China Plastics ›› 2024, Vol. 38 ›› Issue (5): 7-13.DOI: 10.19491/j.issn.1001-9278.2024.05.002

• Materials and Properties • Previous Articles     Next Articles

Studies on structure and properties of high⁃impact copolymerized polypropylene with high melt flow rate

GUO Minghai()   

  1. Sinopec Ningbo New Materials Research Institute Company Limited,Ningbo 315207,China
  • Received:2023-09-28 Online:2024-05-26 Published:2024-05-20

Abstract:

To improve the rigidity⁃toughness balance of high⁃impact copolymerized polypropylene with high melt flow rate (IPC⁃J), the ethylene content and the ethylene content in ethylene propylene rubber (EPR) were increased to 12.4 wt% and 54 wt%, respectively, by combination with the high⁃impact copolymerized polypropylene (IPC⁃H) technology. Meanwhile, the molecular segment structures and aggregation morphologies of IPC⁃J, IPC⁃H, IPC⁃1, and IPC⁃2 were investigated. The results indicated that the EPR content of IPC⁃J increased from 19.4 wt% to 22.8 wt%, its weight average molecular weight (Mw) decreased from 2.0×105 to 1.9×105 g/mol, its intrinsic viscosity increased from 1.80 to 1.86 dL/g, its molecular weight distribution index increased from 8.9 to 10.7, and the maximum Mw of EPR increased from 1.1×106 to 1.2×106 g/mol, compared to those of IPC⁃H. The relatively longer ethylene crystalline chains with a greater amount were beneficial to enlarging the dispersed particle size. This resulted in a transformation of the maximum proportion region from 0.3~0.6 to 0.6~0.9 μm, which promoted higher impact strength of 11.0 kJ/m² at 20 ℃ and 5.7 kJ/m² at -20 ℃. The rigidity⁃toughness balance of the IPC with a high melt index were fully optimized through increasing the ethylene content and the ethylene content of EPR, according to the production technology for 300⁃kt/a polypropylene without changing the Ziegler⁃Natta⁃type catalyst system.

Key words: impact copolymer polypropylene, impact strength, crystallization, successive self?nucleation and annealing

CLC Number: