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Achieving shape memory : reversible behaviors of cellulose-PU blends in wet-dry cycles

机译:实现形状记忆:纤维素-PU共混物在干湿循环中的可逆行为

摘要

Shape memory effect (SME) was achieved for cellulose-polyurethane (PU) blends of different compositions in wet-dry cycles, featuring that the amorphous cellulose and the PU content served as the fixing phase and the recovery phase, respectively. The dependence on the compositions of the fixity ratio and the recovery ratio was quantitatively measured by tensile tests. The morphological and thermal properties of the blends were further investigated by scanning electron microscopy and thermogravimetric analysis. The storage modulus of the blends varied reversibly in the wet-dry cycles, as determined by dynamic mechanical analysis. Furthermore, the microstructure of the blends reversibly changed correspondingly, as determined by wide-angle X-ray scattering diffraction and Fourier transform infrared. It was predicted that the reversible transition in different amorphous cellulose structures triggered by water led to the reversible variation in modulus as well as the wet-dry SME of the blends.
机译:在湿-干循环中,不同组成的纤维素-聚氨酯(PU)共混物获得了形状记忆效应(SME),其特征在于无定形纤维素和PU含量分别用作固定阶段和恢复阶段。通过拉伸试验定量地测定固定率和回收率对组成的依赖性。通过扫描电子显微镜和热重分析进一步研究了共混物的形态和热性能。共混物的储能模量在干湿循环中可逆地变化,这是通过动态力学分析确定的。此外,如通过广角X射线散射衍射和傅立叶变换红外光谱所确定的,共混物的微观结构相应地可逆地改变。据预测,由水引发的不同无定形纤维素结构中的可逆转变导致共混物的模量以及湿-干SME的可逆变化。

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