简介:机动车安全技术检验制度是我国法定车辆安全管理制度的重要组成部分.当前,机动车安全技术检验机构在开展台式制动性能检验时,多采用空载制动检验方式,这导致车辆的空载制动性能检验结果不能准确反映车辆加载运行状态时的制动性能.本文针对加载运行状态下的轴荷与空载轴荷变化较大的货车、半挂汽车列车进行研究,选择相对适用于我国安全技术检验机构的举升滚筒方式进行加载制动检验分析.通过试验分析两轴货车、三轴货车、半挂汽车列车在举升滚筒不同高度时的轴荷、通过试验比对分析空载状态和加载状态下的制动性能,试验结果显示:采用举升滚筒式加载制动检验技术,能更准确地反映车辆实际运行状态下的制动性能,能更好地发现车辆制动安全隐患.
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简介:以一款基于双行星排式动力耦合机构的混合动力汽车为研究对象,针对其模式切换过程中因发动机和电机的动态响应时间悬殊较大而引起的驱动转矩波动太大和整车冲击大等不良现象,提出了"转矩分配+发动机转矩监测+电动机转矩补偿"的动态协调控制策略,并在Matlab/Simulink平台中搭建了控制策略模型,联合LMS.AMESim平台中建立的整车模型进行了联合仿真,以纯电动模式向联合驱动模式切换过程为例进行了模式切换瞬间的舒适性分析。结果表明,动态协调控制策略能有效减小模式切换过程中的驱动转矩波动和整车冲击度,提高了车辆的行驶平顺性,同时冲击度的幅频特性表明,该混合动力汽车模式切换瞬间的整车冲击能量主要集中在1-2Hz,所提出的满意度评价指标在经过动态协调控制后获得较大提升。