Respiratory Exposure to Toxic Gases and Metal Fumes Produced by Welding Processes and Pulmonary Function Tests. [PDF]
Mehrifar Y, Zamanian Z, Pirami H.
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Corrosion behaviour of welded low-carbon steel in the Arctic marine environment. [PDF]
Choi YY, Kim MH.
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Predictive Correlation Between Hardness and Tensile Properties of Submerged Arc Welded API X70 Steel. [PDF]
Lahouel A +7 more
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Effect of Transition Layers on the Microstructure and Properties of CMT Additively Manufactured Steel/Copper Specimens. [PDF]
Guo X, Xu Y, Li J, Zhang C.
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Extension of the Advanced REACH Tool (ART) to Include Welding Fume Exposure. [PDF]
Sailabaht A, Wang F, Cherrie J.
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Microstructure, Hardness, and Wear Behavior of Layers Obtained by Electric Arc Hardfacing Processes. [PDF]
Balos S +6 more
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Quantifying relevant exposure determinants and conditions of use for welding emissions. [PDF]
Koivisto AJ +4 more
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Abrasion resistance of Fe–Cr–C coating deposited by FCAW welding process
Wear, 2021Abstract The present paper aims to assess the abrasion resistance of Fe–C–Cr alloy coatings deposited by the Flux-Cored Arc Welding (FCAW) process. With a selfshielded tubular wire and four different parameterization levels, coatings (single layers) were deposited on SAE 1020 steel substrate. A scanning electronic microscope (SEM) was employed in the
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Optimization of the FCAW process by weld bead geometry analysis
Welding International, 2009The flux cored arc welding process has grown in use in recent times as a function of its characteristics of high rate of deposition, associated with suitable mechanical properties in the welded joint. However, many aspects still remain obscure in regard to greater utilization of this process.
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