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Preliminary evaluations on development of new materials for hip joint femoral head

机译:髋关节股骨头新材料开发的初步评估

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Development and selection of a proper biomaterial with diverse properties (i.e. physical, mechanical, wear, corrosion, and many others) for hip femoral head is one of the most exigent tasks. Improper material often causes component failure during functioning. Therefore, in this study, a series of implant materials containing tungsten of different weight percentages were fabricated by high temperature vacuum casting induction furnace and the physical, mechanical, wear, and corrosion properties were examined. The proportions were varied from 0 wt% to 4 wt% in a cobalt-chromium alloy (Co-30Cr-4Mo-1Ni). The mechanical properties were tested by the micro-hardness tester and the compression testing machine, while the wear performance was analyzed through a pin-on-disc tribometer under different operating conditions at room temperature. Corrosion resistance was analyzed under NaCl solution by the electrochemical test method. Due to the conflict between the properties obtained, the Vise Kriterijumska Optimizacija Kompromisno Resenjemeaning (VIKOR) method integrated with analytic hierarchy process (AHP) was applied to choose the best material among the set of alternatives, where AHP was used to determine criteria weights, and VIKOR approach was used to rank the alternatives. From the results obtained, it was found that Co-30Cr-4Mo-1Ni implant material containing 2 wt% tungsten provides the best combination of the properties for a given application (i.e. hip femoral head).
机译:开发和选择具有多种特性(即物理,机械,磨损,腐蚀和许多其他特性)的合适的生物材料用于髋关节股骨头是最紧迫的任务之一。不合适的材料通常会导致功能故障。因此,在这项研究中,通过高温真空铸造感应炉制造了一系列包含不同重量百分比的钨的植入材料,并检查了其物理,机械,磨损和腐蚀性能。在钴铬合金(Co-30Cr-4Mo-1Ni)中,比例从0wt%变化到4wt%。力学性能由显微硬度计和压缩试验机进行了测试,而磨损性能则通过销钉盘式摩擦计在室温下不同操作条件下进行了分析。在NaCl溶液中通过电化学测试方法分析耐腐蚀性。由于所获得的属性之间存在冲突,因此采用了VISE Kriterijumska Optimizacija Kompromisno Resenje意义(VIKOR)方法与层次分析法(AHP)集成,以从一组备选方案中选择最佳材料,其中AHP用于确定标准权重,以及使用VIKOR方法对替代方案进行排名。根据获得的结果,发现含有2wt%钨的Co-30Cr-4Mo-1Ni植入物材料对于给定的应用(即股骨股骨头)提供了性能的最佳组合。

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