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DIMENSIONAL PERFORMANCE OF AS-BUILT ASSEMBLIES IN POLYJET ADDITIVE MANUFACTURING PROCESS

机译:多胶层添加剂制造过程中竣工组件的尺寸性能

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The additive manufacturing (AM) technology provides a unique opportunity to realize as-built assemblies, i.e., assemblies which can be fabricated as a whole in one build cycle. Some of the introduced challenges, however, are the design issues of these assembly structures and understanding the dimensional performance of the AM process to ensure proper mobility. While process improvement techniques have been proposed for dealing with individual additive components, it is also necessary to study the dimensional behavior of as-built assemblies compared to individual additive components. This paper studies and compares the dimensional performance of as-built assemblies with ordinary assemblies in which the components are fabricated individually and then assembled together. A design of experiment approach is applied to study the effect of assembly type and orientation on the final clearances. The results suggest that in addition to orientation factor, the type of assembly can also play an important role in the final clearance values. In addition, a different dimensional behavior exists in the as-built assembly structures compared to ordinary assemblies, i.e., clearances in as-built assembly tend to be smaller and also more uniform along the clearance profile.
机译:添加剂制造(AM)技术提供了一种独特的机会,实现了可以在一个构建周期中整体制造的组件,即可以制造的组件。然而,一些引入的挑战是这些装配结构的设计问题,并理解AM过程的尺寸性能,以确保适当的移动性。虽然已经提出了用于处理个体添加剂组分的过程改进技术,但是还需要研究与个体添加剂组分相比制备组件的尺寸行为。本文研究和比较了用普通组件的常规组件的尺寸性能,其中部件单独制造,然后组装在一起。应用实验方法的设计研究了组装型和方向对最终间隙的影响。结果表明,除定向因素之外,组装类型还可以在最终的间隙值中发挥重要作用。另外,与普通组件相比,类似于普通组件的组装结构中存在不同的尺寸行为,即,沿着间隙剖面倾向于更小并且也更均匀。

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