Studies on thermoset blend of bismaleimide having multiple swivel groups and biscyanate ester

Dhanalakshmi J, S. S, S. S, C. Vijayakumar
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Abstract

The materials 2,2-bis [4-(4-maleimidophenoxy phenyl)] propane (BMIX) and bisphenol-A based cyanate ester (BCY) were synthesized. The monomers BMIX and BCY were physically blended (BMCY) in 1:1 mol ratio. The materials BMIX, BCY and BMCY were thermally polymerized and the structural characterisation of the materials was done using Fourier transform infrared spectrophotometer (FTIR). The curing characteristics of BMIX, BCY and its blend (BMCY) were investigated using differential scanning calorimeter (DSC). The blend BMCY shows considerable differences in the thermal curing behaviour as evidenced by the DSC studies. Blending BCY with BMIX drastically reduces the melting temperature, curing onset temperature and the amount of heat liberated during thermal curing. The thermal stabilities of the crosslinked network polymers (PBMIX, PBCY and PBMCY) were investigated using thermogravimetric analyser (TGA). Detailed TGA studies indicated that the PBMCY shows better thermal stability than the PBMIX and PBCY. The DSC and TG curves indirectly hint about the possible reaction between BMIX and BCY during thermal curing. Woven glass fibre reinforced laminates were prepared using BMIX, BCY and BMCY by solution impregnation followed by drying and compression moulding. The glass laminate having BMCY as the matrix resin showed much better mechanical property (tensile strength) compared to the laminate made using BMIX as the matrix resin.
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双马来酰亚胺与双氰酸酯热固性共混物的研究
合成了2,2-二[4-(4-马来酰亚胺氧基苯基)]丙烷(BMIX)和双酚a基氰酸酯(BCY)。单体BMIX和BCY以1:1的摩尔比物理共混(BMCY)。对BMIX、BCY和BCY材料进行了热聚合,并用傅里叶变换红外分光光度计(FTIR)对材料进行了结构表征。采用差示扫描量热仪(DSC)研究了BMIX、BCY及其共混物(BMCY)的固化特性。DSC研究表明,共混物BMCY在热固化行为方面表现出相当大的差异。BCY与BMIX的混合大大降低了熔化温度、固化起始温度和热固化过程中释放的热量。用热重分析仪(TGA)研究了交联网络聚合物(PBMIX、PBCY和PBCY)的热稳定性。详细的热重分析表明,PBCY比PBMIX和PBCY具有更好的热稳定性。DSC和TG曲线间接提示了BMIX和BCY在热固化过程中可能发生的反应。以BMIX、BCY、BCY为原料,经溶液浸渍、干燥、模压成型,制备了玻璃纤维编织增强层压板。以BMCY为基体树脂的玻璃层压板比以BMIX为基体树脂的层压板具有更好的机械性能(抗拉强度)。
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