Analysis of Self-oscillating Single-acting Hydro-impact System Operational Modes with Two Limiters of Striker Movement

IF 0.7 Q4 ENGINEERING, MECHANICAL
L. Gorodilov
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引用次数: 5

Abstract

A new property of self-oscillating single-acting hydro-impact systems is considered in this paper – an ability to make strikes in forward and backward directions in presence of two limiters of striker movement without structural changes in device. Mathematical models are presented for system, which includes a flow rate source, a control valve, an impact unit (body frame, striker and spring), an energy accumulator and two limiters. Program for system operational modes (op-modes) simulation is developed and dynamics of specific typical device is numerically investigated. Theoretical oscillograms of its dynamic characteristics and dependencies of integral characteristics on source and impact device parameters are analyzed. At low flow rate multiimpact self-oscillating cycles are obtained, in which the nature of dynamics phenomenon repeats after several striker-limiters interactions. Increase of flow rate leads to single-impact working mode with forward direction of striker movement, then to transition to double-impact mode with forward and backward directions and, further, to single-impact mode with backward direction. Transition boundary points, in which system op-modes changes, are found. Results of this paper can be applied in development of reversible hydro-impact devices (with impacts in forward and backward directions) for mining and construction engineering.
具有两个撞锤运动限制器的自激式单动液压冲击系统运行模式分析
本文考虑了自激单动液压冲击系统的一个新特性——在存在两个撞锤运动限制器的情况下,在不改变装置结构的情况下向前和向后进行冲击的能力。给出了系统的数学模型,该系统包括流量源、控制阀、冲击单元(车架、撞锤和弹簧)、蓄能器和两个限制器。开发了系统运行模式(op模式)仿真程序,并对特定典型器件的动力学进行了数值研究。分析了其动态特性的理论波形图以及积分特性对源和冲击装置参数的依赖性。在低流量下,获得了多个冲击自激振荡循环,其中动力学现象的性质在几个冲击限制器相互作用后重复。流速的增加导致撞锤运动向前的单冲击工作模式,然后过渡到向前和向后的双冲击模式,进而过渡到向后的单冲击模式。找到了系统操作模式发生变化的过渡边界点。本文的研究结果可应用于采矿和建筑工程可逆水力冲击装置(具有正向和反向冲击)的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Fluid Power
International Journal of Fluid Power ENGINEERING, MECHANICAL-
CiteScore
1.60
自引率
0.00%
发文量
16
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