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含二聚酸的非晶态尼龙6的合成与物理性能

Synthesis and Physical Properties of Non-Crystalline Nylon 6 Containing Dimer Acid.

作者信息

Huang Ching-Nan, Wu Chang-Mou, Lo Hao-Wen, Lai Chiu-Chun, Teng Wei-Feng, Liu Lung-Chang, Chen Chien-Ming

机构信息

Department of Textile Engineering, Chinese Culture University, Taipei 11114, Taiwan.

Department of Materials Science and Engineering, National Taiwan University of Science and Technology, Taipei 10607, Taiwan.

出版信息

Polymers (Basel). 2019 Feb 25;11(2):386. doi: 10.3390/polym11020386.

Abstract

In this study, a long carbon chain dimer acid is introduced into a nylon 6 structure and is copolymerized with different structural amines to produce amorphous nylon 6 by 4,4'-methylenebis(2-methylcyclohexylamine) (MMCA) in different copolymerization ratios. The effect of different structures and copolymerization ratios on the properties of nylon 6 is determined, along with the thermal properties, crystallinity, water absorption, dynamic mechanical properties, and optical properties. It is found that the melting point and the thermal cracking temperature Td10 of nylon 6 are respectively between 176 °C and 213 °C and 378 °C to 405 °C. The effect of introducing a bicyclohexane group containing a methyl side chain is greater than that of a meta-benzene ring, so COMM (synthesized by Caprolactam (C), dimer oleic acid (OA), and 4,4'-Methylenebis(2-methylcyclohexylamine) (MMCA)) has the lowest melting point, enthalpy, and crystallinity. As the copolymerization ratio increases, its thermal properties decrease. 10% is the lowest crystallinity. The amine structure containing a bicycloalkyl group has lower water absorption and a 10% copolymerization ratio gives the lowest water absorption. It contains the bicycloalkyl group, COM (synthesized by Caprolactam (C), dimer oleic acid (OA) and 4,4'-Methylenebis(cyclohexylamine) (MCA)), which has the highest loss modulus. The lowest loss modulus is noted for a copolymerization ratio of 7% and the value of tan δ increases as the copolymerization ratio increases. The introduction of nylon 6 with the bicycloalkyl groups, COMM and COM, significantly increases transparency. As the copolymerization ratio increases, the transparency increases and the haze decreases. The best optical properties are achieved for 10% copolymerization.

摘要

在本研究中,将一种长碳链二聚酸引入尼龙6结构中,并使其与不同结构的胺进行共聚,以不同的共聚比例通过4,4'-亚甲基双(2-甲基环己胺)(MMCA)制备非晶态尼龙6。测定了不同结构和共聚比例对尼龙6性能的影响,以及热性能、结晶度、吸水性、动态力学性能和光学性能。结果发现,尼龙6的熔点和热裂解温度Td10分别在176℃至213℃以及378℃至405℃之间。引入含甲基侧链的双环己烷基团的影响大于间苯环,因此由己内酰胺(C)、二聚油酸(OA)和4,4'-亚甲基双(2-甲基环己胺)(MMCA)合成的COMM具有最低的熔点、焓和结晶度。随着共聚比例的增加,其热性能降低。10%是最低的结晶度。含双环烷基的胺结构吸水性较低,10%的共聚比例吸水性最低。它含有双环烷基团的COM(由己内酰胺(C)、二聚油酸(OA)和4,4'-亚甲基双环己胺(MCA)合成)具有最高的损耗模量。共聚比例为7%时损耗模量最低,且tan δ值随共聚比例的增加而增大。引入含双环烷基团的尼龙6,即COMM和COM,显著提高了透明度。随着共聚比例的增加,透明度增加,雾度降低。共聚比例为10%时光学性能最佳。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fcf/6419222/e41f71ace29e/polymers-11-00386-g001.jpg

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