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Titlebook: Micro and Nanomechanics, Volume 5; Proceedings of the 2 La Vern Starman,Jennifer Hay,Nikhil Karanjgaokar Conference proceedings 2017 The So

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書目名稱Micro and Nanomechanics, Volume 5
副標(biāo)題Proceedings of the 2
編輯La Vern Starman,Jennifer Hay,Nikhil Karanjgaokar
視頻videohttp://file.papertrans.cn/633/632738/632738.mp4
叢書名稱Conference Proceedings of the Society for Experimental Mechanics Series
圖書封面Titlebook: Micro and Nanomechanics, Volume 5; Proceedings of the 2 La Vern Starman,Jennifer Hay,Nikhil Karanjgaokar Conference proceedings 2017 The So
描述.Micro-and Nanomechanics., Volume 5 of the .Proceedings of the 2016 SEM Annual Conference & Exposition on Experimental and Applied Mechanics., the fifth volume of ten from the Conference, brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on a wide range of areas, including:.MEMS: Materials & Interfaces.Microscale & Microstructural Effects on Mechanical Behavior.Novel Nano-scale Probes.Nanoindentation & Beyond.Nanomechanics.Dynamic Micro/Nano Mechanics. .
出版日期Conference proceedings 2017
關(guān)鍵詞Nanomechanics; Conference Proceedings of the Society for Experimental Mechanics; Micromechanics; Micros
版次1
doihttps://doi.org/10.1007/978-3-319-42228-2
isbn_softcover978-3-319-82530-4
isbn_ebook978-3-319-42228-2Series ISSN 2191-5644 Series E-ISSN 2191-5652
issn_series 2191-5644
copyrightThe Society for Experimental Mechanics, Inc. 2017
The information of publication is updating

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Experimental Study of Microstructure and Mechanical Property of Cu30Zn6Al Alloy,as first synthesized using an induction furnace, then homogenized for different durations, and heated and quenched using one-step and two-step methods. Optical microscope and scanning electron microscope were employed for the microstructure characterization. Microhardness testing was performed to ob
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A Novel Microdevice for In Situ Study of Mechano-Electrochemical Behavior with Controlled Temperatufe. A fundamental understanding of the mechano-electrochemical behavior during charging/discharging cycles is essential for optimal and reliable design. Previous work has utilized in situ experimental techniques in an electron microscope to directly visualize material response during the reaction cy
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High-Rate Micro-Compression Using an Elastic Half-Space Loading Configuration,ethods, which employ optical instrumentation instead of strain gages, have been used to test samples in the 20–50?μm size range at rates as high as 1?M/s. However, difficulties attributed to machining and alignment of such small systems make higher strain-rates difficult to achieve. In this work, we
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