首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.1 >Characterization of Material Properties Using Strain Mapping and Reverse Engineering
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Characterization of Material Properties Using Strain Mapping and Reverse Engineering

机译:使用应变映射和逆向工程表征材料特性

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For simplicity, the material properties used in engineering analysis are often assumed to be linear elastic, isotropic and homogeneous. These simplifications may lead to erroneous stress and failure predictions if the materials involved are highly nonlinear, anisotropic and inhomogeneous. Based on the techniques of strain mapping and reverse engineering, a simple finite-element-based method has been devised with the aim of characterizing the properties of such materials under load. The method has been implemented into the commercial finite element code ABAQUS, via its User Material Subroutine (UMAT), to allow material characterization to be performed easily. Verification of the method has been carried out using simulated examples and the results showed rapid convergence of the method with good accuracy. The method has also been applied successfully to actual mechanical testing of graphite.
机译:为简单起见,工程分析中使用的材料属性通常假定为线性弹性,各向同性和均质。如果涉及的材料是高度非线性,各向异性和不均匀的,则这些简化可能会导致错误的应力和失效预测。基于应变映射和逆向工程技术,设计了一种基于有限元的简单方法,旨在表征这种材料在载荷下的性能。该方法已通过其用户材料子例程(UMAT)实施到商业有限元代码ABAQUS中,以使材料表征容易进行。该方法已通过仿真实例进行了验证,结果表明该方法具有良好的收敛速度。该方法也已成功地应用于石墨的实际机械测试。

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