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Improving the tensile strength of continuous basalt fiber by mixing basalts

机译:通过混合玄武岩提高连续玄武岩纤维的拉伸强度

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摘要

SiO2 is a key factor that affects the tensile strength of continuous basalt fiber, as shown in a previous study. In the present work, to improve the tensile strength of continuous basalt fiber, basalts with a high SiO2 content were mixed with basalts with a low SiO2 content to obtain basalt mixtures with SiO2 contents ranging from 51 to 58 %. The filament tensile strength, melting properties (viscosity, upper-limit crystallization temperature and fiber-forming temperature) of basalt mixtures were investigated. The effects of the chemical composition, mineral components and glass melt homogeneity of basalt mixtures on the tensile strength of basalt fiber were studied, and the tensile strength and melting properties were compared between the basalt mixtures and the individual basalts. The basalt mixtures with high SiO2 contents exhibited higher filament tensile strengths than the individual basalts. However, when the SiO2 content of the basalt mixtures was similar to or less than the SiO2 content of the individual basalts, the filament tensile strength of the basalt mixtures was still higher, which was attributed to the change in the type and content of the mineral components and to the improvement of the glass melt homogeneity as a result of the optimized melting properties.
机译:SiO2是影响连续玄武岩纤维的拉伸强度的关键因素,如先前的研究所示。在本作工作中,为了提高连续玄武岩纤维的拉伸强度,将具有高SiO 2含量的玄武岩与具有低SiO 2含量的玄武岩混合,得到玄武岩混合物,SiO 2含量为51-58%。研究了玄武岩混合物的长丝拉伸强度,熔化性能(粘度,上限结晶温度和纤维成形温度和纤维成形温度)。研究了化学成分,矿物成分和玻璃熔体均匀性对玄武岩纤维拉伸强度的影响,比较了玄武岩混合物和各个玄武岩之间的拉伸强度和熔化性能。具有高SiO 2内容物的玄武岩混合物表现出比个体玄武岩更高的长丝拉伸强度。然而,当玄武岩混合物的SiO 2含量类似于或小于各个沼气的SiO 2含量时,玄武岩混合物的长丝拉伸强度仍然更高,这归因于矿物质的类型和含量的变化由于优化的熔融性能,组分和玻璃熔体均匀性的改善。

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