Determination of Cost-Effective Machining Strategies for Rough Pocket Milling of Aluminum by Computer-Aided Manufacturing

IF 1 Q3 ENGINEERING, MULTIDISCIPLINARY Advances in Science and Technology-Research Journal Pub Date : 2023-10-02 DOI:10.4028/p-2kdotw
Enrique García-Martínez, Valentín Miguel, Ángel Mancebo, Alberto Martínez-Martínez
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Abstract

Pocketing is one of the most important operations in the machining of complex parts. This milling process usually consumes a large part of the total machining time, especially if an extensive quantity of material is involved, determining the efficiency of the process. This paper studies the influence of the machining strategy and cutting conditions, and the geometry of the pocket on the machining time and cost when milling AW2007 aluminum alloy. For that purpose, a combined methodology based on experimental tests and CAM simulation is proposed. Cost analysis, which represents the main novelty of the research, takes into consideration, properly, the cutting time required to complete the pocket, the tool life, the tool change time and some economic factors such as power and tool costs. Spiral, curvilinear, parallel and zig-zag machining paths, along with seven different pocket geometries, are considered. Parallel and curvilinear milling trajectories have been found as the most cost-effective strategies. The efficiency of the parallel strategy increases with respect to the others as the geometry of the pocket becomes less compact, i.e., it is defined with a higher shape factor. According to the experimental tests and cost results, the machining operation should be performed with the highest feed rate, axial depth and cutting speed of the experimented values, 0.2 mm/tooth, 10 mm and 200 mm/min, respectively.
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基于计算机辅助制造的铝粗袋铣削经济高效加工策略的确定
装袋是复杂零件加工中最重要的工序之一。这种铣削过程通常消耗了总加工时间的很大一部分,特别是当涉及大量材料时,决定了工艺的效率。研究了AW2007铝合金铣削加工时,加工策略、切削条件、刀袋几何形状对加工时间和成本的影响。为此,提出了一种基于实验测试和CAM模拟的综合方法。成本分析是本研究的主要新颖之处,它适当地考虑了完成口袋所需的切削时间、刀具寿命、换刀时间以及一些经济因素,如功率和刀具成本。考虑了螺旋、曲线、平行和锯齿形加工路径,以及七种不同的口袋几何形状。平行和曲线铣削轨迹已被发现是最具成本效益的策略。当口袋的几何形状变得不那么紧凑时,平行策略的效率相对于其他策略增加,即,它被定义为具有更高的形状因子。根据实验测试和成本结果,应以实验值的最高进给速度、轴向深度和切削速度分别为0.2 mm/齿、10 mm和200 mm/min进行加工操作。
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来源期刊
Advances in Science and Technology-Research Journal
Advances in Science and Technology-Research Journal ENGINEERING, MULTIDISCIPLINARY-
CiteScore
1.60
自引率
27.30%
发文量
152
审稿时长
8 weeks
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