Kim Jeong-Dae, Kim Jeong-Hyeon, Lee Dong-Ha, Yeom Dong-Ju, Lee Jae-Myung
Department of Naval Architecture and Ocean Engineering, Pusan National University, Busan 46241, Korea.
Hydrogen Ship Technology Center, Pusan National University, Busan 46241, Korea.
Materials (Basel). 2021 Jan 18;14(2):446. doi: 10.3390/ma14020446.
Polyisocyanurate foam (PIF) has been adopted as a liquefied natural gas (LNG) insulating material owing to its various mechanical merits such as high structural stability and mechanical strength, and excellent insulating ability. In an attempt to increase the mechanical strength of PIF, chopped-glass-fiber-reinforced polyisocyanurate foam (CGR-PIF) was synthesized by adding chopped glass fibers to polyol and isocyanate, which are the raw materials used in the polymerization process for producing PIF. The main objective is to closely observe the compression material characteristics of PIF and CGR-PIF in terms of the cryogenic temperature. Therefore, compressive tests were conducted at cryogenic temperature including low temperatures, and microscopic images were obtained to analyze the cell size and distribution that affects the mechanical and thermal properties of the foam. Furthermore, recovery ratio and weight loss which are important factors of brittle fracture were evaluated, and the applicability of the foams to a cryogenic environment was evaluated. Finally, thermal conductivity, an important parameter of insulation, was evaluated. The obtained results confirm that the compressive strength of CGR-PIF significantly increases at cryogenic temperatures; moreover, a relatively higher thermal conductivity was observed in the case of CGR-PIF as compared to that of PIF owing to the chopped glass fibers.
聚异氰脲酸酯泡沫(PIF)因其具有多种机械性能优点,如高结构稳定性、机械强度以及出色的隔热能力,已被用作液化天然气(LNG)的隔热材料。为了提高PIF的机械强度,通过向多元醇和异氰酸酯中添加短切玻璃纤维合成了短切玻璃纤维增强聚异氰脲酸酯泡沫(CGR-PIF),多元醇和异氰酸酯是生产PIF聚合过程中使用的原材料。主要目的是在低温条件下密切观察PIF和CGR-PIF的压缩材料特性。因此,在包括低温在内的低温条件下进行了压缩试验,并获取微观图像以分析影响泡沫机械性能和热性能的泡孔尺寸和分布。此外,评估了作为脆性断裂重要因素的恢复率和重量损失,并评估了这些泡沫在低温环境中的适用性。最后,评估了作为隔热重要参数的热导率。所得结果证实,CGR-PIF的抗压强度在低温下显著提高;此外,由于短切玻璃纤维的存在,与PIF相比,CGR-PIF的热导率相对较高。