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Research on Influence of Thermal Expansion of Rope Wheel in Rope Transmission on System Accuracy

机译:绳传动中绳轮热膨胀对系统精度影响的研究

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At present, the follow-up platform in the guidance device is mostly the direct drive mode of the motor. in order to reduce the weight and save space The way of wire rope indirect transmission is proposed. In the high-temperature environment, the wire rope will be thermally expanded during the transmission process, resulting in reduced transmission accuracy or even failed due to slippage, and similar problems may occur in the low temperature environment. Since the pre-tensioning device is not easy to set up in a small space, in this paper, the deformation of steel wire rope and transmission wheel in high and low temperature environment is calculated. By calculating the elongation of the steel wire rope in the high and low temperature environment and the thermal expansion of the transmission wheel, the advantages and disadvantages of the automatic tensioning effect of the rope system in high and low temperature environment can be analyzed and compared, which lays a foundation for the improvement of the whole transmission system.
机译:目前,导向装置中的跟进平台大多是电机的直接驱动方式。为了减轻重量,节省空间,提出了钢丝绳间接传动的方法。在高温环境下,钢丝绳在传输过程中会发生热膨胀,导致传输精度下降,甚至由于打滑而失效,在低温环境下可能会发生类似的问题。由于预紧装置不容易在狭小的空间内安装,因此,本文计算了钢丝绳和传动轮在高温和低温环境下的变形。通过计算钢丝绳在高温和低温环境下的伸长率以及传动轮的热膨胀,可以分析和比较钢丝绳系统在高温和低温环境下自动张紧效果的优缺点,这为整个传动系统的完善奠定了基础。

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