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The investigation of structural, mechanical and tribological properties of plasma nitrocarburized AISI 1020 steel

机译:等离子体氮碳酸氮化AISI 1020钢结构,机械和摩擦学性能研究

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AISI 1020 steel was plasma nitrocarburized at different gas mixtures (N2 and H2), for various times (1, 2, 4, 8 and 12 h) and at elevated temperatures (500, 570 and 640 -C). The structural, mechanical and tribological properties of nitrocarburized steel were analyzed using X-ray diffraction, microhardness tester, scanning electron microscopy, optical microscopy and pin-on-disk tribotester. The results have shown that the compound layer was composed of q-Fe2–3(C, N) and gV-Fe4(C, N) iron carbonitrides and the thickness of this layer increased with increasing temperature and time. The nitrocarburizing process affected the surface properties and diffusion layer. It was seen that the surface hardness increased about two times depending on process parameters, and the highest hardness was observed on austenite layer obtained at austenitic treatment (640 -C). The wear strength increased between 20% and 60% depending on the process parameters. While the highest wear strength (1.8910 5 mm3/N m) was obtained at austenitic nitrocarburizing for 4 h, the lowest friction coefficient (l =0.35) was also attained at austenitic treatment.
机译:AISI 1020钢是等离子体在不同的气体混合物(N 2和H 2),不同的时间(1,2,4,8和12小时),并在升高的温度下(500,570和640 -C)氮碳共渗。使用X射线衍射,显微硬度测试仪,扫描电子显微镜,光学显微镜和销 - 盘tribotester软氮化钢的结构,机械和摩擦性能进行了分析。结果表明,化合物层由Q-Fe2-3(C,N)和GV-FE4(C,N)的碳氮化铁和该层的与温度和时间的增加而增加的厚度的。氮碳共渗过程的影响的表面性质和扩散层。结果,可以看到的是,表面硬度提高了约2倍取决于工艺参数,并且观察到在奥氏体处理(640 -C)中获得奥氏体层上的最高硬度。取决于工艺参数20%和60%之间的磨损强度增加。而在奥氏体氮碳共渗,得到4小时的最高磨损强度(1.89105立方毫米/ N米),最低的摩擦系数(L = 0.35)也达到在奥氏体治疗。

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