详细信息

苯并噁嗪-氨基稀释剂改性硅炔杂化树脂及其复合材料性能  ( EI收录)  

Properties of silicone-acetylene resin modified with ethynyl benzoxazine-amino diluent and its composite

文献类型:期刊文献

中文题名:苯并噁嗪-氨基稀释剂改性硅炔杂化树脂及其复合材料性能

英文题名:Properties of silicone-acetylene resin modified with ethynyl benzoxazine-amino diluent and its composite

作者:Shu, Changpeng[1]; Wang, Maoyuan[1]; Zhou, Quan[1]; Song, Ning[1]; Ni, Lizhong[1]

机构:[1] Key Laboratory for Special Polymer Materials and Related Technology, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai, 200237, China

年份:2020

卷号:37

期号:11

起止页码:2718

外文期刊名:Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica

收录:EI(收录号:20204709517725)

语种:中文

外文关键词:Blending - Compression molding - Silicones - Bending strength - Curing - Shear strength - Decomposition - Viscosity - Heat resistance

摘要:The poly (dimethylsilane-m-diacetylenyl phenyl) (PDMP) resin was modified by amino diluent (AD) and ethynyl benzoxazine (EB) resin. The modified blending PDMP-EB-AD resin was prepared according to PDMP:EB:AD mass ratio=5:1:1. The FTIR, DSC, dielectric analyzer (DEA), TGA were used to analyze the molecular structure, viscosity, curing process and heat resistance of the resin before and after modification. The test results show that —NH2 and —C≡CH in the AD and EB participate in the PDMP curing process. The curing temperature of the PDMP-EB-AD resin increases and the viscosity decreases. The thermal decomposition temperatures (Td5) of the PDMP-EB-AD resin at N2 and air are 539.5℃ and 518.7℃, respectively. The mass retention rates of the PDMP-EB-AD resin at 1 000℃ are 85.1% and 18.1%, respectively. The quartz fiber (QF)/(PDMP-EB-AD) composites were prepared by PDMP-EB-AD resin and QF by impregnation and compression molding methods. The adhesion between resin and fiber and the mechanical properties greatly improve. The flexural strength and interlaminar shear strength (ILSS) of the QF/(PDMP-EB-AD) composites at room temperature are 694.5 MPa and 41.9 MPa, respectively, which are 176.6% and 96.7% higher than the QF/PDMP composite under the same conditions, the flexural strength and ILSS at 250℃ are 319.5 MPa and 20.11 MPa, respectively. Copyright ?2020 Acta Materiae Compositae Sinica. All rights reserved.

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