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ABC triblock copolymers/epoxy-diamine blends. 2. Parameters controlling the morphologies and properties

机译:ABC三嵌段共聚物/环氧二胺混合物。 2.控制形态和性质的参数

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The effect of composition and concentration of polystyrene-block-polybutadiene-block -poly-(methyl methacrylate) (SBM) copolymer triblock on final morphologies and properties of modified epoxy networks has been investigated. The DGEBA-MCDEA epoxy system, which ensures the miscibility of most of the PMMA blocks until the end of the reaction and thus the generation of a nanostructurated material, has been chosen. For low copolymer concentration (10 wt %), the network structure is found to be independent of the composition and micelles of PS and PB blocks, can be undifferently observed. However, increasing copolymer amounts from 10 to 50 wt induces a morphology change to either "spheres on spheres" or "core-shell" structure depending on the PB content in the triblock, For copolymer concentration higher than 50 wt %, the morphology strongly depends on the processing technique used, and only films prepared by solvent casting show an organization with long-range order similar to the neat block copolymer. The toughness of nanostructured epoxy networks has been evaluated. For low SBM concentration the toughness was observed to linearly vary with the PB concentration. For higher SBM concentrations (30 and 50 wt %) the "spheres on spheres" morphology is found to be more efficient than the "core-shell" one to improve the toughness of the epoxy network. But in all cases a higher toughness is obtained when the nanostructure is preserved; when a macrophase separation occurs, the toughness increase is lower. [References: 13]
机译:研究了聚苯乙烯-嵌段-聚丁二烯-嵌段-聚-(甲基丙烯酸甲酯)(SBM)共聚物三嵌段的组成和浓度对改性环氧网络最终形态和性能的影响。选择了DGEBA-MCDEA环氧体系,该体系可确保大多数PMMA嵌段在反应结束之前具有可混溶性,因此可以生成纳米结构材料。对于低共聚物浓度(10 wt%),发现网络结构与组成无关,并且可以无差别地观察到PS和PB嵌段的胶束。然而,将共聚物的量从10 wt%增加到50 wt%会导致“球形的球”或“核-壳”结构的形态变化,具体取决于三嵌段共聚物中的PB含量。对于共聚物浓度高于50 wt%的形态,其强烈影响就所使用的加工技术而言,只有通过溶剂流延制备的膜显示出与纯嵌段共聚物相似的具有长程有序的组织。纳米结构的环氧网络的韧性已得到评估。对于低SBM浓度,观察到韧性随PB浓度线性变化。对于较高的SBM浓度(30和50 wt%),发现“球上的球”形态比“核-壳”形态更有效,以改善环氧网络的韧性。但是,在所有情况下,保留纳米结构都会获得更高的韧性。当发生大相分离时,韧性增加较低。 [参考:13]

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