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Synthesis and Properties of a Polymer-Modified Material for Thin Spray-On Liners in Mine Roadways

机译:矿区薄喷涂衬里薄喷涂材料的合成与性能

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In order to adapt to dry and wet environment in mine roadways and improve the performance of sealing materials under different environmental conditions, this study selected the materials based on their ability to spray and found that the materials with a viscosity of 1500–6000?MPa·s can achieve a balance between performance of spray and wall-hanging performance. Next, by selecting high-elastic polyacrylate emulsion and ordinary Portland cement as the film-forming agent and gel, respectively, mix proportion factors of the nonreactive thin spray-on liner (TSL) were analyzed by using the Taguchi method. Moreover, fluidity, setting time, sealing properties, compressive strength, bending strength, and bonding strength of those materials were measured. It was disclosed that addition of an appropriate amount of polyacrylate emulsion can enhance the effects of fibers. By observing the morphologies of the materials’ bonding surfaces and comparing the factors influencing bonding strength between both dry and wet walls, it was uncovered that the adhesive property of cement-based sealing materials was mainly affected by the water-cement ratio. Eventually, bonding strength and sealing properties were selected as primary optimization indexes, while setting time, bending strength, and compressive strength were selected as secondary optimization indexes. The appropriate proportions of two types of TSLs for dry and wet walls were (W/C?=?50%; P/C?=?6%; F/C?=?1%; T/C?=?0.2%) and (W/C?=?45%; P/C?=?6%; F/C?=?1%; T/C?=?0.4%), respectively. A prepared TSL can be used for filling rock fractures in mine roadways. In addition, TSL exhibited a great performance for dry and wet walls under different environmental conditions. The present study may provide an insightful guidance and reference for the investigation of TSL sealing materials applied in the mine roadways.
机译:为了适应矿井道路的干湿环境,提高不同环境条件下的密封材料的性能,本研究基于它们的喷雾能力选择了这些材料,发现粘度为1500-6000?MPA· S可以在喷涂和壁挂性能性能之间实现平衡。接下来,通过选择高弹性聚丙烯酸酯乳液和普通的薄层水泥作为成膜剂和凝胶,通过使用TAGUCHI方法分析非反应性薄喷涂衬垫(TSL)的混合比例因子。此外,测量这些材料的流动性,设定时间,密封性能,抗压强度,弯曲强度和粘合强度。它公开了添加适量的聚丙烯酸酯乳液可以增强纤维的作用。通过观察材料的粘合表面的形态并比较影响干湿壁之间的粘合强度的因素,揭示了水泥基密封材料的粘合性主要受水泥比的影响。最终,选择粘合强度和密封性能作为初级优化指数,同时选择设定时间,弯曲强度和抗压强度作为二次优化指标。两种类型的干燥和湿墙壁的适当比例为(w / c?=Δ= 50%; p / c?=Δ= 6%; f / c?= 1%; t / c?= 0.2% (w / c?= 45%; p / c?=Δ= 6%; f / c?= 1%; t / c?= 0.4%)。准备好的TSL可用于填充矿井道路的岩石骨折。此外,在不同的环境条件下,TSL在干湿墙上表现出具有很大的性能。本研究可为矿井道路施用的TSL密封材料进行调查,提供富有识别的指导和参考。

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