Brostowitz Nicole R, Weiss R A, Cavicchi Kevin A
Department of Polymer Engineering, University of Akron, Akron, Ohio 44325, United States.
ACS Macro Lett. 2014 Apr 15;3(4):374-377. doi: 10.1021/mz500131r. Epub 2014 Apr 2.
A facile method was developed for fabrication of a robust shape memory polymer by swelling cross-linked natural rubber with stearic acid. Commercial rubber bands were swollen in molten stearic acid at 75 °C (35 wt % stearic acid loading). When cooled the crystallization of the stearic acid formed a percolated network of crystalline platelets. The microscopic crystals and the cross-linked rubber produce a temporary network and a permanent network, respectively. These two networks allow thermal shape memory cycling with deformation and recovery above the melting point of stearic acid and fixation below that point. Under manual, strain-controlled, tensile deformation the shape memory rubber bands exhibited fixity and recovery of 100% ± 10%.
通过用硬脂酸溶胀交联天然橡胶,开发了一种制备坚固形状记忆聚合物的简便方法。将市售橡皮筋在75°C的熔融硬脂酸中溶胀(硬脂酸负载量为35 wt%)。冷却时,硬脂酸结晶形成了由结晶薄片组成的渗透网络。微观晶体和交联橡胶分别产生一个临时网络和一个永久网络。这两个网络允许在高于硬脂酸熔点时进行热形状记忆循环,实现变形和恢复,而在低于该熔点时实现固定。在手动、应变控制的拉伸变形下,形状记忆橡皮筋的固定率和恢复率为100%±10%。