Diseño de una mesa elevadora para el traslado de material maquinado, que permita evitar fatiga en el operador

Francisco Ángel Flores-Galván, Francisca Nava-Morales, Rodrigo Alva-Gallegos, Carlos Gustavo Baltazar-Plata
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Abstract

Objective: Design a hydraulic lifting platform through the use of SOLIDWORKS software, to expedite the transfer of boxes of machined material and avoid physical damage. Methodology 1. Analysis of the problem that workers have when moving machined material to their respective work areas, emphasizing the bad manipulation they perform. 2. Description of the different types of mobile personnel lifting platforms (PEMP) that exist in the market. 3. Perform a sampling to specify the average weight that the materials acquire after being machined and justify that they are high loads and difficult to handle without causing physical damage. 4. Study of forces in SolidWorks, with the purpose of observing if, it is a resistant mechanism and if the load you wish to supply will not generate buckling on the beams. 5. Design and molding of a mobile lifting platform, and its validation through the SOLIDWORKS finite element program, which will improve the ergonomics in the distribution of the machined material to its next destination, avoiding irreversible injuries and speeding up said activity. 6. Evaluation of the costs generated by manufacturing the lift table and the economic benefits it will have. Contribution: Avoid physical damage caused by the mishandling of loads and that ultimately generates production problems.
设计用于转移加工材料的升降台,避免操作人员疲劳
目的:利用SOLIDWORKS软件设计一种液压升降平台,加快加工物料箱的搬运速度,避免物理损坏。方法1。分析工人在搬运加工材料到各自工作区域时遇到的问题,强调他们操作不当。2. 描述市场上存在的不同类型的移动式人员升降平台。3.进行取样,以确定材料在加工后获得的平均重量,并证明它们是高负荷且难以处理而不会造成物理损坏。4. 在SolidWorks中对力进行研究,目的是观察它是一种抵抗机制,并且如果您希望提供的负载不会在梁上产生屈曲。5. 移动升降平台的设计和成型,并通过SOLIDWORKS有限元程序进行验证,这将改善加工材料分发到下一个目的地的人体工程学,避免不可逆转的伤害并加速上述活动。6. 对制造升降台的成本和经济效益进行评估。贡献:避免因负载处理不当而造成的物理损坏,并最终产生生产问题。
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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