Effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two sliders

Friction and clearance always present in any mechanical system. Hence, the effects of friction and clearance on a dynamic system are so critical. This paper aims to investigate their effects on the dynamic response of a slider-crank mechanism with two sliders and imperfect joints. Firstly, the mecha...

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Main Authors: Thanh-Phong Dao, Ngoc-Thai Huynh, Tuan-Hai Nguyen, Hoang-Nghien Vu, Le-Quang-Nhat Hoang, Ho Nguyen
Format: Article
Language:English
Published: Ton Duc Thang University 2018-03-01
Series:Journal of Advanced Engineering and Computation
Online Access:http://jaec.vn/index.php/JAEC/article/view/73
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spelling doaj-eb9db2cda48e4262bb550f4051d015522020-11-25T01:51:03ZengTon Duc Thang UniversityJournal of Advanced Engineering and Computation1859-22442588-123X2018-03-01211810.25073/jaec.201821.7347Effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two slidersThanh-Phong Dao0Ngoc-Thai Huynh1Tuan-Hai Nguyen2Hoang-Nghien Vu3Le-Quang-Nhat Hoang4Ho Nguyen5Tuan-Hai Nguyen6Ton Duc Thang UniversityFaculty of Electrical, Electronic, Mechanical and Construction, Dong Nai Technology University, VietnamFaculty of Electrical, Electronic, Mechanical and Construction, Dong Nai Technology University, VietnamFaculty of Electrical, Electronic, Mechanical and Construction, Dong Nai Technology University, VietnamFaculty of Electrical, Electronic, Mechanical and Construction, Dong Nai Technology University, VietnamFaculty of Electrical, Electronic, Mechanical and Construction, Dong Nai Technology University, VietnamFaculty of Electrical, Electronic, Mechanical and Construction, Dong Nai Technology University, VietnamFriction and clearance always present in any mechanical system. Hence, the effects of friction and clearance on a dynamic system are so critical. This paper aims to investigate their effects on the dynamic response of a slider-crank mechanism with two sliders and imperfect joints. Firstly, the mechanism is created in Solidworks and then it is simulated via finite element method in ANSYS. The dynamic simulation are conducted to evaluate the mentioned effects. The results revealed that the effect degree of clearance on the dynamic behaviors of the proposed mechanisms is significantly higher than that of friction. Also, the results indicated that the velocities, acceleration, and contact force graph are almost same at different friction coefficient. However, compared with ideal joint case, they had a maximum value and an unstable oscillation. This problem is due to journal collide into bearing induced the maximum values of contact force. The results of this study are a helpful guidance to practitioners, scientists, and engineers. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.http://jaec.vn/index.php/JAEC/article/view/73
collection DOAJ
language English
format Article
sources DOAJ
author Thanh-Phong Dao
Ngoc-Thai Huynh
Tuan-Hai Nguyen
Hoang-Nghien Vu
Le-Quang-Nhat Hoang
Ho Nguyen
Tuan-Hai Nguyen
spellingShingle Thanh-Phong Dao
Ngoc-Thai Huynh
Tuan-Hai Nguyen
Hoang-Nghien Vu
Le-Quang-Nhat Hoang
Ho Nguyen
Tuan-Hai Nguyen
Effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two sliders
Journal of Advanced Engineering and Computation
author_facet Thanh-Phong Dao
Ngoc-Thai Huynh
Tuan-Hai Nguyen
Hoang-Nghien Vu
Le-Quang-Nhat Hoang
Ho Nguyen
Tuan-Hai Nguyen
author_sort Thanh-Phong Dao
title Effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two sliders
title_short Effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two sliders
title_full Effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two sliders
title_fullStr Effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two sliders
title_full_unstemmed Effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two sliders
title_sort effect of clearance and friction in revolute imperfect joints on dynamic behaviors of a slider-crank mechanism with two sliders
publisher Ton Duc Thang University
series Journal of Advanced Engineering and Computation
issn 1859-2244
2588-123X
publishDate 2018-03-01
description Friction and clearance always present in any mechanical system. Hence, the effects of friction and clearance on a dynamic system are so critical. This paper aims to investigate their effects on the dynamic response of a slider-crank mechanism with two sliders and imperfect joints. Firstly, the mechanism is created in Solidworks and then it is simulated via finite element method in ANSYS. The dynamic simulation are conducted to evaluate the mentioned effects. The results revealed that the effect degree of clearance on the dynamic behaviors of the proposed mechanisms is significantly higher than that of friction. Also, the results indicated that the velocities, acceleration, and contact force graph are almost same at different friction coefficient. However, compared with ideal joint case, they had a maximum value and an unstable oscillation. This problem is due to journal collide into bearing induced the maximum values of contact force. The results of this study are a helpful guidance to practitioners, scientists, and engineers. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
url http://jaec.vn/index.php/JAEC/article/view/73
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