Li Jianlin, Yi Yong, Wang Chunhua, Lu Weijian, Liao Mingxi, Jing Xin, Wang Wenzhi
National & Local Joint Engineering Research Center for Advanced Packaging Material and Technology, Hunan University of Technology, Zhuzhou 412007, China.
Key Laboratory of Advanced Packaging Materials and Technology of Hunan Province, Hunan University of Technology, Zhuzhou 412007, China.
Polymers (Basel). 2024 Feb 22;16(5):599. doi: 10.3390/polym16050599.
Polyamide 66 was extensively utilized in various applications contributed by its excellent mechanical performance and outstanding durability. However, its high crystallinity renders it to have low transparency, which seriously limits its application in optical devices. Herein, a highly transparent polyamide (PA) 66-based copolymer was reported using 4,4'-diaminodicyclohexylmethane (PACM), adipic acid, and polyamide 66 salt as the reaction monomers. Wide-angle X-ray diffraction (WAXD) analysis revealed that the crystal phase of the synthesized PA66/PACM6 displayed a clear transition from to as the PACM6 increased accompanied by a decreased intensity in the diffraction peak of the copolymer, whose transmittance was successfully adjusted reaching as high as 92.5% (at 550 nm) when the PACM6 was 40 wt%. Moreover, the copolymer with a higher content of PACM6 exhibited larger toughness. On the other hand, the biaxially oriented films of PA66/PACM6 (20 wt%) were also prepared, and it was found that the transparency of the PA66/PACM6 copolymer could be further enhanced via adjusting the stretching ratio of the film. Furthermore, the mechanical strength of the biaxially oriented PA66/PACM6 was also improved with the increase in the orientation degree in the stretching process, indicating that the physical properties of the transparent PA66 were significantly influenced by its alicyclic structure, and the introduction of PACM into PA66 was capable of effectively improving the optical and crystalline characteristics of PA66, revealing that the synthetic strategy has great potential for guiding the design and development of transparent polyamide materials.
聚酰胺66因其优异的机械性能和出色的耐久性而被广泛应用于各种领域。然而,其高结晶度使其透明度较低,这严重限制了其在光学器件中的应用。在此,报道了一种使用4,4'-二氨基二环己基甲烷(PACM)、己二酸和聚酰胺66盐作为反应单体的高透明聚酰胺(PA)66基共聚物。广角X射线衍射(WAXD)分析表明,随着PACM6含量的增加,合成的PA66/PACM6的晶相从 清晰转变为 ,同时共聚物衍射峰强度降低,当PACM6为40 wt%时,其透光率成功调整至高达92.5%(在550 nm处)。此外,PACM6含量较高的共聚物表现出更大的韧性。另一方面,还制备了PA66/PACM6(20 wt%)的双轴取向薄膜,发现通过调整薄膜的拉伸比可以进一步提高PA66/PACM6共聚物的透明度。此外,双轴取向PA66/PACM6的机械强度也随着拉伸过程中取向度的增加而提高,表明透明PA66的物理性能受到其脂环族结构的显著影响,将PACM引入PA66能够有效改善PA66的光学和结晶特性,表明该合成策略在指导透明聚酰胺材料的设计和开发方面具有巨大潜力。