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=== Status ===
=== Status ===
* Most recent progress can be seen at the [http://reprap.soup.io/|Metalab RepRap Soup]
* Most recent progress can be seen at the [http://reprap.soup.io/ Metalab RepRap Soup]
* Parts ordered from the [http://rrrf.org RepRap Research Foundation] for XYZ axis and extruder boards.
* Parts ordered from the [http://rrrf.org RepRap Research Foundation] for XYZ axis and extruder boards.
* XYZ axis is working.
* XYZ axis is working.
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=== Links ===
=== Links ===
* [http://reprap.soup.io/|Metalab RepRap Soup]
* [http://reprap.soup.io/ Metalab RepRap Soup]
* [http://reprap.org/ RepRap Homepage (wiki)]
* [http://reprap.org/ RepRap Homepage (wiki)]
* [http://reprappers.blogspot.com/ RepRap Builder Blog]
* [http://reprappers.blogspot.com/ RepRap Builder Blog]

Version vom 29. Juni 2008, 07:16 Uhr

WTF?

This project is about building a 3D printer for rapid prototyping. In contrast to a milling machine the process is additive i.e. the workpiece is built-up layer by layer, usually from thermoplastic material. Some commercial devices exists - needless to say, they are pricey. The goal of a RepRap machine is the ability to print almost all parts it consists of, hence a self-replicating rapid prototyper.

After seing Vik's presentation about how to build a RepRap we've started our own implementation of a RepRap. Then Bre Pettis came by in November 2007 and decided to build a McWire-based RepRap for Roboexotica. In a week. Metalab inherited Bre's RepRap (yay!) and it's now used as a basis for our own RepRap.

Note: At the moment, what we're building is really a RepStrap.

Status

  • Most recent progress can be seen at the Metalab RepRap Soup
  • Parts ordered from the RepRap Research Foundation for XYZ axis and extruder boards.
  • XYZ axis is working.
  • We can now also control our CNC machine from the RepRap software using a modified Arduino firmware and a CNC Arduino shield.
  • First version of the extruder is resurrected from Bre's old parts and successfully extrudes HDPE.
  • We can print handcoded objects using a quick and dirty Arduino firmware.
  • GCode firmware is working! The GCode files are at the moment hand-coded.
    • Knowledge Base for the GCode Toolchain accumulating here RepRap/GCode
  • Next step is to establish a pipeline from design to printed parts. At the moment, we're thinking about doing this based on GCode.

Materials in the Lab

  • Two glasses CAPA/Polymorph -> went missing after the camp?
  • A roll of HDPE
  • All necessary boards, electronics and plastic parts for the RepRap and some spare parts

Links

Reprap.jpg
Metalab reprap print.jpg
Metalab reprap firstparts.jpg