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Archive for the ‘3D printing’ category: Page 97

Nov 13, 2016

Israeli tech lets diamonds’ true colors, and clarity, shine through

Posted by in category: 3D printing

Excellent! Now, imagine how this technology can be used to improve synthetic diamond quality for things such as 3D printing of syn. diamonds used by QC, Quantum light networks, etc.


Machines can take over from gemologists in grading 2 of the gems’ famous 4 C’s, says Sarine Technologies.

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Nov 5, 2016

Printable Organs Will Put an End to Transplant Lists

Posted by in categories: 3D printing, bioprinting, biotech/medical, life extension

A woman living on a dialysis machine is grown a new kidney using her own cells. A father struggling with age-related vision loss has his eyesight restored. A soldier suffers extensive burns and has his skin regenerated.

This is a glimpse of the holy grail of regenerative medicine. The ultimate goal of the field is to develop therapies that restore normal function to diseased tissues and organs. Advances in 3D bioprinting, the process of fabricating functional human tissue outside the body in a layer-by-layer fashion, have pushed the envelope on what is considered possible in the field.

Continue reading “Printable Organs Will Put an End to Transplant Lists” »

Nov 5, 2016

Can you make a material that doesn’t react to heat? USC research team thinks so, and is proving it

Posted by in categories: 3D printing, neuroscience, security

I see many uses of this material already in security, defense & intelligence, devices and energy related products, etc. Contracts as it heats up.


Qiming Wang’s team designed a unique manufacturing technique using 3D printing.

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Oct 31, 2016

A Revolution in Heart Surgery: Scientists Create Artificial Blood Vessels That Grow Normally

Posted by in categories: 3D printing, biotech/medical

In Brief:

  • New artificial blood vessels were able to grow with the recipient in recent animal testing
  • Researchers saw a 56% increase in diameter made of patients’ own cells.

We have sufficiently advanced medicine to the point that artificial body parts are no longer science fiction. In fact, we may even start 3D printing organs, or have them grown in a lab. However, their artificial nature often means they won’t grow with a patient. For example, children need to undergo repeated surgeries until adulthood to replace implants they have outgrown.

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Oct 30, 2016

German Students Develop Improved 3D Printable Bio-Ink

Posted by in categories: 3D printing, bioprinting, biotech/medical, chemistry

Bioprinting is becoming more sophisticated daily. Students from Munich, Germany, hacked an Ultimaker 2+ to 3D print biomaterials even more efficient. Without a doubt, the yearly iGEM challenge is one of the yearly highlights for students in the field of biology, biochemistry, and biotechnology.

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Oct 29, 2016

Dutch TV Host Designs, Customizes & Watches Her Own Kinematics Dress Being 3D Printed

Posted by in categories: 3D printing, 4D printing

If I have a very robust and sophisticated 3D/ 4D printer to make my own clothing, accessories, household furnishings plus another option in my printer/s to make dishware, household accessories, etc. Why would I ever need a Macys, Bed-Bath, etc. as well as Amazon for that matter for clothing, etc. Hmmm, and retail was already worried over Amazon and Aliexpress, etc.


nervous-system

We’ve followed Nervous System for two years now, with their stunning introduction of 4D printed apparel. Based in Somerville, MA, the design team has since offered numerous projects to the world, featuring their 3D printed Kinematics dress on more than one instance from the first one now permanently ensconced in MOMA to debuting their last in a Sydney Museum. And while we’ve reported on the innovation of their adaptive materials along with an overview of their construction in collaboration with Shapeways, now we are allowed to take a more comprehensive look from the present, as others look much further into the future.

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Oct 29, 2016

California Startup Made In Space to Make Optical Fiber in Orbit

Posted by in categories: 3D printing, internet, space travel

Society is about to take another big step into the age of space-based manufacturing.

Early next year, California-based startup Made In Space plans to launch a machine to the International Space Station (ISS) that will produce ZBLAN optical fiber.

ZBLAN has the potential to be much more efficient than the silica-based fiber currently used in the internet and telecommunications industries, but it’s tough to make here on Earth because the planet’s strong gravitational pull induces imperfections in the ZBLAN crystal lattice, Made In Space representatives said. [3D Printing: 10 Ways It Could Transform Space Travel].

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Oct 29, 2016

Mars Medical Challenge Asks Students to Design 3D Printable Items to Keep Astronauts Healthy on Mars

Posted by in categories: 3D printing, biotech/medical, education, engineering, space travel

The team of NASA, the American Society of Mechanical Engineering (ASME), and online educational platform Future Engineers has been a lot of fun to follow over the last year. Their collaborative 3D Printing in Space Challenges have resulted in some amazing, ingenious inventions from children as young as five years old, all aimed at improving the daily lives of astronauts now and in the future, on the International Space Station and, one day, on Mars.

mars

Continue reading “Mars Medical Challenge Asks Students to Design 3D Printable Items to Keep Astronauts Healthy on Mars” »

Oct 29, 2016

First Surgeries Performed with 3D Printed Posterior Spine Truss System

Posted by in category: 3D printing

Curved posterior spine truss system implant.

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Oct 26, 2016

New metamaterial shrinks when the heat is on

Posted by in categories: 3D printing, materials

It’s one of the basic facts of science: Heat something and it expands. But a team of US scientists has gone counterintuitive and invented a 3D-printed material that shrinks when heated. Developed as part of DARPA’s program to study materials with controlled microstructure architecture, the lightweight metamaterial exhibits what the researchers call “negative thermal expansion.”

Metamaterials are one of those things that come out of the lab with an air of enchantment about them. Basically, they’re made up of composite materials, like metals, plastics, or ceramics, engineered into repeating, microscopic structures. Depending on how these structures are designed, they can give the metamaterial properties that aren’t found in nature and may not even be derived from the source materials themselves.

The study by a team from the Lawrence Livermore National Laboratory’s (LLNL) Additive Manufacturing Initiative in partnership with the University of Southern California, MIT, and the University of California, Los Angeles, used a 3D printing process called projection microstereolithograpy to form a polymer and a polymer/copper composite into a highly complex 3D bi-material microlattice structure. To put it more simply, they printed a material made of two substances to form a pattern by printing out the polymer in a layer, cleaning the surface to avoid contamination, then printing the polymer/copper composite, then repeating.

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