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High rate failure properties of porcine aortic tissue under uniaxial tension

机译:单轴张力下猪主动脉组织的高速率衰竭性能

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Traumatic aortic rupture (TAR) is believed to be the second most common cause of fatality associated with motor vehicle crashes(MVCs) with substantial societal and economic burdens. TAR in motor vehicle crashes is caused by a complex state of deformation progressing at high strain rates. A major step to gain insight into the possible mechanisms of TAR is to understand the mechanical behaviour of aortic tissue under loading conditions that leads to injury and failure. This study reports a total of 29 uniaxial tensile tests performed on porcine aortic tissue in the longitudinal and circumferential direction of loading. Uniaxial tensile tests were performed at targetted strain rates of 0.01/s, 70/s, 150/s and 250/s to failure. Engineering stresses reported in the study is calculated from the ratio of interially compensated measured force and initial cross sectional area whereas true strain is calculated by tracking the markers on the specimen surface using Matlab(TM) based digital image correlation (DIC) tool. The load - deformation behaviour of porcine aorta is found to be Non-Hookean and strain rate dependent with higher stiffness in circumferential direction compared to the longitudinal direction indicating the anisotropic behaviour of the tissue. As strain rate increased to 250/s, the failure stress ranged from 1.64 MPa to 4.84 MPa and 1.98 MPa to 7.05 MPa for longitudinal and circumferential tissues respectively. For the same range of strain rate, failure strain ranged from 26% to 37% and 24% to 42% and the elastic modulus changed from 9.42 MPa to 31 MPa and 12.33 MPa to 51 MPa for longitudinal and circumferential tissues respectively.
机译:创伤性主动脉破裂(焦油)被认为是与机动车崩溃(MVC)相关的第二个最常见的致命原因,具有实质性和经济负担。机动车辆撞车撞击是由高应变率的复杂变形状态引起的。深入了解焦油可能机制的重要步骤是了解在导致伤害和失败的加载条件下主动脉组织的机械行为。该研究报告了在纵向和圆周装载中对猪主动脉组织进行了29个单轴拉伸试验。单轴拉伸试验以0.01 / s,70 / s,150 / s和250 / s的靶向菌株率进行。在该研究中报道的工程应力由相互补偿的测量力和初始横截面积的比率计算,而使用基于MATLAB(TM)的数字图像相关(DIC)工具通过跟踪样品表面上的标记来计算真正的应变。与纵向指示组织的各向异性行为的纵向相比,发现猪主动脉的负荷和应变速率在圆周方向上与圆周方向上的较高刚度相比。随着应变速率增加至250 / s时,断裂应力的范围为1.64 MPa至4.84 MPa和1.98 MPa至7.05兆帕为纵向和圆周的组织。对于相同的应变速率范围,失效应变为26%至37%,24%至42%,弹性模量分别为纵向和周向组织的9.42MPa至31MPa和12.33MPa至51MPa。

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