Darkes-Burkey Cameron, Shepherd Robert F
Department of Materials Science and Engineering, Cornell University, 126 Hollister Drive, Ithaca, NY, 14850, USA.
Department of Mechanical and Aerospace Engineering, Cornell University, 124 Hoy Road, Ithaca, NY, 14850, USA.
Adv Mater. 2024 Aug;36(33):e2402217. doi: 10.1002/adma.202402217. Epub 2024 Jun 21.
Computed Axial Lithography (CAL) is an emerging technology for manufacturing complex parts, all at once, by circumventing the traditional layered approach using tomography. Overprinting, a unique additive manufacturing capability of CAL, allows for a 3D geometry to be formed around a prepositioned insert where the occlusion of light is compensated for by the other angular projections. This method opens the door for novel applications within additive manufacturing for multi-material systems such as endoskeletal robots. Herein, this work presents one such application with a simple Gelatin Methacrylate (GelMA)hydrogel osmotic actuator with an embedded endoskeletal system. GelMA is an ideal material for this application as it is swellable and has reversible thermal gelation, enabling suspension of the endoskeleton during printing. By tuning the material formulation, the actuator design, and post-processing, swelling-induced bending actuation of 60 degrees is achieved. To aid in the printing process, a simple computational method for determining the absolute dose absorbed by the resin allowing for print time prediction is also proposed.
计算机轴向光刻(CAL)是一种新兴技术,可通过断层扫描绕过传统的分层方法,一次性制造复杂零件。叠印是CAL独特的增材制造能力,它允许在预先定位的插入物周围形成三维几何形状,其中光的遮挡通过其他角度投影来补偿。这种方法为多材料系统(如内骨骼机器人)在增材制造中的新应用打开了大门。在此,这项工作展示了一个这样的应用,即带有嵌入式内骨骼系统的简单甲基丙烯酸明胶(GelMA)水凝胶渗透致动器。GelMA是此应用的理想材料,因为它具有可膨胀性和可逆热凝胶化特性,能够在打印过程中悬浮内骨骼。通过调整材料配方、致动器设计和后处理,实现了60度的膨胀诱导弯曲致动。为了辅助打印过程,还提出了一种简单的计算方法,用于确定树脂吸收的绝对剂量,从而预测打印时间。