果园运输机钢丝绳损伤试验平台设计与试验
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现代农业产业技术体系建设专项(CARS-27)、江西省重点研发计划项目(20171BBF60022)和江西省2011协同创新专项资金项目(赣财教指[2014]156号)


Design and Test of Wire Rope Damage Test Platform for Orchard Transporter
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    摘要:

    在阐述山地果园牵引式双轨运输机用钢丝绳动力学与接触力学模型的基础上,搭建了基于PLC模拟钢丝绳实际运行的绕卷试验平台,设计了试验平台的变频调速系统与控制系统,并安装和调试了张紧力自动调节装置;搭建了一套基于漏磁法的钢丝绳断丝与磨损检测平台,进行了钢丝绳探伤仪断丝与磨损可靠性试验。在拉力传感器标定与调节装置性能测试试验中,推拉力计的拉力输出值与注水质量呈线性关系,且试验张紧力偏差浮动范围为-130~85N,结果满足试验要求。钢丝绳断丝与磨损检测试验结果表明,在模拟断丝数依次为10、20、30根的情况下,试验绳10次重复试验检测的断丝数与实际值相同,说明检测平台可精确检测钢丝绳断丝数及断丝位置;但是,通过探伤仪检测的模拟磨损情况与实际值偏差较大,无法对钢丝绳磨损进行准确的检测。

    Abstract:

    The mountain orchard conveyor is a type of transport machinery. The regularity of wire rope breakage is not clear yet, also there is no corresponding research on this kind of wire rope. A PLC-based wire rope simulation running platform was built, and the reliability of the platform was verified, which included the tensile force sensor test, the wire breakage and wear reliability detection based on the magnetic flux leakage (MFL) method. It was found that the core component of the simulation platform: the floating deviation of the tensile force sensor and the adjustment device test met the test requirements. Then, the number of broken wires in the test seemed to be as the same as the actual one, but the simulated wear and the actual gap were large. The conclusion was drawn that the built test platform can accurately detect the position and quantity of wire rope’s broken wire, but the degree of wear can not be accurately detected. It can be considered by machine vision for further testing, which would be proved in subsequent research. The research result can provide a reference for optimizing the safety performance of conveyors in orchards, as well as for maintenance and care of wire ropes in other applications.

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欧阳玉平,孙晗,洪添胜,舒盛荣,陈洞滨,吴志强.果园运输机钢丝绳损伤试验平台设计与试验[J].农业机械学报,2020,51(7):118-128. OUYANG Yuping, SUN Han, HONG Tiansheng, SHU Shengrong, CHEN Dongbin, WU Zhiqiang. Design and Test of Wire Rope Damage Test Platform for Orchard Transporter[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(7):118-128.

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  • 收稿日期:2019-06-09
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  • 在线发布日期: 2020-07-10
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