预浸渍纤维中的单马来酰亚胺和双马来酰亚胺树脂

H. Horacek, Am Wiesenrain Austria A Puchenau
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引用次数: 1

摘要

用含共聚物的单马来酰亚胺和双马来酰亚胺溶液预浸渍纤维。单独的亚酰亚胺聚合成的树脂断裂能太低。在亚甲基二苯胺或苯胺存在下,二苯基亚甲基双马来酰亚胺通过迈克尔加成反应生成等摩尔加成产物。用这些添加物单独或与阻燃剂联合对纤维进行预浸,得到b型预浸料,固化后具有较高的玻璃化温度和足够的断裂能。2.5 mol二苯基亚甲基双马来酰亚胺和1mol亚甲基二苯胺或1mol苯胺在350℃和380℃的玻璃化温度下反应,断裂能分别为75和100J/ m2。树脂不含致癌物或对血液有害的游离胺。以亚甲二胺和顺丁二酸酐为原料进行一锅反应是可行的,而且更经济。由于聚合的双马来酰亚胺在侧链上具有亚胺键,因此严格地说,它们是非主链上有亚胺键的聚酰亚胺。二苯基亚甲基双马来酰亚胺和苯乙烯共聚物反应成不溶性交联聚合物。用2-溴苯基马来酰亚胺和苯乙烯的等摩尔混合物预浸渍纤维。经285℃玻璃温度固化后,获得了足够的断裂能。随着燃烧热的增加,耐热树脂表现出较高的极限氧指数。差示扫描量热法测定了温度和玻璃化转变热,结果表明,当焓增大、熵减小时,玻璃化温度升高,而二苯基双马来酰亚胺和2-溴苯基马来酰亚胺具有适合分子间力和位阻的大侧基,可以达到这一目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mono- and Bis- Maleimide Resins in Preimpregnated Fibres
: Fibres are preimpregnated by solutions of mono- and bis-maleimides with comonomers. Imides alone polymerize to resins with too low energies of fracture. In the presence of Methylene dianiline or Aniline Diphenylmethylenebismaleimide reacts via Michael addition to equimolar addition products. When fibres are preimpregnated with these addition compounds alone or in combination with flame retardants, B-prepregs are obtained, which after curing show high glass temperatures and sufficient energies of fracture. 2.5 moles of Diphenylmethylene bismaleimide and 1mol Methylene dianiline or 1mole Aniline react to resins with glass temperatures of 350 and 380°C and energies of fracture of 75 and 100J/m 2 . The resins contain no carcinogen or blood harming free amines. A one pot reaction starting from Methylene dianiline and Maleic anhydride is possible and more economic. As polymerized bismaleimides possess their imide bonds in the side chain, they are strictly spoken no polyimides with imide bonds in the main chain. Diphenylmethylenebismaleimide and styrene as copolymer react to an insoluble crosslinked polymer. Fibres are preimpregnated with equimolar mixtures of 2- Bromophenylmaleimide and styrene. After curing laminates with 285°C glass temperature and sufficient energies of fracture are obtained. The heat resistant resins are charring polymers and display higher Limiting Oxygen Indices, when the heats of combustion are increased. Differential Scanning Calorimetry determines the temperatures and the heats of glass transition, which indicate that the glass temperature is raised, when the enthalpy is increased and the entropy reduced, which is achievable by Diphenylbismaleimide and 2- Bromophenylmaleimide with their large side groups appropriate for intermolecular forces and steric hindrance.
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