首页> 外文期刊>Journal of Applied Polymer Science >Preparation and Characterization of Epoxidate Poly(1,2-butadiene)-Toughened Diglycidyl Ether Bisphenol-A Epoxy Composites
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Preparation and Characterization of Epoxidate Poly(1,2-butadiene)-Toughened Diglycidyl Ether Bisphenol-A Epoxy Composites

机译:环氧聚(1,2-丁二烯)-增韧二缩水甘油醚双酚A环氧复合材料的制备与表征

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摘要

By the oxidation of liquid poly(1,2-butadiene) (LPB) with H2O2/HCOOH, epoxidate poly(1,2-butadiene) (ELPB) was obtained as a toughening agent to prepare diglycidyl ether bisphenol-A (DGEBA) epoxy composites by using V115 polyamide(PA) as a cross-linking agent. DGEBA, ELPB, and the composites were effectively Cured by PA at 100 degrees C for 2 h followed by postcuring at 170 degrees C for 1 h. Thermal gravimetric analysis results in air and nitrogen atmosphere showed that the thermal stability of composites could be improved by the addition of ELPB. Compared with DGEBA/PA, the composites exhibited a decrease in strength at yield but an increase in strain at break with the increase in ELPB amount. The composite with 10% ELPB exhibited both thermal stability and tenacity superior to those of DGEBA/PA and composites with 5 and 20%, ELPB, respectively. The improvements in thermal and mechanical properties of composites depended on the formation of Inter Penetrating Networks (IPN) among DGEBA/PA/ELPB and their distributions in the matrix. At an appropriate ELPB amount, the IPN, mostly made of DGEBA/PA/ELPB, may be distributed more evenly in the matrix; less ELPB resulted in the formation of IPN mainly, made of DGFBA/PA; excessive addition of ELPB resulted in the local aggregation of ELPB/PA and phase separations. The toughening mechanism was changed from chemically forming IPN made of DGEBA/PA/ELPB to physically reinforcing DGEBA/PA by ELPB/PA with the increase in ELPB addition.
机译:通过用H2O2 / HCOOH氧化液态聚(1,2-丁二烯)(LPB),获得环氧化聚(1,2-丁二烯)(ELPB)作为增韧剂,制备二缩水甘油醚双酚A(DGEBA)环氧树脂V115聚酰胺(PA)作为交联剂的复合材料。 DGEBA,ELPB和复合材料通过PA在100摄氏度下有效固化2小时,然后在170摄氏度下后固化1小时。在空气和氮气气氛中的热重分析结果表明,添加ELPB可以提高复合材料的热稳定性。与DGEBA / PA相比,随着ELPB量的增加,复合材料的屈服强度降低,但断裂应变增加。 ELPB为10%的复合材料的热稳定性和韧性均优于DGEBA / PA和ELPB为5%和20%的复合材料。复合材料热力学性能的改善取决于DGEBA / PA / ELPB之间互穿网络(IPN)的形成及其在基体中的分布。在适当的ELPB量下,IPN(主要由DGEBA / PA / ELPB制成)可以更均匀地分布在矩阵中; ELPB较少导致IPN的形成,主要由DGFBA / PA制成; ELPB的过量添加导致ELPB / PA的局部聚集和相分离。随着ELPB添加量的增加,增韧机理从由DGEBA / PA / ELPB化学形成的IPN转变为通过ELPB / PA物理增强DGEBA / PA。

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