首页> 外文会议>American Society of Mechanical Engineers International Mechanical Engineering Congress and Exposition >AN EXACT THEORETICAL SOLUTION FOR PREDICTING THE APPARENT POISSON'S RATIO OF ARTICULAR CARTILAGE - A CHARGED-HYDRATED BIOLOGICAL TISSUES: THE TRIPHASIC PARADIGM
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AN EXACT THEORETICAL SOLUTION FOR PREDICTING THE APPARENT POISSON'S RATIO OF ARTICULAR CARTILAGE - A CHARGED-HYDRATED BIOLOGICAL TISSUES: THE TRIPHASIC PARADIGM

机译:预测表观泊松与关节软骨比例的精确理论解决方案 - 一种带电水合生物组织:三足球广场

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The triphasic theory has been successfully used to model the mechano-electrochemical behaviors of soft charged hydrated tissue such as articular cartilage. However, the general equations describing such materials are highly complex and nonlinear. In this study, we have linearized these equations with respect to small strains, and using regular perturbation and similarity methods, analytic solutions have been obtained for the lateral expansion of a cylindrical specimen during the unconfined at both steady state, and at short times. Our results showed that the variation of apparent Poisson's ratio is only dependent on an important governing parameter ξ, defined by the ratio of osmotic pressure change due to compression to the elastic stress change. From the short-time solution, the lateral expansion decreased with the square root of time.
机译:三班段理论已成功地模拟软管水合组织的机械化学行为,如关节软骨。 然而,描述这些材料的一般方程是高度复杂和非线性的。 在该研究中,我们已经针对小菌株线性化了这些方程,并且使用常规扰动和相似性方法,已经获得了在稳定状态下的无束状态下圆柱形样品的横向膨胀,并且在短时间内获得了分析溶液。 我们的研究结果表明,表观泊松比的变化仅取决于一个重要的控制参数ξ,由渗透压力变化与弹性应力变化的压缩之比定义。 从短时间解决方案,横向膨胀随着时间的平方根而降低。

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