Category:Manufacturing
Introductory Citations | |
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- Factory@Home report [1] |
- Jason F. McLennan [2] |
Visualization
Reto Stauss: The Open Manufacturing Value Stream
Overview | |
IntroductionPlease read:
This new section is dedicated to Open Manufacturing developments, making it easier to identify interests in creating physical objects. This is a smaller subset of our much broader section on Open and Shared Design Communities. However, this section also includes developments about 'production' and 'making' in general, including topics like the DIY revolution, the digitalization of crafts, and agricultural production. The P2P Foundation supports the aims of the Open Source Hardware and Design Alliance [3] , an initiative to foster sustainable sharing of open hardware and design. Have a look at the following material:
Video: Four Ways to Manufacture Open Hardware. How does open hardware get made? 1) Licensing; 2) Fulfillment; 3) Contract manufacturing; 4) DIY assembly [4] Comparative Tables
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The Personal Manufacturing IndustryFor details see: Personal Manufacturing Industry and Personal Manufacturing Machines Introduction: an overview of Personal Manufacturing Read:
ToolsSee: Personal Manufacturing Tools Typology of Personal Manufacturing Machines (Hardware)
Computer-Aided Design Software
Players
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Mappings and Typologies1. The integrated open design and manufacturing process, a poster by Thomas Lommee at http://www.intrastructures.net/yes_we_re_open.pdf
Key Resources
See also:
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Introductory Articles
Other essential articles/essays are:
Also:
Also:
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Contacts
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| Bryan Bishop | Kirsty Boyle | Charles Collis | Vinay Gupta | Eric Hunting | Marcin Jakubowski | |
| kanzure AT gmail DOT com | kirsty AT openmaterials DOT org | charles dot collis at gmail dot com | hexayurt AT gmail DOT com | erichunting AT gmail DOT com | joseph dot dolittle at gmail dot com | |
| Smári McCarthy | Massimo Menichinelli | Catarina Mota | Sam Rose | Chris Watkins | ||
| spm2 AT hi DOT is | info AT openp2pdesign DOT org | catarina AT openmaterials DOT org | samue.rose AT gmail DOT com | chriswaterguy AT appropedia.org |
Key people in the Open Hardware movement | |
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CitationsSee also our Citations on Open and Shared Design and Open and Distributed Manufacturing | |
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– Simon Bradshaw, Adrian Bowyer and Patrick Haufe [17]
- Jason F. McLennan [18] The Inevitability of Personal Manufacturing as new Industrial RevolutionAccording to Marshall Burns, previous emancipating technologies in human history were the book (enabled by the invention of the printing press), cars (enabled by new roads and gas stations) and now personal fabrication (enabled by 3D design software). What this random collection of technologies has in common is that they entered the lives of everyday people in a gradual way as the technology dropped in price, became easy to use, and accumulated a critical mass of applications, fellow users, or supportive infrastructure such as roads or high speed Internet. While mainstream adoption of personal manufacturing technologies is a few decades away, the manufacturing industry will experience the same forces that brought us YouTube, laptops, mobile phones and online retailers." - by Hod Lipson & Melba Kurman [19]
Why Localization is Inevitable in a Resource-scarce World"It is an article of faith that global trade will be an ever-growing presence in the world. Yet this belief rests on shaky foundations. Global trade depends on cheap, long-distance freight transportation. Freight costs will rise with climate change, the end of cheap oil, and policies to mitigate these two challenges. At first, the increase in freight costs will be bad news for developed and developing nations alike but, as adjustments in the patterns of trade occur, the result is likely to be decreased outsourcing with more manufacturing and food production jobs in North America and the European Union. The pattern of trade will change as increasing transportation costs outweigh traditional sources of comparative advantage, such as lower wages. The new geography of trade will not result from policy or treaties but from the impact of changing environmental conditions due to the growth of the human economy. ... Many goods will be manufactured closer to where they are consumed, as supply chains become more regional and local." - Fred Curtis, David Ehrenfeld [20]
Scale-Up From One"Scale up from one: Regular people and small manufacturing companies that lack investment capital will be able to set up low investment, “start small and scale up as it goes” businesses. Thanks to the low-cost Internet virtual storefronts, and the low cost of small-scale manufacturing for prototypes and custom goods, new companies can get started on a shoestring budget, yet sell their wares or services to niche, global marketplaces." - Hod Lipson & Melba Kurman [21]
Sam Rose, Erik deBruijn, Suresh Fernando on basic properties of scalable open source technology projectsbasic properties of scalable open source technology projects
(distilled from discussion between Erik deBruijn, Sam Rose, Suresh Fernando) - Sam Rose (Based on discussions with Erik deBruijn and Suresh Fernando via skype early 2010 http://wagn.holocene.cc/wagn/basic_properties_of_scalable_open_source_technology_projects ) So, what can we do to prevent instability? The solution isn't to formulate vague contingency plans or return to passive optimism. Obviously, that won't work. No, the solution is to improve our resilience to these systemic shocks through a social and economic transition that follows this simple formula: Localize production. Virtualize everything else. - John Robb [22] "The emergence of commons-based techniques — particularly, of an open innovation platform that can incorporate farmers and local agronomists from around the world into the development and feedback process through networked collaboration platforms—promises the most likely avenue to achieve research oriented toward increased food security in the developing world. It promises a mechanism of development that will not increase the relative weight and control of a small number of commercial firms that specialize in agricultural production. It will instead release the products of innovation into a self-binding commons—one that is institutionally designed to defend itself against appropriation. It promises an iterative collaboration platform that would be able to collect environmental and local feedback in the way that a free software development project collects bug reports—through a continuous process of networked conversation among the user-innovators themselves." - Yochai Benkler ([23], p. 22)
- Robert Theobald, The Guaranteed Income, 1966 |
Karim Lakhani on Communities driving Manufacturers out of the design phase"for any given company - there are more people outside the company that have smarts about a particular technology or a particular use situation then all the R&D engineers combined. So a community around a product category may have more smart people working on the product then the firm it self. So in the end manufacturers may end up doing what they are supposed to - manufacture - and the design activity might move to the edge and into the community." (http://www.futureofcommunities.com/2007/03/25/communities-driving-manufacturers-out-of-the-design-space/)
Kevin Kelly and Terry Hancock on nearly-free material production"Material industries are finding that the costs of duplication near zero, so they too will behave like digital copies. Maps just crossed that threshold. Genetics is about to. Gadgets and small appliances (like cell phones) are sliding that way. Pharmaceuticals are already there, but they don't want anyone to know. It costs nothing to make a pill." (http://www.kk.org/thetechnium/archives/2008/01/better_than_fre.php)
Steve Bosserman outlines what is most appropriate for local distributed manufacturing"strong candidates for a locally distributed manufacturing approach include ANYTHING that is agriculturally- based like food, feed, fiber, and biofuel production, much of housing and building construction including the manufacturing of inputs used in that industry, localized electric power generation using non-bio sources like wind, solar, and geothermal, and production / manufacturing of materials, components, and assemblies that use locally sourced raw materials and draw upon open-source, relatively easy to learn, appropriate technologies that can be applied in a wide range of situations-- not just a single product."
Eric von Hippel on Manufacturing around User Innovation Communities"Threadless has tapped into a fundamental economic shift, a movement away from passive consumerism. One day in the not-too-distant future citizen inventors using computer design programs and three-dimensional printers will exchange physical prototypes in much the same way Nickell and cohorts played Photoshop tennis. Eventually, Threadless-like communities could form around industries as diverse as semiconductors, auto parts, and toys. Threadless is one of the first firms to systematically mine a community for designs, but everything is moving in this direction. He foresees research labs and product-design divisions at manufacturing companies being outstripped by an "innovation commons" made up of tinkerers, hackers, and other devout customers freely sharing their ideas. The companies that win will be the ones that listen." (quotes and paraphrased by Inc. [25])
Frank Piller on User Manufacturing"User manufacturing is enabled by three main technologies: (1) Easy-to-operate design software that allows users to transfer their ideas into a design. (2) Design repositories where users upload, search, and share designs with other users. This allows a community of loosely connected users to develop a large range of applications. (3) Easy-to-access flexible manufacturing technology. New rapid manufacturing technologies ("fabbing") finally deliver the dream of translating any 3-D data files into physical products -- even in you living room. Combining this technology with recent web technologies can open a radical new way to provide custom products along the entire "long tail" of demand. User manufacturing builds on the notion that users are not just able to configure a good within the given solution space (mass customization), but also to develop such a solution space by their own and utilize it by producing custom products. As a result, customers are becoming not only co-designers, but also manufacturers, using an infrastructure provided by some specialized companies." (http://mass-customization.blogs.com/mass_customization_open_i/2007/11/webinar-the-nex.html)
Jeff Bezos on User-Manufacturing Everything"Before long, “user-generated content” won’t refer only to media, but to just about anything: user-generated jeans, user-generated sports cars, user-generated breakfast meals. This is because setting up a company that designs, makes and globally sells physical products could become almost as easy as starting a blog - and the repercussions would be earthshaking. " (http://www.usatoday.com/tech/columnist/kevinmaney/2006-11-21-amazon-user-generated-products_x.htm)
Flexible Manufacturing and the Maker Movement"Two future forces, one mostly social, one mostly technological, are intersecting to transform how goods, services, and experiences— the “stuff” of our world—will be designed, manufactured, and distributed over the next decade. An emerging do-it-yourself culture of “makers” is boldly voiding warranties to tweak, hack, and customize the products they buy. And what they can’t purchase, they build from scratch. Meanwhile, flexible manufacturing technologies on the horizon will change fabrication from massive and centralized to lightweight and ad hoc. These trends sit atop a platform of grassroots economics—new market structures developing online that embody a shift from stores and sales to communities and connections." (http://iftf.org/node/1766) |
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Information ResourcesBlogsA comprehensive list of Fabrication Media is kept by the Fab Wiki [26] A selection:
See also: BooksGeneral
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Technical
Community and Discussion Sources
See also:
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CompaniesSelection from the List of Open Hardware Organizations from GOSH 2009
Conferences and Events
ExamplesSee Product Hacking for our comprehensive open hardware and manufacturing directory
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Organizations
Podcasts
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Tools
Open Source Production MachinesFull list is updated here: [34]
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Webcasts
Documentaries:
Practical:
Also: (A to D only, ported from our Webcasts directory)
Material on Specialized IndustriesFrom the Industrial Cooperation Project:
See the following tags:
The special case of the fashion industry
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Open Manufacturing Encyclopedia
Pages in category "Manufacturing"
The following 200 pages are in this category, out of 1,774 total.
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- Open Source Circular Economy
- Open Source Clean Technology Initiative
- Open Source CNC Milling Machine
- Open Source CNC Systems
- Open Source Commuter Car
- Open Source Construction
- Open Source Construction Systems
- Open Source Control Systems
- Open Source Cooling
- Open Source Desktop 3D Printers
- Open Source Digital Fabrication Machines Made in Barcelona
- Open Source Digital Geiger Counters
- Open Source Digital Patterns Making
- Open Source DIY Rapid Hardware Prototyping
- Open Source Drone Autopilot System
- Open Source Drone Movement
- Open Source Drones
- Open Source Earth
- Open Source Ecology
- Open Source Ecology Germany
- Open Source Electric Vehicle
- Open Source Electronics
- Open Source Emergency Shelter
- Open Source Engineering
- Open Source Fashion Design
- Open Source Filament Maker
- Open Source Furniture
- Open Source Furniture Design
- Open Source Geiger Counter
- Open Source Genome Sequencer
- Open Source Geopolymer Cast Stone Construction
- Open Source Green Vehicle
- Open Source Haptic Wireless Input Device
- Open Source Hardware
- Open Source Hardware 2009
- Open Source Hardware and Design Alliance
- Open Source Hardware as a Competitive Advantage for Companies like Sparkfun Electronics
- Open Source Hardware Association
- Open Source Hardware Bank
- Open Source Hardware Business Models
- Open Source Hardware Certification
- Open Source Hardware Definition
- Open Source Hardware Desktop CNC Milling Machine
- Open Source Hardware Distribution Models
- Open Source Hardware Documentation Jam
- Open Source Hardware Economy is a Candy Economy
- Open Source Hardware Electrophysiology
- Open Source Hardware Gadgets
- Open Source Hardware in Berlin and Germany
- Open Source Hardware in Resource Management and Agriculture
- Open Source Hardware in the Cinema
- Open Source Hardware Licensing
- Open Source Hardware Medical Device Platform
- Open Source Hardware Pattern Language Icons
- Open Source Hardware Podcast
- Open Source Hardware Reserve Bank
- Open Source Hardware Small Wind Turbines
- Open Source Hardware Taxonomy
- Open Source Hardware User Group
- Open Source Hardware Volume 1
- Open Source Hardware Volume 2
- Open Source Humanoid Platform
- Open Source Humanoid Robot
- Open Source I-Bills
- Open Source Induction Furnace Project
- Open Source Ink
- Open Source Integrated Circuits
- Open Source Jukebox Firmware
- Open Source Kitchen
- Open Source Knitting
- Open Source Knitting Machine
- Open Source Laser
- Open Source Laser Cutter
- Open Source Maker Labs
- Open Source Manufacturing
- Open Source Manufacturing Bibliography
- Open Source Manufacturing Tools
- Open Source MAVs
- Open Source Medical Device
- Open Source Medical Devices
- Open Source Micro Air Vehicles
- Open Source Micro-Factory
- Open Source Microfactory
- Open Source Military Hardware
- Open Source Monome
- Open Source Music Hardware
- Open Source Next Generation Multicopter
- Open Source Ocean Hardware
- Open Source Pedal-Powered Household Appliances
- Open Source Pharma
- Open Source Physical Objects
- Open Source Powder-Based 3D Printer
- Open Source Powder-Based Rapid Prototyping Machine
- Open Source Prefab Strawbale House
- Open Source Product Design
- Open Source Project-Launch Blueprinting
- Open Source Prosthetics
- Open Source Rapid Prototyping
- Open Source Remote-Controlled Aircraft
- Open Source Robotic Arm
- Open Source Robotics
- Open Source Robotics Foundation
- Open Source Satellite Initiative
- Open Source Satellite Monitoring
- Open Source Scooter
- Open Source Self Buildable Airplane
- Open Source Self-Driving Electric Vehicle
- Open Source Software Economy vs Open Source Hardware Economy
- Open Source Solar
- Open Source Solar Pocket Factory
- Open Source Spaceflight Hardware
- Open Source Spaceflight Hardware Movement
- Open Source Sustainability
- Open Source Technology Pattern Language
- Open Source Thermocycler
- Open Source Things
- Open Source Torch Table
- Open Source Tractor
- Open Source UAV Autopilot
- Open Source Underwater Robots
- Open Source Unmanned Aerial System
- Open Source Velomobile
- Open Source Velomobile Development Project
- Open Source Vessels
- Open Source Washing Machine
- Open Source Washing Machine Project
- Open Source Water Boiler and Purifier
- Open Source Wind Turbine
- Open Source Wind Turbine Designs
- Open Source Wind Turbines
- Open Source Workflow Engines
- Open Sourcing
- Open Space Movement
- Open Spime
- Open Straw
- Open Structures
- Open Structures Project
- Open Sustainability Network
- Open Tech Collaborative
- Open Textiles
- Open Versions of Lab Equipment
- Open versus Closed Modular Systems
- Open Virgle
- Open Waterbike
- Open XC Platform
- Open Βionics
- Open-Hardware Wireless Communication System
- Open-Source 3D-Printable Optics Equipment
- Open-Source Automated Farming Machine
- Open-Source Automated Pharmaceutical Lab Reactor
- Open-Source Automated Precision Farming Machine
- Open-Source Development of Solar Photovoltaic Technology
- Open-Source DIY Floating Maker Island
- Open-Source Electronics
- Open-Source Lab
- Open-Source Lab: How to Build Your Own Hardware and Reduce Research Costs
- Open-Source Rapid Prototyping for Biology
- OpenBuilds
- Openeering Wiki
- Opening Design
- Opening Hardware through Legal Tools
- Opening Up the Value Chain
- OpenLuna Foundation
- OpenMoko
- Openness as a Competitive Advantage for Hardware and Manufacturing Eco-Systems
- Openness Assessment of 132 Open Source Hardware Products
- OpenPario Project
- OpenPicus
- OpenRAVE
- OpenRov
- OpenStructures
- OpenStructures Open Modular Hardware Database
- OpenTrons
- OpenWear
- Openwear Collaborative Collection Workshop
- OpenWear Interview with Michel Bauwens
- Operational and Delivery Networks
- Original Design Manufacturer
- Oscar
- OSD Open Source Device
- OSE Europe - Governance
- OSHW 2010 Summit Panel on Open Hardware Business Models
- OSHW 2010 Summit Panel on Open Hardware Licenses and Norms
- OSHW 2010 Summit Panel on Open Manufacturing Beyond DIY
- OSLOOM
- Overview of Recovered Factories in Italy
- Overview of the Relationship Between Fashion and Intellectual Property
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- P2P and Human Evolution Ch 3
- P2P Lab Publications
- P2P Product Cycle
- P3P
- Pace and Proliferation of Biological Technologies
- Pachube
- Pad2Pad
- Parody of the Commons
- Patricia Allen and Ronald Wright on Permaculture as Sustainable Agriculture
- Paul Badger
- Paul Beech on Building a Maker Business
- Paul Downey on Pay It Forward Altruistic 3D Printing
- Paul Hartzog on the Advantages of Scale of Openness and Peer Production
