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Failure and sensitivity analysis of a reconfigurable vibrating screen using finite element analysis

机译:使用有限元分析的可重构振动筛的故障和灵敏度分析

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摘要

In mineral processing industries vibrating screens operate under high structural loading and continuous vibrations. In this regard, this may result in high strain rates, which may often lead to structural failure or damage to the screen. In order to lessen the possibility of failure occurring, theories and techniques for analyzing machine structures are investigated and applied to perform a sensitivity study of a newly developed vibrating screen. Structural strength and stability of a vibrating screen is essential to insure that failure doesn’t occur during production. In this paper a finite element analysis (FEA) on a reconfigurable vibrating screen (RVS) is carried out to determine whether the structure will perform as desired under extreme working conditions at the different configurations of 305mm×610mm, 305mm×1220mm and 610mm×1220mm. This process is aimed at eliminating unplanned shutdowns and minimizes maintenance cost of the equipment. Each component of a screen structure is analyzed separately, stress and displacement parameters are determined based on dynamic analysis. In addition, a modal analysis was carried out for the first three (3) modes at frequency f of 18.756Hz, 32.676Hz and 39.619Hz respectively. The results from the analysis showed weak points on the side plates of screen structure. Further improvements were incorporated to effectively optimize the RVS structure after undergoing an industrial investigation of similar machines.
机译:在矿物加工行业中,振动筛在高结构载荷和连续振动下运行。在这方面,这可能导致高应变率,这可能经常导致结构故障或筛网损坏。为了减少发生故障的可能性,研究了用于分析机器结构的理论和技术,并将其用于对新开发的振动筛进行灵敏度研究。振动筛的结构强度和稳定性对于确保生产过程中不会发生故障至关重要。本文在可重构振动筛(RVS)上进行了有限元分析(FEA),以确定在极端工作条件下,在305mm×610mm,305mm×1220mm和610mm×1220mm的不同配置下,该结构是否能按要求工作。此过程旨在消除计划外的停机并最大程度地减少设备的维护成本。屏幕结构的每个组成部分都将分别进行分析,并基于动态分析确定应力和位移参数。此外,对前三(3)个模式分别在频率f为18.756Hz,32.676Hz和39.619Hz上进行了模态分析。分析结果表明筛网结构侧板上的薄弱点。经过对类似机器的工业研究后,进一步的改进可以有效地优化RVS结构。

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