设计新型自进给钻床的主要技术参数

V. Svinin, A. Shutenkov, B. B. Ponomarev
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摘要

目的是为俄罗斯联邦生产的自进给钻孔机的设计制定和证实一套技术和经济要求,这在进口替代的背景下尤为重要。研究以阿特拉斯-科普柯、德苏特尔和 Recoules 生产的自进给钻孔机为参考,以匹配其性能和规格。通过与这些机器进行类比,所开发机器的极限重量和总体尺寸应分别不超过 6 千克和 320x110x450 毫米。选择用于主轴旋转和轴向进给的电机时,使用硬质合金钻头在 58 毫米厚的混合堆垛上钻一个直径为 12 毫米的孔。该堆包括钢板(30KhGSA 级)、聚合物复合材料(碳纤维基)、钛合金(Vt6 级)和铝合金(1933 级)。电力驱动所需的功率是根据参考手册中规定的切割条件,以及使用配有 Kistler 9123CQ05 平板测功机的 DMC 635 V 机器对混合堆垛进行的钻孔测试确定的。轴向力和扭矩振荡图显示,钛合金钻孔时阻力最大。经计算和确认,预计自进给钻床的规格如下:进给驱动所需的电力为 1.5 千瓦,主轴旋转驱动所需的电力为 2.8 千瓦。所需的最大转速为 1940 rpm,最大进给速度为 4.5 mm/rev。为了磨削切屑和抑制钻头潜在的自动振荡,建议使用计算机数字控制系统对进给速度和主轴旋转速度进行调节。今后的研究将包括根据所提供的建议设计的自进给钻床原型的生产和测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Main technical parameters for designing a new self-feed drilling machine
The aim is to develop and substantiate a complex of technical and economic requirements for the design of a self-feed drilling machine produced in the Russian Federation, which is particularly relevant in the context of import substitution. The study considers self-feed drilling machines produced by Atlas Copco, Desoutter and Recoules as references to match their performance and specifications. By analogy with these machines, the limiting weight and overall dimensions of the developed machine should be up to 6 kg and 320x110x450 mm, respectively. The selection of motors for spindle rotation and axial feed is carried out by drilling a hole with a diameter of 12 mm in a mixed 58 mm thick stack using a carbide drill. This stack includes steel sheets (30KhGSA grade), polymer composite materials (carbon fibre-based), titanium alloy (Vt6 grade) and aluminium alloy (1933 grade). The required power for the electric drives was determined using cutting conditions specified in reference manuals and by drilling tests of a mixed stack carried out using a DMC 635 V machine equipped with a Kistler 9123CQ05 plate dynamometer. Oscillograms of axial force and torque showed that the highest resistance occurs when drilling the titanium alloy. The following specifications were calculated and confirmed for the projected self-feed drilling machine: the required power for the electric drives is 1.5 kW for the feed drive and 2.8 kW for the spindle rotation drive. The maximum required rotation speed is 1940 rpm, and the maximum required feed rate is 4.5 mm/rev. In order to grind chips and suppress potential auto-oscillations of the drill, it is recommended that the modulations of the feed and spindle rotation speeds created by a computer numerical control system be used. Future research will involve the production and testing of a prototype self-feed drilling machine, designed in accordance with the provided recommendations.
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