Adaptation of the CNC system of the machine to the conditions of combined processing

Mikhail Borisov, D. Lobanov, Alexander Zvorygin, V Yu Skeeba
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Abstract

Introduction. Increasing the efficiency of processing technologies for products made from modern high-strength, difficult-to-process materials with increased physical, mechanical and operational properties consists not only in improving the technology itself, the tools for its implementation, but also in modernizing technological equipment taking into account new achievements in the field of mechanical engineering. Modern computer numerical control (CNC) equipment is now quite advanced in terms of controlling basic cutting movements. Adaptive monitoring and control systems, as a rule, additionally installed on processing equipment, make it possible to further improve the quality of processing parameters. With the development of new hybrid and combined technologies that combine several types of influence on the product being processed, the issue of synchronizing the automatic control of the movements of parts of technological equipment with the control and management of accompanying processes of combined technologies has become acute. One example of such technologies is electrochemical diamond grinding with periodic dressing of the working surface of a diamond wheel using reverse polarity current. The polarity of the current and the duration of its pulses are controlled by special programmable devices. Current switching units are connected to it. It serves to supply alternating currents of direct and reverse polarity to the electrical circuit and is made on the basis of key elements. Installing such programmable devices on CNC machines leads to its’ equipping with an additional autonomous automatic control system. At the same time, it is difficult to coordinate the operation of the machine’s CNC system, which controls the movements of its working parts, and the programmable device used to control the polarity and duration of current pulses during combined processing. The purpose of the work is to synchronize the CNC system of the machine with the control system for the process of periodically changing the polarity of the current. The study was carried out on an experimental stand. Methods. The research methodology involved conducting an experiment consisting of synchronizing the operation of the machine’s CNC system with the operation of the control system for the process of periodically changing the polarity of the current. To evaluate the results, the time of movement of the diamond wheel as a result of the working stroke was compared with the duration of current pulses of different polarities specified in the control program of the developed software. Results and discussions. As a result of the research, it is established that the developed software and hardware complex makes it possible to synchronize in the CNC system of the machine tool the control of the movements of the working parts with automatic control of the periodic change of current polarity during electrochemical diamond grinding, which can significantly expand the technical capabilities of CNC machines.
机床数控系统适应组合加工条件
导言。提高现代高强度、难加工材料产品的加工技术效率,增加其物理、机械和操作性能,不仅包括改进技术本身及其实施工具,还包括根据机械工程领域的新成就实现技术设备的现代化。现代计算机数控(CNC)设备在控制基本切割运动方面已相当先进。通常情况下,在加工设备上额外安装的自适应监测和控制系统可以进一步提高加工参数的质量。随着新的混合技术和组合技术的发展,这些技术结合了多种对加工产品的影响,因此,如何使技术设备部件运动的自动控制与组合技术的伴随过程的控制和管理同步,成为一个尖锐的问题。此类技术的一个例子是电化学金刚石磨削,使用反极性电流定期修整金刚石砂轮的工作表面。电流的极性和脉冲持续时间由特殊的可编程装置控制。电流开关装置与之相连。它的作用是向电路提供正极性和反极性的交流电流,并以关键元件为基础制造。在数控机床上安装此类可编程装置可为其配备额外的自主自动控制系统。同时,很难协调机床数控系统(控制其工作部件的运动)和用于控制组合加工过程中电流脉冲极性和持续时间的可编程装置的运行。这项工作的目的是使机床的数控系统与控制系统在周期性改变电流极性的过程中保持同步。研究在实验台上进行。研究方法研究方法包括进行一项实验,使机床数控系统的运行与控制系统的运行同步,以周期性地改变电流的极性。为了评估结果,将金刚石砂轮在工作行程中的移动时间与开发软件控制程序中指定的不同极性电流脉冲的持续时间进行比较。结果和讨论。研究结果表明,所开发的软件和硬件复合系统可以在机床数控系统中实现工作部件运动控制与电化学金刚石磨削过程中电流极性周期性变化自动控制的同步,从而显著提高数控机床的技术能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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