首页> 外文会议>ASME/ISCIE international symposium on flexible automation 2012 >NEAR-NET SHAPE STRUCTURES FABRICATED BY MICRO-ROBOTIC DEPOSITION USING PRECISION EXTRUSION CONTROL
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NEAR-NET SHAPE STRUCTURES FABRICATED BY MICRO-ROBOTIC DEPOSITION USING PRECISION EXTRUSION CONTROL

机译:精密挤压控制微机器人沉积法制造的近净形结构

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摘要

This work investigates an additive manufacturing process, micro-Robotic Deposition (μRD), and its utility in fabricating advanced architecture synthetic bone grafts. The objective of this research is to develop a method to integrate different regions with different porous microstructures into a single scaffold; there is evidence that scaffolds with designed regions of specific microstructures can be used to elicit a strong and directed bone ingrowth response that improves bone ingrowth rate and quality. The key contribution of this work is integration of a control algorithm that precisely places different build materials in specified locations with a workflow that enables near-net shape fabrication, thereby the fabrication of advanced architecture scaffolds is feasible. Under previous control methods, designs were relegated to be composed of a single material with simple contours. Scaffolds with contoured forms, multiple domains with distinct porous microstructures, and hollow cavities are feasible when the developed controller is used in conjunction with a novel manufacturing workflow in which scaffolds are filled within patterned molds that support overhanging features.
机译:这项工作研究了增材制造工艺,微机器人沉积(μRD)及其在制造高级建筑合成骨移植物中的实用性。本研究的目的是开发一种将具有不同多孔微结构的不同区域整合到单个支架中的方法。有证据表明,具有设计的特定微结构区域的支架可用于引发强烈而定向的骨向内生长反应,从而改善骨向内生长速度和质量。这项工作的关键贡献在于将控制算法精确集成到工作流中,该控制算法将不同的建筑材料精确地放置在指定的位置,从而可以进行近乎净形的成型,从而可以制造出先进的建筑脚手架。在以前的控制方法下,设计被降级为由具有简单轮廓的单一材料组成。当将开发的控制器与新颖的制造流程结合使用时,具有轮廓形状的支架,具有明显的多孔微结构的多个区域以及中空的腔是可行的,其中支架被填充在支持悬垂特征的图案化模具中。

著录项

  • 来源
  • 会议地点 St. Louis MO(US)
  • 作者单位

    Department of Integrative Biology and Physiology University of California, Los Angeles Los Angeles, CA 90025;

    Department of Mechanical Science and Engineering University of Illinois at Urbana-Champaign Urbana, IL 61801;

    Department of Mechanical Science and Engineering University of Illinois at Urbana-Champaign Urbana, IL 61801;

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  • 正文语种 eng
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