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首页> 外文期刊>Advances in materials science and engineering >New Chemical Grouting Materials and Rapid Construction Technology for Inclined Shaft Penetrating Drift-Sand Layer in Coal Mine
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New Chemical Grouting Materials and Rapid Construction Technology for Inclined Shaft Penetrating Drift-Sand Layer in Coal Mine

机译:煤矿井斜穿砂层的新型化学灌浆材料及快速施工技术

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摘要

Drift-sand layer is a common weak stratum in mine construction. The construction of the shaft passing over the drift-sand layer is very difficult. Traditional construction method faces many problems such as long construction period, high construction cost, poor working environment, and uncontrollability of the support effect. In view of the loose and fragile rock mass with great deformation of sinking and driving engineering penetrating drift-sand layers in coal mine, the reaction mechanism and shortcomings of conventional chemical grouting materials were analyzed. New-type polymer grouting materials were prepared with catalysts and vinyl epoxy resin, which was made from epoxy resin. A comprehensive chemical grouting construction technology was proposed, which comprises initiative closing, concentrated bypass flow, water plugging priority, and secondary sand curing for the inclined shaft passing over the drift-sand layer. Results show that new-type polymer sand-cured materials have lower viscosity, better grout ability, and fire resistance, and the solidified material has stronger bonding strength and better deformation resistance compared with traditional chemical grouting materials. The engineering application effect is very prominent in controlling water burst and leakage at the drift-sand layer; thus the on-site comprehensive construction progress and safety are guaranteed.
机译:砂层是矿山建设中常见的薄弱层。越过浮沙层的轴的构造非常困难。传统的施工方法面临工期长,施工成本高,工作环境差,支撑效果不可控等问题。针对煤矿开采中沉陷和驱动工程变形较大的疏松易碎岩体渗入砂层的情况,分析了常规化学灌浆材料的反应机理和不足。用催化剂和乙烯基环氧树脂制备了新型聚合物灌浆材料。提出了一种综合的化学灌浆施工技术,该技术包括主动关闭,集中旁路流,堵水优先以及对穿过浮沙层的斜井进行二次砂固化。结果表明,新型聚合物砂固化材料与传统化学灌浆材料相比,具有更低的粘度,更好的灌浆性能和阻燃性,并且固化后的材料具有更强的粘结强度和更好的抗变形性能。工程应用效果在控制流沙层的突水和渗漏方面非常突出。从而保证了现场的综合施工进度和安全性。

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