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A compact beam diagnostic device for 3D additive manufacturing systems

机译:用于3D增材制造系统的紧凑型光束诊断设备

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With the rapid development of additive manufacturing to an established industrial manufacturing process, arises an increasing demand for process control. Especially industrial sectors with stringent safety regulations like aerospace, automotive or medicine, require a high level of quality monitoring. The limited space and the variety of possible beam incidence angle and position configurations inherent to laser scanning systems, constitute special framework conditions, only inadequately provided by state of the art beam diagnostic devices. To meet these requirements we developed a novel and compact measuring instrument capable of addressing scanner specific measurement tasks, including quantities so far inaccessible to conventional beam diagnostics. These involve for example the examination of the field flatness, pincushion distortion, position dependent focal shift, or accuracy of position and marking speed. Even more sophisticated issues like the accurate stitching of two overlapping exposure schemes are feasible. The working principle is based on a pattern of scattering structures within a glass plate. When scanned across the pattern, a small fraction of the laser beam is scattered and the light is collected with a photo-diode, allowing the reconstruction of the light path and derivation of the beam width. All above mentioned quantities are measured with high resolution and reproducibility. The current state of the experiments is presented, and the prospects of this novel measuring technology for scanner system diagnostics discussed.
机译:随着增材制造的快速发展到已建立的工业制造过程,对过程控制的需求不断增长。尤其是航空,汽车或医药等具有严格安全法规的工业部门,要求进行高水平的质量监控。激光扫描系统固有的有限空间以及各种可能的光束入射角和位置配置构成了特殊的框架条件,仅由现有技术的光束诊断设备不足以提供这种条件。为了满足这些要求,我们开发了一种新颖而紧凑的测量仪器,能够解决扫描仪特定的测量任务,包括迄今为止常规光束诊断无法获得的数量。例如,这些检查涉及检查视场平坦度,枕形失真,与位置有关的焦点偏移或位置和标记速度的准确性。诸如两个重叠曝光方案的精确缝合之类的更为复杂的问题也是可行的。工作原理基于玻璃板上散射结构的图案。当扫描整个图案时,一小部分激光束会被散射,并且用光电二极管收集光,从而可以重建光路并推导光束宽度。上述所有数量均以高分辨率和可重复性进行测量。介绍了实验的当前状态,并讨论了这种用于扫描仪系统诊断的新型测量技术的前景。

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