Role of Li and Sc Additions and Machining Conditions on Cutting Forces on Milling Behavior of A7075-Based Alloys

IF 3.3 Q2 ENGINEERING, MANUFACTURING
Ali Tahmasbi, J. B. M. Moungomo, Agnes M Samuel, Y. Zedan, V. Songmene, F. H. Samuel
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引用次数: 0

Abstract

The present study focuses on the dry and wet end milling of three distinct Aluminum 7075 alloys: A7075, A7075–Sc (with a 0.18% Sc addition), and A7075–Li–Sc (containing 2.2% Li and 0.18% Sc additions). The main objective is to explore how cutting parameters (cutting speed and feed rate), heat treatment, alloy composition, and cooling methods influence A lcutting force. In the initial phase of the investigation, all three alloys underwent heat treatment. Subsequently, the machining process centered on the softest and hardest conditions, aiming at analyzing the impact of hardness on machinability behavior of the three studied alloys, using the same milling tool and a consistent depth of cut under both dry and wet conditions. The investigations also highlight the role of Li and Sc additions on the quality of surface finish, as well as burr and chip formation. In total, a sum of 108 operations have been performed on the present alloys.
添加 Li 和 Sc 以及加工条件对切削力的影响对 A7075 基合金铣削行为的影响
本研究的重点是对三种不同的铝 7075 合金进行干式和湿式端铣:A7075、A7075-Sc(添加 0.18% Sc)和 A7075-Li-Sc(添加 2.2% Li 和 0.18% Sc)。主要目的是探索切削参数(切削速度和进给率)、热处理、合金成分和冷却方法如何影响切削力。在研究的初始阶段,三种合金都进行了热处理。随后,加工过程集中在最软和最硬的条件下,目的是分析硬度对所研究的三种合金的加工性能的影响,在干湿两种条件下使用相同的铣刀和一致的切削深度。研究还强调了锂和钪的添加对表面光洁度以及毛刺和切屑形成的影响。对这些合金总共进行了 108 次加工。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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