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Research on the Performance and Diffusion Behavior of Geopolymer Grouting Material Made from Coal Roof Bottom Ash
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作者 Xinxin Yu Haibo zhang +1 位作者 Yu Liu fengshun zhang 《Journal of Architectural Research and Development》 2025年第1期8-20,共13页
As the cost of grouting treatment for water control in coal roofs during underground coal mining continues to rise,coupled with the accumulation of industrial solid waste resulting from rapid economic development in C... As the cost of grouting treatment for water control in coal roofs during underground coal mining continues to rise,coupled with the accumulation of industrial solid waste resulting from rapid economic development in China,the ecological environment is facing severe challenges.To address these issues,this study,based on a high water-to-cement ratio,uses mine overburden(OB)and furnace bottom ash(FBA)as the primary raw materials,with sodium silicate as the modifier,to develop a new type of geopolymer grouting material with high stability and compressive strength for coal roof water control.Additionally,COMSOL software was used to numerically simulate the diffusion process of the grout slurry in fractures under dynamic water flow.The results indicate that,with a sodium silicate modulus of 1.5 and a dosage of 4%,the stability of the slurry increased by 26.2%,and the 28-day compressive strength improved by 130.98%.Numerical simulations further show that the diffusion process of the slurry is closely related to slurry viscosity,grouting pressure,and grouting time and that the diffusion pattern in the fractures is similar to that of ultra-fine cement slurry.This study provides a theoretical basis for coal mine roof grouting water control projects. 展开更多
关键词 Coal mine top grouting Regional management Numerical simulation Comprehensive utilization Solid waste
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碳纳米管/石墨烯复合填充交替多层硅橡胶的结构及性能 被引量:4
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作者 贺婉 罗芳 +2 位作者 张风顺 罗世凯 张先龙 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2021年第2期130-134,141,共6页
以碳纳米管(CNTs)/石墨烯(GNs)为复合填充料,通过交替多层共挤出设备制备了一系列不同层数交替多层硅橡胶片材,获得了2^(n+1)+1层结构的多层复合硅橡胶;研究了多层结构硅橡胶微观形貌对其力学性能和介电性能的影响。扫描电镜结果表明,... 以碳纳米管(CNTs)/石墨烯(GNs)为复合填充料,通过交替多层共挤出设备制备了一系列不同层数交替多层硅橡胶片材,获得了2^(n+1)+1层结构的多层复合硅橡胶;研究了多层结构硅橡胶微观形貌对其力学性能和介电性能的影响。扫描电镜结果表明,所制备的多层材料具有清晰、规整的连续层状结构,且随着层数增加,填料的分散状态获得改善且取向度增加;拉伸实验结果表明,多层硅橡胶的拉伸强度和断裂伸长率均有所增加,且均大于共混材料;介电性能测试结果表明,多层材料的介电常数随层数增加而增加,并且具有介电的各向异性,其在面内方向上的介电常数高于面外方向。 展开更多
关键词 碳纳米管 石墨烯 硅橡胶 交替多层结构 力学性能 介电性能
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Tetris-Style Stacking Process to Tailor the Orientation of Carbon Fiber Scaffolds for Efficient Heat Dissipation 被引量:1
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作者 Shida Han Yuan Ji +4 位作者 Qi zhang Hong Wu Shaoyun Guo Jianhui Qiu fengshun zhang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第9期310-324,共15页
As the miniaturization of electronic devices and complication of electronic packaging,there are growing demands for thermal interfacial materials with enhanced thermal conductivity and the capability to direct the hea... As the miniaturization of electronic devices and complication of electronic packaging,there are growing demands for thermal interfacial materials with enhanced thermal conductivity and the capability to direct the heat toward heat sink for highly efficient heat dissipation.Pitch-based carbon fiber(CF)with ultrahigh axial thermal conductivity and aspect ratios exhibits great potential for developing thermally conductive composites as TIMs.However,it is still hard to fabricate composites with aligned carbon fiber in a general approach to fully utilize its excellent axial thermal conductivity in specific direction.Here,three types of CF scaffolds with different oriented structure were developed via magnetic field-assisted Tetris-style stacking and carbonization process.By regulating the magnetic field direction and initial stacking density,the self-supporting CF scaffolds with horizontally aligned(HCS),diagonally aligned and vertically aligned(VCS)fibers were constructed.After embedding the polydimethylsiloxane(PDMS),the three composites exhibited unique heat transfer properties,and the HCS/PDMS and VCS/PDMS composites presented a high thermal conductivity of 42.18 and 45.01 W m^(−1)K^(−1)in fiber alignment direction,respectively,which were about 209 and 224 times higher than that of PDMS.The excellent thermal conductivity is mainly ascribed that the oriented CF scaffolds construct effective phonon transport pathway in the matrix.In addition,fishbone-shaped CF scaffold was also produced by multiple stacking and carbonization process,and the prepared composites exhibited a controlled heat transfer path,which can allow more versatility in the design of thermal management system. 展开更多
关键词 Carbon fiber Magnetic field Thermal management Thermally conductive composites
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