主办:陕西省汽车工程学会
ISSN 1671-7988  CN 61-1394/TH
创刊:1976年

Automobile Applied Technology ›› 2026, Vol. 51 ›› Issue (13): 39-43,91.DOI: 10.16638/j.cnki.1671-7988.2026.013.007

• Design and Research • Previous Articles    

Design and analysis of a lattice-type electro-mechanical brake actuator for vehicles

YU Jiaqi, WANG Kuiyang* , FENG Yijin, AN Ruixuan, XIAO Jianqiang, TANG Jinhua   

  1. School of Automotive and Traffic Engineering, Jiangsu University of Technology
  • Published:2026-07-06
  • Contact: WANG Kuiyang

汽车点阵式电子机械制动执行机构设计与分析

于嘉琪,王奎洋*,冯艺瑾,安芮萱,肖健强,唐金花   

  1. 江苏理工学院 汽车与交通工程学院
  • 通讯作者: 王奎洋
  • 作者简介:于嘉琪(2005-),女,研究方向为车辆动力学 通信作者:王奎洋(1979-),男,博士,副教授,研究方向为车辆动力学
  • 基金资助:
    江苏省高等学校基础科学(自然科学)研究重大项目(23KJA580004)

Abstract: To meet the high performance requirements of new energy vehicles and high-level autonomous driving for braking systems, this paper proposes a lattice-type electro-mechanical brake (EMB) actuator. The actuator employs an array of 10 independently motor-driven braking units, allowing flexible combination of working modes according to braking force demands. Based on the reference vehicle parameters, the key components are selected. Through CATIA modeling and ANSYS static analysis, it is verified that the stress and deformation of each component are within allowable limits, and the braking torque meets the requirements. The results show that the proposed mechanism offers the advantages of high structural redundancy, precise control, and fast response, providing a feasible solution for a new generation of intelligent braking technology.

Key words: electro-mechanical brake; lattice-type mechanism; structural design; finite element analysis

摘要: 文章针对新能源汽车与高阶自动驾驶对制动系统的性能需求,提出一种点阵式电子机 械制动(EMB)执行机构。该机构采用 10 个独立电机驱动的阵列式制动单元,可根据需求灵 活组合工作模式。基于参考车型参数完成关键部件选型,通过 CATIA 建模与 ANSYS 静力学 分析,验证了各部件应力、变形均在许用范围内,制动力矩满足要求。结果表明,该机构具 备结构冗余性高、控制精准与响应迅速等优势,为新一代智能制动技术提供了可行方案。

关键词: 电子机械制动;点阵式机构;结构设计;有限元分析