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Updated: Jul 12, 2025

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墙壁自由能量配方对湿现象的影响:保守的艾伦-卡恩模型
Hongmin Zhang1,2, Yanchen Wu1,2, Fei Wang1,2
1Institute for Applied Materials-Microstructure Modelling and Simulation (IAM-MMS), Karlsruhe Institute of Technology (KIT), Straße am Forum 7, Karlsruhe 76131, Germany.
这项研究增强了Allen-Cahn模型的流体-固体相互作用,改善了接触角的预测,特别是在0°和180°附近. 修改后的模型可以更好地了解各种表面的湿现象.
科学领域:
- 表面科学是一门学科.
- 材料科学 材料科学 材料科学
- 计算物理 计算物理
背景情况:
- 卡恩墙体能量理论描述了流体-固体相互作用和湿现象.
- 现有的模型往往产生不同于散装的表面组成,限制了接触角的预测.
- 这种限制影响了湿模型的准确性,特别是在极端的接触角度.
研究的目的:
- 提高墙壁自由能源模型对湿现象的适应性和准确性.
- 为了解决预测接近0°和180°的接触角度的局限性.
- 调查体积保存对超性和水友性表面湿化行为的影响.
主要方法:
- 使用艾伦-卡恩模型对称地构建墙壁自由能量.
- 基于卡恩理论的流体-固体界面张力计算的修改.
- 一个半障碍墙免费能源的建议,以强制散装表面组成.
主要成果:
- 拟议的半障碍墙自由能量在相场模拟中显著提高了接近0°和180°的接触角度精度.
- 经过修改的界面张力计算,可以考虑来自扭曲组合配置的多余自由能量.
- 艾伦-卡恩模型中的体积保存术语显示,由于曲率效应,对超表面的影响更大.
结论:
- 增强的墙壁自由能源模型为湿现象提供了更准确的预测.
- 这项研究为超和超表面的湿行为提供了新的视角.
- 这些发现有助于更深入地了解表面对流体行为的影响.
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