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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Hyperstar poly(ester-methacrylate)s as additives in thermally and photocured epoxy resins
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Hyperstar poly(ester-methacrylate)s as additives in thermally and photocured epoxy resins

机译:Hyperstar聚(甲基丙烯酸酯)作为热和光固化环氧树脂的添加剂

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摘要

New hyperstar polymers (HSP) based on a hyperbranched polyester core (HBP-OH) and PMMA or P(MMA-b-HEMA) block copolymer arms have been prepared for use as nanoscale soft particle-like additives in an epoxy matrix cured cationically either by UV light or thermally. The effects of the additive as well as the curing process on the epoxy group conversion, gel content, morphology and the thermal and viscoelastic properties of the cured materials were evaluated. It was found that in both curing processes the non-reactive hyperstar HBP-PMMA resulted in phase-separated materials with low effect on flexibilization whereas by use of HBP-P(MMA-b-HEMA) the OH groups in the HEMA units allowed chemical bonding of the HSP to the epoxy network and hindered phase separation. The epoxy group conversion was enhanced in thermally cured samples but significantly decreased in photocured ones showing the most effective flexibilization demonstrated as reduction in T_g, whereas in both cases, high gel contents have been achieved using the reactive HSPs. Thus, the increased temperature in the thermal curing process enhances the effectiveness of the HSPs as multifunctional crosslinkers leading to higher curing rates and crosslinking density, whereas in photocuring the flexibilization effect can be enhanced by having high gel content at lower epoxy group conversion.
机译:基于超支化聚酯核(HBP-OH)和PMMA或P(MMA-b-HEMA)嵌段共聚物臂的新型hyperstar聚合物(HSP)已准备好用作阳离子固化的环氧基质中的纳米级软颗粒状添加剂通过紫外线或热。评估了添加剂以及固化过程对固化材料环氧基转化率,凝胶含量,形态以及热和粘弹性的影响。结果发现,在两种固化过程中,非反应性超级巨星HBP-PMMA均导致相分离的材料,对柔韧性的影响较小,而通过使用HBP-P(MMA-b-HEMA),HEMA单元中的OH基团允许化学反应HSP与环氧网络的键合并阻碍相分离。在热固化的样品中,环氧基的转化率提高了,但是在光固化的样品中,环氧基的转化率却显着下降,显示出最有效的柔韧性,这是T_g的降低,而在两种情况下,使用反应性HSP均可以实现高凝胶含量。因此,在热固化过程中升高的温度增强了HSPs作为多功能交联剂的效力,从而导致更高的固化速率和交联密度,而在光固化过程中,可通过在较低的环氧基团转化率下具有较高的凝胶含量来提高柔韧性。

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