首页> 外文期刊>Mapan: Journal of Metrology Society of India >Design, Construction and Calibration of a Triaxial Dynamometer for Measuring Forces and Moments Applied on Tillage Implements in Field Conditions
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Design, Construction and Calibration of a Triaxial Dynamometer for Measuring Forces and Moments Applied on Tillage Implements in Field Conditions

机译:三轴测力计的设计,构造和校准,用于测量田间条件下耕作机具的力和力矩

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In this research, a dynamometer was designed, constructed and calibrated to measure the forces and moments applied on tillage implements. This dynamometer is able to measure the three orthogonal forces acting on the implement and the three moments acting around the orthogonal axes, up to a maximum force of 20 kN and a maximum moment of 20 kN m. The dynamometer uses two extended octagonal ring transducers mounted in a back-to-back arrangement with their axes at right angles and has a tubular torque meter for torque measurement. For mechanical design of the dynamometer frame and its units, the finite element method and CATIA software were used. The device was machined from the solid part and high tensile steel. The forces and moments acting on the dynamometer were measured by using the strain gauge bridges on two extended octagonal ring transducers and on the torque meter tube. The results of data analysis, including forces applied on the dynamometer, the designing method of rings and torque meter tubes, the mounting arrangement of load cell parts on each other, the mounting method of load cell on frame and the position of strain gauge on load cell, in other words, the position of different parts of the dynamometer relative to each other has been explained in this paper. Calibration of the measurement unit was done by a calibration system which was designed for static calibration of the triaxial dynamometer. The results of calibration of the measurement unit showed that the designed and constructed dynamometer has appropriate precision, sensitivity and good repeatability for measuring the desired forces and moments. The results showed a high degree of linearity between output voltage of bridges and applied forces and moments. The interaction effects of the applied forces and moments were very negligible.
机译:在这项研究中,设计,构造并校准了测力计,以测量施加在耕作机具上的力和力矩。该测力计能够测量作用在机具上的三个正交力和作用在正交轴上的三个力矩,最大测量力为20 kN,最大力矩为20 kN m。测力计使用两个背对背排列的扩展八角形环传感器,其轴成直角,并具有用于测量扭矩的管状扭矩计。对于测力计框架及其单元的机械设计,使用了有限元方法和CATIA软件。该设备由实心零件和高强度钢加工而成。通过使用在两个扩展的八角形环传感器和扭矩计管上的应变仪电桥来测量作用在测力计上的力和力矩。数据分析的结果,包括施加在测力计上的力,环和扭矩计管的设计方法,称重传感器部件彼此之间的安装布置,称重传感器在框架上的安装方法以及应变仪在负载上的位置单元,换句话说,测力计的不同部分相对于彼此的位置已在本文中进行了解释。测量单元的校准是通过校准系统完成的,该系统设计用于三轴测功机的静态校准。测量单元的校准结果表明,所设计和制造的测功机具有适当的精度,灵敏度和良好的可重复性,可用于测量所需的力和力矩。结果表明,电桥的输出电压与作用力和力矩之间具有高度的线性关系。施加力和力矩的相互作用影响可以忽略不计。

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