Zair Latifa, Berrayah Abdelkader, Arabeche Khadidja, Bouberka Zohra, Best Andreas, Koynov Kaloian, Maschke Ulrich
Laboratoire de Recherche sur les Macromolécules (LRM), Faculté des Sciences, Université AbouBekr Belkaïd de Tlemcen (UABB), BP 119, Tlemcen 13000, Algeria.
Unité Matériaux et Transformations (UMET), UMR 8207, University Lille, CNRS, INRAE, Centrale Lille, 59000 Lille, France.
Polymers (Basel). 2022 Nov 19;14(22):5024. doi: 10.3390/polym14225024.
This investigation reports on the thermomechanical properties of Poly-tripropyleneglycoldiacrylate (Poly-TPGDA)/liquid crystal (LC) blends, developed via free radical polymerization processes, which are induced by Electron Beam (EB) and Ultraviolet (UV) radiation. The EB-cured Poly-TPGDA network exhibits a higher glass transition temperature (), a higher tensile storage, and Young moduli than the corresponding UV-cured sample, indicating a lower elasticity and a shorter distance between the two adjacent crosslinking points. Above of Poly-TPGDA/LC blends, the LC behaves as a plasticizing agent, whereas, for EB-cured networks, at temperatures below , the LC shows a strong temperature dependence on the storage tensile modulus: the LC reinforces the polymer due to the presence of nano-sized phase separated glassy LC domains, confirmed by electron microscopy observations. In the case of the UV-cured TPGDA/LC system, the plasticizing effect of the LC remains dominant in both the whole composition and the temperature ranges explored. The rubber elasticity and of Poly-TPGDA/LC films were investigated using mechanical measurements.
本研究报告了通过自由基聚合过程制备的聚三丙二醇二丙烯酸酯(Poly-TPGDA)/液晶(LC)共混物的热机械性能,该过程由电子束(EB)和紫外线(UV)辐射引发。与相应的UV固化样品相比,EB固化的Poly-TPGDA网络具有更高的玻璃化转变温度()、更高的拉伸储能模量和杨氏模量,这表明其弹性较低,两个相邻交联点之间的距离较短。在Poly-TPGDA/LC共混物的 以上,LC表现为增塑剂,而对于EB固化网络,在低于 的温度下,LC对储能拉伸模量表现出强烈的温度依赖性:通过电子显微镜观察证实,由于存在纳米级相分离的玻璃态LC域,LC增强了聚合物。在UV固化的TPGDA/LC体系中,LC的增塑作用在整个组成和所研究的温度范围内均占主导地位。使用机械测量方法研究了Poly-TPGDA/LC薄膜的橡胶弹性和 。