Wang Zhiguo, Wang Chengzhu, Gao Yuebin, Li Zhao, Shang Yu, Li Haifu
College of New Energy, Xi'an Shiyou University, Xi'an 710065, China.
Research Institute of Petroleum Exploration & Development, PetroChina, Beijing 100083, China.
Polymers (Basel). 2023 Sep 19;15(18):3818. doi: 10.3390/polym15183818.
Porous thermal insulation materials (PTIMs) are a class of materials characterized by low thermal conductivity, low bulk density and high porosity. The low thermal conductivity of the gas enclosed in their pores allows them to achieve efficient thermal insulation, and are they among the most widely used and effective materials in thermal insulation material systems. Among the PTIMs, polyurethane foam (PUF) stands out as particularly promising. Its appeal comes from its multiple beneficial features, such as low density, low thermal conductivity and superior mechanical properties. Such attributes have propelled its broad application across domains encompassing construction, heterogeneous chemical equipment, water conservation and hydropower, and the aviation and aerospace fields. First, this article outlines the structure and properties of porous thermal insulation PUF materials. Next, it explores the methods of preparing porous thermal insulation PUF materials, evaluating the associated advantages and disadvantages of each technique. Following this, the mechanical properties, thermal conductivity, thermal stability, and flame-retardant characteristics of porous thermal insulation PUF materials are characterized. Lastly, the article provides insight into the prospective development trends pertaining to porous thermal insulation PUF materials.
多孔隔热材料(PTIMs)是一类具有低导热率、低堆积密度和高孔隙率特点的材料。其孔隙中封闭气体的低导热率使其能够实现高效隔热,并且它们是隔热材料系统中应用最广泛、最有效的材料之一。在PTIMs中,聚氨酯泡沫(PUF)表现得尤为突出。它的吸引力源于其多种有益特性,如低密度、低导热率和优异的机械性能。这些属性推动了它在建筑、异构化学设备、水利水电以及航空航天等领域的广泛应用。首先,本文概述了多孔隔热PUF材料的结构和性能。接下来,探讨了制备多孔隔热PUF材料的方法,并评估了每种技术的优缺点。在此之后,对多孔隔热PUF材料的机械性能、导热率、热稳定性和阻燃特性进行了表征。最后,本文深入探讨了多孔隔热PUF材料未来的发展趋势。