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首页> 外文期刊>Transactions of the Canadian Society for Mechanical Engineering >Roller-rail parameters on the transverse vibration characteristics of super-high-speed elevators
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Roller-rail parameters on the transverse vibration characteristics of super-high-speed elevators

机译:超高速电梯横向振动特性的滚子轨道参数

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摘要

Interaction and wear between wheel and rail become increasingly serious with the increase in elevator speed and load. Uneven roller surface, eccentricity of rollers, and the looseness of rail brackets result in serious vibration problems of high-speed and super-high-speed elevators. Therefore, the forced vibration differential equation representing elevator guide rails is established based on Bernoulli-Euler theory, and the vibration equation of the elevator guide shoes and the car is constructed using the Darren Bell principle. Then, the coupled vibration model of guide rail, guide shoes, and car can be obtained using the relationship of force and relative displacement among these components. The roller-rail parameters are introduced into the established coupled vibration model using the model equivalent method. Then, the influence of roller-rail parameters on the horizontal vibration of super-high-speed elevator cars is investigated. Roller eccentricity and the vibration acceleration of the car present a linear correlation, with the amplitude of the car vibration acceleration increasing with the eccentricity of the roller. A nonlinear relationship exists between the surface roughness of the roller and the vibration acceleration of the car. Increased continuous loosening of the guide rail results in severe vibration of the car at the loose position of the support.
机译:随着电梯速度和负荷的增加,轮和轨道之间的相互作用和磨损变得越来越严重。不均匀的辊表面,滚子的偏心,以及轨道支架的松动导致高速和超高速电梯的严重振动问题。因此,基于Bernoulli-euler理论建立了代表电梯导轨的强制振动微分方程,并且使用Darren Bell原理构建电梯导向鞋和汽车的振动方程。然后,可以使用这些部件之间的力和相对位移的关系来获得导轨,引导鞋和汽车的耦合振动模型。使用模型等效方法将辊式轨道参数引入已建立的耦合振动模型。然后,研究了辊轨参数对超高速电梯轿厢水平振动的影响。滚轮偏心和汽车的振动加速度呈现线性相关性,随着辊的偏心,汽车振动加速度的幅度随着辊的偏心而增加。在辊的表面粗糙度与汽车的振动加速之间存在非线性关系。增加导轨的连续松动导致汽车的严重振动在载体的松散位置。

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