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Effects of chemical structure changes on thermal, mechanical, and crystalline properties of rigid rod epoxy resins

机译:化学结构变化对刚性棒状环氧树脂的热,机械和结晶性能的影响

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Effects of chemical structure changes on the thermal, mechanical, and crystalline properties of rigid rod epoxy resins have been studied for azomethine epoxy, biphenol epoxy, and tetramethyl biphenol epoxy. Rigid rod epoxies have exhibited better properties than those of the flexible bisphenol A epoxy. The chemical structures of both rigid rod epoxy and curing agent control the properties of cured rigid rod epoxies. When a flexible curing agent (methyl cyclohexane 1,2-dicarboxylic anhydride) was used, the chemical structure of rigid rod epoxy has dominated effects on the properties. Thus, the azomethine epoxy has shown the best thermal and mechanical properties among three rigid rod epoxies. While a rigid curing agent (sulfanilamide) was used, the physical properties of cured epoxies are not only dependent on the chemical structures of epoxies but also on the ease of formation of ordered network. Among the cured rigid rod epoxies, only the biphenol epoxy cured by sulfanilamide exhibits a liquid crystalline network. It has the highest glass transition temperature (219 degrees C) and the lowest coefficient of thermal expansion (20.8 mu m/m degrees C). However, the most thermal stable system is azomethine epoxy cured with sulfanilamide. It has a weight; loss (39%) at 450 degrees C. Their excellent thermal and mechanical properties of rigid rod epoxies are useful in composites, printed wiring boards, integrated circuit encapsulations, etc. (C) 2000 John Wiley & Sons, Inc. [References: 16]
机译:对于偶氮次甲基环氧,双酚环氧和四甲基双酚环氧,已经研究了化学结构变化对刚性棒状环氧树脂的热,机械和结晶性能的影响。刚性棒状环氧树脂显示出比柔性双酚A环氧树脂更好的性能。刚性棒状环氧树脂和固化剂的化学结构均控制固化的刚性棒状环氧树脂的性能。当使用柔性固化剂(甲基环己烷1,2-二羧酸酐)时,刚性棒状环氧树脂的化学结构对其性能起主要作用。因此,偶氮甲碱环氧树脂在三种刚性棒状环氧树脂中表现出最佳的热性能和机械性能。尽管使用了刚性固化剂(磺胺),但固化环氧树脂的物理性能不仅取决于环氧树脂的化学结构,而且取决于有序网络的形成难易程度。在固化的刚性棒状环氧树脂中,仅通过磺酰胺固化的双酚环氧树脂具有液晶网络。它具有最高的玻璃化转变温度(219摄氏度)和最低的热膨胀系数(20.8μm / m摄氏度)。但是,最热稳定的系统是用亚磺酰胺固化的甲亚胺环氧树脂。它有重量;在450摄氏度时的热损耗(39%)。刚性棒状环氧树脂的出色热性能和机械性能可用于复合材料,印刷线路板,集成电路封装等。(C)2000 John Wiley&Sons,Inc. [参考:16 ]

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