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Ai Build
Ai Build™ is a London based company that is focusing on improving the way we make and experience our built environment. With a team of uniquely experienced professionals, we are developing innovative products and technologies that push the boundaries of automation and human-space interaction.
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SHINING 3D has been applying itself to 3D scanning and 3D printing technology for years, providing machinery and service in such sectors as industrial manufacturing, bio-medical, cultural creation, education. SHINING 3D was founded in 2004 and successfully got listed in OTC stock market on August 8, 2014, becoming China’s first OTC stock in 3D digitizing and 3D printing industry. Shining3D’s headquarter is based in Hangzhou and it has branches offices in Shanghai, Beijing, Nanjing, Guangzhou, Chengdu, etc.
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Fouche 3D Printing
Fouche 3D Printing, Creator of the Cheetah 3D printer with a 1 cubic meter build volume.We know that we have a unique product. We hope and trust that it will provide jobs, change the way that products are manufactured- small batches that require less storeage, and that it will inspire creativity! ABS granules are used as the raw product for filament, therefore our cost per print is significantly lower. Our cost per kilo is less than $4/kg for ABS granules. As standard, we use a 3mm nozzle and get a 0.5 Kg\Hour flow rate. 1mm, 2mm, 4mm, 5 mm, and 6mm nozzles are also available.
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"Hardware, software and methodologies to drive the next stage of the 3D printer revolution: (1) Home 3D printers that can produce sophisticated, working products. (2) Globally shippable and hence mass producible 3D printed buildings. ...many other innovations in the pipeline."Collaborations sought. Significant investor opportunities forthcoming. Patent pending + Fair Source.
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WASP (World Advanced Saving Project) is an Italian company specializing in the production of Delta type FDM 3D Printers. The company stands out for the vision of its founder Massimo Moretti, whose dream is to be able to develop a 3D printer capable of printing houses in an completely eco-fiendly way to help solve some of the worlds housing issues. Through the sale of its first 3D printer, the PowerWASP, WASP was able to develop a prototype for a 3D printer capable of printing with a particular type of clay material suitable - if the technology were to be sufficiently scaled up, for making habitable houses.
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D-Shape is a new robotic building system using new materials to create superior stone-like structures. This new machinery enables full-size sandstone buildings to be made without human intervention, using a stereolithography 3D printing process that requires only sand and our special inorganic binder to operate.D-Shape is a new building technology which will revolutionize the way architectural design is planned, and building constructions are executed
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Desamanera is an innovative start-up incorporated in December 2014 with headquarters in Italy. We operate in the field of additive manufacturing, commonly known as 3D printing. Thanks to the skills of our team, we have developed various high quality products that, through craft techniques and processes, are applied to the 3D prints, making the final product unique and exclusive. We are constantly engaged in research and development both in house and through collaborations with universities, public institutes and private companies.

Our mission

To associate to our exclusive additive manufacturing's technology, the value of multi- year's craftsmanship skills, to allow maximum creative freedom. We believe that “Made in Italy” still represents a value for young talents and creative people around the world. Inside this space, we want to create a community where the new technologies can contaminate the handicraft culture, without compromise.
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Slovenian company, launched the BetAbram house 3D printer in 2013. The three models available, P1, P2, P3, can be delivered within two month of ordering and finalizing payment. The larges model, P1, can 3D print parts as long a 6 meters and weights 250 kg.
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Yingchuang is a high-tech enterprise who is engaged in the research and development of the new materials for construction. It currently owns more than 90 national patent certificates. On March 29, 2014, during global press release conference in Shanghai Tongji University, Yingchuang was published as the world first high-tech enterprise that could truly print 3D houses and put forth six breakthroughs of world leading technology and application. At the same time, in Shanghai Qingpu Science Park, it also represented 10 full-sized 3D-printed houses printed by its world biggest 3D printers. Its 3D printing technology is expected to revolt construction, estate and even more industries. Up to now, Yingchuang has been drawing close attention from worldwide media, officials and industry.Beside its 3D house printing technology, Yingchuang’ s traditional products- GRG,SRC,FRP and Crazy Magic Stone have also gained fruitful project achievements and customers’ highly recognition. With 12 years application experience in the market and constant development, now the GRG,SRC,FRP and Crazy Magic Stone can well decorate the interior & exterior walls and various floor models. It has completed more than hundreds of projects, such as China National Grand Theatre, China National Aquatics Center (“Water Cube” for Olympic 2008) ,China Peking Opera Theatre (Mei Lanfang Grand Theatre) ,Shanghai World Expo Center,Guangzhou Baiyu International Meeting Center,Shenzhen Poly Theatre,Fuzhou Grand Theatre, Wuhan Qintai Grand Theatre After many years of effort, Yingchuang has established a complete product production and management mode and systems for above products. On that basis, it owns relevant trade names, trademark rights, various patents, trade secrets and other related intellectual property rights.
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Architecture has always harvested a close relationship with technological advances. Although this relationship had somewhat stagnated, over the more recent past Architecture has began to adopt technologies that are already well established in other fields, one of these being 3D Printing.

The Institute for Advanced Architecture of Catalonia (IAAC), based in Barcelona, has been, for some time now, exploring and investigating the potentials of additive manufacturing (3D Printing) applied to the architectural field, therefore implemented on a larger scale (eg. Minibuilders). With the interest of further developing the potentials of this technique on the large scale, and in view of the environmental and economic crisis, IAAC has been investigating the possibility of on site additive manufacturing and fabrication with local and 100% natural materials. The objective was to develop a technique that went beyond the robot – relying only on its mechanical properties – and allowing a design research based exclusively on the material properties and behaviour. This research process included the optimisation of material mix, using only natural additives, as well as optimizing fabrication times.

The Pylos research project develops 3D printing as a large scale construction method, moreover developed with natural, biodegradable, recyclable and locally found materials, an undeniable interest particularly in this time of economic and environmental crisis.

This material can not be other than soil. The project focuses on the natural properties of soil. Earth, or Soil, as a construction material has been used since Neolithic times. The advantages of an earth – soil structure are primarily related to both the environment and economy, being secure and friendly to our environment. Soil also offers the benefits of natural insulation, fire protection, air circulation,  low first cost, 100% recyclable structures, stiffness, great strength, thermal flywheel effect, low greenhouse emissions, regulating the climate and providing a healthy Indoor environment.

The project focuses on the behavior of the soil for 3D printing when mixed with other ingredients, towards a better understanding of the material, and potential composites.

The material results obtained through the development of the first phase of this research project are extremely promising a new, more than 96% based in soil, material that has 3 times higher tensile strength from industrial hard clay.

The importance of the material chosen for this additive manufacturing research is not related only to the unlimited existing quantity but also to decrease the emerging degree of embodied energy within the fabrication process, transportation hazards and production independent of electricity, fuel availability and greenhouses effects.

The  project is also inspired by one of unbaked soil properties. Soil can be recycled an indefinite number of times over an extremely long period. Old dry loam can be reused after soaking in water, so loam never becomes a waste material that harms the environment.

In a moment in which there is a boom in global population growth and urbanization, with a high percentage of this population living in low quality housing conditions, it becomes imperative to push for affordable architecture and housing: low cost quality solutions for developed and developing countries. Pylos has proven significant possibilities in terms of design variations, ensuring a sound structural quality, low energy consumption, and undeniable affordability (0.50€/kg). This project provides sustainable, low-cost, large scale solutions for the architectural scale through the digitalization and advancements of vernacular architecture and traditional techniques, creating a new vision for the future of the construction sector, architecture and the city.

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At Construction Automation, we are striving to disrupt the age-old real estate construction process with 3D printing and robotics. Our goal is to make homes across the world cheaper, sustainable and faster to build.
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"Branch combines freeform 3d printing technology, large scale industrial robots, and conventional construction materials to create buildings without design limits. We prefabricate mass customized wall panels for the Trillion dollar US residential and commercial construction market.Cellular Fabrication™ is the next evolution of construction, using 3D printed structures as scaffolds, to which conventional materials are applied forming the structure, insulation, and finishes of a building. Customers will be able to build designs long dreamt of, but which have never before been within the financial reach of normal construction budgets. We are democratizing design and opening a new era of architectural form."
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