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Viscoelasticity properties of biopolymer composite materials determined using finite element calculation and nanoindentation

机译:使用有限元计算和纳米压痕确定生物聚合物复合材料的粘弹性

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This paper investigates the prediction of viscoelastic parameters related to starch-zein composite material using finite element calculation and nanoindentation experiments. Instrumented indentation is performed using Berkovitch geometry on each phase of the composite as well as the interface. Experimental displacement-load curves are derived in each case and compared to finite element results. These are obtained by implementing the same experimental loading conditions plus a viscoelastic model described by three quantities, namely instantaneous and final elastic modulii and the inverse of the retardation time. Finite element results show that both phases have similar viscoelastic parameters despite 17% of variation of the instantaneous modulus. Moreover, predicted maximum loading of the nanoindentation response is 47% higher than the experimental response indicating that interface has noncohesive property. (C) 2008 Elsevier B.V. All rights reserved.
机译:本文利用有限元计算和纳米压痕实验研究了与淀粉-玉米蛋白复合材料有关的粘弹性参数的预测。在复合材料的每个相以及界面上,使用Berkovitch几何图形执行仪器化的压痕。分别导出实验位移-载荷曲线,并将其与有限元结果进行比较。这些是通过实施相同的实验加载条件以及由三个量(即瞬时和最终弹性模量以及延迟时间的倒数)描述的粘弹性模型获得的。有限元结果表明,尽管瞬时模量变化了17%,但两个相都具有相似的粘弹性参数。此外,纳米压痕响应的预计最大负载比实验响应高47%,表明界面具有非粘性。 (C)2008 Elsevier B.V.保留所有权利。

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