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Study on the Alternating Flow Hydraulics and Its New Potential Application in the Geotechnical Testing Field

机译:交流液压技术的研究及其在岩土试验领域的新应用。

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The alternating flow hydraulics (AFH) had demonstrated the unique features in the past. One of the most well-known inventions was the hydraulic machine-gun synchronizer, which had become the standard equipment of airplane during World War I. The studies on the AFH between 1960 and 1980 had trigged many researchers' interests and reached the summit. The disadvantages of the AFH like low efficiency and cooling difficulty had prevented the further development. Few people are engaged in studying the AFH at present. However, the unique characteristics of the AFH inspire the researchers to continuously explore the new special suitable applications. The overviews of the AFH and the new potential application in the geotechnical testing field have been discussed in this paper. First, the research results of the AFH in the past have been summarized. Then, the classifications of the AFH have been introduced in detail according to the working principle, the number of hydraulic transmission pipelines and the mode of input energy. The advantages and the disadvantages of the AFH have been discussed. A novel potential suitable application in the soil test field has been presented at last. The detailed designing ideas of a new dynamic trixial instrument have been given, which will be a more innovational and energy-saving plan according to the current studies. A series of simulation experiments have been done. The simulation results show that the proposed scheme for the new dynamic trixial instrument is feasible. The paper work will also give some inspirations in the reciprocating motion control system.
机译:交流液压系统(AFH)在过去已展示出独特的功能。液压机枪同步器是最著名的发明之一,它在第一次世界大战期间已成为飞机的标准设备。1960年至1980年之间对AFH的研究引起了许多研究人员的兴趣,并达到了顶峰。 AFH的低效率和冷却困难等缺点阻碍了其进一步发展。目前很少有人从事AFH的研究。但是,AFH的独特特性激发了研究人员不断探索新的特殊应用的可能性。本文讨论了AFH的概述以及在岩土测试领域中的新潜在应用。首先,总结了过去AFH的研究成果。然后,根据工作原理,液压传输管道的数量和输入能量的方式,详细介绍了AFH的分类。讨论了AFH的优缺点。最后提出了一种在土壤测试领域中潜在的新应用。给出了一种新型动态三轴仪的详细设计思路,根据目前的研究,这将是一个更具创新性和节能性的方案。已经进行了一系列的仿真实验。仿真结果表明,提出的新的动态三轴仪方案是可行的。本文工作还将为往复运动控制系统提供一些启发。

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