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Effect of External Perimeter on Flexural Strength of FDM Build Parts

机译:外围周长对FDM建筑构件抗弯强度的影响

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Current manufacturing trend adopts newer technology that can reduce both the design and manufacturing lead time in order to face the challenging demands of the customer in an effective manner. In this regard, rapid prototyping technology, among all newly developed technologies, is reliable one because it is capable of manufacturing accurate and durable parts with 3D complex geometry within a stipulated time with less material waste. In this research work, effect of six relevant controllable input parameters (contour number or external perimeter, layer thickness, raster width, part orientation, air gap and raster angle) on flexural strength of the fused deposition modelling (FDM) build parts is analysed. Experimentation has been carried out using face-centred central composite design to reduce the number of experimentation. Contour number appears to be more influencing parameter because it helps to move the stress concentration zone from outer edge to the centre avoiding premature failure of the specimen. The study develops a statistically valid empirical model relating flexural strength with process parameters to ease prediction of flexural strength by tool engineers. Scanning electron microscope micrographs are used to explain the microstructure behaviour of FDM build parts when subjected to three point bend test. Finally, one nature-inspired meta-heuristic approach known as Firefly algorithm is adopted to obtain optimal parameter setting for improving the flexural strength.
机译:当前的制造趋势采用了可以减少设计和制造交付时间的更新技术,以便有效地应对客户的挑战性需求。在这方面,快速原型技术在所有新开发的技术中是可靠的,因为它能够在规定的时间内制造具有3D复杂几何形状的精确且耐用的零件,从而减少了材料浪费。在这项研究工作中,分析了六个相关的可控制输入参数(轮廓数或外部周长,层厚度,栅格宽度,零件方向,气隙和栅格角度)对熔融沉积建模(FDM)零件的抗弯强度的影响。实验已经使用面心中央复合设计进行,以减少实验次数。轮廓数似乎是一个更具影响力的参数,因为它有助于将应力集中区域从外边缘移到中心,从而避免试样过早失效。这项研究建立了统计上有效的经验模型,将抗弯强度与过程参数相关联,以简化工具工程师的抗弯强度预测。扫描电子显微镜显微照片用来解释FDM构件在进行三点弯曲试验时的微观结构行为。最后,采用一种称为Firefly算法的自然启发式元启发式方法来获得最佳参数设置,以提高抗弯强度。

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