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Elastic property determination of nanostructured W/Cu multilayer films on a flexible substrate 被引量:1
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作者 Wei He Meidong Han +3 位作者 Shibin Wang Philippe Goudeau Eric Le Bourhis pierre olivier renault 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2019年第6期1210-1216,共7页
An experimental method for a single layer is extended to determine the elastic properties of nanostructured W/C u multilayers on a flexible substrate.The strain difference between the W/Cu-polyimide-W/Cu composite and... An experimental method for a single layer is extended to determine the elastic properties of nanostructured W/C u multilayers on a flexible substrate.The strain difference between the W/Cu-polyimide-W/Cu composite and the uncoated substrate,measured by dual digital image correlation,allows us to extract the effective Young's modulus of W/Cu multilayers(20 periods)equaling 216±13 GPa.Finite element method is then performed,which agrees well with the experiment and classical rule of mixture(ROM)theory demonstrating that the extension to multilayers is effective and reliable.The numerical analysis also interestingly shows that the strain difference is linearly related to the thickness ratio(W/Cu),periods and sublayer thickness,respectively.In contrast to ROM theory,this approach could potentially be used for the evaluation of properties and design of emerging/unknown functional multilayers,whether or not they are crystalline or amorphous. 展开更多
关键词 Nanostructured multilayers Young's modulus Dual digital image correlation Finite element method
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