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Analisa Teoritis Kebutuhan Daya Mesin Bubut Gear Head Turret

机译:齿轮箱转塔车床功率要求的理论分析

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摘要

In the process of turning require power, in which the power obtained from electrical energy. The electrical energy is then converted into mechanical energy via an electric motor. How much power the electric motor is determined by several factors, among others: cutting speed, depth of cut, motion eating, cutting time and cutting tool material.udIn modern lathe used system is to make the gear head gear as the transmission power is driven by an electric motor. So that there is a relationship between the electric motor power on a lathe with head gear system to the cutting depth on a lathing process.udThe process of turning the workpiece AISI 1020 BHN 175, carbide tool with cutting tool angle of 300, cutting speeds of 300 fpm, motion eat 0.025 ipr, with variations in the depth of cut of 0.1 mm, 0,2mm, 0.3 mm, 0.4 mm, 0.5 mm, 0.6 mm and 0.7 mm obtained will power the electric motors that vary according to the depth of cuts.udThe results of a theoretical analysis of the power requirements of gear head lathe turret with a variation of the cutting depth can be concluded that the theory obtained vary linearly extending line y = 2,6423x. So the deeper the cuts, the greater the power needed to cut on a lathe turret head gear.
机译:在转向过程中需要动力,其中动力是从电能中获得的。然后,电能通过电动机转换为机械能。电动机的功率由几个因素决定,其中包括切削速度,切削深度,运动进给,切削时间和切削工具材料。 ud在现代车床中,所使用的系统是使齿轮头齿轮成为传递动力,由电动机驱动。因此,带顶齿轮系统的车床上的电动机功率与车削过程中的切削深度之间存在一定的关系。 ud车削AISI 1020 BHN 175工件的过程,切削角度为300的硬质合金刀具,切削速度速度为300 fpm时,运动进给量为0.025 ipr,所获得的切割深度变化为0.1 mm,0.2 mm,0.3 mm,0.4 mm,0.5 mm,0.6 mm和0.7 mm,将为根据深度变化的电动机提供动力 ud对齿轮头车床转塔功率需求随切削深度的变化进行理论分析的结果可以得出结论,得出的理论是线性变化的,y = 2,6423x。因此,切削越深,切削车床转塔头齿轮所需的功率就越大。

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