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

Wednesday, March 5, 2025

3D printing is an environmentally friendly way to produce things.


"3D printing enhances microbial electrochemical systems by optimizing reactor and electrode design, improving efficiency in wastewater treatment and renewable energy. Credit: Mingyi Xu, Miriam Fernandez-Avila Cobo, Danfei Zeng, Yifeng Zhang" (ScitechDaily, How 3D Printing Is Powering a Cleaner Environment in the Future)

3D printing uses less raw material than regular manufacturing methods. That saves nature and mineral resources. Material waste in 3D printing systems is minimal. If we compare it with traditional manufacturing methods. The 3D printing systems are universal tools that can transform 3D CAD images into physical things. That makes the 3D printer a superior and fundamental tool for CAD/CAM (Computer Aided Design/ Computer Aided Manufacturing) technology. 

The 3D printer creates sharper structures than regular casting. The system can make sharp structures. And then. It can use everything that is not used or removed in the finishing stage. When the finishing system makes the finishing process and removes roughness. The system can collect those materials and then melt them. 

3D printers and laser systems are the ultimate tools. They can make very sharp structures without material losses. The printer system can operate in the vacuum chamber and those systems can use AI-controlled scanners, holograms, with other things to make things with ultimate accuracy. The laser scanners can see even the smallest details on those structures. Ans highly accurate laser systems can also remove roughness. And non-controlled artifacts from things that the laser system uses. 

https://scitechdaily.com/how-3d-printing-is-powering-a-cleaner-environment-in-the-future/

Saturday, March 1, 2025

AI computers, nanoantennas, and holograms are tools that can revolutionize manufacturing.



That would raise the sales of the microchips. And that's why that is the goal for the microchip producers. Those new PCs require lots of new microchips. The new AI PCs can run more powerful and effective programs. That makes them powerful tools in the hands of hackers. 

The prediction is that AI-based computers will soon be standard. New and effective microchips and memory controls allow the system to run more complicated code than before. The new systems can also enhance data security. But the same systems can also find vulnerabilities in the old-time systems. The new and effective computers are tools, that can revolutionize things, like graphics, system handling, interfaces, and many other things. 

These kinds of computers are things. That will revolutionize computing and nanotechnology sooner than we even expect. The nanomachines that can transport sensors to the desired positions in the body can make a revolution in neurology. And maybe in the future things like neuro implants will inject into people's bodies. Then nanotechnology transports them into the right positions. 


"The principle of this work is demonstrated by using a laser to levitate nanoparticles and make them carry an electric charge to become an antenna that receives an external electric field containing a communication signal. Credit: Adapted from Zhenhai Fu / Zhejiang Lab, China, edited." (ScitechDaily, 10,000x Smaller: Tiny Nano-Antenna Could Revolutionize Wireless Tech)


The tiny nano-antenna can revolutionize wireless technology. It can make new, powerful multi-band transmitters possible. Those transmitter-receivers can handle thousands of frequencies. And that is a great advance for portable technology. Those tiny nano-size antennas can also operate in the nano-size robots to transmit. 

And receive information. The nano-size antennas can also operate with nanotechnical systems that can put those antennas between axons. And those new types of systems can hear signals that travel in the nervous system. The new antennas that nanotechnology can put their position can make. 

A new type of singularity with living nervous systems and robots is possible. Nanotechnology can slip those antennas into the bodies of natural animals. And maybe quite soon we can see and hear what those animals hear and see. The knowledge of the nervous signals increases all the time. That means the systems can decode nervous signals in new ways. The singularity is the ultimate version of the user interface. In those systems robots and humans are combinations. 



"The method allows the fabrication of millimeter-scale objects within seconds. Credit: © LAPD EPFL" (ScitechDaily, Holograms Take 3D Printing to the Next Level – With Amazing Precision and Speed)

But antennas are not the only things that advancing all the time. The nano-antennas can give revolutionary information. But new AI computers. And new algorithms and AI-based systems can make new types of intelligent, network-based data analysis possible. The idea in those systems is that if they cannot solve problems in a certain time, they call more systems into the neural network to solve problems. 

The highly advanced AI is the tool that can make the new computer-aided design CAD, and computer-aided manufacturing CAM tools possible. The AI can remove errors from the product automatically. And the holograms are making it more effective. The infrared hologram can be used to remove things like scratches from the plastic layers. Or maybe if the IR's temperature is high enough, that lightsaber can remove roughness even from the metal surfaces. The hologram can also used to test what some products like furniture can look like in some rooms. 

Highly advanced computing is a tool for material research. It is a tool for holographic-support 3D printing. In those systems, the developer makes the 3D CAD image for the system. The system makes holograms of the object. Then the developer can check the measures and dimensions of the object. The hologram tells does the object fits into its place. 

The system uses holograms to model things. And then the 3D printing system follows the hologram and fits the model into the hologram. The hologram's shape helps the system make a sharp 3D model by using the printer. The 3D printers can use holograms to test how the part that the system makes fits into the place. Then the system can use AI to fix the diameters and other things. 


 https://www.freethink.com/consumer-tech/ai-pcs


https://scitechdaily.com/10000x-smaller-tiny-nano-antenna-could-revolutionize-wireless-tech/


https://scitechdaily.com/holograms-take-3d-printing-to-the-next-level-with-amazing-precision-and-speed/

Sunday, December 29, 2024

The Chinese military has started to use 3D printing drones.


"China’s People’s Liberation Army (PLA) is testing a system aided by 3D printing and drone deliveries to help the forces repair their equipment in remote locations or during wartime. The PLA is potentially testing this capability."(Interesting Engineering/China combines 3D printing and drones to support troops in combat zones)

"According to the reports, the testing was carried out by a brigade belonging to the PLA’s Northern Theatre Command Air Force." (Interesting Engineering/China combines 3D printing and drones to support troops in combat zones)

This comes just months after the United States Army tried to get this capability and demonstrate it on the front lines.

The 3D printing drones are tools that can make repairings for damaged tools. Those systems can theoretically form any physical form. The drones require only drawings that they should follow. They can make even ships and large-scale structures. 

The 3D printing technology. Along with AI and remote control printers. 

The remote-printing tools can give civil and military users new types of flexibility. The smaller 3D printing system can be mounted in the truck.

And it can create things like drones if it has the microchips for those systems. The high-temperature system can use carbage metals or plastic carbage for the spare parts of the damaged drones. 

The system can create propellers and other parts by using waste. The system melts the waste and then transforms it into the wire, that the 3D system uses. And then. Those systems can create anything that the military needs. The system can melt metals using lasers or some microwave systems, and those tools can be more effective than nobody realizes. 

The air bubbles in the system make those machine parts and other types of 3D-printed items weak. The vacuum workspace and other kinds of things that deny the gas impact on the machine parts remove those bubbles. 


(SCMP.com/ China’s military tests remote 3D printed parts and drone delivery for battlefield: report)


(Interesting Engineering/China combines 3D printing and drones to support troops in combat zones)


The system can use lasers and high-power 3D X- or gamma-ray scanners to search the material errors. The centrifugal sling can separate those raw materials. And the shape of those AI-controlled highly advanced factories can be like a group of containers. Those 3D printing factories can be the systems that emulate living cells and form anything that the users want. 

And spectroscopes to remove artifacts from the raw materials. That allows those systems to create things like guns and other things. Like jet engine spare parts on the battlefield. The 3D printer requires the drawings and material lists from the central computers. 

If there are suitable melting systems and drones those kinds of systems can collect needed materials from their environment. And then. That 3D printing system can create needed things by following orders that the system operators give. This kind of manufacturing system is the most advanced in the world. 

The flexibility is the reason why those systems are planned to be used in space programs. Space drones, or highly maneuverable systems can fix damaged satellites and space stations. 

The space drone is the system there propellers of the regular drones are replaced with rocket engines. Or there can be the rocket. There is a platform that can aim the rocket jet to the sides of the chamber. And when the system inclines that platform it can turn the rocket jet in the wanted direction. That kind of rocket can give orbital drones very accurate movement. 


https://interestingengineering.com/military/china-pla-3d-printing-drone


https://www.scmp.com/news/china/military/article/3292338/chinas-military-tests-remote-3d-printed-parts-and-drone-delivery-battlefield-report


Astronomers could have a model for why photons from GRB 221009A were at a high energy level.

"An illustration shows a photon from the biggest cosmic explosion since the Big Bang reaching Earth. (Image credit: Robert Lea (created...