Santo Loredana, Bellisario Denise, Quadrini Fabrizio
Department of Industrial Engineering, University of Rome "Tor Vergata", Via del Politecnico 1, 00133 Rome, Italy.
Polymers (Basel). 2018 Jan 25;10(2):115. doi: 10.3390/polym10020115.
Shape memory properties of PET (polyethylene-terephthalate) foams have been evaluated for two different foam densities. Samples were subjected to multiple memory-recovery cycles along three different directions to measure the effect of foam anisotropy on static mechanical and shape memory properties. The memory cycle was performed by uniaxial compression tests at room temperature. Despite these severe conditions, PET foams demonstrated very good shape memory behavior with shape recovery always higher than 90%. Due to cycling, the mechanical performance of foam samples is partially reduced, mainly along the extrusion direction of the foam panels. Despite this loss of static performance, shape memory properties are only partially affected by thermo-mechanical cycles. The maximum reduction is 10% for shape fixity and 3% for shape recovery. The experimental results are particularly interesting considering that compression tests were undertaken at room temperature. Indeed, PET foams seem to be optimal candidates for self-repairing structures.
已针对两种不同的泡沫密度评估了聚对苯二甲酸乙二酯(PET)泡沫的形状记忆特性。对样品沿三个不同方向进行了多次记忆恢复循环,以测量泡沫各向异性对静态力学性能和形状记忆特性的影响。记忆循环是在室温下通过单轴压缩试验进行的。尽管条件苛刻,但PET泡沫仍表现出非常良好的形状记忆行为,形状恢复率始终高于90%。由于循环作用,泡沫样品的力学性能会部分降低,主要是沿泡沫板的挤出方向。尽管静态性能有所损失,但形状记忆特性仅受到热机械循环的部分影响。形状固定率的最大降幅为10%,形状恢复率的最大降幅为3%。考虑到压缩试验是在室温下进行的,实验结果尤其有趣。实际上,PET泡沫似乎是自修复结构的最佳候选材料。