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New Computer Simulation Procedure of Heading Face Mining Process with Transverse Cutting Heads for Roadheader Automation

机译:用于掘进机自动化的横向切割头掘进面开采过程的计算机模拟新方法。

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The key working process carried out by roadheaders is rock mining. For this reason, the mathematical modelling of the mining process is underlying the prediction of a dynamic load on the main components of a roadheader, the prediction of power demand for rock cutting with given properties or the prediction of energy consumption of this process. The theoretical and experimental investigations conducted point out – especially in relation to the technical parameters of roadheaders used these days in underground mining and their operating conditions – that the mathematical models of the process employed to date have many limitations, and in many cases the results obtained using such models deviate largely from the reality. This is due to the fact that certain factors strongly influencing cutting process progress have not been considered at the modelling stage, or have been approached in an oversimplified fashion.The article presents a new model of a rock cutting process using conical picks of cutting heads of boom-type roadheaders. An important novelty with respect to the models applied to date is, firstly, that the actual shape of cuts has been modelled with such shape resulting from the geometry of the currently used conical picks, and, secondly, variations in the depth of cuts in the cutting path of individual picks have been considered with such variations resulting from the picks’ kinematics during the advancement of transverse cutting heads parallel to the floor surface. The work presents examples of simulation results for mining with a roadheader’s transverse head equipped with 80 conical picks and compares them with the outcomes obtained using the existing model.
机译:掘进机执行的关键工作过程是采矿。因此,采矿过程的数学模型是对掘进机主要部件上的动态负载进行预测,对具有给定属性的凿岩动力需求进行预测或对该过程进行能耗预测的基础。进行的理论和实验研究表明,尤其是与当今地下采矿中使用的掘进机的技术参数及其运行条件有关,迄今为止所采用的过程的数学模型有很多局限性,并且在许多情况下所获得的结果使用此类模型与实际情况大相径庭。这是由于以下事实:在建模阶段尚未考虑某些影响切割过程进展的因素,或者以过分简化的方式进行了处理。本文提出了一种使用圆锥形截齿截齿的岩石切割过程的新模型。动臂式掘进机。关于迄今为止应用的模型,一个重要的新颖性是,首先,已使用当前圆锥形镐的几何形状所产生的这种形状来模拟切口的实际形状,其次,该切口在切入深度上的变化。已经考虑了单个镐的切割路径,这种变化是由于在平行于地板表面的横向切割头前进期间镐的运动学造成的。该工作展示了使用配备80个圆锥形镐的掘进机横挖头进行采矿的模拟结果示例,并将其与使用现有模型获得的结果进行了比较。

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