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Archive for the ‘3D printing’ category: Page 88

May 27, 2017

NASA seeks proposals for a Fab Lab in space to take humans beyond the moon

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

Equipped with 3D printers, CNC machines, computers, digital tools and other equipment, a fabrication laboratory, otherwise known as a Fab Lab, is a facility set up to enable people to ‘make anything’. In a bid to provide these capabilities to missions for deep-space exploration, NASA are accepting FabLab proposals from corporate, institutional and charitable teams in the private-sector, due to be reviewed late 2017.

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May 21, 2017

Cytosurge FluidFM µ3Dprinter is world’s first sub-micron metal 3D printer

Posted by in category: 3D printing

Major advancement in 3D printing:


Cytosurge AG, based in Zurich Switzerland, presents their revolutionary FluidFM µ3Dprinter which is world’s first 3D sub-micron direct metal printing machine.

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May 17, 2017

3D Printed Medical Implants That Fit the Body Perfectly Are on the Way

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

Bioprinting new organs and tissues could make transplants available and affordable for all, but is still decades away. In the meantime, scientists have re-purposed the technology to 3D print biocompatible high-precision silicone implants instead.

Soft materials like biological material or silicone are difficult to 3D print because they can’t support themselves like the more rigid plastics typically used by 3D printers. In 2015, Tommy Angelini’s lab at the University of Florida developed a new way of 3D printing soft materials by injecting them into a granular gel similar to hand sanitizer that supports them as they are deposited.

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May 17, 2017

A bioprosthetic ovary created using 3D printed microporous scaffolds restores ovarian function in sterilized mice

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

3D printed ovaries restore fertility to mice. Another step towards more complex organs.


There is a clinical need to develop a bioengineering system to support ovary transplantation. Here, the authors generate a bioprosthetic ovary using 3D printed scaffolds of varying pore architectures to support follicle survival and ovarian function in sterilized mice.

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May 16, 2017

3D Printed multilayer circuit boards using nanomaterial inks

Posted by in categories: 3D printing, nanotechnology

Nano Dimension (NASDAQ, TASE: NNDM) is focused on the research and development of advanced 3D printed electronics, including a 3D printer for multilayer printed circuit boards, and the development of nanotechnology-based conductive and dielectric inks, which are complementary products for 3D printers.

Nextbigfuture interviewed Amit Dror, CEO and cofounder of Nano Dimension. Amit is a project leader with extensive experience in company and account management.

Nano Dimension’s novel and proprietary technologies enable the use of conductive and dielectric inks for ultra-rapid prototyping of complex, high-performance multilayer circuit boards. The company’s PCB 3D printer is the result of combining advanced breakthroughs in inkjet technology, 3D printing and nanotechnology.

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May 16, 2017

Printing of electronics will get faster and be capable of making more complex products

Posted by in categories: 3D printing, materials

Simon Fried, Nano Dimension CBO, describes the next five years of industrial 3D printing. It will be meeting more needs. In mechanical terms, that means 3D printing will use a broader range of materials or a higher quality of materials.

We also expect greater flexibility in combining materials – creating objects made of different types of metals, for instance, within the same print. Or printing metals and polymers, or metals and ceramics in one print job. With that capability, for instance, companies can begin deploying addition functionality within parts, such as electrical capabilities to mechanical objects. That’s the case with Nano Dimension, where polymers and metals are printed together with a very specific functional goal. Down the road, this capability will bring about stronger, smarter and more functional final products.

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May 16, 2017

New 3D-printing method may allow for fast, low-cost, more-flexible medical implants for millions

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

University of Florida (UF) researchers have developed a method for 3D printing soft-silicone medical implants that are stronger, quicker, less expensive, more flexible, and more comfortable than the implants currently available. That should be good news for the millions of people every year who need medical devices implanted.

Model 3D-printed silicone trachea implant (credit: University of Florida)

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May 11, 2017

3D Printing the Way to Bionic Humans

Posted by in categories: 3D printing, biotech/medical, cyborgs, health, transhumanism, wearables

A pressure sensor printed directly on a hand is a step toward new biomedical devices, “on the fly” wearable technology, and more…


(Inside Science) — Wearable technology may soon be at your fingertips — literally. Researchers have developed a pressure sensor that can be 3D printed directly on your hand. The device, sensitive enough to feel a beating pulse, is made from soft, stretchy silicone that conforms to the curves of your fingertip.

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May 10, 2017

3D Printing Could Replace Plaster Casts

Posted by in category: 3D printing

3D printing could put an end to annoying plaster casts.

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May 3, 2017

3D Printing The Next Five Years

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

This is a guest post in our series looking at the future of 3D Printing. To celebrate 5 years of reporting on the 3D printing industry, we’ve invited industry leaders and 3D printing experts to give us their perspective and predictions for the next 5 years and insight into trends in additive manufacturing.

Brian O’Connor is Vice President, Production Operations at Lockheed Martin Space Systems. Lockheed Martin is a global security and aerospace company that employs approximately 97,000 people worldwide and is principally engaged in the research, design, development, manufacture, integration and sustainment of advanced technology systems, products and services.

How lockheed martin is printing the path to mars by brian o’connor.

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