MaterialsResearchScience

Breakthrough Technique Enables Slippery 3D Surfaces for Advanced Applications

Scientists have pioneered a manufacturing technique that creates slippery surfaces with intricate 3D geometries, breaking from traditional flat designs. The advancement could enable self-cleaning, anti-icing, and fluid-repellent functions in complex industrial applications. This development reportedly overcomes significant limitations in surface engineering.

Overcoming Geometric Limitations in Surface Engineering

Researchers have developed a scalable technique for creating slippery surfaces with complex three-dimensional geometries, according to recent scientific reports. This breakthrough potentially overcomes the traditional limitation of such surfaces being restricted to flat, simple shapes, sources indicate. The development could significantly expand applications in fields requiring advanced surface properties.

ManufacturingResearchScience

Dual-Laser 3D Printing Technique Enhances Metal Strength and Durability in New Study

A breakthrough in metal 3D printing technology reportedly enhances material properties through ultrasonic grain refinement. Scientists using dual-laser systems during selective laser melting have achieved significant improvements in steel strength and ductility, according to recent findings.

Breakthrough in Metal 3D Printing Technology

Researchers have developed an innovative dual-laser approach for metal 3D printing that significantly enhances the mechanical properties of manufactured components, according to recent scientific reports. The technique, which introduces ultrasonic pulses during the printing process, has demonstrated remarkable improvements in both strength and durability of 316L stainless steel, a material widely used in medical, aerospace, and automotive applications.