Yang W, Fung T C, Chian K S, Chong C K
School of Civil and Environmental Engineering, Nanyang Technological University, Singapore.
J Biomech Eng. 2006 Dec;128(6):909-16. doi: 10.1115/1.2372473.
The time-dependent mechanical properties of the porcine esophagus were investigated experimentally and theoretically. It was hypothesized that the viscoelasticity was quasilinear, i.e., the time and strain effects were independent. In order to verify the separability of time and strain effects, the stress-relaxation test was conducted at various strains and the data were fitted with the Fung's quasilinear viscoelastic (QLV) model. By using the material parameters obtained from the stress relaxation test, the cyclic peak stress and hysteresis were predicted. Results showed that the stress relaxed by 20-30% of the peak stress within the first 10 s and stabilized at approximately 50% at the time of 300 s. The relative stress relaxation R(2) (i.e., the difference of stress at a particular time to the final equilibrium stress normalized by the total difference of the peak and final stress) was not different significantly for various strains. It was also found that, by using the stress-time data during both the ramp and relaxation phases, the correlation between parameters was substantially reduced. The model could also predict the cyclic peak stress and hysteresis except for the underestimate of valley stress. We conclude that the QLV model could be used as the material characterization of the esophageal tissue.
对猪食管的时间依赖性力学性能进行了实验和理论研究。假设其粘弹性为准线性,即时间和应变效应相互独立。为了验证时间和应变效应的可分离性,在不同应变下进行了应力松弛试验,并将数据与冯氏准线性粘弹性(QLV)模型进行拟合。利用从应力松弛试验中获得的材料参数,预测了循环峰值应力和滞后现象。结果表明,应力在最初10秒内松弛了峰值应力的20%-30%,并在300秒时稳定在约50%。不同应变下的相对应力松弛R(2)(即特定时间的应力与最终平衡应力之差,通过峰值应力与最终应力的总差值进行归一化)无显著差异。还发现,通过使用斜坡和松弛阶段的应力-时间数据,参数之间的相关性大幅降低。该模型除了低估谷值应力外,还能预测循环峰值应力和滞后现象。我们得出结论,QLV模型可用于食管组织的材料表征。