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Analysis of milling of iron aluminides

机译:铝化物铁的研磨分析

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The machinability of an ordered iron aluminide compound, assessed by peak cutting force values, under milling conditions was studied. The machinability of the material focused over the following range of conditions: speed from 25 to 400 sfpm (7.5-120 m/min); feed from 0.001 to 0.003 ipt (0.025-0.075 mm per tooth) and 4-56 imp (0.1-1.4 m/min); and depth of cut (DOC) from 0.005 to 0.030 in. (0.125-0.750 mm). The study was used to establish a general understanding of the machinability of the material. A cutting force model based on Yellowley's constant cutting pressure model was developed. Comparison of simulated cutting forces and measured cutting forces under a variety of different cutting parameter settings were made to verify the cutting model. Tool wear as a function of speed and cutting force was also studied. The study concludes that high-speed tools cannot be used to machine iron aluminides. The cutting forces during milling of iron aluminides are 1.5-3.5 times of those measured during machining of medium carbon steels and on a scale of 100, the machinability rating of iron aluminides is about 13.7. In addition, in order to prevent failure or very large cutting forces, the maximum cutting speed and DOC that can be used to machine iron aluminide are found to be 200 sfpm (60 m/min) and 0.015 in. (0.375 mm), respectively.
机译:研究了在研磨条件下通过峰切削力值评估的有序铝化铁化合物的可加工性。材料的可机械加工性集中在以下条件范围内:速度从25到400 sfpm(7.5-120 m / min);进给量为0.001至0.003 ipt(每齿0.025-0.075 mm)和4-56 imp(0.1-1.4 m / min);切割深度(DOC)从0.005到0.030英寸(0.125-0.750毫米)。该研究用于建立对材料可加工性的一般理解。建立了基于Yellowley恒定切削压力模型的切削力模型。在各种不同的切削参数设置下,比较模拟切削力和测量切削力,以验证切削模型。还研究了刀具磨损与速度和切削力的关系。研究得出结论,不能使用高速工具来加工铝化铁。铣削铝化铁时的切削力是中碳钢加工时测得的切削力的1.5-3.5倍,比例为100,铝化铁的可加工性等级约为13.7。另外,为了防止故障或很大的切削力,可用于加工铝化铁的最大切削速度和DOC分别为200 sfpm(60 m / min)和0.015英寸(0.375 mm)。 。

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