Waste Phosphogypsum Finds New Life in 3D-Printed Buildings Through Smart Additive Chemistry
Researchers show that route-specific admixture chemistry can turn stockpiled phosphogypsum waste into printable, load-bearing 3D-printed building structures.
Researchers show that route-specific admixture chemistry can turn stockpiled phosphogypsum waste into printable, load-bearing 3D-printed building structures.
Researchers in India developed crack-free, compositionally graded molybdenum-enriched Stellite 6 coatings on P91 steel using a novel gravity-assisted laser cladding ...
Researchers at the Technion have 3D-printed polymeric aortic valves with embedded, biomimetic PETG fiber networks that cut predicted leaflet strain ...
A new review in the Journal of Materials Science maps the fundamentals, processing routes, applications, and remaining challenges of basalt ...
A new critical review in Polymer Bulletin surveys how polymeric soft solids, from elastomers and tough hydrogels to nanocomposites and ...
The launch of the Journal of Materials Science: Metallurgy marks a return to the field's roots at a moment when ...
A new review explains how multielement high entropy alloys use lattice distortion, sluggish diffusion and compositional design to achieve record-setting ...
Researchers reinforced a 3D-printed CoCrNi medium-entropy alloy with titanium carbide, boosting hardness from 283 to 486 HV and cutting wear ...
Scientists used in-situ synchrotron X-ray diffraction to watch staged martensitic transformation and load partitioning unfold in wire arc additive manufactured ...
German researchers have 3D-printed stainless-steel TPMS catalyst carriers, coated them with platinum, and shown on a real natural gas engine ...
© 2025 Scienmag - Science Magazine
© 2025 Scienmag - Science Magazine