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Towards a self-manufacturing rapid prototyping machine

机译:迈向自制快速原型机

摘要

Fused Filament Fabrication (FFF) is a layer manufacturing process which can manufacture highly complex components from CAD files using a polymer extruder. RepRap is an open-source project to produce a rapid prototyping machine which can manufacture its own parts using the FFF process. This thesis focuses on the mechanical design of the ‘RepRap printer’ and documents how it was conceived, developed, tested, and finally used to make a set of its own parts. Self-manufacture was demonstrated by assembling this set of parts into a working copy of the original machine. The child machine went on to demonstrate replication without degeneracy by successfully manufacturing one of its own parts. A part count analysis of the child machine, not including the fasteners it needed in its early development phase, identified a self-manufacturing ratio of 48%. This proportion is relatively low because the design adopts modularity and redundancy principles to encourage development. Should the machine’s design be adapted to fully demonstrate self-manufacture, this ratio could rise to 67% in the near future. To increase the ratio further, the machine needs three new tool heads to print resin, conductive alloy, and flexible polymer. These developments are achievable in the mid-future and could increase the self manufactured parts ratio to 94%. As this machine is the first version of the RepRap printer, these results are encouraging. Parts which the RepRap printer is unlikely to make until the far-future include some of the electronic components, motors, conductive cable, solenoids and a heating element. However, a 94% self-manufacturing ratio will qualify it as an assisted self-replicating machine. As with natural self-reproducing organisms, the printer will benefit from geometric growth and evolution. The author discusses how, by trading power, computing, feedstock and assembly for manufacturing capability with human beings, the RepRap printer may become a household item, offering a radical alternative to the way our society manufactures and consumes.
机译:熔融长丝制造(FFF)是一种层制造工艺,可以使用聚合物挤出机从CAD文件制造高度复杂的组件。 RepRap是一个开放源代码项目,旨在生产一种快速原型机,该机器可以使用FFF工艺制造自己的零件。本文主要研究“ RepRap打印机”的机械设计,并记录如何构思,开发,测试并最终用于制造自己的零件。通过将这部分零件组装到原始机器的工作副本中来演示自我制造。子机通过成功制造自己的零件之一来演示复制而不会退化。对子机的零件计数分析(不包括其早期开发阶段所需的紧固件)确定了48%的自制造率。该比例相对较低,因为设计采用模块化和冗余原理来鼓励开发。如果将机器的设计进行调整以充分展示其自我制造能力,则在不久的将来,该比例可能会上升到67%。为了进一步提高比率,该机器需要三个新的工具头来印刷树脂,导电合金和柔性聚合物。这些发展可以在中期实现,并且可以将自制零件的比例提高到94%。由于这台机器是RepRap打印机的第一版,因此这些结果令人鼓舞。 RepRap打印机不可能在不久的将来制造出来的零件包括一些电子元件,电动机,导电电缆,螺线管和加热元件。但是,94%的自我制造比率将使它有资格作为辅助的自我复制机器。与自然的自我繁殖生物一样,打印机将受益于几何形状的增长和进化。作者讨论了RepRap打印机如何通过交易能力,计算能力,原料和组装能力来提高与人类的生产能力,从而成为家用产品,从而为我们社会的生产和消费方式提供了根本性的选择。

著录项

  • 作者

    Sells Edward A;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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