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Viscoelastic characteristics of shape memory polymers

机译:形状记忆聚合物的粘弹性特征

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Shape memory polymers (SMP_s) can keep a temporary state and subsequently recover to the original shape through a prescribed thermomechanical process. Although different theoretical models have been presented, the viscous effects were seldom considered. This article aims to provide an insight into the viscoelastic property of SMPs and its effect on the functional realization. Systematic thermomechanical experiments were performed. Special considerations were focused on the viscoelastic response of SMPs in the vicinity of the glass transition temperature T_g. The relations between shape switching transition temperature T_(tran) and T_g were also discussed. The results confirm that T_(tran) departs from T_g due to the viscoelastic effect and does not keep a constant value during heating and cooling processes. The viscoelastic effect reaches to maximum value at T _g, then decreases slowly at cooling and quickly at heating.
机译:形状记忆聚合物(SMP_s)可以保持临时状态,然后通过规定的热机械过程恢复到原始形状。尽管提出了不同的理论模型,但很少考虑粘性作用。本文旨在深入了解SMP的粘弹性质及其对功能实现的影响。进行了系统的热力学实验。特殊考虑集中在玻璃化转变温度T_g附近的SMP的粘弹性响应上。还讨论了形状转换转变温度T_(tran)和T_g之间的关系。结果证实,T_(tran)由于粘弹性效应而偏离T_g,并且在加热和冷却过程中未保持恒定值。粘弹性效应在T_g达到最大值,然后在冷却时缓慢下降,在加热时迅速下降。

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