2014•Advanced materials researchRequires access

TQLZ Self-Balance Vibrating Screen Static and Modal Analysis

Xin Yong Liu, Hong Bin Cui, Peng Xian Cao, Xue Chun Bao, Xinyu Liu

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Abstract

A simplified model of self-balance screen was constructed by using SolidWorks, and then imported into the Simulation to analysis its structure and modal. The stress distribution, deformation and structural natural frequency, mode shapes under static loads of the self-balance vibrating screen were calculated to provide theoretical basis for the following analysis of the dynamic characteristics and structure optimization design of vibrating screen.

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What this paper is about

A simplified model of self-balance screen was constructed by using SolidWorks, and then imported into the Simulation to analysis its structure and modal. The stress distribution, deformation and structural natural frequency, mode shapes under static loads of the self-balance vibrating screen were calculated to provide theoretical basis for the following analysis of the dynamic characteristics and structure optimization design of vibrating screen.

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Available abstract

A simplified model of self-balance screen was constructed by using SolidWorks, and then imported into the Simulation to analysis its structure and modal. The stress distribution, deformation and structural natural frequency, mode shapes under static loads of the self-balance vibrating screen were calculated to provide theoretical basis for the following analysis of the dynamic characteristics and structure optimization design of vibrating screen.

Key concepts: Modal analysis, Modal, Structural engineering, Natural frequency, Mode (computer interface), Static analysis, Balance (ability), Deformation (meteorology)

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