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Author: Editorial Team

Modeling of Magnetic Properties of Polymer Bonded Nd–Fe–B Magnets with Surface Modifications

  • Editorial Team
  • November 22, 2023February 27, 2025
  • Advanced Materials Engineering, Polymers and Composites

The effects of surface modification on the magnetic properties of polymer-bonded Nd–Fe–B magnets have been studied.

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Artificial Intelligence (AI) in Materials Selection Consultancy: Fact or Fiction

  • Editorial Team
  • November 20, 2023December 26, 2024
  • Artificial Intelligence (AI)

AI is revolutionizing materials selection by automating data analysis and suggesting new materials, creating databases tailored to industry needs.

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New Protective Coatings for Rare Earth Magnets Prevent their Corrosion and Oxidation

  • Editorial Team
  • March 10, 2022February 27, 2025
  • Protective Coatings

Commercial rare-earth alloy powders such as neodymium-iron-boron (Nd-Fe-B) or “neo alloy” ribbons into platelets with varying sizes and distributions (mean particle size approximately 200 µran).

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Controlling the Water Absorbency of Agricultural Polymers

  • Editorial Team
  • February 28, 2022February 27, 2025
  • Polymers and Composites, Sustainable Materials Technology

Blending special bioab­sorbable polyphosphate fillers, biodegradable soy protein isolate, plasticizer, and adhesion promoter in a high-shear mixer followed by compression molding resulted in a rel­atively water-resistant, biodegradable soy-pro­tein polymer composite.

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Atomise Polymers to Maximise Profits

  • Editorial Team
  • February 10, 2022February 14, 2025
  • Polymers and Composites

The difficulties of mass-producing micron-sized high-quality powders from molten polymers can be avoided by using high pressure gas atomisation methods.

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Hybridize Materials to Maximize Profit and Performance

  • Editorial Team
  • January 16, 2022February 27, 2025
  • Advanced Materials Engineering, Board Room Governance, Organic-Inorganic Hybrid Materials

The plastics industry expects a lot from advanced materials, but the relatively few that are commercially available cannot satis­fy all applications and expectations. In this context, nanostructured hybrid organic-inorganic glass thermoplastic materials potentially demonstrate all the benefits of traditional filled plastic composites and avoid their disadvantages (Fig. 1). Current attrib­utes of the materials should translate into improved energy efficiency and consequent cost savings, mak­ing the materials and production method widely appli­cable.

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