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在 Abaqus 软件中实现纤维结缔组织的损伤。

On implementation of fibrous connective tissues' damage in Abaqus software.

机构信息

Department of Mechanics of Materials and Structures, Faculty of Civil and Environmental Engineering, Gdańsk University of Technology, Narutowicza 11/12, 80-233 Gdańsk, Poland.

Department of Mechanics of Materials and Structures, Faculty of Civil and Environmental Engineering, Gdańsk University of Technology, Narutowicza 11/12, 80-233 Gdańsk, Poland.

出版信息

J Biomech. 2023 Aug;157:111736. doi: 10.1016/j.jbiomech.2023.111736. Epub 2023 Jul 21.

Abstract

Connective fibrous tissues, such as tendons and ligaments, in humans and animals exhibit hyperelastic behaviour. The constitution of the material of these tissues is anisotropic due to the presence of the collagen fibres, where one family of fibres is the typical case. Traumatic events and/or aging may sometimes lead to the damage of the tissue. The study of motion of affected joints or limbs is usually not permitted in vivo. This is where finite element method (FEM) becomes useful as a premise for general analysis, surgical planning or designing of implants and medical treatment. One of the most often used FEM commercial programs is the field of the biomechanics is Abaqus. The present study discusses the potential of user subroutine UANISOHYPER_INV in this code to analyse response of transversely isotropic tissue with damage in quasi-static range. This subroutine requires providing the material energy function and its derivatives only. The stress tensor and constitutive matrix are computed by the software automatically. To the best of the Authors' knowledge this procedure provides the easiest way to simulate the anisotropic hyperelastic material behaviour in Abaqus. In this study its usage is extended onto the damage response simulation. The verification of the approach and its validation against experimental data indicates its efficiency.

摘要

在人类和动物中,连接纤维组织(如肌腱和韧带)表现出超弹性行为。由于存在胶原纤维,这些组织的材料结构具有各向异性,其中一类纤维是典型情况。创伤事件和/或衰老有时可能导致组织损伤。在体内通常不允许研究受影响的关节或肢体的运动。这就是有限元方法(FEM)变得有用的地方,它可以作为一般分析、手术规划或植入物和医疗治疗设计的前提。最常使用的 FEM 商业程序之一是生物力学领域的 Abaqus。本研究讨论了在准静态范围内分析具有损伤的横向各向同性组织的响应时,该代码中用户子程序 UANISOHYPER_INV 的潜力。该子程序仅需要提供材料能量函数及其导数。软件自动计算应力张量和本构矩阵。据作者所知,这种方法提供了在 Abaqus 中模拟各向异性超弹性材料行为的最简单方法。在本研究中,它的用途扩展到了损伤响应模拟。方法的验证及其对实验数据的验证表明了它的效率。

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