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- 前桥楼
- 更多网络例句与前桥相关的网络例句 [注:此内容来源于网络,仅供参考]
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Automobile parts such as gearbox,front bridge, back bridge,transmission shaft and wiper,etc.can be produced.
可生产汽车变速箱、前桥、后桥、传动轴、刮水器等零部件和车身涂复5.8万辆的配套零部件。
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And then made the reliability analysis on the front axle by adopting the probability analytical software NESSUS of mechanical component parts and sy...
在计算过程中可靠度计算软件作为主程序,有限元软件作为子程序被调用。最后得出了前桥结构可靠指标值和各个参数的灵敏度和结构的设计验算点,为前桥的可靠性设计提供了依据。
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Aimed at the parametric randomicity of the front axle structure, the 3D precision model of front axle was established firstly in the Pro/E, and the finite element analysis was carried out on the leading-in model by the use of ANSYS. And then made the reliability analysis on the front axle by adopting the probability analytical software NESSUS of mechanical component parts and systems.
针对前桥结构参数的随机性,首先在Pro/E中建立了前桥的三维精确模型,利用ANSYS对导入模型进行有限元分析,然后采用了机械零部件和系统的概率分析软件NESSUS对前桥做可靠性分析。
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This kind of steering contains each steering trapezium and double-swing-arm which link the first front axle with another.
双前桥转向机构包含双前桥各自独立的转向梯形机构和双前桥间的转向联动机构—双摇臂系统。
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Attention, before stop, maintain the front axle drive and unlink the front axle only after release the sub-actuator resistance.
注意必须在停车时,接近前桥后才能挂分动器抵挡,在未推出抵挡时不得脱开前桥驱动。
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To eliminate abnormity wear of tires in double-front-axle system of heavy truck, the kinematics and dynamics analysis method is set forth. On the base of the results for heavy double-front-axle truck load distributing and manipulate stability, tire uniformity load condition and deficiency steering characteristic condition of heavy double-front-axle truck are put forward. Steering trapezia space movement formula, double-swing-arm space movement formula and double-swing-arm movement formula in actual status of heavy double-front-axle truck are fetched. Optimization models of steering trapezia and double-swing-arm are founded and optimization arithmetics of transmission system in double-front-axle steering are compiled.
本文以消除重型汽车双前桥转向系统轮胎异常磨损等为目的,阐述了双前桥转向系统的运动学、动力学分析方法;在分析了双前桥重型汽车载荷分布和操纵稳定性的基础上,提出了双前桥重型汽车轮胎均载应该满足的条件、双前桥重型汽车具备不足转向特性应该满足的条件;推导了双前桥转向梯形空间运动关系式、双摇臂机构空间运动关系式和双前桥汽车实际工况下的运动关系式,建立了转向梯形和双摇臂机构优化设计模型,编制了双前桥转向传动系统优化算法。
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From the analysis of automobile vibration sources and the human responses to vibration, a mechanic model of man-chair-vehicle system with 13 degrees of freedom is built by vibration pattern analyzing technology. Using the random vibration theory, the calculating methods are developed for parameters, including vibration pattern, transfer function, wheel transient load, and acceleration of seat, automobile ride quality simulation software is developed.
通过分析汽车振动源和人体对振动的反应,用模态综合技术,建立了十三自由度人-椅-车系统的动力学模型,运用随机振动理论,给出了振动形态、传递函数、悬架动挠度、车轮动载荷、座椅加速度等参量的计算方法,开发了一套&汽车平顺性仿真软件&并利用已有的汽车数据,对汽车行驶时的振动特性进行了仿真,得到了重要结论:发动机与轮胎刚度、阻尼,后桥阻尼对驾驶员座椅处的振动影响不大;驾驶员座椅的垂直刚度增加很大时,对垂直方向振动响应比较大;前桥刚度、阻尼对驾驶员座椅处的振动影响较大;前轮胎刚度对前桥振动影响较大,前轮胎刚度增加,则振动加强;后桥刚度对汽车平顺性有一定影响,后桥刚度减小,则座椅处垂直加速度减小。
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Firstly, this paper discusses the development actuality of the research on double-front axle steering system and power-train of automobile. Based on the structure of the design experiences from others, the kinematics formula of double-front axle steering system is fetched, and the mathematical model of optimization design of double rocking arms mechanism and steering trapezium mechanism is established by space geometry method. Considering the difference between the real steering angle from wheels and the ideal steering angle from the ideal formula as the objective function, the optimization design method of double-front axle steering system is presented.
本文首先论述了国内外对汽车双前桥转向系统和动力传动系统研究的发展状况,在总结前人研究设计经验的基础上推导出汽车双前桥转向系统运动学关系,运用空间几何法建立了双前桥双摇臂机构及转向梯形机构优化的数学模型,以转向轮实际转角值与理想公式求出的理想转角值之间的误差达到最小为目标函数,提出了双前桥转向系统参数的优化设计方法。
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The multi-body steering system model of a dual-front-axle heavy trucks using ADAMS software was established, which contains body, steering wheel, recirculating ball steering gear, double-front axle, dual-rocking arms, suspension, king pin and the front wheels etc.
应用机械系统动力学自动分析软件ADAMS(Automatic Dynamic Analysis of Mechanical Systems),针对某型号重型汽车双前桥系统为研究对象,建立包括车身、转向盘、循环球式转向器、双前桥、双摇臂、悬架、主销、转向轮等在内的双前桥系统多体模型。
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Maebashi Institute of Technology,Maebashi,Japan
日本前桥工科大学,日本前桥;4。
- 更多网络解释与前桥相关的网络解释 [注:此内容来源于网络,仅供参考]
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front ale:前桥
ディファレンシャル 差速器 differential | フロントアクスル 前桥 front ale | フロントサスベンション 前悬挂 front suspension
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front GAW:前桥总重
front elevation 正面图 | front GAW 前桥总重 | front 焰烽
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forebridge:船首, 前桥楼
tretin M 视黄酸 | forebridge 船首, 前桥楼 | trial solution 尝试解(法), 误差解(法), 试探解(法)
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forebridge:前桥楼
forebreastline 前横缆 | forebridge 前桥楼 | forebridge 船首桥楼
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forebridge register:前桥楼指示器
forebody 前半部 | forebridge register 前桥楼指示器 | forebridge 船首桥楼
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forebridge register:前桥艛[计程仪]指示器
纵材 fore-and-aft runner | 前桥艛[计程仪]指示器 forebridge register | 艏艛 forecastle
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protocerebral:前桥
protocephalon 原头 | protocerebral 前桥 | protochlorophyll 原叶绿素
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front axle differential case with cap:前桥差速器壳及盖
front axle differential ==> 前桥差速器 | front axle differential case with cap ==> 前桥差速器壳及盖 | front axle drive ==> 前桥传动
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front axle pivot pin:前桥枢轴
front axle extension 前桥支架 | front axle pivot pin 前桥枢轴 | front axle trunnion 前桥枢轴
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Maebashi, Mayebashi:前桥
Madura 马都拉岛 | Maebashi, Mayebashi 前桥 | Mafeking 马弗京