Numerical Solution of Fatigue Stress in Journal Bearing

Main Author: Hasan, Basri
Other Authors: Bustami, Syam
Format: Book PeerReviewed application/pdf
Terbitan: IC STAR, University of Sumatera Utara , 2007
Subjects:
Online Access: http://eprints.unsri.ac.id/7213/1/Numerical_Solution_of_Fatigue_Stress_in_Journal_Bearing_NAE_2007.pdf
http://eprints.unsri.ac.id/7213/
ctrlnum 7213
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><title>Numerical Solution of Fatigue Stress in Journal Bearing</title><creator>Hasan, Basri</creator><subject>TJ Mechanical engineering and machinery</subject><description>Failure of fatigue is damaged materials where caused frequent load. Fatigue owing to some factors, which is Stress concentration on fatigue, Stress life, Effect size and surface, and Change properties of surface. The fatigue failure of a material is dependent on the interaction of a large stress with a critical flow. In essence, fatigue is controlled by the weakest link of the material, with the probability of a weak link increasing with material volume. This phenomenon is evident in the fatigue test results of a material using specimens of varying diameters. From this research we can get effect of concentration stress on strength fatigue with S-N method. On this method only count fatigue life or endurance limit from Journal bearing housing. By Finite Element Analysis, it is not so easy to determine fatigue life. When we find the first yield point, it means this point is in the highest stress state. Then we can refer S-N curve. In this paper, the effect of bearing and housing elasticity on the stress field, which could result in surface fatigue in journal bearing, has been investigated. This condition is proved with occurred slip lines on surface of specimen. These slip lines are caused on some thousands stress cycles. Additional crack is happened immediately and finally long enough crack. So that formed unstable crack that caused fracture of brittleness or fracture of toughness because section of specimen cannot keep down load.</description><publisher>IC STAR, University of Sumatera Utara</publisher><contributor>Bustami, Syam</contributor><date>2007-05-18</date><type>Book:Book</type><type>PeerReview:PeerReviewed</type><type>File:application/pdf</type><identifier>http://eprints.unsri.ac.id/7213/1/Numerical_Solution_of_Fatigue_Stress_in_Journal_Bearing_NAE_2007.pdf</identifier><identifier>Hasan, Basri (2007) Numerical Solution of Fatigue Stress in Journal Bearing. NAE 2007, 5 (1). IC STAR, University of Sumatera Utara, Medan, Indonesia. ISBN 979-96139-6-7</identifier><relation>http://eprints.unsri.ac.id/7213/</relation><recordID>7213</recordID></dc>
format Book:Book
Book
PeerReview:PeerReviewed
PeerReview
File:application/pdf
File
author Hasan, Basri
author2 Bustami, Syam
title Numerical Solution of Fatigue Stress in Journal Bearing
publisher IC STAR, University of Sumatera Utara
publishDate 2007
isbn 9789799613967
topic TJ Mechanical engineering and machinery
url http://eprints.unsri.ac.id/7213/1/Numerical_Solution_of_Fatigue_Stress_in_Journal_Bearing_NAE_2007.pdf
http://eprints.unsri.ac.id/7213/
contents Failure of fatigue is damaged materials where caused frequent load. Fatigue owing to some factors, which is Stress concentration on fatigue, Stress life, Effect size and surface, and Change properties of surface. The fatigue failure of a material is dependent on the interaction of a large stress with a critical flow. In essence, fatigue is controlled by the weakest link of the material, with the probability of a weak link increasing with material volume. This phenomenon is evident in the fatigue test results of a material using specimens of varying diameters. From this research we can get effect of concentration stress on strength fatigue with S-N method. On this method only count fatigue life or endurance limit from Journal bearing housing. By Finite Element Analysis, it is not so easy to determine fatigue life. When we find the first yield point, it means this point is in the highest stress state. Then we can refer S-N curve. In this paper, the effect of bearing and housing elasticity on the stress field, which could result in surface fatigue in journal bearing, has been investigated. This condition is proved with occurred slip lines on surface of specimen. These slip lines are caused on some thousands stress cycles. Additional crack is happened immediately and finally long enough crack. So that formed unstable crack that caused fracture of brittleness or fracture of toughness because section of specimen cannot keep down load.
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