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Design and experiment of hydraulic impact loading system for mine cable bolt

机译:矿用锚杆液压冲击加载系统的设计与实验。

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Mine pre-stressed cable bolt under impact of large loads may be broken or pulled out, and during this loading process, violent friction taken place between steel strand and anchorage will produce high-temperature and friction sparks. No existing test bed can conduct impact loading experiment. In order to test the process, we designed a hydraulic impact loading system for mine cable bolt for the first time. The system can simulate the work conditions of cable bolt being pulled off or break under different impact loads in the environment filled with thick mash gas. The system can also be used to research the failure mechanism of cable bolt support and to test the possibility of gas burn or explosion ignited by the sparks or high temperature. With AMESim software, we established a simulation model of the impact loading system and performed a performance simulation. Simulation results show that the designed experimental system can achieve a high-speed and a heavy impact load. So its dynamic performances can meet the requirements of cable bolt impact test. The experiment also shows that the experimental conditions are similar to that of the cable bolt being pulled out in reality.
机译:承受大载荷冲击的矿井预应力电缆螺栓可能会折断或拔出,在此载荷过程中,钢绞线与锚固之间发生剧烈摩擦会产生高温和摩擦火花。现有的试验台无法进行冲击载荷试验。为了测试该过程,我们首次设计了用于矿用电缆螺栓的液压冲击加载系统。该系统可以模拟在充满浓泥浆气体的环境中,在不同冲击载荷下电缆螺栓被拉断或折断的工作条件。该系统还可以用于研究电缆螺栓支撑的失效机理,并测试火花或高温点燃气体燃烧或爆炸的可能性。使用AMESim软件,我们建立了冲击加载系统的仿真模型,并进行了性能仿真。仿真结果表明,设计的实验系统可以实现高速,重载的冲击。因此其动态性能可以满足电缆螺栓冲击试验的要求。实验还表明,实验条件与实际拔出的电缆螺栓相似。

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