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Thermal and Mechanical Properties of Polyurethane Rigid Foam/Modified Nanosilica Composite

机译:聚氨酯硬泡/改性纳米二氧化硅复合材料的热力学性能

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摘要

Surface modification of fumed nanosilica was performed by using n-(2-aminoethyl)-3-aminopropyltrime-thoxysilane as a coupling agent. Then, modified nanosilica was utilized in the preparation of polyurethane rigid foam. The characterization and the study of properties were done by some techniques, such as Fourier transform infrared spectroscopy, thermogravi-metric analysis, scanning electron microscopy, dynamic mechanical analysis, and thermomechanical analysis. Also, tensile test was examined to evaluate the static mechanical properties. With the increasing of modified nanosilica, thermal and static mechanical properties were enhanced, but dynamic mechanical behavior was different from static mechanical behavior because of the different properties of interfacial domain and bulk matrix. The presence of functional groups on the nanosilica surface affected stoichiome-try and reduced hard phase formation in bulk polymer. The decrease in glass transition temperature (T_g) confirmed this statement.
机译:通过使用正-(2-氨基乙基)-3-氨基丙基三甲氧基-乙氧基硅烷作为偶联剂对气相纳米二氧化硅进行表面改性。然后,将改性纳米二氧化硅用于制备聚氨酯硬质泡沫。表征和性能研究是通过一些技术完成的,例如傅立叶变换红外光谱,热重分析,扫描电子显微镜,动态力学分析和热力学分析。另外,检查了拉伸试验以评估静态机械性能。随着改性纳米二氧化硅的增加,热力学性能和静态力学性能均得到提高,但由于界面域和本体基体性质的不同,动态力学性能与静态力学性能有所不同。纳米二氧化硅表面上官能团的存在影响了化学计量学并降低了本体聚合物中硬相的形成。玻璃化转变温度(T_g)的降低证实了这一说法。

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