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Dynamics of an Earthmoving Machine through Outright Articulation

机译:通过直接关节的地球机械动态

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Earth moving machines are steered using various steering methodology. Articulated steering mechanism is the most popular type of steering methods. It is actuated by hydraulic cylinders connected to the steering linkages. While the machine is deployed with articulated type steering, vehicle stability is proportionate to the steering velocity. Articulated steering provides two important features, shorter turning radius, allows front and back axle to be solid. Directional stability refers to a vehicle’s ability to stabilize its direction of motion against disturbances. Majority of earth moving equipment operates on basic cycle of Load-Haul-Dump. During each cycle, vehicle needs to be steered at least once. To optimize the machine performance for improved productivity it is essential to study the correlation between articulation speed and operational weight of the vehicle.This paper intends to explore the relationship between articulation speed, Steering Mechanism, vehicle trajectory and behavior of articulated steering for an earthmoving machine. A good correlation between turning radius, steering efforts and operational weight of the vehicle can guide the operator to achieve the safe turning as well as better productivity for the machine. In this work, effort has been made to explore the machine behavior during articulation. This work also focuses on evaluating the steering forces experienced by hydraulics. The overall efforts are certain to correlate the articulation efforts with vehicle operational weight and understand the vehicle dynamics while outright articulation.
机译:使用各种转向方法转向地球移动机器。铰接式转向机构是最受欢迎的转向方法。它由连接到转向连杆的液压缸致动。当机器用铰接式转向部署时,车辆稳定性与转向速度成比例。铰接式转向提供两个重要的功能,较短的转向半径,允许前后轴固定。方向稳定性是指车辆稳定其动作方向抗扰动的能力。大多数地球移动设备在负载卸载的基本循环上运行。在每个循环期间,车辆需要至少引导一次。为了优化提高生产率的机器性能,必须研究车辆的铰接速度和操作重量之间的相关性。本文旨在探讨铰接速度,转向机构,车辆轨迹与铰接式机械铰接转向的关系之间的关系。车辆转向的转向和操作重量之间的良好相关性可以引导操作员实现安全转弯以及机器的更好的生产率。在这项工作中,已经努力探讨了铰接过程中的机器行为。这项工作还侧重于评估液压系统经历的转向力。整体努力肯定会与车辆运营权重的关节努力相关联,并在彻头彻尾的关节时理解车辆动态。

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