首页> 外文期刊>Journal of Biomechanics >High frequency circular translation pin-on-disk method for accelerated wear testing of ultrahigh molecular weight polyethylene as a bearing material in total hip arthroplasty
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High frequency circular translation pin-on-disk method for accelerated wear testing of ultrahigh molecular weight polyethylene as a bearing material in total hip arthroplasty

机译:高频圆盘针盘法用于全髋关节置换术中超高分子量聚乙烯作为轴承材料的加速磨损测试

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摘要

The temporal change of the direction of sliding relative to the ultrahigh molecular weight polyethylene (UHMWPE) component of prosthetic joints is known to be of crucial importance with respect to wear. One complete revolution of the resultant friction vector is commonly called a wear cycle. It was hypothesized that in order to accelerate the wear test, the cycle frequency may be substantially increased if the circumference of the slide track is reduced in proportion, and still the wear mechanisms remain realistic and no overheating takes place. This requires an additional slow motion mechanism with which the lubrication of the contact is maintained and wear particles are conveyed away from the contact. A three-station, dual motion high frequency circular translation pin-on-disk (HF-CTPOD) device with a relative cycle frequency of 25.3 Hz and an average sliding velocity of 27.4 mm/s was designed. The pins circularly translated at high frequency (1.0 mm per cycle, 24.8 Hz, clockwise), and the disks at low frequency (31.4 mm per cycle, 0.5 Hz, counter-clockwise). In a 22 million cycle (10 day) test, the wear rate of conventional gamma-sterilized UHMWPE pins against polished CoCr disks in diluted serum was 1.8 mg per 24 h, which was six times higher than that in the established 1 Hz CTPOD device. The wear mechanisms were similar. Burnishing of the pin was the predominant feature. No overheating took place. With the dual motion HF-CTPOD method, the wear testing of UHMWPE as a bearing material in total hip arthroplasty can be substantially accelerated without concerns of the validity of the wear simulation. (C) 2014 Elsevier Ltd. All rights reserved.
机译:相对于人工关节的超高分子量聚乙烯(UHMWPE)组件,滑动方向的时间变化已知对磨损至关重要。所得摩擦矢量的完整旋转通常称为磨损循环。假设为了加速磨损测试,如果按比例减小滑道的周长,则可以显着提高循环频率,并且仍然使磨损机制保持现实,并且不会发生过热。这需要附加的慢动作机构,借助该机构,可以保持接触件的润滑并且将磨损颗粒从接触件中移走。设计了一种三工位,双运动的高频圆盘销钉磁盘(HF-CTPOD)装置,其相对循环频率为25.3 Hz,平均滑动速度为27.4 mm / s。插针以高频率(每个周期1.0毫米,顺时针24.8赫兹)圆形移动,磁盘以低频(每个周期31.4毫米,逆时针0.5赫兹)圆形移动。在2200万个周期(10天)的测试中,常规的伽马灭菌的UHMWPE针在稀释的血清中对抛光的CoCr圆盘的磨损率为每24小时1.8 mg,这比已建立的1 Hz CTPOD设备高出六倍。磨损机理相似。抛光销是主要特征。没有发生过热。使用双向运动HF-CTPOD方法,可以大大加快UHMWPE作为全髋关节置换术中的支撑材料的磨损测试,而无需担心磨损模拟的有效性。 (C)2014 Elsevier Ltd.保留所有权利。

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