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Computer numerical control vertical machining centre feed drive modelling using the transmission line technique

机译:采用传输线技术的计算机数控立式加工中心进给驱动建模

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摘要

This study presents a novel application of the Transmission Line Matrix Method (TLM) for the modelling of the dynamic behaviour of non-linear hybrid systems for CNC machine tool drives. The application of the TLM technique implies the dividing of the ball-screw shaft into a number of identical elements in order to achieve the synchronisation of events in the simulation, and to provide an acceptable resolution according to the maximum frequency of interest. This entails the use of a high performance computing system with due consideration to the small time steps being applied in the simulation. Generally, the analysis of torsion and axial dynamic effects on a shaft implies the development of independent simulated models. This study presents a new procedure for the modelling of a ball-screw shaft by the synchronisation of the axial and torsion dynamics into the same model. The model parameters were obtained with equipments such as laser interferometer, ball bar, electronic levels, signal acquisition systems etc. The MTLM models for single and two-axis configurations have been simulated and matches well with the measured responses of machines. The new modelling approach designated the Modified Transmission Line Method (MTLM) extends the TLM approach retaining all its inherent qualities but gives improved convergence and processing speeds. Further work since, not the subject of this paper, have identified its potential for real time application.
机译:这项研究提出了传输线矩阵法(TLM)在数控机床驱动器非线性混合系统动力学行为建模中的新应用。 TLM技术的应用意味着将滚珠丝杠轴划分为多个相同的元素,以便在仿真中实现事件的同步,并根据最大感兴趣的频率提供可接受的分辨率。这需要使用高性能计算系统,同时要适当考虑在仿真中应用的时间步长较短。通常,对轴上的扭转和轴向动力影响的分析暗示着独立仿真模型的发展。这项研究提出了一种通过将轴向和扭转动力学同步到同一模型中来对滚珠丝杠轴建模的新程序。使用激光干涉仪,球杆,电子水准仪,信号采集系统等设备获得模型参数。已经对单轴和两轴配置的MTLM模型进行了仿真,并与机器的测量响应非常匹配。被称为“修改传输线方法”(MTLM)的新建模方法扩展了TLM方法,保留了其所有固有的品质,但提高了收敛性和处理速度。由于不是本文的主题,因此进一步的工作已经确定了其在实时应用中的潜力。

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