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The manufacture of honeycomb cores using Fused Deposition Modeling

机译:使用熔融沉积建模制造蜂窝芯

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Sandwich panels are used in many industries for the advantageous properties of high stiffness, good strength to weight ratio, and impact resistance. This paper investigates properties of thin-walled cores manufactured through Fused Deposition Modeling (FDM); a process which, through a wider design space, could improve the functionality of sandwich panels. The bond strength between the layers of thin walls manufactured through FDM was evaluated through tensile testing. To measure the effect of modified manufacturing speeds, wall thicknesses were varied through the flow rate and nozzle speed. Honeycomb cores using FDM were produced with different toolpaths, and compared with an example of an industry standard Nomex honeycomb core. During tensile testing, thick-walled FDM components exhibited a more ductile failure with a lower yield point when compared to thinner specimens. The ultimate tensile stress remained constant across samples within each of the tested ABS and PLA polymers used. Honeycomb cores produced using FDM were found to have a higher compressive failure force than Nomex honeycomb, and a lower specific strength. The force–displacement curves of compressive failure show a ductile response for thick specimens, consistent with the previous result. These results, combined with the increased flexibility of additive manufacture technologies, could provide a method of manufacturing high strength cores with complex geometry.
机译:夹芯板在许多行业中都被用于具有高刚度,良好的强度重量比和抗冲击性等优点。本文研究了通过熔融沉积建模(FDM)制造的薄壁磁芯的性能。通过更广泛的设计空间可以改善夹心板功能的过程。通过拉伸试验评估通过FDM制造的薄壁层之间的结合强度。为了测量改进的制造速度的影响,通过流速和喷嘴速度来改变壁厚。使用FDM生产的蜂窝芯具有不同的加工路径,并与行业标准Nomex蜂窝芯的示例进行了比较。在拉伸测试中,与较薄的样品相比,厚壁的FDM组件表现出更大的延性破坏,屈服点更低。在所使用的每种测试的ABS和PLA聚合物中,样品的最终拉伸应力均保持恒定。发现使用FDM生产的蜂窝芯比Nomex蜂窝具有更高的压缩破坏力和更低的比强度。压缩破坏的力-位移曲线显示出厚试样的延性响应,与先前的结果一致。这些结果,加上增材制造技术的增加的灵活性,可以提供一种制造具有复杂几何形状的高强度芯的方法。

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