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用实验力学验证连续介质力学预测

Verification of Continuum Mechanics Predictions with Experimental Mechanics.

作者信息

Sciammarella Cesar A, Lamberti Luciano, Sciammarella Federico M

机构信息

Department of Mechanical, Materials and Aerospace Engineering, Illinois Institute of Technology, Chicago, IL 60616, USA.

Dipartimento di Meccanica, Matematica e Management, Politecnico di Bari, 70126 Bari, Italy.

出版信息

Materials (Basel). 2019 Dec 22;13(1):77. doi: 10.3390/ma13010077.

Abstract

The general goal of the study is to connect theoretical predictions of continuum mechanics with actual experimental observations that support these predictions. The representative volume element (RVE) bridges the theoretical concept of continuum with the actual discontinuous structure of matter. This paper presents an experimental verification of the RVE concept. Foundations of continuum kinematics as well as mathematical functions relating displacement vectorial fields to the recording of these fields by a light sensor in the form of gray-level scalar fields are reviewed. The Eulerian derivative field tensors are related to the deformation of the continuum: the Euler-Almansi tensor is extracted, and its properties are discussed. The compatibility between the Euler-Almansi tensor and the Cauchy stress tensor is analyzed. In order to verify the concept of the RVE, a multiscale analysis of an Al-SiC composite material is carried out. Furthermore, it is proven that the Euler-Almansi strain tensor and the Cauchy stress tensor are conjugate in the Hill-Mandel sense by solving an identification problem of the constitutive model of urethane rubber.

摘要

该研究的总体目标是将连续介质力学的理论预测与支持这些预测的实际实验观测结果联系起来。代表性体积单元(RVE)在连续介质的理论概念与物质的实际不连续结构之间架起了桥梁。本文给出了RVE概念的实验验证。回顾了连续介质运动学的基础以及将位移矢量场与通过灰度标量场形式的光传感器记录这些场相关联的数学函数。欧拉导数场张量与连续介质的变形相关:提取了欧拉 - 阿尔曼西张量,并讨论了其性质。分析了欧拉 - 阿尔曼西张量与柯西应力张量之间的相容性。为了验证RVE的概念,对一种铝 - 碳化硅复合材料进行了多尺度分析。此外,通过解决聚氨酯橡胶本构模型的识别问题,证明了欧拉 - 阿尔曼西应变张量和柯西应力张量在希尔 - 曼德尔意义下是共轭的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddfd/6981903/31f9717afe25/materials-13-00077-g001.jpg

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