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基于粉煤灰的轻质多孔地质聚合物的力学性能研究及其在自适应端填充技术中的应用。

Study on the Mechanical Properties of Fly-Ash-Based Light-Weighted Porous Geopolymer and Its Utilization in Roof-Adaptive End Filling Technology.

机构信息

Key Laboratory of Deep Coal Resource Mining (CUMT), Ministry of Education of China, Xuzhou 221116, China.

School of Mines, China University of Mining & Technology, Xuzhou 221116, China.

出版信息

Molecules. 2021 Jul 23;26(15):4450. doi: 10.3390/molecules26154450.

Abstract

This paper aims to study the porous structure and the mechanical properties of fly-ash-based light-weighted porous geopolymer (FBLPG), exploring the feasibility of using it in roof-adaptive end filling technology based on its in-situ foaming characteristics and plastic yielding performance. A porous structure model of FBLPG during both the slurry and solid period was established to study their influence factor. In addition, this study also built a planar structure model in the shape of a honeycomb with bore walls, proving that the bore walls possess the characteristics of isotropic force. FBLPG shows a peculiar plastic yielding performance in the experiment where its stress stays stable with the gradual increase of the deformation, which can guarantee the stability of a filling body under the cycled load from the roof. At the same time, the in-situ foaming process combined with the unique filling technique can make the FBLPG filling body fully in contact with the irregular roof. This roof-adaptive end filling technology makes it a successful application in plugging the 1305 working face, which avoids problems of the low tight-connection ratio and secondary air-leakage channel resulted from the traditional filling technology, effectively improving coal production in terms of safety and high efficiency.

摘要

本文旨在研究基于粉煤灰的轻质多孔地质聚合物(FBLPG)的多孔结构和力学性能,探索其在基于原位发泡和塑性屈服性能的自适应顶板充填技术中的应用可行性。通过建立浆体和固体阶段的多孔结构模型,研究其影响因素。此外,本研究还建立了具有孔壁的蜂窝状平面结构模型,证明了孔壁具有各向同性力的特点。FBLPG 在实验中表现出独特的塑性屈服性能,其应力随着变形的逐渐增加而保持稳定,这可以保证在顶板循环荷载作用下充填体的稳定性。同时,原位发泡过程与独特的充填技术相结合,可以使 FBLPG 充填体与不规则的顶板充分接触。这种自适应顶板充填技术成功应用于封堵 1305 工作面,避免了传统充填技术存在的紧密度低和二次漏风通道的问题,有效提高了安全高效的煤炭产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/989d/8348976/804b86728568/molecules-26-04450-g001.jpg

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