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- W2318091505 abstract "Combining the process parameters - from high pressure with low temperature to high temperature with no pressure - a wide range of welding processes by pressure and fusion have been developed in the last decades. Included in the group of fusion welding processes, submerged multi-arc welding is more and more applied to the pipelines manufacturing due to the increased productivity and efficiency of the process. In this case, an overlapping effect of temperature fields is manifested through a major influence on the cooling rate which is responsible for the metallurgical changes and, finally, for deterioration of the joints' mechanical characteristics. It is obvious that good performances of the welded joints ensure the quality and safety of metallic structures and a less impact on the environment is estimated to be achieved. That is why cooling rate should be theoretically and experimentally investigated. Moreover, distance between welding sources could be variable and leads to different values of cooling. The research focuses on the numerical modeling of heat transfer in the welded joints performed by submerged double-arc welding process distances between electric arcs is variable. Temperature field, thermal cycles and cooling rate versus different distances between thermal sources are comparatively analysed and discussed." @default.
- W2318091505 created "2016-06-24" @default.
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- W2318091505 date "2014-01-01" @default.
- W2318091505 modified "2023-09-26" @default.
- W2318091505 title "Assessment of Cooling Rate in Longitudinal Welded Pipelines performed by Submerged Double-Arc Welding" @default.
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