首页> 外文期刊>International Journal of Engineering Research and Applications >Design, Synthesis And Simulation Of Four Bar Mechanism For Eliminate The Plowing Depth Fluctuations In Tractors
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Design, Synthesis And Simulation Of Four Bar Mechanism For Eliminate The Plowing Depth Fluctuations In Tractors

机译:消除拖拉机犁深波动的四杆机构设计,综合与仿真

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In this paper, a four bar mechanism was designed for the specified performance output for a tractor. In tractor's plowing is engaged with the assistance of a hydraulic cylinder. Looking on the soil hardness the plowing depth fluctuates that isn't fascinating. To induce the correct plowing depth an Electrical control system is introduced. It consists of hydraulic valve, control unit and also the angular sensor. The control system helps to regulate the plowing depth accurately. The device measures the position of pivot and offers feed back to the system. Thus a sturdy, reliable and safe link mechanism is developed to measure the angular motion of the pivot. The main focus of this paper is to analyze Dimensional synthesis is performed supported Freudenstein's Equation and Chebechev's formula in Matlab and calculate the structural error of linkage mechanism by using Adams. Dimensional synthesis of 4 bar link mechanisms helps the designer to design link mechanisms with correct dimensions and simulation in Adams helps to optimize the link mechanism
机译:在本文中,四杆机构是为拖拉机的指定性能输出而设计的。在拖拉机的耕作中,借助液压缸进行耕作。从土壤硬度上看,耕作深度波动并不令人着迷。为了产生正确的耕作深度,引入了电气控制系统。它由液压阀,控制单元和角度传感器组成。控制系统有助于精确调节耕深。该设备测量枢轴的位置,并将反馈提供给系统。因此,开发了一种坚固,可靠和安全的连杆机构来测量枢轴的角运动。本文的主要重点是分析在Matlab中支持Freudenstein方程和Chebechev公式进行的尺寸合成,并使用Adams计算连杆机构的结构误差。 4条连杆机构的尺寸综合可帮助设计人员设计尺寸正确的连杆机构,Adams中的仿真有助于优化连杆机构

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