首页> 外文会议>ASME international manufacturing science and engineering conference >INVESTIGATING THE EFFECT OF WIRE FEED RATE AND WIRE TENSION ON THE CORNER AND PROFILE ACCURACIES DURING WIRE-EDM OF TI-6AL-4V
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INVESTIGATING THE EFFECT OF WIRE FEED RATE AND WIRE TENSION ON THE CORNER AND PROFILE ACCURACIES DURING WIRE-EDM OF TI-6AL-4V

机译:研究TI-6AL-4V的电火花加工过程中,进线速度和线张力对角和轮廓精度的影响

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Ti-6Al-4V (grade 5 titanium alloy) is one of the most widely used materials in aerospace applications including turbine blades for aerospace engines. Due to the difficulty of machining titanium alloys using conventional machining processes, wire-electro-discharge machining (wire-EDM) is used extensively for cutting titanium parts with complex geometries and profiles. The objective of this study is to investigate the effect of two important non-electrical parameters in wire-EDM, i.e. wire feed rate and wire tension, on the geometric corner and profile accuracies of the Ti-6Al-4V parts machined by wire EDM. A complex profile was designed for machining in two different thicknesses of titanium alloy using each set of experimental parameters. The complex part includes corners with 45°, 90°and 112.5°, as well as thin wall section for measuring the kerf accuracy. It was found that with the increase of wire tension, the corner accuracies at almost all the angles improved, however, too high wire tension caused inaccuracies by providing larger angles than the target values. The effect of wire tension was dependent on the thickness of the machined part. For thinner workpiece the results of the angles generated barely followed a trend, whereas for thicker part, the measured angles followed an excellent trend. The kerf accuracies were found to improve with the increase of wire tension for thin part, whereas for thick part the results of kerf width accuracies were inconsistent. In case of wire feed rate, it was found that comparatively lower settings of wire feed rates were favorable for machining thinner parts with enhanced corner accuracies. On the other hand, slightly higher wire feed rates provided better corner accuracies for thick part. Besides corner inaccuracy, profile undercuts and deviations from the machining paths were observed for lower wire tensions. Finally, it can be concluded that comparatively lower wire feed rate and higher wire tension provides improved corner and profile accuracies, however, for machining thinner sections using wire-EDM, the trends are not obvious.
机译:Ti-6Al-4V(5级钛合金)是航空航天应用中使用最广泛的材料之一,包括用于航空发动机的涡轮叶片。由于使用常规机加工工艺加工钛合金的困难性,线切割加工(wire-EDM)广泛用于切削具有复杂几何形状和轮廓的钛零件。这项研究的目的是研究电火花线切割加工中两个重要的非电参数,即送线速度和线张力对电火花线切割加工的Ti-6Al-4V零件的几何拐角和轮廓精度的影响。设计了复杂的轮廓,以便使用每组实验参数加工两种不同厚度的钛合金。复杂的零件包括45°,90°和112.5°的角,以及用于测量切缝精度的薄壁部分。已经发现,随着线张力的增加,几乎所有角度的拐角精度都会提高,但是,过高的线张力会通过提供比目标值更大的角度而导致误差。线张力的影响取决于加工零件的厚度。对于较薄的工件,所产生的角度结果几乎没有趋势,而对于较厚的工件,所测量的角度则遵循极好的趋势。发现细线部分的切缝精度随线张力的增加而提高,而厚部分的切缝宽度精度的结果不一致。在送丝速率的情况下,发现较低的送丝速率设置有利于加工具有较高角精度的较薄零件。另一方面,较高的送丝速度可为厚零件提供更好的转角精度。除了拐角不准确,还观察到轮廓底切和与加工路径的偏差,以降低线张力。最后,可以得出结论,较低的焊丝进给速度和较高的焊丝张力可提供改善的拐角和轮廓精度,但是,对于使用电火花线切割机加工较薄的截面而言,这种趋势并不明显。

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