Shape memory interpenetrating network hybrids of epoxy/poly(urea-amide) and organic nanoparticle

Ayesha Kausar
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引用次数: 2

Abstract

ABSTRACTIn this study, a novel poly(urea-amide) (PUA) was designed and blended with N,N-diglycidyl-4-glycidyloxyaniline (DGOA) epoxy. Moreover, an original approach was adopted for the formation of organic nanoparticle (NP) using resorcinol and cetyltrimethylammonium bromide. Functional nanoparticle (1–10 wt.%) was reinforced in PUA and DGOA/PUA blend and structure, morphology, and mechanical properties of neat PUA, blend and hybrids were reported. According to gel permeation chromatography analysis, molecular weight of PUA was found to decrease with nanoparticle addition. Field emission scanning electron microscopy micrographs of DGOA/PUA/NP hybrids revealed self-assembled interpenetrating network (IPN) morphology due to fine compatibility between the blend components and functional nanoparticle. The self-assembled IPNs were in turn responsible for higher mechanical properties of DGOA/PUA blend and hybrids. There was 75% rise in tensile strength and 76% increase in Young's modulus of 10 wt.% loaded DGOA/...
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环氧树脂/聚脲酰胺与有机纳米颗粒的形状记忆互穿网络
摘要本研究设计了一种新型聚脲酰胺(PUA),并与N,N-二缩水甘油酯-4-缩水甘油酯氧基苯胺(DGOA)环氧树脂共混。此外,还采用了间苯二酚和十六烷基三甲基溴化铵合成有机纳米颗粒(NP)的新方法。在PUA和DGOA/PUA共混物中增强了1-10 wt.%的功能纳米颗粒,并报道了纯PUA、共混物和杂化物的结构、形态和力学性能。凝胶渗透色谱分析发现,纳米颗粒的加入使聚丙烯酸甲酯的分子量降低。DGOA/PUA/NP杂化物的场发射扫描电镜显示,由于共混物组分与功能纳米颗粒之间的良好相容性,共混物具有自组装互穿网络(IPN)的形态。自组装的ipn反过来又对DGOA/PUA共混和杂化材料的高力学性能负责。当DGOA/…的载荷为10 wt.%时,拉伸强度提高75%,杨氏模量提高76%。
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