首页> 外文期刊>Turkish journal of chemistry >Electrorheological Properties of Suspensions Prepared from Poly(Li-tert-butyl methacrylate)lonomer
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Electrorheological Properties of Suspensions Prepared from Poly(Li-tert-butyl methacrylate)lonomer

机译:聚(甲基丙烯酸锂叔丁酯)离聚物制备的悬浮液的电流变特性

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摘要

The synthesis,characterisation and partial hydrolysis of poly(tert-butylmethacrylate),(PTBMA).and the electrorheological(ER)properties of its suspensions were investigated.The polymer was syn-thesised by radical polymerisation and partially hydrolysed by para-toluenesulphonic acid monohydrate(PTSA.H2O),and then converted to a lithium salt(PTBMA-Li)by washing with a LiOH_(aq)solution.From particle size measurements,the average particle size of PTBMA-Li was determined to be 74 /.an.Colloidal suspensions of ionomer were prepared in various insulating oils [silicone oil(SO),mineral oil(MO),threeoctylthreemellitate(TOTM)and dioctylphatalete(DOP)] at a series of concentrations(c = 5-33 m/m,%).The sedimentation stabilities of these suspensions were determined at 20 deg C and were observed to increase with decreasing suspension concentration.Maximum gravitational stability was observed as 32 days in SO at c = 5 m/m,%.Flow times of suspensions were measured under no applied electric field(E = 0 kV/mm),and under an external electric field(E / 0 kV/mm),and ER activity was determined.The highest flow time was found to be 32 s in SO at c = 33 m/m,%.Further,the effects of solid particle concentration,shear rate(7),electric field strength,(E)addition of polar promoters and high temperature on the ER activities of colloidal suspensions were investigated.Excess shear stresses(Ar)were determined to be 74 Pa under E = 1.0 kV/mm.
机译:研究了聚(甲基丙烯酸叔丁酯)(PTBMA)的合成,表征和部分水解及其悬浮液的流变学(ER)特性。该聚合物通过自由基聚合反应合成,并通过对甲苯磺酸一水合物部分水解。 (PTSA.H2O),然后用LiOH_(aq)溶液洗涤,将其转化为锂盐(PTBMA-Li)。通过粒度测量,确定PTBMA-Li的平均粒度为74 / an。在一系列浓度(c = 5-33 m / m,%)下,在各种绝缘油[硅油(SO),矿物油(MO),三辛基三甲硅酸酯(TOTM)和邻苯二甲酸二辛酯(DOP)]中制备离聚物的胶体悬浮液。测定这些悬浮液在20摄氏度时的沉降稳定性,并观察到其随悬浮液浓度的降低而增加。在c = 5 m / m%的SO中,最大重力稳定性为32天,测量悬浮液的流动时间没有施加电场(E = 0并在外部电场(E / 0 kV / mm)下测定ER活性。在c = 33 m / m%的条件下,SO中的最高流动时间为32 s。研究了固体颗粒浓度,剪切速率(7),电场强度,极性促进剂(E)的添加和高温对胶体悬浮液ER活性的影响。确定超剪切应力(Ar)为74 Pa。 E = 1.0kV / mm。

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