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The development of an operative diagnostic method of the limiting technical condition of the sectional pump hydraulic balancing unit

机译:截面泵液压平衡装置限制技术条件的操作诊断方法的发展

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In the conditions of underground kimberlite mines operated by PJSC ALROSA, the main reason for the premature achievement of the limit technical condition by the sectional pump is the intensive abrasive destruction of its basic parts, namely, the shaft, impellers and, in more rare cases, the discharge covers. Mechanical destruction of the above-mentioned parts usually occurs as a result of the operation of a sectional pump with a critical axial displacement of the rotor (2.8÷3 mm) in the direction of suction, since in such an emergency position of the rotor there is a tribocontact between it and the pump housing elements, which after some period of time leads to serious consequences. Practice shows that in the conditions of underground kimberlitic mines of the Company application of the sensor of measurement of rotor axial shift of the sectional pump intended for identification of growth of the size measured by it to critical values is the effective technical solution only for some period of time. Frequent failures and a certain complexity of reconfiguration of this control and measuring device became the main reasons for reducing the correctness of the results issued to them. Thus, we state that the development of a technique for the identification of the rotor critical axial shift of the sectional pump, the use of which should be an alternative to the use of the above mentioned sensor, is an urgent scientific and practical task at the present time. The solution of this problem will increase the durability of the basic expensive parts of the sectional pump, as well as the level of industrial safety in underground mining of kimberlite ore. This research paper describes in detail the complex of diagnostic features of the sectional pump in critical axial displacement of the rotor, whose introduction into production will allow with a high degree of probability to increase the operational reliability of sectional pumps of drainage systems of underground kimberlitic mines of the PJSC ALROSA.
机译:在由PJSC Alrosa运营的地下金伯利矿地雷的条件下,截面泵的极限技术条件过早实现的主要原因是其基本零件的密集磨蚀性破坏,即轴,叶轮,在更罕见的情况下,排放盖。由于在抽吸方向上具有转子(2.8÷3mm)的临界轴向位移的截面泵的操作,因此通常发生上述部件的机械破坏。在那里的转子的这种紧急位置处是它与泵壳体元件之间的摩擦膜,这在一段时间后导致严重后果。实践表明,在公司的地下金伯利标的地雷的条件下,该剖面泵的测量传感器的剖面泵,用于识别通过其测量的尺寸的增长至临界值,是仅在某个时期的有效技术解决方案时间。这种控制和测量装置的重新配置的频繁故障和某种复杂性成为降低对其发出结果的正确性的主要原因。因此,我们说明了一种技术为了识别剖面泵的转子临界轴向偏移,使用它应该是使用上述传感器的替代,是一种紧急的科学和实践任务现在。该问题的解决方案将提高截面泵的基本昂贵部件的耐用性,以及金伯利矿石地下采矿中的工业安全水平。本研究论文详细介绍了转子临界轴向位移中剖面泵的诊断特征的复合物,其生产中的生产允许具有高概率来提高地下金伯利岩区域的排水系统截面泵的操作可靠性PJSC Alrosa。

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