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MULTIPLE MATERIAL MICRO-FABRICATION: EXTENDING STEREOLITHOGRAPHY TO TISSUE ENGINEERING AND OTHER NOVEL APPLICATIONS

机译:多种材料微制造:将立体刻度扩展到组织工程和其他新型应用

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A design for modifying an existing 3D Systems stereolithography (SL) apparatus 250/50 was developed to accommodate multiple material fabrication for building multi-material, multifunctional and multi-colored prototypes, models and devices. The machine was configured for automated access to an intermediate washing, curing, and drying unit that eliminated contamination between material vats and maintained accurate platform registration throughout the build process. Three vats were arranged on a rotating vat carousel, and each vat was adapted to actively maintain a uniform, desired level of material by including a recoating device and a material fill and removal system. A single platform was attached to an elevator mechanism (z-stage) to traverse the platform to and from the vats and the washing, curing, and drying unit. The platform was mounted to the z-stage via an automated rotary stage to rotate the platform about a horizontal axis, thus providing angled building, washing, curing, and drying capabilities. A horizontal traversing mechanism was also designed to be optionally included to facilitate manufacturing between multiple SL cabinets, related SL apparatuses and/or other alternative manufacturing technologies. For micro-fabrication, linear and rotary stages were selected that provided ±1.0 μm repeatability and 0.1 μm resolution and ±2 arc sec repeatability and 0.13 arc sec resolution, respectively. The multi-material SL design presented here is capable of utilizing existing SL resins for manufacturing multiple material mechanically and electrically functional models as well as hydrogels, biocompatible materials, and bioactive agents for a variety of bio-functional, implantable tissue engineering applications including nerve regeneration and guided angiogenesis.
机译:开发用于修改现有3D系统立体光刻(SL)装置250/50的设计以适应多材料,多函数和多彩色原型,型号和装置的多种材料制造。该机器配置成用于自动进入中间洗涤,固化和干燥单元,可在整个构建过程中消除材料VATS之间的污染,并在整个构建过程中保持精确的平台注册。在旋转的VAT转盘上布置有三个VAT,并且每个VAT通过包括重组装置和材料填充和去除系统来主动保持均匀,所需的材料水平。将单个平台连接到电梯机构(Z-阶段),以遍历往返VATS和洗涤,固化和干燥单元的平台。平台通过自动旋转级安装到Z级,以绕横轴旋转平台,从而提供成角度的建筑,洗涤,固化和干燥能力。还设计一种水平横向机构,可选地包括,以便于在多个SL柜,相关的SL装置和/或其他替代制造技术之间制造。对于微制造,选择线性和旋转级,分别选择±1.0μm的重复性和0.1μm分辨率和±2弧秒重复性和0.13弧秒分辨率。这里提出的多材料SL设计能够利用现有的SL树脂,用于制造多种材料以及水凝胶,生物相容性材料和用于各种生物功能,可植入的组织工程应用的水凝胶,生物相容性材料和生物活性剂,包括神经再生和引导血管生成。

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