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Two-way shape memory behavior of semi-crystalline elastomer under stress-free condition

机译:无应力条件下半结晶弹性体的双向形状记忆行为

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Semi-crystalline shape memory polymers exhibit two-way shape memory effect (2W-SME) under constant stresses through crystallization-induced elongation upon cooling and melting-induced constriction upon heating. The applied constant stress influenced the prediction and usability of 2W-SME in practical applications without any external force. Here the reversible shape transition in EVA-shaped memory polymer was quantitative analyzed under a suitable temperature range and external stress-free condition. The fraction of reversible strain increased with increasing upper temperature (T-high) within the temperature range and reached the maximum value of 13.62% at 70 degrees C. However, reversible strain transition was almost lost when T-high exceeded 80 degrees C because of complete melting of crystalline scaffold, known as the latent recrystallization template. The non-isothermal annealing of EVA 2W-SMP under changing circulating temperatures was confirmed. Moreover, the orientation of crystallization was retained at high temperatures. These findings may contribute to design an appropriate shape memory protocol based on application-specific requirements.
机译:半结晶形状记忆聚合物在恒定应力下通过冷却时的结晶诱导伸长和加热时的熔融诱导收缩表现出双向形状记忆效应(2W-SME)。施加的恒定应力在没有任何外力的情况下影响了2W-SME在实际应用中的预测和可用性。在此,在合适的温度范围和无外部应力条件下,对EVA形状记忆聚合物中的可逆形状转变进行了定量分析。在此温度范围内,可逆应变的分数随较高温度(T-high)的增加而增加,并在70摄氏度达到最大值13.62%。但是,当T-high超过80摄氏度时,可逆应变几乎消失了,原因是晶体支架完全熔化,称为潜在的重结晶模板。确认了EVA 2W-SMP在循环温度变化下的非等温退火。此外,结晶的取向在高温下得以保持。这些发现可能有助于基于特定于应用程序的要求设计适当的形状记忆协议。

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