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Wear analysis of tapered roller bearing considering roller element modification and its influences on contact pressure distribution
by
Zhang, Liang
, Tian, Weisong
, Zhang, Yu
, Xie, Liyang
, Liu, Zengzhi
in
Adhesive wear
/ Ball bearings
/ Contact force
/ Contact pressure
/ Control
/ Dynamical Systems
/ Engineering
/ Engineers
/ Industrial and Production Engineering
/ Influence
/ Investigations
/ Mechanical Engineering
/ Original Article
/ Pressure distribution
/ Roller bearings
/ Static models
/ Stress concentration
/ Taper roller bearings
/ Vibration
/ 기계공학
2025
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Wear analysis of tapered roller bearing considering roller element modification and its influences on contact pressure distribution
by
Zhang, Liang
, Tian, Weisong
, Zhang, Yu
, Xie, Liyang
, Liu, Zengzhi
in
Adhesive wear
/ Ball bearings
/ Contact force
/ Contact pressure
/ Control
/ Dynamical Systems
/ Engineering
/ Engineers
/ Industrial and Production Engineering
/ Influence
/ Investigations
/ Mechanical Engineering
/ Original Article
/ Pressure distribution
/ Roller bearings
/ Static models
/ Stress concentration
/ Taper roller bearings
/ Vibration
/ 기계공학
2025
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Wear analysis of tapered roller bearing considering roller element modification and its influences on contact pressure distribution
by
Zhang, Liang
, Tian, Weisong
, Zhang, Yu
, Xie, Liyang
, Liu, Zengzhi
in
Adhesive wear
/ Ball bearings
/ Contact force
/ Contact pressure
/ Control
/ Dynamical Systems
/ Engineering
/ Engineers
/ Industrial and Production Engineering
/ Influence
/ Investigations
/ Mechanical Engineering
/ Original Article
/ Pressure distribution
/ Roller bearings
/ Static models
/ Stress concentration
/ Taper roller bearings
/ Vibration
/ 기계공학
2025
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Wear analysis of tapered roller bearing considering roller element modification and its influences on contact pressure distribution
Journal Article
Wear analysis of tapered roller bearing considering roller element modification and its influences on contact pressure distribution
2025
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Overview
A comprehensive quasi-static model of the tapered roller bearing with the modified roller element is established. Based on the slicing method, the wear depth models of both roller element and raceway are derived. The influences of roller element modification on the wear depth distribution characteristics of both roller element and raceway under different load conditions are investigated. The contact pressure distribution between roller element and raceway before and after wear are compared and analyzed. The results indicate that the modification of roller element has a significant effect on bearing wear. The smaller the modification amount, the lower the peak wear depth, and the peak wear position is closer to the end of the roller elements. Wear has a weak impact on the contact force between the roller element and the raceway, but leads to the increase of the peak contact pressure.
Publisher
Korean Society of Mechanical Engineers,Springer Nature B.V,대한기계학회
Subject
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