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Symbolic derivation of potential based constitutive equations

机译:基于势的本构方程的符号推导

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摘要

Structural alloys used in high temperature applications exhibit complex thermomechanical behavior that is inherently time dependent and hereditary, as the current behavior depends not only on current conditions but on the thermomechanical history. Derivation of mathematical expressions (constitutive equations) which describe this high temperature material behavior can be quite time consuming, involved, and error-prone, thus intelligent application of symbolic systems to facilitate this tedious processes can be of significant benefit. Here a computerized package, running under MACSYMA, capable of efficiently deriving potential based constitutive models, in analytical form (involving tensors, partial differentiation, invariants, and the like) is presented. Special purpose utility algorithms are designed and implemented to perform partial differentiation (chain rule), tensor manipulation, case distinction and simplification. Four constitutive theories reported in the literature are utilized to verify implementation accuracy. It is expected that this symbolic package can and will provide a significant incentive to the development of new constitutive theories.
机译:用于高温应用的结构合金表现出复杂的热机械行为,这种行为本质上是时间依赖性和遗传性的,因为当前行为不仅取决于当前条件,还取决于热机械历史。推导描述这种高温材料行为的数学表达式(本构方程)可能非常耗时、复杂且容易出错,因此智能应用符号系统来促进这一繁琐的过程可能会带来显着的好处。这里提出了一个在MACSYMA下运行的计算机化软件包,能够以分析形式(涉及张量、偏微分、不变量等)有效地推导基于势的本构模型。设计和实现专用效用算法以执行部分微分(链式规则)、张量操作、大小写区分和简化。文献中报道的四种本构理论被用来验证实现的准确性。预计这一象征性一揽子计划能够而且将会为新本构理论的发展提供重大激励。

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  • 来源
    《computational mechanics》 |2004年第3期|237-246|共页
  • 作者

    S.M.Arnold; H.Q.Tan;

  • 作者单位

    National Aeronautics and Space Administration;

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  • 原文格式 PDF
  • 正文语种 英语
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