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车辆全液压制动系统执行机构建模及仿真 被引量:18
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作者 程振东 田晋跃 刘刚 《系统仿真学报》 EI CAS CSCD 北大核心 2006年第3期778-780,793,共4页
分析了全液压制动系统执行机构的动态性能,并建立了执行机构的数学模型。基于数学模型,应用Matlab/Simulink仿真程序,对执行机构的动态特性进行仿真。并将仿真结果与气压和气顶液制动执行机构进行了分析对比,证明全液压制动系统执行机... 分析了全液压制动系统执行机构的动态性能,并建立了执行机构的数学模型。基于数学模型,应用Matlab/Simulink仿真程序,对执行机构的动态特性进行仿真。并将仿真结果与气压和气顶液制动执行机构进行了分析对比,证明全液压制动系统执行机构具有良好的制动性能。同时讨论了影响执行机构制动性能的主要因素。 展开更多
关键词 全液压制动系统 执行机构 数学模型 动态特性 仿真
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Full Power Hydraulic Brake System Based on Double Pipelines for Heavy Vehicles 被引量:7
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作者 GONG Mingde WEI Hailong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2011年第5期790-797,共8页
The hydraulic caliper disc brake system with air-over-oil is widely adopted at present for heavy vehicles,which makes use of air pressure system propelling the hydraulic pressure system acting on friction plates divid... The hydraulic caliper disc brake system with air-over-oil is widely adopted at present for heavy vehicles,which makes use of air pressure system propelling the hydraulic pressure system acting on friction plates divided and combined for braking.There are some disadvantages such as pneumatic components failure,dust polluted and produce lots of heat in hydraulic caliper disc brake system.Moreover,considering the demands of the high speed,heavy weight,heavy load and fast brake of heavy vehicles,the full power hydraulic brake system based on double pipelines for heavy vehicles is designed and analyzed in this paper.The scheme of the full power hydraulic brake system,in which the triloculare cylinder is controlled by dual brake valve,is adopted in the brake system.The full power hydraulic brake system can accomplish steering brake,parking brake and emergent brake for heavy vehicles.Furthermore,electronic control system that is responsible for coordinating the work of hydraulic decelerator and hydraulic brake system is developed for different speed brakes.Based on the analysis of the influence of composed unit and connecting pipeline on braking performance,the nonlinear mathematic model is established for the full power hydraulic brake system.The braking completion time and braking pressure in braking performance of the double-pipeline steering brake and parking brake are discussed by means of simulation experiments based on Matlab/Simulink,and the simulation results prove that the braking performance of steering brake and parking brake meets the designing requirement of the full power hydraulic brake system.Moreover,the test-bed experiments of the brake system for heavy vehicles are carried out.The experimental data prove that the braking performance achieves the goal of the design,and that the full power hydraulic brake system based on double pipelines can effectively enhance braking performance,ensure braking reliability and security for heavy vehicles. 展开更多
关键词 heavy vehicle full power hydraulic brake system double-pipeline brake triloculare cylinder braking performance
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飞机牵引车全液压制动系统动态性能分析 被引量:6
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作者 程振东 田晋跃 《专用汽车》 2005年第2期24-26,共3页
分析了全液压制动系统的动态性能,并建立了全液压制动系统的数学模型。基于数学模型,应用Matlab/Simulink仿真程序,对全液压制动系统的动态特性进行仿真。并将仿真结果与气压制动系统和气顶液制动系统进行了分析对比,证明全液压制动系... 分析了全液压制动系统的动态性能,并建立了全液压制动系统的数学模型。基于数学模型,应用Matlab/Simulink仿真程序,对全液压制动系统的动态特性进行仿真。并将仿真结果与气压制动系统和气顶液制动系统进行了分析对比,证明全液压制动系统具有良好的制动性能。 展开更多
关键词 全液压制动系统 动态性能分析 飞机牵引车 MATLAB/SIMULINK 气压制动系统 数学模型 仿真程序 动态特性 分析对比 仿真结果 制动性能
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