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Showing posts with label 3D Printing. Show all posts
Showing posts with label 3D Printing. Show all posts

Saturday, May 27, 2023

Europe's First 3D-Printed School Takes Shape in Ukraine

 Europe's First 3D-Printed School Takes Shape in Ukraine

Radio Free Europe/Radio Free Liberty (Czech Republic)

May 25, 2023

Humanitarian group Team4UA organized the building of Europe's first three-dimensionally (3D)-printed primary school in the western Ukraine city Lviv, using technology from Danish 3D-printing construction company COBOD International. The school will combine 3D-printed spaces and manually built sections. Project organizers said one goal is to import several 3D printers and to incorporate the rubble of destroyed buildings into the concrete mix for the school. They hope the school becomes a template for building similar facilities across Ukraine as part of the massive reconstruction effort. The 3D-printed section of the school is scheduled to be completed by early June.  ... ' 

Sunday, May 21, 2023

Novel 3D Printing Method

New direction,new materials.

Novel 3D printing method a 'game changer' for discovery, manufacturing of new materials  by Karla Cruise, University of Notre Dame

The design strategy of HTCP. a, Schematic illustration of the combinatorial printing method based on in situ aerosol mixing. b, Orthogonal and parallel gradient printing design strategies, and corresponding printed gradient patterns using blue ink (food dye Blue 1) and red ink (rhodamine B), demonstrating a compositional–modulation feature. c, Optical microscopy images showing the impact of aerosol ink flow rate on the deposited materials. Scale bar, 100 µm. d, Printed material thickness versus flow rate of various inks (polystyrene, AgNW, graphene and Bi2Te3). Error bars represent s.d. from four experimental replicates. sccm, standard cubic centimeters per minute. Credit: Nature (2023). DOI: 10.1038/s41586-023-05898-9

The time-honored Edisonian trial-and-error process of discovery is slow and labor-intensive. This hampers the development of urgently needed new technologies for clean energy and environmental sustainability, as well as for electronics and biomedical devices.

"It usually takes 10 to 20 years to discover a new material," said Yanliang Zhang, associate professor of aerospace and mechanical engineering at the University of Notre Dame.

"I thought if we could shorten that time to less than a year—or even a few months—it would be a game changer for the discovery and manufacturing of new materials."

Now Zhang has done just that, creating a novel 3D printing method that produces materials in ways that conventional manufacturing can't match. The new process mixes multiple aerosolized nanomaterial inks in a single printing nozzle, varying the ink mixing ratio on the fly during the printing process. This method—called high-throughput combinatorial printing (HTCP)—controls both the printed materials' 3D architectures and local compositions and produces materials with gradient compositions and properties at microscale spatial resolution.

His research was just published in Nature.

The aerosol-based HTCP is extremely versatile and applicable to a broad range of metals, semiconductors and dielectrics, as well as polymers and biomaterials. It generates combinational materials that function as "libraries," each containing thousands of unique compositions.

Combining combinational materials printing and high-throughput characterization can significantly accelerate materials discovery, Zhang said. His team has already used this approach to identify a semiconductor material with superior thermoelectric properties, a promising discovery for energy harvesting and cooling applications.

In addition to speeding up discovery, HTCP produces functionally graded materials that gradually transition from stiff to soft. This makes them particularly useful in biomedical applications that need to bridge between soft body tissues and stiff wearable and implantable devices

In the next phase of research, Zhang and the students in his Advanced Manufacturing and Energy Lab plan to apply machine learning and artificial intelligence-guided strategies to the data-rich nature of HTCP in order to accelerate the discovery and development of a broad range of materials.  ... ' 

Saturday, February 25, 2023

How Digital Twins Could Protect Manufacturers from Cyberattacks

 More on Twins for Security.

How Digital Twins Could Protect Manufacturers from Cyberattacks

NIST News, February 23, 2023

At the U.S. National Institute of Standards and Technology and the University of Michigan, researchers have combined digital twin technology, machine learning, and human expertise into a cybersecurity framework for manufacturers. The researchers constructed a digital twin to mimic a three-dimensional (3D)-printing process, supplemented with information from a real 3D printer. Pattern-recognizing models monitored and analyzed continuous data streams computed by the digital twin as the printer created a part, then the researchers introduced various anomalies. The programs handed each detected irregularity to another computer model to check against known issues, for classification as expected anomalies or potential cyberthreats; a human expert made the final determination. The team found the framework could correctly differentiate cyberattacks from normal anomalies.

Full Article  

Friday, February 24, 2023

3D Heart Replica

Uses include individual study, for diagnosis and planning care.

3D-Printed Heart Replicas Look, Pump Like the Real Thing, By MIT News, February 24, 2023

A doctor holds a custom-made robotic heart.

MIT engineers are hoping to help doctors tailor treatments to patients’ specific heart form and function, with a custom robotic heart. Physicists at the Massachusetts Institute of Technology (MIT) led a team that developed a procedure to enable the creation of three-dimensionally (3D) printed replicas of patients’ hearts.

After converting medical images of a patient's heart into a 3D computer model, the researchers used a polymer-based ink to 3D-print a flexible shell identical to the patient's heart.

The researchers developed sleeves that may be wrapped around a 3D-printed heart and aorta to replicate a patient's blood-pumping ability.  Said graduate student Luca Rosalia, "The advantage of our system is that we can recreate not just the form of a patient's heart, but also its function in both physiology and disease."

From MIT News

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Thursday, February 23, 2023

3D Human Printed Organs

Printing Organs to be common soon? 

3D-Printed Organs May Soon Be a Reality

By Fortune, February 17, 2023

Multilayered skin, bones, muscle structures, blood vessels, retinal tissue and even mini-organs all have been 3D printed. None are approved for human use. 

Wake Forest University scientists are 3D-printing tissues and mini-organs that mimic some of the functional properties of natural human tissues.

Progress is being made in the development of three-dimensionally (3D)-bioprinted organs, with Tal Dvir at Israel's Tel Aviv University anticipating transplantation-viable organs to become available in a decade.

Milestones to date have included Poland-based researchers’ bioprinting of a functional prototype of a pancreas that realized stable blood flow in pigs, and U.S.-based United Therapeutics’ 3D-printing of a human lung scaffold.

Stanford University's Mark Skylar Scott said, "The ability to place different cell types in precise locations to build up a complex tissue, and the capability of integrating blood vessels that can deliver the necessary oxygen and nutrients to keep cells alive, are two [3D] techniques that are revolutionizing tissue engineering."

From Fortune

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Wednesday, February 15, 2023

3D-Printed Models Help Preserve Endangered Languages

Quite surprising work.  Can you 3D Print Languages to preserve them?  

Researchers' 3D-Printed Models Help Preserve Endangered Languages

Interesting Engineering, Nergis Firtina, February 10, 2023

Researchers at the U.K.'s University College London (UCL) have leveraged three-dimensional (3D) printing to preserve ancient and endangered languages. Their method of producing 3D-printed objects is based on language patterns and syntax, with a focus on the evidential grammatical system. The researchers concentrated on the Amazonian language Tariana, in which speakers must explain the type of evidence being transmitted, with a hierarchy ranging from direct observation to information repeated from another person. To create a 3D shape, the researchers plotted the numerical values derived from evidential on the Z axis, the number of syllables on the Y axis, and the timeline on the X axis. Said UCL's Alex Pillen, "By producing the geometry of grammar in 3D, we allow people to have an immediate intuitive relationship to these languages that are under threat — or that might disappear." .... 

Thursday, January 05, 2023

Novel 3D Printing Method to Fabricate Metal-Plastic Composite Structures

 Metal-Plastic composites ...

Novel 3D Printing Method to Fabricate Metal-Plastic Composite Structures

Waseda University (Japan), November 30, 2022

A new multimaterial digital light processing three-dimensional printing (MM-DLP3DP) technique developed by scientists in Japan and Singapore can manufacture complex metal-plastic composite structures. The process starts by adding palladium ions to light-cured resins to prepare active precursors for the three-dimensional (3D) printing process that promote electroless plating (ELP), in order to form a metal coating. The MM-DL3DP apparatus then fabricates microstructures containing nested areas of the resin or the active precursor. These materials are directly plated, with 3D metal patterns added through ELP. The process allows the deposition and precise control of highly specific metal patterns on the composite structures. ... ' 

Friday, December 23, 2022

Process Allows 3D Printing of Microscale Metallic Parts

Aimed at very small parts.

Process Allows 3D Printing of Microscale Metallic Parts

California Institute of Technology

Robert Perkins, November 30, 2022

California Institute of Technology engineers have three-dimensionally (3D)-printed pure multicomponent metals at an order of magnitude smaller than previously achieved. The technique forgoes writing metals directly in favor of printing a hydrogel as a scaffold for metal-impregnated liquid precursors. Light from a low-powered ultraviolet lamp causes liquid polymers to harden, which when patterned can create desired microscopic shapes. The researchers infuse metal salts dissolved in water into the hydrogel scaffolds, then burn away the hydrogel portion to leave the metal intact. The heat causes shrinkage, enabling the researchers to 3D-print metal alloys and multicomponent metallic systems about 40 microns in size. ...'

Thursday, December 22, 2022

Microscale 3D Printer for Multi-Level Anticounterfeiting Labels

Counterfeiting often a big deal in retail.

 Microscale 3D Printer for Multi-Level Anticounterfeiting Labels

University of Hong Kong, December 13, 2022

University of Hong Kong (HKU) engineers designed a microscale three-dimensional (3D) printing method for fabricating anticounterfeiting labels that can encrypt more digital data than two-dimensional labels. HKU's Jihyuk Yang said the researchers used diphenylalanine (FF) as the encryption medium because of its piezoelectrical and optical birefringence properties. HKU's Ji Tae Kim said the methodology integrates with molecular self-assembly to "print multi-segmented 3D FF micro-pixels with programmed crystallinity for high-density data encryption. By utilizing different responses of the amorphous and crystalline segments to polarized light, a tiny single 3D pixel can encrypt a multi-digit binary code consisting of '0' and '1.'"  ... ' 

Friday, December 09, 2022

Personalized Finger Joint Implants from a 3D Printer

 From Fraunhofer

Personalized Finger Joint Implants from a 3D Printer

Fraunhofer-Gesellschaft (Germany)

December 1, 2022

Germany's FingerKIt consortium uses artificial intelligence (AI) to three-dimensionally (3D)-print personalized finger joint implants to replace an individual’s diseased or injured joints. FingerKit combines the expertise of five institutes in Germany’s Fraunhofer-Gesellschaft research organization to produce implants from metallic or ceramic materials. AI-based software converts two-dimensional X-rays into 3D models of finger bones and fixes any malposition. Researchers then employ AI to extrapolate individual implant designs from the finger model, which is 3D-printed via metal binder jetting and sintering. The researchers initially calculated that this process could potentially save up to 60% of the time typically required for the process, from identifying the need for an implant to fitting it in the patient.

Friday, December 02, 2022

Would You Like a QR Code in That Cookie? Food and 3D Printing

Waste Reduction embedded, 3D printed.

Would You Like a QR Code in That Cookie?  By AlphaGalileo, October 19, 2022

Given that food tags and packaging are a large source of waste worldwide, this new method of embedding edible information into food also will be important for waste reduction.

A three-dimensional (3D) printing method developed by scientists at Japan's Osaka University can embed edible quick response (QR) codes inside food.

"Many foods can now be produced using 3D printers," explained Osaka University's Yamato Miyatake.

"We realized that the insides of edible objects such as cookies could be printed to contain patterns of empty spaces so that, when you shine a light from behind the cookie, a QR code becomes visible and can be read using a cellphone."

The "interiqr" technique produces a QR tag made from the cookie itself, keeping taste, flavor, and outward appearance intact.

From AlphaGalileo

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Tuesday, November 15, 2022

Lego and 3D Printing

Would like to see more.   Demonstrating a future.  

 Lego Animated 3D-Printed Duck is a Peek at the Toy's Future

in Gizmodo, Andrew Liszewski, November 7, 2022

Lego is offering visitors to the Minifigure Factory experience at the Lego House in Billund, Denmark, the chance to buy a limited-edition red plastic duck produced using the selective laser sintering (SLS) process. The duck, which sells for 89 Danish Krone (about US$12), is a replica of a wooden toy duck created by Lego founder Ole Kirk Kristiansen. The SLS three-dimensional (3D) printing process creates models layer by layer by heating and melting a powdered material, allowing functional mechanical elements to be placed within the toy during its manufacture. Lego's goal is for 3D printing to allow it to offer a wider range of building elements.   ... '

Friday, October 28, 2022

Batteries Could be 3D Printed

 Evolving battery tech

The future of solid-state batteries could be 3D-printed  in TheVerge

That means batteries could have customized shapes

By LIZZIE PHILIP, Oct 28, 2022, 9:00 AM  

The race to create a solid-state battery that could compete with today’s lithium-ion cells is heating up. Lithium-ion batteries are everywhere: in your phone, car, camera, and more. Since their debut in the 1990s, they’ve become a leader in energy storage. But they have one major flaw: safety. Lithium-ion batteries have a tendency to catch fire, especially when damaged or at high temperatures.

Solid-state batteries replace a flammable liquid electrolyte in lithium-ion batteries with a more stable solid one. They also could have more power, faster charging, and a longer lifespan. Right now, lots of startups are trying to get their first batteries out of the lab and into a factory and hope to prove that solid-state batteries can be commercially viable. 

One of those companies is California-based startup Sakuu, and it’s taking on an even bigger task: 3D-printing these next-gen batteries. Sakuu claims that 3D printing allows it to fit more battery layers in the same amount of space, boosting the capacity of its batteries compared to those made by traditional manufacturing. In theory, the batteries could take on more customized shapes, which could change how batteries are integrated into product design. But the company has yet to 3D-print a full battery using its prototype. Check out our video to learn more about how this new technology could reinvent the way batteries  ... ' 

Thursday, October 06, 2022

First 3D Printed Multi Story Home

New directions for efficient assembly become possible

 First Multi-Story 3D-Printed Home Blends Concrete, Wood

Cornell University Chronicle

James Dean, September 14, 2022

Researchers at Cornell University, PERI 3D Construction, contractor CIVE, and other building industry partners are participating in the three-dimensional (3D)-printing of a two-story, single-family home in Houston. The design mixes elements fabricated from 3D-printed concrete with wood framing and minimizes waste, creating structures that are efficient, resilient against weather, and potentially less expensive than homes bult in more traditional ways. The researchers said the construction processes can be scaled up to produce multifamily and mixed-use developments. Said Cornell's Sasa Zivkovic, "Apart from printing technology, the integration of printing with building design and building materials, and the streamlining of construction process are important aspects in the realization of such a project." ... ' 

Thursday, September 15, 2022

3D-Printed Surfaces Inspired by Nature

Interesting idea, biomimicry directly linked to 3D Printing, then back to human needs.  How deep can this go? 

 3D-Printed Surfaces Inspired by Nature

Ruhr-Universität Bochum (Germany)

Meike Drießen, September 12, 2022

Scientists at Germany's Ruhr-Universität Bochum and Kiel University three-dimensionally (3D)-printed surfaces that mimic the color of blue Morpho butterflies via two-photon polymerization (2PP). The 2PP laser-based printing technology allows 3D processing of photosensitive resins, enabling the generation of complex structures from virtual computer models without the need for support structures. The technology also facilitates high resolution, because single structural features can measure as small as 100 nanometers (billionths of a meter). The researchers produced hierarchically composed micro- and nanometer-scale structures, and the resulting surfaces emulated the butterflies' blue iridescence. ...'

Wednesday, September 14, 2022

Researchers Develop 3D-Printed Artificial Cornea

The Hindu (India)
August 15, 2022

Indian scientists three-dimensionally (3D)-printed an artificial cornea and transplanted it into the eye of a rabbit. The device uses human donor corneal tissue, and the researchers said it contains no synthetics or animal residues. Each donor cornea can be used to produce three 3D-printed corneas, which can be fabricated in diameters ranging from 3 millimeters (mm) to 13 mm, and can be customized to the patient's specifications. Lead researchers Sayan Basu and Vivek Singh of the LV Prasad Eye Institute said in a statement, "The bio-ink used to make this 3D-printed cornea can be sight-saving for army personnel at the site of injury to seal the corneal perforation and prevent infection during war-related injuries or in a remote area with no tertiary eye care facility."  .... 

Monday, September 12, 2022

Algorithm Learns to Correct 3D Printing Errors

 Seems a very useful capability. 

Algorithm Learns to Correct 3D Printing Errors

University of Cambridge (U.K.)

August 16, 2022

An algorithm developed by researchers at the U.K.'s University of Cambridge can be added to new or existing three-dimensional (3D) printers to enable real-time error detection and correction across different materials and printing systems. The Deep Learning computer vision model was trained with about 950,000 images from the production of 192 printed objects, with labels detailing the printer's speed, nozzle temperature, and flow rate, among other settings. Said University of Cambridge's Sebastian Pattinson, "Once trained, the algorithm can figure out just by looking at an image which setting is correct and which is wrong; is a particular setting too high or too low, for example, and then apply the appropriate correction. And the cool thing is that printers that use this approach could be continuously gathering data, so the algorithm could be continually improving as well." ... 

Saturday, September 03, 2022

3D Artificial Pneumatic Muscles

Robotic applications

 3D Artificial Pneumatic Muscles for Future 'Makers'

IIT - Italian Institute of Technology, August 30, 2022

Researchers at Italy's Istituto Italiano di Tecnologia (the Italian Institute of Technology, IIT) and the Scuola Superiore Sant'Anna (the Sant'Anna School of Advanced Studies) have developed artificial pneumatic muscles that can be produced using three-dimensional (3D) printers. The researchers demonstrated a pneumatic hand made of 18 GRACE (GeometRy-based Actuators able to Contract and Elongate) actuators shaped like a spindle with pleats, allowing them to expand, extend, and contract with little pressure. Said IIT's Corrado De Pascali, "Their size is limited purely by the manufacturing technology used. They can be built in different sizes, and we can vary their performance, both in terms of deformation and strength, and manufacture them using various materials and technology, even already built into the structures to be fabricated."

3D Printing Process Faster, More Precise Than Conventional Methods

 Seems complex, but perhaps a game changer for 3D printing. 

3D Printing Process Faster, More Precise Than Conventional Methods

Rutgers Today

Greg Bruno, August 1, 2022

The Multiplexed Fused Filament Fabrication (MF3) method developed by Rutgers University researchers could be used to three-dimensionally (3D)-print large, complex parts at a fraction of the cost of current techniques. MF3 uses a 3D printer's sliding structure or gantry arm to print individual or multiple parts at the same time. The researchers programmed the prototype with slicer software that maps objects into virtual slices and optimizes gantry arm movements for maximum efficiency, while an array of small nozzles, rather than one large nozzle, deposits molten material. The researchers said the new process boosts printing resolution while reducing the time required for printing. Rutgers' Jeremy Cleeman said MF3 "could be a game changer” for the 3D-printing industry....   

Wednesday, August 31, 2022

3D Printable Bioelectronic Inks

Researchers Design Inks for 3D-Printable Wearable Bioelectronics, By Texas A&M University Engineering,   August 25, 2022

A new class of biomaterial inks developed by researchers at Texas A&M University exhibit the same characteristics as highly conductive human tissue like skin, making them useful for three-dimensionally (3D) printed wearable bioelectronics.

The ink uses molybdenum disulfide (MoS2), a two-dimensional (2D) nanomaterial that can be combined with modified gelatin to create a flexible hydrogel.

The researchers developed a customizable, multi-head 3D bioprinter to 3D-print the ink. The 3D-printed hydrogel ink is electrically conductive and can be used to make complex 3D circuits.

The researchers said it will allow for bioelectronics that can be customized for an individual patient's needs.

Said Texas A&M's Kaivalya Deo, "These 3D-printed devices are extremely elastomeric and can be compressed, bent, or twisted without breaking. In addition, these devices are electronically active, enabling them to monitor dynamic human motion and paving the way for continuous motion monitoring."

From Texas A&M University Engineering

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