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A Design for Additive Manufacturing Strategy for Dimensional and Geometrical Quality Improvement of PolyJet-Manufactured Glossy Cylindrical Features

机译:尺寸和几何质量改进添加制造策略的设计包括制造光泽圆柱特征的尺寸和几何质量改进

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摘要

The dimensional and geometrical quality of additively manufactured parts must be increased to match industrial requirements before they can be incorporated to mass production. Such an objective has a great relevance in the case of features of linear size that are affected by dimensional or geometrical tolerances. This work proposes a design for additive manufacturing strategy that uses the re-parameterization of part design to minimize shape deviations from cylindrical geometries. An analysis of shape deviations in the frequency domain is used to define a re-parameterization strategy, imposing a bi-univocal correspondence between verification parameters and design parameters. Then, the significance of variations in the process and design factors upon part quality is analyzed using design of experiments to determine the appropriate extension for modelling form deviation. Finally, local deviations are mapped for design parameters, and a new part design including local compensations is obtained. This strategy has been evaluated upon glossy surfaces manufactured in a Vero™ material by polymer jetting. The results of the proposed example showed a relevant improvement in dimensional quality, as well as a reduction of geometrical deviations, outperforming the results obtained with a conventional scaling compensation.
机译:必须增加含有薄层制造的部件的尺寸和几何质量,以匹配工业要求,然后再合于批量生产。这种目标在由尺寸或几何公差影响的线性尺寸的特征的情况下具有很大的相关性。这项工作提出了一种用于添加的添加制造策略的设计,该策略利用部分设计的重新参数化来最小化与圆柱形几何形状的形状偏差。使用频域中的形状偏差分析来定义重新参数化策略,施加验证参数和设计参数之间的双重非典型对应。然后,使用实验的设计分析了工艺和设计因素的变化的重要性,以确定用于建模形式偏差的适当延伸。最后,局部偏差被映射用于设计参数,并且获得包括局部补偿的新部件设计。通过聚合物喷射在Vero™材料中制造的光泽表面评估了该策略。所提出的示例的结果显示了尺寸质量的相关改善,以及几何偏差的降低,优于以往的缩放补偿获得的结果。

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