Preparation of Al2O3 magnetic abrasives by combining plasma molten metal powder with sprayed abrasive powder

G Liu, Y Zhao, J Meng, Y Gao, Z Song, X Zhang… - Ceramics …, 2022 - Elsevier
Magnetic abrasives play a significant role in finishing processes; however, existing magnetic
abrasive particles have limited their application in industry due to poor grinding performance …

Synthesis and characterization of environment-friendly spherical cubic boron nitride magnetic abrasives by plasma molten metal powders bonding with hard materials

G Liu, Y Zhao, Z Li, H Yu, J Meng, C Cao… - International Journal of …, 2023 - Elsevier
In this investigation, globular cubic boron nitride magnetic abrasive powders (cBN-MAPs)
were synthesized with additive-free via plasma molten metal powders bonding with hard …

Formation mechanism of ceramic/metal composite spherical magnetic abrasive prepared via gas-solid atomization

L Jiang, T Chang, G Zhang, Y Zhao, H Chen… - Journal of Alloys and …, 2022 - Elsevier
In order to prepare good magnetic abrasive particles (MAPs) and make it play a better role in
magnetic abrasive finishing (MAF), an experimental investigation on the formation …

Achieving environment-friendly spherical polycrystalline diamond magnetic abrasives via plasma molten metal powders bonding with hard materials

G Liu, Y Zhao, Z Li, H Yu, C Cao, J Meng, H Zhang… - Ceramics …, 2023 - Elsevier
High performance magnetic abrasive particles (MAPs) can contribute to the promotion of
magnetic abrasive finishing (MAF) industry. In this work, environmentally friendly spherical …

Magnetic field-assisted finishing: mechanism, application, and outlook

Z Yan, S Yang, Y Li, X Li, W Li, X Yao - The International Journal of …, 2024 - Springer
Magnetic field-assisted finishing (MFAF) technology, as a non-traditional surface finishing
technology, has a unique advantage in machining components composed of complex …

[HTML][HTML] Achieving polycrystalline diamond magnetic abrasive tools via double-stage gas atomization

Y Gao, Y Zhao, G Zhao, G Zhang, H Zhang - Materials & Design, 2022 - Elsevier
Although magnetic abrasive finishing (MAF) is an efficient surface finishing technique, its
promotion and use in the precise polishing of high-hardness objects are constrained by the …

Investigation of MAF for Finishing the Inner Wall of Super-Slim Cardiovascular Stents Tube

G Liu, Y Zhao, Z Li, C Cao, J Meng, H Yu, H Zhang - Materials, 2023 - mdpi.com
The internal wall of cardiovascular stent tubing produced by a drawing process has defects
such as pits and bumps, making the surface rough and unusable. In this research, the …

Investigation of Spherical Al2O3 Magnetic Abrasive Prepared by Novel Method for Finishing of the Inner Surface of Cobalt–Chromium Alloy Cardiovascular Stents …

G Liu, Y Zhao, Z Li, H Yu, C Cao, J Meng, H Zhang… - Micromachines, 2023 - mdpi.com
In this investigation, spherical Al2O3 magnetic abrasive particles (MAPs) were used to
polish the inner surface of ultra-fine long cobalt–chromium alloy cardiovascular stent tubes …

Co-optimization of magnetic abrasive finishing behaviors of zirconium tube surfaces with Fe-6.5 wt% Si/SiC abrasives using BP neural network and response surface …

X Zhao, X Zhang, B Cheng, W Li, U Seniuts… - Materials Today …, 2024 - Elsevier
A novel abrasive of Fe-6.5 wt% Si/SiC composite was prepared for magnetic abrasive
finishing (MAF) to achieve fine machining of zirconium alloy tubes. The optimized …

Optimizing processing performance of Fe-6.5 wt% Si–SiC magnetic abrasive particles by in-situ formation of FexSiy interlayer

X Zhang, H Wang, X Zhao, B Cheng, W Li… - Materials Today …, 2023 - Elsevier
Abstract The Magnetic Abrasive Finishing (MAF) technology has demonstrated significant
potential for precision machining due to its adaptable processing characteristics. However …