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Improvement of low-cycle fatigue

resistance in AISI 4140 steel by annealing treatment

By Muhammad Badaruddin

WORD COUNT 8745 TIME SUBMITTED 26-FEB-2020 08:18AM

PAPER ID 55895225

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Improvement of low-cycle fatigue resistance in AISI 4140 steel by annealing treatment

ORIGINALITY REPORT

PRIMARY SOURCES

M. Badaruddin, Sugiyanto, H. Wardono, Andoko, C.J. Wang, A.K. Rivai. "Improvement of low-cycle

fatigue resistance in AISI 4140 steel by annealing treatment", International Journal of Fatigue, 2019

Crossref

biblio.ugent.be

Internet

nespurban.edu.au

Internet

M Badaruddin, Zulhanif, H Supriadi. "Low Cycle Fatigue Properties of Extruded 6061-T6 Aluminum Alloy", Journal of Physics: Conference Series, 2019

Crossref

cronfa.swan.ac.uk

Internet

Yang, Z.. "Analytically calibrated Box-Cox percentile limits for duration and event-time models",

Insurance Mathematics and Economics, 20041206

Crossref

Delprete, Cristiana, and Carlo Rosso. "Residual Life Estimation Under Low-Cycle and Thermo-Mechanical

Fatigue Conditions: Proposal of a Dedicated Numerical Code", Volume 1 Applied Mechanics Automotive Systems Biomedical Biotechnology Engineering Computational Mechanics Design Digital Manufacturing Education Marine and Aerospace

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Applications, 2014.

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Badaruddin, Mohammad, Harnowo Supriadi, and Erwin. "Improvement of the High Temperature

Oxidation of 1.10Cr-0.25Mo Steel at 850°C by Hot-dip Al Coating", Procedia Engineering, 2012.

Crossref

Pereira, João, José Ruano, Simon Schaffrath, Abílio M. P. de Jesus, António A. Fernandes, and Markus

Feldmann. "Ultra-Low-Cycle Fatigue Behaviour of Full-Scale Elbows", Volume 6A Materials and Fabrication, 2015.

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