液压制动器
摩擦电效应
汽车工程
电子制动力分配系统
制动器
刹车片
盘式制动器
发动机制动
临界制动
动态制动
机械能
缓速器
再生制动器
工程类
扭矩
材料科学
水力机械
机油压力
复合数
机械系统
使用寿命
定子
机械工程
空气制动器
滑模控制
计算机科学
转子(电动)
液压油
纳米发生器
节气门
控制系统
闸瓦
稳健性(进化)
电压
作者
Hang Yun,Lanchun Zhang,Yan Zheng,Wei Wang
标识
DOI:10.1177/09544070251393537
摘要
Triboelectric nanogenerators (TENG) based on contact electrification can efficiently harvest irregular and random mechanical energy, aligning with the design principles of green cars. This paper introduces a composite brake system that incorporates a sliding-mode freestanding TENG (SF-TENG) for collecting braking energy. This electro-hydraulic composite brake system consists of disc brake, SF-TENG brake, and hydraulic circuits. The grid-like PTFE film and Al film are the rotor and stator of the SF-TENG. The input oil pressures of disc brake and SF-TENG brake are controlled by the electro-hydraulic brake system. In order to ensure the service life of the triboelectric pair, a hydraulic circuit for SF-TENG-brake, equipped with a unidirectional pressure relief valve, has been designed to set the upper limit of the contact pressure for the triboelectric pair. Based on the single-track model and the composite braking system model, a sliding mode control strategy is proposed for emergency braking scenarios. In this strategy, the braking torque of the SF-TENG brake is considered as a disturbance in the control input to enhance the robustness of optimal slip ratio tracking. A key feature of this system is the use of a dedicated hydraulic circuit to decouple the energy harvesting function from the critical safety braking function, thereby maintaining unimpaired braking performance and enabling efficient recovery of braking energy. The SF-TENG brake can harvest 0.99 mJ of kinetic energy during an emergency braking event.
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