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EFFECTS OF PROGRAMMING TEMPERATURE ON THE EFFICIENCY OF SELF-HEALING POLYMERS

机译:编程温度对自热聚合物效率的影响

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Self-healing shape memory polymers possess the ability to heal macro and micro cracks by autonomic processes or when subjected to a suitable external stimulus. Recent advancements in the field have shown that the healing capabilities of self-healing polymers can be improved, thus yielding to high healing efficiencies. Depending on the application, the efficiency may refer to shape fixity, shape recovery ratio, dimensions recovery, strength regain, crack healing, etc. Based on test results, it is established that there is an intrinsic correlation between pre-strain levels, shape fixing and free shape recovery of samples programmed above the glass transition temperature (Tg). For samples programmed at multiple temperatures (above and below the glass transition temperature), the absence of lateral and 3D confinements lead to poor to no crack healing. Better compressive strength properties were, however, achieved by samples programmed at higher temperatures above Tg.
机译:自修复形状记忆聚合物具有通过自主过程或在受到适当外部刺激时修复宏观和微观裂缝的能力。该领域的最新进展表明,可以改善自修复聚合物的修复能力,从而获得高修复效率。取决于应用,效率可以指形状固定性,形状恢复率,尺寸恢复,强度恢复,裂纹愈合等。基于测试结果,可以确定预应变水平与形状固定之间存在内在关联。并在玻璃化转变温度(Tg)以上编程的样品的自由形状恢复。对于在多个温度(高于和低于玻璃化转变温度)下编程的样品,缺少横向和3D限制会导致不良裂纹愈合甚至没有裂纹愈合。但是,通过在高于Tg的较高温度下编程的样品可以实现更好的抗压强度性能。

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