Dynamic Responses of a Tower Trane Tower and Payload Subjected to Elastic Jib in Radial Motion

Ruiqi Gao, M. Dong, Dalong He, Runhui Feng
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Abstract

Due to slender truss structures, the tower and jib of tower cranes can easily produce vibrations during the acceleration and deceleration of the motion. The alternating load generated by this vibration reduces the payload's positioning accuracy and is also one of the main factors to cause fatigue damage to the crane structure. Based on the Euler-Bernoulli beam theory, this paper derives the differential equations of tower vibration, jib vibration, and payload swing under the radial motion by the Lagrangian equation. The vibration modes of the tower are analyzed, and the effect of trolley speed, payload mass, and rope length on the vibration characteristics of the tower and the payload swing characteristics subjected to elastic jib is studied through simulation. The expression of the maximum swing angle is derived, and the experiment verifies the validity of the simulation results.
弹性臂作用下塔架和载荷径向运动的动力响应
塔机的塔架和臂架由于采用细长的桁架结构,在运动的加减速过程中容易产生振动。这种振动产生的交变载荷降低了载荷的定位精度,也是造成起重机结构疲劳损伤的主要因素之一。基于欧拉-伯努利梁理论,用拉格朗日方程推导了径向运动下塔架振动、臂架振动和载荷摆动的微分方程。分析了塔架的振动模式,并通过仿真研究了小车速度、载荷质量、缆绳长度对塔架振动特性的影响以及载荷在弹性臂作用下的摆动特性。推导了最大摆角的表达式,并通过实验验证了仿真结果的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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