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Caracterização microestrutural e mecânica de juntas soldadas com aço inoxidável duplex UNS S31803 pelo processo Friction Hydro Pillar Processing (FHPP) e Friction Taper Stitch Welding (FTSW)
| Content Provider | Semantic Scholar |
|---|---|
| Author | Figueiredo, Arlan Pacheco |
| Copyright Year | 2017 |
| Abstract | Duplex stainless steels (DSS) are materials widely used for a variety of applications from the chemical, food, petrochemical, marine, pharmaceutical, nuclear industry and other fields due to the combination of their excellent mechanical properties and corrosion resistance. Particularly in the petrochemical industry, the DSS's steels are extensively used as structural materials for the construction of gas pipelines that carry high volumes of CO2 and making the inner layers of flexible pipes (pipelines offshore) used in offshore oil production. The arc welding of DSS's can lead, depending on cooling rates involved, the formation of second phase precipitates which degrade their mechanical properties. An alternative method to avoid the problem of precipitation of unwanted phase is to use the welding process Friction Hydro Pillar Processing (FHPP). The aim of this work is the metallurgical and mechanical characterization of joints welds of UNS S31803 duplex stainless steel obtained through FHPP processes and Friction Taper Stitch Welding (FTSW). In FTSW welding, the objective of the study was to verify the influence of the welding step on the formation and alteration of structures and mechanical properties. The test results were compared with the properties of the obtained base material "as received". From the welds joints obtained by friction welding, specimens for microtensile testing and charpy were extracted to evaluate the mechanical strength and toughness. Microstructural analysis in optical microscopy (OM) and scanning electron microscopy (SEM) and microhardness profiles along the weld region were also performed. It was found that the welding process FHPP and FTSW causes an intense grain refinement in bonding zone, modifying the lamellar structure of elongate grains of matrix ferritic/austenitic, caused by action of heating and plastic deformation arising from the welding process by friction. The results of the microtensile tests indicate that the welded joints increased their mechanical resistance with respect to the base material, due to the increase in the amount of the ferrite in the thermomechanically affected zone (ZTMA), the formation of chromium nitrides in the center of ferritic grains and grain refining. The increase in the amount of ferrite in the ZTMA occurs due to the high cooling rates involved in the welding process and verified by thermal analysis. The high cooling rates difficult the nitrogen diffusion, which plays an important role in the phase equilibrium of the duplex structure (ferrite-austenite) in welding. The nitrogen trapped inside the ferritic grain produces chromium nitrides ceasing to act as gamogenic element by increasing the amount of the ferrite phase. The welds joints verified also had acceptable ductility and toughness according required by standard ASTM A923. Key Word: Duplex stainless steels, Friction Hydro Pillar Processing Welding (FHPP), Friction Taper Stitch Welding (FTSW), microtensile. |
| File Format | PDF HTM / HTML |
| Alternate Webpage(s) | https://www.lume.ufrgs.br/bitstream/handle/10183/170957/001053553.pdf?isAllowed=y&sequence=1 |
| Language | English |
| Access Restriction | Open |
| Content Type | Text |
| Resource Type | Article |