首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Study on mechanical and wear characterization of novel Co30Cr4Mo biomedical alloy with added nickel under dry and wet sliding conditions using Taguchi approach
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Study on mechanical and wear characterization of novel Co30Cr4Mo biomedical alloy with added nickel under dry and wet sliding conditions using Taguchi approach

机译:Taguchi法研究在干湿滑动条件下添加镍的新型Co30Cr4Mo生物医学合金的力学和磨损特性

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This paper investigates the effect of nickel particulate on mechanical behavior and sliding wear performance of novel Co30Cr4Mo alloy for orthopedic hip implant application with and without an introduction of distilled water (i.e. both dry and wet conditions) medium. The mechanical behavior is examined by the micro-hardness tester and the compression testing machine, while the wear performance is analyzed through a pin-on-disc tribometer where the samples slide against a counter disc made up of hardened alloy steel (EN-31) under different operating conditions at room temperature. Scanning electron microscope, atomic force microscopy, and X-ray diffraction are used to examine the surface morphology, worn surface profile, and cross-sectional microstructure of the fabricated alloy (Co30Cr4Mo) composite. In this study, at the beginning, steady state experimental analysis is carried out to find the volumetric wear loss and friction coefficient by varying the sliding velocity and normal load, respectively. After obtaining the steady state results, the Taguchi design of experiment has been conducted followed by statistical analysis of variance to identify the significant factor setting for obtaining better performance output. From the analysis, it is found that by increasing the nickel wt.%, the hardness and the compression strength of the fabricated alloy composites are increased. Furthermore, the fabricated alloy composite with 1wt.% Ni shows the better wear resistance under different operating conditions in both dry and wet media. This study will give an idea for hip implant application but not direct replacement of human joints. In future, this study may be extended in more detail for biomedical applications for replacement of either human hip implant or animal implant, respectively.
机译:本文研究了镍颗粒对新型Co30Cr4Mo合金的力学行为和滑动磨损性能的影响,该合金可用于有或没有引入蒸馏水(即在干燥和潮湿条件下)的矫形髋关节植入物。机械性能由微硬度测试仪和压缩测试机进行检查,而磨损性能则通过销钉盘式摩擦计进行分析,其中样品在由硬化合金钢制成的计数盘上滑动(EN-31)在室温下的不同操作条件下。扫描电子显微镜,原子力显微镜和X射线衍射用于检查所制造的合金(Co30Cr4Mo)复合材料的表面形态,磨损的表面轮廓和截面显微结构。在本研究中,首先,进行稳态实验分析以通过分别改变滑动速度和法向载荷来找到体积磨损损失和摩擦系数。在获得稳态结果之后,已进行了Taguchi设计实验,然后进行了方差统计分析,以确定了获得更好性能输出的重要因素设置。从分析中发现,通过增加镍的重量%,可以提高制成的合金复合材料的硬度和压缩强度。此外,所制备的具有1wt。%Ni的合金复合材料在干和湿介质中在不同操作条件下均显示出更好的耐磨性。这项研究将为应用髋关节植入物提供一个思路,但不能直接替代人体关节。将来,这项研究可能会更详细地扩展到生物医学应用中,以分别替代人类髋关节植入物或动物植入物。

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