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Experimental Investigation into Wear and Tool Life of Milling Cutter PVD Coated Carbide Inserts While Armox 500 Steel Hard Milling

机译:Armox 500钢硬铣削铣刀PVD涂层硬质合金刀片的磨损和刀具寿命的实验研究

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The goal of the submitted paper is to evaluate the dependence of tool life T = f(vc) in hard rough face milling process of the Armox 500 steel through the PVD coated cemented carbide cutting material with SNHF 1204EN-SR-M1 tool insert geometry. Practical tests of choice material were performed in the milling machine tool with vertical axis. The effect of applied cutting conditions on the surface finish, tool life, wear of cutting tool, such as flank wear and surface structure of applied cutting inserts, was investigated during the performed experiments. The goal of this article is to research the impact of various cutting speeds values during the process of hard face rough milling. Experiments are carried out with an aim to study tool life, surface finish and flank wear prediction on the PVD coated cemented carbide cutting material in hard milling processes. This has been observed through the REM and mathematical method of least squares for this characterization. The presented approach and acquired results will prove themselves helpful in understanding the machinability of Armox 500 steel during the hard milling process.
机译:提交论文的目的是通过采用SNHF 1204EN-SR-M1刀具刀片几何形状的PVD涂层硬质合金切削材料,评估Armox 500钢在硬质粗糙面铣削过程中刀具寿命T = f(vc)的依赖性。选择材料的实际测试在带有垂直轴的铣床中进行。在进行的实验中,研究了施加的切削条件对表面光洁度,刀具寿命,切削刀具的磨损(例如侧面磨损和所施加切削刀片的表面结构)的影响。本文的目的是研究硬面粗铣削过程中各种切削速度值的影响。进行实验的目的是研究硬铣削过程中PVD涂层硬质合金切削材料的刀具寿命,表面光洁度和侧面磨损预测。通过REM和最小二乘法的数学方法对此特性进行了观察。所提出的方法和获得的结果将证明自己有助于理解硬磨过程中Armox 500钢的可切削性。

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