Analysis of a New Mechanical Anti-Lock Brake System for Two-Wheeled Vehicles

This study aims to present an analysis on a new type of mechanical anti-lock brake system (ABS) and the device is suitable for two-wheeled vehicles, such as bicycles. Firstly, the structure of the mechanism, the principle of operation and operating stages of the device are discussed. Secondly, the f...

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Bibliographic Details
Published inApplied Mechanics and Materials Vol. 437; pp. 313 - 320
Main Authors Liu, Tyng, Yang, Cheng Ping
Format Journal Article
LanguageEnglish
Published Zurich Trans Tech Publications Ltd 01.10.2013
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Summary:This study aims to present an analysis on a new type of mechanical anti-lock brake system (ABS) and the device is suitable for two-wheeled vehicles, such as bicycles. Firstly, the structure of the mechanism, the principle of operation and operating stages of the device are discussed. Secondly, the force models of the system and the force equations with parameters are developed. Then, a numerical program for simulating the operation of the system is developed, and the relationship between operating force and braking force, as well as the efficiency of ABS in different situations (e.g. road friction coefficient, loading) are analyzed. Finally, the results of how each parameter affects the braking performance are discussed. In this paper, we present a complete analysis on this new mechanical ABS systematically. Through the simulation of various operating conditions, the characteristics of the system are investigated and clearly verified. It is shown that this type of mechanical ABS could be useful in some situations. However, the overall braking performance will be reduced. This new mechanical ABS might be useful with some possible modifications, and could be applied in other areas.
Bibliography:Selected, peer reviewed papers from the 2013 2nd International Conference on Industrial Design and Mechanics Power (ICIDMP 2013) August 24-25, 2013, Nanjing, China
ISBN:9783037858967
3037858966
ISSN:1660-9336
1662-7482
1662-7482
DOI:10.4028/www.scientific.net/AMM.437.313