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Partially crystalline epoxy networks with superior mechanical and adhesion properties

机译:具有优异的机械和粘合性能的部分结晶的环氧网络

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摘要

The mechanical and adhesion behavior of cationically polymerized, partially crystalline epoxy networks is presented. For this, a reactive and a nonreactive poly(e-caprolactone) (PCL) were used as the crystalline component for the formation of copolymers and polymer alloys, respectively. The trade-off between toughness on the one hand and glass transition temperature and mechanical strength on the other can be reduced by the presence of nanostructures in combination with small crystalline domains (< 1 mu m), as in the case of epoxy/PCL-based polymer alloys. This structure-property relationship reveals that a certain degree of crystallinity leads to enhanced toughness in cationically polymerized epoxy networks.
机译:介绍了阳离子聚合的部分结晶的环氧网络的机械性能和粘合性能。为此,反应性和非反应性聚己内酯(PCL)分别用作形成共聚物和聚合物合金的结晶组分。一方面,韧性的提高与另一方面玻璃化转变温度和机械强度之间的权衡可以通过纳米结构与小晶域(<1μm)的结合来减少,如环氧/ PCL-基聚合物合金。这种结构-性质关系表明,一定程度的结晶度导致阳离子聚合环氧网络的韧性提高。

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