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The process of obtaining nanoargila modified for the production of polymer nanocomposites and nanoargila modified

机译:获得用于生产聚合物纳米复合材料的改性纳米纳米晶和纳米改性纳米晶的方法

摘要

The process of obtaining nanoargila modified for the production of polymer nanocomposites and nanoargila modified, which comprises a method in which a clay, of the family of filossilicatos, is subjected to a chemical treatment in water, during which occurs an increase in its espau00e7ame NT basal in consequence of intercalation of a surfactant agent.Sodium stearate precipitate in the form of calcium stearate or sodium lauryl sulfate or propyl sodium sulphate precipitate in the form of a salt between the blades of the mineral; calcium stearate or calcium lauryl sulfate or propyl calcium sulphate or any agent surfactant ATU Also as a swelling agent and at the same time as modifier of surface of the clay mineral;Modified has a higher basal spacing and thermal stability in the temperature range employed in the processing of polymers of interest in this work (about 220 u00b0 C), and have functional groups on its surface that allow a good adhesion with the polymer matrixes.
机译:获得用于生产聚合物纳米复合材料的改性纳米纳米粉和纳米改性纳米粉的方法,该方法包括以下方法:将filossilicatos家族的粘土在水中进行化学处理,在此过程中其espa的增加由于插入了表面活性剂而导致的NT基物质。硬脂酸钠以硬脂酸钙或月桂基硫酸钠的形式沉淀,或丙基硫酸钠以盐的形式在矿物的叶片之间沉淀;硬脂酸钙或十二烷基硫酸钙或丙基硫酸钙或任何表面活性剂ATU还可作为溶胀剂并同时作为粘土矿物表面的改性剂;改性后在较高的温度范围内具有较高的基础间距和热稳定性在这项工作中(约220℃)加工感兴趣的聚合物,并且在其表面上具有允许与聚合物基体良好粘合的官能团。

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