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Anisotropic Dynamic Mechanical Properties of 3D Printed Carbon-Fiber Composites

机译:3D打印碳纤维复合材料的各向异性动态力学性能

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3D printing is a revolutionary manufacturing method that allows the productions of engineering parts almost directly from modeling software on a computer. With 3D printing technology, future manufacturing could become vastly efficient. However, it has been reported that the 3D printed parts exhibit anisotropic behaviors in microstructure and mechanical properties, that is, depending on the positions (infill orientations) that the parts are placed on a printer platform, the properties of resultant parts can vary greatly. So far, studies on anisotropic behaviors of 3D printed parts have been mostly limited to the static properties (modulus of elasticity, failure strength, etc.); there is a lack on the understanding of mechanical responses of 3D printed parts under dynamic conditions. In the present study, the anisotropic behaviors of 3D printed parts are investigated from the dynamic aspect. Carbon-fiber reinforced ABS (acrylonitrile butadiene styrene) composite plates are 3D printed at various infill orientations. The plates are tested using a dynamic mechanical tester and the mode frequencies are measured. The plates are further modeled by using finite element method and additional modal characteristics are obtained. It is observed that the changes in orientation of 3D printed infill have resulted in significant changes in the mode frequencies of the composite plates. Depending on the boundary conditions of the plates (top-bottom fixed or left-right fixed), the first mode frequency would exhibit continuous decrease or increase, with a maximum change up to 117%. The changes in orientation in 3D printed infill have also altered the modal shapes of the plates. The modal characteristics, including mode indexes, model lines, etc., have changed dramatically, particularly at higher vibration modes.
机译:3 d打印技术是一种革命性的制造方法,允许产品工程部分几乎直接从建模软件电脑。制造业可能会极大地有效。然而,据报道,3 d印刷部分表现出各向异性行为微观结构和力学性能,是,这取决于位置(加密部分是放置在一个方向)打印机平台,合成的特性部分可以有很大区别。各向异性行为的3 d印刷部分大多局限于静态属性(弹性模量、故障强度等);有一个缺乏了解机械响应下的3 d印刷部分动态条件。各向异性行为的3 d印刷部分从动态方面的调查。碳纤维增强ABS(丙烯腈丁二烯苯乙烯)复合板块3 d印刷在各种加密取向。使用动态机械板块进行测试试验机测量频率和模式。板块进一步建模通过使用有限的元素方法和额外的模态得到了特征。3 d印制加密的方向变化导致重大的变化模式频率的复合板材。板块的边界条件(自上而下固定或左右固定),第一个模式将展览持续减少或频率增加,最大变化达到117%。取向的变化在3 d印刷加密也改变了板的模态形状。模态特征,包括模式索引,模型线等,有了显著的变化,特别是在更高的振动模式。

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