Optimization of CNTs and SiO2 for thermostability and mechanical properties of PF microcapsules: used for self-healing of closed wall cracks in goaf

IF 1.3 4区 工程技术 Q4 CHEMISTRY, PHYSICAL
M. Fu, Boyu Ma, Yuanping Zhang, Xin-lei Jia, Lu Chen, Yuping Zhang, Kaidi Sun, Guanning Zhao, Mengyao Wang
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引用次数: 0

Abstract

Air leakage of closed wall in coal mine goaf would cause spontaneous combustion of remained coal. Most of measures to repair cracks are carried out after cracks are penetrated, which is not conducive to early prevention of spontaneous combustion. Repairing damage at the initial stage of cracking makes prevention effect to the best. Phenol-formaldehyde resin (PF) microcapsules embedded in closed wall to achieve self-healing of initial cracks, but the actual repair effect is often less than expected. PF microcapsules (PFM) of carbon nanotubes (CNTs) and silicon dioxide (SiO2) decorated shell for self-healing of closed wall cracks were prepared by in-situ polymerization. The effects of nanomaterials on morphology, chemical constitution, thermal performance and mechanical properties of PF microcapsules were characterized by scanning electron microscopy (SEM), fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA) and nanoindentation test. The test results indicated that nanomaterials were successfully introduced into the shell of PF microcapsules. The CNTs-SiO2@PF microcapsules were uniformly dispersed, the thermal decomposition was delayed, and the residual carbon was significantly increased, and the brittleness of PF microcapsules was significantly enhanced. The 0.2CNTs-SiO2@PF microcapsules (0.2CNTs-SiO2@PFM) had a uniform and full particle size, the initial decomposition temperature was 267.6 ℃, the residual mass was 41.3%, the maximum load on the capsule wall reached 94.79 mN, and the load dropped sharply after the capsule wall rupture. Finally, the self-healing mechanism of closed wall doped with microcapsules was discussed. The exploration of modified phenolic microcapsules provides a new idea for the repair of closed wall in goaf.
CNTs和SiO2对PF微胶囊热稳定性和力学性能的优化:用于采空区闭合壁裂纹的自修复
煤矿采空区密闭壁面漏风会引起残煤自燃。修补裂缝的措施大多在裂缝穿透后进行,不利于早期预防自燃。在开裂初期修复损伤,预防效果最好。酚醛树脂(PF)微胶囊包埋于封闭墙体中,可实现初始裂缝的自愈,但实际修复效果往往不如预期。采用原位聚合法制备了碳纳米管(CNTs)和二氧化硅(SiO2)装饰外壳的自愈壁微胶囊(PFM)。采用扫描电子显微镜(SEM)、傅里叶红外光谱(FTIR)、热重分析(TGA)和纳米压痕测试表征了纳米材料对PF微胶囊形貌、化学组成、热性能和力学性能的影响。实验结果表明,纳米材料被成功地引入到PF微胶囊的外壳中。CNTs-SiO2@PF微胶囊分散均匀,热分解延迟,残碳明显增加,PF微胶囊脆性明显增强。0.2CNTs-SiO2@PF微胶囊(0.2CNTs-SiO2@PFM)粒径均匀饱满,初始分解温度为267.6℃,残余质量为41.3%,囊壁最大载荷达到94.79 mN,囊壁破裂后载荷急剧下降。最后讨论了微胶囊掺杂封闭壁的自愈机制。改性酚醛微胶囊的探索为采空区封闭壁的修复提供了新的思路。
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来源期刊
Physicochemical Problems of Mineral Processing
Physicochemical Problems of Mineral Processing CHEMISTRY, PHYSICAL-MINING & MINERAL PROCESSING
自引率
6.70%
发文量
99
期刊介绍: Physicochemical Problems of Mineral Processing is an international, open access journal which covers theoretical approaches and their practical applications in all aspects of mineral processing and extractive metallurgy. Criteria for publication in the Physicochemical Problems of Mineral Processing journal are novelty, quality and current interest. Manuscripts which only make routine use of minor extensions to well established methodologies are not appropriate for the journal. Topics of interest Analytical techniques and applied mineralogy Computer applications Comminution, classification and sorting Froth flotation Solid-liquid separation Gravity concentration Magnetic and electric separation Hydro and biohydrometallurgy Extractive metallurgy Recycling and mineral wastes Environmental aspects of mineral processing and other mineral processing related subjects.
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