首页> 外文期刊>Metallurgical and materials transactions. A, physical metallurgy and materials science >Characterization of the Wear Response of a Modified Zinc-Based Alloy vis-a-vis a Conventional Zinc-Based Alloy and a Bearing Bronze at a High Sliding Speed
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Characterization of the Wear Response of a Modified Zinc-Based Alloy vis-a-vis a Conventional Zinc-Based Alloy and a Bearing Bronze at a High Sliding Speed

机译:相对于常规锌基合金和轴承青铜的高滑动速度,改性锌基合金的磨损响应特性

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摘要

In this investigation, an attempt has been made to examine the wear response of a modified zinc-based alloy at a high speed (4.60 m/s) of sliding over a range of applied pressures. A conventional zinc-based alloy and a bearing bronze have also been subjected to identical tests with a view to assess the working capability of the modified alloy with respect to the existing ones. The wear characteristics of the alloys have been correlated with their microstructural features, while operating wear mechanisms have been studied through analyses of wear surfaces, subsurfaces, and debris particles. The conventional zinc-based alloy attained most inferior wear behavior when compared with that of the modified (zinc-based) alloy and the bronze. Interestingly, the modified alloy exhibited its wear response to be much better than that of the conventional zinc-based alloy due to the presence of nickel/silicon containing (hard and thermally stable) microconstiruents. Moreover, the modified alloy also seized at a pressure similar to that of the bronze, although its wear rate prior to seizure was more than that of the latter. The study clearly indicates that it is possible to develop modified versions of zinc-based alloys having much improved wear characteristics over the conventional variety; the information gains special attention in view of the high speed of sliding selected in this study.
机译:在这项研究中,已尝试检查改性锌基合金在一定压力范围内的高速滑动(4.60 m / s)下的磨损响应。为了评估改性合金相对于现有合金的加工能力,还对常规的锌基合金和轴承青铜进行了相同的测试。合金的磨损特性已经与它们的微观结构特征相关联,同时通过分析磨损表面,亚表面和碎屑颗粒研究了运行磨损机理。与改性(锌基)合金和青铜相比,常规锌基合金的磨损性能最差。有趣的是,由于存在含镍/硅的(硬的和热稳定的)微组分,改性合金的磨损响应比常规的锌基合金好得多。此外,尽管在咬合前的磨损率比后者高,但改性合金也以类似于青铜的压力咬合。这项研究清楚地表明,有可能开发出比传统品种具有更高耐磨性的锌基合金改性版本。鉴于本研究中选择的高速滑动,该信息特别受到关注。

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