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

机译:含二聚酸的非结晶尼龙6的合成及物理性能

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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.
机译:在这项研究中,将长碳链二聚酸引入尼龙6结构中,并与不同的结构胺共聚,从而以不同的共聚比例通过4,4'-亚甲基双(2-甲基环己胺)(MMCA)生产非晶态尼龙6。确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,吸水率,动态机械性能和光学性能。发现尼龙6的熔点和热裂解温度Td10分别在176℃至213℃和378℃至405℃之间。引入含有甲基侧链的双环己烷基团的效果要大于间苯环,因此COMM(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))的熔点,焓和结晶度最低。随着共聚比率的增加,其热性能降低。最低结晶度为10%。含有双环烷基的胺结构具有较低的吸水率,并且10%的共聚比给出最低的吸水率。它包含双环烷基,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。对于7%的共聚比率,注意到最低的损耗模量,并且随着共聚比率增加,tanδ的值增加。引入具有双环烷基基团COMM和COM的尼龙6可以显着提高透明度。随着共聚比率的增加,透明度增加并且雾度降低。 10%的共聚可实现最佳的光学性能。

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