Open Access
Issue |
MATEC Web Conf.
Volume 392, 2024
International Conference on Multidisciplinary Research and Sustainable Development (ICMED 2024)
|
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Article Number | 01021 | |
Number of page(s) | 7 | |
DOI | https://doi.org/10.1051/matecconf/202439201021 | |
Published online | 18 March 2024 |
- Kalluri, Anil, SatyanarayanaKosaraju, and SwadeshKumar Singh. “Effect of subzerotreatment on tensilebehavior of ASS 316L.” AIP ConferenceProceedings. Vol. 2283. No. 1. AIP Publishing, 2020. [Google Scholar]
- Kosaraju, Satyanarayana, et al. “Evaluation and characterisation of ASS316L atsubzerotemperature.” Advances in Materials and Processing Technologies 6.2 (2020): 365-375. [CrossRef] [Google Scholar]
- Baloji, Dharavath, Kalluri Anil, K. Satyanarayana, SwadeshKumar Singh, and M. T. Naik. “Evaluation and optimization of materialproperties of ASS316L atsubzerotemperatureusingtaguchirobust design.” MaterialsToday: Proceedings 18 (2019): 4475-4481. [CrossRef] [Google Scholar]
- Kosaraju, S., Kalluri, A., Singh, S. K., &ul Haq, A. (2019, November). Evaluation and Characterization of ASS316L atsub-zerotemperature. In ASME International Mechanical Engineering Congress and Exposition (Vol. 59490, p. V012T10A034). American Society of MechanicalEngineers. [Google Scholar]
- Harshini, Dharanikota, et al. “Comparative study on mechanicalbehavior of ASS 316L for low and hightemperature applications.” MaterialsToday: Proceedings 19 (2019): 767-771. [CrossRef] [Google Scholar]
- Hussaini, Syed Mujahed, et al. “Development of experimental and theoreticalforminglimitdiagrams for warm forming of austeniticstainlesssteel 316.” Journal of ManufacturingProcesses 18 (2015): 151-158. [Google Scholar]
- Hussaini, Syed Mujahed, et al. “Development of experimental and theoretical forming limit diagrams for warm forming of austenitic stainless steel 316.” Journal of Manufacturing Processes 18 (2015): 151-158. [CrossRef] [Google Scholar]
- Desu, RaghuramKarthik, et al. “Mechanical properties of Austenitic Stainless Steel 304L and 316L at elevated temperatures.” Journal of Materials Research and Technology 5.1 (2016): 13-20. [CrossRef] [Google Scholar]
- Gupta, AmitKumar, V. K. Anirudh, and SwadeshKumar Singh. “Constitutive models to predict flow stress in AusteniticStainlessSteel 316 atelevatedtemperatures.” Materials& Design 43 (2013): 410-418. [CrossRef] [Google Scholar]
- Prabhakaran A, Bensely A, Nagarajan G, Mohanlal D. Effect of cryogenic treatment on impact strength of casecarburized steel-En353. Proceedings of IMEC2004 international mechanical engineering conference; 2004. p. 1–5. [Google Scholar]
- Johan Singh P, Guha B. Fatigue life improvement of AISI 304L cruciform welded joints by cryogenictreatment. Eng Fail Anal 2003;10:1–12. [CrossRef] [Google Scholar]
- S. Dineshkumar, ShrinidhySriram, R Surendran, V. Dhinakaran “Experimental Investigation of TensileProperties of Ti-6Al-4V alloy at Elevated Temperature” International Journal of Recent Technology andEngineering 8, no.1S2 (2019): 103-107. [Google Scholar]
- Failure analysis and prevention, in Metals Handbook, 9th Ed., Vol. 11, American Society for Metals, MetalsPark, OH, p. 111 (1986). [Google Scholar]
- Hussaini, S.M., Krishna, G., Gupta, A.K. and Singh, S.K., 2015. Development of experimental and theoreticalforming limit diagrams for warm formingof austenitic stainless steel 316. Journal of Manufacturing Processes,18,pp.151-158. [Google Scholar]
- Song, R.B., Xiang, J.Y. and Hou, D.P., 2011. Characteristics of mechanical properties and microstructure for 316L austenitic stainless steel. Journal of iron and steel research, international, 18(11),pp.53-59. [CrossRef] [Google Scholar]
- Desu, R.K., Krishnamurthy, H.N., Balu, A., Gupta,A.K. and Singh, S.K., 2016. Mechanical properties of Austenitic Stainless Steel 304L and 316L at elevated temperatures. Journal of Materials Research andTechnology, 5(1), pp.13-20. [CrossRef] [Google Scholar]
- Karthik, V., Murugan, S., Parameswaran, P., Venkiteswaran,C.N., Gopal,K.A., Muralidharan,N.G., Saroja, S. andKasiviswanathan, K.V., 2011. Austenitic stainless steels for fast reactors-irradiationexperiments, propertyevaluation and microstructural studies. Energy Procedia, 7,pp.257-263. [CrossRef] [Google Scholar]
- Elsariti, S.M., 2013. Behaviour of stress corrosion crackingofausteniticstainlesssteelsinsodiumchloridesolutions. Procedia Engineering, 53,pp.650-654. [CrossRef] [Google Scholar]
- Banabic D. Sheet metal forming process constitutive modeling and numerical simulations. Berlin/Heidelberg: Springer-Verlag; 2010. [Google Scholar]
- Kuroda M, Tvergaard V. Forming limit diagrams for anisotropic metal sheets with different yield criteria. Int J Solids Struct 2000;37:5037–59. [CrossRef] [Google Scholar]
- Geiger M, Merklein M. Determination of forming limit diagrams – a new analysis method for characterization of materials formability. Ann CIRP 2003;52:1–6. [Google Scholar]
- Chen J, Zhou X. A new curve fitting method for forming limit experimental data.J Mater SciTechnol 2005;21:521–5. [Google Scholar]
- Keeler SP. Determination of forming limits in automotive stampings. In: SAE midyear meeting. 1965. [Google Scholar]
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