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首页> 外文期刊>CERAMICS INTERNATIONAL >Study on the influence mechanism of Mg2+ modification on vermiculite thermal expansion based on molecular dynamics simulation
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Study on the influence mechanism of Mg2+ modification on vermiculite thermal expansion based on molecular dynamics simulation

机译:MG2 +改性对基于分子动力学模拟的蛭石热膨胀影响机理研究

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摘要

The thermal insulating performance of expanded vermiculite is closely related to expansibility. A novel method of Mg2+ modification was proposed to improve the vermiculite expansion ratio. The modification process was characterised by energy dispersive X-Ray spectroscopy, X-ray diffraction, Fourier-transform infrared spectroscopy, thermogravimetric-differential scanning calorimeter and scanning electron microscopy. Moreover, the thermal expansion experiment was performed to investigate the expansion behaviours of Raw-V and Mg-V samples at various temperatures. The result indicated that the introduction of Mg2+ could increase the vermiculite interlayer water content through hydration interaction, and the expansion ratio increased 13.7% under the heating temperature of 900 degrees C after modification. To explain the interaction of magnesium ion and water molecules, a molecular dynamics model was developed, and the simulation results were validated using the binding energy calculation. The results of this study can provide a new perspective and theoretical guidance for the commercial process of vermiculite expansion.
机译:膨胀蛭石的绝热性能与可扩展性密切相关。提出了一种新的Mg2 +改性方法以改善蛭石膨胀比。通过能量分散X射线光谱,X射线衍射,傅里叶变换红外光谱,热重分差扫描量热计和扫描电子显微镜的改性过程的特征在于。此外,进行热膨胀实验以研究RAW-V和MG-V样品在各种温度下的膨胀行为。结果表明,Mg2 +的引入可以通过水合相互作用增加蛭石层间含水量,并且在修饰后,膨胀率在900℃的加热温度下增加13.7%。为了解释镁离子和水分子的相互作用,开发了分子动力学模型,使用结合能量计算验证了模拟结果。本研究的结果可以为蛭石膨胀的商业过程提供新的视角和理论指导。

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