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Enhanced machinability of SiCp/Al composites with laser-induced oxidation assisted milling

机译:激光诱导氧化辅助研磨的SICP / Al复合材料的增强的可加工性

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摘要

In this study, an innovative machining process called laser-induced oxidation assisted milling (LOM) is proposed. A polycrystalline diamond (PCD) cutting tool is applied to machine 55% SiCp/Al composites. The laser-induced oxidation mechanism is investigated. Under the condition of average laser power of 10 W, laser scanning pitch of 15 mu m, laser scanning speed of 6 mm/s and oxygen-rich atmosphere, the effect of laser-induced oxidation is optimal. A loose oxide layer and a sub-layer with the hardness of 160 +/- 40 HV are generated where the composition of the oxide layer is mullite (2Al(2)O(3)center dot SiO2). Comparative investigation on the cutting force, surface quality and tool wear are performed. Compared with the conventional milling (CM), the normal force and thrust force of LOM decrease by 39% and 55%, respectively. The reduction of cutting forces is attributed to thermal failure of the interface layer. The dominant surface defects of the machined surface are particle fracture, particle pull-out, matrix tearing and matrix coating. Among the investigated parameters, the minimum surface roughness S-a is 0.37 mu m when the feed per tooth and the cutting depth are 0.005 mm/z and 0.2 mm, respectively. The dominant tool wear modes of LOM include diamond spalling and edge chipping. The tool wear modes of CM are diamond spalling, edge chipping, abrasive wear, and adhesive wear. LOM can prolong the tool life and achieve better surface quality under the same cutting length.
机译:在本研究中,提出了一种称为激光诱导的氧化辅助研磨(LOM)的创新加工过程。将多晶金刚石(PCD)切割工具应用于机器55%SICP / Al复合材料。研究了激光诱导的氧化机制。在平均激光功率的条件下10W,激光扫描间距为15μm,激光扫描速度为6mm / s和富氧气氛,激光诱导的氧化效果是最佳的。产生松散的氧化物层和具有160 +/- 40HV硬度的子层,其中氧化物层的组成是莫来石(2Al(2)O(3)中心点SiO 2)。对切​​削力,表面质量和工具磨损进行比较调查。与常规铣削(CM)相比,LOM的正常力和推力分别降低了39%和55%。切割力的减小归因于界面层的热失效。机加工表面的主要表面缺陷是颗粒骨折,颗粒拉出,基质撕裂和基质涂层。在研究的参数中,当每齿的进料和切割深度分别为0.005mm / z和0.2mm时,最小表面粗糙度S-A为0.37μm。 LOM的主导工具磨损模式包括金刚石剥落和边缘碎片。 CM的工具磨损模式是金刚石剥落,边缘碎片,磨料磨损和粘合剂磨损。 LOM可以延长刀具寿命并在相同的切割长度下实现更好的表面质量。

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