欢迎登录材料期刊网

材料期刊网

高级检索

通过一种带功能基团的多嵌段聚合物 PB-MA-b-PGMA-b-PDMS-b-PGMA-b-PBMA[1](自制)与环氧树脂(TDE-85)在固化剂间苯二胺的作用下固化形成大分子聚合物,同时分别使用 Al2 O3和碳纤维(400)进行补强,进行不同配比对比实验,制备一种高模量阻尼复合材料,并研究了它的性能.多嵌段聚合物、环氧树脂与碳纤维补强剂之间的宏观相容性较好,尤其是加入碳纤维粉后,体系中3种组分协同作用,材料表现良好的阻尼性能,tanδ>0.3的温域约为50℃(70~120℃),且最大值达到1.2.还可以通过调节配方来获得不同性能的阻尼材料.制备的阻尼材料具有良好的热学性能,分解温度达到250℃.

With a functional group multiblock polymers through PBMA-b-PGMA-b-PDMS-b-PGMA-b-PBMA [1](self-made)and epoxy resin (TDE-85)in the curing agent curing two between benzene amine formed under the action of high molecular polymer.At the same time,using Al2 O3 and carbon fiber (400)strengthen it,make different ratio of contrast experiments,the preparation of a high modulus and damping of composite materials, and study its properties.Multiblock polymer,epoxy resin and carbon fiber between reinforcing agent macro good compatibility,especially with carbon fiber powder,three component synergy system,the material behaves good damping performance.The temperature range of tanδ>0.3 is about 50 ℃(70-120 ℃),and the maximum value reached 1.2.We also can be adjusted by the formula to obtain the damping materials with different properties. The damping material we prepared has good thermal properties,decomposition temperature reached 250 ℃.

参考文献

[1] Zhou Y X;Pan Y;Li Y J et al.ATRP synthesis and characterization of block copolymer PGMA-PBMA-PDMS-PBMA-PGMA[J].Polymer Materials Science &Engineering,2012,28(12):32-35.
[2] Patel RK;Bhattacharya B;Basu S .Effect of interphase properties on the damping response of polymer nano-composites[J].Mechanics research communications,2008(1/2):115-125.
[3] Wu S S .Research on the modification of damping rubber[J].Polymer Materials Science & Engineering,2001,17(1):156.
[4] Li Y D;Yu Q .Damping structure and high polymer damping materials[J].Material Science and Engineering,1995,13(2):1-13.
[5] Hou Y Z.Research on damping of fiber reinforced com-posite material[J].Rubber Resources Utilization,2007(6):21-30.
[6] 赵兴,李玲.国内外高聚物基复合材料阻尼特性研究动态[J].中国胶粘剂,2007(07):48-51.
[7] X. ZHOU;E. SHIN;K.W. WANG .Interfacial damping characteristics of carbon nanotube-based composites[J].Composites science and technology,2004(15):2425-2437.
[8] Hajime Kaneko;Kiyohiro Inoue;Yoichi Tominaga .Damping performance of polymer blend/organic filler hybrid materials with selective compatibility[J].Materials Letters,2002(1/2):96-99.
[9] Koleva M.;Petkov S.;Bechev C. .Characterization of polyester resins solidification process by the method of mechanical impedance[J].Polymer Testing,2000(5):551-558.
[10] 万勇军,顾宜,谢美丽,欧阳庆,刘小平,陆雯,王建华.聚氨酯/乙烯基酯树脂互穿聚合物网络阻尼性能的研究[J].功能高分子学报,2000(01):81-84,89.
[11] Douglas H J;Schafer F U .Polyurethane/polystyrene one-shot interpenetrating polymer networks with good damping ability:Transition broadening through cross-linking,internetwork grafting and compatibilization[J].Polymer Advanced Technology,1996,7(4):273-280.
[12] Yuan H G;Xie X F;Tang S Y et al.Evaluation of the interpenetrating polymer network damping performance[J].Synthetic Rubber Industry,1997,20(4):237-240.
[13] Zhou Y X;Chen X H;Hou Q L et al.Preparation and properties of grafted and non-grafted polyrethane/epoxy resin interpenetrating polymer networks[J].Journal of Functional Materials,2012,43(20):2777-2781.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%