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Studies on laser surface melting of tool steel — Part II: Mechanical properties of the surface

机译:工具钢的激光表面熔化研究-第二部分:表面的机械性能

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摘要

In the present study, the effect of laser surface melting using different proportions of argon and nitrogen as shrouding atmosphere on microhardness and wear resistance properties of a low alloy high carbon tool steel (SAE 52100 steel) has been undertaken. Laser surface melting in argon (Ar) atmosphere significantly refined the microstructure (grain size) with the presence of carbides (both iron and chromium) and martensites and improved microhardness (350–500 VHN) as compared to as-received SAE 52100 steel (280 VHN). Laser surface melting in 100% N2 atmosphere led to formation of thin nitride (consisting of Fe4N and Fe2N and Cr2N) layer with improved microhardness to as high as 1050 VHN. Wear studies showed a significant enhancement in wear resistance against hardened steel ball, a maximum improvement was achieved when lased using 100% N2. The mechanism of wear was studied in details.
机译:在本研究中,采用低比例的氩气和氮气作为覆盖气氛进行激光表面熔化对低合金高碳工具钢(SAE 52100钢)的显微硬度和耐磨性产生了影响。与SAE 52100钢(280)相比,在氩气(Ar)气氛中进行激光表面熔化可显着改善微观结构(晶粒尺寸),同时存在碳化物(铁和铬)和马氏体,并改善显微硬度(350-500 VHN)。 VHN)。在100%N2气氛中进行激光表面熔化导致形成薄的氮化物(由Fe4N和Fe2N和Cr2N组成)层,其显微硬度提高到1050 VHN。磨损研究表明,对硬化钢球的耐磨性显着提高,当使用100%N2进行激光发射时,可实现最大的改进。详细研究了磨损机理。

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