ANALISIS KEGAGALAN THERMAL DEAERATOR VESSEL CAPACITY 15 M3

Authors

  • Moh. Miftachul Munir PPNS
  • Imam Khoirul R PPNS
  • Hendri Budi K PPNS

Keywords:

SCC, Chloride, senzitisation, intergranular corrosion

References

DAFTAR PUSTAKA

ASTM E3, (2017). Standard for preparation of metallographic specimen, ASTM.

ASTM E92, (2017). Standard test method fo vickers Hardness and Knoop Hardness for metallic material, ASTM.

ASTM E415 OR E1251, (2021). OES/Standard Test Method for Analysis of Carbon and Low-Alloy Steel by Spark Atomic Emission Spectrometry. ASTM.

ASTMA E407, (2015). Standard practice for microetching metals and alloys, ASTM.

Suzuki, shunichi., Takamori, Kenrou. (2009). Stress corrosion cracking in lowcarbon

stainless steel component in BWRs. E-Journal of Advance maintenance,vol.1(2009) 1-29.

Bulloch, J.H., Rochford, E. (2000). In-service electrochemical potential data in a deaerator feedwater storage vessel; the influence of a noble metal coating. International Journal of pressure vessel and piping, 77 (2000), 485-499.

Kongwisawamirt, P. (2021). Cracking in Deaerator vessel (V-4634). Chemical Process Safety Sharing, 8th.

Turcott,S, Hasselman, K (1993). Failure analysis of deaerator piping, Steel image Inc, . EPRI. (2010). Deaerator tank assessment guideline, technical guide . Palo Alto, California.

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Published

2025-11-27

How to Cite

Moh. Miftachul Munir, Imam Khoirul R, & Hendri Budi K. (2025). ANALISIS KEGAGALAN THERMAL DEAERATOR VESSEL CAPACITY 15 M3. Prosiding Seminar Nasional Terapan Riset Inovatif (SENTRINOV), 11(1), 447 - 455. Retrieved from https://proceeding.isas.or.id/index.php/sentrinov/article/view/1727