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ACTIVE FINITE ELEMENT ANALYSIS OF MUSCLE-TENDON COMPLEX

机译:肌腱复合物的积极有限元分析

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A three-dimensional active finite element analysis was conducted by using motor elements and large strain viscoleastic elements to study a skeletal a muscle-tendon complex. The active finite element was created through incorporation of a user-defined sub-program into ABAQUS finite element code. The method of creating the active finite element can also be applied in other commercially available finite element packages. The active finite element is controlled by the motor element that is activated by a mathematical function. The nonlinear passive behavior of the muscle was defined by the large strain viscoelastic elements and can be easily altered to other properties by using other elements in the material library without the need of re-defining the constitutive relation of the muscle. The motion and the stress-strain distribution of the muscle-tendon complex were simulated using the finite element model. With the active finite element method, realistic finite element simulation of not only skeletal muscle or any active structures may be carried out.
机译:通过使用电动元件和大菌株缺陷元素来研究骨骼肌腱复合物的三维主动有限元分析。通过将用户定义的子程序结合到ABAQUS Unitite元件代码中创建了活动的有限元。创建活动有限元的方法也可以应用于其他市售的有限元件包中。主动有限元由由数学函数激活的电动机元件控制。肌肉的非线性被动行为由大应变粘弹性元件限定,并且可以通过使用材料库中的其他元素容易地改变到其他性质,而不需要重新定义肌肉的本构体关系。使用有限元模型模拟肌腱复合物的运动和应力 - 应变分布。利用主动有限元方法,可以进行骨骼肌的现实有限元模拟或可以进行任何有源结构。

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