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首页> 外文期刊>Journal of Thermoplastic Composite Materials >Preparation of high-strength SEBS nanocomposites reinforced with halloysite nanotube: Effect of SEBS-g-MA compatibilizer
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Preparation of high-strength SEBS nanocomposites reinforced with halloysite nanotube: Effect of SEBS-g-MA compatibilizer

机译:用Halloysite Nanotube加固高强度SEBS纳米复合材料的制备:SEBS-G-MA Compatibiliger的作用

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Poly(styrene-b-ethylene-co-butylene-b-styrene) (SEBS)/organophilic halloysite nanotube (Org-HNT) nanocomposites were prepared by solution mixing and then compression molded. Maleic anhydride grafted SEBS (SEBS-g-MA) was also used as a compatibilizer in preparation of SEBS/SEBS-g-MA/Org-HNT ternary nanocomposites. Surface morphologies and both static and dynamic mechanical analyses as well as thermal stabilities of the nanocomposites were carried out. Both the binary and ternary nanocomposites exhibited higher tensile moduli, tensile strength, and toughness values compared to neat SEBS. The elastic modulus was found to increase about 385% and 320% with addition of 3 and 5 phr Org-HNT into the SEBS matrix, respectively, while the maximum toughness was achieved via SEBS-5H composite with an increase of 45%. The ternary nanocomposite having 3 phr Org-HNT and 10 phr SEBS-g-MA (3H10SMA) gave about a 325% and 103% increase in the elastic modulus and toughness, respectively, together with a 75% increase in the tensile strength as the maximum value. This result was ascribed to interactions of the surface of the nanotubes with the maleic anhydride (MA) group of the compatibilizer. The same nanocomposite was also found to have two times higher dynamic storage modulus at 25 degrees C than neat SEBS and almost the same damping value, which is an indication of improvement in the elastic character of SEBS without impairing its damping ability. Although a much higher damping value was obtained via use of 20 phr SEBS-g-MA with the same amount of nanotubes, the corresponding storage modulus decreased too much, close to that of neat SEBS. The enhanced tensile modulus, strength, and toughness of the 3H10SMA nanocomposite, which is consistent with its dynamic mechanical properties, indicate a good balance between the toughness/damping and stiffness. Moreover, all the nanocomposites exhibited better thermal stabilities than neat SEBS, showing higher midpoint degradation temperatures and peak maximum temperatures at which the maximum degradation occurs.
机译:通过溶液混合制备聚(苯乙烯-B-乙烯 - 共丁酯-B-苯乙烯)(SEBBS)/有机苯甲酸酯纳米复合材料,然后压缩模塑。在制备SEBS / SEBS-G-MA / ORG-HNT三元纳米复合材料中也使用马来酸酐接枝SEBS(SEBS-G-MA)作为增容剂。进行表面形态和静态和动态机械分析以及纳米复合材料的热稳定性。与整齐的SEB相比,二元和三元纳米复合材料均表现出更高的拉伸模量,拉伸强度和韧性值。发现弹性模量增加约385%和320%,并分别加入SEBS基质,而通过SEBS-5H复合材料达到最大韧性,同时增加45%。具有3phr org-hnt和10phbs-g-ma(3h10sma)的三元纳米复合材料分别在弹性模量和韧性增加约325%和103%,加上抗拉强度的增加75%最大值。该结果归因于纳米管的表面与相容剂的马来酸酐(MA)基团的相互作用。还发现相同的纳米复合材料在25℃下具有比整齐的SEB在25℃和几乎相同的阻尼值的情况下具有两倍,这是SEB的弹性特性的改善而不损害其阻尼能力的指示。尽管通过使用具有相同量的纳米管的20phbs-g-ma获得了更高的阻尼值,但是相应的储存模量降低了太多,接近整齐的SEB。 3H10SMA纳米复合材料的增强的拉伸模量,强度和韧性,这与其动态机械性能一致,表示韧性/阻尼和刚度之间的良好平衡。此外,所有纳米复合材料表现出比整齐的SEBS更好的热稳定性,显示出更高的中点降解温度和最大降解发生的峰值最大温度。

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