首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Grafting of polyamide 6 on a styrene-acrylonitrile maleic anhydride terpolymer: melt rheology at the critical gel state
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Grafting of polyamide 6 on a styrene-acrylonitrile maleic anhydride terpolymer: melt rheology at the critical gel state

机译:在苯乙烯-丙烯腈马来酸酐三元共聚物上接枝聚酰胺6:在临界凝胶态下的熔体流变学

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摘要

In this work, we studied the melt rheology of multigraft copolymers with a styrene-acrylonitrile maleic anhydride (SANMA) terpolymer backbone and randomly grafted polyamide 6 (PA 6) chains. The multi-grafted chains were formed by interfacial reactions between the maleic anhydride groups of SANMA and the amino end groups of PA 6 during melt blending. Because of the phase separation of SANMA and PA 6, the grafted SANMA backbones formed nearly circular domains which were embedded in the PA 6 melt with a diameter in the order of 20 to 40 nm. The linear viscoelastic behaviour of PA 6/SANMA blends at a sufficiently large SANMA concentration displayed the characteristics of the critical gel state, i.e. the power relations G' proportional to G '' proportional to omega(0.5). In elongation, the PA 6/SANMA blend at the critical gel state showed a non-linear strain hardening behaviour already at a very small Hencky strain. In contrast to neat PA 6, the elasticity of the PA 6/SANMA blends was strongly pronounced, which was demonstrated by recovery experiments. Rheotens tests agreed with the linear viscoelastic shear oscillations and the measurements using the elongational rheometer RME. Increasing the SANMA concentration led to a larger melt strength and a reduced drawability. The occurrence of the critical gel state can be interpreted by the cooperative motion of molecules which develops between the grafted PA 6 chains of neighbouring micelle-like SANMA domains.
机译:在这项工作中,我们研究了具有苯乙烯-丙烯腈马来酸酐(SANMA)三元共聚物主链和无规接枝聚酰胺6(PA 6)链的多接枝共聚物的熔融流变学。通过在熔融共混期间SANMA的马来酸酐基团与PA 6的氨基端基之间的界面反应形成多接枝链。由于SANMA和PA 6的相分离,接枝的SANMA主链形成了几乎圆形的畴,这些畴嵌入PA 6熔体中,直径约为20至40 nm。在足够大的SANMA浓度下,PA 6 / SANMA共混物的线性粘弹性表现出临界凝胶态的特性,即幂关系G'与G''成比例,G''与ω(0.5)成比例。在伸长率下,处于临界凝胶状态的PA 6 / SANMA共混物在非常小的Hencky应变下就已经显示出非线性应变硬化行为。与纯净的PA 6相比,PA 6 / SANMA共混物的弹性非常明显,回收率实验证明了这一点。流变仪测试与线性粘弹性剪切振荡以及使用伸长流变仪RME的测量结果一致。增加SANMA浓度导致更大的熔体强度和降低的可拉伸性。临界凝胶状态的出现可以通过在相邻的胶束状SANMA域的接枝PA 6链之间形成的分子的协同运动来解释。

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