The Effect of Nanostructured Functional Ceramics Additives on the Properties of Welding Electrodes

The present work aimed to develop a new coated electrode weld based on ceramic materials. Photocatalysts of nanostructured functional ceramics (PNFCs) were synthesized by means of concentrated solar radiation on ceramic materials. This new process allows the efficient conversion of the energy of the...

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Main Authors: Saidov Mannapovich Rustam, Rakhimov Khakimovich Rustam, Kamel Touileb
Format: Article
Language:English
Published: MDPI AG 2023-11-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/13/11/1849
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author Saidov Mannapovich Rustam
Rakhimov Khakimovich Rustam
Kamel Touileb
author_facet Saidov Mannapovich Rustam
Rakhimov Khakimovich Rustam
Kamel Touileb
author_sort Saidov Mannapovich Rustam
collection DOAJ
description The present work aimed to develop a new coated electrode weld based on ceramic materials. Photocatalysts of nanostructured functional ceramics (PNFCs) were synthesized by means of concentrated solar radiation on ceramic materials. This new process allows the efficient conversion of the energy of the primary source into pulsed radiation, through the adjustable and judicious choice of parameters. The photocatalysts also showed high activity when they were introduced into an electrode coating. The main problem is the complexity of the production of NFC photocatalysts on an industrial scale. A new method was developed for producing ZB-1-grade NFC catalysts using conventional technology, with subsequent activation via pulsed radiation generated by functional ceramics. The results of the addition of NFC photocatalysts obtained using this technology on the welding and technological properties of welding electrodes of the MR-3 brand are presented. The introduction of 1% to 8% NFC of the ZB-1 grade into the coating enhanced the stability of arc burning (L<sub>bla</sub>) and increased the diameter of the weld point (ø<sub>dp.</sub>). Moreover, the addition of 1% to 8% NFC of the ZB-1 brand into the coating contributed to a reduction in the losses factor for waste and splashing of electrode metal (ψ) leading to a reduction in the height of the visor at the end of the electrode (h<sub>k</sub>).
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spelling doaj.art-f8992a0b990e4ff19e4fe52c5040abfd2023-11-24T14:55:50ZengMDPI AGMetals2075-47012023-11-011311184910.3390/met13111849The Effect of Nanostructured Functional Ceramics Additives on the Properties of Welding ElectrodesSaidov Mannapovich Rustam0Rakhimov Khakimovich Rustam1Kamel Touileb2Institute of Material Sciences, Academy of Science of Uzbekistan, Tashkent 100047, UzbekistanInstitute of Material Sciences, Academy of Science of Uzbekistan, Tashkent 100047, UzbekistanDepartment of Mechanical Engineering, College of Engineering in Al-Kharj, Prince Sattam bin Abdulaziz University, P.O. Box 655, Al-Kharj 16273, Saudi ArabiaThe present work aimed to develop a new coated electrode weld based on ceramic materials. Photocatalysts of nanostructured functional ceramics (PNFCs) were synthesized by means of concentrated solar radiation on ceramic materials. This new process allows the efficient conversion of the energy of the primary source into pulsed radiation, through the adjustable and judicious choice of parameters. The photocatalysts also showed high activity when they were introduced into an electrode coating. The main problem is the complexity of the production of NFC photocatalysts on an industrial scale. A new method was developed for producing ZB-1-grade NFC catalysts using conventional technology, with subsequent activation via pulsed radiation generated by functional ceramics. The results of the addition of NFC photocatalysts obtained using this technology on the welding and technological properties of welding electrodes of the MR-3 brand are presented. The introduction of 1% to 8% NFC of the ZB-1 grade into the coating enhanced the stability of arc burning (L<sub>bla</sub>) and increased the diameter of the weld point (ø<sub>dp.</sub>). Moreover, the addition of 1% to 8% NFC of the ZB-1 brand into the coating contributed to a reduction in the losses factor for waste and splashing of electrode metal (ψ) leading to a reduction in the height of the visor at the end of the electrode (h<sub>k</sub>).https://www.mdpi.com/2075-4701/13/11/1849manual arc weldingwelding electrodesnanostructured functional ceramics (NFC)
spellingShingle Saidov Mannapovich Rustam
Rakhimov Khakimovich Rustam
Kamel Touileb
The Effect of Nanostructured Functional Ceramics Additives on the Properties of Welding Electrodes
Metals
manual arc welding
welding electrodes
nanostructured functional ceramics (NFC)
title The Effect of Nanostructured Functional Ceramics Additives on the Properties of Welding Electrodes
title_full The Effect of Nanostructured Functional Ceramics Additives on the Properties of Welding Electrodes
title_fullStr The Effect of Nanostructured Functional Ceramics Additives on the Properties of Welding Electrodes
title_full_unstemmed The Effect of Nanostructured Functional Ceramics Additives on the Properties of Welding Electrodes
title_short The Effect of Nanostructured Functional Ceramics Additives on the Properties of Welding Electrodes
title_sort effect of nanostructured functional ceramics additives on the properties of welding electrodes
topic manual arc welding
welding electrodes
nanostructured functional ceramics (NFC)
url https://www.mdpi.com/2075-4701/13/11/1849
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