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作 者:马彪[1] 王赫 郑长松[1] 阳仁奇 朱礼安 MA Biao;WANG He;ZHENG Changsong;YANG Renqi;ZHU Li'an(School of Mechanical and Vehicle Engineering,Beijing Institute of Technology,Beijing 100081,China;Military Representative Office of Army Equipment Department in Xiangtan,Xiangtan,Hu'nan 411100,China;Jianglu Machinery&Electronics Croup Co.,Ltd.,Xiangtan,Hu'nan 411100,China)
机构地区:[1]北京理工大学机械与车辆学院,北京100081 [2]陆军装备部驻湘潭地区军事代表室,湖南湘潭411100 [3]江麓机电集团有限公司,湖南湘潭411100
出 处:《北京理工大学学报》2022年第4期398-406,共9页Transactions of Beijing Institute of Technology
基 金:国家自然科学基金资助项目(51775045)。
摘 要:为提升电驱动履带车辆动力性与经济性,设计并研制了新型齿形带式制动器以替代行星变速机构中的湿式多片离合器.依据齿形带式制动器结构与工作原理,建立了制动过程的数值模型,研究了制动过程中制动鼓转角、转速和制动力矩等参数变化规律.同时搭建齿形带式制动器试验台架验证了方案可行性和数值模型的正确性.结果表明,制动鼓初始转速直接影响制动时间和制动力矩大小,且初始转速越高,制动时间越短,制动力矩相应增大.相比原有装置,新结构方案提升了制动转速范围,具有更优的工作可靠性和使用前景.In order to improve the dynamic and economy of electric tracked vehicle,a new tooth band brake was designed to replace the wet multi-plate clutch in the planetary transmission.A numerical model of the braking process was proposed based on the structure and working mechanism of tooth band brake.The variation law of parameters was studied,including the rotating angle and speed,as well as the braking torque of the brake drum.Moreover,a bench test was conducted to verify the feasibility of the brake structure and the correctness of numerical model.The results show that the initial rotational speed of the brake drum has a dramatic effect on the braking time and braking torque;the higher the rotating speed is,the shorter the braking time and the greater the braking torque.Compared with the original device,the new structure,can not only increase the braking speed range,but also provide better working reliability and application prospects.
分 类 号:TH132.4[机械工程—机械制造及自动化]
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