
The design of special energy conversion device of integrated self-powered brake system
Author(s) -
Weizhi Qiao,
Ding-bo Li,
Xiang Gao,
Xiaochao Liu,
Hao Zhang,
Renjie Li,
Xiyu Wang,
Yanze Hou,
Chong Chen
Publication year - 2021
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/2029/1/012081
Subject(s) - brake , automotive engineering , modular design , energy transformation , reliability (semiconductor) , power (physics) , mechanism (biology) , mechanical energy , energy (signal processing) , flywheel , mechanical engineering , engineering , computer science , physics , quantum mechanics , thermodynamics , operating system
In recent years, a novel electro-hydraulic integrated self-powered brake system for aircraft has been proposed. A modular “self-powered device” is installed near the wheel to recover the rotational kinetic energy when the wheel lands and convert it into hydraulic energy for braking. The energy conversion device is the compact high-power-weight ratio energy harvesting mechanism, which needs to be designed in the extremely narrow internal space of the wheel. At the same time to ensure high reliability, high strength, high power weight ratio, difficult, and wheel brake disc internal temperature reaches 600 °C above, this to the design of the can take institutions are challenges. In this paper, the high strength compact high power-weight ratio energy conversion device as the research goal, through new principles, new structure, new materials, new technology, new methods and other means of the energy taking mechanism design and development, and finally achieve the strength, stiffness, reliability, life of the energy conversion device to meet the requirements of the system.