首页> 外文会议>Materials Research Society symposium >Relation -between Nanostructural Changes and Macroscopic Effects during Reversible Temperature-Memory Effect under Stress-Free Conditions in Semicrystalline Polymer Networks
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Relation -between Nanostructural Changes and Macroscopic Effects during Reversible Temperature-Memory Effect under Stress-Free Conditions in Semicrystalline Polymer Networks

机译:- 在半结晶高分子网络中无应力条件下可逆温度记忆效应的纳米结构变化和宏观效应。

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Temperature-memory effects in polymers under stress-free conditions are typically limited to one way effects. Recently, crosslinked polymer networks comprising crystallizable domains, which were capable of a reversible temperature-memory effect (rTME) under stress-free conditions, were introduced. The utilization of crystallizable actuator domains (AD) and shape determining domains (SD) where related to two different temperature ranges of a single broad melting temperature transition in case of rTME. In this study we investigated the nanostructure of crosslinked poly[ethylene-co-(vinyl acetate)] cPEVA capable of rTME in situ during actuation cycles utilizing X-ray scattering techniques and related the changes on the nanoscale to effects on the macroscopic scale. It was observed that 23% of SD obtained at a separation temperature of 75 °C gave the highest reversible strain and when exceeding 80 °C only isotropic crystallization occurred and no rTME was observed. Furthermore, distances between oriented crystalline lamellae correlated to the macroscopic actuation during heating-cooling cycles, exhibiting long-periods from 14 to 17 nm as function of temperature.
机译:在无应力条件下聚合物的温度记忆效应通常限于一种方式。最近,引入了包含可结晶结构域的交联聚合物网络,其能够在无应力条件下进行可逆的温度记忆效应(RTME)。在RTME的情况下,利用结晶致动器域(AD)和形状确定结构域(SD)与两个不同的温度转换的不同温度范围有关。在该研究中,我们研究了在使用X射线散射技术的致动循环期间,能够在致动循环和相关纳米尺度对宏观尺度对效应的变化的致动循环期间原位的纳米结构的纳米结构。观察到,在75℃的分离温度下获得的23%的Sd为最高的可逆菌株提供了最高的可逆菌株,并且当超过80℃时,仅发生各向同性结晶并且没有观察到RTME。此外,取向的结晶薄片之间与加热冷却循环期间与宏观致动相关的距离,从14至17nm表示为温度的长时间。

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