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DEVELOPMENT OF AN AUTOMATED MULTIPLE MATERIAL STEREOLITHOGRAPHY MACHINE

机译:开发自动多重材料立体刻度机

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An automated Multiple Material Stereolithography (MMSL) machine was developed by integrating components of a 3D Systems 250/50 stereolithography (SL) machine in a separate stand-alone system and adapting them to function with additional components required for MMSL operation. We previously reported retrofitting a 250/50 SL machine with multiple vats to accommodate multiple material fabrication for building a wide variety of multi-material models (Wicker et ah, 2004). In the MMSL retrofit, spatial constraints limited the multiple vats located circumferentially on a vertical rotating vat carousel to cross-sectional areas of approximately 4.5-inches by 4.5-inches. The limited build size of the retrofitted 250/50 motivated the full development of a new system with multiple material build capabilities comparable to the build envelope of the original 250/50 machine. The new MMSL machine required fabrication of a large system frame, incorporating various 250/50 components and software, and adding a variety of new components and software. By using many existing components and software, the previous engineering development of 3D Systems could be directly applied to this new technology. Components that were transferred from an existing 250/50 to the MMSL machine included the complete optical system (including the optics plate with laser, mirrors, beam expander, scanning mirrors, and focusing lens), the rim assembly (including the laser beam profilers), the associated controllers (computer system, scanning mirror controller, power supply-vat controller) and the wiring harness. In addition to the new frame, the MMSL machine required the development of a new rotating vat carousel system, platform assembly, multi-pump filling/leveling system, and a custom LabVIEW~R control system to provide automated control over the MMSL process. The overall operation of the MMSL system was managed using the LabVIEW~R program, which also included controlling a new vat leveling system and new linear and rotational stages, while the 3D Systems software (Buildstation 4.0) was retained for controlling the laser scanning process. As a demonstration of MMSL technology, simple multi material parts were fabricated with vertically and horizontally oriented interfaces. The fully functional MMSL system offers enormous potential for fabricating a wide variety of multiple material functional devices.
机译:通过将3D系统250/50立体光刻(SL)机器的组件集成在单独的独立系统中并使它们采用以便使用MMSL操作所需的附加组件来开发自动化多重材料立体光刻(MMSL)机器。我们之前报道了用多个VATS改装250/50的SL机器,以适应多种材料制造,用于建立各种多材料模型(Wicker Et Ah,2004)。在MMSL改造中,空间约束限制在垂直旋转VAT转盘上周向定位的多个VAT,以横截面积为4.5英寸的4.5英寸。改造的250/50的有限构建尺寸激励了新系统的全新开发,具有多种材料构建能力,可与原始250/50机器的构建信封相媲美。新的MMSL机器需要制造大型系统框架,包含各种250/50个组件和软件,并添加各种新组件和软件。通过使用许多现有组件和软件,3D系统的先前工程开发可以直接应用于这项新技术。从现有的250/50转移到MMSL机器的组件包括完整的光学系统(包括具有激光器,镜子,光束扩展器,扫描镜和聚焦镜头的光学板,RIM组件(包括激光束分析器) ,相关控制器(计算机系统,扫描镜像控制器,电源 - VAT控制器)和线束。除新帧外,MMSL机器还需要开发新的旋转增值税旋转木马系统,平台组件,多泵填充/升降系统,以及自定义LabVIEW〜R控制系统,以提供对MMSL过程的自动控制。使用LabVIEW〜R程序管理MMSL系统的整体操作,该程序还包括控制新的VAT级系统和新的线性和旋转级,而3D系统软件(BuildStation 4.0)被保留用于控制激光扫描过程。作为MMSL技术的演示,简单的多材料部件用垂直和水平导向的接口制造。全功能MMSL系统提供了制造各种多种材料功能装置的巨大潜力。

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