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DIRECT WRITE ADDITIVE MANUFACTURING OF HIGH-STRENGTH, SHORT FIBER REINFORCED SANDWICH PANELS

机译:直接写入高强度,短纤维增强夹层板

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Additive manufacturing (AM) is a novel technology which allows fabrication of complex geometries from digital representations without tooling. In addition, this technology results in low material waste, short lead times and cost reduction especially for the production of parts in low quantities. Current additive manufacturing processes developed for thermoplastic sandwich panels suffer from an unavoidable weak mechanical performance and low thermal resistance. To overcome these limitations, emphasis is paid in this study on direct write AM technology for the fabrication of short carbon fiber-reinforced sandwich panel composites. Sandwich panels using different infill densities with high strength (> 107 MPa), and high short carbon fiber volume (46%) were attained successfully. In parallel to the strength enhancement, these sandwich panels possessed reduced densities (0.72 g/cci) due to their lightweight lattice core structures. The mechanical performance of the created sandwich panels was examined and compared to the unreinforced, base ink structures by performing compression tests. Successful fabrication and characterization of the additively manufactured thermoset-based carbon fiber reinforced, sandwich panels in this study can extend the range of applications for AM composites that require lightweight structures, high mechanical performance as well as the desired component complexity.
机译:添加剂制造(AM)是一种新颖的技术,允许在没有工具的情况下从数字表示的复杂几何形状制造。此外,该技术导致材料浪费,短的交货时间短,降低成本,特别是在低量零件的生产中。用于热塑性夹层电池板的电流添加剂制造工艺患有不可避免的机械性能和低热阻力。为了克服这些限制,重点是在本研究中向直接写AM技术进行了支付,用于制造短碳纤维增强夹层组合材料。使用具有高强度(> 107MPa)的不同填充密度的夹层面板和高碳纤维体积(46%)成功获得。与强度增强平行,由于其轻质格子核心结构,这些夹层面板具有减少的密度(0.72g / cci)。通过进行压缩测试,检查产生的夹心板的机械性能并与未原始的基础墨水结构相比。该研究中的夹层板的成功制造和表征加含量的热固性的碳纤维增强,可以延长需要轻质结构,机械性能高以及所需的组分复杂性的AM复合材料的应用范围。

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