首页> 外文OA文献 >Compliant layer acetabular cups : friction testing of a range of materials and designs for a new generation of prosthesis which mimics the natural joint.
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Compliant layer acetabular cups : friction testing of a range of materials and designs for a new generation of prosthesis which mimics the natural joint.

机译:顺应性髋臼杯:用于模拟天然关节的新一代假体的多种材料和设计的摩擦测试。

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摘要

Total joint replacements (TJRs) have a limited lifetime, but the introduction of components that exhibit good lubricating properties with low friction and low wear could extend the life of TJRs. A novel acetabular cup design using polyurethane (PU) as a compliant layer (to mimic the natural joint) has been developed. This study describes a series of friction tests that have been used to select the most appropriate material, optimize the design parameters, and fine-tune the manufacturing processes of these joints. To determine accurately the mode of lubrication under which these joints operate, a synthetic lubricant was used in all these tests. Friction tests were carried out to assess the lubrication of four PU bearing materials. Corethane 80A was the preferred material and was subjected to subsequent testing. Friction tests conducted on acetabular cups, manufactured using Corethane 80A articulating against standard, commercially available femoral heads, demonstrated friction factors approaching those for full-fluid-film lubrication with only approximately 1 per cent asperity contact. As the joint produces these low friction factors within less than half a walking cycle after prolonged periods of loading, start-up friction was not considered to be a critical factor. Cups performed well across the full range of femoral head sizes, but a number of samples manufactured with reduced radial clearances performed with higher than expected friction. This was caused by the femoral head being gripped around the equator by the low clearance cup. To avoid this, the cup design was modified by increasing the flare at the rim. In addition to this the radial clearance was increased. As the material is incompressible, a radial clearance of 0.08 mm was too small for a cup diameter of 32 mm. A clearance of between 0.10 and 0.25 mm produced a performance approaching full-fluid-film lubrication. This series of tests acted as a step towards the optimization of the design of these joints, which has now led to an in vivo ovine model.
机译:全关节置换(TJR)的寿命有限,但是引入具有良好润滑性能,低摩擦和低磨损的组件可以延长TJR的寿命。已经开发出一种新颖的髋臼杯设计,该设计使用聚氨酯(PU)作为顺应层(模仿天然关节)。这项研究描述了一系列摩擦测试,这些摩擦测试已用于选择最合适的材料,优化设计参数以及微调这些接头的制造过程。为了准确确定这些接头的润滑方式,在所有这些测试中均使用了合成润滑剂。进行摩擦测试以评估四种聚氨酯轴承材料的润滑性。乙烷80A是首选材料,并接受了后续测试。在髋臼杯上进行的摩擦测试表明,该摩擦杯使用可与标准的市售股骨头铰接的Corethane 80A制造,显示摩擦系数接近全流体膜润滑的摩擦系数,只有大约1%的粗糙接触。由于关节在长时间的加载后不到半个步行周期内会产生这些低摩擦系数,因此启动摩擦被认为不是关键因素。杯在整个股骨头尺寸范围内均表现良好,但许多制造的径向间隙减小的样品的摩擦力却高于预期。这是由于低间隙杯将股骨头夹在赤道周围。为了避免这种情况,通过增加边缘的喇叭口来修改杯子的设计。除此之外,径向间隙增加了。由于材料是不可压缩的,因此对于32毫米的杯子直径,0.08毫米的径向间隙太小。在0.10到0.25 mm之间的间隙产生的性能接近全流膜润滑。这一系列测试是朝着优化这些关节设计迈出的一步,现在已经形成了体内绵羊模型。

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