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$1SPH method applied to compression of solid materials for a variety of loading conditions

机译:$ 1SPH方法适用于各种加载条件下的固体材料压缩

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摘要

Smoothed Particle Hydrodynamics (SPH) is a numerical method that does not use a mesh or grid when solving a set of partial differential equations. This makes it particularly useful in application to solid mechanics problems where the sample undergoes large deformation. Whereas mesh-based methods have difficulty when the sample becomes severely distorted, SPH naturally deals with this important engineering scenario. We implement the SPH method for compressional deformation of solid samples and focus on uniaxial, biaxial and triaxial loading. We develop numerical procedures that naturally deal with these three different sets of boundary conditions and apply it to both small and larger strains in elastic and more complex materials. The method is shown to be robust up to large strains of 30%. Under uniaxial loading, a cylindrical sample tends to deform by bulging while under triaxial loading the cylindrical sample will remain cylindrical, but the diameter of the sample increases accordingly.
机译:平滑粒子流体动力学(SPH)是一种数值方法,在求解一组偏微分方程组时不使用网格或网格。这使其特别适用于样品经受大变形的固体力学问题。当样品严重变形时,基于网格的方法会遇到困难,而SPH自然可以处理这种重要的工程情况。我们对固体样品的压缩变形实施SPH方法,并专注于单轴,双轴和三轴载荷。我们开发了自然地处理这三组不同边界条件的数值程序,并将其应用于弹性和较复杂材料中的较小和较大应变。该方法显示出对高达30%的大应变的鲁棒性。在单轴载荷下,圆柱形样品易于因鼓胀而变形,而在三轴载荷下,圆柱形样品将保持圆柱形,但样品直径会相应增加。

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