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Development of Standardized Material Testing Protocols for Prosthetic Liners

机译:修复衬里标准材料测试协议的开发

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摘要

A set of protocols was created to characterize prosthetic liners across six clinically relevant material properties. Properties included compressive elasticity, shear elasticity, tensile elasticity, volumetric elasticity, coefficient of friction (CoF), and thermal conductivity. Eighteen prosthetic liners representing the diverse range of commercial products were evaluated to create test procedures that maximized repeatability, minimized error, and provided clinically meaningful results. Shear and tensile elasticity test designs were augmented with finite element analysis (FEA) to optimize specimen geometries. Results showed that because of the wide range of available liner products, the compressive elasticity and tensile elasticity tests required two test maxima; samples were tested until they met either a strain-based or a stress-based maximum, whichever was reached first. The shear and tensile elasticity tests required that no cyclic conditioning be conducted because of limited endurance of the mounting adhesive with some liner materials. The coefficient of friction test was based on dynamic coefficient of friction, as it proved to be a more reliable measurement than static coefficient of friction. The volumetric elasticity test required that air be released beneath samples in the test chamber before testing. The thermal conductivity test best reflected the clinical environment when thermal grease was omitted and when liner samples were placed under pressure consistent with load bearing conditions. The developed procedures provide a standardized approach for evaluating liner products in the prosthetics industry. Test results can be used to improve clinical selection of liners for individual patients and guide development of new liner products.
机译:创建了一套协议来表征六种临床相关材料特性中的假体衬里。特性包括压缩弹性,剪切弹性,拉伸弹性,体积弹性,摩擦系数(CoF)和热导率。对代表各种商业产品的18种假体衬板进行了评估,以创建可最大化可重复性,最小化误差并提供具有临床意义的结果的测试程序。剪切和拉伸弹性测试设计增加了有限元分析(FEA),以优化样品的几何形状。结果表明,由于可用的内衬产品种类繁多,因此压缩弹性和拉伸弹性测试需要两个测试最大值。测试样品直到它们达到基于应变或基于应力的最大值(以先达到的为准)。剪切和拉伸弹性测试要求不进行循环调节,因为安装粘合剂对某些衬里材料的承受力有限。摩擦系数测试基于动态摩擦系数,因为它被证明比静态摩擦系数更可靠的测量。体积弹性测试要求在测试之前将空气释放到测试室中样品下方。当省略导热油脂以及将衬里样品置于与承重条件一致的压力下时,导热率测试最能反映临床环境。制定的程序为评估假肢行业的衬里产品提供了一种标准化方法。测试结果可用于改善针对个别患者的衬垫的临床选择,并指导新衬垫产品的开发。

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