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Development of friction and wear full-scale testing for TKR prostheses with reliable low cost apparatus

机译:具有可靠低成本装置的TKR假体的摩擦和磨损全尺度测试的开发

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Prostheses products must undergo simulation and physical testing, before clinical testing. Finite element method is a preliminary simulation for in vivo test. The method visualizes the magnitude of the compressive force and the critical location of the Total Knee Replacement (TKR) prostheses design. In vitro testing is classified as physical testing for prostheses product. The test is conducted to evaluate the potential failure of the product and the characteristics of the prostheses TKR material. Friction and wear testing are part of the in vivo test. Motion of knee joints, which results in the phenomena of extension and deflection in the femoral and tibia insert, is represented by friction and wear testing. Friction and wear tests aim to obtain an approximate lifetime in normal and extreme load patterns as characterized by the shape of the friction surface area. The lifetime estimation requires friction and wear full-scale testing equipments for TKR prostheses products. These are necessary in obtaining initial data on potential product failures and characterizing of the material based on the ASTM F2724-08 standards. Based on the testing result and statistical analysis data, the average wear rate value per year is 2.19 × 10~(-3) mg/MC, with a 10 % safety limit of volume and 14,400 cycles times, for 15 hours moving nonstop then the prediction of wear life of the component tibia insert is ± 10 years.
机译:假肢产品必须在临床测试之前进行仿真和物理测试。有限元方法是体内测试的初步仿真。该方法可视化压缩力的大小和总膝关节置换(TKR)假体设计的临界位置。体外测试被归类为对假肢产品的物理测试。进行测试以评估产品的潜在失效和假体TKR材料的特性。摩擦和磨损测试是体内测试的一部分。膝关节的运动,这导致股骨和胫骨插入件中的延伸和偏转现象,由摩擦和磨损测试表示。摩擦和磨损试验旨在以正常和极端负载图案获得近似寿命,其特征在于摩擦表面积的形状。寿命估计需要用于TKR假体产品的摩擦和佩戴全尺寸测试设备。这些是基于ASTM F2724-08标准获取有关潜在产品故障的初始数据以及材料的表征是必要的。基于测试结果和统计分析数据,每年平均磨损率值为2.19×10〜(-3)Mg / MC,具有10%的体积安全限度和14,400个循环时间,15小时移动不间间组件胫骨插入件的磨损寿命预测为±10年。

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