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Modification of nylon 66 by electron beam irradiation for improved properties and superior performances

机译:通过电子束辐照对尼龙66进行改性,以改善其性能和优越的性能

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摘要

Nylon 66 has been transformed into a material with significantly improved properties like hardness, tensile strength, and flexural modulus by processing it under the optimized dose rate of electron beam in the presence of suitable crosslinkers. Furthermore, percent water absorption of nylon 66 was reduced substantially on irradiation. Thermogravimetric analysis revealed that thermal stability of nylon 66 improved with increasing dose of radiation. Improvement of mechanical and thermal properties and reduction of water absorption of nylon 66 were due to the crosslinking of polyamide molecules made possible by the high energy radiation. Increase of crosslinking with increasing radiation dose was verified by the increase of gel content at higher doses. Differential scanning calorimetry showed that both melting and crystallization temperatures along with percent crystallinity of nylon 66 were decreased with the increasing dose of radiation leading to the development of more amorphous character in this semicrystalline polymer.
机译:通过在合适的交联剂存在下,在电子束的最佳剂量率下对其进行处理,将尼龙66转变为具有显着改善的性能(如硬度,拉伸强度和弯曲模量)的材料。此外,尼龙66在辐照时的吸水率大大降低。热重分析表明,尼龙66的热稳定性随辐射剂量的增加而提高。尼龙66的机械和热性能的改善以及吸水率的降低归因于高能量辐射使聚酰胺分子的交联成为可能。随着辐射剂量的增加,交联的增加通过更高剂量下凝胶含量的增加得到证实。差示扫描量热法显示,随着辐射剂量的增加,尼龙66的熔融和结晶温度以及结晶度百分比均降低,从而导致该半结晶聚合物中出现更多的非晶态特征。

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