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Synthesis and Electrorheological Property of Chitosan Phosphate and Its Rare Earth Complex

机译:壳聚糖磷酸盐及其稀土复合物的合成与电流性能

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The chitosan (CTS) phosphate and its rare earth (yttrium) complex were synthesized by a very simple sedimentation and grinding method. The nontoxic and facile CTS as a substrate of the materials, as well as phosphoric acid and Y(NO3)3 were chosen as starting materials. The electrorheological (ER) properties of the suspensions of CTS, CTS phosphate and its rare earth complex materials in silicon oil were investigated under DC electric field. The formation of CTS phosphate and the complex helped to decrease the shear stress and viscosity of the suspension at zero electric field, and to enhance the ER effect of CTS material. The ER performance of the complex material was the best among the studied materials, the shear stress (τo) of the suspension of this material was very low at no electric field, and its relative shear stress (τr = τE/τo, E = 4.2 kV·mm-1) reached 100.4, which was 13.6 times higher than that of the suspension of pure CTS.In addition, the complex material had better thermal stability. These properties of the complex material were very advantageous in the material's application.
机译:脱乙酰壳多糖(CTS)磷酸酯和它的稀土(钇)复合物由一个非常简单的沉淀和研磨的方法合成。为材料的基板,以及磷酸和Y(NO 3)3的无毒的,并且容易的CTS被选择作为原料。下DC电场CTS,CTS磷酸盐及其稀土复合材料在硅油的悬浮液的电流变(ER)性能进行了研究。 CTS磷酸盐的形成和复合物有助于降低悬浮液的剪切应力和粘度在零电场,以增强CTS材料的ER效果。复合材料的ER性能是悬浮这种材料的研究材料中最好,剪切应力(τ0)的混合物在无电场非常低,并且其相对的剪切应力(τr=τE/τ0,E = 4.2千伏·毫米-1)达到100.4,比该悬浮液纯CTS.In加入的高13.6倍,该复合物材料具有较好的热稳定性。复合材料的这些特性是在材料的应用非常有利。

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