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发动机辅助制动性能仿真研究 被引量:5

Performance Simulation of Engine Supplementary Brake
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摘要 通过对发动机辅助制动工作过程进行理论分析,建立了发动机辅助制动计算模型,根据辅助制动相关参数(包括排气门开度、发动机转速和排气背压等),对发动机辅助制动进行了单因素和多因素条件下的仿真研究及试验验证。结果表明:随着发动机转速的升高,缸内压力增大,且压力峰值更靠近上止点;制动扭矩随转速的升高而增大,减压制动时制动扭矩最大,发动机制动时制动扭矩最小;发动机转速一定时,泄漏制动和减压制动分别有一对应的最佳排气门开度值,并且转速越高,排气门开度最佳值越大,排气背压越高,制动扭矩越大。 A mathematical model of the engine supplementary brake was set up through discussing the working processes of engine supplementary brake.According to reference parameters of the sup-plementary brake (including the exhaust valve lash,engine speed,exhaust back pressure,etc.),the engine supplementary brake was analyzed with univariate and multivariate conditions by the method of numerical simulations and experimental tests.The results show that the cylinder pressure increases with speed and the peak pressure phase is more near the top dead center(TDC)under the higher speed conditions.The brake torque increases with the engine speed increase.The de-compressure brake has a maximum brake torque while the engine brake has the minimum brake torque.When the engine speed is constant,the bleeding brake and the de-compressure brake have a corresponding optimal ex-haust valve lash,respectively.The higher the speed is,the bigger the exhaust valve lash is.The higher the exhaust back pressure is,the more the brake torque is.
出处 《中国机械工程》 EI CAS CSCD 北大核心 2014年第9期1268-1272,共5页 China Mechanical Engineering
基金 国家高技术研究发展计划(863计划)资助项目(2008AA11A116) 汽车车身先进设计制造国家重点实验室自主课题(61075002)
关键词 发动机 辅助制动 制动扭矩 排气背压 engine supplementary brake brake torque exhaust back pressure
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参考文献8

  • 1何仁,董颖,牛润新.车用发动机缓速器工作循环的理论分析[J].农业机械学报,2007,38(12):36-40. 被引量:14
  • 2余强,陈荫三,马建,郭荣庆,张庆余.发动机制动、排气制动与缓速器联合作用时的非连续线性控制系统的研究[J].中国公路学报,2005,18(1):117-121. 被引量:21
  • 3Peter L, Mattias W. Transport and Maintenance Ef- fective Retardation Control Using Neural Networks with Genetic Algorithms [J]. Vehicle System Dy- namics, 2004, 42(1/2) :89-107. 被引量:1
  • 4Peter L, Antonio D, Ricardo O. Open Loop Opti- mal Downhill Driving Brake Strategies Using Non- linear Programming [J]. International Journal of Heavy Vehicle Systems, 2007, 14(1) :36-56. 被引量:1
  • 5Imai Y, Torii A, Kobayashi N, et al. Development of New Decompression Brake for Heavy Duty Diesel Engine[J]. JSAE Review, 1996, 17(2): 213-217. 被引量:1
  • 6Price R B, Meistrick Z S. A New Breed Brake for the Cummins L10 Engine[J]. SAE Paper, 1983 : 831780. 被引量:1
  • 7Thomas N S, Klaus D H, Guenter F, et al. The New Mercedes Benz Engine Brake with Pulsed De- compression Valve Decompression Valve Engine Brake(DVB) [J]. SAE Paper, 1994 : 942266. 被引量:1
  • 8Druzhinina M, Anna G, Moklegaard L. Speed Gra- dient Approach to Longitudinal Control of Heavy- duty Vehicles Equipped with Variable Compression Brake[J]. IEEE Transactions on Control Systems Technology,2002, 10(2) :209-220. 被引量:1

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