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Experimental Study and Application of LASC Foamed Concrete to Create Airtight Walls in Coal Mines

机译:Lasc发泡混凝土在煤矿中采用密闭墙的实验研究与应用

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If an airtight wall in a coal mine leaks air, it may cause spontaneous combustion of residual coal in the gob and even cause a full-blown fire or gas explosion. In this study, we developed a new type of foamed concrete, low-alkalinity sulphoaluminate cement (LASC), to control air leakage. The performance of filling materials that were prepared by adding various dosages of foam to LASC was studied. The longer the curing period for the foam filling material of LASC, the better the crystallinity of the hydrated product. With an increasing foam dosage, the initial setting time gradually extends while the fluidity of the foam slurry decreases. The bubble rate of the filling material increases and the density decreases with increasing foam dosage. The compressive strength of the LASC filling material decreases with increasing foam dosage and increases with increasing curing time. In the LASC filling materials, the optimal volume ratio of foam dosage to gel slurry is 2. The crystallinity, initial gel time, and compressive strength of the LASC foaming materials are better than those of ordinary Portland cement (OPC) foaming materials. When the crossheading is filled with LASC foam cement, the deformation of the surrounding rock is less than 19?cm, and the air leakage prevention is better than that achieved with loess and fly-ash-cement foam. Thus, the proposed LASC foam material can be applied to the filling of the crossheading to efficiently prevent leakage in underground coal mines.
机译:如果煤矿中的气密墙泄漏空气,可能会导致凝固煤中的残留煤炭自燃,甚至导致全吹的火灾或煤气爆炸。在这项研究中,我们开发了一种新型的发泡混凝土,低碱度硫铝酸盐水泥(Lasc),以控制空气泄漏。研究了通过添加各种剂量的泡沫至Lasc制备的填充材料的性能。 Lasc的泡沫填充材料的固化时段越长,水合产物的结晶度越好。随着泡沫剂量的增加,初始设定时间逐渐延伸,而泡沫浆料的流动性降低。填充材料的气泡率升高,密度随着泡沫剂量的增加而降低。随着泡沫剂量的增加,Lasc填充材料的抗压强度降低,随着固化时间的增加而增加。在Lasc填充材料中,泡沫剂量至凝胶浆料的最佳体积比为2.结晶度,初始凝胶时间和延伸强度,Lasc发泡材料的抗压强度优于普通波特兰水泥(OPC)发泡材料。当十字头填充有Lasc泡沫水泥时,周围岩石的变形小于19?cm,预防漏气比用黄土和飞灰水泥泡沫更好。因此,所提出的LASC泡沫材料可以应用于十字头的填充,以有效地防止地下煤矿中的泄漏。

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