首页> 外文期刊>Journal of Biomechanics >Cross-shear implementation in sliding-distance-coupled finite element analysis of wear in metal-on-polyethylene total joint arthroplasty: intervertebral total disc replacement as an illustrative application.
【24h】

Cross-shear implementation in sliding-distance-coupled finite element analysis of wear in metal-on-polyethylene total joint arthroplasty: intervertebral total disc replacement as an illustrative application.

机译:在金属-聚乙烯全关节置换术中磨损的滑动距离耦合有限元分析中的交叉剪切实现:作为示例性应用的椎间盘置换。

获取原文
获取原文并翻译 | 示例
           

摘要

Computational simulations of wear of orthopaedic total joint replacement implants have proven to valuably complement laboratory physical simulators, for pre-clinical estimation of abrasive/adhesive wear propensity. This class of numerical formulations has primarily involved implementation of the Archard/Lancaster relationship, with local wear computed as the product of (finite element) contact stress, sliding speed, and a bearing-couple-dependent wear factor. The present study introduces an augmentation, whereby the influence of interface cross-shearing motion transverse to the prevailing molecular orientation of the polyethylene articular surface is taken into account in assigning the instantaneous local wear factor. The formulation augment is implemented within a widely utilized commercial finite element software environment (ABAQUS). Using a contemporary metal-on-polyethylene total disc replacement (ProDisc-L) as an illustrative implant, physically validated computational results are presented to document the role of cross-shearing effects in alternative laboratory consensus testing protocols. Going forward, this formulation permits systematically accounting for cross-shear effects in parametric computational wear studies of metal-on-polyethylene joint replacements, heretofore a substantial limitation of such analyses.
机译:骨科全关节置换植入物磨损的计算模拟已被证明可为实验室物理模拟器提供有价值的补充,用于临床前评估磨料/粘合剂的磨损倾向。此类数值公式主要涉及到Archard / Lancaster关系的实现,其局部磨损是由(有限元)接触应力,滑动速度和与轴承耦合相关的磨损因子的乘积来计算的。本研究引入了一种增强,从而在分配瞬时局部磨损因子时考虑了横向于聚乙烯关节表面主要分子取向的界面交叉剪切运动的影响。在广泛使用的商业有限元软件环境(ABAQUS)中实施配方增强。使用当代的聚乙烯上金属全椎间盘置换术(ProDisc-L)作为示例性植入物,提出了经过物理验证的计算结果,以证明交叉剪切效应在替代实验室共识测试方案中的作用。展望未来,该公式允许系统地考虑金属-聚乙烯接头替代物的参数计算磨损研究中的交叉剪切效应,迄今为止,此类分析存在很大局限性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号