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单晶镍基高温合金铣削中尺寸效应的影响

Influence of Size Effect in Milling of a Single-Crystal Nickel-Based Superalloy.

作者信息

Soriano Gonzalez Luis, Medina Aguirre Fernanda, Soo Sein Leung, Hood Richard, Novovic Donka

机构信息

Machining Research Group, Department of Mechanical Engineering, School of Engineering, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.

Manufacturing Technology, Rolls-Royce Plc, More Lane, Derby DE24 8BJ, UK.

出版信息

Micromachines (Basel). 2023 Jan 26;14(2):313. doi: 10.3390/mi14020313.

Abstract

This paper details an experimental investigation on the influence of the size effect when slot-milling a CMSX-4 single-crystal nickel-based superalloy using 1 mm- and 4 mm-diameter TiAlN-coated tungsten carbide (WC) end-mills. With all tools having similar cutting-edge radii (r) of ~6 µm, the feed rate was varied between 25-250 mm/min while the cutting speed and axial depth of cut were kept constant at 126 m/min and 100 µm, respectively. Tests involving the Ø 4 mm end-mills exhibited a considerable elevation in specific cutting forces exceeding 500 GPa, as well as irregular chip morphology and a significant increase in burr size, when operating at the lowest feed rate of 25 mm/min. Correspondingly for the Ø 1 mm micro-end-mills, high levels of specific cutting forces up to ~1000 GPa together with severe material ploughing and grooving at the base of the machined slots were observed. This suggests the prevalence of the size effect in the chip formation mechanism as feed per tooth/uncut chip thickness decreases. The minimum uncut chip thickness (h) when micromilling was subsequently estimated to be less than 0.10 r, while this increased to between 0.10-0.42 r when machining with the larger Ø 4 mm tools.

摘要

本文详细介绍了一项实验研究,该研究探讨了使用直径为1毫米和4毫米的TiAlN涂层硬质合金(WC)立铣刀对CMSX-4单晶镍基高温合金进行槽铣时尺寸效应的影响。所有刀具的切削刃半径(r)均约为6微米,进给速度在25至250毫米/分钟之间变化,而切削速度和轴向切削深度分别保持在126米/分钟和100微米不变。涉及直径4毫米立铣刀的测试表明,当以25毫米/分钟的最低进给速度运行时,单位切削力显著升高,超过500吉帕,同时切屑形态不规则,毛刺尺寸显著增加。相应地,对于直径1毫米的微型立铣刀,观察到高达约1000吉帕的高水平单位切削力,以及加工槽底部严重的材料犁削和沟槽。这表明随着每齿进给量/未切削切屑厚度的减小,尺寸效应在切屑形成机制中普遍存在。随后估计微铣削时的最小未切削切屑厚度(h)小于0.10r,而使用较大的直径4毫米刀具加工时,该厚度增加到0.10至0.42r之间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8f1/9961599/499852581464/micromachines-14-00313-g001.jpg

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