Effects of Hybrid POSS Nanoparticles on the Properties of Thermoplastic Elastomer-Toughened Polyamide 6

材料科学 倍半硅氧烷 聚酰胺 环氧树脂 复合材料 艾氏冲击强度试验 弹性体 纳米颗粒 流变仪 共聚物 热塑性弹性体 纳米复合材料 相(物质) 热变形温度 化学工程 流变学 聚合物 极限抗拉强度 化学 有机化学 纳米技术 工程类
作者
Rumeysa Yıldırım,Muhammad Saeed Ullah,Hürol Koçoğlu,Merve Ün,Nazlı Yazıcı,Gulberk Demir,Duygu Çetin,Gizem Urtekin,Güralp Özkoç,Olcay Mert,Mehmet Kodal
出处
期刊:ACS omega [American Chemical Society]
卷期号:8 (49): 47034-47050
标识
DOI:10.1021/acsomega.3c06896
摘要

In this study, polyamide 6 (PA6)/thermoplastic elastomer (TPE) blends were prepared to decrease the notch sensitivity of PA6 for automotive applications, and the morphological, rheological, mechanical, and thermal properties of PA6/TPE blends, which are partially miscible or immiscible depending on the TPE ratio, were significantly improved in the existence of polyhedral oligomeric silsesquioxane (POSS) nanoparticles with multiple reactive epoxy groups as compatibilizers. An unstable phase morphology was obtained with the addition of TPE into PA6 without POSS nanoparticles, whereas interfacial interactions between phases in the presence of POSS were enhanced as a result of a significant decrease in the average particle size from 1.39 to 0.41 μm. The complex viscosity value of the 70PA6/30TPE blend, which was 20 kPa/s-1 at 0.1 rad/s angular frequency, reached 380 kPa/s-1 with the addition of POSS due to the formation of long chains by the generation of graft and/or block copolymers, which resulted in a 65% increase in Young's modulus value. Most notably, the Izod impact strength of pure PA6, which was 10 kJ/m2, increased by 290% with the incorporation of POSS. It was confirmed by FTIR analysis that the reactive multiple epoxy groups of MultEpPOSS and EPPOSS nanoparticles react with the proper groups of PA6 and/or TPE, and also, a partial hydrogen bonding interaction occurs between PA6-TPE from the shifting of N-H and carbonyl peaks. In conclusion, it can be suggested that POSS nanoparticles can serve as highly effective compatibilizers for PA6/TPE blends and have potential commercial applications, especially in the automotive sector.
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