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Three-dimensional stress and strain distribution in a two-layer model of a coronary artery

机译:两层冠状动脉模型中的三维应力和应变分布

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摘要

For a right coronary artery, three-dimensional stress and strain distributions at a physiological intraluminal pressure and an axial extension ratio were computed on the basis of a two-layer elastic model. To validate the model, curves of external radius versus pressure and of axial force versus pressure were computed for three axial extension ratios. To analyze mechanical properties, stressfree configurations of media and adventitia, and the constitutive law of each layer in literature, were used. The present study showed that the peak circumferential stress and the peak axial stress appear in the media at the boundary between the media and adventitia. This result is due to the opening angle of the media being larger than π ( rad) and the larger value of a material constant of the strain energy function for the media than for the adventitia. The circumferential stress and strain were discontinuous at the boundary. On the other hand, the radial stress was continuous at the boundary because of the boundary condition for stress. The circumferential stress and axial stress in the adventitia were almost uniformly distributed, and smaller than in the media. The residual stress and strain were also computed. The circumferential residual stress and strain were almost linearly distributed in each layer, although discontinuity appeared at the boundary between the two layers.
机译:对于右冠状动脉,基于两层弹性模型计算了在生理腔内压力和轴向延伸率下的三维应力和应变分布。为了验证该模型,针对三个轴向延伸率计算了外径与压力的关系曲线以及轴向力与压力的关系曲线。为了分析力学性能,使用了介质和外膜的无应力配置以及文献中每层的本构律。本研究表明,在介质与外膜之间的边界处,介质中出现了峰值周向应力和轴向峰值应力。该结果是由于介质的开口角度大于π(rad),并且介质的应变能函数的材料常数的材料常数大于外膜。圆周应力和应变在边界处是不连续的。另一方面,由于应力的边界条件,径向应力在边界处是连续的。外膜中的周向应力和轴向应力几乎均匀分布,并且比介质中的要小。还计算了残余应力和应变。尽管在两层之间的边界处出现了不连续性,但在每层中的圆周残余应力和应变几乎呈线性分布。

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