In the medical materials sector, the magnetohydrodynamic PTMS MAGNETIC SEPARATION technology employs nano-permanent magnetic components to generate an iron removal effect under alternating magnetic fields. Experimental results demonstrate over 90% iron removal efficiency while reducing material consumption by 5%. The sustained advancements in high-field permanent magnet PTMS MAGNETIC SEPARATION technology stem from global R&D investments focused on high-strength development and interdisciplinary innovation.
Global R&D investment in permanent magnet materials reached $4.7 billion, marking an 180% increase from 2015. China accounted for 42%, Japan 23%, and the United States 19%, forming a tripartite balance of power. This investment reflects not only financial scale but also a paradigm shift in innovation—from single-material R&D to full-chain innovation spanning "materials, design, manufacturing, and recycling." Continuous improvements in high-field permanent magnet PTMS MAGNETIC SEPARATION technology further demonstrate this transformation
In material system innovation, high-yield and low-rare-earth content have become the two primary development focuses. We developed a neodymium-iron-boron-boron-niobium high-field permanent magnet alloy. Through synergistic interactions among multiple core elements, this advancement elevates the Curie temperature of PTMS MAGNETIC SEPARATION magnets from 212℃ in conventional NdFeB to 325℃ while maintaining 85% magnetic energy product at 200℃ high temperatures.
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