EPFL scientists have created a breakthrough 3D printing method that uses hydrogels as templates to produce ultra-dense, durable metals and ceramics.
When it comes to FDM 3D prints and making them stronger, most of the focus is on the outer walls and factors like their layer adhesion. However, paying some attention to the often-ignored insides ...
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FLX-300 features an exceptionally low compression set, enabling printed parts to spring back to their original shape after repeated deformation reliably.
SIU researchers strengthen metal 3D printed parts - modelling the likelihood and impact of defects inside their simulations.
D printing creates solid objects from the additive process of layering plastics, metal, wood, synthetic fibers, and more.
Discover the features of AmeraLabs FLX-300, a flexible elastomer resin that retains elasticity and hardness over time in 3D ...
Scientists at EPFL have reimagined 3D printing by turning simple hydrogels into tough metals and ceramics. Their process ...