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8篇 您的检索式:作者名="Muenstermann"
    题名 作者 年代 出处 被引量
1Coexistence of Filamentary and Homogeneous Resistive Switching in Fe-Doped SrTiO3 Thin-Film Memristive Devices显示文摘Muenstermann R Menke T Dittmann R 0,,43:1
2Overview of HVCMOS pixel sensors显示文摘I. Peri? R. Eber F. Ehrler H. Augustin N. Berger S. Dittmeier C. Graf L. Huth A.-K. Perrevoort R. Phillipp J. Repenning D. vom Bruch D. Wiedner T. Hirono M. Benoit J. Bilbao B. Risti? D. Muenstermann 2015Journal of Instrumentation2015,,05:1
3Semi-solid extrusion of steel grade X210CrW12 under isothermal conditions using ceramic dies显示文摘S. Muenstermann K. Uibel T. Tonnesen R. Telle 2008Journal of Materials Processing Tech2008,,7:1
4A study of microcrack formation in multiphase steel using representative volume element and damage mechanics显示文摘UTHAISANGSUK V MUENSTERMANN S PRAHL U 2011Computational Materials Science2011,50,:1
5A study of microcrack formation in multiphase steelusing representative volume element and damage me-chanics显示文摘Uthaisangsuk V Muenstermann S Prahl U 2011Computational Materials Science2011,50,4:1
6Correlation between growth kinetics and nanoscale resistive switching properties of SrTiOa thin films显示文摘Muenstermann R Menke T Dittmann R 2010J Appl Phys2010,108,12:1
7Design of microstructure for damage tolerance in high strength steels显示文摘With the extensively wide application of advanced high strength steels(AHSS) in various fields for the excellent mechanical properties,the industrial interest on the damage of AHSS is increasing in the recent years.For these modern steels,due to the complex microstructure and the relevant deformation mechanisms,the damage concept needs to be reexamined.In this paper,the definition,length scale and different mechanisms of damage are introduced.Both experimental evaluation of damage and the numerical damage models are briefly viewed and compared.The approaches to improve the damage tolerance are given in the framework of damage tolerance design principle.W BLECK S MUENSTERMANN 2010Baosteel Technical Research2010,4,S1:0
8高强钢损伤容限的微观结构设计显示文摘先进高强钢以其优良的机械性能,在生产生活的各个领域得到了广泛的应用。近年来,工业上对先进高强钢损伤的关注日益增加。对于这种先进高强钢,由于它复杂的微观结构及相关的变形机制,损伤概念需重新审定。概要介绍了损伤的概念、尺度及损伤机制,对比了材料损伤的实验评估及数值模型,并基于容损设计方法给出了提高材料损伤容限的理论。W Bleck S Muenstermann 姜蕴哲(译) 王巍(校) 2011世界钢铁2011,11,4:0
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