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Articles

Microstructure and failure behaviour of resistance spot welded DP980 dual phase steel

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Pages 738-744 | Published online: 19 Jul 2013

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Read on this site (7)

S. Simončič & P. Podržaj. (2014) Resistance spot weld strength estimation based on electrode tip displacement/velocity curve obtained by image processing. Science and Technology of Welding and Joining 19:6, pages 468-475.
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C. Sawanishi, T. Ogura, K. Taniguchi, R. Ikeda, K. Oi, K. Yasuda & A. Hirose. (2014) Mechanical properties and microstructures of resistance spot welded DP980 steel joints using pulsed current pattern. Science and Technology of Welding and Joining 19:1, pages 52-59.
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M Pouranvari & S P H Marashi. (2013) Critical review of automotive steels spot welding: process, structure and properties. Science and Technology of Welding and Joining 18:5, pages 361-403.
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M Pouranvari & S P H Marashi. (2012) On failure mode of resistance spot welded DP980 advanced high strength steel. Canadian Metallurgical Quarterly 51:4, pages 447-455.
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M P Miles, C S Ridges, Y Hovanski, J Peterson, M L Santella & R Steel. (2011) Impact of tool wear on joint strength in friction stir spot welding of DP 980 steel. Science and Technology of Welding and Joining 16:7, pages 642-647.
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Articles from other publishers (53)

Bindu Pal, Murugaiyan Amirthalingam & S. Ganesh Sundara Raman. (2023) An Experimental Investigation on the High Cycle Fatigue Behavior of Resistance Spot Welded Ultrahigh Strength Steel. Journal of Materials Engineering and Performance.
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Sachin Alya, Bhargavi Ankamreddy & Ramesh Singh. (2023) Investigation of bonding strength and failure mechanisms for sustainable free-form remanufacturing via laser directed energy deposition. CIRP Journal of Manufacturing Science and Technology 42, pages 55-71.
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Farzad Badkoobeh, Hossein Mostaan, Mahdi Rafiei & Ali Bakhtiari. (2022) A Study on Phase Evolutions and Tensile-Shear Performance of Dissimilar Resistance Spot Welds Formed Between AISI 430 Ferritic Stainless Steel and AISI 321 Austenitic Stainless Steel. Journal of Materials Engineering and Performance 32:11, pages 5028-5042.
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Farzad Badkoobeh, Hossein Mostaan, Mahdi Rafiei & Mohamad Reza Bagheri. (2022) Microstructure and tensile-shear behavior of dissimilar resistance spot welds between 2304 duplex stainless steel and Inconel 718 superalloy. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 237:5, pages 1124-1136.
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Nitin KumarTapabrata MaityKanwer Singh Arora, Nikhil Shajan, Sagram Hembrom & Debdas Roy. (2023) Study of Laser Welding Process Parameter on the Microstructure and Mechanical Properties of Dissimilar Joining of Dual-Phase DP780 and Cold-Rolled CR340 Steel. Materials Performance and Characterization 12:1, pages 20220068.
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Nima Nadimi, Rostam Yadegari & Majid Pouranvari. (2022) Resistance Spot Welding of Quenching and Partitioning (Q&P) Third-Generation Advanced High-Strength Steel: Process–Microstructure–Performance. Metallurgical and Materials Transactions A 54:2, pages 577-589.
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Chakkaravarthi Rajarajan, Paramasivam Sivaraj, Tushar Sonar, Selvaraj Raja & Nallusamy Mathiazhagan. (2022) Nugget formation, microstructural features and strength of resistance spot welded cold-rolled dual-phase steel lap joints for automotive applications. Materials Testing 64:8, pages 1223-1233.
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F. Ternane, M. Benachour, F. Sebaa & N. Benachour. (2022) Regression Modeling and Process Analysis of Resistance Spot Welding on Dissimilar Steel Sheets. Engineering, Technology & Applied Science Research 12:4, pages 8896-8900.
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Shiping Zhang, Ali Ghatei-Kalashami, Abdelbaset R. H. Midawi & Norman Y. Zhou. (2022) A Comparison Between Hardness-Scaling and Ball-Indentation Techniques on Predicting Stress/Strain Distribution and Failure Behavior of Resistance Spot Welded Advanced High Strength Steel. Journal of Manufacturing Science and Engineering 144:8.
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Alireza Mohamadizadeh, Elliot Biro & Michael Worswick. (2022) Failure characterization and meso-scale damage modeling of spot welds in hot-stamped automotive steels using a hardness-mapping approach. Engineering Fracture Mechanics 268, pages 108506.
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Kemal Aydin, Mehtap Hidiroglu & Nizamettin Kahraman. (2022) Characterization of the Welding Zone of Automotive Sheets of Different Thickness (DP600 and DP800) Joined by Resistance Spot Welding. Transactions of the Indian Institute of Metals 75:5, pages 1279-1291.
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Imtiaz Ali Soomro, Srinivasa Rao Pedapati & Mokhtar Awang. (2021) A review of advances in resistance spot welding of automotive sheet steels: emerging methods to improve joint mechanical performance. The International Journal of Advanced Manufacturing Technology 118:5-6, pages 1335-1366.
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A. Mohamadizadeh, E. Biro & M. Worswick. (2021) Novel Double-Half Spot Weld Testing Technique For Damage Progress And Failure Analysis Using Digital Image Correlation Techniques. Experimental Mechanics 61:9, pages 1405-1418.
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Yunzhao Li, Huaping Tang & Ruilin Lai. (2021) Microstructure and Mechanical Performance of Resistance Spot Welded Martensitic Advanced High Strength Steel. Processes 9:6, pages 1021.
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M. Shamsujjoha, C.M. Enloe, Andrew Chihpin Chuang, Jason J. Coryell & H. Ghassemi-Armaki. (2021) Mechanisms of paint bake response in resistance spot-welded first and third generation AHSS. Materialia 15, pages 100975.
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Yunwu Ma, Akira Takikawa, Jun Nakanishi, Kazuyoshi Doira, Tetsuo Shimizu, Yongxin Lu & Ninshu Ma. (2021) Measurement of local material properties and failure analysis of resistance spot welds of advanced high-strength steel sheets. Materials & Design 201, pages 109505.
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Muhammed Elitas. (2021) Effects of welding parameters on tensile properties and fracture modes of resistance spot welded DP1200 steel. Materials Testing 63:2, pages 124-130.
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Giyeol Han, Sangun Ha, Karuppasamy Pandian Marimuthu, Siva Prasad Murugan, Yeongdo Park & Hyungyil Lee. (2021) Estimation of shear fracture load in resistance projection welded sheets with dissimilar strength and thickness. Engineering Failure Analysis 120, pages 105042.
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Heewon Cho, Sangwoo Nam, Minjung Kang, Munjin Kang & Young-Min Kim. (2020) Predicting Failure Modes of Resistance Spot Welds from the Chemical Composition of Materials. Journal of Welding and Joining 38:5, pages 450-459.
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Robson Ribeiro, Estevão Luiz Romão, Eduardo Luz, José Henrique Gomes & Sebastião Costa. (2020) Optimization of the Resistance Spot Welding Process of 22MnB5-Galvannealed Steel Using Response Surface Methodology and Global Criterion Method Based on Principal Components Analysis. Metals 10:10, pages 1338.
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Vijeesh Vijayan, Sivaprasad Murugan, Seong-Guk Son & Yeong-Do Park. (2020) Microstructural Analysis of Cavity Formed in Advanced High-Strength Steel Resistance Spot Welds. Journal of Materials Engineering and Performance 29:10, pages 6372-6377.
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Farzad Badkoobeh, Ashkan Nouri, Hossein Hassannejad & Hossein Mostaan. (2020) Microstructure and mechanical properties of resistance spot welded dual-phase steels with various silicon contents. Materials Science and Engineering: A 790, pages 139703.
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I.A. Soomro & S.R. Pedapati. (2020) Effect of multi pulse current treatment on microstructure and microhardness of resistance spot welded dual phase steel DP590. Materialwissenschaft und Werkstofftechnik 51:6, pages 699-705.
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S. Bag, C. DiGiovanni, X. Han & N. Y. Zhou. (2020) A Phenomenological Model of Resistance Spot Welding on Liquid Metal Embrittlement Severity Using Dynamic Resistance Measurement. Journal of Manufacturing Science and Engineering 142:3.
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Ehsan Javaheri, Janot Lubritz, Benjamin Graf & Michael Rethmeier. (2019) Mechanical Properties Characterization of Welded Automotive Steels. Metals 10:1, pages 1.
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Imtiaz Ali Soomro & Srinivasa Rao Pedapati. (2019) Application of in situ post weld heat treatment using double pulse technology and its effect on microstructure and mechanical performance of resistance spot welded HSLA350 steel. The International Journal of Advanced Manufacturing Technology 105:7-8, pages 3249-3260.
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Tiancai Zhu, Hongliang Liu, Xiaonan Wang, Yu Chen, Yafen Wang, Yang Hu, Bin Yang & Wengang Chen. (2019) Effect of welding current on microstructure and properties of 2 GPa press-hardened steel joints by RSW. Materials Research Express 6:11, pages 1165h5.
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Insung Hwang, Heewon Cho, Sangwoo Nam, Munjin Kang, Min-Seo Koo & Young-Min Kim. (2019) Effects of post-weld heat treatment on mechanical properties and microstructure of resistance spot–welded lightweight steel. The International Journal of Advanced Manufacturing Technology 104:9-12, pages 4813-4825.
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Cheng Luo & Yansong Zhang. (2019) Constitutive relationship of fusion zone in the spot welds of advance high strength steels. Journal of Manufacturing Processes 45, pages 624-633.
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Ehsan Javaheri, Andreas Pittner, Benjamin Graf & Michael Rethmeier. (2019) Mechanical properties characterization of resistance spot welded DP1000 steel under uniaxial tensile tests. Materials Testing 61:6, pages 527-532.
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J.H. Ordoñez, R.R. Ambriz, C. García, G. Plascencia & D. Jaramillo. (2019) Overloading effect on the fatigue strength in resistance spot welding joints of a DP980 steel. International Journal of Fatigue 121, pages 163-171.
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Omid Abedini, Mohsen Behroozi, Pirooz Marashi, Eslam Ranjbarnodeh & Majid Pouranvari. (2019) Intercritical Heat Treatment Temperature Dependence of Mechanical Properties and Corrosion Resistance of Dual Phase Steel. Materials Research 22:1.
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Feng Chen, Shiding Sun, Zhenwu Ma, GQ Tong & Xiang Huang. (2018) Effect of weld nugget size on failure mode and mechanical properties of microscale resistance spot welds on Ti–1Al–1Mn ultrathin foils. Advances in Mechanical Engineering 10:7, pages 168781401878528.
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Shuling Gao, Yuntao Li, Lijun Yang & Wencong Qiu. (2018) Microstructure and mechanical properties of laser-welded dissimilar DP780 and DP980 high-strength steel joints. Materials Science and Engineering: A 720, pages 117-129.
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A. Chabok, E. van der Aa, J.T.M. De Hosson & Y.T. Pei. (2017) Mechanical behavior and failure mechanism of resistance spot welded DP1000 dual phase steel. Materials & Design 124, pages 171-182.
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Xiao-pei Wang, Yong-qiang Zhang, Jian-bin Ju, Jian-qiang Zhang & Jian-wei Yang. (2016) Characteristics of Welding Crack Defects and Failure Mode in Resistance Spot Welding of DP780 Steel. Journal of Iron and Steel Research International 23:10, pages 1104-1110.
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Kumkum Banerjee. (2016) Improving weldability of an advanced high strength steel by design of base metal microstructure. Journal of Materials Processing Technology 229, pages 596-608.
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G. Manimaran, A.K. Lakshminarayanan & S. Balaji. (2015) Understanding the Parameters Controlling the Resistance Spot Welding of DP980 Steel. Applied Mechanics and Materials 787, pages 411-415.
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T. Hartman, M.P. Miles, S.-T. Hong, R. Steel & S. Kelly. (2015) Effect of PCBN tool grade on joint strength and tool life in friction stir spot welded DP 980 steel. Wear 328-329, pages 531-536.
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M. P. Miles, U. Karki, T. Lee & Y. Hovanski. 2016. Friction Stir Welding and Processing VIII. Friction Stir Welding and Processing VIII 229 240 .
M. Miles, U. Karki & Y. Hovanski. (2014) Temperature and Material Flow Prediction in Friction-Stir Spot Welding of Advanced High-Strength Steel. JOM 66:10, pages 2130-2136.
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H. Ghazanfari & M. Naderi. (2014) Expulsion characterization in resistance spot welding by means of a hardness mapping technique. International Journal of Minerals, Metallurgy, and Materials 21:9, pages 894-897.
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Nathan Saunders, Michael Miles, Trent Hartman, Yuri Hovanski, Sung-Tae Hong & Russell Steel. (2014) Joint strength in high speed friction stir spot welded DP 980 steel. International Journal of Precision Engineering and Manufacturing 15:5, pages 841-848.
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Xiaodong Wan, Yuanxun Wang & Peng Zhang. (2014) Effects of Welding Schedules on Resistance Spot Welding of DP600 Steel. ISIJ International 54:10, pages 2375-2379.
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Nick den Uijl, Fouad Azakane, Samet Kilic & Vincent Docter. (2013) Performance of Tensile Tested Resistance Spot and Laser Welded Joints at Various Angles. Welding in the World 56:11-12, pages 143-152.
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Nick Den Uijl, Tom Moolevliet, Arend Mennes, A. A. Van Der Ellen, Sullivan Smith, Tony Van Der Veldt, Toru Okada, Hitomi Nishibata, Masato Uchihara & Kuyoyuki Fukui. (2013) Performance of Resistance Spot-Welded Joints in Advanced High-Strength Steel in Static and Dynamic Tensile Tests. Welding in the World 56:7-8, pages 51-63.
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M. Pouranvari. (2012) Susceptibility to interfacial failure mode in similar and dissimilar resistance spot welds of DP600 dual phase steel and low carbon steel during cross-tension and tensile-shear loading conditions. Materials Science and Engineering: A 546, pages 129-138.
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S. Dancette, D. Fabregue, R. Estevez, V. Massardier, T. Dupuy & M. Bouzekri. (2012) A finite element model for the prediction of Advanced High Strength Steel spot welds fracture. Engineering Fracture Mechanics 87, pages 48-61.
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M. Pouranvari & S.P.H. Marashi. (2011) Failure mode transition in AHSS resistance spot welds. Part I. Controlling factors. Materials Science and Engineering: A 528:29-30, pages 8337-8343.
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M. Pouranvari, S.M. Mousavizadeh, S.P.H. Marashi, M. Goodarzi & M. Ghorbani. (2011) Influence of fusion zone size and failure mode on mechanical performance of dissimilar resistance spot welds of AISI 1008 low carbon steel and DP600 advanced high strength steel. Materials & Design 32:3, pages 1390-1398.
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C.S. Ridges, M.P. Miles, Y. Hovanski, J. Peterson & R. Steel. 2011. Friction Stir Welding and Processing VI. Friction Stir Welding and Processing VI 97 103 .
Rinsei IKEDA, Tsuyoshi MATSUMOTO, Masaaki KIMURA, Toshitaka SATSUTA & Hatsuhiko OIKAWA. (2011) Resistance Welding, Explosive Joining, Roll Bonding, Magnetic Bonding, Adhesive Bonding, Mechanical Joining and Other Joining Techniques. JOURNAL OF THE JAPAN WELDING SOCIETY 80:5, pages 450-453.
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Yunwu Ma, Akira Takikawa, Jun Nakanishi, Kazuyoshi, Doira, Tetsuo Shimizu, Yongxin Lu & Ninshu Ma. (2021) Measurement of Local Material Properties and Failure Analysis of Resistance Spot Welds of Advanced High-Strength Steel Sheets. SSRN Electronic Journal.
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