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Tuning the properties for the self-extinguishing epoxy-amine composites containing copper-coordinated curing agent: Flame tests and physical-mechanical measurements

机译:调整含铜配位固化剂的自熄性环氧胺复合材料的性能:火焰测试和物理机械测量

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摘要

An uncomplicated mode of preparing the fire retardant-hardener labeled DETA-CuSO4 (DETA - diethylenetriamine) with its subsequent incorporation into framework of epoxy resin to obtain self-extinguishing epoxyamine composites possessing the balanced physical-mechanical properties and fire retardancy has been elaborated. The influence of the DETA-CuSO4 complex formation onto the epoxy resin curing processes has been studied by means of data of the rheological, IR spectroscopic and quantum-chemical analyses of the DGEBA-DETA-CuSO4 system (DGEBA - bisphenol A diglycidyl ether). The flammability of the epoxy-amine composites with different content of the fire retardant (0, 5, 16, and 80 mass parts) has been studied. The rate of burning of the epoxy-amine composites (DGEBA/DETA-CuSO4) containing 16 and 80 mass parts of the fire retardant is intensely depressed (their samples do not propagate flame generally), while r(burn) values for samples of DGEBA/DETA and DGEBA/DETA-CuSO4 (5) are equal 25.2 and 24.0 mm.min(-1), respectively. The flammability was evaluated by means of UL94 test method and according to all-Union State Standard 12.1.044-89. The smoke-formation is maximal suppressed by fire retardant (CuSO4) in the largest quantities. Physical-mechanical properties were studied by means of the measurements of surface hardness, tensile strength, water absorption, and chemical resistance.
机译:阐述了一种简单的制备阻燃固化剂标记的DETA-CuSO4(DETA-二亚乙基三胺)的方法,然后将其掺入环氧树脂骨架中,以获得具有平衡的物理机械性能和阻燃性的自熄性环氧胺复合材料。通过DGEBA-DETA-CuSO4体系(DGEBA-双酚A二缩水甘油醚)的流变,红外光谱和量子化学分析数据,研究了DETA-CuSO4配合物形成对环氧树脂固化过程的影响。研究了不同含量的阻燃剂(0、5、16和80质量份)的环氧-胺复合材料的可燃性。强烈降低了包含16和80质量份阻燃剂的环氧胺复合材料(DGEBA / DETA-CuSO4)的燃烧速率(它们的样品通常不会传播火焰),而DGEBA样品的r(燃烧)值/ DETA和DGEBA / DETA-CuSO4(5)分别等于25.2和24.0 mm.min(-1)。通过UL94测试方法并根据全联盟国家标准12.1.044-89评估可燃性。阻燃剂(CuSO4)可以最大程度地抑制烟雾的形成。通过测量表面硬度,拉伸强度,吸水率和耐化学性来研究物理机械性能。

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