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Expansion properties and creep tests for a new type of solidified expansive sealing material for gas drainage boreholes in underground mines

机译:地下矿井瓦斯抽放钻孔用新型凝固膨胀密封材料的膨胀性能和蠕变试验

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This study was conducted to find the optimal expansion for a new type of solidified expansive sealing (SES) material. The aim was to better meet the requirements for sealing gas extraction boreholes in underground coal mines by examining the expansion and creep properties of the material. The effect of different proportions of expansion agent on expansion time, expansion mechanisms, and creep properties of the SES material was investigated using an electronic universal testing machine and other systems. Based on the results of step loading creep tests, the Kelvin-Voigt viscoelastic model was selected to further analyze the mechanical properties of the material. The analysis showed that when the proportion of expansion agent in the SES is increased to 2.0%, the final expansion percentage increases to 11.5%, and the rapid expansion time and expansion preparation time quickly decreases to 18 and 12 min, respectively. In addition, the step loading displacement and constant force load displacement increase sharply. The creep parameters E (0), E (1), and eta (1) of the Kelvin-Voigt model reflect the gradually weakening of the compressive capacity and anti-deformation ability of the SES material. Based on the analysis of the experimental results and field application on sealing boreholes using SES material, it was possible to establish the optimum amount of expansion agent that should be added to the SES material. The optimized proportions can meet the requirements of good flowability, high compressive capacity, and anti-deformation ability for borehole sealing in a mine.
机译:进行这项研究是为了找到新型凝固膨胀密封(SES)材料的最佳膨胀。目的是通过检查材料的膨胀和蠕变特性,更好地满足密封地下煤矿瓦斯抽采钻孔的要求。使用电子万能试验机和其他系统研究了不同比例的膨胀剂对SES材料的膨胀时间,膨胀机理和蠕变性能的影响。根据逐步加载蠕变测试的结果,选择了Kelvin-Voigt粘弹性模型来进一步分析材料的机械性能。分析表明,当膨胀剂在SES中的比例增加到2.0%时,最终膨胀百分比将增加到11.5%,快速膨胀时间和膨胀准备时间分别迅速减少到18分钟和12分钟。另外,阶跃载荷位移和恒力载荷位移急剧增加。 Kelvin-Voigt模型的蠕变参数E(0),E(1)和eta(1)反映了SES材料的压缩能力和抗变形能力逐渐减弱。根据对使用SES材料密封孔的实验结果和现场应用的分析,可以确定应添加到SES材料中的最佳膨胀剂数量。优化的比例可以满足良好的流动性,高抗压能力和抗变形能力,以用于矿井中的井眼密封。

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