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An experimental investigation on the mechanism of we& resistance improvement in cryotreated tool steels

机译:冷冻处理工具钢的耐湿性和耐磨损性改善机理的实验研究

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摘要

Cryogenic treatment is an inexpensive one time permanent treatment that influences the entire section of the component. It is a supplementary process to conventional heat treatment process in steels. Though the benefits have been reported widely the degree of improvement experienced and the underlying mechanism are still debated upon. An attempt has been made to understand the basic mechanism of improvement in the-wear resistance of cryogenically treated tool steels. The studies indicate that there is a minor increase in the hardness value of the cryogenically treated specimens. The optical microscopy study and X-ray diffraction pattern are discussed. A variation in the carbon content of the martensitic matrix, indicate that though there is no large scale formation of new carbides, there can be subtle clustering of carbides in the supersaturated martensite. This clustering taking place at sub-micron level and being very finely dispersed all over the matrix, is very hard to get characterised in the X-ray diffraction or optical microscopy studies. However, this could influence the wear resistance and hardness value resulting in the life improvement.
机译:低温处理是一种廉价的一次性永久性处理,会影响组件的整个部分。它是钢中常规热处理工艺的补充工艺。尽管已广泛报道了其益处,但人们仍在争论所经历的改进程度和基本机制。已经进行了尝试以了解改善经深冷处理的工具钢的耐磨性的基本机理。研究表明,经过低温处理的样品的硬度值略有增加。讨论了光学显微镜研究和X射线衍射图。马氏体基体中碳含量的变化表明,尽管没有大规模形成新的碳化物,但在过饱和的马氏体中可能存在细微的碳化物团簇。这种聚集发生在亚微米水平,并且非常精细地分散在整个基质中,在X射线衍射或光学显微镜研究中很难表征。但是,这可能会影响耐磨性和硬度值,从而提高使用寿命。

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