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Extensional rheology and stability behavior of alumina suspensions in the presence of AMPS-modified polycarboxylate ether-based copolymers

机译:在AMPS改性的聚羧酸酯醚基共聚物存在下,氧化铝悬浮液的拉伸流变学和稳定性能

摘要

A series of polycarboxylate ether-based copolymers that include acrylic acid, 2-acrylamido-2-methylpropane sulfonic acid, and polyethylene glycol-1000 was synthesized, and the performance of these copolymers as rheology modifiers in aqueous alumina suspensions was characterized. We discussed the effect of monomer feed ratio and molecular weight on dispersing ability of these copolymers and on extensional behavior of alumina suspensions. Results of zeta potential analysis determined that using the copolymers even at 0.5 wt.% results in all-negative zeta potentials for the entire pH range (2-12). These copolymers immensely affect the extensional rheological behavior of alumina suspensions-while 20 vol.% pure alumina suspension showed severe strain hardening behavior, suspensions with 1 wt.% copolymers and 35 vol.% alumina particles displayed no strain hardening. In this series, the copolymer with lowest molecular weight decreased the extensional viscosity of suspensions at the rupture of thread with three orders of magnitude as well.
机译:合成了包括丙烯酸,2-丙烯酰胺基-2-甲基丙烷磺酸和聚乙二醇-1000在内的一系列基于聚羧酸酯醚的共聚物,并表征了这些共聚物在水性氧化铝悬浮液中作为流变改性剂的性能。我们讨论了单体进料比和分子量对这些共聚物的分散能力以及对氧化铝悬浮液的拉伸行为的影响。 ζ电势分析的结果确定即使在0.5wt。%下使用共聚物也导致在整个pH范围(2-12)内全负的ζ电势。这些共聚物极大地影响了氧化铝悬浮液的拉伸流变行为,而20%(体积)的纯氧化铝悬浮液表现出严重的应变硬化行为,具有1%(重量)共聚物和35%(体积)氧化铝颗粒的悬浮液没有应变硬化。在该系列中,具有最低分子量的共聚物也将螺纹断裂时悬浮液的延伸粘度降低了三个数量级。

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