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柔性相变材料制备与封装技术的研究及应用

Research and Application of Preparation and Encapsulation Technology for Flexible Phase Change Materials
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摘要 面对全球能源需求不断攀升和生态可持续性的挑战,寻找高效的能源转换方法和发展节能技术变得至关重要。相变材料因其在固液转换过程中可以吸收和释放大量的潜热,已成为能量存储、温度调控和高效热管理领域的重要创新材料。柔性复合相变材料由于其能在变形条件下保持性能,被认为在未来智能设备和系统中具有重要应用前景。文中对柔性相变材料的研究进展、合成策略和功能化发展进行了深入探讨和评估。通过分析柔性相变材料在实际生活中的应用,阐述了在实现高效热管理和适应复杂应用环境方面的潜力和可能性,为柔性相变材料的未来发展方向和进一步探索提供了系统的理论指导。 In the face of the continuously increasing global energy demand and the challenge of ecological sustainability,the search for efficient energy conversion methods and the development of energy-saving technologies has become crucial.Phase change materials have become important innovative materials in the fields of energy storage,temperature regulation,and efficient thermal management due to their ability to absorb and release large amounts of latent heat during the solid-liquid transition process.Flexible composite phase change materials,due to their ability to maintain performance under deformation conditions,are considered to have significant application prospects in future smart devices and systems.This article provides an in-depth discussion and evaluation of the research progress,synthesis strategies,and functional development of flexible phase change materials.By analyzing the practical applications of flexible phase change materials in daily life,the potential and possibilities of achieving efficient thermal management and adapting to complex application environments are elucidated.This review provides a systematic theoretical guidance for the future development and further exploration of flexible phase change materials.
作者 杨柳 张少茜 饶中浩 YANG Liu;ZHANG Shaoxi;RAO Zhonghao(Hebei Engineering Research Center of Advanced Energy Storage Technology and Equipment,School of Energy and Environmental Engineering,Hebei University of Technology,Tianjin 300401;Hebei Key Laboratory of Thermal Science and Clean Energy Utilization,Tianjin 300401)
出处 《东北电力大学学报》 2024年第2期1-11,20,共12页 Journal of Northeast Electric Power University
基金 国家重点研发计划(2022YFB3806503)。
关键词 相变材料 能量储存 柔性特性 热管理 柔性应用 phase change materials energy storage flexible properties thermal management flexible applications
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