Strong and tough phthalonitrile PCB substrates with semi‐interpenetrating polymer network toughened by highly heat‐resistant poly(aryl ether nitrile)

腈 材料科学 邻苯二甲腈 乙醚 复合材料 芳基 聚合物 韧性 高分子化学 有机化学 化学 纳米技术 烷基 酞菁
作者
Hubing Xiang,Xiaoqing Liu,Xiaoqing Liu,Jialin Li,Xiaofang Feng,Lifen Tong,Shuning Liu,Xiaobo Liu,Xiaobo Liu
出处
期刊:Polymer Composites [Wiley]
卷期号:46 (S3) 被引量:5
标识
DOI:10.1002/pc.29958
摘要

Abstract The toughening of thermosetting resins by thermoplastic resins often comes at the cost of sacrificing heat resistance, which poses a great challenge for preparing the composites with high toughness and high heat resistance. In this work, a phenolphthalein‐type polyarylene ether nitrile (PP‐PEN) was synthesized and toughened bismaleimide‐triazine (BT) resins containing 4‐(4‐amino‐phenoxy) phthalonitrile (4‐APN) to prepare a series of strong and tough poly(BT/PEN) composites with a semi‐interpenetrating polymer network (SIPN). The results showed that the addition of PP‐PEN could significantly reduce the curing temperature of BT resin, and the curing temperature of poly(BT/10PEN) decreased to 233 from 258 °C. Moreover, the Gpoly(BT/PEN) composites reinforced with glass fibers exhibited outstanding heat resistance and mechanical properties. Specifically, the T g of Gpoly(BT/10PEN) increased to 281 °C from 262 °C, and the thermal expansion coefficient along the z‐axis reached 19 ppm. Impressively, the flexural strength and modulus of Gpoly (BT/10PEN) can reach 581.6 and 40 MPa, respectively, and the impact strength increased from 83.7 kJ/m 2 of BT resin to 132.0 kJ/m 2 due to the construction of the SIPN structure, which provides a good idea for preparing high‐strength and high‐toughness printed circuit board substrates with high glass transition temperature. Highlights Poly(BT/PEN)s showed a good processability with the curing temperature of 226 °C. Poly(BT/PEN)s exhibited two glass transition temperatures of 252 and 312 °C, suggesting the SIPN structure. The toughness of poly(BT/PEN)s was greatly improved by adding PP‐PEN, and the impact strength increased to 132.0 MPa from 83.7 MPa. The flexural strength and modulus of poly(BT/10PEN) increased to 581.6 MPa and 40.4 GPa, respectively.
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