首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >A Tribological Study of UHMWPE Acetabular Cups and Polyurethane Compliant Layer Acetabular Cups
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A Tribological Study of UHMWPE Acetabular Cups and Polyurethane Compliant Layer Acetabular Cups

机译:UHMWPE髋臼杯和聚氨酯顺应层髋臼杯的摩擦学研究

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A novel design of polyurethane compliant layer acetabular cup has been developed through a series of friction, creep and wear tests. Friction tests were initially conducted on ABG standard form, polyurethane acetabular cups and an ABG standard form, UHMWPE acetabular cup for comparison. The polyurethane cups showed lower friction than the UHMWPE cup with maximum friction factors between 0.008 and 0.02 compared with 0.035 for the UHMWPE cup. This indicated that, in the polyurethane cups, more of the load across the joint was carried by the fluid entrapped in the joint space rather than with asperity contact, compared with the UHMWPE cup. The inherent compliance of the polyurethane is used to promote elasto-hydrodynamic lubrication. However, this compliance raised concerns over excessive creep, which may in turn adversely affect tribological performance. Therefore, creep tests were undertaken on the ABG standard form, polyurethane acetabular cups followed by further friction tests. Small amounts of creep occurred in the polyurethane cups at ambient temperature, which reduced the friction slightly (maximum friction factors of 0.009) due to increased conformity between the head and the cup. However, at 37 deg C, greater creep occurred causing pinching of the femoral head by the acetabular cup resulting in lubricant starvation and higher friction (maximum friction factors of 0.035). The design of the polyurethane cups was subsequently modified to incorporate a flared rim to eliminate the possibility of fluid starvation through pinching. Creep in polyurethane acetabular cups is also affected by the method of fixation of the cups, due to the conformity with and the stiffness of the cup backing. Hence, a one-million-cycle wear test was performed on five ABG flared form, polyurethane acetabular cups on the Mk. I Durham Hip Joint Wear Simulator to evaluate the best method of fixation for the polyurethane cups. The smallest amount of penetration, due to creep and wear, was found with cement fixation (0.30 mm penetration with cement fixation, 0.44 mm with polyethylene holder mounting, and 0.52 mm with metal shell mounting). A 4.25-million-cycle wear test was then conducted on a further five ABG flared form, polyurethane acetabular cups with cement fixation. Five ABG standard form, UHMWPE acetabular cups were also wear-tested to 5.0-million cycles. The mean and standard error of the wear rate for the polyurethane cups were 14.1+-4.3 mg/10~6 (12.0+-3.6 mm~3/10~6), cycles compared with 44.8+-3.4 mg/10~6 (48.2+-3.7 mm~3/10~6), cycles for the UHMWPE cups. This study showed that the novel polyurethane-compliant layer acetabular cup with cement fixation was tribologically superior to the ABG standard form UHMWPE design currently being used clinically.
机译:通过一系列摩擦,蠕变和磨损测试,已经开发出一种新颖的聚氨酯顺应层髋臼杯设计。为了进行比较,最初对ABG标准形状的聚氨酯髋臼杯和ABG标准形状的UHMWPE髋臼杯进行了摩擦测试。聚氨酯杯的摩擦力比UHMWPE杯低,最大摩擦系数在0.008至0.02之间,而UHMWPE杯则为0.035。这表明,在聚氨酯杯中,与UHMWPE杯相比,在关节中更多的载荷是由滞留在关节空间中的流体而不是通过粗糙接触来承担的。聚氨酯的固有顺应性用于促进弹性流体动力润滑。但是,这种依从性引起了对过度蠕变的担忧,蠕变可能反过来对摩擦学性能产生不利影响。因此,对ABG标准型聚氨酯髋臼杯进行蠕变测试,然后进行进一步的摩擦测试。在室温下,聚氨酯杯中发生少量蠕变,这是由于杆头和杯之间的顺应性提高,从而使摩擦稍有降低(最大摩擦系数为0.009)。但是,在37摄氏度时,发生更大的蠕变,导致髋臼杯夹住股骨头,导致润滑剂不足和更高的摩擦力(最大摩擦系数为0.035)。随后对聚氨酯杯的设计进行了修改,以加入喇叭形边缘,从而消除了因挤压而导致液体不足的可能性。聚氨酯髋臼杯的蠕变也受杯固定方法的影响,这是因为其与杯垫的贴合性和刚度有关。因此,对Mk上的五个ABG喇叭形聚氨酯髋臼杯进行了100万次的磨损测试。我在达勒姆髋关节联合磨损模拟器中评估了聚氨酯杯固定的最佳方法。由于蠕变和磨损,水泥固定的渗透量最小(水泥固定的渗透深度为0.30 mm,聚乙烯固定器固定为0.44 mm,金属壳体固定为0.52 mm)。然后对另外五个带有水泥固定件的ABG喇叭形聚氨酯髋臼杯进行了425万次的磨损测试。还对5个ABG标准形式的UHMWPE髋臼杯进行了500万次磨损测试。聚氨酯杯的磨损率的平均和标准误差为14.1 + -4.3 mg / 10〜6(12.0 + -3.6 mm〜3/10〜6),而周期为44.8 + -3.4 mg / 10〜6( 48.2 + -3.7 mm〜3/10〜6),UHMWPE杯的循环次数。这项研究表明,具有水泥固定作用的新型聚氨酯顺应层髋臼杯在摩擦学方面优于目前临床上使用的ABG标准形式UHMWPE设计。

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