Joint Wear Prediction and Experiments Considering the Influences of Coating and Spherical Joint Clearances

In recent years, many scholars have carried out a large number of theoretical studies on mechanism systems with joint clearances. Some scholars have conducted relevant experiments with simple planar mechanisms, for example, which have proved the feasibility and applicability of the numerical dynamic...

Full description

Saved in:
Bibliographic Details
Main Authors: Qian Jing, Baolong Geng
Format: Article
Language:English
Published: MDPI AG 2025-01-01
Series:Lubricants
Subjects:
Online Access:https://www.mdpi.com/2075-4442/13/1/20
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1832588058567901184
author Qian Jing
Baolong Geng
author_facet Qian Jing
Baolong Geng
author_sort Qian Jing
collection DOAJ
description In recent years, many scholars have carried out a large number of theoretical studies on mechanism systems with joint clearances. Some scholars have conducted relevant experiments with simple planar mechanisms, for example, which have proved the feasibility and applicability of the numerical dynamics calculation method and different contact force models to a certain extent. In order to verify the correctness of the theoretical analysis method of the system dynamics considering coating and joint clearances in the previous stage, this paper independently designed and built the RSSP experimental platform of the spatial four-bar mechanism by taking the shear fork mechanism of the soybean picking and separating machine in farming operations, and measured the dynamic changes in the execution components and the wear depth of the spherical shell surface in different working conditions. The effectiveness of the coating on alleviating vibration, reducing joint wear, and extending the working life of the system mechanism was verified. The experimental conclusions provide strong data support for the subsequent effective and long-life operation of the soybean picking and sorting integrated machine.
format Article
id doaj-art-5cf815d66488426d996278c080a9e6e1
institution Kabale University
issn 2075-4442
language English
publishDate 2025-01-01
publisher MDPI AG
record_format Article
series Lubricants
spelling doaj-art-5cf815d66488426d996278c080a9e6e12025-01-24T13:39:00ZengMDPI AGLubricants2075-44422025-01-011312010.3390/lubricants13010020Joint Wear Prediction and Experiments Considering the Influences of Coating and Spherical Joint ClearancesQian Jing0Baolong Geng1School of Mechanical Engineering, Long Dong University, Qingyang 745000, ChinaSchool of Mechanical Engineering, Long Dong University, Qingyang 745000, ChinaIn recent years, many scholars have carried out a large number of theoretical studies on mechanism systems with joint clearances. Some scholars have conducted relevant experiments with simple planar mechanisms, for example, which have proved the feasibility and applicability of the numerical dynamics calculation method and different contact force models to a certain extent. In order to verify the correctness of the theoretical analysis method of the system dynamics considering coating and joint clearances in the previous stage, this paper independently designed and built the RSSP experimental platform of the spatial four-bar mechanism by taking the shear fork mechanism of the soybean picking and separating machine in farming operations, and measured the dynamic changes in the execution components and the wear depth of the spherical shell surface in different working conditions. The effectiveness of the coating on alleviating vibration, reducing joint wear, and extending the working life of the system mechanism was verified. The experimental conclusions provide strong data support for the subsequent effective and long-life operation of the soybean picking and sorting integrated machine.https://www.mdpi.com/2075-4442/13/1/20coatingspherical joint clearancedynamicswear predictionexperiments
spellingShingle Qian Jing
Baolong Geng
Joint Wear Prediction and Experiments Considering the Influences of Coating and Spherical Joint Clearances
Lubricants
coating
spherical joint clearance
dynamics
wear prediction
experiments
title Joint Wear Prediction and Experiments Considering the Influences of Coating and Spherical Joint Clearances
title_full Joint Wear Prediction and Experiments Considering the Influences of Coating and Spherical Joint Clearances
title_fullStr Joint Wear Prediction and Experiments Considering the Influences of Coating and Spherical Joint Clearances
title_full_unstemmed Joint Wear Prediction and Experiments Considering the Influences of Coating and Spherical Joint Clearances
title_short Joint Wear Prediction and Experiments Considering the Influences of Coating and Spherical Joint Clearances
title_sort joint wear prediction and experiments considering the influences of coating and spherical joint clearances
topic coating
spherical joint clearance
dynamics
wear prediction
experiments
url https://www.mdpi.com/2075-4442/13/1/20
work_keys_str_mv AT qianjing jointwearpredictionandexperimentsconsideringtheinfluencesofcoatingandsphericaljointclearances
AT baolonggeng jointwearpredictionandexperimentsconsideringtheinfluencesofcoatingandsphericaljointclearances