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Effect of Resin and Blocked/Unblocked Hardener Mixture on the Production of Epoxy Foams with CO2 Blocked Hardener in Batch Foaming Process

机译:树脂和嵌段/无嵌段固化剂混合物对间歇发泡过程中CO2嵌段固化剂生产环氧泡沫的影响

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摘要

The present study focuses on the processing and properties of epoxy foams by the use of CO2 blocked hardener N-aminoethylpiperazine (B-AEP) and different resins. Although some studies described the foaming with carbamates, little attention has been given to the interaction of resin properties (such as viscosity) on the foaming performance. Therefore, two resins, diglycidyl ether of bisphenol-A (DGEBA) and epoxy novolac (EN), as well as their 50:50 blend, were foamed with B-AEP and unblocked/blocked AEP hardener mixtures in a batch foaming process. Furthermore, the commercially available chemical blowing agent para-toluenesulfonyl hydrazide (TSH) was used as a benchmark for commonly used chemical blowing agents. The lowest density in this study was reached by the DGEBA+B-AEP system in the range of 215 kg/m3 with the drawback of an inhomogeneous cell structure and high cell size distribution. The best cell morphology and lowest cell size distribution was reached with the EN+15:85% unblocked:blocked hardener mixture, resulting in a density in the range of 394 kg/m3. A syntactic foam was achieved by a DGEBA+50:50% unblocked:blocked hardener mixture with a density of around 496 kg/m3. It was found that a higher viscosity of the resin lead to an increase in the density and a decrease in the cell size distribution range as a result of a closer expansion time window.
机译:本研究的重点是通过使用CO2封闭的硬化剂N-氨基乙基哌嗪(B-AEP)和不同的树脂来处理环氧泡沫塑料及其性能。尽管一些研究描述了氨基甲酸酯的发泡,但很少关注树脂性能(例如粘度)对发泡性能的影响。因此,将两种树脂,双酚A的二缩水甘油醚(DGEBA)和环氧酚醛清漆(EN),以及它们的50:50的共混物,以分批发泡的方式与B-AEP和未封端/封端的AEP固化剂混合物一起发泡。此外,使用市售的化学发泡剂对甲苯磺酰肼(TSH)作为常用化学发泡剂的基准。 DGEBA + B-AEP系统在215 kg / m 3 范围内达到了本研究的最低密度,其缺点是细胞结构不均匀且细胞尺寸分布高。在EN + 15:85%的未封闭:封闭的固化剂混合物中,可获得最佳的细胞形态和最低的细胞尺寸分布,密度为394 kg / m 3 。通过以密度为496 kg / m 3 的DGEBA + 50:50%的未嵌段:嵌段硬化剂混合物获得复合泡沫。发现由于较高的膨胀时间窗,较高的树脂粘度导致密度增加和孔尺寸分布范围减小。

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