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首页> 外文期刊>Journal of Biomechanics >Poroelastic finite element analysis of a bone specimen under cyclic loading.
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Poroelastic finite element analysis of a bone specimen under cyclic loading.

机译:循环荷载作用下骨标本的多孔弹性有限元分析。

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It had been suggested that the fluid embodied in bone lacunar-canalicular porosity may play an important role in bone remodelling [Weinbaum et al., 1994. Journal of Biomechanics 27, 339-360]. In this paper a finite element model of a poroelastic prismatic solid of rectangular cross-section is considered to simulate bone behaviour, precisely as in the previous work by Zhang and Cowin [Zhang and Cowin, 1994. Journal of Mechanical Physics of Solids 42, 1575-1599]. This solid is subject to combined cyclic axial and bending loads at its end. The objectives of the study are: (1) to verify the accuracy of the simplifying hypotheses underlying the analytical solutions established by the above authors; (2) to provide further insight into the behaviour of that solid; (3) to test the advantages in generality and versatility and the computing costs of general-purpose finite element codes in poroelastic analysis. The study is parametric with respect to the fluid leakage coefficient, to the ratio of the bending moment and axial load, and to the ratio of the characteristic relaxation time of the pore pressure over the excitation period. Results show that, for all the cases considered, the pore pressure distribution along the section height of the poroelastic beam exhibits a very good matching with previous analytical results. Stresses transversal with respect to the beam axis (assumed as constant or zero in previous analytical solutions) are evaluated. The analysis pointed out that: (1) the effects due to end-loads with zero resultants practically extinguish within a distance from the beam end almost equal to a typical length of the cross-section; (2) cross-sections remain plane above that distance; (3) the transversal total stresses are three orders of magnitude lower than axial stress.
机译:已经提出,在骨腔-小管孔隙中包含的流体可能在骨重塑中起重要作用[Weinbaum等,1994.Journal of Biomechanics 27,339-360]。在本文中,矩形截面的多孔弹性棱柱体的有限元模型被认为可模拟骨骼行为,正像Zhang和Cowin [Zhang和Cowin,1994年的先前工作。固体力学42,1575) -1599]。该实体在其端部承受组合的轴向和弯曲循环载荷。本研究的目的是:(1)验证上述作者建立的分析解决方案背后的简化假设的准确性; (2)进一步了解该固体的行为; (3)在多孔弹性分析中测试通用性和通用性的优势以及通用有限元代码的计算成本。该研究是关于渗漏系数,弯矩与轴向载荷之比以及在激发期间孔隙压力的特征弛豫时间之比而言是参数化的。结果表明,在所有考虑的情况下,沿多孔弹性梁截面高度的孔隙压力分布都与以前的分析结果非常吻合。评估相对于束轴的横向应力(在先前的分析解决方案中假定为恒定或零)。分析指出:(1)零载荷引起的端部载荷所产生的影响实际上在距梁端的距离几乎等于典型横截面长度的范围内消失; (2)横截面在该距离上方保持平面; (3)横向总应力比轴向应力低三个数量级。

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