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首页> 外文期刊>Biomechanics and Modeling in Mechanobiology >Singularity solution of Lanir’s osmoelasticity: verification of discontinuity simulations in soft tissues
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Singularity solution of Lanir’s osmoelasticity: verification of discontinuity simulations in soft tissues

机译:Lanir渗透弹性的奇异性解决方案:验证软组织中的不连续性模拟

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摘要

The literature characterizes cartilaginous tissues as osmoviscoelastic. Understanding the damage and failure of these tissues is essential for designing treatments. To determine tissue strength and local stresses, experimental studies—both clinical and animal—are generally supported by computational studies. Verification methods for computational studies of ionized porous media including cracks are hardly available. This study provides a method for verification and shows its performance. For this purpose, shear loading of a finite crack is addressed analytically and through a commercial finite element code. Impulsive shear loading by two-edge dislocation of a crack was considered in a 2D plane strain model for an ionized porous medium. To derive the analytical solution, the system of equation is decoupled by stress functions. The shear stress distribution at the plane of the crack is derived using Fourier and Laplace transformations. The analytical solution for the shear stress distribution is compared with computer simulations in ABAQUS version 6.4-5. Decoupling of the equations makes it possible to solve some boundary value problems in porous media taking chemical effects into account. The numerical calculations underestimate the shear stress at the crack-tips. Mesh refinement increases accuracy, but is still low in the neighborhood of the crack-tips.
机译:文献将软骨组织表征为渗透粘弹性。了解这些组织的损伤和衰竭对于设计治疗至关重要。为了确定组织的强度和局部应力,计算研究通常支持实验研究(包括临床和动物实验)。几乎没有用于计算电离多孔介质包括裂纹的验证方法。这项研究提供了一种验证方法并显示了其性能。为此,通过商业上的有限元代码来分析解决有限裂纹的剪力问题。对于离子化多孔介质,在二维平面应变模型中考虑了裂纹的两边错位引起的脉冲剪切载荷。为了得出解析解,方程组通过应力函数解耦。使用傅立叶和拉普拉斯变换得出裂纹平面处的切应力分布。将剪应力分布的解析解与ABAQUS版本6.4-5中的计算机仿真进行了比较。方程的解耦使得有可能在考虑化学作用的情况下解决多孔介质中的一些边界值问题。数值计算低估了裂纹尖端处的剪切应力。网格细化可以提高精度,但在裂纹尖端附近仍然较低。

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