Contact Response Analysis of Vertical Impact between Elastic Sphere and Elastic Half Space

At present, the contact problem between the particle and the plane plate is generally equivalent to the rigid sphere impacting the elastic half space or the elastic sphere impacting the rigid surface. However, in the actual contact process, there will be no rigid body, and both contact and contacted...

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Main Authors: Yang Yang, Qingliang Zeng, Lirong Wan
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2018/1802174
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spelling doaj-edb7249d85d6432496288c7a3eb63db22020-11-25T00:05:06ZengHindawi LimitedShock and Vibration1070-96221875-92032018-01-01201810.1155/2018/18021741802174Contact Response Analysis of Vertical Impact between Elastic Sphere and Elastic Half SpaceYang Yang0Qingliang Zeng1Lirong Wan2Department of Mechanical and Electrical Engineering, Shandong University of Science and Technology, QingDao 266590, ChinaDepartment of Mechanical and Electrical Engineering, Shandong University of Science and Technology, QingDao 266590, ChinaDepartment of Mechanical and Electrical Engineering, Shandong University of Science and Technology, QingDao 266590, ChinaAt present, the contact problem between the particle and the plane plate is generally equivalent to the rigid sphere impacting the elastic half space or the elastic sphere impacting the rigid surface. However, in the actual contact process, there will be no rigid body, and both contact and contacted object will deform and absorb energy. The research results obtained from the equivalent of the contact material to the rigid body are less accurate. In order to obtain the accurate mechanical relation and contact response, we took the research of impact between particles and the metal plate as a breakthrough in which the particle is equivalent to an elastic sphere and the metal plate is equivalent to an elastic half space and established the theory of vertical impact contact between elastic sphere and elastic half space by the Hertz contact theory. Through the dynamic simulation of an elastic sphere which has similar properties with rock impacting target in elastic half space in LS-DYNA, the correctness of the established theory and the feasibility of the contact process simulated by LS-DYNA are verified. Based on the established theory and 3D simulation, we studied the influence law of material parameters on the contact response and analyzed the differences of the collision vibration signals caused by the different contact objects. From the above research results, we obtain that the theoretical model is more accurate to predict the maximum contact force and contact displacement in this paper than traditional Hertz theory. And the sphere radius and both contact objects’ elastic modulus have larger influence on the contact response than sphere density, while the Poisson’s ratio has the smallest influence on the contact response results. Different material properties will cause the different contact response. The conclusions of this paper provide a theoretical calculation method for contact and a 3D simulation method for elastic half space and provide theoretical guidance for the differences analysis of the vibration signal.http://dx.doi.org/10.1155/2018/1802174
collection DOAJ
language English
format Article
sources DOAJ
author Yang Yang
Qingliang Zeng
Lirong Wan
spellingShingle Yang Yang
Qingliang Zeng
Lirong Wan
Contact Response Analysis of Vertical Impact between Elastic Sphere and Elastic Half Space
Shock and Vibration
author_facet Yang Yang
Qingliang Zeng
Lirong Wan
author_sort Yang Yang
title Contact Response Analysis of Vertical Impact between Elastic Sphere and Elastic Half Space
title_short Contact Response Analysis of Vertical Impact between Elastic Sphere and Elastic Half Space
title_full Contact Response Analysis of Vertical Impact between Elastic Sphere and Elastic Half Space
title_fullStr Contact Response Analysis of Vertical Impact between Elastic Sphere and Elastic Half Space
title_full_unstemmed Contact Response Analysis of Vertical Impact between Elastic Sphere and Elastic Half Space
title_sort contact response analysis of vertical impact between elastic sphere and elastic half space
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2018-01-01
description At present, the contact problem between the particle and the plane plate is generally equivalent to the rigid sphere impacting the elastic half space or the elastic sphere impacting the rigid surface. However, in the actual contact process, there will be no rigid body, and both contact and contacted object will deform and absorb energy. The research results obtained from the equivalent of the contact material to the rigid body are less accurate. In order to obtain the accurate mechanical relation and contact response, we took the research of impact between particles and the metal plate as a breakthrough in which the particle is equivalent to an elastic sphere and the metal plate is equivalent to an elastic half space and established the theory of vertical impact contact between elastic sphere and elastic half space by the Hertz contact theory. Through the dynamic simulation of an elastic sphere which has similar properties with rock impacting target in elastic half space in LS-DYNA, the correctness of the established theory and the feasibility of the contact process simulated by LS-DYNA are verified. Based on the established theory and 3D simulation, we studied the influence law of material parameters on the contact response and analyzed the differences of the collision vibration signals caused by the different contact objects. From the above research results, we obtain that the theoretical model is more accurate to predict the maximum contact force and contact displacement in this paper than traditional Hertz theory. And the sphere radius and both contact objects’ elastic modulus have larger influence on the contact response than sphere density, while the Poisson’s ratio has the smallest influence on the contact response results. Different material properties will cause the different contact response. The conclusions of this paper provide a theoretical calculation method for contact and a 3D simulation method for elastic half space and provide theoretical guidance for the differences analysis of the vibration signal.
url http://dx.doi.org/10.1155/2018/1802174
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AT qingliangzeng contactresponseanalysisofverticalimpactbetweenelasticsphereandelastichalfspace
AT lirongwan contactresponseanalysisofverticalimpactbetweenelasticsphereandelastichalfspace
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