Effect of magnetic-electric-ultrasonic fields on microstructure and properties of Ni60A laser cladding coating

Ni60 coating is prepared utilizing laser cladding on 45 steel assisted by magnetic-ultrasonic-electric field. The effect of multi-physical fields on the cracking tendency, microstructure, phase composition, mechanical properties and corrosive resistance of coating is investigated. As results indicat...

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Main Authors: Houming Zhou, Zixin Chen, Mingfu Li, Yuxu Zhu, Caixing Xu, Jinhu Zhou
Format: Article
Language:English
Published: Elsevier 2022-06-01
Series:Materials Letters: X
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590150822000126
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author Houming Zhou
Zixin Chen
Mingfu Li
Yuxu Zhu
Caixing Xu
Jinhu Zhou
author_facet Houming Zhou
Zixin Chen
Mingfu Li
Yuxu Zhu
Caixing Xu
Jinhu Zhou
author_sort Houming Zhou
collection DOAJ
description Ni60 coating is prepared utilizing laser cladding on 45 steel assisted by magnetic-ultrasonic-electric field. The effect of multi-physical fields on the cracking tendency, microstructure, phase composition, mechanical properties and corrosive resistance of coating is investigated. As results indicate, the macro-morphology of coating is affected by the multi-physical field and the microstructure is refined, which uniformizes the element distribution and prominently optimizes the tribological and anti-corrosive performance of coating, the number of cracks in the coating under multi-physical field reduce by 76.92%, compared with that without physical field, the average microhardness increases by 37.89%, the average friction coefficient decreases by 61.96%, the average wear loss decreases by 61.05%, the corrosive rate decreases by 93.01%.
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spelling doaj.art-9cc66244a38d4943ae691fc85ce314e32022-12-22T02:28:43ZengElsevierMaterials Letters: X2590-15082022-06-0114100132Effect of magnetic-electric-ultrasonic fields on microstructure and properties of Ni60A laser cladding coatingHouming Zhou0Zixin Chen1Mingfu Li2Yuxu Zhu3Caixing Xu4Jinhu Zhou5Corresponding author.; School of Mechanical Engineering, Xiangtan University, Xiangtan 411105, ChinaSchool of Mechanical Engineering, Xiangtan University, Xiangtan 411105, ChinaSchool of Mechanical Engineering, Xiangtan University, Xiangtan 411105, ChinaSchool of Mechanical Engineering, Xiangtan University, Xiangtan 411105, ChinaSchool of Mechanical Engineering, Xiangtan University, Xiangtan 411105, ChinaSchool of Mechanical Engineering, Xiangtan University, Xiangtan 411105, ChinaNi60 coating is prepared utilizing laser cladding on 45 steel assisted by magnetic-ultrasonic-electric field. The effect of multi-physical fields on the cracking tendency, microstructure, phase composition, mechanical properties and corrosive resistance of coating is investigated. As results indicate, the macro-morphology of coating is affected by the multi-physical field and the microstructure is refined, which uniformizes the element distribution and prominently optimizes the tribological and anti-corrosive performance of coating, the number of cracks in the coating under multi-physical field reduce by 76.92%, compared with that without physical field, the average microhardness increases by 37.89%, the average friction coefficient decreases by 61.96%, the average wear loss decreases by 61.05%, the corrosive rate decreases by 93.01%.http://www.sciencedirect.com/science/article/pii/S2590150822000126Laser claddingUltrasonic vibrationElectromagnetic stirringWear and corrosion resistance
spellingShingle Houming Zhou
Zixin Chen
Mingfu Li
Yuxu Zhu
Caixing Xu
Jinhu Zhou
Effect of magnetic-electric-ultrasonic fields on microstructure and properties of Ni60A laser cladding coating
Materials Letters: X
Laser cladding
Ultrasonic vibration
Electromagnetic stirring
Wear and corrosion resistance
title Effect of magnetic-electric-ultrasonic fields on microstructure and properties of Ni60A laser cladding coating
title_full Effect of magnetic-electric-ultrasonic fields on microstructure and properties of Ni60A laser cladding coating
title_fullStr Effect of magnetic-electric-ultrasonic fields on microstructure and properties of Ni60A laser cladding coating
title_full_unstemmed Effect of magnetic-electric-ultrasonic fields on microstructure and properties of Ni60A laser cladding coating
title_short Effect of magnetic-electric-ultrasonic fields on microstructure and properties of Ni60A laser cladding coating
title_sort effect of magnetic electric ultrasonic fields on microstructure and properties of ni60a laser cladding coating
topic Laser cladding
Ultrasonic vibration
Electromagnetic stirring
Wear and corrosion resistance
url http://www.sciencedirect.com/science/article/pii/S2590150822000126
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