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Hydrometallurgical process for selective extraction of nd and rare-earth metals from end-of-life hard disk drives ndfeb magnet scrap.
Buahombura, P.; Kareram, A.; Piyawit, W.; and Boonmee, S.
Key Engineering Materials, 845: 81–86. 2020.
linkbibtex
@article{buahombura2020hydrometallurgical,
title={Hydrometallurgical process for selective extraction of nd and rare-earth metals from end-of-life hard disk drives ndfeb magnet scrap},
author={Buahombura, Panya and Kareram, Anuthai and Piyawit, Waraporn and Boonmee, Sarum},
journal={Key Engineering Materials},
volume={845},
pages={81--86},
year={2020},
publisher={Trans Tech Publ}
}
2019
(2)
Recycling of Spent Electro-Nickel-Plating Solution by Electrowinning.
Laokhen, P; Khumkoa, S; Buahombura, P; Piyawit, W; Patcharawit, T; and others
J Material Sci Eng, 8(541): 2. 2019.
linkbibtex
@article{laokhen2019recycling,
title={Recycling of Spent Electro-Nickel-Plating Solution by Electrowinning},
author={Laokhen, P and Khumkoa, S and Buahombura, P and Piyawit, W and Patcharawit, T and others},
journal={J Material Sci Eng},
volume={8},
number={541},
pages={2},
year={2019}
}
Recycling of Galvanic Copper Sludge for Pure Copper Production.
Ma-ud, N; Khumkoa, S; Buahombura, P; Piyawit, W; Patcharawit, T; and others
J Material Sci Eng, 8(540): 2. 2019.
linkbibtex
@article{ma2019recycling,
title={Recycling of Galvanic Copper Sludge for Pure Copper Production},
author={Ma-ud, N and Khumkoa, S and Buahombura, P and Piyawit, W and Patcharawit, T and others},
journal={J Material Sci Eng},
volume={8},
number={540},
pages={2},
year={2019}
}
2018
(1)
Selective extraction and recovery of rare earth metals (REMs) from NdFeB magnet grinding sludge.
Piyawit, W.; Sawananusorn, P.; Srikhang, L.; Buahombura, P.; Akkarapattanagoon, N.; Patcharawit, T.; and Khumkoa, S.
In Extraction 2018: Proceedings of the First Global Conference on Extractive Metallurgy, pages 2399–2407, 2018. Springer
linkbibtex
@inproceedings{piyawit2018selective,
title={Selective extraction and recovery of rare earth metals (REMs) from NdFeB magnet grinding sludge},
author={Piyawit, Waraporn and Sawananusorn, Pisit and Srikhang, Loeslakkhana and Buahombura, Panya and Akkarapattanagoon, Narong and Patcharawit, Tapanee and Khumkoa, Sakhob},
booktitle={Extraction 2018: Proceedings of the First Global Conference on Extractive Metallurgy},
pages={2399--2407},
year={2018},
organization={Springer}
}
2017
(2)
THE EFFECT OF Ag PRECIPITATES ON STRENGTH AND DUCTILITY OF CuAgZr ALLOY.
Piyawit, W.; and Buahombura, P.
Suranaree Journal of Science & Technology, 24(3). 2017.
linkbibtex
@article{piyawit2017effect,
title={THE EFFECT OF Ag PRECIPITATES ON STRENGTH AND DUCTILITY OF CuAgZr ALLOY.},
author={Piyawit, Waraporn and Buahombura, Panya},
journal={Suranaree Journal of Science \& Technology},
volume={24},
number={3},
year={2017}
}
Observation of Ag Precipitate in CuAgZr Alloy during In Situ High Temperature TEM.
Piyawit, W.; and Buahombura, P.
Solid State Phenomena, 263: 50–54. 2017.
linkbibtex
@article{piyawit2017observation,
title={Observation of Ag Precipitate in CuAgZr Alloy during In Situ High Temperature TEM},
author={Piyawit, Waraporn and Buahombura, Panya},
journal={Solid State Phenomena},
volume={263},
pages={50--54},
year={2017},
publisher={Trans Tech Publ}
}
2016
(1)
Precipitation behavior of plastically deformed CuAgZr alloy.
Piyawit, W.; and Chanmuang, C.
Physics Procedia, 85: 36–40. 2016.
linkbibtex
@article{piyawit2016precipitation,
title={Precipitation behavior of plastically deformed CuAgZr alloy},
author={Piyawit, Waraporn and Chanmuang, Chutimun},
journal={Physics Procedia},
volume={85},
pages={36--40},
year={2016},
publisher={Elsevier}
}
2014
(2)
Effect of Processing Scheme on Precipitation Mechanisms and Evolution of Microstructures and Properties of CuAgZr alloy.
Piyawit, W.; and others
. 2014.
linkbibtex
@article{piyawit2014effect,
title={Effect of Processing Scheme on Precipitation Mechanisms and Evolution of Microstructures and Properties of CuAgZr alloy.},
author={Piyawit, Waraporn and others},
year={2014}
}
Nucleation and growth mechanism of Ag precipitates in a CuAgZr alloy.
Piyawit, W; Xu, W.; Mathaudhu, S.; Freudenberger, J; Rigsbee, J.; and Zhu, Y.
Materials Science and Engineering: A, 610: 85–90. 2014.
linkbibtex
@article{piyawit2014nucleation,
title={Nucleation and growth mechanism of Ag precipitates in a CuAgZr alloy},
author={Piyawit, W and Xu, WZ and Mathaudhu, SN and Freudenberger, J and Rigsbee, JM and Zhu, YT},
journal={Materials Science and Engineering: A},
volume={610},
pages={85--90},
year={2014},
publisher={Elsevier}
}