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Development of a biaxial compression device for biological samples : preliminary experimental results for a closed cell foam

机译:生物样品双轴压缩装置的开发:闭孔泡沫的初步实验结果

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摘要

Biological tissues are subjected to complex loading states in vivo and in order to define constitutive equations that effectively simulate their mechanical behaviour under these loads, it is necessary to obtain data on the tissue's response to multiaxial loading. Single axis and shear testing of biological tissues is often carried out, but biaxial testing is less common. We sought to design and commission a biaxial compression testing device, capable of obtaining repeatable data for biological samples. The apparatus comprised a sealed stainless steel pressure vessel specifically designed such that a state of hydrostatic compression could be created on the test specimen while simultaneously unloading the sample along one axis with an equilibrating tensile pressure. Thus a state of equibiaxial compression was created perpendicular to the long axis of a rectangular sample. For the purpose of calibration and commissioning of the vessel, rectangular samples of closed cell ethylene vinyl acetate (EVA) foam were tested. Each sample was subjected to repeated loading, and nine separate biaxial experiments were carried out to a maximum pressure of 204 kPa (30 psi), with a relaxation time of two hours between them. Calibration testing demonstrated the force applied to the samples had a maximum error of 0.026 N (0.423% of maximum applied force). Under repeated loading, the foam sample demonstrated lower stiffness during the first load cycle. Following this cycle, an increased stiffness, repeatable response was observed with successive loading. While the experimental protocol was developed for EVA foam, preliminary results on this material suggest that this device may be capable of providing test data for biological tissue samples. The load response of the foam was characteristic of closed cell foams, with consolidation during the early loading cycles, then a repeatable load-displacement response upon repeated loading. The repeatability of the test results demonstrated the ability of the test device to provide reproducible test data and the low experimental error in the force demonstrated the reliability of the test data.
机译:生物组织在体内要经受复杂的载荷状态,为了定义本构方程来有效地模拟在这些载荷下的机械行为,有必要获取有关组织对多轴载荷响应的数据。通常对生物组织进行单轴和剪切测试,但双轴测试不太常见。我们试图设计和调试一种双轴压缩测试设备,该设备能够获取生物样品的可重复数据。该设备包括一个专门设计的密封不锈钢压力容器,以便可以在试样上产生静水压缩状态,同时以平衡的拉伸压力沿一个轴卸载试样。因此,垂直于矩形样品的长轴产生了等双轴压缩状态。为了校准和调试容器,对闭孔乙烯醋酸乙烯酯(EVA)泡沫的矩形样品进行了测试。对每个样品进行重复加载,并进行九次单独的双轴实验,最大压力为204 kPa(30 psi),它们之间的弛豫时间为两个小时。校准测试表明,施加到样品上的力的最大误差为0.026 N(最大施加力的0.423%)。在反复加载下,泡沫样品在第一个加载周期中显示出较低的刚度。在此循环之后,随着连续加载,观察到了刚度增加,可重复的响应。虽然针对EVA泡沫开发了实验方案,但有关该材料的初步结果表明,该设备可能能够提供生物组织样品的测试数据。泡沫的载荷响应是闭孔泡沫的特征,在早期载荷循环中发生固结,然后在重复载荷时出现可重复的载荷-位移响应。测试结果的可重复性证明了测试设备能够提供可再现的测试数据的能力,而力的低实验误差证明了测试数据的可靠性。

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