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The Influence of Printing Orientation on Surface Texture Parameters in Powder Bed Fusion Technology with 316L Steel

机译:印刷取向对316L钢粉床融合技术表面纹理参数的影响

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摘要

Laser technologies for fast prototyping using metal powder-based materials allow for faster production of prototype constructions actually used in the tooling industry. This paper presents the results of measurements on the surface texture of flat samples and the surface texture of a prototype of a reduced-mass lathe chuck, made with the additive technology—powder bed fusion. The paper presents an analysis of the impact of samples’ orientation on the building platform on the surface geometrical texture parameters (two-dimensional roughness profile parameters ( , , , and so on) and spatial parameters ( , , and so on). The research results showed that the printing orientation has a very large impact on the quality of the surface texture and that it is possible to set digital models on the building platform (parallel—0° to the building platform plane), allowing for manufacturing models with low roughness parameters. This investigation is especially important for the design and 3D printing of microelectromechanical systems (MEMS) models, where surface texture quality and printable resolution are still a large problem.
机译:使用金属粉末材料的快速原型设计的激光技术允许更快地生产工具行业中实际使用的原型结构。本文介绍了扁平样本表面纹理的测量结果和减少质量车床夹头原型的表面纹理,用添加剂技术 - 粉末床融合制成。本文介绍了样品取向对表面几何纹理参数的建筑平台的影响(二维粗糙度曲线参数(,等等)和空间参数(,等等)。研究结果表明,印刷方向对表面纹理的质量具有非常大的影响,并且可以将数字模型设置在建筑平台上(并联-0°到建筑平台平面),允许制造具有低粗糙度的模型参数。该研究对于微机电系统(MEMS)模型的设计和3D打印尤为重要,其中表面纹理质量和可印刷分辨率仍然是一个大问题。

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