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Dynamic pre-processing software for the hyperviscoelastic modeling of complex anisotropic biological tissue materials

机译:用于复杂各向异性生物组织材料超粘弹性建模的动态预处理软件

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摘要

Soft biological tissues are complex structures with intricate microstructure, which is usually highly anisotropic. These tissues are typically composed of multiple fiber bundles, which may have a unique orientation, defined for each single element in a large finite element mesh for modeling complex structures such as the human heart. These complex orientations can be difficult to define in an ABAQUS input deck using existing methods. In general, each change in fiber orientation requires a "new material" to be defined. Using the conventional method of defining material properties in ABAQUS is time consuming and, as a result of the large number of input constants required, is prone to errors. It is therefore deemed desirable to create a new means of material property input. The ~(**)CC Cards method presented partitions the material property data for a time-dependent, anisotropic, material response into discrete card images, and thus eliminates much of the redundant data input required by ABAQUS. This strategy is also more efficient, both computationally and from the viewpoint of user time required.
机译:软的生物组织是具有复杂的微观结构的复杂结构,通常是高度各向异性的。这些组织通常由多个纤维束组成,这些纤维束可能具有独特的方向,为大型有限元网格中的每个单个元素定义了方向,以对诸如人类心脏之类的复杂结构进行建模。使用现有方法很难在ABAQUS输入面板中定义这些复杂的方向。通常,纤维取向的每次变化都需要定义“新材料”。在ABAQUS中使用传统的定义材料属性的方法非常耗时,并且由于需要大量的输入常量,因此容易出错。因此,人们希望创建一种新的材料特性输入方法。提出的〜(**)CC卡方法将材料属性数据随时间变化的各向异性材料响应划分为离散的卡图像,从而消除了ABAQUS所需的大量冗余数据输入。从计算和从所需用户时间的角度来看,该策略也更加有效。

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