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A Study on the Temperature Change of Braking Disc and Thermal Conductivity during the Service  

Kim, Jae-Hoon (한국철도기술연구원, 철도시스템연구본부)
Goo, Byeong-Choon (한국철도기술연구원, 철도시스템연구본부)
Suk, Chang-Sung (성균관대학교 기계공학부)
Publication Information
Journal of the Korean Society for Railway / v.10, no.6, 2007 , pp. 665-669 More about this Journal
Abstract
This study investigates the temperature change and thermal conductivity for the braking disc of the railway vehicle due to the types of train and service conditions. The temperature change was measured by non-contact Infrared thermometers. Average temperature was measured between $79.32^{\circ}C$ and $104.46^{\circ}C$ due to types of train and service section. In the same service section, the surface temperatures of Saemaul train were higher than Mugungwha train; the reason might have been the average service speed of Saemaul train (83km/h) was higher than Mugungwha train (107km/h), and the weight was similar 39t (Mugungwha) and 39.3t (Saemaul). But the maximum surface temperature was measured on the Mugungwha train; however the difference was not too big with the maximum temperature of Saemaul train. Also, the disc surface temperatures were changed due to the material of lining; metal and non-asbestos, on the same train and the same service section. In addition. the thermal conductivity was tested the thermal conductivities were increased by the increasing of the temperature. The change is too big between $100^{\circ}C$ and $200^{\circ}C$. But each average value is small. and the mechanical property change is very low. As a result, we conclude that this disc is suitable for usage between $100^{\circ}C$ and $300^{\circ}C$.
Keywords
Braking disk; Temperature change; Thermal conductivity;
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1 이강용, 김종성, 취형석, 김건영, 열충격하에 있는 반타원균열에 대한 파괴건전성 평가, 대한기계학회논문집, 18, 12, 1994, pp.3163-3148
2 A. Fissolo, C. Robertson & V. Maillot, Prediction of crack initiation and growth under thermal fatigue, Thermomechanical Fatigue and Fracture, WIT press, 2002, pp.67-103
3 이치우, 장건익, 김종태, 열충격이 작용하는 취성구조의 신뢰성 평가, 한국해양공학회지, 12, 1, 1998, pp.58-64
4 석창성, 최용식, 양원호, 김영진, 재료의 탄소성파괴인성치 JIC의 온도 의존성에 관한 연구(I), 대한기계학회논문집, 13, 4, 1989, pp.653-659
5 김낙수, 임용택, 진종태 공역, 공업재료 가공학, 반도출판사, 1993
6 Anderson, Fracture Mechanics 2nd, CRC, 1995
7 Thermal Conductivity of Solids by Means of the Guarded- Comparative-Longitudinal Heat Flow Technique, ASTM E1225