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Molecule-based electrorheological material, rare earth complex of β-cyclodextrin inclusion compound

机译:分子基电流变材料,β-环糊精包合物的稀土配合物

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摘要

Molecule-based electrorheological (ER) materials, based on β-cyclodextrin (β-CD) inclusion compounds between β-CD (host) and acrylic acid [HA, guest] or the rare earth (RE=Y) complex [YA 3, guest] of acrylic acid have been synthesized as a novel type of ER materials. The composition, ER performance and dielectric property of the materials have been studied. The results show that the formation of the rare earth complex can markedly enhance the ER performance of β-CD, and HA cannot. The relative shear stress τ _r (τ _r=τ _E/τ _0, τ _E and τ _0 are the shear stresses at the electric field strength E=4.2 and 0kV/mm, respectively) of the suspension (25wt%) of a complex material in silicone oil reached 1297 at a shear rate of 14.3s ~(-1), such large τ _r value is advantageous in its application as an ER material. The composition and structure are the dominant factors in improving the ER effect.
机译:基于分子的电流变材料(ER),基于β-CD(主体)与丙烯酸[HA,客体]或稀土(RE = Y)络合物[YA 3]之间的β-环糊精(β-CD)包合物丙烯酸]已被合成为一种新型的ER材料。研究了材料的组成,ER性能和介电性能。结果表明,稀土配合物的形成可以显着增强β-CD的ER性能,而HA则不能。复合体悬浮液(25wt%)的相对剪切应力τ_r(τ_r =τ_E /τ_0,τ_E和τ_0分别是电场强度E = 4.2和0kV / mm时的剪切应力)硅油中的硅橡胶材料的剪切速率为14.3s〜(-1)达到1297,如此大的τ_r值在将其用作ER材料方面是有利的。组成和结构是改善ER效果的主要因素。

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