排序方式: 共有173条查询结果,搜索用时 15 毫秒
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CW-200K型转向架制动吊座根部裂纹问题的探讨 总被引:1,自引:0,他引:1
对CW-200K型转向架运用过程中出现的制动吊座根部裂纹问题进行了分析,并提出了改进措施。 相似文献
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CRH_2型动车组轴箱轴承常见表面损伤原因分析 总被引:1,自引:0,他引:1
介绍了200 km级CRH_2型动车组在进行首轮四级检修时发现的轴承表面损伤的种类,对其产生的原因进行了分析,提出了处理方式。 相似文献
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介绍了200 km/h六轴大功率客运交流传动电力机车的主要技术特点、性能参数、总体结构,以及通风系统、电气系统、机械系统、制动系统等子系统的技术方案。 相似文献
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Lithium traction batteries are a key enabling technology for plug-in electric vehicles (PEVs). Traction battery manufacture contributes to vehicle production emissions, and battery performance can have significant effects on life cycle greenhouse gas (GHG) emissions for PEVs. To assess emissions from PEVs, a life cycle perspective that accounts for vehicle production and operation is needed. However, the contribution of batteries to life cycle emissions hinge on a number of factors that are largely absent from previous analyses, notably the interaction of battery chemistry alternatives and the number of electric vehicle kilometers of travel (e-VKT) delivered by a battery. We compare life cycle GHG emissions from lithium-based traction batteries for vehicles using a probabilistic approach based on 24 hypothetical vehicles modeled on the current US market. We simulate life-cycle emissions for five commercial lithium chemistries. Examining these chemistries leads to estimates of emissions from battery production of 194–494 kg CO2 equivalent (CO2e) per kWh of battery capacity. Combined battery production and fuel cycle emissions intensity for plug-in hybrid electric vehicles is 226–386 g CO2e/e-VKT, and for all-electric vehicles 148–254 g CO2e/e-VKT. This compares to emissions for vehicle operation alone of 140–244 g CO2e/e-VKT for grid-charged electric vehicles. Emissions estimates are highly dependent on the emissions intensity of the operating grid, but other upstream factors including material production emissions, and operating conditions including battery cycle life and climate, also affect life cycle GHG performance. Overall, we find battery production is 5–15% of vehicle operation GHG emissions on an e-VKT basis. 相似文献
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为了提高滑行能量回收经济性和踏板制动安全性、舒适性,基于交通信息,提出了电动汽车(EV)制动协调策略。分析了滑行制动的经济性,由交通信息和汽车行驶状态确定滑行制动强度;由道路信息和前方车辆信息建立汽车安全距离模型和碰撞预警策略,利用预警信息对滑行制动和踏板制动强度进行协调。对本策略进行仿真验证。结果表明:利用交通信息的滑行策略,在通行良好工况下综合能耗减少1.1%,拥堵工况下减轻驾驶员的制动疲劳;预警和协调策略避免了频繁预警,减小了紧急避撞触发几率。因此,利用交通信息能够辅助驾驶员进行更加合理的制动。 相似文献
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介绍了双动薄板冲压机控制系统的改造方案,可编程控制器的硬、软件系统的组成,软件的设计思想.以及系统中压力信号的检测和处理方法。 相似文献
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