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Year 2018, Volume: 2 Issue: 4, 119 - 127, 20.12.2018
https://doi.org/10.26701/ems.477224

Abstract

References

  • [1]“Metallography and Microstructure”, Metals Handbook, American Society for Metals, Vol. 9, p. 9, 1985.
  • [2] C. E. Sims, “Transactions of the Metallurgical Society of AIME”, p. 367-393, 1959.
  • [3] R. Kiessling and N. Lange, “Non-Metallic Inclusions in Steel”, Second Edition, Book No. 194, 1978.
  • [4] ASTM E45-18a, Standard Test Methods for Determining the Inclusion Content of Steel, ASTM International, West Conshohocken, PA, 2018, www.astm.org

Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect

Year 2018, Volume: 2 Issue: 4, 119 - 127, 20.12.2018
https://doi.org/10.26701/ems.477224

Abstract

Surface hardening in steels is
a process in which a chemical composition is changed by thermo-chemical
processes in a determined region and, accordingly, some micro-structure is
changed. In order to obtain a harder layer than the inner region starting from
the surface to a certain depth, it is mostly provided by diffusion of elements
such as nitrogen and carbon. The process is particularly important in low and
medium carbon steels in terms of increasing wear resistance, tensile strength
and fatigue strength. The amount of elements used in cementation together with
the duration of cementation is extremely important in terms of the harmonious
change of structural differentiation.



The effect of size and
position of inclusions on the cracked structures which is affected from heat
treatment is presented in the paper.

References

  • [1]“Metallography and Microstructure”, Metals Handbook, American Society for Metals, Vol. 9, p. 9, 1985.
  • [2] C. E. Sims, “Transactions of the Metallurgical Society of AIME”, p. 367-393, 1959.
  • [3] R. Kiessling and N. Lange, “Non-Metallic Inclusions in Steel”, Second Edition, Book No. 194, 1978.
  • [4] ASTM E45-18a, Standard Test Methods for Determining the Inclusion Content of Steel, ASTM International, West Conshohocken, PA, 2018, www.astm.org
There are 4 citations in total.

Details

Primary Language English
Subjects Mechanical Engineering
Journal Section Research Article
Authors

Tuğrul Soyusinmez 0000-0001-8333-1961

M. Ardan Kayaaltı This is me 0000-0002-4850-3454

Oğuzcan Güzelipek 0000-0002-0411-9346

Gökçe Akkuş 0000-0002-7202-3944

Taner Kavas 0000-0003-1070-8451

Publication Date December 20, 2018
Acceptance Date November 20, 2018
Published in Issue Year 2018 Volume: 2 Issue: 4

Cite

APA Soyusinmez, T., Kayaaltı, M. A., Güzelipek, O., Akkuş, G., et al. (2018). Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect. European Mechanical Science, 2(4), 119-127. https://doi.org/10.26701/ems.477224
AMA Soyusinmez T, Kayaaltı MA, Güzelipek O, Akkuş G, Kavas T. Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect. EMS. December 2018;2(4):119-127. doi:10.26701/ems.477224
Chicago Soyusinmez, Tuğrul, M. Ardan Kayaaltı, Oğuzcan Güzelipek, Gökçe Akkuş, and Taner Kavas. “Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect”. European Mechanical Science 2, no. 4 (December 2018): 119-27. https://doi.org/10.26701/ems.477224.
EndNote Soyusinmez T, Kayaaltı MA, Güzelipek O, Akkuş G, Kavas T (December 1, 2018) Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect. European Mechanical Science 2 4 119–127.
IEEE T. Soyusinmez, M. A. Kayaaltı, O. Güzelipek, G. Akkuş, and T. Kavas, “Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect”, EMS, vol. 2, no. 4, pp. 119–127, 2018, doi: 10.26701/ems.477224.
ISNAD Soyusinmez, Tuğrul et al. “Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect”. European Mechanical Science 2/4 (December 2018), 119-127. https://doi.org/10.26701/ems.477224.
JAMA Soyusinmez T, Kayaaltı MA, Güzelipek O, Akkuş G, Kavas T. Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect. EMS. 2018;2:119–127.
MLA Soyusinmez, Tuğrul et al. “Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect”. European Mechanical Science, vol. 2, no. 4, 2018, pp. 119-27, doi:10.26701/ems.477224.
Vancouver Soyusinmez T, Kayaaltı MA, Güzelipek O, Akkuş G, Kavas T. Crack Analysis in the Sae 1117 Steel Shafts for Inclusion and Heat Treatment Combination Effect. EMS. 2018;2(4):119-27.

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