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== 3-D Printing of Open Source Appropriate Technologies for Self-Directed Sustainable Development==
* Full open text at:  J. M Pearce, C. Morris Blair, K. J. Laciak, R. Andrews, A. Nosrat and I. Zelenika-Zovko, “3-D Printing of Open Source Appropriate Technologies for Self-Directed Sustainable Development”, ''Journal of Sustainable Development'' '''3'''(4), pp. 17-29 (2010). Full text: [http://www.ccsenet.org/journal/index.php/jsd/article/view/6984] [http://mtu.academia.edu/JoshuaPearce/Papers/1566597/3-D_Printing_of_Open_Source_Appropriate_Technologies_for_Self-Directed_Sustainable_Development open access]
=== Abstract===
The technological evolution of the [[3-D printer]], widespread internet access and inexpensive computing has made a new means of [[open design]] capable of accelerating self-directed [[sustainable development]]. This study critically examines how [[open source 3-D printer]]s, such as the [[RepRap]] and [[Fab@home]], enable the use of designs in the [[public domain]] to fabricate [[open source appropriate technology]] (OSAT), which are easily and economically made from readily available resources by local communities to meet their needs.  The current capabilities of open source 3-D printers is reviewed and a new classification scheme is proposed for OSATs that are technically feasible and economically viable for production. Then, a methodology for quantifying the properties of  printed parts and a research trajectory is outlined to extend the existing technology to provide complete village-level fabrication of OSATs.  Finally, conclusions are drawn on the potential for open source 3-D printers to assist in driving sustainable development.


== Using open source 3-D printers to make AT==  
== Using open source 3-D printers to make AT==  
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* On a Dremel 300, a maximum speed of 33krpm equates to a force of over 50,000 times earth's gravity, which puts it into so-called "Ultracentrifuge" territory. The latest version (as printed by Shapeways) has successfully spun tubes at this speed.
* On a Dremel 300, a maximum speed of 33krpm equates to a force of over 50,000 times earth's gravity, which puts it into so-called "Ultracentrifuge" territory. The latest version (as printed by Shapeways) has successfully spun tubes at this speed.


== 3-D Printing of Open Source Appropriate Technologies for Self-Directed Sustainable Development==
== Map of 3DP for Development ==
Tech for Trade has a nice map of the major groups working throughout the world with 3D printing for development - http://techfortrade.org/our-initiatives/3d4d-challenge/


* Full open text at:  J. M Pearce, C. Morris Blair, K. J. Laciak, R. Andrews, A. Nosrat and I. Zelenika-Zovko, “3-D Printing of Open Source Appropriate Technologies for Self-Directed Sustainable Development”, ''Journal of Sustainable Development'' '''3'''(4), pp. 17-29 (2010). Full text: [http://www.ccsenet.org/journal/index.php/jsd/article/view/6984] [http://mtu.academia.edu/JoshuaPearce/Papers/1566597/3-D_Printing_of_Open_Source_Appropriate_Technologies_for_Self-Directed_Sustainable_Development open access]
==Calculating the Value of OSAT Development==
 
* [[Quantifying the Value of Open Source Hardware Development]]
=== Abstract===
The technological evolution of the [[3-D printer]], widespread internet access and inexpensive computing has made a new means of [[open design]] capable of accelerating self-directed [[sustainable development]]. This study critically examines how [[open source 3-D printer]]s, such as the [[RepRap]] and [[Fab@home]], enable the use of designs in the [[public domain]] to fabricate [[open source appropriate technology]] (OSAT), which are easily and economically made from readily available resources by local communities to meet their needs.  The current capabilities of open source 3-D printers is reviewed and a new classification scheme is proposed for OSATs that are technically feasible and economically viable for production. Then, a methodology for quantifying the properties of  printed parts and a research trajectory is outlined to extend the existing technology to provide complete village-level fabrication of OSATs.  Finally, conclusions are drawn on the potential for open source 3-D printers to assist in driving sustainable development.


== Examples ==
== Examples ==
{|style="border:1px solid black; background-color: lightgreen; margin-left:.1em; margin-top:2px; -moz-border-radius:15px;" align="right" width="120px"
!<big><big>Introduction to 3D Printing and Development - Tech-for-Trade</big>
|-
|<center>{{#widget:YouTube|id=v6TovHTvMag}} </center>
|-
|}


{|style="border:1px solid black; background-color: lightgreen; margin-left:.1em; margin-top:2px; -moz-border-radius:15px;" align="right" width="120px"
!<big>'We can't buy it, so can we make it' Revolutionizing humanitarian aid through local making-- Engineering for Change</big>
|-
|<center>{{#widget:YouTube|id=XyE038K44yE}} </center>
|-
|}
For hundreds of more examples see:
For hundreds of more examples see:
* [[3D printable OSAT gallery 1]]
* [[3D printable OSAT gallery 1]]
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* [[:Category:OSAT 3D-Printable Designs]]
* [[:Category:OSAT 3D-Printable Designs]]


{|style="border:1px solid #ffa508; background-color: #D0D0FF; margin-left:.1em; margin-top:2px; -moz-border-radius:15px;" align="right" width="240px"
!<big><big>[[Not Impossible Labs]] Using 3D Printers Prototypes for Prosthetic Hands</big>
|-
|<center>{{#widget:YouTube|id=ApUodVFdjss}} </center>
|-
|<center>{{#widget:YouTube|id=FGSo_I86_lQ}} </center>
|}
For a relatively up to date list of examples see this [http://www.thingiverse.com/jpearce/collections/open-source-appropriate-technology collection of OSAT] or this collection of [http://www.thingiverse.com/jpearce/collections/open-source-scientific-tools open source scientific hardware]. It is also possible to recycle e-waste into more [[RepRaps]] see [http://3dprintingindustry.com/2013/05/21/w-afate-recycling-1st-world-waste-into-new-world-solutions/].
For a relatively up to date list of examples see this [http://www.thingiverse.com/jpearce/collections/open-source-appropriate-technology collection of OSAT] or this collection of [http://www.thingiverse.com/jpearce/collections/open-source-scientific-tools open source scientific hardware]. It is also possible to recycle e-waste into more [[RepRaps]] see [http://3dprintingindustry.com/2013/05/21/w-afate-recycling-1st-world-waste-into-new-world-solutions/].
# hand held corn sheller
# hand held corn sheller
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# water wheels
# water wheels


===Tools===
<gallery caption="OSAT 3-D Printing Tools">
<gallery caption="OSAT 3-D Printing Tools">
Image:Reprap.png |[[RepRap]]
Image:Reprap.png |[[RepRap]]
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</gallery>
</gallery>
 
===Energy===
<gallery caption="OSAT 3D-Printable Designs for Energy">
<gallery caption="OSAT 3D-Printable Designs for Energy">
Image:windmillprint.jpg|[http://www.thingiverse.com/thing:26811 3-blade windmill prototype]
Image:windmillprint.jpg|[http://www.thingiverse.com/thing:26811 3-blade windmill prototype]
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</gallery>
</gallery>


===Medicine===
{|style="border:1px solid #ffa508; background-color: #D0D0FF; margin-left:.1em; margin-top:2px; -moz-border-radius:15px;" align="right" width="240px"
!<big><big>[[Not Impossible Labs]] Using 3D Printers Prototypes for Prosthetic Hands</big>
|-
|<center>{{#widget:YouTube|id=ApUodVFdjss}} </center>
|-
|<center>{{#widget:YouTube|id=FGSo_I86_lQ}} </center>
|}
<gallery caption="OSAT 3D-Printable Designs for Medicine">
<gallery caption="OSAT 3D-Printable Designs for Medicine">
Image:Double-pump.jpg|[[Open-source syringe pump]]
Image:Arms2.jpg|[http://enablingthefuture.org/ Enabling the Future.org]
Image:Dremel fuge preview medium.jpg|[http://www.thingiverse.com/thing:1483 Dremelfuge]
Image:Dremel fuge preview medium.jpg|[http://www.thingiverse.com/thing:1483 Dremelfuge]
image:3dmicroscope.png |[[Free and open-source automated 3-D microscope]]
Image:Multi-Day Pill Container.jpg|[http://www.thingiverse.com/thing:3938 Multi-Day Pill Container]
Image:Multi-Day Pill Container.jpg|[http://www.thingiverse.com/thing:3938 Multi-Day Pill Container]
Image:Peristaltic Pump.jpg|[http://www.thingiverse.com/thing:8652 Printable Peristaltic Pump]
Image:Peristaltic Pump.jpg|[http://www.thingiverse.com/thing:8652 Printable Peristaltic Pump]
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Image:Prosthetic_leg_cover_preview_featured.jpg|[http://www.thingiverse.com/thing:145729 Prosthetic leg cover 110mm x 70mm]
Image:Prosthetic_leg_cover_preview_featured.jpg|[http://www.thingiverse.com/thing:145729 Prosthetic leg cover 110mm x 70mm]
Image:Clamp_preview_featured.jpg|[http://www.thingiverse.com/thing:104619 3D Printed Vascular Clamp]
Image:Clamp_preview_featured.jpg|[http://www.thingiverse.com/thing:104619 3D Printed Vascular Clamp]
image:OphthalmicDocs.jpg| [[OphthalmicDocs Fundus]] - a 3D printed universal smartphone retinal imaging adapter.
}}</gallery>


</gallery>
===Water===
 
<gallery caption="OSAT 3-D Printable Designs for Water Use">
<gallery caption="OSAT 3-D Printable Designs for Water Use">
Image:Osnitratetester.png|[[Open-Source Photometric System for Enzymatic Nitrate Quantification]]
Image:Watering spout preview medium.jpg|[http://www.thingiverse.com/thing:9535 Watering spout for 2L bottle]
Image:Watering spout preview medium.jpg|[http://www.thingiverse.com/thing:9535 Watering spout for 2L bottle]
Image:Three way flow control valve.jpg|[http://www.thingiverse.com/thing:8394 Three way flow control valve]
Image:Three way flow control valve.jpg|[http://www.thingiverse.com/thing:8394 Three way flow control valve]
Image:pump_demo.gif|[http://tim.cexx.org/projects/3d/peristaltic.scad Completely printable peristaltic pump]
Image:Water level sensor.jpg|[http://www.thingiverse.com/thing:9642 Water level sensor]
Image:Water level sensor.jpg|[http://www.thingiverse.com/thing:9642 Water level sensor]
Image:Water wheel with venetian blind slats.jpg|[http://www.thingiverse.com/thing:11640 Water wheel with venetian blind slats]
Image:Water wheel with venetian blind slats.jpg|[http://www.thingiverse.com/thing:11640 Water wheel with venetian blind slats]
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</gallery>
</gallery>


===Agriculture===
<gallery caption="OSAT 3-D Printable Designs for Agricultural Use">
<gallery caption="OSAT 3-D Printable Designs for Agricultural Use">


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Image:Hydroponic_pot_45mm_scad_preview_featured.jpg|[http://www.thingiverse.com/thing:16847 Hydroponic Plant Pot]
Image:Hydroponic_pot_45mm_scad_preview_featured.jpg|[http://www.thingiverse.com/thing:16847 Hydroponic Plant Pot]
Image:Dsc04823_display_large_preview_featured.jpg|[http://www.thingiverse.com/thing:1083 45/55mm Hydroponic Pot]
Image:Dsc04823_display_large_preview_featured.jpg|[http://www.thingiverse.com/thing:1083 45/55mm Hydroponic Pot]
Image:3dponics.png|[[3Dponics]]
Image:simplefruitpicher.jpg|[http://www.thingiverse.com/thing:370326 Simple Fruit Picker for small fruit like cherry]
</gallery>
</gallery>


===3D Printable OSAT Designs===
<gallery caption="OSAT 3D-Printable Designs">
<gallery caption="OSAT 3D-Printable Designs">
Image:OpenSCAD.jpg|[http://www.thingiverse.com/thing:18802 OpenSCAD library to generate round ducting / pipe, and associated fittings]
Image:OpenSCAD.jpg|[http://www.thingiverse.com/thing:18802 OpenSCAD library to generate round ducting / pipe, and associated fittings]
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** [http://blog.zdf.de/hyperland/2013/03/mit-3d-druckern-gegen-armut/ Mit 3D-Druckern gegen Armut (With 3D printers against poverty)]-- ZDF Hyperland (German), [http://www.giuseppe-paletta.de/?p=482 Giuseppe-Paletta (German)]
** [http://blog.zdf.de/hyperland/2013/03/mit-3d-druckern-gegen-armut/ Mit 3D-Druckern gegen Armut (With 3D printers against poverty)]-- ZDF Hyperland (German), [http://www.giuseppe-paletta.de/?p=482 Giuseppe-Paletta (German)]
* [https://www.engineeringforchange.org/news/2014/01/17/3d_printers_may_be_poised_to_take_off_in_developing_countries.html 3D printers may be poised to take off in developing countries] - Engineering for Change
* [https://www.engineeringforchange.org/news/2014/01/17/3d_printers_may_be_poised_to_take_off_in_developing_countries.html 3D printers may be poised to take off in developing countries] - Engineering for Change
* [http://www.nytimes.com/2015/02/17/science/hand-of-a-superhero.html Hand of a superhero] NYT
* [http://3dprintingindustry.com/2015/08/14/doctor-brings-medical-supplies-to-gaza-with-3d-printing/ Doctor Brings Low-Cost Medical Supplies to Gaza with 3D Printing] - 3D Printing Industry
* [http://3dprintingindustry.com/2015/09/07/3d4md-puts-3d-printer-doctors-bag-future 3D4MD Puts a 3D Printer in the Doctor’s Bag of the Future] - 3D Printing Industry


== Future work ==
== Future work ==
Line 231: Line 264:
* [http://3dprintingindustry.com/2013/08/14/smallholder-women-farmers-in-africa-to-be-aided-by-3d-printed-prototype-tools/ Smallholder women farmers in Africa aided by 3-D Printing] by [http://3d4agdev.org/ 3d4agdev.org]
* [http://3dprintingindustry.com/2013/08/14/smallholder-women-farmers-in-africa-to-be-aided-by-3d-printed-prototype-tools/ Smallholder women farmers in Africa aided by 3-D Printing] by [http://3d4agdev.org/ 3d4agdev.org]
* [[Mechanical Properties of Components Fabricated with Open-Source 3-D Printers Under Realistic Environmental Conditions]]
* [[Mechanical Properties of Components Fabricated with Open-Source 3-D Printers Under Realistic Environmental Conditions]]
* [[Distributed manufacturing with 3-D printing: a case study of recreational vehicle solar photovoltaic mounting systems]]


==See Also==
==See Also==
{|style="border:1px solid black; background-color: lightgreen; margin-left:.1em; margin-top:2px; -moz-border-radius:15px;" align="right" width="120px"
!<big><big>OSE tour of MOST lab 1</big>
|-
|<center>{{#widget:YouTube|id=mSLugHbWN3s}} </center>
|-
|}
* [[Open source 3D printers: an appropriate technology for building low cost optics labs for the developing communities]]
* [http://www.re3d.org/ re:3D]
* [http://www.re3d.org/ re:3D]
* [http://techfortrade.org/ Tech for Trade], [http://3dprintingindustry.com/2013/10/11/techfortrade-continues-bring-emerging-tech-developing-world/ Tech for Trade continues to bring emerging tech to the developing world]
* [http://techfortrade.org/ Tech for Trade], [http://3dprintingindustry.com/2013/10/11/techfortrade-continues-bring-emerging-tech-developing-world/ Tech for Trade continues to bring emerging tech to the developing world]
* [http://www.ictp.it/about-ictp/media-centre/news/2013/4/a-guide-to-the-third-dimension.aspx Low-cost 3D Printing for Science, Education and Sustainable Development] - Free e-book and [https://itunes.apple.com/us/itunes-u/first-international-workshop/id688831895 Free HD lecture series]
* [http://sdu.ictp.it/3D/book.html  Open Book on "Low-cost 3D Printing for Science, Education and Sustainable Development"] - Free e-book and [https://itunes.apple.com/us/itunes-u/first-international-workshop/id688831895 Free HD lecture series]
* [http://3dprintingindustry.com/2013/10/15/potential-w-afate-first-3d-printer-created-e-waste/ The Potential for W. Afate, the First 3D Printer Created from e-Waste] - 3D Printing Industry
* [http://3dprintingindustry.com/2013/10/15/potential-w-afate-first-3d-printer-created-e-waste/ The Potential for W. Afate, the First 3D Printer Created from e-Waste] - 3D Printing Industry
*[http://3dprintingindustry.com/2014/02/27/3d-printed-water-distiller/ 3D printed water distiller]
*[http://3dprintingindustry.com/2014/02/27/3d-printed-water-distiller/ 3D printed water distiller]
*[http://3dprintingindustry.com/2014/02/18/medical-clinic-bolivian-rainforest-might-use-3d-printing/ How a Medical Clinic in the Bolivian Rainforest Might Use 3D Printing]
*[http://rmrdtech.com/comment-page-1/ RMRDtech] - 3D printed windmills
* [[Applications of Open Source 3-D Printing on Small Farms]]
* [http://www.openbionics.com OpenBionics] ([http://www.3dprintingindustry.com/2015/06/13/award-winning-open-bionics-3d-prints-dual-material-medical-splint Lulzbot printed PLA+ninjaflex splints])
* [http://www.esherpa.ch/en/  esherpa]
* [https://3dprintingindustry.com/news/3d-printing-redefine-medical-supply-chain-africa-105989/ 3D printing to redefine the medical supply chain in Africa] - 3D Printing Industry
* [[Development of a Resilient 3-D Printer for Humanitarian Crisis Response]]
* [[Open-source 3-D Printing in Managing Humanitarian Innovation]]
* [[Chemical Compatibility of Fused Filament Fabrication-based 3-D Printed Components with Solutions Commonly Used in Semiconductor Wet Processing]]
* [[Mechanical properties of 3-D printed truss-like lattice biopolymer non-stochastic structures for sandwich panels with natural fibre composite skins]]


== Supporting Material: Classification With Examples ==
== Supporting Material: Classification With Examples ==
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* The Sun Cutter Project explores the potential of harnessing sunlight directly to produce objects. The machine is a low-tech, low energy version of a laser cutter. It uses pure sunlight, focused by a ball lens, to repeatedly cut programmed shapes in up to 0.4mm thick plywood as well as paper and card.[http://www.markuskayser.com/work/sun-cutter/]
* The Sun Cutter Project explores the potential of harnessing sunlight directly to produce objects. The machine is a low-tech, low energy version of a laser cutter. It uses pure sunlight, focused by a ball lens, to repeatedly cut programmed shapes in up to 0.4mm thick plywood as well as paper and card.[http://www.markuskayser.com/work/sun-cutter/]
* [[3D printing a house]]
* [[3D printing a house]]
* 3D printed wind turbines part 1: Design considerations and rapid manufacture potential- http://www.sciencedirect.com/science/article/pii/S221313881500003X


==See also==
==See also==
* [[Requests for 3-D printable open source appropriate technology]]
* [[Requests for 3-D printable open source appropriate technology]]
* [[Applications of Open Source GMAW-Based Metal 3-D Printing]]


== References==
== References==

Revision as of 11:40, 1 February 2019

3-D Printing of Open Source Appropriate Technologies for Self-Directed Sustainable Development

  • Full open text at: J. M Pearce, C. Morris Blair, K. J. Laciak, R. Andrews, A. Nosrat and I. Zelenika-Zovko, “3-D Printing of Open Source Appropriate Technologies for Self-Directed Sustainable Development”, Journal of Sustainable Development 3(4), pp. 17-29 (2010). Full text: [1] open access

Abstract

The technological evolution of the 3-D printer, widespread internet access and inexpensive computing has made a new means of open design capable of accelerating self-directed sustainable development. This study critically examines how open source 3-D printers, such as the RepRap and Fab@home, enable the use of designs in the public domain to fabricate open source appropriate technology (OSAT), which are easily and economically made from readily available resources by local communities to meet their needs. The current capabilities of open source 3-D printers is reviewed and a new classification scheme is proposed for OSATs that are technically feasible and economically viable for production. Then, a methodology for quantifying the properties of printed parts and a research trajectory is outlined to extend the existing technology to provide complete village-level fabrication of OSATs. Finally, conclusions are drawn on the potential for open source 3-D printers to assist in driving sustainable development.


Using open source 3-D printers to make AT

Dremelfuge

There have been a number of open source 3D printers, such as the Rep Rap developed. The basic idea for this project is to use them as tools to create OSAT in the field to help the goals of sustainable development. Prices on 3D printers are dropping rapidly [1]

An example of how these 3D printers can be used to meet these goals is the DremelFuge[2], which is an open-source tool for scientists. [3] The Dremelfuge is brilliant Open Source Hardware project developed by Cathal Garvey in Ireland. The DremelFuge is a printable rotor for centrifuging standard microcentrifuge tubes and miniprep columns. It is at least 10 times less expensive than a standard centrifuge and can be used by field workers in doing things like blood tests, but also by DIY biologists and educators. It requires industry standard 1.5ml/2ml Eppendorf/Microcentrifuge tubes.

  • Used with a drill at 3000 RPM, the Dremelfuge will deliver over 400g, enough to comfortably spin down Miniprep samples (proven personally). It will likely achieve acceptable results at lower speeds, too.
  • Used at 10krpm, on a Rotary tool for instance, a Dremelfuge should deliver over 4400g, more than enough to spin down bacterial cells.
  • At 16krpm, Dremelfuge matches commercial centrifuges.
  • On a Dremel 300, a maximum speed of 33krpm equates to a force of over 50,000 times earth's gravity, which puts it into so-called "Ultracentrifuge" territory. The latest version (as printed by Shapeways) has successfully spun tubes at this speed.

Map of 3DP for Development

Tech for Trade has a nice map of the major groups working throughout the world with 3D printing for development - http://techfortrade.org/our-initiatives/3d4d-challenge/

Calculating the Value of OSAT Development

Examples

Introduction to 3D Printing and Development - Tech-for-Trade
Error in widget YouTube: Unable to load template 'wiki:YouTube'
'We can't buy it, so can we make it' Revolutionizing humanitarian aid through local making-- Engineering for Change
Error in widget YouTube: Unable to load template 'wiki:YouTube'

For hundreds of more examples see:

For a relatively up to date list of examples see this collection of OSAT or this collection of open source scientific hardware. It is also possible to recycle e-waste into more RepRaps see [2].

  1. hand held corn sheller
  2. customized prosthetics
  3. solar water pasteurization manifolds, absorbers
  4. valves
  5. water wheels

Tools

Energy

Medicine

Not Impossible Labs Using 3D Printers Prototypes for Prosthetic Hands
Error in widget YouTube: Unable to load template 'wiki:YouTube'
Error in widget YouTube: Unable to load template 'wiki:YouTube'

Water

Agriculture

3D Printable OSAT Designs


In the News

Hands on Search - Yahoo Japan to help blind children
Error in widget YouTube: Unable to load template 'wiki:YouTube'

Future work

When coupled with the open source appropriate technology (OSAT) community the user's own experience with designs, innovations, and inventions can be similarly made available for the public usually through an open internet protocol such as an appropriate technology wiki like Appropedia. These open source technological advances thus have the potential to spur a virtuous cycle founded on a traditional hacker gift culture. Those with the best designs, which are provided free for the world community, are rewarded with prestige and develop their reputations in the global innovation community in the same way academics carefully nurture their h-indexes. This project outlines a research trajectory to improve local feed stock availability, size, and material properties to extend the existing technology to provide a complete village-level fabrication independence. Finally open source 3-D printing will be evaluated as a disruptive technology to challenge the conventional closed, top-down, corporate and colonial forms of development with an open, peer to peer, local self-reliant federation for providing abundance from existing resources.


Links Associated with Project

See Also

OSE tour of MOST lab 1
Error in widget YouTube: Unable to load template 'wiki:YouTube'

Supporting Material: Classification With Examples

Technical Constraints on OSAT Can be printed in currently

viable materials

Cannot be printed with currently

viable materials

Fits on present printer bed Complete items: valves for water systems (Madungwe & Sakuringwa, 2007); airtight plastic waterproof containers (Mtaita, 2003); joining andmounting components for sediment water filters (Hazeltine, 2003);plastic models of concepts for educational purposes (Lipson,2007); protective cases for AT items such as the BogoLight (Pilloton, 2009); ergonomic handles for objects (Ergon,2010);window frame components such as locks or sliding tracks(Hazeltine, 2003) (Mtaita 2003; Slesin & De Chabaneix, 1986);component pieces of frames with many uses – e.g. hospital equipment (England, 1979).


Components:water pumps (CATRL, 1984; Forst, 2003a; 2003b; Fraenkel, 1986;Inversin, 1977; Pilloton, 2009; Sharp & Graham, 1982;Tschannerl & Bryan, 1984); solar water heaters (Batidzirai et al, 2009) (Hurst, 1990); solar pasteurization, distillation and desalination (Alward, 1970; Buros, 2000; Denkenberger & Pearce, 2006; Khanna, Rathore, & Sharma, 2008; Pearce & Denkenberger, 2006);medical devices such as splints and braces (Bach, et al., 2004); biogas harvester (Forst, 2001); kitchen appliances (Taiwo, 2001).

Complete items: mechanical componentsfor industrial use, bicycles, home or farming equipment ranging from tools ( Branch, 1978; DeCristoforo, 1977; Hurt, 1985; Weygers, 1973) such as wrenches, hammers, and shovels,task-specific tools for production (Clegg, 1988),and general mechanical parts such as simple gears and bearings (SchoolsCouncil Project Technology, 1985).



Components:wheelchairs (Pearlman, 2006; Kim & Mulholland, 1999); furnaces;briquette presses for fuel (Dahlman & Forst, 2000); grinders and planters and other farm equipment (International Rice Research Institute, 1985); stove grills (Brattle & Irving,1986); electrical switches, wires and fuses.

Does not fit on present printer bed solar dehydrators (Dahlman & Forst, 2001; Forst, 2002; Valdez & Valdez, 1977); concrete molds, required for a variety of items such as rain water catchers (Pacey & Cullis, 1986);environmentally and socially sustainable household construction items (Abidin, 2010; Wekesa, Steyn, & Otieno, 2010); screened louvered shutters for windows (Slesin & De Chabaneix, 1986); windows and doors (Kahn, 1973); solar still platforms; wind pumps(Mann, 1979) large covers for electrical equipment (Phipps, 1983) locking desalination pressure cooker (Buros, 2000); furnace and stove pieces (Forst, 2001; 2002); wind or water turbines (Durali, 1976); high-temperature solar cooker components (Sharma, Sethi, & Chopra, 1990; Hazeltine, 2003; Hazeltine & Bull, 2003; Sharma, 1990); housing projects; large farm and industrial equipment; children's playgrounds; bulky medical equipment;transportation containers

Table of Supporting Material: Further OSAT ideas and their technical potential to be printed on open-source 3-D printers

Table References

Abidin, N. Z. (2010). Investigating the awareness and application of sustainable construction concept by Malaysian developers. Habitat International, 34(4), 421-426.

Bach, O., 'Hope,' 'M. J., Chaheka, C. V., & Dzimbiri,' K. M.(2004). Disability can be avoided after open fractures in Africa? Results from Malawi. Injury, 35(9), 846-851.

Batidzirai, B., Lysen, E. H., Van Egmond, S., & Van Sark, W. G. J. H. M. (2009). Potential for solar water heating in Zimbabwe. Renewable and Sustainable Energy Reviews, 13(3), 567-582.

Branch, D.S. (Ed.). (1978). Tools for homesteaders, gardeners, and small-scale farmers. Emmaus: Rodale Press Inc.

Brattle, L. V., & Irving, R. J. (1986). Appropriate household technology: charcoal stoves. Journal of Consumer Studies & Home Economics, 10(1), 35-43.

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Other Approaches

  • Solar Sinter project - uses focused solar power to sinter sand in a 3D printer setup [3]
  • The Sun Cutter Project explores the potential of harnessing sunlight directly to produce objects. The machine is a low-tech, low energy version of a laser cutter. It uses pure sunlight, focused by a ball lens, to repeatedly cut programmed shapes in up to 0.4mm thick plywood as well as paper and card.[4]
  • 3D printing a house
  • 3D printed wind turbines part 1: Design considerations and rapid manufacture potential- http://www.sciencedirect.com/science/article/pii/S221313881500003X

See also

References

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