Sasan Koroush, Lange Andrew, Yee Timothy D, Dudukovic Nikola, Nguyen Du T, Johnson Michael A, Herrera Oscar D, Yoo Jae Hyuck, Sawvel April M, Ellis Megan Elizabeth, Mah Christopher M, Ryerson Rick, Wong Lana L, Suratwala Tayyab, Destino Joel F, Dylla-Spears Rebecca
Lawrence Livermore National Laboratory , Livermore , California 94550 , United States.
Creighton University , Omaha , Nebraska 68178 , United States.
ACS Appl Mater Interfaces. 2020 Feb 5;12(5):6736-6741. doi: 10.1021/acsami.9b21136. Epub 2020 Jan 23.
Direct ink writing (DIW) three-dimensional (3D) printing provides a revolutionary approach to fabricating components with gradients in material properties. Herein, we report a method for generating colloidal germania feedstock and germania-silica inks for the production of optical quality germania-silica (GeO-SiO) glasses by DIW, making available a new material composition for the development of multimaterial and functionally graded optical quality glasses and ceramics by additive manufacturing. Colloidal germania and silica particles are prepared by a base-catalyzed sol-gel method and converted to printable shear-thinning suspensions with desired viscoelastic properties for DIW. The volatile solvents are then evaporated, and the green bodies are calcined and sintered to produce transparent, crack-free glasses. Chemical and structural evolution of GeO-SiO glasses is confirmed by nuclear magnetic resonance, X-ray diffraction, and Raman spectroscopy. UV-vis transmission and optical homogeneity measurements reveal comparable performance of the 3D printed GeO-SiO glasses to glasses produced using conventional approaches and improved performance over 3D printed TiO-SiO inks. Moreover, because GeO-SiO inks are compatible with DIW technology, they offer exciting options for forming new materials with patterned compositions such as gradients in the refractive index that cannot be achieved with conventional manufacturing approaches.
直接墨水书写(DIW)三维(3D)打印为制造具有材料性能梯度的部件提供了一种革命性的方法。在此,我们报告了一种制备用于通过DIW生产光学质量的氧化锗 - 二氧化硅(GeO - SiO)玻璃的胶体氧化锗原料和氧化锗 - 二氧化硅墨水的方法,为通过增材制造开发多材料和功能梯度光学质量玻璃及陶瓷提供了一种新的材料组成。胶体氧化锗和二氧化硅颗粒通过碱催化溶胶 - 凝胶法制备,并转化为具有所需粘弹性特性的可打印剪切变稀悬浮液用于DIW。然后蒸发挥发性溶剂,对坯体进行煅烧和烧结以生产透明、无裂纹的玻璃。通过核磁共振、X射线衍射和拉曼光谱证实了GeO - SiO玻璃的化学和结构演变。紫外 - 可见透射和光学均匀性测量表明,3D打印的GeO - SiO玻璃与使用传统方法生产的玻璃具有相当的性能,并且比3D打印的TiO - SiO墨水性能更优。此外,由于GeO - SiO墨水与DIW技术兼容,它们为形成具有图案化组成(如折射率梯度)的新材料提供了令人兴奋的选择,而这是传统制造方法无法实现的。