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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Modelling, identification and control of thermal deformation of machine tool structures, part 2: generalized transfer functions
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Modelling, identification and control of thermal deformation of machine tool structures, part 2: generalized transfer functions

机译:机床结构热变形的建模,识别和控制,第2部分:广义传递函数

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摘要

With the ever increasing demand for higher machining accuracy at lower cost, thermal deformation of machine tool structures has to be minimized at the design stage, and compensated for during operation. To compensate for this type of error; tworeal-time process models are required to identify the magnitude of the transient thermal load and to estimate the relative thermal displacement between the tool and the work piece. Special considerations should be given to the solution of the firstill-posed inverse heat conduction model IHCP. In this paper, the concept of generalized modelling is extended to the thermal deformation problem. The results of this analysis is used to develop expressions for the generalized transfer functions of thethermal, and thermal deformation response of the machine tool structure. These transfer functions are the basic building blocks for real-time solution of the IHCP and then the deformation problem. The latter acts as a feed-back signal to the controlsystem. Finite element simulation of the temperature field and the thermal deformation of a machine tool structure confirmed that the generalized transfer function approach can reproduce the accuracy of the finite element model but two orders of magnitude faster.
机译:随着对以更低的成本获得更高的加工精度的日益增长的需求,必须在设计阶段将机床结构的热变形降至最低,并在运行期间进行补偿。为了弥补这种错误;需要两个实时过程模型来识别瞬态热负荷的大小,并估计工具与工件之间的相对热位移。应特别考虑第一姿势逆热传导模型IHCP的解。本文将广义建模的概念扩展到热变形问题。该分析的结果用于为热传递的广义传递函数以及机床结构的热变形响应建立表达式。这些传递函数是IHCP实时求解以及变形问题的基本构建块。后者充当控制系统的反馈信号。机床结构温度场和热变形的有限元模拟证实,广义传递函数方法可以重现有限元模型的精度,但速度要快两个数量级。

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