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Plastic Energy Dissipation in Lumbar Spine Implants: A Contact Mechanics Point of View

机译:塑料能量耗散在腰椎植入物:接触力学的观点

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摘要

In this study, an elastoplastic contact model is developed for L_1-L_5 lumbar spine implants. Roughness effect is included to estimate energy loss which is an indication of wear and subsequently the issue of metal debris in body. A Gaussian function is assumed for the distribution of asperities. The contact surfaces of the implants are assumed to be spherical caps. Subsequently, a least-square approach is applied to obtain an approximate expression for the contact force using the data from integration over contact zone. The energy loss is calculated, next, which is due to plastic deformations of asperities. The numerical results indicate that for a given loading-unloading condition, the amount of energy dissipation increases in L_1-L_4 lumbar spine implants, while it decreases from L_4 to L_5 implants. The implants geometrical specifications are chosen to cover a wide range of patients' age. Finally, a closed-form expression is obtained for the plastic energy dissipation per cycle in terms of plasticity index for the lumbar spine L_4, as the worst-case scenario. Such a function can serve as a very useful tool for implant designers and manufacturers.
机译:在这项研究中,一个弹塑性接触模型开发L_1-L_5腰脊柱植入物。粗糙度效应包括估计的能量这是一个迹象磨损和丢失随后金属碎片在身体的问题。高斯函数分布的假定艰苦的条件。植入物被假定为球形帽。随后,应用最小二乘方法获得的近似表达式接触力使用的数据集成在接触区。接下来,这是由于塑性变形艰苦的条件。对于一个给定的装卸条件,能量耗散增加L_1-L_4腰脊柱植入物,虽然减少L_4 L_5植入物。规范涵盖广泛病人的年龄。表达式是塑料获得能量每周期耗散的可塑性腰椎L_4指数,是最坏的场景。植入设计师和有用的工具制造商。

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