Academic literature on the topic 'Flux cored arc welding'

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Journal articles on the topic "Flux cored arc welding"

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Minnick, William H. "Flux Cored Arc Welding Handbook." Indian Welding Journal 39, no. 1 (2006): 11. http://dx.doi.org/10.22486/iwj.v39i1.178991.

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Zhang, Lian Zhong, and Jie Li Wen. "Flux Cored Wire Material Gas Shielded Arc Welding Thick Steel Plate Welded Crack Analysis." Advanced Materials Research 710 (June 2013): 76–79. http://dx.doi.org/10.4028/www.scientific.net/amr.710.76.

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The world shipbuilding industry since the beginning of the last century with flux cored wire material.Since the flux cored wire material use welding materials has developed into a more efficient submerged arc welding consumables and gas shielded welding welding consumables and can be more easily combined with automated welding and robot welding.So far, flux cored material applications favored. Gas shielded arc welding consumables mainly divided solid wire and flux cored wire, flux cored wire applications has increased year by year because of its practicality and efficiency.Flux cored wire as t
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Park, Jeong-Ung, GyuBaek An, Wan Chuck Woo, Jae-hyouk Choi, and Ninshu Ma. "Comparison of Measured Residual Stress Distributions in Extra-Thick Butt Welds Joined by One-Pass EGW and Multipass FCAW." Advances in Mechanical Engineering 6 (January 1, 2014): 861247. http://dx.doi.org/10.1155/2014/861247.

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This study is to measure the welding residual stress distributions in a 70 mm-thick butt weld by one-pass electron gas welding using both the inherent strain method and neutron diffraction method, respectively. Based on the measurement results, the characteristics of residual stress distribution through thickness were compared between one-pass electron gas welding and multipass flux-cored arc welding. Residual stresses in the specimens of electron gas welding measured by the inherent strain method and neutron diffraction method were well matched. The longitudinal residual stress in the multi-p
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Kura, Bhaskar, and Praveen Mookoni. "Hexavalent Chromium Exposure Levels Resulting from Shipyard Welding." Journal of Ship Production 14, no. 04 (1998): 246–54. http://dx.doi.org/10.5957/jsp.1998.14.4.246.

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The Occupational Safety and Health Administration is expected to reduce permissible exposure limits of hexavalent chromium from 100 ng/m3between 5 to 0.5 fig/m3. A Navy Industry Task Group study revealed that the impact of proposed regulations on the shipbuilding industry is significant. The estimated cost of compliance by the Navy facilities could be as much as $46 Million/year besides a one-time cost of about $22 Million. Also, the task group estimated that the cost of $9 Million. This paper presents the results of a study undertaken at the University of New Orleans in support of the Navy/In
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Wang, Yan. "Research on Lagging Melt Phenomenon and Influencing Factors of Flux Cored Arc Welding." Advanced Materials Research 557-559 (July 2012): 1326–29. http://dx.doi.org/10.4028/www.scientific.net/amr.557-559.1326.

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Lagging melt phenomenon is the special phenomenon of flux cored arc welding, studying lagging melt phenomenon is very valuable for the design and improvement of flux cored wire. Used digital camera technology, recorded the lagging melt phenomenon of acid、basic and metallic slag systems flux cored arc welding in CO2 protective atmosphere. Analyzed its mechanism and influencing factors of lagging melt phenomenon. The results shows that lagging melt phenomenon under low welding criterion is not obvious in comparison to high welding criterion but still shows lagging melt tendency. Under high weldi
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Yakovlev, D. S., and M. V. Shakhmatov. "Using flux-cored wires in multi-arc welding." Welding International 30, no. 11 (2016): 858–63. http://dx.doi.org/10.1080/09507116.2016.1154264.

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Dijmarescu, Maria Cristina, Dumitru Titi Cicic, Corneliu Rontescu, and Gheorhe Solomon. "Influence of Welding Process on the Microstructure of Carbon Steel and Stainless Steel Heterogeneous Welded Joints." Advanced Materials Research 1138 (July 2016): 31–36. http://dx.doi.org/10.4028/www.scientific.net/amr.1138.31.

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The reactions of the base material, during the welding process, consist in chemical composition, volume, structure and granulation changes. There are multiple problems which can occur by welding two steels with totally different chemical composition, i.e. carbon steel S235JR + AR and austenitic stainless X2CrNiMo17-12-2. The process used for making the heterogeneous joint was flux cored arc welding (FCAW), numerically coded 136. The paper presents the effects of welding through heat input, on the structural characterization of welded seam and heat affected zone. It also focuses on the structur
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Golyakevich, Andrey A., Leonid N. Orlov, and Sergey Yu Maksimov. "Mechanized Welding with Metal Cored Wire." Advanced Materials Research 1157 (February 2020): 113–22. http://dx.doi.org/10.4028/www.scientific.net/amr.1157.113.

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Currently, there is a steady upward trend in the consumption of flux-cored wires in the global market of welding consumables. One of the rapidly developing technologies for the manufacture of metal structures is shielded gas arc welding with flux-cored wire with a metal core. According to the technology of use, metal cored wires do not differ from solid wires, and even surpass them in some technological characteristics. Taking into account global trends in the development of mechanized welding and the lack of domestic analogues, LLC TM.VELTEK has developed and mastered the manufacturing of hig
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Fydrych, Dariusz, Aleksandra Świerczyńska, and Jacek Tomków. "Diffusible Hydrogen Control in Flux Cored Arc Welding Process." Key Engineering Materials 597 (December 2013): 171–78. http://dx.doi.org/10.4028/www.scientific.net/kem.597.171.

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One of the types of hydrogen degradation of steel welded joints is cold cracking. The direct cause of the formation of cold cracks is simultaneous presence of hydrogen, residual stresses and brittle structure. The way of preventing the occurring of degradation is to eliminate at least one of these factors. Practice has shown that the best solution is to control the amount of hydrogen in deposited metal. In this paper an experimental evaluation of the effect of the welding parameters on the content of diffusible hydrogen in deposited metal obtained from rutile flux cored wire grade H10 was carr
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Prilutsky, V. P., S. L. Shvab, I. K. Petrichenko, S. V. Akhonin, S. B. Rukhansky, and I. A. Radkevich. "Argon arc welding of titanium VT22 alloy using filler flux-cored wire." Paton Welding Journal 2016, no. 9 (2016): 9–13. http://dx.doi.org/10.15407/tpwj2016.09.02.

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Dissertations / Theses on the topic "Flux cored arc welding"

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Moision, William Charles. "Underwater Welding of Mild Steel: A Study of the Effects of Welding variables on Weld Quality Using the Open Arc Flux Cored Process." The Ohio State University, 1992. http://rave.ohiolink.edu/etdc/view?acc_num=osu1393072985.

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Garcia, Diego Martins. "Influência dos parâmetros de soldagem na resistência à fluência de juntas soldadas de aço ASTM A 335 P91." Universidade de São Paulo, 2013. http://www.teses.usp.br/teses/disponiveis/3/3133/tde-26062014-162610/.

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A utilização do aço ASTM A 335 P91 tem sofrido um aumento considerável, especialmente em função da necessidade de materiais com maior resistência à fluência para aplicações em unidades de utilidades (geração de vapor) e de processo. Por ser um material de difícil soldabilidade, diversos problemas são enfrentados durante a construção das unidades e, posteriormente, durante manutenção, geralmente em função de problemas de soldagem oriundos da fase de fabricação e construção. As normas de projeto e construção
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Hirst, Adrian Anthony. "Fume formation in flux cored metal inert gas welding." Thesis, University of Bradford, 1990. https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.306180.

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Pitrun, Miroslav. "The effect of welding parameters on levels of diffusible hydrogen in weld metal deposited using gas shielded rutile flux cored wires." Access electronically, 2004. http://www.library.uow.edu.au/adt-NWU/public/adt-NWU20050202.153920/index.html.

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Du, Plessis John. "Control of diffusible weld metal hydrogen through arc chemistry modifications." Diss., Pretoria : [s.n.], 2006. http://upetd.up.ac.za/thesis/available/etd-05152007-131110.

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Faraone, Kevin Michael. "Gas Tungsten Arc Welding of 304L and 21-6-9 Austenitic Stainless Steel with Penetration Enhancing Compounds." The Ohio State University, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=osu1388356167.

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Clark, Allen L. "The effect of varying the MnO content of the flux used for the submerged arc welding of Navy HY-100 steel." Thesis, Monterey, Calif. : Springfield, Va. : Naval Postgraduate School ; Available from National Technical Information Service, 1995. http://handle.dtic.mil/100.2/ADA308147.

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Candel, Estevan Helio Panisello. "Soldagem dos aços inoxidáveis superduplex UNS S32750 e UNS S32760." Universidade de São Paulo, 2016. http://www.teses.usp.br/teses/disponiveis/3/3133/tde-05102016-092735/.

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O objetivo deste trabalho é viabilizar o uso conjunto, em um mesmo sistema de tubulação, na indústria de óleo e gás, dos aços inoxidáveis superduplex UNS S32750 e UNS S32760. Atualmente as especificações de projeto limitam o uso de um ou outro para um dado sistema, implicando em menor flexibilidade de fornecimento e maiores custos. Adicionalmente será avaliado o processo de soldagem automatizado com arame tubular com matriz metálica (metal cored) e com proteção gasosa. Este processo de soldagem possui grande produtividade e rendimento. Foram estudadas a resistência à corrosão, a resistência me
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Miroslav, Dramićanin. "Uticaj aktivnog premaza na dubinu uvara pri zavarivanju nerđajućeg čelika netopljivom elektrodom u zaštiti inertnog gasa." Phd thesis, Univerzitet u Novom Sadu, Fakultet tehničkih nauka u Novom Sadu, 2019. https://www.cris.uns.ac.rs/record.jsf?recordId=111073&source=NDLTD&language=en.

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U disertaciji je prikazan odabir rastvarača, veličine, vrste i udela čestica za aktivni premaz namenjen postizanju povećane dubine uvara na austenitnom nerđajućem čeliku pri zavarivanju netopljivom elektrodom u zaštiti inertnog gasa. Pored sastava aktivnog premaza, u disertaciji je izvršena optimizacija: geometrije elektrode, jačine struje i brzine zavarivanja. Nakon odabira perspektivnih tipova sastava premaza i parametara zavarivanja, na zavarenim uzorcima izvršena je karakterizacija mehaničkih osobina, hemijskog sastava i mikrostrukture.<br>In this doctoral thesis, the selection of solvent,
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Figueiredo, Kleber Mendes de. "Aplicação de ensaio de impacto Charpy instrumentado no estudo da tenacidade à fratura dinâmica nas soldas a arco submerso em aços para caldeiras." Universidade de São Paulo, 2004. http://www.teses.usp.br/teses/disponiveis/88/88131/tde-03022006-172407/.

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A utilização do eletrodo tubular no processo de soldagem a arco submerso leva a um aumento na produtividade com um custo relativamente baixo, pois não requer investimentos complementares em equipamentos. A mudança do eletrodo sólido para o tubular acarreta variações microestruturais no metal de solda que influenciam as propriedades mecânicas, tais como dureza, tração e tenacidade ao impacto. Este trabalho tem como objetivo principal estudar a tenacidade à fratura dinâmica do metal de solda, mostrando que o uso do eletrodo tubular diminui a propagação de trincas ao impacto, além de melhorar as
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Books on the topic "Flux cored arc welding"

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Minnick, William H. Flux cored arc welding handbook. Goodheart-Wilcox Co., 1995.

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Minnick, William H. Flux cored arc welding handbook. 3rd ed. Goodheart-Willcox Co., 2009.

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Minnick, William H. Flux cored arc welding handbook. Goodheart-Willcox Co., 1999.

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Price, Deborah Ann. Self-shielded flux-cored electrode arc-welding. University of Birmingham, 1988.

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Gellerman, Mike. Practical gas metal and flux cored arc welding. Prentice Hall, 1999.

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Ward, R. F. A study of gas-flux-metal reactions in flux-cored arc welding. University of Birmingham, 1985.

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AWS Committee on Procedure and Performance Qualification. Standard welding procedure specification (WPS) self-shielded flux cored arc welding of carbon steel: (M-1/P-1/S-1, Group 1 or 2), 1/8 through 3/4 inch thick, E71T-11, as-welded condition. American Welding Society, 1995.

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Boekholt, Richard. Present status in the use of cored wires for arc welding worldwide: I.I.W. Commission XII Project. International Institute of Welding, 1991.

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Learning, Thomson Delmar. Flux Cored Arc Welding Video Series: Tape #1: Essentials (Flux Cored Arc Welding). Delmar Learning, 2000.

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Learning, Thomson Delmar. Flux Cored Arc Welding Video Series: Tape #4: Advanced (Flux Cored Arc Welding). Delmar Learning, 2000.

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Book chapters on the topic "Flux cored arc welding"

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LI, Wenhang, Huaidong Wang, Rui Yu, et al. "High-Speed Photography Analysis for Underwater Flux-Cored Wire Arc Cutting Process." In Transactions on Intelligent Welding Manufacturing. Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-13-8192-8_7.

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Gáspár, Marcell, and András Balogh. "Efficient Increase of the Productivity of GMA Welding of AHSS Using Flux Cored Wire." In Design, Fabrication and Economy of Metal Structures. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-36691-8_70.

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Ren, De Liang, Bo Liao, Changling Xu, Lianhai Hu, and Fu Ren Xiao. "A High Notch Toughness Agglomerated Flux for Submerged Arc Welding of Pipeline Steel." In Fracture and Strength of Solids VI. Trans Tech Publications Ltd., 2006. http://dx.doi.org/10.4028/0-87849-989-x.405.

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Sharma, Shyam Sunder, Rishi Dewangan, Ashish Goyal, and Anurag Joshi. "Regression and Taguchi Analysis of TiO2, MnO and CaF2 on Brinell Hardness Number of Submerged Arc Welding Flux Using Red Mud." In Advances in Engineering Materials. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-33-6029-7_13.

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Stridh, L. E. "Flux cored arc welding." In Mig Welding Guide. Elsevier, 2006. http://dx.doi.org/10.1533/9781845691479.1.80.

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Stridh, L. "Flux cored arc welding." In MIG Welding Guide. CRC Press, 2006. http://dx.doi.org/10.1201/9781439824429.ch5.

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"Flux Cored Arc Welding[1]." In Welding Fundamentals and Processes. ASM International, 2011. http://dx.doi.org/10.31399/asm.hb.v06a.a0005601.

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"Flux-Cored Arc Welding[1]." In Welding, Brazing and Soldering. ASM International, 1993. http://dx.doi.org/10.31399/asm.hb.v06.a0001355.

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Lameira, P., C. Benjamin, E. Loureiro, H. Moraes, N. Figueiredo, and T. Porto. "Flux-cored arc welding processes analysis of a shipyard." In Maritime Technology and Engineering III. CRC Press, 2016. http://dx.doi.org/10.1201/b21890-104.

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Nefedov, Yu N., and M. E. Danchenko. "Technology and experience of application of underwater flux-cored wire arc semi-automatic cutting." In Underwater Wet Welding and Cutting. Elsevier, 1998. http://dx.doi.org/10.1533/9780857093165.96.

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Conference papers on the topic "Flux cored arc welding"

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Penniston, Christopher J., and Robert M. Huntley. "Tandem Flux-Cored Arc Welding for High Strength Line Pipe." In 2014 10th International Pipeline Conference. American Society of Mechanical Engineers, 2014. http://dx.doi.org/10.1115/ipc2014-33551.

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The benefits of mechanized welding for pipeline construction are well known, as reflected by the high industrial acceptance and usage of its variations. However, the engineering and qualification costs associated with the preparation of alternative acceptance criteria for typical pulsed and short-circuit MIG (GMAW-P and GMAW-S) girth welds can make the implementation of mechanization too costly and/or time consuming for small projects. A multi-wire welding technology, employing a high-deposition consumable that possesses excellent positional capability, along with paired digitally controlled a
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Kumaragurubaran, B., T. Senthilkuma, M. Vivekanandan, and V. Balasubramanian. "Effect of Shielding Gas on Weldmetal Properties in Flux Cored Arc Welding." In Aerospace Manufacturing and Automated Fastening Conference & Exhibition. SAE International, 2008. http://dx.doi.org/10.4271/2008-01-2285.

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Wadden, R., K. Zierold, J. Franke, L. Conroy, P. Scheff, and B. Thielen. "236. Estimation of Personal Exposures from a Flux-Cored Arc Welding Operation." In AIHce 2001. AIHA, 2001. http://dx.doi.org/10.3320/1.2765760.

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Thielen, B., R. Wadden, J. Franke, L. Conroy, and P. Scheff. "193. Exposures and Emission Factors from a Flux-Cored Arc Welding Operation." In AIHce 2000. AIHA, 2000. http://dx.doi.org/10.3320/1.2763525.

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Patrick, Charles W., and William F. Newell. "Understanding Welding Cost: Using Flux-Cored Arc Welding (FCAW) for Cost Reduction and Productivity Improvement." In ASME 2014 Pressure Vessels and Piping Conference. American Society of Mechanical Engineers, 2014. http://dx.doi.org/10.1115/pvp2014-28084.

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Welding is often listed as a production operation that companies would like to reduce overall cost and improve productivity; however, most companies merely implement cost reduction programs focused on lowering welding consumable costs. Though significant and important, these associated material costs typically represent only a small percentage to the total cost, i.e., 10 to 20% (welding consumables 8 to 15% and power and equipment 2 to 5%) of the overall welding cost in a typical U.S. welding operation. To further reduce welding costs, companies need to look further. Since labor and overhead,
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Yoon, C., N. Paik, K. Ha, et al. "365. Content Variation of Total Chromium and Hexavalent Chromium in Flux-Cored Arc Welding." In AIHce 2000. AIHA, 2000. http://dx.doi.org/10.3320/1.2763715.

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Teodoro Assunção, Marcelo, and Alexandre Bracarense. "Evaluation of the Wear Mechanisms in Contact Tip in Flux Cored Arc Welding Process Through a Pin-on-Disc Test." In 25th International Congress of Mechanical Engineering. ABCM, 2019. http://dx.doi.org/10.26678/abcm.cobem2019.cob2019-1220.

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He, Xiaodong, Chunyong Huo, Xinli Han, Lixia Zhu, and Chuanjing Zhuang. "Experimental Study on Girth Welds of X80 High Deformability Pipeline." In ASME 2008 Pressure Vessels and Piping Conference. ASMEDC, 2008. http://dx.doi.org/10.1115/pvp2008-61250.

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Girth welds of X80 high deformability pipeline were welded by self-shield flux-cored arc weld (FCAW) and manual shield-metal arc weld (SMAW). The FCAW used E9018-G electrode to weld root and under-matched flux-cored wires to fill welding and cap welding. The SMAW also used the same welding consumable to weld root, but the metal of the filler welding and cap welding is overmatched electrodes. The mechanical properties testing and metallography testing of girth welded joints were carried out. It was found that the qualifications of two welding procedures met the requirements of API Std. 1104. Th
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An, Gyubaek, Wanchuck Woo, and Jeongung Park. "The Effect of Welding Residual Stress Distribution in Thickness Direction With Thick Steel Plate to Identification of Fracture Toughness." In ASME 2016 35th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/omae2016-55086.

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Along with the rapid increase in the size of welding structures, the steel plate used for structure has been increased in thickness. Especially, the growing capacity of large scale ships such as container ships has led to an increase in the thickness and the strength of steel plates for shipbuilding. The toughness and the resistance to brittle fractures of the steel plate tend to decrease for thick plates, which is a result of the so-called thickness effect. Steel plates with 80mm thickness were used and two welding processes, which are flux cored arc welding (FCAW) process and electron gas we
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Pessoa, Ezequiel C. P., Alexandre Q. Bracarense, and Stephen Liu. "Exothermic Additions in a Tubular Covered Electrode and Oxidizing Reactions Influence on Underwater Wet Welding." In ASME 2007 26th International Conference on Offshore Mechanics and Arctic Engineering. ASMEDC, 2007. http://dx.doi.org/10.1115/omae2007-29734.

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During Underwater Wet Welding (UWW), the water that surrounds the arc decomposes liberating large amount of hydrogen and oxygen. As a consequence of the presence of these gases in the arc atmosphere and weld pool, porosity in the weld metal occurs. In the past years, many research programs had been carried out with the objective to reduce or eliminate porosity in wet welds. A simple way to accomplish this goal is using chemical elements or ingredients to promote or avoid certain chemical reactions in the weld pool. In conventional stick (shielded metal arc - SMA) electrodes, it is possible to
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Reports on the topic "Flux cored arc welding"

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INGALLS SHIPBUILDING INC PASCAGOULA MS. Evaluation of The Fillet Weld Shear Strength of Flux Cored ARC Welding Electrodes. Defense Technical Information Center, 1989. http://dx.doi.org/10.21236/ada447523.

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