论文标题
体积添加剂制造的即时3D计量学
On-the-fly 3D metrology of volumetric additive manufacturing
论文作者
论文摘要
增材制造技术通过从设计到制造的快速周转来彻底改变产品开发。但是,快速原型管道的吞吐量仍受打印优化的限制,需要多次制造和前态计量学迭代。尽管需要采用合适的技术,但目前尚无任何添加剂制造方式对整个印刷品的强大原位测量。在这里,我们通过证明完全同时进行3D计量和印刷来解决这一缺点。我们利用光蛋白在凝胶过程中利用光散射的急剧增加,用于在层合体化添加剂制造过程中实时3D印刷品的实时成像。构建体积中光散射密度的层析成像成像可产生定量,无伪影的3D +时间模型,这些固化物体准确地低于印刷品大小的1%。通过将形状测量集成到打印过程中,我们的工作为下一代快速原型制作铺平了道路,并进行了实时缺陷检测和校正。
Additive manufacturing techniques are revolutionizing product development by enabling fast turnaround from design to fabrication. However, the throughput of the rapid prototyping pipeline remains constrained by print optimization, requiring multiple iterations of fabrication and ex-situ metrology. Despite the need for a suitable technology, robust in-situ shape measurement of an entire print is not currently available with any additive manufacturing modality. Here, we address this shortcoming by demonstrating fully simultaneous 3D metrology and printing. We exploit the dramatic increase in light scattering by a photoresin during gelation for real-time 3D imaging of prints during tomographic volumetric additive manufacturing. Tomographic imaging of the light scattering density in the build volume yields quantitative, artifact-free 3D + time models of cured objects that are accurate to below 1% of the size of the print. By integrating shape measurement into the printing process, our work paves the way for next-generation rapid prototyping with real-time defect detection and correction.