Cargando…

Coercivity Increase of the Recycled HDDR Nd-Fe-B Powders Doped with DyF(3) and Processed via Spark Plasma Sintering & the Effect of Thermal Treatments

The magnetic properties of the recycled hydrogenation disproportionation desorption recombination (HDDR) Nd-Fe-B powder, doped with a low weight fraction of DyF(3) nanoparticles, were investigated. Spark plasma sintering (SPS) was used to consolidate the recycled Nd-Fe-B powder blends containing 1,...

Descripción completa

Detalles Bibliográficos
Autores principales: Ikram, Awais, Mehmood, M. Farhan, Samardžija, Zoran, Sheridan, Richard Stuart, Awais, Muhammad, Walton, Allan, Sturm, Saso, Kobe, Spomenka, Žužek Rožman, Kristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539515/
https://www.ncbi.nlm.nih.gov/pubmed/31071992
http://dx.doi.org/10.3390/ma12091498
_version_ 1783422407202045952
author Ikram, Awais
Mehmood, M. Farhan
Samardžija, Zoran
Sheridan, Richard Stuart
Awais, Muhammad
Walton, Allan
Sturm, Saso
Kobe, Spomenka
Žužek Rožman, Kristina
author_facet Ikram, Awais
Mehmood, M. Farhan
Samardžija, Zoran
Sheridan, Richard Stuart
Awais, Muhammad
Walton, Allan
Sturm, Saso
Kobe, Spomenka
Žužek Rožman, Kristina
author_sort Ikram, Awais
collection PubMed
description The magnetic properties of the recycled hydrogenation disproportionation desorption recombination (HDDR) Nd-Fe-B powder, doped with a low weight fraction of DyF(3) nanoparticles, were investigated. Spark plasma sintering (SPS) was used to consolidate the recycled Nd-Fe-B powder blends containing 1, 2, and 5 wt.% of DyF(3) grounded powder. Different post-SPS sintering thermal treatment conditions (600, 750, and 900 °C), for a varying amount of time, were studied in view of optimizing the magnetic properties and developing characteristic core-shell microstructure in the HDDR powder. As received, recycled HDDR powder has coercivity (H(Ci)) of 830 kA/m, and as optimally as SPS magnets reach 1160 kA/m, after the thermal treatment. With only 1–2 wt.% blended DyF(3), the H(Ci) peaked to 1407 kA/m with the thermal treatment at 750 °C for 1 h. The obtained H(Ci) values of the blend magnet is ~69.5% higher than the starting recycled HDDR powder and 17.5% higher than the SPS processed magnet annealed at 750 °C for 1 h. Prolonging the thermal treatment time to 6 h and temperature conditions above 900 °C was detrimental to the magnetic properties. About ~2 wt.% DyF(3) dopant was suitable to develop a uniform core-shell microstructure in the HDDR Nd-Fe-B powder. The Nd-rich phase in the HDDR powder has a slightly different and fluorine rich composition i.e., Nd-O-F(2) than in the one reported in sintered magnets (Nd-O-F). The composition of reaction zone-phases after the thermal treatment and Dy diffusion was DyF(4), which is more abundant in 5 wt.% doped samples. Further doping above 2 wt.% DyF(3) is ineffective in augmenting the coercivity of the recycled HDDR powder, due to the decomposition of the shell structure and formation of non-ferromagnetic rare earth-based complex intermetallic compounds. The DyF(3) doping is a very effective single step route in a controlled coercivity improvement of the recycled HDDR Nd-Fe-B powder from the end of life magnetic products.
format Online
Article
Text
id pubmed-6539515
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65395152019-06-05 Coercivity Increase of the Recycled HDDR Nd-Fe-B Powders Doped with DyF(3) and Processed via Spark Plasma Sintering & the Effect of Thermal Treatments Ikram, Awais Mehmood, M. Farhan Samardžija, Zoran Sheridan, Richard Stuart Awais, Muhammad Walton, Allan Sturm, Saso Kobe, Spomenka Žužek Rožman, Kristina Materials (Basel) Article The magnetic properties of the recycled hydrogenation disproportionation desorption recombination (HDDR) Nd-Fe-B powder, doped with a low weight fraction of DyF(3) nanoparticles, were investigated. Spark plasma sintering (SPS) was used to consolidate the recycled Nd-Fe-B powder blends containing 1, 2, and 5 wt.% of DyF(3) grounded powder. Different post-SPS sintering thermal treatment conditions (600, 750, and 900 °C), for a varying amount of time, were studied in view of optimizing the magnetic properties and developing characteristic core-shell microstructure in the HDDR powder. As received, recycled HDDR powder has coercivity (H(Ci)) of 830 kA/m, and as optimally as SPS magnets reach 1160 kA/m, after the thermal treatment. With only 1–2 wt.% blended DyF(3), the H(Ci) peaked to 1407 kA/m with the thermal treatment at 750 °C for 1 h. The obtained H(Ci) values of the blend magnet is ~69.5% higher than the starting recycled HDDR powder and 17.5% higher than the SPS processed magnet annealed at 750 °C for 1 h. Prolonging the thermal treatment time to 6 h and temperature conditions above 900 °C was detrimental to the magnetic properties. About ~2 wt.% DyF(3) dopant was suitable to develop a uniform core-shell microstructure in the HDDR Nd-Fe-B powder. The Nd-rich phase in the HDDR powder has a slightly different and fluorine rich composition i.e., Nd-O-F(2) than in the one reported in sintered magnets (Nd-O-F). The composition of reaction zone-phases after the thermal treatment and Dy diffusion was DyF(4), which is more abundant in 5 wt.% doped samples. Further doping above 2 wt.% DyF(3) is ineffective in augmenting the coercivity of the recycled HDDR powder, due to the decomposition of the shell structure and formation of non-ferromagnetic rare earth-based complex intermetallic compounds. The DyF(3) doping is a very effective single step route in a controlled coercivity improvement of the recycled HDDR Nd-Fe-B powder from the end of life magnetic products. MDPI 2019-05-08 /pmc/articles/PMC6539515/ /pubmed/31071992 http://dx.doi.org/10.3390/ma12091498 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ikram, Awais
Mehmood, M. Farhan
Samardžija, Zoran
Sheridan, Richard Stuart
Awais, Muhammad
Walton, Allan
Sturm, Saso
Kobe, Spomenka
Žužek Rožman, Kristina
Coercivity Increase of the Recycled HDDR Nd-Fe-B Powders Doped with DyF(3) and Processed via Spark Plasma Sintering & the Effect of Thermal Treatments
title Coercivity Increase of the Recycled HDDR Nd-Fe-B Powders Doped with DyF(3) and Processed via Spark Plasma Sintering & the Effect of Thermal Treatments
title_full Coercivity Increase of the Recycled HDDR Nd-Fe-B Powders Doped with DyF(3) and Processed via Spark Plasma Sintering & the Effect of Thermal Treatments
title_fullStr Coercivity Increase of the Recycled HDDR Nd-Fe-B Powders Doped with DyF(3) and Processed via Spark Plasma Sintering & the Effect of Thermal Treatments
title_full_unstemmed Coercivity Increase of the Recycled HDDR Nd-Fe-B Powders Doped with DyF(3) and Processed via Spark Plasma Sintering & the Effect of Thermal Treatments
title_short Coercivity Increase of the Recycled HDDR Nd-Fe-B Powders Doped with DyF(3) and Processed via Spark Plasma Sintering & the Effect of Thermal Treatments
title_sort coercivity increase of the recycled hddr nd-fe-b powders doped with dyf(3) and processed via spark plasma sintering & the effect of thermal treatments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6539515/
https://www.ncbi.nlm.nih.gov/pubmed/31071992
http://dx.doi.org/10.3390/ma12091498
work_keys_str_mv AT ikramawais coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments
AT mehmoodmfarhan coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments
AT samardzijazoran coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments
AT sheridanrichardstuart coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments
AT awaismuhammad coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments
AT waltonallan coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments
AT sturmsaso coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments
AT kobespomenka coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments
AT zuzekrozmankristina coercivityincreaseoftherecycledhddrndfebpowdersdopedwithdyf3andprocessedviasparkplasmasinteringtheeffectofthermaltreatments