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Bismaleimide/preceramic polymer blends for hybrid material transition regions: Part 2. Incorporating compatibilizers

机译:用于混合材料过渡区域的双马来酰亚胺/陶瓷聚合物共混物:第2部分。

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摘要

The problem of phase separation in polycarbosilane (Starfire resin)-Matrimid thermoset blend structures, designed for thermal protection applications, was addressed in this study. The structural design of the compatibilizers synthesized via a hydrosilylation—deprotection sequence was primarily based on a polymer structure with a nonpolar segment consisting of a carbosilane unit and a polar segment with a bisphenol-type moiety. Besides the homopolymer, block copolymers with varying contents of the polycarbosilane unit and the bisphenol A unit were synthesized and characterized. Curing experiments on the blends of Starfire resin-Matrimid incorporating 1-5% of the compatibilizers were performed followed by morphological characterization of the cured resin plaques. The effectiveness of the compatibilizers was assessed by the StarFire domain size and the distribution of cured specimens was examined in the scanning electron micrographs. Results indicated that the compatibilizers that were more effective in minimizing phase separation were relatively more polar and comprised a larger fraction of the phenolic functional units. In fact, the blend composition incorporating 5% of the homopolymer compatibilizer with the largest fraction of the polar bisphenol A unit was highly effective in providing a homogeneous distribution of very small StarFire domains, that is, fairly uniform domain sizes of the order of 5 urn or less.
机译:本研究解决了专为热保护应用设计的聚碳硅烷(Starfire树脂)-Matrimid热固性共混物结构中的相分离问题。通过氢化硅烷化-脱保护序列合成的增容剂的结构设计主要基于具有由碳硅烷单元组成的非极性链段和具有双酚型部分的极性链段的聚合物结构。除了均聚物以外,还合成并表征了具有不同含量的聚碳硅烷单元和双酚A单元的嵌段共聚物。对掺有1-5%增容剂的Starfire树脂-基质胶的共混物进行固化实验,然后对固化的树脂板进行形态表征。相容剂的有效性通过StarFire区域大小进行评估,并在扫描电子显微照片中检查固化样品的分布。结果表明,在最小化相分离方面更有效的增容剂具有相对较高的极性,并包含较大比例的酚官能团。实际上,掺入5%的均聚物增容剂和最大比例的极性双酚A单元的共混组合物在提供非常小的StarFire域的均匀分布(即5 um量级的相当均匀的域大小)方面非常有效或更少。

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