Precision Machining Construction Set: Difference between revisions

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In order to cover vertical, horizontal mills, lathes, and other configurations including articulations (robotic arms), we begin with scalable, modular pieces that build upon one another. These are summarize in the Precision Machining Pattern Language:
In order to cover vertical, horizontal mills, lathes, and other configurations including articulations (robotic arms), we begin with scalable, modular pieces that build upon one another. These are summarize in the Precision Machining Pattern Language:


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<html><iframe src="https://docs.google.com/presentation/d/e/2PACX-1vSm169Iedc16pSIwazEC5YxuW-MvbSsMKmcaLdrYwxPB1gd-O9H236N-wASnKyC4cVIvbvQ-nHA81DA/embed?start=false&loop=false&delayms=3000" frameborder="0" width="960" height="569" allowfullscreen="true" mozallowfullscreen="true" webkitallowfullscreen="true"></iframe></html>


[https://docs.google.com/drawings/d/1zMbTVXCuIXz8WFDMv3OlQyC59mKH5otttdohScaDt24/edit edit]
[https://docs.google.com/presentation/d/11QTZ6PmExtlFHkS9yacF52JdXcJxhPUJLOkZ6_EAqyo/edit#slide=id.g34aa1ee1c5_0_0 edit]


=Cost=
=Cost=

Revision as of 17:42, 5 March 2018

Introduction

The Open Source Ecology (OSE) program for developing precision machines involves a construction set approach typical of other OSE developments, such as the Tractor Construction Set. For precision machining - this paradigm manifests as the Precision Machining Construction Set.

In order to cover vertical, horizontal mills, lathes, and other configurations including articulations (robotic arms), we begin with scalable, modular pieces that build upon one another. These are summarize in the Precision Machining Pattern Language:

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Cost

One of the most expensive parts of a precision machine is the ball screw - the ball screws cost about $1000/meter for 3/4" ball screws with nut. To get around this, the open source community needs to investigate open source ball screws.

  • Threadless, 3D printed ball screw - [1]

See Also

Useful Links