肖夏, 曾梦玮. 一种自动化垂直吊运系统设计优化[J]. 机械研究与应用, 2023, 36(5): 86-89. DOI: 10.16576/j.ISSN.1007-4414.2023.05.023
引用本文: 肖夏, 曾梦玮. 一种自动化垂直吊运系统设计优化[J]. 机械研究与应用, 2023, 36(5): 86-89. DOI: 10.16576/j.ISSN.1007-4414.2023.05.023
XIAO Xia, ZENG Meng-wei. Design Optimization of Automatic Vertical Hoisting System[J]. Mechanical Research & Application, 2023, 36(5): 86-89. DOI: 10.16576/j.ISSN.1007-4414.2023.05.023
Citation: XIAO Xia, ZENG Meng-wei. Design Optimization of Automatic Vertical Hoisting System[J]. Mechanical Research & Application, 2023, 36(5): 86-89. DOI: 10.16576/j.ISSN.1007-4414.2023.05.023

一种自动化垂直吊运系统设计优化

Design Optimization of Automatic Vertical Hoisting System

  • 摘要: 建筑厂房中, 垂直吊运系统对工程的正常运行具有重要作用。但在系统结构选型布设方面, 项目技术人员通常凭经验进行选择, 难以兼顾吊运系统中起重能力、吊重能力、建筑高度、成本、附着位置、机械碰撞等多种因素, 因而容易出现起重能力不足、覆盖盲区、附着位置选择困难等情况。该文通过对某主厂房的设备吊装需求进行分析, 设计了一套13 t自动化垂直吊运系统, 并运用有限元分析软件对整体机构进行静力学仿真模拟, 确保了结构的强度与稳定性, 为自动化垂直吊运系统的设计与优化提供了理论支撑。

     

    Abstract: The vertical hoisting system in the building plant plays an important role in the normal operation of the project. However, for the selection and layout of system structure, project technicians usually choose based on experience, which is difficult to take into account various factors in the lifting system, such as lifting capacity, hoisting capacity, building height, cost, attachment position, mechanical collision, etc., resulting in insufficient lifting capacity, covering blind area, difficult selection of attachment position, etc. In this paper, through analysis of the equipment hoisting requirements of a main plant, a set of 13t automatic vertical hoisting system is designed. The static simulation of the whole mechanism is carried out by using the finite element analysis software, which ensures the strength and stability of the structure and provides theoretical support for the design and optimization of the automatic vertical hoisting system.

     

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