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首页> 外文期刊>Journal of Manufacturing Processes >Model-Based Design of Motorized Spindle Systems to Improve Dynamic Performance at High Speeds
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Model-Based Design of Motorized Spindle Systems to Improve Dynamic Performance at High Speeds

机译:基于模型的电动主轴系统设计,可提高高速动态性能

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摘要

High-speed motorized spindle systems are subjected to several effects during high-speed rotations that can cause substantial changes in their dynamic and thermal behaviors, leading to chatter, bearing thermal seizure, or premature spindle bearing failures. Therefore, it is important to consider these high-speed effects in the design stage of high-speed motorized spindles. This paper first develops a design flow chart to represent the overall spindle design problems. Based on this flow chart, eight design parameters are identified. A design sensitivity analysis of these eight design parameters is then conducted based on an integrated finite element method model to investigate their influence on the natural frequencies of the spindle system. Based on the rule of Maximum Improvement First, a set of systematic design procedures is proposed to suggest design changes to a custom-designed motorized spindle rated at 32 kW and 25,000 rpm. Based on the simulation results, it is shown that the first-mode frequency of this spindle system can be improved from 790.7 Hz to 934 Hz at 25,000 rpm by simply adjusting the front and rear bearing locations. At the optimal design, the first-mode frequency can reach 1454.3 Hz at 25,000 rpm, which represents more than 80 percent improvement over the original design.
机译:高速电动主轴系统在高速旋转过程中会受到多种影响,这可能会导致其动态和热性能发生重大变化,从而导致颤动,轴承热卡住或主轴轴承过早失效。因此,重要的是在高速电动主轴的设计阶段考虑这些高速效应。本文首先制定了一个设计流程图,以表示整个主轴设计问题。根据该流程图,确定了八个设计参数。然后,基于集成有限元方法模型对这八个设计参数进行设计灵敏度分析,以研究它们对主轴系统固有频率的影响。根据最大改进的原则,首先,提出了一套系统设计程序,以建议对额定功率为32 kW和25,000 rpm的定制设计的电动主轴进行设计更改。从仿真结果可以看出,只需调节前后轴承的位置,就可以在25,000 rpm下将该主轴系统的第一模频率从790.7 Hz提高到934 Hz。在最佳设计下,第一模频率在25,000 rpm时可达到1454.3 Hz,这比原始设计提高了80%以上。

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