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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Investigating the effect of ball milling during the deep cryogenic heat treatment of the 1.2080 tool steel
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Investigating the effect of ball milling during the deep cryogenic heat treatment of the 1.2080 tool steel

机译:研究1.2080工具钢的深低温热处理过程中的球磨效果

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摘要

The effect of attrition milling on the structure and hardness of the 1.2080 tool steel during the deep cryogenic heat treatment was investigated via the scanning electron microscope (SEM), X-ray diffraction (XRD) and microhardness and hardness evaluation. Some newly formed defects were produced during the attrition milling of the samples as a result of the surface contact between the balls and samples. These defects affect the carbides nucleation during the cryogenic heat treatment. Moreover, the surface impact produces a residual compressive stress on the samples surface. These phenomena lead to an increase in the hardness and percentage of the carbides. It was also observed that milling the samples before the cryogenic heat treatment is not beneficial due to austenite aging. Furthermore, some newly nano-sized carbides were also produced during the cryogenic heat treatment in the structure, increasing the hardness further.
机译:通过扫描电子显微镜(SEM),X射线衍射(XRD)以及显微硬度和硬度评估,研究了深低温热处理过程中磨损铣削对1.2080工具钢组织和硬度的影响。由于球和样品之间的表面接触,在样品的磨损研磨过程中产生了一些新形成的缺陷。这些缺陷会影响低温热处理过程中的碳化物形核。而且,表面冲击在样品表面上产生残余压应力。这些现象导致硬度和碳化物百分比增加。还观察到,由于奥氏体时效,在低温热处理之前研磨样品是不利的。此外,在低温热处理过程中,结构中还产生了一些新的纳米级碳化物,从而进一步提高了硬度。

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