Wir verwenden Cookies und Analyse-Tools, um die Nutzerfreundlichkeit der Internet-Seite zu verbessern und für Marketingzwecke. Wenn Sie fortfahren, diese Seite zu verwenden, nehmen wir an, dass Sie damit einverstanden sind. Zur Datenschutzerklärung.
Coupled Field Analysis of Disc Brake Rotor
Details
Disk brakes are widely used for reducing velocity for their characteristics of braking stability, controllability and their ability to provide a wide ranging torque. The frictional heat generated on the interface of rotor can cause high temperature, which leads to undesirable effects such as brake fade phenomena, local scoring, thermal cracking and thermoelastic instability. In the course of braking the parameters of the processes like load, temperature and conditions of contact vary with time.So, to consider the effects of moving heat source with relative sliding speed variation a transient thermal analysis is performed for four seconds of braking duration to characterize the temperature fields of the solid rotor with appropriate thermal boundary conditions. For the present analysis of solid rotor, ANSYS is used as a FEA tool. Once the brake rotor temperature distribution is obtained a transient structural analysis is performed to predict the failure of the disk rotor. Influence of changing the material properties and geometric configuration like providing vents in the solid rotor, on temperature and stress distribution obtained is analyzed in this work to minimize the high tempt.
Autorentext
Eknath Bayas es Profesor Asistente, Departamento de Ingeniería Mecánica, Amrutvahini college of Engineering Sangamner. Hizo ME (Diseño) de la Universidad de Pune y P. G. diploma en Ingeniería de Vapor de Forbes Marshall Pvt. Ltd pune. Tiene más de 13 años de experiencia total que incluye la enseñanza y la industria.
Weitere Informationen
- Allgemeine Informationen
- Sprache Englisch
- Anzahl Seiten 92
- Herausgeber LAP LAMBERT Academic Publishing
- Gewicht 155g
- Autor Eknath Bayas
- Titel Coupled Field Analysis of Disc Brake Rotor
- Veröffentlichung 20.06.2019
- ISBN 613991180X
- Format Kartonierter Einband
- EAN 9786139911806
- Jahr 2019
- Größe H220mm x B150mm x T6mm
- GTIN 09786139911806