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Two-way shape memory property and its structural origin of cross-linked poly(epsilon-caprolactone)

机译:交联聚ε-己内酯的双向形状记忆性能及其结构成因

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In this work, two-way shape memory (TWSM) properties and the corresponding structural origin of cross-linked poly(epsilon-caprolactone) (cPCL) with different gel contents obtained by adopting different weight percentages of benzoyl peroxide (BPO) were investigated. The effects of gel contents on melting temperatures, crystallization temperatures and crystallinity of the cPCL materials were studied with differential scanning calorimetry. The TWSM properties of the samples were determined by dynamic mechanical analysis. It was found that gel content was the key factor determining the TWSM behavior, and higher gel content would result in the so-called robust TWSM effect for cPCL samples (cPCLx, x denoting the weight percentage of BPO). Compared with cPCL10, cPCL5 had larger elongation and lower recovery capabilities due to its lower gel content. However, the sample with much lower gel content (cPCL3) displayed almost no TWSM behavior, implying that an appropriate gel content was responsible for the TWSM characteristic. The crystalline structure of cPCLx subsequently changed when subjected to external stress. As the samples were cooled down under constant stress, higher stress would lead to a more oriented crystalline structure. Furthermore, concurrent wide-angle and small-angle X-ray scattering investigations revealed the structural evolution occurring during the TWSM process, indicating that the crystal orientation along the stretching direction took place simultaneously with the elongation during the cooling process.
机译:在这项工作中,研究了双向形状记忆(TWSM)特性和通过采用不同重量百分比的过氧化苯甲酰(BPO)获得的具有不同凝胶含量的交联聚(ε-己内酯)(cPCL)的相应结构起源。用差示扫描量热法研究了凝胶含量对cPCL材料的熔融温度,结晶温度和结晶度的影响。样品的TWSM特性通过动态力学分析确定。已发现,凝胶含量是决定TWSM行为的关键因素,而较高的凝胶含量将导致cPCL样品的所谓稳健TWSM效应(cPCLx,x表示BPO的重量百分比)。与cPCL10相比,由于cPCL5的凝胶含量较低,因此具有较大的伸长率和较低的恢复能力。但是,具有低得多的凝胶含量(cPCL3)的样品几乎没有表现出TWSM行为,这表明适当的凝胶含量是TWSM特性的原因。当受到外部应力时,cPCLx的晶体结构随后发生了变化。当样品在恒定应力下冷却时,较高的应力将导致晶体结构更加定向。此外,同时进行的广角和小角X射线散射研究揭示了TWSM过程中发生的结构演变,表明沿拉伸方向的晶体取向与冷却过程中的伸长同时发生。

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