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Assessment of surface quality on textured FDM prototypes

机译:评估带纹理的FDM原型的表面质量

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Purpose - Test the detail resolution of fused deposition modeling (FDM) in the direct manufacture of rapid prototypes with textured surfaces. Design/methodology/approach - A benchmark part carrying regular surface patterns with different feature sizes and aspect ratios has been manufactured on a FDM system with different build orientations. Layered parts have been inspected to detect the occurrence of quality defects on textured surfaces. Findings - The experiments reveal the ability of currently available FDM systems to enhance prototype surfaces with form details on a millimeter scale. Results assist in identifying conditions which need to be satisfied in order to successfully reproduce generic texture geometries. Research limitations/implications - Although the testing method can be applied to any layered manufacturing technique, results are limited to a specific process, and may be influenced by technical improvements of commercial fabrication systems. Practical implications - A first contribution is given to a full feasibility assessment of direct texturing, which potentially appears as more responsive and cost-effective solution than current post-finishing practices. Originality/value - The paper proposes a systematic approach to the manufacture of textured parts by rapid prototyping techniques. The analysis of surface appearance in the presence of small-scale form details adds a novel aspect to current approaches to performance benchmarking, which typically focus on form errors and roughness of plain surfaces.
机译:目的-在直接制造带纹理表面的快速原型时,测试熔融沉积建模(FDM)的详细分辨率。设计/方法/方法-在具有不同构造方向的FDM系统上制造了具有不同特征尺寸和纵横比的规则表面图案的基准零件。已检查分层部件,以检测纹理表面上质量缺陷的发生。发现-实验揭示了当前可用的FDM系统具有以毫米级的形式显示细节来增强原型表面的能力。结果有助于识别为了成功复制通用纹理几何形状而需要满足的条件。研究限制/意义-尽管该测试方法可以应用于任何分层制造技术,但结果仅限于特定过程,并且可能会受到商业制造系统技术改进的影响。实际意义-对直接纹理的全面可行性评估做出了第一贡献,与当前的后整理实践相比,这可能是更具响应性和成本效益的解决方案。原创性/价值-本文提出了一种通过快速成型技术制造纹理零件的系统方法。在存在小尺寸形式细节的情况下对表面外观的分析为当前的性能基准测试方法增加了一个新颖的方面,该方法通常侧重于形状误差和平坦表面的粗糙度。

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