Balanced Thermal Insulation, Flame-Retardant and Mechanical Properties of PU Foam Constructed via Cost-Effective EG/APP/SA Ternary Synergistic Modification

Author:

Li Hongfu12ORCID,Hou Longtao13,Liu Yunpeng12ORCID,Yao Zhiyu2,Liang Lixing4,Tian Dangxin25,Liu Chunhui25,Xue Junqiang25,Zhan Linshan25,Liu Yongqi25,Zhen Zhilu25,Niu Kangmin1

Affiliation:

1. School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China

2. Hebei Construction Group Corporation Limited, Baoding 071051, China

3. Hangzhou Hikvision Digital Technology Co., Ltd., Hangzhou 310052, China

4. Microelectronics and Information Materials Research Center, Hangzhou Innovation Institute, Beihang University, Hangzhou 310053, China

5. Hebei Province Prefabricated Building Technology Innovation Center, Baoding 071051, China

Abstract

To address the challenge of balancing the mechanical, thermal insulation, and flame-retardant properties of building insulation materials, this study presented a facile approach to modify the rigid polyurethane foam composites (RPUFs) via commercial expandable graphite (EG), ammonium polyphosphate (APP), and silica aerogel (SA). The resulting EG/APP/SA/RPUFs exhibited low thermal conductivity close to neat RPUF. However, the compressive strength of the 6EG/2APP/SA/RPUF increased by 49% along with achieving a V-0 flame retardant rating. The residual weight at 700 °C increased from 19.2 wt.% to 30.9 wt.%. Results from cone calorimetry test (CCT) revealed a 9.2% reduction in total heat release (THR) and a 17.5% decrease in total smoke production (TSP). The synergistic flame-retardant mechanism of APP/EG made significant contribution to the excellent flame retardant properties of EG/APP/SA/RPUFs. The addition of SA played a vital role in reducing thermal conductivity and enhancing mechanical performance, effectively compensating for the shortcomings of APP/EG. The cost-effective EG/APP/SA system demonstrates a positive ternary synergistic effect in achieving a balance in RPUFs properties. This study provides a novel strategy aimed at developing affordable building wall insulation material with enhanced safety features.

Funder

Fundamental Research Funds for the Central Universities of China

Hebei Construction Group Corporation Limited

Construction Group Corporation Limited

Publisher

MDPI AG

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