Tribo-Brake Characteristics between Brake Disc and Brake Shoe during Emergency Braking of Deep Coal Mine Hoist with the High Speed and Heavy Load

The friction wear and thermal fatigue cracking of the brake shoe and friction-induced self-excited vibration (frictional flutter) of the disc brake can easily occur during emergency braking of a deep coal mine hoist with at high speed and with a heavy load. Therefore, tribo-brake characteristics bet...

Full description

Bibliographic Details
Published in:Energies
Main Authors: Dagang Wang, Ruixin Wang, Tong Heng, Guozheng Xie, Dekun Zhang
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/19/5094
_version_ 1851843219764019200
author Dagang Wang
Ruixin Wang
Tong Heng
Guozheng Xie
Dekun Zhang
author_facet Dagang Wang
Ruixin Wang
Tong Heng
Guozheng Xie
Dekun Zhang
author_sort Dagang Wang
collection DOAJ
container_title Energies
description The friction wear and thermal fatigue cracking of the brake shoe and friction-induced self-excited vibration (frictional flutter) of the disc brake can easily occur during emergency braking of a deep coal mine hoist with at high speed and with a heavy load. Therefore, tribo-brake characteristics between the brake disc and brake shoe during emergency braking of a deep coal mine hoist are investigated in the present study. Scaled parameters of the disc brake of a deep coal mine hoist are determined by employing the similarity principle. Friction tests between friction disc and brake shoe are carried out to obtain the coefficient of friction in the case of high speed and large specific pressure between the friction disc and brake shoe. Coupled thermo-mechanical finite element analyses of the brake disc and brake shoe are established to investigate temperature and stress fields of the brake disc and brake shoe during emergency braking, which is validated by the engineering failure case. Effects of braking parameters on flutter characteristics between the brake disc and brake shoe are explored by employing a double-degrees-of-freedom vibration mechanism model. The results show that the maximum temperature, equivalent Von Mises stress and contact pressure are all located at the average friction radii of contact surfaces of the brake disc and brake shoe during emergency braking. The cage crashing accident in the case of high speed and heavy load in a typical coal mine shows crack marks and discontinuous burn marks at central locations of brake shoe and brake disc surfaces, respectively, which indicates frictional flutter characteristics between brake disc and brake shoe. During emergency braking, flutter time duration decreases with increasing initial braking speed and damping parameter; the flutter amplitude and frequency of the disc brake increases with increasing normal braking load and stiffness, respectively.
format Article
id doaj-art-a7e08e7bf83e412eb69d4e818c82d113
institution Directory of Open Access Journals
issn 1996-1073
language English
publishDate 2020-09-01
publisher MDPI AG
record_format Article
spelling doaj-art-a7e08e7bf83e412eb69d4e818c82d1132025-08-19T22:27:29ZengMDPI AGEnergies1996-10732020-09-011319509410.3390/en13195094Tribo-Brake Characteristics between Brake Disc and Brake Shoe during Emergency Braking of Deep Coal Mine Hoist with the High Speed and Heavy LoadDagang Wang0Ruixin Wang1Tong Heng2Guozheng Xie3Dekun Zhang4School of Mechatronic Engineering, China University of Mining and Technology, Daxue Road #1, Xuzhou 221116, ChinaSchool of Mechatronic Engineering, China University of Mining and Technology, Daxue Road #1, Xuzhou 221116, ChinaSchool of Mechatronic Engineering, China University of Mining and Technology, Daxue Road #1, Xuzhou 221116, ChinaSchool of Mechatronic Engineering, China University of Mining and Technology, Daxue Road #1, Xuzhou 221116, ChinaSchool of Mechatronic Engineering, China University of Mining and Technology, Daxue Road #1, Xuzhou 221116, ChinaThe friction wear and thermal fatigue cracking of the brake shoe and friction-induced self-excited vibration (frictional flutter) of the disc brake can easily occur during emergency braking of a deep coal mine hoist with at high speed and with a heavy load. Therefore, tribo-brake characteristics between the brake disc and brake shoe during emergency braking of a deep coal mine hoist are investigated in the present study. Scaled parameters of the disc brake of a deep coal mine hoist are determined by employing the similarity principle. Friction tests between friction disc and brake shoe are carried out to obtain the coefficient of friction in the case of high speed and large specific pressure between the friction disc and brake shoe. Coupled thermo-mechanical finite element analyses of the brake disc and brake shoe are established to investigate temperature and stress fields of the brake disc and brake shoe during emergency braking, which is validated by the engineering failure case. Effects of braking parameters on flutter characteristics between the brake disc and brake shoe are explored by employing a double-degrees-of-freedom vibration mechanism model. The results show that the maximum temperature, equivalent Von Mises stress and contact pressure are all located at the average friction radii of contact surfaces of the brake disc and brake shoe during emergency braking. The cage crashing accident in the case of high speed and heavy load in a typical coal mine shows crack marks and discontinuous burn marks at central locations of brake shoe and brake disc surfaces, respectively, which indicates frictional flutter characteristics between brake disc and brake shoe. During emergency braking, flutter time duration decreases with increasing initial braking speed and damping parameter; the flutter amplitude and frequency of the disc brake increases with increasing normal braking load and stiffness, respectively.https://www.mdpi.com/1996-1073/13/19/5094deep coal mineemergency brakingtribo-brakehigh speedheavy load
spellingShingle Dagang Wang
Ruixin Wang
Tong Heng
Guozheng Xie
Dekun Zhang
Tribo-Brake Characteristics between Brake Disc and Brake Shoe during Emergency Braking of Deep Coal Mine Hoist with the High Speed and Heavy Load
deep coal mine
emergency braking
tribo-brake
high speed
heavy load
title Tribo-Brake Characteristics between Brake Disc and Brake Shoe during Emergency Braking of Deep Coal Mine Hoist with the High Speed and Heavy Load
title_full Tribo-Brake Characteristics between Brake Disc and Brake Shoe during Emergency Braking of Deep Coal Mine Hoist with the High Speed and Heavy Load
title_fullStr Tribo-Brake Characteristics between Brake Disc and Brake Shoe during Emergency Braking of Deep Coal Mine Hoist with the High Speed and Heavy Load
title_full_unstemmed Tribo-Brake Characteristics between Brake Disc and Brake Shoe during Emergency Braking of Deep Coal Mine Hoist with the High Speed and Heavy Load
title_short Tribo-Brake Characteristics between Brake Disc and Brake Shoe during Emergency Braking of Deep Coal Mine Hoist with the High Speed and Heavy Load
title_sort tribo brake characteristics between brake disc and brake shoe during emergency braking of deep coal mine hoist with the high speed and heavy load
topic deep coal mine
emergency braking
tribo-brake
high speed
heavy load
url https://www.mdpi.com/1996-1073/13/19/5094
work_keys_str_mv AT dagangwang tribobrakecharacteristicsbetweenbrakediscandbrakeshoeduringemergencybrakingofdeepcoalminehoistwiththehighspeedandheavyload
AT ruixinwang tribobrakecharacteristicsbetweenbrakediscandbrakeshoeduringemergencybrakingofdeepcoalminehoistwiththehighspeedandheavyload
AT tongheng tribobrakecharacteristicsbetweenbrakediscandbrakeshoeduringemergencybrakingofdeepcoalminehoistwiththehighspeedandheavyload
AT guozhengxie tribobrakecharacteristicsbetweenbrakediscandbrakeshoeduringemergencybrakingofdeepcoalminehoistwiththehighspeedandheavyload
AT dekunzhang tribobrakecharacteristicsbetweenbrakediscandbrakeshoeduringemergencybrakingofdeepcoalminehoistwiththehighspeedandheavyload