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1)  curing reaction
固化反应
1.
Study on curing reaction of water borne epoxy resin system;
水性环氧树脂固化反应的研究
2.
Study on the curing reaction and thermal decomposition kinetics of poly(2,6-dimethyl-1,4-phenylene ether)/epoxy systems;
聚苯醚/环氧树脂体系的固化反应和热分解动力学研究
3.
Study on curing reaction and kinetics of modified BMI/benzoxazine resin;
改性BMI/苯并噁嗪树脂的固化反应及其动力学研究
2)  cure reaction
固化反应
1.
Effect of nano Si_3N_4 on the cure reaction of epoxy resin
纳米氮化硅对环氧树脂固化反应的影响研究
2.
Study on cure reaction of epoxy-phenolic aldehyde resin catalyzed by triphenylphosphine
三苯基膦催化环氧-酚醛树脂的固化反应研究
3.
The cure reaction and thermal properties of a novel dicyanate ester resin containing naphthalene ring were characterized by differential scanning calorimetry(DSC) and thermogravimetric analysis(TGA).
采用差示扫描量热(DSC)和热失重分析(TGA)研究了含萘环结构的氰酸酯树脂的固化反应和耐热性能。
3)  co-curing behavior
共固化反应
1.
The co-curing behavior and product structures of the novel bismaleimide and dicyanate blends were studied by the differential scanning calorimetry (DSC) and in-situ FT-IR, and according to the results of the thermogravimetric analysis (TGA) in N2, the thermal properties of bis.
合成出了新型含有萘环和醚键结构的双马来酰亚胺和氰酸酯单体,通过元素分析(EA)、傅立叶变换红外光谱(FT-IR)及核磁共振(1H-NMR)等手段对其进行表征分析,同时,用差示扫描量热法(DSC)、原位FT-IR对新型BMPN/DNCY树脂体系的共固化反应机理以及固化物结构进行了研究,并采用热失重法(TGA)分析该树脂在氮气条件下的耐热性能。
2.
The co-curing behavior and structure of co-curing product of different low brominated epoxy/cyanate ratio were studied by DSC and FTIR, and the properties of their laminates were also discussed.
用差示扫描量热仪(DSC)、傅立叶交换红外光谱(FT-IR)对不同配比的低溴环氧/氰酸酯树脂的共固化反应机理以及固化物的结构特征进行了研究,同时测定和讨论了其层压板的耐热性和介电性能等。
4)  cure reactions
固化反应性
1.
The cure reactions of dicyclopentandiene bisphenol cyanate ester(DCPDCE) associated with an epoxy resin(2,2—bis(4—glycidyloxy phenyl) propane) were investigated using gel test,FTIR and DSC dynamic scanning at different stoichiometric ratios.
采用凝胶试验、FTIR和DSC等手段研究了环氧E-51与双环戊二烯型氰酸酯(DCPDCE)共聚体系的固化反应性以及阶梯固化过程中—OCN基、三嗪环、唑啉、噁唑啉酮的变化情况。
5)  reaction curing agent
反应固化剂
6)  solid-solid state chemical reaction
固-固化学反应
1.
Nanometer ZrO2 and doped ZrO2 were prepared by solid-solid state chemical reaction under proper technological conditions.
对固-固化学法制备前驱物进行了热力学分析,证明了在低温球磨过程中固-固化学反应能够自发进行。
补充资料:反应素性变态反应


反应素性变态反应


见"I型变态反应"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条