共查询到20条相似文献,搜索用时 640 毫秒
1.
2.
3.
汽车怠速工况车内噪声振动情况是影响整车NVH(噪声、振动和平顺性)水平的重要因素且影响乘车舒适性。以某款车型为例,对车内噪声源及传递路径进行分析,通过对悬置和冷却风扇等系统进行试验分析,确定了问题产生的主要原因,并提出了相应的优化方案,提出为保证悬置隔振和制冷效果,需对悬置系统和风扇转速合理匹配,同时提高转向柱的固有频率。验证表明车内轰鸣声消除,噪声及振动明显减小,效果良好,为解决同类问题提供了方法和思路。 相似文献
4.
5.
6.
7.
8.
9.
10.
针对某中型客车进气口辐射噪声和车内噪声较大的问题,首先根据车内声模态试验结果和对道路试验数据的偏相干与频谱分析结果,找到了主要噪声源为进气口,并确定了消声目标频段。接着研究了空滤器滤芯与穿孔管的声学特性,建立了进气系统有限元声学模型,并通过对比进气系统传递损失仿真曲线与怠速进气口噪声频谱,验证了模型的准确性。然后针对目标频段设计了进气消声器,使进气系统的传递损失在250~400Hz频段平均达24.7d B。最后进行了道路验证试验,结果表明设计的消声器有效降低了进气口辐射噪声和车内噪声。 相似文献
11.
首先介绍一汽混合动力商用车的研发背景、整车概念描述、整车电气系统配置。然后阐述如何进行电气系统设计,其中分为电气系统供电电路设计和控制器通信系统的通信电路设计。最后总结混合动力商用车电气系统设计的要点,并对混合动力商用车进行展望。 相似文献
12.
13.
14.
介绍燃料电池汽车转向系统的要求与特点,综述现有适合燃料电池汽车的电动液压助力转向系统、电动助力转向系统技术及未来线控转向系统技术,分析各自的特点,并阐述了燃料电池汽车转向系统的应用与发展趋势。 相似文献
15.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(5):365-397
Summary The steering type of a mechanical guidance system has been used for Automated Guideway Transit (AGT) system in Japan. Recently, the single-axle bogie system has developed for AGT vehicle and applied to Yurikamome 7200 type vehicle. This paper describes dynamic characteristics of AGT vehicle with single-axle bogies. Introducing a nonlinear, 15 degree-of-freedom dynamic model, a computer simulation study on the lateral motion of the AGT vehicle with single-axle bogies are carried out. In order to show the dynamic characteristics of the single-axle bogie clearly, it is compared to that of the AGT vehicle with conventional steering system. The simulation study with actual vehicle parameters shows that single-axle bogie has suitable characteristics for AGT system. The multi-body dynamics modeler, DADS, is used to build the dynamic model of AGT vehicle with single-axle bogies and this is used to demonstrate the vehicle motion in actual guideway. Obtained results are compared to that of the field test. It is shown that the vehicle dynamic response can be obtained in realistic situation by using multibody dynamics code, that is useful for designing both vehicle and guideway. 相似文献
16.
Hitoshi Tsunashima 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2003,39(5):365-397
Summary The steering type of a mechanical guidance system has been used for Automated Guideway Transit (AGT) system in Japan. Recently, the single-axle bogie system has developed for AGT vehicle and applied to Yurikamome 7200 type vehicle. This paper describes dynamic characteristics of AGT vehicle with single-axle bogies. Introducing a nonlinear, 15 degree-of-freedom dynamic model, a computer simulation study on the lateral motion of the AGT vehicle with single-axle bogies are carried out. In order to show the dynamic characteristics of the single-axle bogie clearly, it is compared to that of the AGT vehicle with conventional steering system. The simulation study with actual vehicle parameters shows that single-axle bogie has suitable characteristics for AGT system. The multi-body dynamics modeler, DADS, is used to build the dynamic model of AGT vehicle with single-axle bogies and this is used to demonstrate the vehicle motion in actual guideway. Obtained results are compared to that of the field test. It is shown that the vehicle dynamic response can be obtained in realistic situation by using multibody dynamics code, that is useful for designing both vehicle and guideway. 相似文献
17.
Jianlin SUN 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》1987,16(4):227-239
The paper presents a new method to study the dynamic properties of the bridge-vehicle system. The transfer function of the system is obtained by iteration in the frequency domain instead of the time domain. The relationship between vehicle speed and the lowest natural frequency of the system is investigated and a parametric study of the system stability is made. The varying parameters concerned are the vehicle speed, the ratio of vehicle mass to bridge mass, the ratio of vehicle eigenfrequency to bridge eigenfrequence, and the relative damping of the vehicle and bridge. 相似文献
18.
19.
本文主要针对某纯电动乘用车进行关键系统选型及匹配分析,首先基于整车性能目标及整车性能参数,确定其动力驱动方式及制动能量回收策略和方案。其次为了更好提升整车能量管理水平,改善能耗,提升续航里程,本文研究的纯电动汽车制动系统采用电液助力系统(IBS)。IBS系统能够有效进行能量计算,确定液压系统是否介入工作,在满足制动需求的同时,改善整车能耗,提升续航里程。最后,在关键系统选型及设计分析上,利用MATLAB仿真软件进行性能初选及设计,结合AMEsim分析软件对选型结果进行加速性能及中国工况续驶里程数据校核,通过仿真与整车试验验证整车性能满足设计指标。 相似文献
20.
在车辆的生产过程中,除了需要确保车辆装配正常,还需要确保各个零件功能正常才能确保车辆正常下线。传统的车辆下线检测系统,需要人为的对车辆的识别码、车载终端的各路参数进行人工记录和比对,再将参数录入后台系统,耗费人力较多,检测耗时也较长,车辆下线检测的效率也较低。同时,通常的下线检测过程中,未对车载设备的正常运行进行判断,如果将问题车载终端装车下发,会导致监控平台无法对该车辆进行正常监控,存在安全隐患,也不满足相关要求,同时增加售后维护成本。基于此,本文设计开发了一种新能源汽车车载终端下线检测系统,实现了新能源车辆在出厂时,通过检测时,由检测人员操作该系统来查看终端工作状态,系统自动根据终端返回平台信息判断该终端工作是否正常,然后把结果反馈至生产系统。 相似文献