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A Simplified Model for Contact Mechanics of Articular Cartilage and Mating Bones Using Bond Graph

机译:使用粘合图的关节软骨和配合骨骼联系机械的简化模型

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Articular cartilage is a soft tissue between the mating bones of a synovial joint. It prevents direct contact while facilitating load carriage and lubrication with very low friction and wear. Modeling of a synovial joint involves nonuniform geometry of mating bones, available from point cloud data, separated by cartilage. This work proposes a simplified yet efficient model of a ball dropped in a bowl lined with a cartilage layer, to emulate the contact mechanics between mating bones. Multibond graph submodels for the ball and bowl are used to represent their rigid body mechanics. The nature of the intervening cartilage layer is characterized by a nonlinear C-field. Simulation code has been written algorithmically, directly from the bond graph model. Results indicate that the proposed model holds significant promise for applications in biomechanics.
机译:关节软骨是滑膜接头的配合骨之间的软组织。它可以防止直接接触,同时促进负载托架和润滑具有非常低的摩擦和磨损。滑动关节的建模涉及配合骨骼的非均匀几何形状,可从点云数据提供,由软骨分开。这项工作提出了一种在用软骨层内衬的碗中掉落的球的简化且有效的型号,以仿真配合骨骼之间的接触机构。用于球和碗的多变压图模型用于代表其刚体机制。介入软骨层的性质的特征在于非线性C字段。仿真代码已直接从键合图模型写入算法。结果表明,拟议的模型对生物力学中的应用具有重要的承诺。

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