热钻进周期中能量消耗的测量

Paweł Błaszczak, R. Stryczek
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引用次数: 0

摘要

该工作提出了测量和分析热钻进周期中能量消耗的问题。介绍了一种基于数控车床的试验台,该试验台的设备是基于电表和测力仪的实验能耗系统。在自适应进给控制策略中,所使用的测量装置可以记录电网上的负载、机床驱动器上的负载、轴向力、钻头制动扭矩、机床主轴的当前旋转、钻头相对于工件的位置以及辅助参数寄存器的值。考虑了钻井周期的两种情况:在一个周期内钻一个孔和钻一系列孔。在钻井周期中测试了五种进给控制策略,包括自适应进给控制和递归进给优化方法。为了比较,也用传统的高速钢麻花钻打孔。根据得到的试验结果,可以得出结论,摩擦钻孔法可以纳入薄壁元件的节能制孔方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of Energy Consumption During a Thermal Drilling Cycle
The work presents the issue of measuring and analyzing energy consumption during a thermal drilling cycle. A research stand based on a CNC lathe was presented, the equipment of which was an experimental energy consumption system based on an electricity meter and a force gauge. The measuring devices used allowed for recording the load on the power grid, the load on the machine tool drives, the axial force, the drill braking torque, the current rotation of the machine tool spindle, the position of the drill in relation to the workpiece and the values of auxiliary parameter registers in the strategy of adaptive feed control. Two cases of a drilling cycle were considered: making a single hole and making a series of holes in one cycle. Five feed control strategies were tested during the drilling cycle, including adaptive feed control and a recursive feed optimization method. For comparison, holes were also made with traditional HSS twist drills. Based on the obtained test results, it can be concluded that the friction drilling method can be included in the energy-saving methods of making holes in thin-walled elements.
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