Vibration Characteristics of an Industrial-Scale Flip-Flow Screen with Crank-Link Structure and Parameters Optimization

Flip-flow screens are increasingly used in the processing of fine wet coal. In this work, the vibration characteristics of an industrial-scale flip-flow screen with crank-link structure (FFSCLS) were investigated theoretically and experimentally. An improved kinematic model of FFSCLS was proposed an...

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Main Authors: Hongxi Li, Chusheng Liu, Ling Shen, Lala Zhao
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/2612634
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spelling doaj-86b0627449d143329568831af94bf3f72021-10-11T00:38:42ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/2612634Vibration Characteristics of an Industrial-Scale Flip-Flow Screen with Crank-Link Structure and Parameters OptimizationHongxi Li0Chusheng Liu1Ling Shen2Lala Zhao3School of Mechatronic EngineeringSchool of Mechatronic EngineeringSchool of Materials Science and PhysicsSchool of Mechatronic EngineeringFlip-flow screens are increasingly used in the processing of fine wet coal. In this work, the vibration characteristics of an industrial-scale flip-flow screen with crank-link structure (FFSCLS) were investigated theoretically and experimentally. An improved kinematic model of FFSCLS was proposed and experiments are carried out to verify the reasonability. The effects of the key parameters of the eccentricity of the crankshaft, the rotational speed of the crankshaft, and the tension length of the screen surface on the vibration characteristics of the screen were investigated parametrically. The results show that the kinematic model can describe the vibration characteristics of screen perfectly with the maximum error between the theoretical and experimental results being within 6.96%. Moreover, the key parameters of the eccentricity of the crankshaft, the rotational speed of the crankshaft, and the tension length of the screen surface have significant effects on the vibrations of the screen body and screen surface. These parameters should be optimized to achieve maximum screening performance of the FFSCLS. This work should be useful for optimal design and efficient operation of the flip-flow screen.http://dx.doi.org/10.1155/2021/2612634
collection DOAJ
language English
format Article
sources DOAJ
author Hongxi Li
Chusheng Liu
Ling Shen
Lala Zhao
spellingShingle Hongxi Li
Chusheng Liu
Ling Shen
Lala Zhao
Vibration Characteristics of an Industrial-Scale Flip-Flow Screen with Crank-Link Structure and Parameters Optimization
Shock and Vibration
author_facet Hongxi Li
Chusheng Liu
Ling Shen
Lala Zhao
author_sort Hongxi Li
title Vibration Characteristics of an Industrial-Scale Flip-Flow Screen with Crank-Link Structure and Parameters Optimization
title_short Vibration Characteristics of an Industrial-Scale Flip-Flow Screen with Crank-Link Structure and Parameters Optimization
title_full Vibration Characteristics of an Industrial-Scale Flip-Flow Screen with Crank-Link Structure and Parameters Optimization
title_fullStr Vibration Characteristics of an Industrial-Scale Flip-Flow Screen with Crank-Link Structure and Parameters Optimization
title_full_unstemmed Vibration Characteristics of an Industrial-Scale Flip-Flow Screen with Crank-Link Structure and Parameters Optimization
title_sort vibration characteristics of an industrial-scale flip-flow screen with crank-link structure and parameters optimization
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description Flip-flow screens are increasingly used in the processing of fine wet coal. In this work, the vibration characteristics of an industrial-scale flip-flow screen with crank-link structure (FFSCLS) were investigated theoretically and experimentally. An improved kinematic model of FFSCLS was proposed and experiments are carried out to verify the reasonability. The effects of the key parameters of the eccentricity of the crankshaft, the rotational speed of the crankshaft, and the tension length of the screen surface on the vibration characteristics of the screen were investigated parametrically. The results show that the kinematic model can describe the vibration characteristics of screen perfectly with the maximum error between the theoretical and experimental results being within 6.96%. Moreover, the key parameters of the eccentricity of the crankshaft, the rotational speed of the crankshaft, and the tension length of the screen surface have significant effects on the vibrations of the screen body and screen surface. These parameters should be optimized to achieve maximum screening performance of the FFSCLS. This work should be useful for optimal design and efficient operation of the flip-flow screen.
url http://dx.doi.org/10.1155/2021/2612634
work_keys_str_mv AT hongxili vibrationcharacteristicsofanindustrialscaleflipflowscreenwithcranklinkstructureandparametersoptimization
AT chushengliu vibrationcharacteristicsofanindustrialscaleflipflowscreenwithcranklinkstructureandparametersoptimization
AT lingshen vibrationcharacteristicsofanindustrialscaleflipflowscreenwithcranklinkstructureandparametersoptimization
AT lalazhao vibrationcharacteristicsofanindustrialscaleflipflowscreenwithcranklinkstructureandparametersoptimization
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