Orlov Alexey, Konstantinova Anastasia, Korotkov Roman, Yudaev Pavel, Mezhuev Yaroslav, Terekhov Ivan, Gurevich Leonid, Chistyakov Evgeniy
Department of Chemical Technology of Plastics, Mendeleev University of Chemical Technology of Russia, Miusskaya Sq. 9, 125047 Moscow, Russia.
Prepreg-ACM JSC 42, Bldg. 13, Volgogradskiy Prospekt, 109316 Moscow, Russia.
Polymers (Basel). 2022 Aug 31;14(17):3592. doi: 10.3390/polym14173592.
A method for the synthesis of an amine-containing epoxy resin curing agent by dissolving hexakis-[(4-formyl)phenoxy]cyclotriphosphazene in an excess of isophoronediamine was developed. The curing agent was characterized via NMR and IR spectroscopy and MALDI-TOF mass spectrometry, and its rheological characteristics were studied. Compositions based on DER-354 epoxy resin and the synthesized curing agent with different amounts of phosphazene content were obtained. The rheological characteristics of these compositions were studied, followed by their curing. An improvement in several thermal (DSC), mechanical (compression, tension, and adhesion), and physicochemical (water absorption and water solubility) characteristics, as well as the fire resistance of the obtained materials modified with phosphazene, was observed, compared with unmodified samples. In particular, there was an improvement in adhesive characteristics and fire resistance. Thus, compositions based on a curing agent containing a 30% modifier were shown to fulfill the V-1 fire resistance category. The developed compositions can be processed by contact molding, winding, and resin transfer molding (RTM), and the resulting material is suitable for use in aircraft, automotive products, design applications, and home repairs.
开发了一种通过将六[(4-甲酰基)苯氧基]环三磷腈溶解在过量的异佛尔酮二胺中来合成含胺环氧树脂固化剂的方法。通过核磁共振(NMR)、红外光谱(IR)和基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)对该固化剂进行了表征,并研究了其流变特性。制备了基于DER-354环氧树脂和具有不同磷腈含量的合成固化剂的组合物。研究了这些组合物的流变特性,随后对其进行固化。与未改性样品相比,观察到用磷腈改性的所得材料在若干热学(差示扫描量热法,DSC)、力学(压缩、拉伸和粘附)和物理化学(吸水性和水溶性)特性以及耐火性方面有所改善。特别是,粘附特性和耐火性得到了改善。因此,基于含有30%改性剂的固化剂的组合物被证明符合V-1耐火等级。所开发的组合物可通过接触模塑、缠绕和树脂传递模塑(RTM)进行加工,所得材料适用于飞机、汽车产品、设计应用和家庭维修。