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首页> 外文期刊>Journal of Materials Processing Technology >Modeling of the chemical finishing process for polylactic acid parts in fused deposition modeling and investigation of its tensile properties
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Modeling of the chemical finishing process for polylactic acid parts in fused deposition modeling and investigation of its tensile properties

机译:融合沉积沉积型沉积型沉积型材沉淀零件化学整理方法的建模及其拉伸性能研究

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Fused deposition modeling has become one of the most diffused rapid prototyping techniques, which is widely used to fabricate prototypes. However, further application of this technology is severely affected by poor surface roughness.primarily due to staircase effect. It is necessary to adopt post-treatment operations to improve surface quality. Chemical finishing is typically employed to finish parts in fused deposition modeling. The purpose of this paper is to provide a universal finishing method or solution for FDM parts made up of PLA, and to represent the evolution of surface topography between adjacent layers during the chemical finishing operation by building a geometrical model of the deposited filament. Case study was used to validate the proposed model by an experimental observation using a 3D laser scanning microscope. The comparison between theoretical computed values and observed data shows a significant reliability by means of statistical analysis. Subsequently a number of specimens are tested to determine the changes in tensile properties of fused deposition modeling parts building in different orientations. The results show that the horizontal build directions have little influence on the tensile strength. And, untreated specimens of polylactic acid show brittle behavior due to the inherent material properties. Because of the thin transparent film formed on the appearance, the tensile mechanical properties of specimens after chemical finishing are obviously changed, with the result that the tensile strength reduces by 63% and elongations at break improve by 50%. This chemical finishing not only decreases the roughness of parts manufactured in fused deposition modeling significantly, but also improves the toughness of polylactic acid parts. (C) 2016 Elsevier B.V. All rights reserved.
机译:融合沉积建模已成为最扩散的快速原型技术之一,广泛用于制造原型。然而,通过较差的表面粗糙度,该技术的进一步应用严重影响。由于楼梯效应,因此原因是阶梯效应。有必要采用后处理操作来提高表面质量。化学精加工通常用于在融合沉积建模中完成零件。本文的目的是提供由PLA组成的FDM部件的通用精加工方法或解决方案,并通过构建沉积丝的几何模型来表示化学精加工过程中相邻层之间的表面形貌的演变。案例研究用于通过使用3D激光扫描显微镜的实验观察来验证所提出的模型。通过统计分析,理论计算值与观察数据之间的比较显示了显着的可靠性。随后测试了许多样本以确定融合沉积建模零件建筑物的拉伸性能的变化,不同取向。结果表明,水平构建方向对拉伸强度几乎没有影响。并且,由于固有的材料性能,未经处理的聚乳酸标本显示出脆性行为。由于在外观上形成的薄透明膜,化学精加工后试样的拉伸力学性能明显改变,结果是拉伸强度降低63%,断裂伸长率提高50%。这种化学精加工不仅降低了在融合沉积建模中制造的零件的粗糙度显着降低,而且还提高了聚乳酸零件的韧性。 (c)2016 Elsevier B.v.保留所有权利。

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