Yun Fang, Lei Wang, Yi Sun, Kan Cheng, Tao Liu, Xueli Wang, Jianyong Yu, Yong He. Direct Solid State Polymerization and Structural Properties of High Heat Resistant Copolyamide PA56T[J/OL]. Acta polymerica sinica, 2025, 56.
Yun Fang, Lei Wang, Yi Sun, Kan Cheng, Tao Liu, Xueli Wang, Jianyong Yu, Yong He. Direct Solid State Polymerization and Structural Properties of High Heat Resistant Copolyamide PA56T[J/OL]. Acta polymerica sinica, 2025, 56. DOI: 10.11777/j.issn1000-3304.2025-25017.
and difficulty in increasing molecular weight during the direct solid state polymerization (DSSP) of high-temperature-resistant polyamides
this study first used dimethyl terephthalate (DMT) to react with excess 1
5-pentanediamine (PDA) and 1
6-hexanediamine (HMDA) to prepare diamides diamines 5T5 and 6T6. Then
5T5 and 6T6 were reacted with terephthalic acid (PTA) to form different compositions of 5T5T/6T6T mixed salts. Finally
a series of high-viscosity
high-temperature-resistant copolyamides PA56T were successfully synthesized through direct solid state polymerization from the mixed salts. The structure and properties of PA56T were systematically investigated using FTIR
NMR
DSC
and TGA. The results indicate that using diamides diamines as amide salts can effectively prevent the volatilization of diamines during the direct solid-state polymerization process
thereby significantly improving the yield
molecular weight
and quality of the high-temperature-resistant copolyamides. By changing the composition
the comprehensive properties of the copolyamide PA56T can be effectively regulated. Its melting point (Tm) first decreases and then increases with the increase in 6T content. Copolymerization enhances the thermal stability of the high-temperature-resistant polyamides. The copolymer PA56T-40
with 40 mol% 6T content exhibits excellent comprehensive properties