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基于葡萄糖酸钙的阻燃剂,可同时实现环氧树脂的高效防火安全性和机械增强。

Calcium gluconate-based flame retardant towards simultaneously high-efficiency fire safety and mechanical enhancement for epoxy resin.

机构信息

Institute of Functional Textiles and Advanced Materials, National Engineering Research Center for Advanced Fire-Safety Materials D & A (Shandong), Qingdao Key Laboratory of Flame-Retardant Textile Materials, College of Textiles and Clothing, Qingdao University, Ningxia Road, 308, Qingdao 266071, China.

Institute of Functional Textiles and Advanced Materials, National Engineering Research Center for Advanced Fire-Safety Materials D & A (Shandong), Qingdao Key Laboratory of Flame-Retardant Textile Materials, College of Textiles and Clothing, Qingdao University, Ningxia Road, 308, Qingdao 266071, China.

出版信息

Int J Biol Macromol. 2024 Apr;264(Pt 1):130409. doi: 10.1016/j.ijbiomac.2024.130409. Epub 2024 Feb 27.

Abstract

Flame retardants containing biomass receive growing interest in environmental friendliness and sustainability but usually face the low flame-retardant efficiency and deterioration on mechanical property of matrix. Herein, a calcium gluconate-based flame retardant (CG@APP) was chemically prepared using calcium gluconate (CG) and ammonium polyphosphate (APP) via ion exchange reaction, and enabled the excellent fire safety and mechanical enhancement for epoxy resin (EP). The resulted EP composites containing 6 wt% CG@APP (EP/CG@APP6) exhibited V-0 ratings in UL-94 test. Furthermore, with respect to EP/APP6, the peak of heat release rate (pHRR) and peak of smoke production rate (pSPR) of EP/CG@APP6 decreased by 70.5 % and 50.0 %, respectively. The well synergistic flame-retardant mechanism of CG@APP between gaseous and solid phases was revealed to generate denser and more continuous charring residuals, which could do well work on insulation for heat transfer and fuel diffusion. In addition, the shell rich in hydroxyl group and Ca on the surface of CG@APP well enhanced the interface compatibility through the hydrogen bond and coordinated bond, thus the tensile strength, flexural strength and impact strength of EP/CG@APP6 increased by 18.2 %, 4.5 % and 9.1 % compared with pure EP, respectively. This work provided a simple and sustainable way to construct excellent fire-safety composites.

摘要

含生物质的阻燃剂因其环境友好性和可持续性而受到越来越多的关注,但通常面临着阻燃效率低和基体力学性能恶化的问题。在此,通过离子交换反应,使用葡萄糖酸钙(CG)和多聚磷酸铵(APP)合成了一种葡萄糖酸钙基阻燃剂(CG@APP),使环氧树脂(EP)具有优异的防火安全性和机械增强性能。含有 6wt% CG@APP 的 EP 复合材料(EP/CG@APP6)在 UL-94 测试中达到 V-0 等级。此外,与 EP/APP6 相比,EP/CG@APP6 的热释放速率峰值(pHRR)和最大烟生成速率(pSPR)分别降低了 70.5%和 50.0%。揭示了 CG@APP 在气相和固相之间的协同阻燃机制,生成更致密、更连续的炭层残留物,从而在隔热、阻止热传递和燃料扩散方面发挥良好作用。此外,CG@APP 表面富含羟基和 Ca 的壳层通过氢键和配位键增强了界面相容性,因此 EP/CG@APP6 的拉伸强度、弯曲强度和冲击强度分别比纯 EP 提高了 18.2%、4.5%和 9.1%。这项工作为构建优异的防火安全复合材料提供了一种简单且可持续的方法。

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