Mostrando entradas con la etiqueta America Makes. Mostrar todas las entradas
Mostrando entradas con la etiqueta America Makes. Mostrar todas las entradas

domingo, 30 de octubre de 2022

AMERICA MAKES: el DESAFIO de la CASA BLANCA


America Makes -principal asociación público-privada norteamericana para el desarrollo de la fabricación aditiva- ha celebrado su evento anual Technical Review & Exchange (TRX) del 18 al 19 de octubre en la University of Alabama in Huntsville.

El evento brindó a los asistentes la oportunidad de compartir contenido a un nivel profundo y conocer los proyectos actuales que están ayudando a avanzar en el desarrollo de la manufactura aditiva. Entre los ponentes estuvieron importantes figuras del AFRL, la MDA y la NASA.

la University of Alabama in Huntsville está considerada como el principal centro de fabricación del Pentágono en el estado de Alabama, y por ello no fue de extrañar que asistiesen varios funcionarios gubernamentales de alto nivel para debatir sobre los desafíos del ejército para adoptar la fabricación aditiva, aportando algunas presentaciones muy interesantes acerca de ciertas aplicaciones, tales como:

  • Fabricación aditiva de boquillas Mach
  • Fabricación aditiva para enfriadores de aceite híbridos
  • Fabricación aditiva de componentes para motores de cohetes

En esta edición del TRX los organizadores optaron por un formato más conversacional y flexible que en ediciones anteriores, lo cual permitió a los asistentes interactuar de manera más fluida con los presentadores.


sábado, 12 de septiembre de 2015

Raytheon to focus on Additive Manufacturing


“When we print something, we have fewer piece parts, so our supply chain becomes simpler, our development cycles are shorted and we can get a lot more complex with our design because we can print angles that we can’t machine into metal.” says Leah Hull, Additive Manufacturing manager for Raytheon.


Engineers at the Raytheon University of Massachusetts Lowell Research Institute are exploring the use of Additive Manufacturing to lay down conductive materials for electrical circuits, create housings for the company's revolutionary gallium nitride transmitters, fabricate fins for guided artillery shells, and building blocks of sophisticated radars used in products like Raytheon’s Patriot air and missile defense system.


¿What is actually envisioning Raytheon? In words of Jeremy Danforth, a Raytheon engineer who has printed working rocket motors, “Machines making machines. That’s the vision.” and for Dr. Teresa Clement, a Raytheon materials expert who also serves as the chair of the executive committee of America Makes, an initiative of the National Additive Manufacturing Innovation Institute, “Additive Manufacturing allows us to perform rapid changes because engineers only need change the digital model representing the part."



Researchers at Raytheon Missile Systems say they have already created nearly every component of a guided weapon using additive manufacturing. But, ¿Could soldiers someday print and assemble missiles on the spot, in the same way that artillery crews custom-load their rounds or weapons handlers mount guidance kits on some types of bombs? For Chris McCarroll, Raytheon director for the Massachusetts Lowell Research Institute, "that's still a ways off."


The process may reduce costs associated with traditional manufacturing, such as machining of parts, so the company is pushing into additive manufacturing and 3-D printing, including projects meant to supplement traditional manufacturing processes. “There’s currently a hierarchy in our manufacturing. We make the structures, the housings, the circuit cards, with the right materials, and then we integrate them into a system,” says McCarroll. “What we see in the near future is printing the electronics and printing the structures, but still integrating. Eventually, we want to print everything together.  An integrated system.”


Thanks to high-end 3D Production Systems, Raytheon researchers have yet created nearly every component of a guided weapon using 3-D printing, including rocket engines, fins, parts for the guidance and control systems, and more. “You can design internal features that might be impossible to machine,” says Raytheon engineer Travis Mayberry, who is researching future uses of additive manufacturing and 3-D printing. “We’re trying new designs for thermal improvements and lightweight structures, things we couldn’t achieve with any other manufacturing method.”




jueves, 3 de septiembre de 2015

Defense Industry experts to discuss about Additive Manufacturing


Led by Association for Manufacturing Technology (AMT) the panel discussion “Keys to Increase Industrial Additive Manufacturing Adoption” will include Senvol’s Zach Simkin; Eric Barnes, Northrop Grumman; America Makes’s Rob Gorham and Tim Armstrong from Carpenter TechnologiesThis  keynote panel discussion will conclude the Additive Manufacturing Conference’s opening day, which will include technical sessions, a grand reception and networking events taking place in the AMC exhibit room.