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首页> 外文期刊>Journal of the Korean Chemical Society >Studies on Cure Behaviors and Rheological and Mechanical Properties of Epoxy/Polyurethane Blend System Initiated by Latent Thermal Catalyst
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Studies on Cure Behaviors and Rheological and Mechanical Properties of Epoxy/Polyurethane Blend System Initiated by Latent Thermal Catalyst

机译:潜热催化剂引发的环氧/聚氨酯共混体系的固化行为和流变力学性能的研究

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摘要

In this work, the cure kinetics and rheological and mechanical properties of diglycidylether of bispheonol A (DGEBA, EP)/polyurethane (PU) blends were investigated. The 1 wt% N-benzylpyrazinium hexafluoroantiminate (BPH) was used as a latent thermal catalyst. Latent properties were performed by measurement of the conversion as a function of reaction temperature using DSC. And the rheological properties of the blend systems were investigated under isothermal conditions using a rheometer. Crosslinking activating energies (Ec) were also determined from the Arrhenius equation based on gel time and curing temperature. The impact strengths were measured as mechanical properties of the casting specimens. The BPH in the blend systems could be an excellent latent thermal catalyst without any co-initiator. The rheological results showed that Ec was highest when PU content was 30 wt% which was in good agreement with the impact strengths. This was probably due to the intermolecular hydrogen bonding between the hydroxyl group in PU and EP, resulting in increasing the crosslinking density.
机译:在这项工作中,研究了双酚A(DGEBA,EP)/聚氨酯(PU)共混物的二缩水甘油醚的固化动力学以及流变和力学性能。将1重量%的N-苄基吡嗪六氟对苯二甲酸(BPH)用作潜热催化剂。通过使用DSC测量转化率随反应温度的变化来表现潜在性质。并使用流变仪研究了等温条件下共混体系的流变性能。还基于凝胶时间和固化温度从阿伦尼乌斯方程确定了交联活化能(Ec)。测量冲击强度作为铸造样品的机械性能。共混体系中的BPH可能是出色的潜热催化剂,而无需任何助引发剂。流变学结果表明,当PU含量为30 wt%时,Ec最高,这与冲击强度非常吻合。这可能是由于PU和EP中羟基之间的分子间氢键,导致交联密度增加。

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