The 3D Innovation Center (3DIC) and the Professional Council of 3D Images (3D Council), which is part of the China Television Artists Association (CTAA), took the first step towards an international cooperation. Dr. Ralf Schäfer, chairman of 3DIC’s Steering Committee, and Dr. Wang Fu chairman of the 3D Council will exchange a Memorandum of Understanding at the 3Tec in Beijing.
This agreement is the basis for future events in China and Europe where the partners of both organizations can meet, establish contacts and exchange know-how about each other's markets. Sebastian Knorr from imcube labs, who is a member of the 3DIC Steering Committee, will be its representative in China.
The cooperation will be officially announced at the conference of the 3Tec in Beijing on April, 18-19. Organized by imcube labs, this conference is the first joint project of the two parties and an important step for the future relationship between China and Europe with regard to 3D technologies.
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The 3D Innovation Center opened in 2012 at the Fraunhofer Heinrich Hertz Institute in Berlin.
The Fraunhofer Heinrich Hertz Institute
The Fraunhofer Heinrich Hertz Institute is a world leader in the development of mobile and fixed broadband communication networks and multimedia systems. From photonic components and systems to fiber optic sensor systems and real-time image processing architectures, the Heinrich Hertz Institute works together with its international partners from research and industry on building the infrastructure for the future Gigabit Society. Fraunhofer HHI is your competent partner for UHDTV, 3D TV, 3D displays, HDTV, gesture controlled man-machine interaction, image processing, coding and transmission, and use of interactive media. Fraunhofer HHI is also the initiator of the 3D Innovation Center and responsible for its set up and organization.
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Friction stir welding is a still-young and thus often unfamiliar pressure welding process for joining flat components and semi-finished components made of light metals.
Scientists at the University of Stuttgart have now developed two new process variants that will considerably expand the areas of application for friction stir welding.
Technologie-Lizenz-Büro (TLB) GmbH supports the University of Stuttgart in patenting and marketing its innovations.
Friction stir welding is a still-young and thus often unfamiliar pressure welding process for joining flat components and semi-finished components made of...
Optical quantum computers can revolutionize computer technology. A team of researchers led by scientists from Münster University and KIT now succeeded in putting a quantum optical experimental set-up onto a chip. In doing so, they have met one of the requirements for making it possible to use photonic circuits for optical quantum computers.
Optical quantum computers are what people are pinning their hopes on for tomorrow’s computer technology – whether for tap-proof data encryption, ultrafast...
The Fraunhofer Institute for Organic Electronics, Electron Beam and Plasma Technology FEP has been developing various applications for OLED microdisplays based on organic semiconductors. By integrating the capabilities of an image sensor directly into the microdisplay, eye movements can be recorded by the smart glasses and utilized for guidance and control functions, as one example. The new design will be debuted at Augmented World Expo Europe (AWE) in Berlin at Booth B25, October 18th – 19th.
“Augmented-reality” and “wearables” have become terms we encounter almost daily. Both can make daily life a little simpler and provide valuable assistance for...
With the help of artificial intelligence, chemists from the University of Basel in Switzerland have computed the characteristics of about two million crystals made up of four chemical elements. The researchers were able to identify 90 previously unknown thermodynamically stable crystals that can be regarded as new materials. They report on their findings in the scientific journal Physical Review Letters.
Elpasolite is a glassy, transparent, shiny and soft mineral with a cubic crystal structure. First discovered in El Paso County (Colorado, USA), it can also be...
For the first time, Fraunhofer IKTS shows additively manufactured hardmetal tools at WorldPM 2016 in Hamburg. Mechanical, chemical as well as a high heat resistance and extreme hardness are required from tools that are used in mechanical and automotive engineering or in plastics and building materials industry. Researchers at the Fraunhofer Institute for Ceramic Technologies and Systems IKTS in Dresden managed the production of complex hardmetal tools via 3D printing in a quality that are in no way inferior to conventionally produced high-performance tools.
Fraunhofer IKTS counts decades of proven expertise in the development of hardmetals. To date, reliable cutting, drilling, pressing and stamping tools made of...
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27.09.2016 | Event News
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29.09.2016 | Materials Sciences
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