Brake experiments were conducted on a typical kind of friction blocks of a high-speed train. The friction and wear, interfacial temperature, vibration, and noise generated at or by the brake interface were investigated, and the interrelationship between the vibration response and the contact behaviour of interface was analysed. The results showed the friction coefficient, vibration energy, and noise intensity were lower when the block surface experiences less wear; the friction coefficient and contact angle of the block were important factors affecting the vibration characteristics of the brake system. Moreover, the contact inclination angle increased with the increase in the friction coefficient, and mode coupling of the brake system occurred; as a result, the vibration intensity increased, and squeal occurred.
Contact behaviour and vibrational response of a high-speed train brake friction block / Xiang, Z. Y.; Mo, J. L.; Ouyang, H.; Massi, F.; Tang, B.; Zhou, Z. R.. - In: TRIBOLOGY INTERNATIONAL. - ISSN 0301-679X. - 152:(2020). [10.1016/j.triboint.2020.106540]
Contact behaviour and vibrational response of a high-speed train brake friction block
Massi F.;
2020
Abstract
Brake experiments were conducted on a typical kind of friction blocks of a high-speed train. The friction and wear, interfacial temperature, vibration, and noise generated at or by the brake interface were investigated, and the interrelationship between the vibration response and the contact behaviour of interface was analysed. The results showed the friction coefficient, vibration energy, and noise intensity were lower when the block surface experiences less wear; the friction coefficient and contact angle of the block were important factors affecting the vibration characteristics of the brake system. Moreover, the contact inclination angle increased with the increase in the friction coefficient, and mode coupling of the brake system occurred; as a result, the vibration intensity increased, and squeal occurred.File | Dimensione | Formato | |
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Xiang_Contact-behaviour_2020.pdf
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