Effect Mechanism and Performance Evaluation of Flange Contact Thermal Resistance in an Aero-Engine

Author:

Chen Yan,Chen Liyuan,Chu Wuli

Abstract

According to the discontinuous structural characteristics of a gas turbine, by considering the contact thermal resistance of the rough surface, a contact thermal resistance measurement experiment was conducted in this study. The main objectives of this work were to investigate the influence mechanism and change law of the contact thermal resistance characteristics on flange installation. Furthermore, this study conducted a theoretical analysis of contact thermal resistance and the calculation of a typical flange mounting edge based on actual operating conditions. The research results show that the contact thermal resistance of a typical flange mounting edge increases with an increase in flange clearance under different tightening torques, which is essentially proportional to the flange clearance. As the flange clearance increases, the unit contact thermal conductivity firstly decreases rapidly. Then, as the flange clearance reaches 0.4 mm, the decreasing rate of unit contact thermal conductivity tends to flatten. In addition, the contact thermal resistance of the typical flange mounting edge decreases with the increase in the tightening torque under different flange clearances. Furthermore, the contact area ratio is not related to the material, and the contact thermal resistance under actual working conditions can be calculated using the unit contact area.

Publisher

MDPI AG

Subject

Aerospace Engineering

Reference27 articles.

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2. Finite element model updating of an assembled aero-engine casing. Topics in Model Validation and Uncertainty Quantification;Zang,2013

3. Failure mechanisms of bolted flanges in aero-engine casings subjected to impact loading

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1. Effect of load application method on thermal contact resistance and uniformity of temperature distribution;Applied Thermal Engineering;2023-07

2. Advances in thermal contact resistance studies;Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science;2022-08-16

3. Experimental Analysis of Clearance Leakage Characteristics at Blade Edge Plates of a Gas Turbine Engine;Energies;2022-03-22

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