首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Effects of different composition ratio on the dielectric relaxation and dynamic mechanical properties of poly(ω-dodecalactam-co-ε- caprolactam-co-propylene oxide) copolymers
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Effects of different composition ratio on the dielectric relaxation and dynamic mechanical properties of poly(ω-dodecalactam-co-ε- caprolactam-co-propylene oxide) copolymers

机译:不同组成比对聚(ω-十二内酰胺-共-ε-己内酰胺-共-环氧丙烷)共聚物介电弛豫和动态力学性能的影响

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The molecular dynamics of new poly (ω-dodecalactam-co-ε- caprolactam-co-propylene oxide) copolymers (DL/CL/PAC) has been investigated by using dynamic mechanical thermal analysis (DMTA) and dielectric relaxation spectroscopy (DRS) measurements. The copolymers were synthesized via anionic polymerization of relevant lactams activated with carbamoyl derivatives of telechelic hydroxyl terminated polypropylene oxide with isophorone diisocyanate (PAC). The calorimetric, X-ray diffraction, and DMTA measurements were performed to recognize the influence of the composition ratio and the type of PAC on the physical, thermal, and mechanical properties of the synthesized copolymers. The DRS was used to study the frequency dependence of the dielectric permittivity of some isotherms from -110 to 145 °C. Copolymerization of ε-caprolactam with about 10 wt % ω-dodecalactam results in a copolymer that has lower water absorption, a melting point close to that of polyamide 6 and has a high enough degree of crystallinity in respect to high storage modulus. Five dielectric relaxations have been observed in the dielectric spectra, three at lower temperature and two at higher temperature. The copolymers have two glass transition temperatures for polyamide segments and polyether blocks, indicating microphase separation in the copolymers. Other studies directed toward molecular dynamics of polyamide DL/CL/PAC copolymers have not been reported.
机译:通过使用动态机械热分析(DMTA)和介电弛豫谱(DRS)测量研究了新型聚(ω-十二内酰胺-共-ε-己内酰胺-共-环氧丙烷)共聚物的分子动力学(DL / CL / PAC) 。该共聚物是通过相关的内酰胺的阴离子聚合反应而合成的,这些内酰胺被远螯羟基封端的聚环氧丙烷的氨基甲酰基衍生物与异佛尔酮二异氰酸酯(PAC)活化。进行了量热,X射线衍射和DMTA测量,以识别组成比和PAC类型对合成共聚物的物理,热和机械性能的影响。 DRS用于研究-110至145°C下某些等温线的介电常数的频率依赖性。 ε-己内酰胺与约10重量%的ω-十二内酰胺的共聚产生的共聚物具有较低的吸水率,接近于聚酰胺6的熔点并且相对于高储能模量具有足够高的结晶度。在介电谱中观察到五个介电弛豫,三个在较低温度下,两个在较高温度下。共聚物具有两个用于聚酰胺链段和聚醚嵌段的玻璃化转变温度,表明共聚物中发生了微相分离。尚未报道针对聚酰胺DL / CL / PAC共聚物的分子动力学的其他研究。

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