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Wear analysis on EN8, EN9 and EN24

机译:EN8,EN9和EN24的磨损分析

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Purpose - This paper aims to present a comparative study of the wear properties of ferrous welded materials like EN8, EN9 and mild steel (MS). Design/methodology/approach - The material is cut into specific dimension after hardfacing and is studied for the wear properties of the material. The wear testing is done on a pin-on-disc apparatus. The microhardness of the material is studied using the Vickers microhardness measuring apparatus. Findings - The wear properties of ferrous welded materials like EN8, EN9 and MS are studied. It is found the MS has the least wear when compared to EN8 and EN9. The microhardness of MS is higher than EN8 and EN9, thus making it more wear-resistant than EN8 and EN9. The coefficient of friction in the dry sliding condition is found to be constant throughout the experiment. Research limitations/implications - Major restriction is the amount of time required for use-wear analysis and replication experiments that are necessary to produce reliable results. These limitations mean that the analysis of total assemblages with the intention of producing specific results, especially of worked materials, is not feasible. Practical implications - Generally, the complexity and rigour of the analysis depend primarily on the engineering needs and secondarily on the wear situation. It has been the author's experience that simple and basic wear analyses, conducted in the proper manner, are often adequate in many engineering situations. Integral and fundamental to the wear analysis approach is the treatment of wear and wear behaviour as a system property. As a consequence, wear analysis is not limited to the evaluation of the effects of materials on wear behaviour. Wear analysis often enables the identification of nonmaterial solutions or nonmaterial elements in a solution to wear problems. For example, changes in or recommendations for contact geometry, roughness, tolerance and so on are often the results of a wear analysis. Originality/value - The value of the work lies in the utility of the results obtained to researchers and users of the EN8, EN9 and EN24 material for their components.
机译:目的-本文旨在比较研究EN8,EN9和低碳钢(MS)等黑色焊接材料的磨损性能。设计/方法/方法-表面硬化后将材料切成特定尺寸,并研究材料的磨损性能。磨损测试是在针盘式设备上完成的。使用维氏显微硬度测量仪研究材料的显微硬度。发现-研究了诸如EN8,EN9和MS的铁质焊接材料的磨损性能。与EN8和EN9相比,发现MS的磨损最少。 MS的显微硬度高于EN8和EN9,因此比EN8和EN9更具耐磨性。在整个实验过程中,发现干滑动条件下的摩擦系数是恒定的。研究的局限性/意义-主要的局限性是产生可靠结果所必需的使用磨损分析和复制实验所需的时间。这些局限性意味着要进行总装配分析以产生特定结果(尤其是加工材料)是不可行的。实际意义-通常,分析的复杂性和严谨性主要取决于工程需求,其次取决于磨损情况。作者的经验表明,以适当的方式进行简单且基本的磨损分析通常可以在许多工程情况下使用。磨损分析方法不可或缺的基础是将磨损和磨损行为作为系统属性进行处理。因此,磨损分析不仅限于评估材料对磨损行为的影响。磨损分析通常可以识别非材料解决方案或解决磨损问题的非材料元素。例如,触点几何形状,粗糙度,公差等方面的变化或建议通常是磨损分析的结果。原创性/价值-这项工作的价值在于对研究人员和用户使用EN8,EN9和EN24材料作为其成分所获得的结果的实用性。

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