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Effect of Cutting Speed and Tool Coating on Machined Surface Integrity of Ni-based Super Alloy

机译:切削速度和工具涂层对镍基超级合金机械加工表面完整性的影响

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Inconel 825 belongs to the family of nickel-based super alloy and is widely used in the chemical and marine industry. Although most of the research work was concentrated on machinability of Inconel 718, no such work on the current grade of Inconel 825 has been reported so far. This grade of Inconel is particularly suitable for the applications requiring improved resistance to corrosion. The current study aims at investigating the effect of cutting speed and chemical vapour deposition (CVD) multilayer coating on machined surface integrity of Inconel 825 during dry turning, with particular emphasis on measurement of sub-surface hardness and white layers. Three regions were distinguished beneath the machined surface viz. (a) white layer, (b) plastic deformation region and (c) bulk material. It was observed that increase in cutting speed increased white layer thickness after machining with both uncoated and coated tools. CVD coated cemented carbide insert resulted in decrease in white layer thickness particularly in the lower range of cutting velocity when compared with that obtained by its uncoated counterpart. Vickers microhardness test clearly revealed the work hardening tendency of Inconel 825 with hardness being maximum in the sub- surface region and it decreased when measurements were gradually taken towards the centre of the workpiece. However, this tendency was found to be reduced with the use of multilayer coated tool.
机译:Inconel 825属于镍基超级合金家族,广泛用于化学和海洋工业。尽管大多数研究工作都集中在Inconel 718的可加工性上,但迄今为止,尚无关于当前Inconel 825等级的此类工作的报道。此等级的Inconel特别适合需要提高耐腐蚀性的应用。当前的研究旨在调查切削速度和化学气相沉积(CVD)多层涂层在干车削过程中对Inconel 825机械加工表面完整性的影响,尤其着重于测量亚表面硬度和白层。在加工的表面下方分为三个区域。 (a)白色层,(b)塑性变形区域,和(c)散装材料。观察到切削速度的增加在用未涂覆和涂覆的工具进行机械加工之后增加了白色层的厚度。与未涂层的硬质合金刀片相比,CVD涂层的硬质合金刀片特别是在切削速度较低的范围内,导致白层厚度减少。维氏显微硬度测试清楚地显示了Inconel 825的加工硬化趋势,其中硬度在次表面区域最大,而当逐渐向工件中心进行测量时,该硬度下降。但是,发现使用多层涂覆工具可以降低这种趋势。

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