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Original Articles

Influence of Pad Pivot Friction on Tilting-Pad Journal Bearing Measurements—Part I: Steady Operating Position©

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Pages 210-215 | Published online: 25 Mar 2008

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Read on this site (3)

BOB BRECHTING, RON FLACK, HUNTER CLOUD, LLOYD BARRETT & MINHUI HE. (2005) Influence of Journal Speed and Load on the Static Operating Characteristics of a Tilting-Pad Journal Bearing with Ball-and-Socket Pivots. Tribology Transactions 48:3, pages 283-288.
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Karl D. Wygant, Ronald D. Flack & Lloyd E. Barrett. (2004) Measured Performance of Tilting-Pad Journal Bearings over a Range of Preloads—Part I: Static Operating Conditions. Tribology Transactions 47:4, pages 576-584.
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KarlD. Wygant, LloydE. Barrett & RonaldD. Flack. (1999) Influence of Pad Pivot Friction on Tilting-Pad Journal Bearing Measurements—Part II: Dynamic Coefficients©. Tribology Transactions 42:1, pages 250-256.
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Articles from other publishers (15)

Alberto Betti, Paola Forte, Daniele Panara & Enrico Ciulli. 2024. Advances in Mechanism and Machine Science. Advances in Mechanism and Machine Science 861 869 .
Alberto Betti, Paola Forte, Daniele Panara & Enrico Ciulli. (2023) Investigation on Pivot Rolling Motion Effect on the Behavior of Rocker Back Tilting Pad Journal Bearings. Applied Sciences 13:9, pages 5563.
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Dongil Shin & Alan B. Palazzolo. (2021) Tilting Pad Bearing Pivot Friction and Design Effects on Thermal Bow-Induced Rotor Vibration. Journal of Tribology 143:12.
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Jongin Yang & Alan Palazzolo. (2021) Computational Fluid Dynamics Based Mixing Prediction for Tilt Pad Journal Bearing TEHD Modeling—Part I: TEHD-CFD Model Validation and Improvements. Journal of Tribology 143:1.
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Rasool Koosha & Luis San Andrés. (2020) A Computational Model for the Analysis of the Static Forced Performance of Self-Equalizing Tilting Pad Thrust Bearings. Journal of Engineering for Gas Turbines and Power 142:10.
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Sitae Kim, Sangwon Byun & Junho Suh. (2020) Effects of Tilting Pad Journal Bearing Design Parameters on the Pad-Pivot Friction and Nonlinear Rotordynamic Bifurcations. Applied Sciences 10:16, pages 5406.
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Sitae KimAlan B. Palazzolo. (2019) Pad–Pivot Friction Effect on Nonlinear Response of a Rotor Supported by Tilting-Pad Journal Bearings. Journal of Tribology 141:9.
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David M. Coghlan & Dara W. Childs. (2017) Characteristics of a Spherical Seat TPJB With Four Methods of Directed Lubrication—Part II: Rotordynamic Performance. Journal of Engineering for Gas Turbines and Power 139:12.
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David M. Coghlan & Dara W. Childs. (2017) Characteristics of a Spherical-Seat TPJB With Four Methods of Directed Lubrication—Part I: Thermal and Static Performance. Journal of Engineering for Gas Turbines and Power 139:12.
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Mengxuan Li, Chaohua Gu, Xiaohong Pan, Shuiying Zheng & Qiang Li. (2016) A new dynamic mesh algorithm for studying the 3D transient flow field of tilting pad journal bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 230:12, pages 1470-1482.
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Shuangtao Chen, Shanju Yang, Quan Zhou, Yu Hou & Tianwei Lai. (2015) Numerical study on tilting pad journal gas bearing with variable stiffness springs. Journal of Mechanical Science and Technology 29:8, pages 3059-3067.
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Jorge G Salazar & Ilmar F Santos. (2015) Exploring integral controllers in actively-lubricated tilting-pad journal bearings. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 229:7, pages 835-848.
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Alejandro Cerda Varela & Ilmar Ferreira Santos. (2015) Dynamic Coefficients of a Tilting Pad With Active Lubrication: Comparison Between Theoretical and Experimental Results. Journal of Tribology 137:3.
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Dara Childs & Joel Harris. (2009) Static Performance Characteristics and Rotordynamic Coefficients for a Four-Pad Ball-in-Socket Tilting Pad Journal Bearing. Journal of Engineering for Gas Turbines and Power 131:6.
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Sung-Gi Kim & Kyung-Woong Kim. (2008) Influence of pad–pivot friction on tilting pad journal bearing. Tribology International 41:8, pages 694-703.
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