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Study on dynamic characteristics of boom system for balance hoist based on rigid-flexible coupling simulation

机译:基于刚柔耦合仿真的平衡葫芦动臂系统动力学特性研究

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Purpose - Aiming at the unbalancing problem of the neutral equilibrium characteristic for balance hoist in the loading process, the purpose of this paper is to establish a dynamic equation for multi-body using the Lagrange method. It is not difficult to find that the deformation of the boom system has a great influence on the stability of the whole system, through the simulation analysis of the multi-rigid-body system model. Design/methodology/approach - Aiming at the unbalancing problem of the neutral equilibrium characteristic for balance hoist in the loading process, the dynamic equation for multi-body is established by Lagrange method. It is not difficult to find that the deformation of the boom system has a great influence on the stability of the whole system, through the simulation analysis of the multi-rigid-body system model. Findings - Result shows that different weights have a great influence on the force deformation and vibration of the boom system of balance hoist. With the increase in lifting weight, the force and deformation of the boom system increase; lead to balance hoist unique with characteristics of indifferent equilibrium, proportional amplification, labor-saving operation will be lost, easy to cause the imbalance of balance hoist. Therefore, the appropriate increase in the basic length of the compression bar, reduction in the basic length of the tension rod and the increase stiffness of the boom system can improve the stability of balance hoist, which provides a reference for the optimization and manufacture of the balance hoist structure. Originality/value - The simulation model was established by analyzing the working principle and the load condition of the balance hoist, and the simulation and dynamic characteristics of three typical working conditions are analyzed by using ADAMS; result shows that different weights have a great influence on the force deformation and vibration of the boom system of balance hoist. With the increase in lifting weight, the force and deformation of a boom system increase, lead to balance hoist unique with characteristics of indifferent equilibrium, proportional amplification, labor-saving operation will be lost, easy to cause the imbalance of balance hoist.
机译:目的-针对平衡提升机在加载过程中的中性平衡特性的不平衡问题,本文的目的是使用拉格朗日方法建立多体动力学方程。通过多刚体系统模型的仿真分析,不难发现动臂系统的变形对整个系统的稳定性有很大的影响。设计/方法/方法-针对平衡葫芦在加载过程中中性平衡特性的不平衡问题,通过拉格朗日方法建立了多体动力学方程。通过多刚体系统模型的仿真分析,不难发现动臂系统的变形对整个系统的稳定性有很大的影响。结果-结果表明,不同的重量对平衡葫芦臂架系统的力变形和振动影响很大。随着起重重量的增加,动臂系统的力和变形增加;导致平衡葫芦具有独特的特点,即无所谓平衡,比例放大,失去省力操作,容易引起平衡葫芦的不平衡。因此,适当增加压杆的基本长度,减小拉杆的基本长度以及增加动臂系统的刚度可以提高平衡葫芦的稳定性,这为优化和制造平衡举升机提供了参考。平衡葫芦结构。原创性/价值-通过分析天平葫芦的工作原理和负载条件,建立了仿真模型,并使用ADAMS分析了三种典型工作条件的仿真和动态特性;结果表明,不同的配重对平衡葫芦臂架系统的力变形和振动影响很大。随着起重重量的增加,动臂系统的力和变形增加,导致平衡葫芦独有的特点,具有平衡性低,比例放大,省力操作等特点,容易造成平衡葫芦的不平衡。

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