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磷酸对碳纤维与热塑性树脂PA6的阻燃性及界面粘附性的影响

The Effect of Phosphoric Acid on the Flame Retardancy and Interfacial Adhesion of Carbon Fiber with Thermoplastic Resin PA6.

作者信息

Kim Gyungha, Kim Daeup

机构信息

Carbon & Light Materials Application Group, Korea Institute of Industrial Technology, Jeonju 54853, Republic of Korea.

出版信息

Polymers (Basel). 2025 Jan 30;17(3):381. doi: 10.3390/polym17030381.

Abstract

This study investigated the effect of phosphoric acid treatment on carbon fibers to enhance their flame retardancy, the impact of carbon fiber surface treatment conditions on the interfacial adhesion between carbon fibers and PA6, and the chemical reaction mechanisms on the carbon fiber surface. Phosphoric acid treatment resulted in a flame-retardant effect, with a limited oxygen index of over 52.8%, and V0 level flame retardancy characteristics in the UL-94 test when the concentration exceeded 0.5 vol.%. When the treatment time was fixed at 30 min, the tensile strength increased by approximately 2%, and the interfacial shear strength (IFSS) increased by approximately 11% at 0.5 vol.% phosphoric acid, accompanied by an increase in hydroxyl (C-O), carbonyl (C=O), phosphate (P-O), and phosphoryl (P=O) groups. However, at concentrations higher than 0.5 vol.%, the tensile strength decreased by approximately 90%, and the IFSS decreased by approximately 12%, compared to the untreated nonwoven fabric. When the treatment time was varied at 0.5 vol.% phosphoric acid, both the tensile strength and IFSS increased continuously up to 10 min, with a 31% increase in tensile strength and a 17% increase in IFSS, along with an increase in O=C-O, P-O, and P=O groups, as well as surface energy. After 10 min, the tensile strength decreased by approximately 20%, while the IFSS and surface energy remained relatively unchanged.

摘要

本研究考察了磷酸处理对碳纤维阻燃性的影响、碳纤维表面处理条件对碳纤维与聚酰胺6(PA6)之间界面粘结力的影响以及碳纤维表面的化学反应机理。磷酸处理产生了阻燃效果,当浓度超过0.5体积%时,极限氧指数超过52.8%,在UL-94测试中具有V0级阻燃特性。当处理时间固定为30分钟时,在0.5体积%的磷酸浓度下,拉伸强度提高了约2%,界面剪切强度(IFSS)提高了约11%,同时羟基(C-O)、羰基(C=O)、磷酸酯(P-O)和磷酰基(P=O)基团增加。然而,与未处理的非织造布相比,当浓度高于0.5体积%时,拉伸强度下降了约90%,IFSS下降了约12%。当在0.5体积%的磷酸浓度下改变处理时间时,拉伸强度和IFSS在10分钟内持续增加,拉伸强度增加31%,IFSS增加17%,同时O=C-O、P-O和P=O基团以及表面能增加。10分钟后,拉伸强度下降了约20%,而IFSS和表面能保持相对不变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f677/11820676/57cfdeb4bbb0/polymers-17-00381-g001.jpg

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