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Study on Effect of Tool Overhang on Machining Characteristics of Al 7075-T6 in Orthogonal Turning Process

机译:工具突出对正交转换过程中Al 7075-T6加工特性的影响研究

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In the present experimental study, the effect of turning tool overhang on the chip morphology and vibrations during orthogonal turning has been investigated. Orthogonal cutting (turning) setup was developed to ensure the cutting process happens in a 2-dimesional plane. Orthogonal cutting was realized by turning a circular tube with geometry of 33.88 mm external diameter and 3.5 mm wall thickness (7075-T6 Alloy). High speed steel (HSS) rod with a square cross-section (1/2 x 1/2 square inch) was used to fabricate the orthogonal turning tool with a geometry of 15° back rake angle and 9° clearance angle. The cutting experiments were conducted for different tool overhang lengths (2cm, 3cm, 4cm, 5cm & 6cm) by keeping constant cutting speed (25 m/min) and feed (0.15mm/rev). The vibrational characteristics were measured using accelerometer and Ni-DAQ card. The morphology and microstructure of the chips collected during cutting were studied under optical microscope using metallographic procedures. It was found that for increasing overhang length of cutting tool the chips serrations was found increasing. The frequency of cutting tool and amplitude of vibration was found increasing with increasing tool overhang length.
机译:在本实验研究中,研究了转向工具突出对正交转弯期间芯片形态和振动的影响。开发正交切割(转动)设置以确保切割过程发生在2分体平面中。通过将圆形管转动为33.88mm外径的几何和3.5mm壁厚(7075-T6合金)来实现正交切割。具有方形横截面(1/2×1/2平方英寸)的高速钢(HSS)杆用于制造具有15°后耙角度的几何形状的正交转动工具和9°间隙角度。通过保持恒定切割速度(25m / min)和饲料(0.15mm / ref),对不同工具突出长度(2cm,3cm,4cm,5cm和6cm)进行切割实验。使用加速度计和Ni-DAQ卡测量振动特性。使用金相程序在光学显微镜下进行切割期间收集的芯片的形态和微观结构。结果发现,对于增加切削工具的突出长度,发现芯片锯齿增加。发现切削刀具和振动幅度随着工具悬垂长度的增加而增加。

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