Poli Log

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Revision as of 01:46, 4 June 2018 by Poli (talk | contribs)
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6/3/18

Working on finishing developer test cube. Attaching bolt (ISO 4014 M27 220 length) and hex nut (ISO 4032). Working to produce recording of desktop by VLC, VCL output is by default to very large avi files, changing codec to dirac + mp3 https://superuser.com/questions/613368/how-do-i-set-the-format-vlc-media-player-uses-when-recording . Still working on creating pocket from initials.

60/1/18

Reorganizing OSE approach to biotechnology pages

5/30/18

Made the cube by constraints using assembly2, looking for bolt part to finish design.

5/26-5/28

Downloaded ose linux iso, was having trouble with google download link through brave browser but worked with chrome. Formatted and mounted image to usb. Have been practicing freecad, making the cube for the developer test. Downloaded VLC for screen capture.

4/17-14/18

Have been experimenting with 3D printed parts for D3D using a Rostock printer, ABS plastic, and Repetier to generate g-code. ABS is warping away from the bed, and optimization has included raising the bed temperature, decreasing the printing speed, and printing on a bed lined with painters tape. In order to optimize prints had to generate axis pieces stl files and mirror part.

3/22/18

Started receiving ordered materials. Preparing to print necessary parts in ABS on Rostock printer. Investigating 16' frames considering steel, PVC or acrylic, leaning towards steel.

3/19/18

Have been researching D3D printer and how to solvent cast 3D print set-up documentation site for a replication build. Dispersion of solvent disssolved material require fluid pumping to drive extrusion.

3/15/18

Installed freecad. Focusing research on cellulose based 3D printable materials because this seems to be the most boot-strappable material to manufacture in the OSE context. Printable cellulose requires solvents for dispersion rather than using thermal melting.


3/13/2018

After a long hiatus the OSE bioplastic project is back under development. Background research is near completion and current work is to design and build prototypes of a chemical reactor capable of producing PLA (and PE).

Where to pick up again?: 1. Determine the necessary capabilities of a reactor for producing bioplastics. 2. Make reactor core schematics and determine manufacturing techniques. 3. Build a budget for reactor prototype and substrates. 4. Crowdfund necessary funds. 5. Build prototypes at FeF in Summer 2019.