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首页> 外文期刊>Journal of Biomechanics >Fiber orientation effects in simple shearing of fibrous soft tissues
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Fiber orientation effects in simple shearing of fibrous soft tissues

机译:纤维软组织简单剪切纤维取向效应

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摘要

Abstract Fiber-reinforcement is a common feature of many soft biological tissues. Continuum mechanics modeling of the mechanical response of such tissues using transversely isotropic hyperelasticity is now well developed. The fundamental deformation of simple shear within this framework is examined here. It is well known that the normal stress effect characteristic of nonlinear elasticity plays a crucial role in maintaining a homogeneous deformation state in the bulk of the specimen. Here we consider the effect of anisotropy and fiber-orientation on the shear and normal stresses. It is shown that the confining traction that needs to be applied to the top and bottom faces of a block in order to maintain simple shear can be compressive or tensile depending on the degree of anisotropy and on the angle of orientation of the fibers. In the absence of such an applied traction, an unconfined sample tends to bulge outwards or contract inwards perpendicular to the direction of shear so that one has the possibility of both a positive or negative Poynting effect. The results are illustrated using experimental data obtained by other authors for porcine brain white matter. The general results obtained here are relevant to the development of accurate shear test protocols for the determination of constitutive properties of fibrous biological soft tissues.
机译:摘要纤维增强是许多软生物组织的常见特征。使用横向各向同性超弹性的这种组织的机械响应的连续力学模型现在发达。此框架内简单剪切的基本变形在此处进行检查。众所周知,非线性弹性的正常应力效应特征在维持在样品的大部分中的均匀变形状态方面起着至关重要的作用。在这里,我们考虑各向异性和纤维取向对剪切和正常应力的影响。结果表明,需要将需要施加到块的顶面和底面的限制牵引,以保持简单的剪切可以是压缩的或拉伸,这取决于各向异性的程度和纤维的取向角度。在没有这种施加的牵引力的情况下,不共束缚样品倾向于向外膨胀或垂直于剪切方向向外膨胀,因此具有阳性或负型靶向效应的可能性。使用由其他作者获得的猪脑白质获得的实验数据来说明结果。这里获得的一般结果与用于测定纤维生物软组织的组成性性能的准确剪切试验方案的开发相关。

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