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Effect of shot peening coverage on hardness, residual stress and surface morphology of carburized rollers

机译:喷丸覆盖对渗碳辊硬度,残余应力和表面形态的影响

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摘要

Shot peening is currently becoming a widely used surface strengthening technique that can refine the material grain, increase the hardness and introduce a certain depth of residual compressive stress layer. At the same times it changes the surface topography which may have a deleterious effect on the contact fatigue life. A fully understanding on the mechanism of shot peening for high-strength steels is to be explored. In this paper, the effect of shot peening coverage on residual stress, surface roughness, microhardness and microstructure of rollers are experimentally investigated. Experimental results show that the shot peening leads to a slight increase of surface and near-surface hardness from 690 HV to 740 HV, and an appreciably increasing of the subsurface maximum compressive residual stress. Moreover, some retained austenite in the the near-surface layer are transformed to martensite after shot peening, and wherein the grain refinement occurs.
机译:射击喷丸目前正在成为一种广泛使用的表面强化技术,可以改进材料谷物,增加硬度并引入一定深度的残余压缩应力层。 同时它改变了对接触疲劳寿命有害影响的表面形貌。 探讨了对高强度钢射击喷丸机制的完全理解。 本文实验研究了喷丸覆盖对残留应力,表面粗糙度,微硬度和微观结构的影响。 实验结果表明,喷射喷丸导致表面和近表面硬度从690 HV到740 HV的略微增加,并明显增加了地下最大压缩残余应力。 此外,在喷丸后,近表面层中的一些保留的奥氏体在近似表面转化为马氏体,并且其中发生晶粒细化。

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