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首页> 外文期刊>Journal of Biomechanics >A nonlinear anisotropic model for porcine aortic heart valves.
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A nonlinear anisotropic model for porcine aortic heart valves.

机译:猪主动脉心脏瓣膜的非线性各向异性模型。

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The anisotropic property of porcine aortic valve leaflet has potentially significant effects on its mechanical behaviour and the failure mechanisms. However, due to its complex nature, testing and modelling the anisotropic porcine aortic valves remains a continuing challenge to date. This study has developed a nonlinear anisotropic finite element model for porcine heart valves. The model is based on the uniaxial experimental data of porcine aortic heart valve leaflet and the properties of nonlinear composite material. A finite element code is developed to solve this problem using the 8-node super-parameter nonlinear shells and the update Lagrangian method. The stress distribution and deformation of the porcine aortic valves with either uniform and non-uniform thicknesses in closed phase and loaded condition are calculated. The results showed significant changes in the stress distributions due to the anisotropic property of the leaflets. Compared with the isotropic valve at the same loading condition, it is found that the site of the peak stress of the anisotropic leaflet is different; the maximum longitudinal normal stress is increased, but the maximum transversal normal stress and in-plane shear stress are reduced. We conclude that it is very important to consider the anisotropic property of the porcine heart valves in order to understand the failure mechanism of such valves in vivo.
机译:猪主动脉瓣小叶的各向异性对其机械性能和破坏机理具有潜在的重大影响。然而,由于其复杂的性质,迄今为止,各向异性猪主动脉瓣的测试和建模仍然是一个持续的挑战。这项研究已经开发了用于猪心脏瓣膜的非线性各向异性有限元模型。该模型基于猪主动脉心脏瓣膜小叶的单轴实验数据和非线性复合材料的特性。使用8节点超参数非线性壳和更新拉格朗日方法,开发了有限元代码来解决此问题。计算了在封闭相和负载条件下厚度均匀和不均匀的猪主动脉瓣的应力分布和变形。结果表明,由于小叶的各向异性,应力分布发生了显着变化。与相同加载条件下的各向同性阀门相比,各向异性小叶的峰值应力位置有所不同。最大纵向法向应力增加,但是最大横向法向应力和面内剪切应力减小。我们得出结论,考虑猪瓣膜的各向异性特性对于了解这种瓣膜在体内的失效机理非常重要。

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