驱动轮

qū dòng lún
  • driving wheel
驱动轮驱动轮
驱动轮[qū dòng lún]
  1. 半轴是用于将由差速器半轴齿轮传递过来的转矩直接传递给驱动轮的部件,是汽车传动系的重要部件之一,其总成的装配精度直接影响和决定汽车驱动桥的精度。

    Axle shaft is one of important parts in auto drive system , which directly transfers the torque from axle shaft gear to driving wheel , and its assembly precision will directly influence or decide the precision of drive axle .

  2. 基于SolidWorks的矿井架空人车驱动轮支架设计改进

    Improvment in Design of Driving Wheel Bracket for Coal-mining Manned-ropeway Based on SolidWorks

  3. 水田拖拉机驱动轮CAD浅析

    A Preliminary Discussion to the Drive Wheel CAD of Paddy Tractor

  4. 基于UG的驱动轮有限元分析

    FEA of Drive - wheel Based on UG

  5. 提出牵引力控制系统的油门模糊增量PI控制算法和驱动轮制动模糊PI控制算法。

    The Fuzzy PI control algorithms for both engine throttle and driving wheel brake controls are proposed for vehicle traction control system .

  6. 基于NXMasterFEM/NXNastran的驱动轮工作强度的有限元分析

    Finite Element Analysis of Drive Wheel Based on NX MasterFEM / NX Nastran

  7. 刚性驱动轮在松散沙土上重复通过时的性能预测利用PAM防治松散扰动沙土风蚀效果的风洞试验研究

    Prediction of the Multi-Performance of a Rigid Driven Wheel in Sand Wind tunnel experiment on the impacts of polyacrylamide on wind erosion of loosen soil materials

  8. 将逻辑门限、PID、模糊以及神经网络等控制方法应用于牵引力控制系统,建立了油门位置控制器和驱动轮制动控制器。

    The logic threshold , PID , fuzzy and neural network control methods were applied to the automobile traction control system , and the controllers for the engine throttle position and driving wheel brake were built .

  9. 为获得汽车TCS自适应控制算法,应用神经网络算法设计了发动机油门位置和驱动轮制动压力控制器。

    To obtain adaptive control algorithm of traction control system for automobile , neural network was used to devise engine throttle position controller and brake pressure controller of driving wheels .

  10. 文中叙述两件获奖ADI铸件:建筑和园林用的装载机ADI驱动轮铸件和福特野马眼睛蛇(FordMustangCobra)跑车底盘悬架控制臂。

    One of five ADI castings is ADI drive wheel of loading machine used for architecture and park . The other is Ford Mustang Cobra 's chassis IRS control arm .

  11. 结果表明,汽车TCS神经网络控制算法能根据环境条件自适应地调整控制量,有效消除驱动轮过度滑转,使汽车具有良好的加速性和适应性。

    The results showed that the algorithms could adjust control quantity adaptively according to the circumstance , eliminate excessive slip of driving wheel and make automobile acquire better accelerating performance and adaptability .

  12. 以驱动轮力矩作为控制参数研究了该种机器人的轨迹控制方法,提出基于PD反馈控制模型的轨迹控制,并分析了基于PD反馈控制的系统特性。

    The tracking control approach is studied when driving torque is used as control parameters and the characters of the open-loop control are analyzed . Based on the PD feedback control , the tracking control approach is used to actualize the robot tracking control .

  13. WK-8电动挖掘机驱动轮修复工艺探讨

    Discussion to the Technique for Repairing the Driving Wheel of WK-8 Electric Excavator

  14. 基于MSP430平台采用PWM来控制左右驱动轮的转速以产生转速差,来调整机器人与引导线的相对位置,实现了快速、稳定、准确的巡线。

    Based on MSP430 , the speed difference between the left and right wheels is produced by the Pulse-Width Modulation to adjust the relative position of the robot and the leading line , and quick , stable and accurate line-tracking is realized .

  15. 为提高汽车高速行驶的交通安全,提出一种新的基于目标安全车距的自适应巡航控制(ACC)方法.它仅通过调节辅助节气门开度和驱动轮制动力矩即可实现。

    A new adaptive cruise control ( ACC ) method based on the desired safety headway distance is investigated for improving the vehicle traffic safety at high speed by regulating the additional throttle opening and braking torque of driving wheels only .

  16. 运用逆向运动学模型,根据PWLER期望的前进速度和转弯半径可确定出各驱动轮的速度。

    The robotic inverse kinematics model uses desired robotic linear velocity and turning radius as input and produces each driving wheel 's rotational velocity .

  17. 建立了汽车加速过程的数学模型,分别采用PI控制方法和逻辑门限控制方法设计了油门控制系统和驱动轮制动控制系统,并设计了路面自动识别系统,采用计算机仿真方法进行了模拟研究。

    Mathematical models of acceleration were established , PI control was applied to design engine throttle controller , and the logic threshold control was used to design brake controller of driven wheel . At the same time , a road identification system was designed to identify the changes of roads .

  18. 耕整机驱动轮几何参数的研究

    A Study on Geometrical Parameters of Drive Wheel for power Tiller

  19. 浆液搅拌车驱动轮轮缘的结构应力分析

    Structural stress analysis of driving wheel rim of slurry agitation vehicle

  20. 刚性驱动轮在沙土上滑转下陷量的计算方法

    Calculation of Slip Sinkage of a Rigid Driven Wheel on Sand

  21. 驱动轮下有效软路面谱的预测

    Prediction of the Effective Spectrum of Soft Terrain Under Driving Wheel

  22. 驱动轮下不平软路面的激励

    A study on an excited driving wheel on rough soft terrain

  23. 双横臂独立悬架汽车驱动轮动力学特性研究

    The Dynamics Study of Driving Wheel of Double-wishbone Independent Suspension Vehicle

  24. 汽车的传动系位于发动机和驱动轮之间。

    The transmission system is installed between the engine and driving wheels .

  25. 小四轮拖拉机驱动轮附加配重研究

    Study on the Attached Drive Impeller in Small Four - Wheel Tractor

  26. 汽车驱动轮的防滑转控制

    The Anti - slip Regulation System ( ASR ) of Driving Wheel

  27. 履带拖拉机驱动轮专用淬火机床的研制

    A Special Purpose Hardening Machine for Crawler Tractor Driving Wheels

  28. 打捆机驱动轮系统接触三维有限元分析

    3D contact FEM Analysis on the driving wheel system of bundling machine

  29. 鼓形驱动轮与松散沙土相互作用力学分析

    Mechanical analysis of a drum type wheel rolling on loose sandy soil

  30. 打捆机驱动轮系统接触应力计算

    Contact stress calculation of driving wheel system for bundling machine