The effect of adding chitin on the physical‐mechanical properties of polyurethane foam

Author:

Doan Trang Tran Y1,Zenitova L.A.2,Huong Ta Thi1,Hanh Do Thi3,Dung Ha Thi3,Vinh Mac The3

Affiliation:

1. HaUI Institute of Technology (HIT), Hanoi University of Industry HaUI 298, Cau Dien, Minh Khai, Bac Tu Liem Hanoi 10000 Viet Nam

2. Department of Synthetic Rubber Technology, Kazan National Research Technological University 68, Karla Marksa Kazan Tatarstan 420015 Russian

3. Department of Chemical Technology, Hanoi University of Industry HaUI 54, Tay Tuu, Bac Tu Liem Hanoi 10000 Viet Nam

Abstract

AbstractThis study uses chitin as a filler for a polyurethane composite foam. The obtained polymer composite materials (PCM) are examined the technological parameters of the foaming (start time, rise time, and apparent density), the physical‐mechanical properties (the compressive stress, compression set, resilience), and the cross‐link density. The results present that the chitin‐containing PCM with a filler ratio of 10% has no significant difference in the technological parameters of the foaming and the physical‐mechanical properties. However, the physical‐mechanical properties of elastic polyurethane foam (PUF)‐chitin materials tend to change less than the semi‐rigid PCMs. Furthermore, the cross‐link density of obtained PCMs is increased compared with the blank PUFs due to an increase in the number of bonds between components in the polymer chain. Scanning electron microscopy analysis showed that the PCM with the filling has a larger pore size and a number of closed cells, and the pore's surface is rougher than the blank PUF. Waste‐containing PCMs are developed to reduce the amount of solid waste in the environment. As a result, these PCMs became denser and stronger while reducing their elasticity and becoming heavier. Thus, the process of synthesis of chitin‐containing PCM, using and recycling waste PCM, is circular.

Publisher

Wiley

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