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Mechanical properties and strain-rate effect of EVA/PMMA in situ polymerization blends

机译:EVA / PMMA原位聚合共混物的力学性能和应变率效应

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Transparent EVA/PMMA sheets are produced via in situ polymerization of MMA in this work. In the presence of the EVA-graft-PMMA (EVA-g-PMMA), which is synthesized by using tert-butyl peroctoate (t-BO) as initiator during MMA polymerization, EVA can be well dispersed in the PMMA matrix. Both tensile fracture energy and Izod impact strength of the EVA/PMMA blends are higher than those of the neat PMMA. SEM photos show that the grafted copolymer also prevents the dispersed EVA particles from being pulled out from the fracture surface. While the EVA/ PM MA blends are investigated at room temperature over the strain rates of four decades (from 1.6 x 10(-4) to 0.16 s(-1)). It has an obvious transition, whereas the neat PMMA remains brittle over the entire range of strain rates. (C) 2003 Elsevier Ltd. All rights reserved.
机译:在这项工作中,通过MMA的原位聚合生产了透明的EVA / PMMA片材。在MMA聚合过程中使用过辛酸叔丁酯(t-BO)作为引发剂合成的EVA接枝PMMA(EVA-g-PMMA)的存在下,EVA可以很好地分散在PMMA基质中。 EVA / PMMA共混物的拉伸断裂能和艾佐德冲击强度均高于纯PMMA。 SEM照片表明,接枝共聚物还防止分散的EVA颗粒从断裂表面拉出。虽然在室温下研究了EVA / PM MA共混物的应变速率为四十年(从1.6 x 10(-4)到0.16 s(-1))。它具有明显的过渡,而纯净的PMMA在整个应变速率范围内仍保持脆性。 (C)2003 Elsevier Ltd.保留所有权利。

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