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Simulation of the dynamic behaviour of a tractor-oscillating subsoiler system

机译:拖拉机摆动式深耕机系统动力学行为的仿真

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摘要

A two-tine oscillatory subsoiler was developed at the University of South Australia for fracturing the compacted soil layers between grapevines using small tractors. As the soil forces exerted on the tines were unbalanced, the tillage forces, torque peaks through the power-take-off and the inertia of the tines transferred vibrations to the tractor and its driver. These vibrations currently prevent the commercial use of soil loosening settings that require the lowest engine power to be used.A simulation model is presented that calculates the dynamic behaviour of the tractor-oscillating subsoiler system with the focus being on the vibrations at the tractor driver's seat. The model considers the three oscillatory tillage phases of soil cutting, backing-off and catching-up, with positive and negative oscillation angles; tine inertia and the various tyre stiffness and damping parameters.The results of the simulation were compared to field measurements and a good correlation of both the magnitude of root mean square (RMS) acceleration and the response to change in the oscillatory tillage parameters of amplitude, frequency and oscillation angle were obtained. (C) 2010 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:南澳大利亚大学开发了一种两段式振荡式深耕机,用于使用小型拖拉机将葡萄树之间的压实土壤层压裂。由于施加在叉齿上的土壤力不平衡,耕作力,扭矩通过取力器达到峰值,并且叉齿的惯性将振动传递给拖拉机及其驱动器。这些振动当前阻止了需要使用最低发动机功率的松土设置的商业应用。提出了一个仿真模型,该模型可以计算拖拉机振动式次土壤系统的动态行为,重点是拖拉机驾驶员座椅上的振动。该模型考虑了土壤切割,退耕和追赶的三个振荡耕作阶段,其振荡角为正和负。惯性以及各种轮胎刚度和阻尼参数。将模拟结果与现场测量结果进行了比较,并且均方根(RMS)加速度的大小与振动耕作参数振幅的响应之间具有良好的相关性,获得了频率和振荡角。 (C)2010年。由Elsevier Ltd.出版。保留所有权利。

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