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首页> 外文期刊>International journal of materials and structural integrity >Thermal-structure characteristics coupling analysis and optimisation for horizontal CNC machining centre spindle
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Thermal-structure characteristics coupling analysis and optimisation for horizontal CNC machining centre spindle

机译:卧式数控加工中心主轴热结构特征耦合分析与优化

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摘要

In this paper, the thermal-structural coupling field analysis model of spindle system is established, and the numerical simulation which accounts for the spindle component system's structure, the actual working condition, the influence of heat source and lubrication system condition factors, etc. which are from a machine tool factory, such as ambient temperature, flow velocity of coolant, and the rotating speed of spindle motor, etc., is conducted. It is found that the maximum temperature up to about 38.8℃ appears in the spindle where the double row cylinder roller bearing is installed, while the maximum comprehensive deformation of the spindle's front-end reaches 0.93 × 10~(-5) m. And the spindle system needs nearly 1 hour to reach thermal equilibrium state when the system uses the L-HM32 lubricant. However, temperature rise, heat deformation and the thermal equilibrium time are reduced by 11.1%, 22.6% and 12%, respectively, when the lubricant of the lubrication system is replaced by Shell-tellus22, and the maximum Von-Mises stress value is 125.6 MPa. The results are beneficial for providing a basis for the requirements of practical manufacture, especially the optimisation of structure, cooling system and compensation system design.
机译:本文建立了主轴系统的热-结构耦合场分析模型,并进行了数值模拟,考虑了主轴部件系统的结构,实际工作条件,热源和润滑系统条件因素的影响等。来自机床工厂,例如环境温度,冷却液的流速和主轴电机的转速等。研究发现,安装双列圆柱滚子轴承的主轴最高温度达到38.8℃,而主轴前端的最大综合变形达到0.93×10〜(-5)m。当系统使用L-HM32润滑剂时,主轴系统需要近1个小时才能达到热平衡状态。但是,当使用Shell-tellus22代替润滑系统的润滑剂时,温升,热变形和热平衡时间分别减少了11.1%,22.6%和12%,最大Von-Mises应力值为125.6 MPa。该结果有利于为实际制造的要求提供基础,尤其是结构,冷却系统和补偿系统设计的优化。

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