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Preload variation due to temperature increase in double nut ball screws

机译:双螺母滚珠丝杠的温度升高导致预紧力变化

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摘要

Ball screws are robust and economic linear positioning systems that are widely employed in high speed and high precision machines. Due to precision and stability requirements, the preload force has been considered one of the main parameters in order to define the axial rigidity and the maximum axial load capacity of ball screw feed drives. In high speed motions, thermal effects are also considerably relevant regarding positioning precision and dynamic stability of the machine. The temperature increase and the thermal gradient between the screw, the balls and the nuts led to a variation in the contact geometry and consequently in the preload force. This paper presents an experimental analysis of the preload variation due to the temperature increase. The study has been performed for several initial preload forces and linear speeds in a preloaded double nut ball screw. The heating of the system results in a decrease of the preload force, where a maximum decrease of 60% has been observed for a temperature increase of 28 K in the test bed of the study. Regarding the consequences of the loss of rigidity, the first eigenvalue decreased by only 5% for a preload drop of 33%.
机译:滚珠丝杠是坚固耐用且经济的线性定位系统,广泛用于高速和高精度机器中。由于对精度和稳定性的要求,为了确定滚珠丝杠进给驱动器的轴向刚度和最大轴向负载能力,预紧力已被视为主要参数之一。在高速运动中,热效应也与机器的定位精度和动态稳定性密切相关。温度升高以及螺杆,滚珠和螺母之间的热梯度导致触点几何形状发生变化,从而导致预紧力发生变化。本文介绍了由于温度升高而引起的预紧力变化的实验分析。在预紧的双螺母滚珠丝杠中对几种初始预紧力和线速度进行了研究。系统的加热导致预加载力的降低,其中在研究的试验床中,温度升高28 K时,观察到最大降低60%。关于刚度损失的后果,预特征值下降33%时,第一特征值仅下降5%。

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