Much like baking the perfect cake involves following a list of ingredients and instructions, manufacturing energetic materials—explosives,...
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Maroc - TECHXPLORE.COM - RSS news feed - 09/Feb 19:48
A research team has used advanced 3D printing techniques to develop low-temperature, "sinterless" silica glass. They converted 3D-printed objects into silica glass structures at significantly lower temperatures than traditional sintering, offering a promising route for efficient and precise glass manufacturing. Their research is published in the journal Polymers.
Much like baking the perfect cake involves following a list of ingredients and instructions, manufacturing energetic materials—explosives,...
National Taiwan University researchers have developed an ultrahigh-solid-loading (83 vol%) yet highly flowable suspension for 3D printing that...
bmedlinkAI-supported mammography/medlink is not only safer but significantly more efficient than traditional techniques/b, based on findings of
Global 3D Printing Medical Devices Market Overview The global 3D printing medical devices market is poised for strong expansion, projected to grow at...
The plastic bottle you toss into the recycling bin today might one day help hold up the floor of a house. Engineers at MIT are developing a new way to...
A new 3D printing method, called Crystallinity Regulation in Additive Fabrication of Thermoplastics (CRAFT), has been developed. The method allows the...
Researchers have developed a new method for 3D printing objects with very different properties, including levels of hardness and transparency, on a...
Researchers have developed a new method for 3D printing objects with very different properties, including levels of hardness and transparency, on a...
The 30-year-old TaiwanICDF leverages technology to give other nations the means to achieve food security. Taiwan is committed to facilitating the...
New research from Monash University has delivered a breakthrough that could lead to faster, smaller and more energy-efficient lasers, with flow-on...