deep-sleep 发表于 2025-3-21 18:03:37
书目名称Micromechanics of Contact and Interphase Layers影响因子(影响力)<br> http://figure.impactfactor.cn/if/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers影响因子(影响力)学科排名<br> http://figure.impactfactor.cn/ifr/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers网络公开度<br> http://figure.impactfactor.cn/at/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers网络公开度学科排名<br> http://figure.impactfactor.cn/atr/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers被引频次<br> http://figure.impactfactor.cn/tc/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers被引频次学科排名<br> http://figure.impactfactor.cn/tcr/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers年度引用<br> http://figure.impactfactor.cn/ii/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers年度引用学科排名<br> http://figure.impactfactor.cn/iir/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers读者反馈<br> http://figure.impactfactor.cn/5y/?ISSN=BK0633329<br><br> <br><br>书目名称Micromechanics of Contact and Interphase Layers读者反馈学科排名<br> http://figure.impactfactor.cn/5yr/?ISSN=BK0633329<br><br> <br><br>姑姑在炫耀 发表于 2025-3-21 23:52:15
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Evolving Laminates in Shape Memory Alloys,e governed by a rateindependent criterion formulated in terms of the thermodynamic driving force on the phase transformation front. Macroscopic constitutive rate-equations are derived for the case of an evolving rank-one laminate. Several examples of pseudoelastic response of Cu-based shape memory alloys illustrate the approach.neolith 发表于 2025-3-22 17:58:50
1613-7736 echanics provides a link between the structure and the properties at different scales of observation. This book deals with micromechanical analysis of interfaces and interface layers and presents several modelling tools, ranging from the rigorous method of asymptotic expansions to practical finite ecavity 发表于 2025-3-22 23:27:14
Formation of Stress-Induced Martensitic Plates,ear magnitude due to stacking faults is proposed. The approach is applied for CuZnAl single crystals undergoing stress-induced cubic-to-monoclinic transformation and the effects of stacking fault energy, loading direction, and temperature on the predicted microstructures are studied.路标 发表于 2025-3-23 04:35:02
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https://doi.org/10.1007/978-3-540-49717-2Simulation; Transformation; calculus; interface layers; layers; mechanics; micromechanics of interfaces; mo