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Tool Engage Investigation in Nickel Superalloy Turning Operations

机译:工具参与镍超合金车削操作的调查

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Turning operations on complex components such as aircraft engines casings require the insert replacement at the end of each geometric feature manufacturing, independently from the actual tool wear level. For this reason, it is important to generally preserve tool integrity during the machining operation especially when the tool engages the workpiece (i.e., the most critical phase of operation). In fact, if the tool is damaged in this stage the quality of the whole operation is compromised. The attention has been focused on engage cutting conditions since the phenomenon that appears in this critical step plays a large influence on tool integrity and, consequently, on the quality of the operation. For this purpose a ring-workpiece of nickel-based super alloy (Inconel 718) has been machined in lubricated cutting conditions by using a CNC lathe with carbide coated tools. Two variables have been investigated in this study: the Depth Of Cut (DOC) and the approaching Engage angle (En), while the Cutting Speed (S), Feed-rate (F) and removed volume (Vrim) were kept constant. Both tool wear and cutting forces evolution during cutting have been analyzed.
机译:在飞机发动机壳体等复杂部件上转动操作需要在每个几何特征制造结束时替换,独立于实际工具磨损水平。因此,重要的是在加工操作期间通常保持工具完整性,特别是当工具接合工件时(即,最关键的操作阶段)。实际上,如果该工具在此阶段损坏,则整个操作的质量受到损害。由于该关键步骤中出现的现象对刀具完整性的现象来说,注意力的关注是专注于啮合条件,因此,在操作的质量上起着很大影响。为此目的,通过使用具有碳化物涂层工具的CNC车床,在润滑的切割条件下加工基于镍的超合金(Inconel 718)的环 - 工件。本研究已经研究了两个变量:切割深度(DOC)和接近接合角度(Zh),而切割速度,进料速率(F)和移除的体积(VRIM)保持恒定。分析了切割过程中的工具磨损和切割力的进化。

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