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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation of machinability characteristics and chip morphology study in laser-assisted machining of Inconel 718
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Investigation of machinability characteristics and chip morphology study in laser-assisted machining of Inconel 718

机译:inconel 718激光辅助加工的可加工性特征及芯片形态学研究

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摘要

Laser-assisted machining (LAM) is a promising solution for all categories of difficult-to-machine materials like ceramics, metals and composites. Inconel 718, a difficult-to-machine material, is used in critical aero engine components. The objective of the study is to investigate its machining characteristics with low-cost cutting inserts using LAM. Therefore, in this paper, the machinability of this alloy has been investigated using physical vapour disposition-coated (TiAlN) carbide inserts in terms of cutting force, surface roughness, flank wear and chip formation in different range of cutting parameters. This investigation shows the improvement in machining performance of about 46, 36, 34, 50 44 and 68% for feed force, thrust force, cutting force, surface roughness and flank wear when compared to conventional machining (CM). For the criteria of benefit comparison, the detailed geometrical characteristic of produced chip and its morphology evaluation have been carried out under microscopic examination. The amplitude of this reduction is due to the maximum undeformed chip thickness of about 170 mu m in LAM compared to CM.
机译:激光辅助加工(LAM)是所有类别的难以加入的陶瓷,金属和复合材料等类别的有希望的解决方案。 Inconel 718是一种难以加入的材料,用于关键航空发动机部件。该研究的目的是研究其使用LAM的低成本切削刀片的加工特性。因此,在本文中,在不同的切削参数范围内的切割力,表面粗糙度,侧面磨损和芯片形成方面,研究了这种合金的可加工性已经使用物理蒸汽散列涂层(TiAln)碳化物插入物。该研究表明,与常规加工(CM)相比,进料力,推力,切割力,表面粗糙度和侧面磨损的加工性能的改善。对于益处比较标准,在微观检查下进行了产生的芯片的详细几何特征及其形态学评价。该降低的幅度是由于λ相比脉冲约170μm的最大未变形芯片厚度。

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