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The role of viscoelasticity of collagen fibers in articular cartilage: Theory and numerical formulation

机译:胶原纤维的粘弹性在关节软骨中的作用:理论和数值公式

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The relative importance of fluid-dependent and fluid-independent transient mechanical behavior in articular cartilage was examined for tensile and unconfined compression testing using a fibril reinforced model. The collagen matrix of articular cartilage was modeled as viscoelastic using a quasi-linear viscoelastic formulation with strain-dependent elastic modulus, while the proteoglycan matrix was considered as linearly elastic. The collagen viscoelastic properties were obtained by fitting experimental data from a tensile test. These properties were used to investigate unconfined compression testing, and the sensitivity of the properties was also explored. It was predicted that the stress relaxation observed in tensile tests was not caused by fluid pressurization at the macroscopic level. A multi-step tensile stress relaxation test could be approximated using a hereditary integral in which the elastic fibrillar modulus was taken to be a linear function of the fibrillar strain. Applying the same formulation to the radial fibers in unconfined compression, stress relaxation could not be simulated if fluid pressurization were absent. Collagen viscoelasticity was found to slightly weaken fluid pressurization in unconfined compression, and this effect was relatively more significant at moderate strain rates. Therefore, collagen viscoelasticity appears to play an import role in articular cartilage in tensile testing, while fluid pressurization dominates the transient mechanical behavior in compression. Collagen viscoelasticity plays a minor role in the mechanical response of cartilage in unconfined compression if significant fluid flow is present.
机译:使用原纤维增强模型检查了关节软骨中与液体有关和与液体无关的瞬态力学行为的相对重要性,以进行拉伸和无侧限压缩测试。使用具有依赖于应变的弹性模量的准线性粘弹性制剂将关节软骨的胶原基质建模为粘弹性,而将蛋白聚糖基质视为线性弹性。通过拟合来自拉伸试验的实验数据获得胶原的粘弹性。这些属性用于调查无边压缩测试,还探讨了属性的敏感性。可以预料,在拉伸试验中观察到的应力松弛不是由宏观水平的流体加压引起的。多步拉伸应力松弛测试可以使用遗传积分进行近似,其中将弹性原纤维模量视为原纤维应变的线性函数。在无限制压缩的情况下将相同的配方应用于径向纤维,如果没有流体加压,则无法模拟应力松弛。发现胶原蛋白的粘弹性在无侧限压缩中略微减弱了流体加压,并且在中等应变速率下这种作用相对更为显着。因此,胶原蛋白的粘弹性似乎在拉伸试验中在关节软骨中起重要作用,而流体加压则在压缩过程中支配了瞬态力学行为。如果存在显着的流体流动,胶原蛋白的粘弹性在无限制压缩中软骨的机械反应中起次要作用。

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