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Dual and Triple Shape Capability of AB Polymer Networks Based on Poly(ε-caprolactone)dimethacrylates

机译:基于聚(ε-己内酯)二甲基丙烯酸酯的AB高分子网络的双形和三重形状能力

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摘要

Shape-Memory polymers are an emerging class of functionalized materials, which are able to change their change in a predefined way upon appropriate stimulation. In the past research has mostly focused on the implementation of new ways to trigger the shape-memory effect. Although the stimuli were differing, these systems were dual-shape materials. Recently, multi-phase shape-memory polymers with an additional switching phase were introduced. These materials allow the selection of the switching segment according to the requirements of the specific application. The dual shape-capability and the underlying molecular mechanisms are discussed for such multiphase polymer networks. Furthermore, these materials display triple-shape capability after appropriate programming, which enables them to change from a first shape (A) to a second shape (B) and from there to a third shape (C). Two different polymer network architectures for triple-shape polymer networks are described and investigated towards their dual and triple shape-properties. The programming of these materials can be fairly complex, therefore we will show finally an one-step programming to reach triple-shape capability.
机译:形状记忆聚合物是官能化材料的新出现类别,能够在适当的刺激后以预定的方式改变它们的变化。在过去的研究中,主要集中在实施新方法来触发形状记忆效果。虽然刺激是不同的,但这些系统是双形材料。最近,引入了具有额外切换阶段的多相形状记忆聚合物。这些材料允许根据特定应用的要求选择切换段。对这种多相聚合物网络讨论了双重形状能力和潜在的分子机制。此外,这些材料在适当的编程之后显示三重形状能力,这使得它们能够从第一形状(a)到第二形状(b)和从那里改变为第三形状(c)。描述并研究了两种不同的三种聚合物网络的不同聚合物网络架构,并针对其双重和三重形状。这些材料的编程可以相当复杂,因此我们将终于显示一步程,以达到三重形状的能力。

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