首页> 外文期刊>The Journal of arthroplasty >The effects of acetabular shell deformation and liner thickness on frictional torque in ultrahigh-molecular-weight polyethylene acetabular bearings.
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The effects of acetabular shell deformation and liner thickness on frictional torque in ultrahigh-molecular-weight polyethylene acetabular bearings.

机译:髋臼壳变形和衬套厚度对超高分子量聚乙烯髋臼轴承摩擦扭矩的影响。

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摘要

The purposes of this study were to determine if there were differences in the frictional torque generated between spherical acetabular shells and acetabular shells deformed as a result of implantation and to evaluate how changes in polyethylene insert thickness and head diameter affected these frictional torque data. An established bench top model was used for mechanical testing. A total of 70 samples were tested. Acetabular shells were impacted into polyurethane foam that was designed to create spherical or deformed shell models. We found that deformed acetabular shells produced higher frictional torque than spherical shells. Also, larger femoral head sizes produced greater frictional torque than smaller femoral head sizes. For the deformed models, the thicker polyethylene inserts produced greater frictional torque than the thinner polyethylene inserts.
机译:这项研究的目的是确定球形髋臼壳和由于植入而变形的髋臼壳之间产生的摩擦扭矩是否存在差异,并评估聚乙烯插入物厚度和头部直径的变化如何影响这些摩擦扭矩数据。建立的台式模型用于机械测试。总共测试了70个样品。将髋臼壳撞击到聚氨酯泡沫塑料中,该泡沫塑料旨在创建球形或变形的壳模型。我们发现变形的髋臼壳比球形壳产生更高的摩擦扭矩。而且,较大的股骨头比较小的股骨头产生更大的摩擦扭矩。对于变形模型,较厚的聚乙烯插件比较薄的聚乙烯插件产生更大的摩擦扭矩。

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