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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Prediction of circumferential compliance and burst strength of polymeric vascular grafts
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Prediction of circumferential compliance and burst strength of polymeric vascular grafts

机译:预测聚合物血管移植的圆周顺应性和突发强度

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摘要

Abstract The circumferential compliance and burst strength of vascular grafts are predicted through the conically modified von Mises and elasticity theories, providing an analytical closed form solution for both parameters. Besides the graft's radii, the model for circumferential compliance depends solely on the elastic modulus and Poisson's ratio of the polymer material, and its accuracy was verified by finite element analysis and measurements. The analytical expression of the burst strength requires accurate determination of the material's tensile and compressive yield stress, which were carefully obtained by using digital image correlation measurements in uniaxial tensile and compressive tests of the constitutive material. The average measured circumferential compliance and burst strength of an 8mm graft made of a commonly used biomaterial, Tecoflex ? SG-80A, are 1.05%/100mmHg -1 and 34.1psi (1763mmHg) and the proposed analytical predictions fall within the experimental scattering. Thus, it is shown that the circumferential compliance and burst strength of vascular grafts can be analytically predicted by knowing the elastic and yield material properties accurately, without needing to actually test the graft under radial pressure. This is a major advantage which can aid in the design and tailoring of vascular grafts. Graphical abstract Display Omitted Highlights ? A solution for the compliance and burst strength of vascular grafts is proposed. ? The analytical solution considers a 3D state of stress and elasticity theory. ? The input material properties are measured through digital image correlation. ? The predicted results agree with measured values.
机译:摘要通过截然型Von误法和弹性理论来预测血管移植物的周向顺应性和突发强度,为两个参数提供分析闭合形式解决方案。除了移植的半径之外,圆周顺应性的模型仅取决于弹性模量和泊松的聚合物材料的比例,并通过有限元分析和测量来验证其精度。突发强度的分析表达需要精确测定材料的拉伸和压缩屈服应力,通过使用组成型材料的单轴拉伸和压缩测试中的数字图像相关测量来仔细地获得。由常用的生物材料,Tecoflex制成的8mm移植物的平均圆周顺应性和突发强度? SG-80A,为1.05%/ 100mMHG -1和34.1PSI(1763MMHG),所提出的分析预测属于实验散射。因此,示出了通过准确地知道弹性和产量材料特性,可以在不需要在径向压力下实际测试移植物来分析血管移植物的周向顺应性和突发强度。这是一个可以帮助设计和剪裁的血管移植物的主要优点。图形抽象显示省略了亮点?提出了血管移植物的顺应性和突发强度的解决方案。还分析解决方案认为压力和弹性理论的3D状态。还通过数字图像相关来测量输入材料特性。还预测结果同意测量值。

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