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[会议论文] 作者:Ryuichi Nomura,Shintaro Azuma,Kentaro Uesugi,Tetsuo Irifune,
来源:第26届国际高压科学技术大会、第8届亚洲高压科技学术会议暨第19届中国高压科学技术会议(The 26th Interna 年份:2017
A large-strain,torsional deformation apparatus has been developed based on diamond anvil cell at high pressures,up to 135 GPa [1] with a help of hard nano-polycrystalline diamond anvils [2]....
Assessment of deformation behavior in aluminum alloy with diffraction-amalgamated grain-boundary tra
[会议论文] 作者:Kyosuke Hirayama,Hiroyuki Toda,Yukako Teraoka,Akihisa Takeuchi,Kentaro Uesugi,
来源:15th International Conference on Aluminium Alloys(ICAA15)(第十 年份:2016
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Assessment of deformation behavior in aluminum alloy with diffraction-amalgamated grain-boundary tra
[会议论文] 作者:Kyosuke Hirayama,Hiroyuki Toda,Yukako Teraoka,Kentaro Uesugi,Akihisa Takeuchi,
来源:15th International Conference on Aluminium Alloys(ICAA15)(第十 年份:2016
The behavior of individual grain during plastic deformation is affected by shape and size of grains and the crystal orientations for the grains in polycrystalline.We proposed new diffraction-amalgamat...
[会议论文] 作者:Hiroyuki Toda,Dowon Seo,Han Li,Rafael Batres,Kentaro Uesugi,Akihisa Takeuchi,
来源:15th International Conference on Aluminium Alloys(ICAA15)(第十 年份:2016
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[会议论文] 作者:Dowon Seo,Hiroyuki Toda,Han Li,Rafael Batres,Kentaro Uesugi,Akihisa Takeuchi,
来源:15th International Conference on Aluminium Alloys(ICAA15)(第十 年份:2016
A new technology for materials development,Reverse 4D Materials Engineering(hereinafter R4ME), is achieved through the utilization of 3D/4D imaging technique and image-based simulation.R4ME is a rever...
[会议论文] 作者:Hiroyuki Kishimoto ,Yuya Shinohara,Yasuo Ogawa,Yoshio Suzuki,Kentaro Uesugi,Naoto Yagi,Tctsuo Mizoguchi,
来源:第二届中日橡胶技术交流大会 年份:2006
加入象炭黑、白炭黑等纳米粒子的橡胶其结构分析对于橡胶工业来说是非常重要的,因为这种填充橡胶显示良好的补强效果.在过去的几十年中,人们研究橡胶填料的结构主要是为了改善轮胎的性能.用于制造轮胎的胶料要求具备各种性能:包括良好的静态的和动态的机械性能,......
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