58-10-1487, 58-10-1505
-
stir zone
59-11-1798, 60-06-1018, 62-04-0519
-
stored energy
60-04-0490
-
straightening
59-05-0760
-
strain hardening
60-08-1518
-
strain localization
60-07-1116
-
strain rate sensitivity
59-08-1341
-
strain reversal
57-09-1386
-
strain-induced phase transformations
60-07-1294
-
strain-induced ε martensite phase
57-07-1109
-
strain-rate jump tests
62-02-0213
-
strength
57-10-1720, 59-01-0053, 60-07-1230, 60-07-1331, 60-08-1543
-
strengthening
57-09-1424
-
stress corrosion cracking
58-04-0543
-
structural deformation
60-08-1472, 60-08-1472
-
structural properties
61-11-2241
-
structure of solids
60-08-1500
-
structure-property relationships
60-07-1192
-
super duplex stainless steel
60-09-2003
-
superalloy
59-06-1009
-
superconductivity
60-07-1367
-
superconductors
60-08-1472
-
superplasticity
58-12-1647, 59-06-1009, 59-08-1341, 60-07-1104, 60-07-1123, 60-07-1159, 60-09-1785, 61-07-1177
-
surface activation
60-07-1344
-
surface mechanical attrition treatment (SMAT)
60-07-1344, 60-08-1543
-
surface modification, surface modifications
60-07-1356, 61-08-1613
-
surface reactivity
60-07-1344
-
synchrotron radiation
62-02-0167
-
synchrotron radiation facility
61-12-2320
- T
-
tantalum
60-07-1367
-
Taylor
58-08-1127
-
TC4
61-12-2378
-
tellurides
60-10-2071
-
TEM (Transmission Electron Microscope)
60-03-0450
-
temperature distribution
60-07-1139
-
temperature field
61-12-2378
-
tensile
58-01-0006
-
tensile properties
57-10-1735
-
tensile strength
59-05-0760, 59-11-1798, 60-03-0450, 60-06-1018, 62-04-0519
-
texture
57-09-1386, 57-09-1404, 57-09-1411, 58-08-1127, 59-05-0760, 59-07-1147, 60-07-1177, 60-07-1331, 60-08-1457
-
thermal property
59-01-0047
-
thermal stability
60-07-1209
-
thermodynamics
60-08-1489
-
thermoelectrics
60-10-2071
-
titanium
59-01-0053, 59-07-1161, 60-04-0490, 60-10-2160
-
titanium alloy, titanium alloys
57-12-2020, 60-09-1785
-
titanium dioxide (titania)
60-07-1203
-
titanium hydride
57-09-1440
-
tool geometry
61-02-0276
-
triple junctions
60-07-1270
-
tube-high pressure shearing (t-HPS)
60-07-1177
-
twin
60-07-1111
-
twin boundary
57-09-1476
-
twin faults
60-07-1230
- U
-
ultrafine grain materials, ultrafine-grained (UFG) materials, ultrafine-grained materials
57-04-0533, 57-05-0559, 60-07-1123, 60-07-1159, 60-07-1221, 60-08-1553, 60-09-1723
-
ultrafine grain, ultra-fine grain, ultrafine grains
57-09-1418, 57-09-1454, 59-03-0373, 59-03-0393, 59-08-1296, 60-05-0751, 60-07-1111, 60-08-1506, 61-02-0234, 62-05-0610
-
ultrafine grained microstructure, ultrafine-grained microstructure
58-10-1487, 58-10-1505
-
ultrafine-grained (UFG) structures, ultrafine-grained structure
60-07-1243, 62-02-0213
-
ultrafine-grained metals
57-09-1476
-
ultrasonic shot peening (USP)
60-07-1344
-
uniaxial and multiaxial straining
60-03-0450
- V
-
vacancies
60-07-1230, 60-08-1533
-
vacancy concentration
58-10-1346
-
vanadium
60-07-1367
- W
-
wear mechanism
60-12-2506
-
weld
61-08-1613
-
work hardening
60-03-0450
- X
-
X-ray diffraction, X-Ray diffraction (XRD)
58-02-0164, 60-03-0450
- Y
-
yield strength
59-07-1161, 59-11-1798, 60-12-2558
-
yttrium oxide (yttria)
60-07-1203
- Z
-
zinc oxide (zirconia)
60-07-1203
-
zirconium
60-08-1500
- 1
-
14H
60-11-2361
- 5
-
5083 Al alloy
59-11-1798, 60-06-1018, 62-04-0519
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