"The thermal debinding-sintering process plays an essential role in the context of material extrusion-based additive...
filamet
Characterization of Radiation Shielding Capabilities of High Concentration PLA-W Composite for 3D Printing of Radiation Therapy Collimators
"This work evaluates the radiation shielding capabilities of the PLA-W composite for MV energy photons emitted by a...
A Design Strategy for Removing the Debinding and Sintering Gas in Additive Manufactured Samples of a Bronze/Polylactic Acid Filament
"To lower the cost of additive manufacturing of metallic components, the goal of this work is to investigate and...
Bambu Lab Auto Calibration
Simplifying Metal 3D Printing: Bambu Lab's Flow Dynamics Calibration Revolutionizes Filamet™ Metal 3D Printing The...
Revolutionizing Metal 3D Printing
In the dynamic world of 3D printing, metal fabrication has long been confined to the realm of large-scale industrial operations, with exorbitant costs and intricate processes hindering its widespread adoption. However, The Virtual Foundry has emerged as a transformative force, democratizing metal 3D printing and making it accessible to a vast spectrum of users, from researchers and students to hobbyists and entrepreneurs.
UNR Aerospace Club
The University of Nevada, Reno Aerospace Club is using FFF Metal by The Virtual Foundry to build a solid rocket motor....
What’s the Biggest Part I Can Make with FFF Metal?
Hello Partner Innovators! One of the questions you regularly ask us is: What's the biggest part I can make with FFF...
Printing Filamet™ with Ultimaker: Tips and Setup
Imagine combining the versatility of PLA with the strength and allure of metal, glass, or ceramic. Filamet™ 3D...
Getting Started with Filamet™: Tips for Debinding and Sintering Metal Filament
Introduction: 3D printing technology has revolutionized the manufacturing industry, allowing for the creation of...
The Virtual Foundry invented #FFFmetal/Bound Metal/Metal Filament 3D Printing in 2014
The Virtual Foundry invented #FFFmetal
