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Motion stability estimation for modular traction vehicle-based combined unit

机译:基于模块化牵引车的组合单元的运动稳定性估计

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One of the promising ways of efficiently applying high power intensity tractors is their design and utilisation in the form of modular traction vehicles comprising two modules: the power module and the process module. In order to provide for the sufficient manoeuvrability of the modular traction vehicle, when its process module passes a turn, the latter is equipped with vertical and horizontal hinge joints. The freedom of the process module’s rotation with respect to the power module in the horizontal plane through the agency of the above-mentioned vertical hinge joint is restrained by a hydraulic cylinder, in which the chambers above and below the piston are connected via a throttle valve with a hydraulic resistance coefficient of about 1.03×106 N m s rad-1. This paper is concerned with the theoretical and experimental research into the stability of motion (on turn spaces as well as in the transport mode) of a modular combined unit, when its velocity changes and/or the slip resistance coefficient of the tyres on the wheels of the process module, in which the hydraulic cylinder is equipped with a throttle valve with the above-mentioned hydraulic resistance coefficient, changes.
机译:有希望的高功率强度拖拉机的有希望的方法之一是它们的设计和利用,其模块化牵引车的形式包括两个模块:电源模块和过程模块。为了提供模块化牵引车的充分可操作性,当其过程模块转弯时,后者配有垂直和水平铰链接头。通过上述垂直铰链接头的机构通过液压缸抑制了过程模块相对于水平平面中的电力模块的旋转的自由度,其中活塞上方和下方的腔室通过节流阀连接液压阻力系数约为1.03×106nm ms rad-1。本文涉及模块化组合单元的运动稳定性的理论和实验研究,当其速度变化和轮胎轮胎的速度变化和/或轮胎的滑动电阻系数时,它们的运动稳定性(在运输方式以及运输方式中)在处理模块的内容中,其中液压缸配有具有上述液压阻力系数的节流阀,改变。

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