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Development and characterization of plasticized polyamides by fluid and solid plasticizers

机译:流体和固体增塑剂对增塑聚酰胺的开发和表征

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摘要

Polyamides are semicrystalline polymers that are useful in a wide range of applications in the plastics industry. Some applications require higher flexibility and improved workability of polyamides; thus, a plasticization approach that eases compounding and processing procedures and produces better desired product properties can be utilized. Common plasticizers are high-boiling liquid esters, but solid plasticizers also have been considered. The present research has focused on plasticization of nylon 66/6 (80/20) copolymer by using selected low molecular weight organic materials. Plasticization of the copolyamide was studied with glycerin mono stearate, benzene sulfonamide, and methyl 4-hydroxybenzoate as the solid plasticizers and diethylhexyl phthalate as the liquid plasticizer. The materials were prepared and characterized by thermal, mechanical, dynamic, rheological, and morphological properties. The experimental results were supported by simulated polymer and plasticizer interactions using molecular dynamic simulations. Plasticization and antiplasticization phenomena were observed and discussed. The plasticizers were classified by their efficiency in reducing T_g and by modification of the other polyamide properties.
机译:聚酰胺是半结晶聚合物,可在塑料工业中广泛应用。一些应用要求聚酰胺具有更高的柔韧性和更高的可加工性。因此,可以使用一种塑化方法,该方法可简化配混和加工程序并产生更好的所需产品性能。常见的增塑剂是高沸点液态酯,但也已考虑使用固态增塑剂。本研究集中于通过使用选定的低分子量有机材料对尼龙66/6(80/20)共聚物进行增塑。用甘油单硬脂酸酯,苯磺酰胺和4-羟基苯甲酸甲酯作为固体增塑剂,邻苯二甲酸二乙基己酯作为液体增塑剂研究了共聚酰胺的增塑。制备了材料,并通过热,机械,动态,流变和形态特性对其进行了表征。实验结果得到了使用分子动力学模拟的聚合物和增塑剂相互作用的模拟的支持。观察和讨论了增塑和抗塑化现象。通过增塑剂降低T_g的效率和改变其他聚酰胺性能对其进行分类。

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