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工程车辆车架的减重设计研究 被引量:1
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作者 胥清静 《黑龙江科学》 2013年第7期78-78,共1页
随着经济的发展和节约型社会建设步伐的加快,车辆的燃油价不断上涨,车辆的相关环保标准也越来越严格,而车辆车架的重量与此密切相关。车辆车架的减重目标就是求得更好的燃油经济性,并且减少废气的排放。工程车辆车架的减重设计主要从两... 随着经济的发展和节约型社会建设步伐的加快,车辆的燃油价不断上涨,车辆的相关环保标准也越来越严格,而车辆车架的重量与此密切相关。车辆车架的减重目标就是求得更好的燃油经济性,并且减少废气的排放。工程车辆车架的减重设计主要从两方面进行,一方面是引入先进的设计理念,找到更有效率的结构设计,另一方面是找到更轻的替代材料。研究在阐述工程车辆车架减重的必要性的基础上,分别从这两个角度进行了详细的论述,希望对工程车辆的改进有一定的借鉴意义。 展开更多
关键词 工程车辆车架 减重设计 节约型社会
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试析工程车辆车架损伤原因及维修措施
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作者 骆之岩 《设备管理与维修》 2022年第8期73-75,共3页
工程车辆和其他的车辆不同,经常会承担一些比较特殊的任务。车架是工程车辆承载、并且保证车体正常运动的核心零部件,其强度直接决定工程车辆的行车安全。为了不断提升工程车辆车架维修的应用水平,重点分析工程车辆车架损伤的原因,通过... 工程车辆和其他的车辆不同,经常会承担一些比较特殊的任务。车架是工程车辆承载、并且保证车体正常运动的核心零部件,其强度直接决定工程车辆的行车安全。为了不断提升工程车辆车架维修的应用水平,重点分析工程车辆车架损伤的原因,通过对问题进行分析,提高工程车辆车架维修的能力,延长工程车辆车架的使用寿命。并对维修措施进行了简单的分析。 展开更多
关键词 工程 车辆车架 损伤原因 维修措施 分析
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痕迹与文件检验综合在车架号鉴定中的运用
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作者 杨昊钧 《时代汽车》 2023年第19期187-189,共3页
车辆识别代号即通俗称的车架号是为了识别某一辆车,由车辆制造厂为该车辆指定的一组字码。每辆车辆都应具有唯一的车辆识别代号,并永久的保持地标示在车辆上。该号码用以区别其他车辆,也被称为车辆的“身份证号码”。随着公路运输中挂... 车辆识别代号即通俗称的车架号是为了识别某一辆车,由车辆制造厂为该车辆指定的一组字码。每辆车辆都应具有唯一的车辆识别代号,并永久的保持地标示在车辆上。该号码用以区别其他车辆,也被称为车辆的“身份证号码”。随着公路运输中挂车的大量运用,挂车车辆识别代号(车架号)改动的违法行为也随之增多。为了对嫌疑车辆进行认定,本文提出将痕迹检验与文件检验理论、方法结合,对车辆、拓印材料及文件材料同时进行比对分析,进而对车辆识别代号(车架号)进行综合研判。 展开更多
关键词 车辆识别代号(车架号) 痕迹与文件检验 拓印材料 载体面
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Reliability-based robust multi-obj ective optimization of a 5-DOF vehicle vibration model subjected to random road profiles 被引量:2
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作者 Abolfazl Khalkhali Morteza Sarmadi Sina Yousefi 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第1期104-113,共10页
Ride and handling are two paramount factors in design and development of vehicle suspension systems. Conflicting trends in ride and handling characteristics propel engineers toward employing multi-objective optimizati... Ride and handling are two paramount factors in design and development of vehicle suspension systems. Conflicting trends in ride and handling characteristics propel engineers toward employing multi-objective optimization methods capable of providing the best trade-off designs compromising both criteria simultaneously. Although many studies have been performed on multi-objective optimization of vehicle suspension system, only a few of them have used probabilistic approaches considering effects of uncertainties in the design. However, it has been proved that optimum point obtained from deterministic optimization without taking into account the effects of uncertainties may lead to high-risk points instead of optimum ones. In this work, reliability-based robust multi-objective optimization of a 5 degree of freedom (5-DOF) vehicle suspension system is performed using method of non-dominated sorting genetic algorithm-II (NSGA-II) in conjunction with Monte Carlo simulation (MCS) to obtain best designs considering both comfort and handling. Road profile is modeled as a random function using power spectral density (PSD) which is in better accordance with reality. To accommodate the robust approach, the variance of all objective functions is also considered to be minimized. Also, to take into account the reliability criterion, a reliability-based constraint is considered in the optimization. A deterministic optimization has also been performed to compare the results with probabilistic study and some other deterministic studies in the literature. In addition, sensitivity analysis has been performed to reveal the effects of different design variables on objective functions. To introduce the best trade-off points from the obtained Pareto fronts, TOPSIS method has been employed. Results show that optimum design point obtained from probabilistic optimization in this work provides better performance while demonstrating very good reliability and robustness. However, other optimum points from deterministic optimizations violate the regarded constraints in the presence of uncertainties. 展开更多
关键词 probabilistic optimization vehicle suspension deterministic optimization RIDE handling genetic algorithm
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