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A Study on the Dynamic Transmission Law of Spiral Drum Cutting Coal Rock Based on ANSYS/LS-DYNA Simulation

机译:基于ANSYS / LS-DYNA模拟的基于ANSYS / LS-DYNA仿真的螺旋鼓切割煤岩动态传输定律研究

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The ANSYS/LS-DYNA software has been used in this paper to establish the coal rock coupling model. A dynamic simulation of the cutting process was used to analyze the variation of the load. Based on the dynamic analysis of the coal and rock that were cut by the spiral drum, the stress cloud diagram of the coupled model of the spiral drum and the coal and the plastic domain evolution law of the coal and the rock were obtained from the coal to the rock. The time history curves of the parameters, such as the stress and strain of the drum and the pick, were obtained, and the stress distribution of the spiral drum during the working process was ascertained. The results showed that when the spiral drum cuts the interface between the coal and the rock, the coal and the rock collapsed and the working load fluctuated. Changing the traction speed in order to change the rotational speed of the drum had a more obvious effect on the load and the stress on the drum. Through the use of simulation, the stress distribution cloud diagram of the drum was obtained. The study has shown that the stress on the end plate was significantly higher than that on the cutting blade. The maximum stress acting on the alloy head was 1209.26?MPa. This study has provided a basis for the design and optimization of the drum with regard to reliability.
机译:本文已使用ANSYS / LS-DYNA软件以建立煤岩耦合模型。切割过程的动态模拟用于分析负载的变化。基于由螺旋鼓切割的煤和岩石的动态分析,从煤中获得螺旋鼓和煤炭耦合模型的应力云图和煤的塑料结构域演化法到岩石。获得了参数的时间历史曲线,例如鼓和拾取的应力和应变,并确定在工作过程中的螺旋鼓的应力分布。结果表明,当螺旋鼓切割煤和岩石之间的界面时,煤和岩石塌陷,工作负荷波动。改变牵引速度以改变滚筒的旋转速度对载荷和滚筒上的应力具有更明显的影响。通过使用模拟,获得了滚筒的应力分布云图。该研究表明,端板上的应力显着高于切割刀片上的应力。作用在合金头上的最大应力为1209.26?MPa。本研究为可靠性方面提供了桶的设计和优化的基础。

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