首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Experimental characterisation of fused filament fabrication printed parts under tension, shear, and combined shear-tension loads via Arcan test
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Experimental characterisation of fused filament fabrication printed parts under tension, shear, and combined shear-tension loads via Arcan test

机译:通过ArcAN测试在张力,剪切和组合剪切载荷下的熔丝丝制造印刷部件的实验表征

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The mechanical performance of fused filament fabrication printed parts is considered the weak point of the technology due to its high anisotropic structure and irregular behaviour. This research focuses on the application of the Arcan-based method to fused filament fabrication printed parts, to better understand their mechanical behaviour. In order to characterise and quantify the anisotropic behaviour, a butterfly type specimen was developed, taking into account the flaws presented by the process (e.g. need for support material for tilted surfaces, low resolution, etc.). Together with the Arcan type grip, a combination of vertical–transversal (VT), vertical-longitudinal (VL) and horizontal (H) printed samples were tested under three distinct loading conditions, 90° – tensile, 45° – combined loading and 0° – pure shear. For each set of samples, digital image correlation was used to analyse the deformation fields imposed by the distinct building orientations and loading conditions. Regarding the material, two different types of Nylon® (PA 12) were used, namely FX256 and CF15, being the second a short carbon fibre reinforced version of the first, allowing a comparison of the mechanical behaviour. The results show that the building orientation prevails, originating distinct fracture types and overall behaviour difference. It was shown that fibre presence does not create a stronger material, yet an increase in stiffness is observed for all building orientations, except VT, where both materials presented similar values, indicating that the fibre orientation is critical when taking into account the loading conditions. It was also observed that of all sample types, FX256 H specimens showed the closest to isotropic behaviour.
机译:由于其高各向异性结构和不规则行为,熔融灯丝制造印刷部件的机械性能被认为是技术的弱点。本研究侧重于将基于Arcan的方法应用于熔融灯丝制造印刷部件的应用,以更好地了解其力学行为。为了表征和量化各向异性行为,开发了一种蝴蝶型样本,考虑到该方法提出的缺陷(例如,需要倾斜表面的支撑材料,低分辨率等)。在三个不同的负载条件下,测试垂直横向(VT),垂直纵向(VL),垂直纵向(VL)和水平(H)印刷样品的组合,在三个不同的负载条件下,90° - 拉伸,45° - 组合加载和0 ° - 纯剪切。对于每组样本,数字图像相关用于分析由不同的建筑方向和装载条件施加的变形场。关于材料,使用两种不同类型的尼龙(PA 12),即FX256和CF15,是第一碳纤维增强版的第一,允许比较机械行为。结果表明,建筑取向普遍存在,源于不同的裂缝类型和整体行为差异。结果表明,纤维存在不产生更强的材料,但除VT之外,所有建筑方向都观察到刚度的增加,其中两种材料呈现了类似的值,表明在考虑到装载条件时纤维取向是至关重要的。还观察到所有样品类型,FX256 H样本显示最接近各向同性的行为。

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