Foaming epoxy-amine-carbamate: The effect of different neat amines on rheological and cellular morphology

环氧树脂 氨基甲酸酯 缩水甘油醚 胺气处理 材料科学 异佛尔酮 二胺 哌嗪 动态力学分析 热固性聚合物 异佛尔酮二异氰酸酯 高分子化学 固化(化学) 有机化学 聚氨酯 双酚A 复合材料 化学 聚合物
作者
Du Ngoc Uy Lan,Christian Bethke,Shuaiping Gong,Volker Altstaedt,Holger Ruckdaeschel
出处
期刊:Journal of Cellular Plastics [SAGE]
卷期号:59 (3): 231-247
标识
DOI:10.1177/0021955x231166007
摘要

The use of carbamate to foam epoxy depends significantly on the precured modulus to stabilize the cellular structure. The optimum precured modulus is developed from the reaction of epoxy resin and the neat amine. The selection of the neat amine relies on its reaction temperature with epoxy, which is required to be below the decomposition temperature of carbamate. This study investigates the effect of three different neat amines on the rheological behavior of foaming epoxy-carbamate-amine. They are bisphenol-A diglycidyl ether epoxy (DGEBA), isophorone diamine carbamate (IDPA.CO 2 ), N-aminoethylpiperazine (AEP), 2,4-Diamino-1-methyl-cyclohexan (DMC) and isophorone diamine (IDPA). The mixtures of DGEBA-amine-carbamate are filled in 25% and 75% of the volume of a closed mold. Precuring is carried out at 60°C for 2 h. The foaming and complete curing are conducted at 180°C for 1 h. Having H-active at piperazine, AEP reacts with DGEBA faster and develops a higher precured modulus compared to DMC and IDPA. It is important to note that DGEBA-AEP-IDPA.CO 2 exhibits viscoelastic behavior beyond 138°C, seen by its rheological storage modulus lower than loss modulus and its tan delta larger than 1. The reaction between DGEBA and the H-active piperazine of AEP leads only to linear linkage and is unable to further crosslink compared to the primary amine (-NH 2 ). This results in a lower glass transition temperature T g of DGEBA-AEP-IPDA.CO 2 . The effect of amine on foaming is more obviously at 25% filling level. DGEBA-AEP-IPDA.CO 2 has more spherical and homogeneous cellular structure and the density of 285 kg/m 3 . Having quite similar chemical structure, both DGEBA-DMC-IPDA.CO 2 and DGEBA-IPDA-IPDA.CO 2 produce the epoxy foams having cell-interconnection and coalescence; their densities are also similar 301 kg/m 3 and 305 kg/m 3 , respectively. All the foams are closed-cell at 75% of filling level. The cell morphologies are well reflecting the foaming modulus and tan delta behavior.
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