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Research on the Capacity of Hydraulic Pile Driving under Adding Force

机译:加力作用下液压打桩能力的研究

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High power using ratio in the process of pile driving of hydraulic static pile divers with quasi-constant-power is acquired. For being convenient for improving on the machine and quickening the course of pile driving, studying on the impact of the piston diameter of pile driving cylinder, the initial displacement of piston and the piston diameter of lift cylinder on the pile driving depth and force in the process of pile driving under adding force is need. For lucubrating the impact, the process of pile driving under adding force of hydraulic static pile divers with quasi-constant-power were analysed. The hydraulic system of pile driving under adding force was modelled in AMESim. The main parameters of the model of the hydraulic system were set; and then the dynamics simulation of the hydraulic system was achieved. The simulation results were analysed. The simulation results show that the pile driving force under adding force increases by inches when augmenting the initial displacement of piston of lift cylinder, or falling the piston diameter of lift cylinder, or both. Furthermore the pile driving depth and force of pile driving under adding force increases rapidly and the capacity of pile driving tones up when augmenting piston diameter of pile driving cylinder.
机译:在具有准恒定功率的液压静力堆潜水员打桩过程中,获得了较高的功率使用率。为了方便机器的改进和加快打桩的过程,研究了打桩缸的活塞直径,活塞的初始位移和提升缸的活塞直径对打桩深度和桩内力的影响。需要在加力下打桩的过程。为了减轻这种影响,分析了准恒功率液压静力顶头在加力作用下打桩的过程。在AMESim中对施加加力的打桩液压系统进行了建模。设置了液压系统模型的主要参数;然后实现了液压系统的动力学仿真。仿真结果进行了分析。仿真结果表明,增加提升油缸活塞的初始位移或减小提升油缸的活塞直径或两者时,加力作用下的桩驱动力增加了几英寸。此外,当增加打桩缸的活塞直径时,打桩深度和加力下的打桩力会迅速增加,打桩能力会提高。

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