Study on hardening mechanism in GH and PSHG based on classical nucleation theory

X. Shi, S. Xiu, Xiuming Zhang
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Abstract

Grinding hardening (GH) is a common processing method and pre-stressed hardening grinding (PSHG) is presented combined with the advantages of grinding hardening and pre-stress grinding. In order to study their hardening and transformation mechanism, the paper carried on the GH and PSHG experiments. According to the results, the hardening mechanism in GH was reanalysed through the point of classical nucleation theory. And the coupling relationship of stress, temperature and microstructure in PSHG is studied as well. The study shows: the dislocation in the grinding area compensates the negative factors of cooling speed during GH, so the hardening effect is remarkable. In PSHG, the parent-phase-hardening and strain-inducing-phase-changing due to applying pre-stress have comprehensive effect on the martensitic phase transformation in the grinding process. The characteristic of microstructure in hardening layer can be controlled by applying different pre-stress in PSHG.
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基于经典成核理论的GH和PSHG硬化机理研究
磨削硬化(GH)是一种常用的加工方法,结合磨削硬化和预应力磨削的优点,提出了预应力硬化磨削(PSHG)。为了研究其硬化转变机理,进行了GH和PSHG实验。根据实验结果,从经典成核理论的角度重新分析了GH中的硬化机理。研究了PSHG中应力、温度和微观组织的耦合关系。研究表明:磨削区位错补偿了淬火过程中冷却速度的不利因素,淬火效果显著。在PSHG中,施加预应力导致的母相硬化和应变诱导相变对磨削过程中马氏体相变有综合影响。通过施加不同的预应力,可以控制硬化层的微观组织特征。
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来源期刊
International Journal of Abrasive Technology
International Journal of Abrasive Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
0.90
自引率
0.00%
发文量
13
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