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High-quality net shape geometries from additively manufactured parts using closed-loop controlled ablation with ultrashort laser pulses

机译:采用闭环控制消融的高质量净形状几何形状,使用闭环控制消融与超短激光脉冲

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摘要

Additively manufactured parts typically deviate to some extent from the targeted net shape and exhibit high surface roughness due to the size of the powder grains that determines the minimum thickness of the individual slices and due to partially molten powder grains adhering on the surface. Optical coherence tomography (OCT)-based measurements and closed-loop controlled ablation with ultrashort laser pulses were utilized for the precise positioning of the LPBF-generated aluminum parts and for post-processing by selective laser ablation of the excessive material. As a result, high-quality net shape geometries were achieved with surface roughness, and deviation from the targeted net shape geometry reduced by 67% and 63%, respectively.
机译:由于粉末颗粒的尺寸,并且由于确定在表面上的部分熔融粉末颗粒,通常偏离目标净形状,并且由于粉末颗粒的尺寸以及由于粘附在表面上的部分熔融粉末颗粒而导致的粉末颗粒的尺寸,并且由于粘附在表面上的最小熔融粉末颗粒,并且由于粘附在表面上的粉末颗粒的尺寸而表现出高表面粗糙度。 基于光学相干断层扫描(OCT)的基于超短激光脉冲的基于光学相干性断层扫描(OCT)测量和闭环控制消融,用于通过选择性激光烧蚀过量材料的精确定位和通过选择性激光烧蚀的后处理进行精确定位。 结果,通过表面粗糙度实现了高质量的净形状几何形状,并且偏离目标净形状几何形状分别减少了67%和63%。

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