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Modelling and optimization of biotribological testing parameters on frictional heating of vitamin E blended UHMWPE with the help of statistical techniques

机译:借助统计技术对维生素E共混超高分子量聚乙烯摩擦加热的生物摩擦学测试参数建模和优化

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It is known from previous studies that frictional temperature rise on the surfaces of artificial joints could reach high levels that make hazardous effects on surrounding tissue and lubricant around the artificial joint. For enhancement the tribological behavior of the joints, new material combinations have been tried. In this study vitamin E blended ultra-high molecular weight polyethylene (VE-UHMWPE), which is one of the new generation material, was used for acetabular inserts. These inserts were paired with CoCrMo femoral heads. For reduction of the frictional heating, testing parameters and their effects were investigated by using Taguchi method and analysis of variance. The results were analyzed by using Statistical Package for Social Science (SPSS 15.0). Also mathematical model for the temperature rise (ΔT) was developed with the help of statistical techniques. In vitro frictional heating measurements were carried out on a custom made hip joint friction experimental set-up. 0.3-0.5 mm in diameter surface dimples were machined on the inner surface of acetabular insert samples. Different static loads, representing different body weights, were applied with different walking duration. Bovine calf serum was used as lubricant and different amount of bone cement (PMMA) was added in the lubricant as third body abrasive particles. Temperature rises were recorded with embedded thermocouples. The experimental results demonstrated that the surface dimples were the major factor on frictional heating, followed by applied load, amount of third body particles and time.
机译:从以前的研究中知道,人造关节表面的摩擦温度升高可能达到很高的水平,这会对周围的组织和人造关节周围的润滑剂产生危险影响。为了增强关节的摩擦学性能,尝试了新的材料组合。在这项研究中,作为新一代材料之一的维生素E共混超高分子量聚乙烯(VE-UHMWPE)被用于髋臼嵌件。这些插入物与CoCrMo股骨头配对。为了减少摩擦加热,使用田口方法和方差分析研究了测试参数及其效果。使用社会科学统计软件包(SPSS 15.0)对结果进行了分析。还借助统计技术开发了温升(ΔT)的数学模型。在定制的髋关节摩擦实验装置上进行了体外摩擦加热测量。在髋臼插入物样品的内表面上加工直径为0.3-0.5 mm的表面凹痕。代表不同体重的不同静态载荷施加了不同的步行时间。牛小牛血清用作润滑剂,并在润滑剂中添加了不同量的骨水泥(PMMA)作为第三体磨料颗粒。用嵌入式热电偶记录温度升高。实验结果表明,表面凹痕是摩擦加热的主要因素,其次是施加的载荷,第三体颗粒的量和时间。

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