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FABRICATION AND CHARACTERIZATION OF HIGH TEMPERATURE RESIN/CARBON NANOFIBER COMPOSITES

机译:高温树脂/碳纳米河复合材料的制造与表征

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As part of ongoing efforts to develop multifunctional advanced composites, blends of PETI-330 and carbon nanofibers (CNF) were prepared and characterized. Dry mixing techniques were employed and the effect of CNF loading level on melt viscosity was determined. The resulting powders were characterized for degree of mixing, thermal and rheological properties. Based on the characterization results, samples containing 30 and 40 wt percent CNF were scaled up to approx 300 g and used to fabricate moldings 10.2 cm X 15.2 cm X 0.32 cm thick. The moldings were fabricated by injecting the mixtures at 260-280 deg C into a stainless steel tool followed by curing for 1 h at 371 deg C. The tool was designed to impart high shear during the injection process in an attempt to achieve some alignment of CNFs in the flow direction. Moldings were obtained that were subsequently characterized for thermal, mechanical and electrical properties. The degree of dispersion and alignment of CNFs were investigated using high-resolution scanning electron microscopy. The preparation and preliminary characterization of PETI-330/CNF composites will be discussed.
机译:作为开发多功能先进复合材料的持续努力的一部分,制备了PetI-330和碳纳米纤维(CNF)的共混物。使用干混合技术,测定CNF负载水平对熔体粘度的影响。所得粉末的特征在于混合程度,热和流变性能。基于表征结果,含有30和40重量%CNF的样品缩放至约300克,并用于制造成型10.2cm×15.2cm×0.32cm厚的模制品。通过将混合物在260-280℃的混合物中注入不锈钢工具,然后在371℃下固化1小时来制造模制品。该工具设计成在注射过程中赋予高剪切以实现一些对准流量方向上的CNF。得到的成型,随后表征热,机械和电性能。使用高分辨率扫描电子显微镜研究CNFS的分散度和对准程度。将讨论PetI-330 / CNF复合材料的制备和初步表征。

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