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Advanced carbon fiber composite out-of-autoclave laminate manufacture via nanostructured out-of-oven conductive curing

机译:通过纳米结构的炉外导电固化技术来制造高级碳纤维复合材料的高压釜外层压板

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摘要

Next-generation composite manufacturing processes are needed to overcome several limitations of conventional manufacturing processes (e.g., high energy consumption). Here we explore, via experiments and modeling, the characteristics of the newly developed out-of-oven (OoO) curing technique that cures a composite laminate via resistive heating of a carbon nanotube film. When compared to oven curing of an aerospace-grade out-of-autoclave (OoA) carbon fiber prepreg advanced composite laminate, the OoO curing reduces energy consumption by over two orders of magnitude (14 vs. 0.1 MJ). Thermophysical and mechanical tests including differential scanning calorimetry (DSC), dynamic mechanical analysis (DMA), short beam shear (SBS), andex-situandin-situdouble-edge notch tension (DENT) indicate that the physical and mechanical properties of OoO-cured laminates are equivalent to those of oven-cured (baseline) laminates. In addition to energy savings, the OoO curing process has the potential to reduce part-to-part variations through improved spatiotemporal temperature control.
机译:需要下一代复合材料制造工艺来克服常规制造工艺的若干限制(例如,高能耗)。在这里,我们通过实验和建模探索了新开发的炉外(OoO)固化技术的特性,该技术通过电阻加热碳纳米管薄膜来固化复合层压板。与航空级超高压(OoA)碳纤维预浸料高级复合层压板的烘箱固化相比,OoO固化将能耗降低了两个数量级(14 vs. 0.1 MJ)。热物理和机械测试,包括差示扫描量热法(DSC),动态力学分析(DMA),短梁剪切(SBS)和非原位和原位双边缘缺口张力(DENT),表明OoO固化层压材料的物理和机械性能等同于烤箱固化(基准)层压板。除了节省能源外,OoO固化工艺还可以通过改善时空温度控制来减少零件之间的差异。

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