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A study on the grindability of niobium microalloyed forging quality HSLA steels

机译:铌微合金锻造优质HSLA钢的可磨性研究

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The grindability of two niobium microalloyed forging quality HSLA steels have been investigated. The microstructure of Steel 1 (0.19 C, 0.23 Nb, 0.71 CE) varied from ferrite + pearlite in the as forged condition (252 VPN) to bainite in the as normalized condition (335 VPN). The microstructure in steel 2 (0.18 C, 0.17 Nb, 0.84 CE) consisted of tempered martensite having a hardness of 640 VPN and 495 VPN, respectively, in the as forged and tempered conditions. The grindability of the steels were assessed in terms of chip formation modes, grinding forces, surface characteristics and surface residual stress in the workpieces. The study revealed that the initial microstructure and the phase transformation characteristics of the steels influenced their grindability. Among the present steels, Steel 1 (as forged) was most amenable to grinding in terms of grinding force and specific energy requirement, but its ground surface finish was poorest. Steel 2 (tempered) developed a good surface finish, but its grindability was poorest in terms of similar parameters. Chip formation mode was also widely different for Steels 1 and 2. The microstructure of the chips varied widely depending upon their thermal history.
机译:研究了两种铌微合金锻造优质HSLA钢的可磨性。钢1(0.19 C,0.23 Nb,0.71 CE)的组织从锻造条件下的铁素体+珠光体(252 VPN)到正火条件下的贝氏体(335 VPN)不等。在锻造和回火条件下,钢2的显微组织(0.18 C,0.17 Nb,0.84 CE)由回火马氏体组成,回火马氏体的硬度分别为640 VPN和495 VPN。根据切屑形成方式,磨削力,表面特性和工件中的表面残余应力评估了钢的可磨性。研究表明,钢的初始显微组织和相变特性影响了它们的可磨性。在目前的钢中,就磨削力和比能需求而言,钢1(如锻造)最适合磨削,但其表面光洁度最差。钢2(回火)具有良好的表面光洁度,但就相似参数而言,其可磨性最差。钢1和2的切屑形成模式也大不相同。切屑的微观结构根据其热历史而变化很大。

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