用多层涂层刀具加工柴油机涡轮增压器转子轴的特点

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Engineering Technologies and Systems Pub Date : 2021-12-30 DOI:10.15507/2658-4123.031.202104.518-529
V. A. Skryabin
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引用次数: 0

摘要

介绍。本文介绍了硬质合金钢切削单元采用多层硬质耐热耐磨涂层的刀具加工时功率参数的试验研究结果。所获得的数据将使优化加工难加工材料成为可能。材料与方法。研究的目的是测量车削产品的功率参数,并建立不同工艺模式下功率参数的实验公式。为此,采用一种特殊的多分量测量复合体来估计模态参数对切削力分量变化的影响。将数控机床与三分量测功机和工装相结合,对其进行了改造。刀具的切削单元涂有多层坚硬、耐热、耐磨的涂层。该工具配备了连接到个人计算机的仪器,用于测量和处理实验数据。根据研究结果,得到了在加工高硬度、耐热、耐磨性合金钢构件时考虑模态参数对切削力分量影响的图解式和经验公式。讨论与结论。通过研究,得到了用带切削板的刀具加工零件时,不同模态参数下切削力分量的实验公式。钢板表面涂有多层坚硬耐磨的碳氮化钛、氧化铝和氮化镍涂层。该涂层显著提高了刀具切削单元的硬度、耐热性和耐磨性,提供了高质量的加工。
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Features of Machining Rotor Shafts of Diesel Engine Turbochargers with a Multilayer-Coated Tool
Introduction. The paper presents the results of experimental studies of power parameters when hard alloy steels are machined with tools, the cutting units of which have multilayer hard, heat-resistant and wear-resistant coatings. The obtained data will make it possible to optimize machining hard-to-machine materials. Materials and Methods. The aim of the study is to measure the power parameters of turning products and to create experimental formulas of power parameters for different technological modes. For this purpose, a special measuring multicomponent complex was used to estimate the influence of the mode parameters on the change in the cutting force components. Results. The numerically controlled machine tool was retooled by combining it with a three-component dynamometer and tooling. The cutting unit of the tool was coated with a multi-layer hard, heat-resistant and wear-resistant coating. The tool was equipped with instruments connected to a personal computer for measuring and processing experimental data. According to the results of the study, there have been obtained graphical dependences and empirical formulas, which take into account the influence of the mode parameters on the cutting force components when machining the units of alloy steels of high hardness, heat resistance and wear resistance. Discussion and Conclusion.The study allowed us to obtain experimental formulas of cutting force components for different mode parameters when machining parts by the tool equipped with cutting plates. The plates are coated with multilayer hard and wear-resistant coatings of titanium carbonitride, aluminum oxide and nickel nitride. The coating increases significantly the hardness, heat and wears resistance of the tool cutting unit and provides quality machining.
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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