首页> 外文期刊>Journal of Applied Polymer Science >Shape-memory behaviors of sensitizing radiation-crosslinked polycaprolactone with polyfunctional poly(ester acrylate)
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Shape-memory behaviors of sensitizing radiation-crosslinked polycaprolactone with polyfunctional poly(ester acrylate)

机译:多官能团聚(丙烯酸酯)敏化辐射交联聚己内酯的形状记忆行为

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摘要

The sensitizing effects of polyfunctional poly(ester acrylate) on the radiation crosslinking of polycaprolactone (PCL) were studied. The influences of the use of the polyfunctional material, the number of functional groups, and the radiation dose on the radiation crosslinking, dynamic mechanical properties, and shape-memory behaviors of PCL, respectively, were investigated. The radiation crosslinking of PCL, under the conditions in which the polyfunctional material was applied, did not follow the classic Charlesby-Pinner equation but instead followed the Chen-Liu-Tang relation. The efficiency of the radiation crosslinking of PCL was distinctly improved with the polyfunctional material. The greater the usage and functional group number were, the greater gel content and the more distinctive the radiation-crosslinking effects were. This also indicated that the polyfunctional material directly participated in the crosslinking reaction. Dynamic mechanical analysis indicated that enhanced radiation crosslinking better raised the heat deformation temperature of PCL and presented a higher and wider rubbery-state plateau; it also produced greater strength at temperatures higher than the melting temperature and provided greater force for recovering the deformation than pure PCL. The shape-memory results revealed that sensitizing crosslinked PCL presented 100% recoverable deformation and a quicker recovery rate. (C) 2004 Wiley Periodicals, Inc.
机译:研究了多官能聚丙烯酸丙烯酸酯对聚己内酯(PCL)辐射交联的敏化作用。研究了多官能团材料的使用,官能团数和辐射剂量分别对PCL的辐射交联,动态力学性能和形状记忆行为的影响。在使用多官能材料的条件下,PCL的辐射交联不遵循经典的Charlesby-Pinner方程,而是遵循Chen-Liu-Tang关系。多官能材料显着提高了PCL的辐射交联效率。用量和官能团数越大,凝胶含量越大,辐射交联作用越明显。这也表明多官能材料直接参与交联反应。动态力学分析表明,增强的辐射交联能更好地提高PCL的热变形温度,并呈现出更高和更宽的橡胶态平台。与纯PCL相比,它在高于熔化温度的温度下也能产生更大的强度,并提供更大的恢复变形的力。形状记忆结果表明,敏化的交联PCL表现出100%的可恢复形变和更快的恢复速率。 (C)2004年Wiley Periodicals,Inc.

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