共查询到19条相似文献,搜索用时 250 毫秒
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SX6122BL车架模态试验分析 总被引:8,自引:0,他引:8
模态分析作为一种系统分析技术,向设计人员提供了复杂交型形状与结构响应的明确描述,可用对设计规范作同评价,通过模态模型可以研究结构修改的效果或预测结构在改变工况的情况下将具有的运动特性,文章通过对SX6122BL车架进行模态试验分析,对所进行的汽车设计给予检证,找出了车架设计的缺陷,提出了改进措施。 相似文献
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应用振动ODS方法分析汽车动力总成振动 总被引:1,自引:1,他引:0
介绍了振动ODS分析方法的基本原理,该方法可用于识别结构动态工况下的振动特性。针对某六缸发动机半挂牵引车,应用振动ODS方法分析了该动力总成的振动特性,并通过模态试验验证了振动ODS分析结果的正确性。同时分析了该车动力总成振动大的原因,并提出了改进措施。 相似文献
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为验证某款发动机罩板的结构强度和固有特性是否满足设计要求,文章利用HyperWorks软件对该发动机罩板进行了有限元建模、静力学分析和约束模态分析。通过分析发现它的刚度满足设计要求,但是由于它的低阶固有频率偏低,与发动机激励频率接近,因此发动机罩板会产生较大的振动。在后续改进设计中应采取减振措施,尽量减小发动机罩板的振动。 相似文献
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为保证发动机前安装支架的结构强度,对前支架进行了强度仿真分析。使用有限元方法计算前支架的应力及能承受的极限载荷,基于动力总成—悬置系统多体动力学仿真模型计算得到前支架的使用载荷。仿真结果表明,前支架的初始结构存在强度问题,基于仿真分析结果,对前支架初始结构进行了改进设计,道路试验结果表明,前支架的结构改进有效。 相似文献
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Yonggang Liu Daqi Chen Zhenzhen Lei Datong Qin Yi Zhang Rui Wu Yong Luo 《International Journal of Automotive Technology》2017,18(5):911-922
This paper focuses on the dynamic modeling and control of engine starting for a Full Hybrid Electric Vehicle (FHEV) consisting of an Integrated Starter Generator (ISG) and Dual Clutch Transmissions (DCTs). The dynamic characteristics of the engine, the ISG motor and the main clutch are analyzed respectively. The dynamic models of the main components of the powertrain system are also established taking the system dynamic characteristics into consideration. The FHEV dynamic model of engine starting during electric driving mode has been investigated in detail. The coordinated control strategy of engine starting has been proposed based on the powertrain system dynamic characteristics. The simulation for the engine starting control during electric driving mode has been performed based on the Matlab/Simulink platform. The simulation results show that the proposed control strategy satisfies the requirements of response and smoothness during engine starting process. Furthermore, a bench test has been carried out to analyze the system characteristics during engine starting process. The test data is highly agreeable to the simulation data and the effectiveness of engine starting control strategy is validated by the comparison between simulation results and the test data. 相似文献
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Variable valve timing (VVT) and cylinder deactivation (CDA) are promising methods in reducing fuel consumption and emission at part load in SI engines. An SI engine which uses electromagnetic valvetrain (EMV) will eliminate flow restriction from the throttle valve and produce higher indicated mean efficiency pressure (IMEP) due to the disabling of some of the working cylinders at part load. Therefore, pumping loss can be significantly reduced at part-load conditions. In addition, duration and timing of valve events are variably controlled at different operating conditions. This contributes to the improvement of engine efficiency. In this study, a dynamic model of an unthrottled SI engine has been developed to simulate the engine cycle. The model uses an EMV system that allows valvetrain control and cylinder deactivation techniques to be carried out in simulation flexibly. The simulated results find the optimal valve timing for different engine speeds. The optimal timing of intake valve closing depends on engine speed linearly, while the intake valve opening insignificantly influences engine performance. Additionally, this study also shows that cylinder deactivation modes can be successfully applied in improving engine efficiency at different engine loads. Different cylinder deactivation strategies have been applied for the full range of engine loads. It is concluded that the two-cylinder deactivation mode (50% CDA) considerably improves fuel consumption at low engine load. Meanwhile, one-cylinder deactivation (25% CDA) is an optimal fuel economy mode at medium engine load. With proper uses of VVT and CDA strategies, the efficiency of an SI engine can be increased more than 30% at low engine load and 11.7 % at medium engine load. 相似文献
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介绍了ODS方法的基本原理,该方法可用来识别结构运行状态下的动态特性。应用该方法对一辆发动机怠速运转状态下的微型车车身动态特性进行分析,识别出车身在发动机怠速动转状态下的振动型态,判明车内噪声产生的原因,为结构的改进提供了可靠的依据。 相似文献
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