Layer-by-layer assembled flame-retardant architecture toward high-performance carbon fiber composite

阻燃剂 材料科学 极限氧指数 复合材料 聚磷酸铵 复合数 涂层 环氧树脂 图层(电子) 化学工程 热解 工程类 烧焦
作者
Xiao-Hui Shi,Ying‐Jun Xu,Jia-Wei Long,Qing Zhao,Xiao‐Min Ding,Li Chen,Yu‐Zhong Wang
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:353: 550-558 被引量:126
标识
DOI:10.1016/j.cej.2018.07.146
摘要

Fire safety is a permanent challenge in carbon fiber (CF) epoxy resin (EP) composites, which largely restrict their application especially in high-performance fields with flame-retardant demands. Herein, an effective flame-retardant architecture consisting of branched polyethyleneimine (PEI) and ammonium polyphosphate (APP) was successfully fabricated on CFs surface through the facile layer-by-layer (LbL) assembly to achieve a bilayer polyelectrolytes coated CF ([email protected]), which did not only endow excellent flame retardance to the relevant composites (EP/([email protected])) with no additional flame retardants, but also maintained desirable mechanical properties. The as-prepared [email protected] were characterized by SEM-EDX, XPS and XRD, indicating that PEI/APP coating was successfully deposited on CFs surface with no damage to the structure of CF. The phosphorus-containing PEI/APP coating imparted high fire safety to the composite, exhibiting a high limiting oxygen index (LOI) value of 41.0%, V-0 rating in UL-94 V test with only 6 deposited bilayers on CFs, and the decrease of peak-heat release rate (PHRR) and total heat release (THR) by 33.5% and 22.5%, respectively, obtained from cone calorimetry. Moreover, thanks to the increased surface roughness and chemical bonds between [email protected] and EP matrix, satisfactory mechanical properties and glass transition temperature of the composite were obtained. Taking these advantages, this facile manufacturing method from layer-by-layer assembly toward superior flame retardance and favorable mechanical properties can bring more chances for advanced composites.
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