首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Effects of the cooling mode on the integrity and the multi-pass micro-scratching wear resistance of Hardox 500 ground surfaces
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Effects of the cooling mode on the integrity and the multi-pass micro-scratching wear resistance of Hardox 500 ground surfaces

机译:冷却模式对高速500磨削的完整性与多通刮耐磨耐磨性的影响

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摘要

In this paper, effects of the cooling mode used in grinding of Hardox 500 on the material grindability, ground surface integrity, and multi-pass micro-scratching wear resistance are investigated. Three modes are experimented: dry grinding, soluble oil, and cryogenic cooling modes. Results showed that the cryogenic cooling achieved high levels of work hardening and compressive residual stresses. Moreover, it was found that the cryogenic cooling improves the multi-pass micro-scratching wear resistance of Hardox 500 comparatively with the polished state and ground surfaces under dry or soluble oil conditions. The improvement rates of the wear volumes generated by the cryogenic cooling represent 46% and 63% of the volumes generated for the polished state when scratch load of 10 N and 20 N were applied respectively. These improvements are discussed based on the integrities of the scratched surfaces and sub-surfaces.
机译:本文研究了磨削Hardox 500的冷却方式对材料可磨削性、磨削表面完整性和多道次微划痕耐磨性的影响。试验了三种模式:干磨模式、可溶油模式和低温冷却模式。结果表明,低温冷却实现了高水平的加工硬化和压缩残余应力。此外,在干燥或可溶油条件下,与抛光状态和磨削表面相比,低温冷却提高了Hardox 500的多道次微划痕耐磨性。低温冷却产生的磨损体积的改善率分别为施加10 N和20 N划痕载荷时抛光状态产生的体积的46%和63%。基于划痕表面和子表面的完整性讨论了这些改进。

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