据RFI工艺用环氧树脂基树脂膜低温成膜性、高温流动性和浸渗性的技术性能要求,设计了在一定温度内具有低反应活性的GY6010型高粘度液态双酚A二缩水甘油醚环氧树脂、HT907型六氢邻苯二甲酸酐和DY062型苄基二甲胺树脂膜制备体系。根据等...据RFI工艺用环氧树脂基树脂膜低温成膜性、高温流动性和浸渗性的技术性能要求,设计了在一定温度内具有低反应活性的GY6010型高粘度液态双酚A二缩水甘油醚环氧树脂、HT907型六氢邻苯二甲酸酐和DY062型苄基二甲胺树脂膜制备体系。根据等当量反应计算理论和浇注体的力学性能,确定了树脂膜制备体系的最佳混合比例,利用加热聚合、流延成膜和快速冷却方法,制备了具有低固化度的BS-1型环氧树脂基树脂膜。经测试该树脂膜成膜性、弯曲性良好;在80℃的融渗温度下粘度为645 mPa.s,低粘度区域宽度(粘度小于1 000 mPa.s)达25 m in,凝胶时间达56 m in。采用该树脂膜制备的RFI叠层板试件空隙含量(0.8%)极低,与模压试件相比,RFI试件拉伸强度、弯曲强度和层间剪切强度分别提高4.57%、6.26%和21.88%。展开更多
Phenolic resin(PF) and nano-SiO2 were used to improve the curing property and high humidity resistance of epoxy resin (EP) and methyl nadic anhydride (MNA) resistor paint, respectively. Hydrogen bonds, formed between ...Phenolic resin(PF) and nano-SiO2 were used to improve the curing property and high humidity resistance of epoxy resin (EP) and methyl nadic anhydride (MNA) resistor paint, respectively. Hydrogen bonds, formed between phenolic resin and nano-SiO2 in alcohol, made nano-SiO2 disperse easily in EP/MNA paint through phenolic resin without being treated by supersonic vibration. When the mass ratio of PF to EP in paint is 3:7, the formed composite paint film can be cured in 2 min at 170 ℃ . When the mass ratio of nano-SiO2 to PF in paint is 3:100, the property of high humidity resistance of the composite paint is the best, meeting the requirement of varying ratio of resistance less than 0.1% after experiment on high humidity resistance. SEM analysis shows the surface of the composite paint film is smooth, glassy, tight and homogeneous, without acicular air holes.展开更多
基金National Natural Science Foundation of China(11834012,51620105014,51572210,51521001)National Key Research and Development Plan of China(2018YFB0703600)
文摘据RFI工艺用环氧树脂基树脂膜低温成膜性、高温流动性和浸渗性的技术性能要求,设计了在一定温度内具有低反应活性的GY6010型高粘度液态双酚A二缩水甘油醚环氧树脂、HT907型六氢邻苯二甲酸酐和DY062型苄基二甲胺树脂膜制备体系。根据等当量反应计算理论和浇注体的力学性能,确定了树脂膜制备体系的最佳混合比例,利用加热聚合、流延成膜和快速冷却方法,制备了具有低固化度的BS-1型环氧树脂基树脂膜。经测试该树脂膜成膜性、弯曲性良好;在80℃的融渗温度下粘度为645 mPa.s,低粘度区域宽度(粘度小于1 000 mPa.s)达25 m in,凝胶时间达56 m in。采用该树脂膜制备的RFI叠层板试件空隙含量(0.8%)极低,与模压试件相比,RFI试件拉伸强度、弯曲强度和层间剪切强度分别提高4.57%、6.26%和21.88%。
基金Supported by Science and Technology Committee of Tianjin(No06YFGPGX08400)
文摘Phenolic resin(PF) and nano-SiO2 were used to improve the curing property and high humidity resistance of epoxy resin (EP) and methyl nadic anhydride (MNA) resistor paint, respectively. Hydrogen bonds, formed between phenolic resin and nano-SiO2 in alcohol, made nano-SiO2 disperse easily in EP/MNA paint through phenolic resin without being treated by supersonic vibration. When the mass ratio of PF to EP in paint is 3:7, the formed composite paint film can be cured in 2 min at 170 ℃ . When the mass ratio of nano-SiO2 to PF in paint is 3:100, the property of high humidity resistance of the composite paint is the best, meeting the requirement of varying ratio of resistance less than 0.1% after experiment on high humidity resistance. SEM analysis shows the surface of the composite paint film is smooth, glassy, tight and homogeneous, without acicular air holes.