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Optimization of Exothermic, Foaming, and Mechanical Properties of Modified Polyurethane as Filling Material for Goaf Sealing Wall

机译:改性聚氨酯的放热,发泡和力学性能优化,作为GOF密封壁的填充材料

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摘要

Goaf sealing wall is set in the roadway close to the stop line of working face in an underground coal mine. However, the sealing wall is prone to crack or fracture under serious mining stress, resulting in water and air leakage from goaf. In this study, the combination of polymethylene polyphenyl polyisocyanate (PAPI) and methylene diphenyl diisocyanate (MDI) as component A and polyether polyols, catalysts, surfactants, chain extenders, and plasticizers as component B were investigated to optimize the exothermic, foaming, and mechanical properties of modified polyurethane (PU) as the filling material for goaf sealing wall. Firstly, the reaction temperature of specimens with different contents of polyether polyols was monitored using a dynamic acquisition system; secondly, the effect of polyether polyols, catalysts, and surfactants on foaming property was studied; then, uniaxial compression tests were developed to obtain compressive behavior; finally, the microstructure after uniaxial compression was observed by using a scanning electron microscope (SEM). The results indicate that the pure chemical slurry is superior to the combination of chemical slurry and sand in compressive strength and deformation behavior. The optimal mass ratio of polyether triols, polyether tetraols, catalysts, surfactants, chain extenders, and plasticizers is 11 : 9 : 1.0 : 0.5 : 1.2: 6 in component B due to the maximum reaction temperature of 121.4°C, the expansion ratio of 2.6, and the compressive strength of 7.97 MPa at the strain of 10% in this study. The research provides a solution for the construction of the sealing wall, which is of great significance to safety production in an underground coal mine.
机译:GoaF封口墙在靠近地下煤矿的距离工作面的停止线路的道路上设定。然而,密封壁在严重的采矿应力下容易发生裂纹或骨折,从而产生水和空气泄漏。在该研究中,研究了聚亚甲基多苯基多异氰酸酯(PAPI)和亚甲基二苯基二异氰酸酯(MDI)作为组分A和聚醚多元醇,催化剂,表面活性剂,扩链剂和增塑剂作为组分B的组合,以优化放热,发泡和机械改性聚氨酯(PU)作为GOF密封壁的填充材料的性质。首先,使用动态采集系统监测具有不同聚醚多元醇含量的样品的反应温度;其次,研究了聚醚多元醇,催化剂和表面活性剂对发泡性能的影响;然后,开发了单轴压缩测试以获得压缩行为;最后,通过使用扫描电子显微镜(SEM)观察单轴压缩后的微观结构。结果表明,纯化学浆料优于化学浆料和砂中抗压强度和变形行为的组合。聚醚三醇,聚醚四烯烃,催化剂,表面活性剂,扩链剂和增塑剂的最佳质量比为11:9:1.0:0.5:1.2:6由于121.4℃的最大反应温度,膨胀率2.6,这项研究中抑制强度为7.97MPa的菌株10%。该研究提供了一种用于构建密封壁的解决方案,这对地下煤矿的安全生产具有重要意义。

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