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具有增强机械性能的阻燃聚磷酸铵改性植酸基硬质聚氨酯泡沫的制备

Fabrication of Flame-Retardant Ammonium Polyphosphate Modified Phytic Acid-Based Rigid Polyurethane Foam with Enhanced Mechanical Properties.

作者信息

Zhang Xu, Wang Zhaoqian, Ding Shuai, Wang Zhi, Xie Hua

机构信息

Liaoning Key Laboratory of Aircraft Fire Explosion Control and Reliability Airworthiness Technology, Shenyang Aerospace University, Shenyang 110136, China.

School of Safety Engineering, Shenyang Aerospace University, Shenyang 110136, China.

出版信息

Polymers (Basel). 2024 Aug 5;16(15):2229. doi: 10.3390/polym16152229.

Abstract

Ammonium polyphosphate (APP) and self-made nickel phytate (PANi) were used as modified materials to prepare green biomass rigid polyurethane foam (RPUF). The flame retardancy, thermal stability, smoke toxicity and mechanical properties of the modified RPUF were investigated by limiting oxygen index (LOI), a cone calorimetry (CONE) test, thermogravimetric analysis and a compression test. The results showed that the RPUF with 10 wt% APP (PANi/APP10) had the highest LOI of 26.5%. Its peak heat release rate (PHRR) and total heat release (THR) were reduced by 29.64% and 24.05% compared with PANi/APP0 without APP. And its smoke production rate (SPR) and total smoke release (TSR) decreased by 33.14% and 19.88%, respectively. Compared with pure RPUF, the compressive strength of PANi/APP10 was increased by 50%, mainly because APP itself was an ultra-fine powder, which was better compatible with the matrix and improved the hardness of the material. The results showed that the synergistic effect of the gas phase and the condensed phase mechanism could effectively improve the flame-retardant effect. The current research results provided a new strategy for the preparation of green and low-toxicity RPUF.

摘要

以聚磷酸铵(APP)和自制的植酸镍(PANi)为改性材料制备绿色生物质硬质聚氨酯泡沫(RPUF)。通过极限氧指数(LOI)、锥形量热法(CONE)测试、热重分析和压缩试验研究了改性RPUF的阻燃性能、热稳定性、烟雾毒性和力学性能。结果表明,含10 wt% APP的RPUF(PANi/APP10)的极限氧指数最高,为26.5%。与不含APP的PANi/APP0相比,其热释放峰值速率(PHRR)和总热释放量(THR)分别降低了29.64%和24.05%。其产烟速率(SPR)和总烟释放量(TSR)分别降低了33.14%和19.88%。与纯RPUF相比,PANi/APP10的压缩强度提高了50%,这主要是因为APP本身是一种超细粉末,与基体具有更好的相容性,提高了材料的硬度。结果表明,气相和凝聚相机制的协同作用能有效提高阻燃效果。当前的研究结果为制备绿色低毒RPUF提供了一种新策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8be4/11314824/e66c7c6b1e4a/polymers-16-02229-g001.jpg

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