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Identifying Optimal Cutting Parameters in Drilling of Titanium Aluminum Vanadium Using Finite Element Analysis

机译:用有限元分析确定钛铝钒钻削的最佳切削参数

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Titanium alloys are widely used in the aerospace industries because of their excellent strength-to-weight ratio, high resistance to corrosion, high chemical reactivity and low thermal conductivity and ability to withstand high temperatures. However, these properties make titanium alloys difficult to machine. Drilling of titanium alloy may generate high temperature and high cutting forces. This paper is aimed at determining the suitable cutting parameters in the drilling of titanium alloys to minimize the cutting temperature and cutting forces. A finite element 3D model of the drilling process is simulated in this research. A combination of drilling speeds and feed rates are simulated to obtain the resulting responses of cutting force and temperature. The central composite design (CCD) is used to generate different combinations of cutting parameters to reduce the number of experiments and optimize the temperature and cutting force responses. Results show at the drilling speed of 5000 rpm with a feed rate of 0.1 mm/rev, temperature and cutting force significantly reduced.
机译:钛合金广泛应用于航空航天行业,因为它们具有优异的强度重量比,耐腐蚀性高,化学反应性高,导热性低以及承受高温的能力。然而,这些性质使钛合金难以加工。钛合金钻孔可能产生高温和高切削力。本文旨在确定钛合金钻井中的合适切削参数,以最小化切削温度和切割力。在本研究中模拟了钻井过程的有限元3D模型。模拟钻孔速度和进料速率的组合,以获得切割力和温度的所得到的响应。中央复合设计(CCD)用于产生切割参数的不同组合,以减少实验的数量,并优化温度和切割力响应。结果以5000rpm的钻孔速度显示,进给速率为0.1 mm / ref,温度和切割力显着降低。

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