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Investigation on Some Machinability Aspects of Inconel 825 During Dry Turning

机译:Inconel 825干车加工中某些可加工性方面的研究

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In the current study, attempt has been made to investigate the influence of cutting speed (Vc) (51, 84, and 124m/min) on various machining characteristics like chip morphology, chip thickness ratio, tool wear, surface, and sub-surface integrity during dry turning of Inconel 825. Comparable study was carried out using uncoated and commercially available chemical vapor deposition multilayer coated (TiN/TiCN/Al2O3/ZrCN) cemented carbide (ISO P30 grade) insert. Chip morphology consists of chip forms obtained at different cutting conditions. Serrated chips were observed when machining Inconel 825 with both types of tool with more serration in case of uncoated insert. The chip thickness ratio increased as cutting speed was increased. Use of multilayer coated tool also resulted in increase in chip thickness ratio. Rake and flank surfaces were examined with scanning electron microscope and optical microscope. Abrasion, adhesion, and diffusion wears were found to be dominating tool wear mechanism during dry machining of Inconel 825. The beneficial effect of coated tool over its uncoated counterpart was most prominent during machining at high cutting speed (Vc=124m/min). The surface and sub-surface integrity obtained with coated tool were superior to that while machining Inconel 825 with uncoated tool.
机译:在当前的研究中,已尝试研究切削速度(Vc)(51、84和124m / min)对各种加工特性(如切屑形态,切屑厚度比,刀具磨损,表面和亚表面)的影响。 Inconel 825干式车削过程中的整体性。使用未涂覆和可商购的化学气相沉积多层涂层(TiN / TiCN / Al2O3 / ZrCN)硬质合金(ISO P30级)刀片进行了比较研究。切屑形态由在不同切削条件下获得的切屑形式组成。当使用两种类型的工具对Inconel 825进行加工时,如果锯齿未涂层,则会观察到锯齿状切屑。切屑厚度比随着切削速度的增加而增加。使用多层涂覆的工具还导致切屑厚度比的增加。用扫描电子显微镜和光学显微镜检查前刀面和后刀面。发现在Inconel 825的干式加工过程中,磨损,粘附和扩散磨损是主要的工具磨损机理。在高切削速度(Vc = 124m / min)的加工过程中,涂层工具相对于未涂层工具的有益效果最为突出。使用涂层工具获得的表面和亚表面完整性优于使用未涂层工具加工Inconel 825时的表面和亚表面完整性。

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