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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >An integrated thermo-mechanical-dynamic model to characterize motorized machine tool spindles during very high speed rotation
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An integrated thermo-mechanical-dynamic model to characterize motorized machine tool spindles during very high speed rotation

机译:集成的热机械动力学模型,用于表征超高速旋转过程中的电动机床主轴

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摘要

High speed machining (HSM) is a promising technology for drastically increasing productivity and reducing production costs. Development of high-speed spindle technology is strategically critical to the implementation of HSM. Compared to conventional spindles, motorized spindles are equipped with built-in motors for better power transmission and balancing to achieve high-speed operation. However, the built-in motor introduces a great amount of heat into the spindle system as well as additional mass to the spindle shaft, thus complicating its thermo-mechanical-dynamic behaviors. This paper presents an integrated model with experimental validation and sensitivity analysis for studying various thermo-mechanical-dynamic spindle behaviors at high speeds. Specifically, the following effects are investigated: the bearing preload effects on bearing stiffness, and subsequently on overall spindle dynamics; high-speed rotational effects, including centrifugal forces and gyroscopic moments on the spindle shaft and, subsequently, on overall spindle dynamics; and the spindle dynamics on the cutting point receptance. The proposed integrated model is a useful tool for differentiating quantitatively different effects on the spindle behaviors. The results show that a motorized spindle softens at high speeds mainly due to the centrifugal effect on the spindle shaft.
机译:高速加工(HSM)是一种有前途的技术,可以大大提高生产率并降低生产成本。高速主轴技术的发展对于HSM的实施在战略上至关重要。与传统主轴相比,电动主轴配备了内置电机,以实现更好的动力传递和平衡,从而实现高速运行。但是,内置电动机将大量热量引入主轴系统,并给主轴增加了额外的质量,因此使其热机械动力学特性变得复杂。本文提出了一个带有实验验证和灵敏度分析的集成模型,用于研究高速下各种热力学机械主轴的行为。具体来说,研究了以下影响:轴承预紧力对轴承刚度的影响,以及随后对整体主轴动力学的影响;高速旋转效应,包括离心力和主轴上的陀螺力矩,以及随后的整体主轴动力学;以及主轴动态对切削点的接受度。所提出的集成模型是一种有用的工具,用于区分对主轴行为的定量影响。结果表明,电动主轴主要由于主轴上的离心作用而高速软化。

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