Influence of orientation of zones of higher hardness of composite layers on their resistance to wear

V. Peremitko, I. Kolomoyets
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引用次数: 1

Abstract

Purpose: Experimentally substantiate the influence of the orientation of zones of higher hardness on the wear mechanism of contact surfaces. Design/methodology/approach: Forming of variable composition within the working surfaces of parts is a common way to solve the problem of uneven wear. The tests were aimed at determining the characteristics of the layers surfaced with the orientation of the zones of high hardness. For this different tests and measurements were done. Before the test, samples of 45 steel were surfaced with a preliminary application of titanium carbide paste. Findings: As a result of researches it was found that different ways of the orientation of zones of higher hardness have different influences on the characteristics of a surface. The main conclusion is that the transverse orientation of such zones helps to increase the wear resistance of the surface and to save its original relief. Research limitations/implications: The roughness, wear resistance, zonal hardness, and relief of layers surfaced with the orientation of zones of higher hardness were studied. Practical implications: The results obtained are useful in the field of rolling production and mechanical engineering to avoid the uneven wear of parts and as a result to extend the term of their exploitation. Originality/value: In this paper the model concepts of wear process of surfaces with variable composition and measurements of characteristics of surface considering its local hardening are proposed.
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复合材料层高硬度区取向对其耐磨性的影响
目的:通过实验证实高硬度区的取向对接触表面磨损机制的影响。设计/方法/方法:在零件的工作表面内形成可变成分是解决不均匀磨损问题的常用方法。测试的目的是确定具有高硬度区域方向的表面层的特性。为此进行了不同的测试和测量。在试验之前,对45钢的样品进行表面处理,并初步应用碳化钛浆。研究结果:研究发现,高硬度区的不同取向方式对表面特性有不同的影响。主要结论是,这些区域的横向方向有助于提高表面的耐磨性,并保留其原始起伏。研究局限性/意义:研究了表面粗糙度、耐磨性、区域硬度和具有较高硬度区域方向的层的起伏。实际意义:所获得的结果在轧制生产和机械工程领域是有用的,可以避免零件的不均匀磨损,从而延长其使用寿命。独创性/价值:本文提出了变成分表面磨损过程的模型概念,以及考虑局部硬化的表面特性测量。
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来源期刊
Archives of materials science and engineering
Archives of materials science and engineering Materials Science-Materials Science (all)
CiteScore
2.90
自引率
0.00%
发文量
15
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