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Optimization Technology of Frequency Conversion Constant Pressure Control System of Mine Emulsion Pump Station in Electrical Engineering and Automation Specialty

机译:电气工程及自动化专业矿井乳化泵站变频恒压控制系统优化技术

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No matter in metal mines or coal mines, an emulsion pump station has a wide range of application market and can play an important role. In this paper, the frequency conversion constant pressure control system of the mine emulsion pump station is taken as the research object. The two kinds of water-based drawing fluids used are dispersed drawing fluid and emulsion drawing fluid. After the intelligent level of the equipment reaches a very high level, an environmentally friendly, safe, and efficient Internet of Things technology system will be added. Combined with 3D laser scanning technology based on self-scanning of road contours, the blast method is input to the terminals of the emulsion pump station for automatic blast hole positioning and semiautomation of the emulsion pump station. Combined with 5?g communication and other intelligent key technologies, it realizes high-end functions such as fault self-diagnosis, remote operation, and remote monitoring of the emulsion pump station and rock drill, which can be called full intelligent stage. The results show that the initial friction coefficient of drawing fluid A lubrication is 0.21, and then, with the extension of time, the friction coefficient gradually decreases to 0.14. The initial friction coefficient of drawing fluid B is 0.22, then it decreases rapidly to 0.13, then it is stable at 0.17, and then it remains basically unchanged. When the temperature is 55°C, the initial friction coefficient is 0.16 and then decreases to 0.12. Therefore, the frequency conversion constant pressure control system of the mine emulsion pump station should be selected according to the environment and application scenarios.
机译:无论在金属矿或煤矿,乳液泵站都有广泛的应用市场,可发挥重要作用。本文采用了矿井乳液泵站的变频恒压控制系统作为研究对象。所用的两种水基拉伸液被分散拉伸流体和乳液拉丝液。在设备的智能级别达到非常高的级别之后,将添加一个环保,安全,有效的技术系统技术系统。结合基于公路轮廓的自扫描的3D激光扫描技术,BLAST方法输入到乳液泵站的端子,用于自动喷砂孔定位和乳液泵站的半自动化。结合5?G通信和其他智能关键技术,它实现了故障自诊断,远程操作等高端功能,以及乳液泵站和凿岩钻的远程监控,可以称为全智能舞台。结果表明,拉丝流体润滑的初始摩擦系数为0.21,然后在延长时间,摩擦系数逐渐减小至0.14。拉伸流体B的初始摩擦系数为0.22,然后它迅速降低至0.13,然后在0.17时稳定,然后它基本保持不变。当温度为55℃时,初始摩擦系数为0.16,然后降至0.12。因此,应根据环境和应用场景选择矿井乳液泵站的变频恒压控制系统。

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