为什么要开发两次?将连续机械材料模型融入周流体力学

PAMM Pub Date : 2024-01-30 DOI:10.1002/pamm.202300026
C. Willberg, Jan‐Timo Hesse, Anna Pernatii, U. Gabbert
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引用次数: 0

摘要

为了充分发挥围动力学方法的潜力,最先进的材料模型应该是可用的,而无需根据经典连续介质力学理论重新开发或重新实施。有限元代码中的用户材料(UMAT)允许研究人员或工程师应用自己的材料例程。规定了简单的接口,以便在软件中使用材料行为。为了在 Peridynamics 中使用这些已经存在并经常验证的模型,我们提出了一个 UMAT 接口。它允许在 Peridynamics 框架 Peridigm 中简化使用现有的材料例程。该接口基于有限元(FE)软件 Abaqus UMAT 定义,允许将 Fortran 例程直接集成到 Peridigm 中。此外,相同的材料模型实现也适用于有限元应用和周动态模拟。在演示中,将介绍该接口以及 Peridynamics 和有限元方法之间使用和比较的各种材料模型。此外,还分析和讨论了地平线和非局部边界的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Why develop twice? Integration of continuum mechanical material models in Peridynamics
To harvest the full potential of the peridynamic approach, the state‐of‐the‐art material models should be usable without redeveloping or reimplementing them from classical continuum mechanics theory. User materials (UMAT) in finite element codes allow the researchers or engineers to apply their own material routines. Simple interfaces are specified to allow the utilization of material behaviors in software. In order to use these already existing and often validated models with Peridynamics, a UMAT interface is presented. It allows the simplified use of already existing material routines in the peridynamic framework Peridigm. The interface is based on the finite element (FE) software Abaqus UMAT definition and allows the integration of Fortran routines directly into Peridigm. In addition, the same material model implementations are applicable in finite element applications as well as peridynamic simulations. In the presentation, the interface is presented and various material models are utilized and compared between Peridynamics and FE methods. The effect of the horizon and nonlocal boundaries are analyzed and discussed.
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