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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Control-Oriented Modeling of Thermal Deformation of Machine Tools Based on Inverse Solution of Time-Variant Thermal Loads with Delayed Response
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Control-Oriented Modeling of Thermal Deformation of Machine Tools Based on Inverse Solution of Time-Variant Thermal Loads with Delayed Response

机译:基于时变热负荷时滞响应反解的机床热变形控制模型

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With the new emerging technologies of high performance machining and the increasing demand for improved machining accuracy in recent years, the problem of thermal deformation of machine tool structures is becoming more critical than ever. The major problem in implementing real-time control systems is the difficulty of measuring the relative thermal displacement between the tool and the workpiece during machining. Therefore, the design of a generic multi-axis control system requires the development of control-based models to estimate the transient thermal load and the thermal deformation of the structure in real-time. To satisfy the stringent accuracy and stability requirements of the control system, a new inverse heat conduction problem IHCP solver is developed. This solution is capable of including the inertia effect and the delay in the thermal response, in order to accommodate situations where the measured points cannot be located near the heat source, which may be buried into the structure. Experimental validation of these models showed their inherent stability even when the temperature measurements are contaminated with random errors. The excellent computational efficiency of the integrated system, which is well suited for real-time control applications involving multi-dimensional structures, was achieved by incorporating an inverse numerical Laplace transformation procedure. The results also showed that the thermal deformation transfer function behaves as low-pass filters, and as such it attenuates the high frequency noise associated with temperature measurement error.
机译:近年来,随着高性能加工的新兴技术以及对提高加工精度的需求不断增加,机床结构的热变形问题变得比以往更加重要。实施实时控制系统的主要问题是在加工过程中难以测量刀具与工件之间的相对热位移。因此,通用多轴控制系统的设计要求开发基于控制的模型,以实时估计瞬态热负荷和结构的热变形。为了满足控制系统的严格精度和稳定性要求,开发了一种新型的逆热传导问题IHCP求解器。该解决方案能够包括惯性效应和热响应延迟,以适应被测点不能位于热源附近的情况,热源可能埋在结构中。这些模型的实验验证表明,即使温度测量受到随机误差的污染,它们的固有稳定性也是如此。通过结合逆数值拉普拉斯变换程序,该集成系统具有出色的计算效率,非常适合涉及多维结构的实时控制应用。结果还表明,热变形传递函数起着低通滤波器的作用,并因此衰减了与温度测量误差相关的高频噪声。

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