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Dynamic design methodology of high speed micro-spindles for micro/meso-scale machine tools

机译:微米/中尺度机床高速微主轴的动态设计方法

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摘要

With the increasing demands for high manufacturing accuracy and processing efficiency, micro/meso-scale machine tool systems are proposed. The availability of micro-spindles with ultra-high rotating angular speeds and ultra-small run-out are a key technology for micro/meso-scale cutting processes. Well-established design methods exist for traditional spindle systems, but there is a strong demand for a methodology to predict the dynamic characteristics, particularly at the micro-scale, which will dictate manufacturing accuracy. In this respect, the minimization of run-out is of paramount importance. In response to this, two problem areas are considered in this paper: (a) hybrid air bearing systems-a methodology related to the calculation of the load capacity and stiffness of hybrid air journal and thrust bearings, and (b) spindle rotor system-a methodology for the rotor dynamic analysis including critical speed, mode shape, and unbalanced response predictions. Mathematical models and simulation procedures are given, followed by explanations of their use. Finally, the proposed dynamic design method is demonstrated on a realized micro-spindle system model. Two designs namely the original design and a modified design are analyzed and comparisons are carried out. The numerical simulations and the experimental evidence available for the original design have substantiated the validity of the proposed dynamic design method. The proposed methodology lays the foundation for controlling run-out of the high speed micro-spindles in micro/meso-scale machine tools.
机译:随着对高制造精度和加工效率的日益增长的需求,提出了微/中规模的机床系统。具有超高旋转角速度和超小跳动的微主轴是微/中尺度切割工艺的关键技术。对于传统的主轴系统,已经存在完善的设计方法,但是强烈需要一种方法来预测动态特性,尤其是在微观尺度上,这将决定制造精度。在这方面,最小的跳动是至关重要的。针对这一问题,本文考虑了两个问题领域:(a)混合空气轴承系统-一种与混合空气轴颈和推力轴承的载荷能力和刚度的计算有关的方法,以及(b)主轴转子系统-转子动态分析的方法,包括临界速度,模式形状和不平衡响应预测。给出了数学模型和仿真程序,并解释了它们的用法。最后,在已实现的微主轴系统模型上论证了所提出的动态设计方法。分析了两种设计,即原始设计和改进设计,并进行了比较。原始设计的数值模拟和实验证据证实了所提出的动态设计方法的有效性。所提出的方法为控制微型/中型机床中的高速微主轴的跳动奠定了基础。

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