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The use of graded finite elements in the study of elastic wave propagation in continuously nonhomogeneous materials

机译:梯度有限元在连续非均匀材料弹性波传播研究中的应用

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Finite elements with graded properties are used to simulate elastic wave propagation in functionally graded materials. The graded elements are formulated with continuously nonhomogeneous material property fields and compared to conventionally formulated homogeneous elements. An example problem is solved for the two-dimensional case to show the potential benefits of the graded formulation. It is observed that the conventional elements give a discontinuous stress field in the direction perpendicular to the material property gradient, while the graded elements give a continuous distribution. In the one-dimensional case, the solutions are compared to the analytical solutions by Chin and Erdogan [J. Sound Vib. 222 (3) (1999) 453]. The results show that for identical levels of mesh refinement, the graded formulation produces similar spatial resolution, and temporal resolution for the range of boundary value problems studied. Observations are explained and their implications for numerical modeling are discussed. Crown Copyright (C) 2003 Published by Elsevier Ltd. All rights reserved. [References: 13]
机译:具有渐变特性的有限元用于模拟弹性波在功能渐变材料中的传播。渐变元素具有连续的非均质材料特性场,并与常规配方的均质元素进行了比较。解决了二维情况的示例问题,以显示分级配方的潜在好处。可以看出,常规元件在垂直于材料特性梯度的方向上会产生不连续的应力场,而渐变元件会产生连续的分布。在一维情况下,将解决方案与Chin和Erdogan的分析解决方案进行比较[J.声音震撼。 222(3)(1999)453]。结果表明,对于相同级别的网格细化,渐变公式产生了类似的空间分辨率,并且对于研究的边界值问题范围具有时间分辨率。解释了观察结果,并讨论了其对数值建模的意义。 Crown版权所有(C)2003,由Elsevier Ltd.发行。保留所有权利。 [参考:13]

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