纤维用玄武岩熔融过程中的晶相转变研究
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P619.22+1;TQ343.4

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四川省自然科学基金项目(2023NSFSC0291); 海南省地质矿业集团有限公司技术开发(委托)项目(80303-AH20240296)


Study on crystal phase transition during the melting process of basalt for fiber
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    摘要:

    玄武岩纤维是玄武岩或成分相近的其他岩石经高温熔融后拉制而成的一种高性能纤维。纤维制备时熔体的均质性直接影响着纤维性能,但玄武岩熔融过程中晶相转变的动态过程尚未明确。本文通过高温熔融实验,结合X射线衍射分析(XRD)、扫描电镜显微分析(SEM)以及差示扫描量热分析(DSC),研究了海南岛纤维用玄武岩的熔融行为。结果表明,空气气氛下样品在室温至113℃脱去吸附水,804~849℃蒙皂石熔融, 1 075~1 193℃假板钛矿、单斜辉石及An含量较低的斜长石大量熔融,1 220~1 297℃富An斜长石与赤铁矿熔融。各矿物组分基本按照熔点由低到高依次熔融,但熔融过程中会发生氧化反应生成赤铁矿与假板钛矿,使得玄武岩完全熔融温度升高约120℃。赤铁矿的晶粒尺寸随温度升高明显增大,推测是高温下晶体再生长所导致。本研究为纤维用玄武岩熔制工艺优化提供了理论依据。

    Abstract:

    Basalt fiber, a type of high-performance fiber, is produced by drawing from basalt or rocks of similar compositions after high-temperature melting. The homogeneity of the melt during fiber preparation critically determines fiber quality, yet the dynamic phase transition process during basalt melting remains poorly understood. This study investigated the melting behavior of Hainan Island basalt for fiber production through high-temperature melting experiments, combined with X-ray diffraction (XRD), scanning electron microscopy (SEM), and differential scanning calorimetry (DSC) analyses. The results showed that under an air atmosphere, the sample lost adsorbed water from room temperature to 113℃, smectite melted at 804~849℃, pseudobrookite, clinopyroxene and plagioclase with low-An melted in large quantities at 1 075~1 193℃, and high-An plagioclase and hematite melted at 1 220~1 297℃. The various mineral components melted in order of melting point from low to high, but during the melting process, oxidation reactions occurred to produce hematite and pseudobrookite, causing the complete melting temperature of basalt to increase by about 120℃. The grain size of hematite increased significantly with increasing temperature, which was attributed to crystal regrowth at high temperatures. This study provides a theoretical basis for optimizing the melting process of basalt for fibers.

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李珎,徐冠立,何政伟,等, 2025. 纤维用玄武岩熔融过程中的晶相转变研究[J]. 岩石矿物学杂志, 44(5):1217~1224.
LI Zhen, XU Guan-li, HE Zheng-wei, et al, 2025. Study on crystal phase transition during the melting process of basalt for fiber[J]. Acta Petrologica et Mineralogica, 44(5): 1217~1224.

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  • 收稿日期:2024-12-23
  • 最后修改日期:2025-07-23
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  • 在线发布日期: 2025-09-25
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