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Low temperature plasma carbonitriding of ASTM F138 and ASTM F1586 biomedica stainless steels

机译:ASTM F138和ASTM F1586生物医学不锈钢的低温等离子体碳氮共渗

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Low temperature carbonitriding has been reported to improve the wear resistance of engineering grade AISI 316 through the formation of a hybrid S phase, but little or no research work has been applied to medical grade austenitic stainless steels. In this study, the aforementioned hybrid S phase has been successfully implemented in the surface of two medical grade austenitic stainless steels, ASTM F138 and ASTM F1586, as well as on engineering grade AISI 316 for comparison. The wear behaviour of the plasma carbonitrided and the untreated samples was compared using reciprocating sliding wear tests in air, Ringers solution and distilled water. Experimental results have demonstrated that low temperature plasma carbonitriding can effectively reduce the wear of these two medical grade materials independent of the testing conditions. Wear results from the reciprocating wear test have shown that for the ASTM F138 alloy an improvement over the untreated material of 450% (in air) and 100% (in Ringers solution) was registered; for the ASTM F1586 stainless steel, the improvements over the untreated materials were 380% (in air) and 40% (in Ringers solution). It is proposed that the improved performance of the treated samples can be attributed to a desired combination of the significantly improved hardness which provides a better support to the surface oxide layer and the retained good corrosion resistance.
机译:据报道,低温碳氮共渗可通过形成混合S相来提高工程级AISI 316的耐磨性,但很少或没有研究工作应用于医学级奥氏体不锈钢。在这项研究中,上述混合S相已在两种医用级奥氏体不锈钢ASTM F138和ASTM F1586以及工程级AISI 316上成功实施。使用往复滑动试验在空气,林格斯溶液和蒸馏水中对碳氮共渗和未处理样品的磨损行为进行了比较。实验结果表明,低温等离子体碳氮共渗可有效降低这两种医用级材料的磨损,而与测试条件无关。往复磨损试验的磨损结果表明,对于ASTM F138合金,与未经处理的材料相比,有450%(在空气中)和100%(在林格斯溶液中)的改善。对于ASTM F1586不锈钢,与未经处理的材料相比,改进了380%(在空气中)和40%(在林格斯溶液中)。提出处理后样品的性能改善可以归因于显着改善的硬度的所需组合,所述硬度显着改善了对表面氧化物层的支持并保持了良好的耐腐蚀性。

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