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Augmented manual fabrication methods for 2D tool positioning and 3D sculpting

机译:用于2D工具定位和3D雕刻的增强手动制造方法

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摘要

Augmented manual fabrication involves using digital technology to assist a user engaged in a manual fabrication task. Methods in this space aim to combine the abilities of a human operator, such as motion planning and large-range mechanical manipulation, with technological capabilities that compensate for the operator's areas of weakness, such as precise 3D sensing, manipulation of complex shape data, and millimeter-scale actuation. This thesis presents two new augmented manual fabrication methods. The first is a method for helping a sculptor create an object that precisely matches the shape of a digital 3D model. In this approach, a projector-camera pair is used to scan a sculpture in progress, and the resulting scan data is compared to the target 3D model. The system then computes the changes necessary to bring the physical sculpture closer to the target 3D shape, and projects guidance directly onto the sculpture that indicates where and how the sculpture should be changed, such as by adding or removing material. We describe multiple types of guidance that can be used to direct the sculptor, as well as several related applications of this technique. The second method described in this thesis is a means of precisely positioning a handheld tool on a sheet of material using a hybrid digital-manual approach. An operator is responsible for manually moving a frame containing the tool to the approximate neighborhood of the desired position. The device then detects the frame's position and uses digitally-controlled actuators to move the tool within the frame to the exact target position. By doing this in a real time feedback loop, a tool can be smoothly moved along a digitally-specified 2D path, allowing many types of digital fabrication over an unlimited range using an inexpensive handheld tool.
机译:增强的手工制作涉及使用数字技术来协助从事手工制作任务的用户。该领域的方法旨在将操作员的能力(例如运动计划和大范围机械操纵)与可补偿操作员的弱点的技术能力(例如精确的3D感测,复杂形状数据的操纵和毫米级驱动。本文提出了两种新的增强手工制作方法。第一种是帮助雕塑家创建与数字3D模型的形状精确匹配的对象的方法。在这种方法中,使用投影机/摄像机对扫描进行中的雕塑,然后将所得的扫描数据与目标3D模型进行比较。然后,系统计算使物理雕塑更接近目标3D形状所需的更改,并将指导直接投影到雕塑上,以指示应在何处以及如何更改雕塑,例如通过添加或移除材料。我们描述了可用于指导雕刻家的多种类型的指导,以及该技术的几种相关应用。本文中描述的第二种方法是一种使用混合数字-手动方法将手持式工具精确定位在一块材料上的方法。操作员负责将包含工具的框架手动移动到所需位置的近似邻域。然后,该设备将检测框架的位置,并使用数控致动器将工具在框架内移动到准确的目标位置。通过在实时反馈回路中执行此操作,可以使工具沿数字指定的2D路径平滑移动,从而允许使用廉价的手持工具在无限范围内进行多种类型的数字制造。

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