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Melt and glass crystallization of PDMS and PDMS silica nanocomposites

机译:PDMS和PDMS二氧化硅纳米复合材料的熔融和玻璃结晶

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摘要

Silica nanoclusters were homogeneously dispersed into an end-linked PolyDiMethylSiloxane (PDMS) matrix. Dynamic relaxation, glass and melt crystallization of end-linked PDMS-silica nanocomposites (PDMSnanoSi) were compared to those of PDMS. A particular emphasis is made on the kinetic aspects of these transitions by corroborating investigations conducted by means of Dynamic Mechanical Analysis (DMA) and Differential Scanning Calorimetry (DSC). Addition of silica nanoclusters does not modify the relaxation behavior of the amorphous phase and the glass transition kinetics. However, melt and glass crystallizations are significantly promoted in the presence of silica nanoclusters. The secondary crystallization process is more pronounced for PDMSnanoSi and higher crystal perfection due to structuring effects of silica nanoclusters is also highlighted. For the two systems, one set of Hoffman- Lauritzen parameters have been evaluated by combining melt and glass crystallization kinetic data.
机译:将二氧化硅纳米团簇均匀分散在末端连接的聚二甲基硅氧烷(PDMS)基质中。将末端连接的PDMS-二氧化硅纳米复合材料(PDMSnanoSi)与PDMS的动态弛豫,玻璃和熔融结晶进行了比较。通过证实借助动态力学分析(DMA)和差示扫描量热法(DSC)进行的研究,对这些转变的动力学方面进行了特别强调。二氧化硅纳米团簇的添加不会改变非晶相的弛豫行为和玻璃化转变动力学。但是,在二氧化硅纳米团簇的存在下,熔体和玻璃的结晶作用得到明显促进。对于PDMSnanoSi,二次结晶过程更加明显,并且由于二氧化硅纳米团簇的结构化效应,具有更高的晶体完美度。对于这两个系统,已经通过结合熔体和玻璃结晶动力学数据评估了一组霍夫曼-劳里岑参数。

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