首页> 外文期刊>Journal of Materials Science >THE ROLE OF PARTICLE SIZE AND POLYMER MOLECULAR WEIGHT IN THE FORMATION AND PROPERTIES OF AN ORGANO-CERAMIC COMPOSITE
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THE ROLE OF PARTICLE SIZE AND POLYMER MOLECULAR WEIGHT IN THE FORMATION AND PROPERTIES OF AN ORGANO-CERAMIC COMPOSITE

机译:粒径和聚合物分子量在有机陶瓷复合材料的形成和性能中的作用

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摘要

The role of particle size and polymer molecular weight in the formation and properties of a calcium aluminate cement-poly(vinyl alcohol) composite was investigated. Banbury mixing studies, in combination with poly(vinyl alcohol) solution rheology, showed paste formation to be dependent on the polymer degree of polymerization and concentration. Both polymer molecular weight and cement particle size have an effect on the mechanochemistry, the ''window of processibility'', and mechanical properties of the hardened matrix. Increasing the polymer chain length appears to accelerate the mechanically induced crosslinking reactions between the polymer and cement hydration phases, thereby diminishing the processing window. Decreasing the cement mean particle size has a similar effect. Polymer degree of polymerization and cement particle size distribution are shown to be important factors in the mechanical properties of the hardened composite. Scanning electron microscopy (SEM) micrographs show that wide polydispersity in the grain phase is important in attaining a macro-defect-free microstructure. [References: 16]
机译:研究了粒径和聚合物分子量在铝酸钙水泥-聚乙烯醇复合材料的形成和性能中的作用。 Banbury混合研究与聚乙烯醇溶液的流变学相结合,表明糊的形成取决于聚合物的聚合度和浓度。聚合物的分子量和水泥的粒径都对机械化学,“可加工性的窗口”以及硬化基质的机械性能都有影响。增加聚合物链的长度似乎加速了聚合物与水泥水合相之间的机械诱导的交联反应,从而减小了加工窗口。减小水泥平均粒度具有相似的效果。聚合物的聚合度和水泥的粒度分布被证明是硬化复合材料机械性能的重要因素。扫描电子显微镜(SEM)的显微照片表明,在晶粒相中宽的多分散性对于获得无宏观缺陷的微观结构很重要。 [参考:16]

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