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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Novel high performance tough hyperbranched epoxy by an A2 + B3 polycondensation reaction
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Novel high performance tough hyperbranched epoxy by an A2 + B3 polycondensation reaction

机译:通过A2 + B3缩聚反应的新型高性能强韧超支化环氧树脂

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摘要

High performance tough epoxy thermoset with excellent adhesive strength is one of the most in demand materials for advanced engineering applications. In the present investigation three hyperbranched epoxy resins with varying compositions were synthesized by a single step controlled polycondensation reaction using an A2 + B3 approach for the first time. The physical properties like epoxy equivalent, hydroxyl value, viscosity, etc. of the synthesized epoxy resins were determined by different-analytical techniques. The hyperbranched structure of the resins was characterized by spectroscopic techniques. The degrees of branching were found to be 0.60, 0.79 and 0.51 for the resins with 10, 20 and 30 wt% of the B3 moiety respectively, as obtained from the ~(13)C NMR study. The poly(amidoamine) cured hyperbranched epoxy thermosets exhibited high thermostability (up to 293, 298 and 296 °C), tensile strength (38, 47 and 26 MPa), elongation at break (43, 21 and 52%), strain energy or toughness (1277, 758 and 1056 MPa), exceptionally high adhesive strength (1987, 2662, 1638 MPa), impact resistance (>100 cm) and scratch hardness (8.5, 9.0, 8.0 kg). The results showed the prominent role of the amount of the B3 moiety in the performance of the thermosets. The study, therefore, revealed that the unison of the aliphatic-aromatic moiety in the hyperbranched structure can of fer a high performance tough epoxy thermoset without any processing difficulty.
机译:具有出色粘合强度的高性能韧性环氧热固性材料是高级工程应用中最需要的材料之一。在本研究中,首次使用A2 + B3方法通过一步控制的缩聚反应合成了三种具有不同组成的超支化环氧树脂。通过不同的分析技术确定了合成环氧树脂的物理性能,如环氧当量,羟值,粘度等。通过光谱技术表征了树脂的超支化结构。从〜(13)C NMR研究获得的结果表明,对于具有10、20和30 wt%B3部分的树脂,支化度分别为0.60、0.79和0.51。聚(酰胺基胺)固化的超支化环氧热固性树脂表现出高的热稳定性(高达293、298和296°C),拉伸强度(38、47和26 MPa),断裂伸长率(43、21和52%),应变能韧性(1277、758和1056 MPa),极高的粘合强度(1987、2662、1638 MPa),耐冲击性(> 100 cm)和划痕硬度(8.5、9.0、8.0公斤)。结果表明,B3部分的量在热固性塑料的性能中起着重要作用。因此,该研究表明,超支化结构中脂族-芳族部分的一致可以提供高性能的强韧环氧热固性材料,而没有任何加工困难。

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