Comparison of multi‐component and mono‐component intumescent flame retardants for thermoplastic polyurethane composites

Author:

Li Minghao12,Bi Siyi12ORCID,Chen Chunhui12,Hai Wenqing12,Jiang Ziyang12,Meng Qian12,Hao Enquan3,Li Hongjie3,Shao Huiqi24,Shao Guangwei12,Jiang Jinhua12,Chen Nanliang12

Affiliation:

1. Shanghai Frontier Science Research Center for Advanced Textiles, College of Textiles Donghua University Shanghai China

2. Engineering Research Center of Technical Textile, Ministry of Education, College of Textiles Donghua University Shanghai China

3. Zhejiang MSD Group Share Co., Ltd. Zhejiang China

4. Innovation Center for Textile Science and Technology Donghua University Shanghai China

Abstract

AbstractConventional intumescent flame retardant (IFR) is comprised of multiple components (acid, carbon, and gas source). In comparison, “all‐in‐one” design of mono‐component IFR is effective to impart the homogeneity to functional sources in polymer matrix, which is significant to improve the synergy against combustion. In this work, a core‐shell structured mono‐component IFR (MAPP@FDS) are prepared with ammonium polyphosphate (APP) and furfural‐derived Schiff base (FDS) and applied to modification of thermoplastic polyurethane (TPU). TPU composite with the as‐prepared mono‐component IFR (TPU/MAPP@FDS) exhibits V‐0 rating in UL‐94 test and a limiting oxygen index (LOI) value of 32.0%, with prominent bulkiness of carbonaceous layer. Cone calorimetry tests (CCTs) showed a significant reduction in total heat release (THR) and peak heat release rate (pHRR) for TPU/MAPP@FDS compared with the TPU composites with multi‐component IFR. By analyzing the morphology and composition of residual char, the flame‐retardant mechanism of TPU/MAPP@FDS is reasonably proposed. This work illustrates the superiority of the integration to prepare mono‐component IFR and provides a potential method in developing TPU composites with remarkable flame retardancy.Highlights TPU/MAPP@FDS achieves a LOI value of 32.0% and UL‐94 V‐0 rating. TPU/MAPP@FDS exhibits significantly enhanced flame retardancy compared with TPU composites incorporated multi‐component IFR. The synergy in multi‐component IFR is prominently strengthened.

Funder

Fundamental Research Funds for the Central Universities

Publisher

Wiley

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