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Advances in the surface defect machining (SDM) of hard steels

机译:硬钢表面缺陷加工(SDM)的进展

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摘要

This paper reports the realisation of precision surface finish (Ra 30 nm) on AISI 4340 steel using a conventional turret lathe by adapting and incorporating a surface defect machining (SDM) method [Wear, 302, 2013 (1124-1135)]. Conventional ways of machining materials are limited by the use of a critical feed rate, experimentally determined as 0.02 mm/rev, beyond which no appreciable improvement in the machined quality of the surface is obtained. However, in this research, the novel application of an SDM method was used to overcome this minimum feed rate limitation ultimately reducing it to 0.005 mm/rev and attaining an average machined surface roughness of 30 nm. From an application point of view, such a smooth finish is well within the values recommended in the ASTM standards for total knee joint prosthesis. Further analysis was done using SEM imaging, white light interferometry and numerical simulations to verify that adapting SDM method provides improved surface integrity by reducing the extent of side flow, microchips and weldments during the hard turning process.
机译:本文通过采用并结合表面缺陷加工(SDM)方法,报道了使用常规转塔车床在AISI 4340钢上实现精密表面光洁度(Ra 30 nm)的方法[Wear,302,2013(1124-1135)]。加工材料的常规方式受到临界进给速度的限制,该进给速度根据实验确定为0.02 mm / rev,超过该临界进给速度则无法获得表面加工质量的明显改善。但是,在这项研究中,使用SDM方法的新颖应用来克服此最小进给速率限制,最终将其降低到0.005 mm / rev,并获得30 nm的平均机加工表面粗糙度。从应用的角度来看,这种光滑的光洁度完全在ASTM标准中推荐的全膝关节假体标准值之内。使用SEM成像,白光干涉测量法和数值模拟进行了进一步分析,以验证适应性SDM方法可通过减少硬车削过程中的侧向流动,微芯片和焊件的程度来改善表面完整性。

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