Correlation between Wear Resistance of High-Speed Steel R6M5 and Deformations Arising during Laser Hardening

IF 0.5 4区 工程技术 Q4 ENGINEERING, MECHANICAL
I. A. Pinahin, S. K. Sharma, M. A. Yagmurov, S. S. Vrublevskaya, M. A. Shpack
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Abstract

The research of deformation of samples made from high-speed steel R6M5 and treated by volumetric pulsed laser hardening (VPLH) under various laser exposure modes and measurement topology (laser radiation energy, distance from the irradiation site) were carried out using strain measurement. It was found that after VPLH treatment of the samples there are deformations in the longitudinal and transverse sections. This fact indicates the volumetric nature of the deformation changes in the material, and at the same time, it shows the pronounced extremum of relative deformations, which depends on the previously listed conditions of exposure and measurement. The results of abrasive wear tests showed the greatest effect of VPLH for the laser irradiation energy of 300 J and the distance from the irradiation site of 24 mm, which corresponds to the results obtained by the strain measurement for the determination of the samples’ relative deformations. The received extremum corresponds to the optimal hardening modes when changing the relative deformation by 1.06 times and increasing of the hardened resistance samples by 2.3 times. The possibility of joint use (convergence) of the tests results for abrasive wear was determined using the method of retrospective (a posteriori) randomization. This allows recommending the strain measurement method for the optimal modes of VPLH determination and can help to significantly reduce the cost of material consumption and labor intensity of laboratory tests, especially in the process of determining the modes for the samples with variable inputs (structure and chemical composition of materials, geometric parameters of products, operating modes, etc.)

Abstract Image

高速钢R6M5的耐磨性与激光硬化变形的关系
采用应变测量方法研究了体积脉冲激光硬化(VPLH)处理的高速钢R6M5试样在不同激光曝光方式和测量拓扑(激光辐射能量、距离辐照点距离)下的变形情况。经VPLH处理后,试样的纵、横截面均出现变形。这一事实表明了材料中变形变化的体积性质,同时,它显示了相对变形的明显极值,这取决于前面列出的暴露和测量条件。磨料磨损试验结果表明,当激光辐照能量为300 J、距离辐照点24 mm时,VPLH的影响最大,这与测定试样相对变形的应变测量结果相对应。当相对变形量改变1.06倍、硬化抗力试样增加2.3倍时,得到的极值值对应于最优硬化模式。使用回顾性(后验)随机化方法确定磨料磨损试验结果联合使用(收敛)的可能性。这允许推荐最佳的VPLH模式的应变测量方法,可以帮助显著降低材料消耗成本和实验室测试的劳动强度,特别是在确定具有可变输入(材料的结构和化学成分,产品的几何参数,操作模式等)的样品模式的过程中。
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来源期刊
Journal of Friction and Wear
Journal of Friction and Wear ENGINEERING, MECHANICAL-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
1.50
自引率
28.60%
发文量
21
审稿时长
6-12 weeks
期刊介绍: Journal of Friction and Wear is intended to bring together researchers and practitioners working in tribology. It provides novel information on science, practice, and technology of lubrication, wear prevention, and friction control. Papers cover tribological problems of physics, chemistry, materials science, and mechanical engineering, discussing issues from a fundamental or technological point of view.
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