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Akhmad Ardian Korda
"The kinetics of strain aging behavior of API 5L X65 and API 5L B steel types on long-term operations were studied. Pre-strain was applied to the two steel types and the process was continued with the aging process at various temperatures and over various time periods. Mechanical properties data were used to determine activation energy levels. The results showed that API 5L B steel has a lower activation energy level than API 5L X65 steel through the identification of yield strength value, which is 13.7 kJ compared to 24.87 kJ, which means that API 5L B steel is more susceptible to strain aging than API 5L X65 steel. Predictions of long-term mechanical properties which are verified through tensile testing showed that the appropriate parameters to observe and predict the strain-aging behavior are implemented by evaluating the changes in yield strength, which gives the minimum value for the average margin of error for API 5L X65 steel and API 5L B steel, i.e. 0.3% and 0.45%, respectively. On the other hand, prediction value parameters, such as elongation, toughness and the Vickers hardness have an average margin of error range between 2.6 to 5.06%."
Depok: Faculty of Engineering, Universitas Indonesia, 2016
UI-IJTECH 7:3 (2016)
Artikel Jurnal  Universitas Indonesia Library
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Sihombing, Lise Maitner
"Ketahanan pipeline steel API 5L X70 MO/MS dan X65 MO terhadap serangan hidrogen yang diaplikasikan dalam lingkungan yang bersifat sour service dengan dilakukannya pengujian Hydrogen Induced Cracking (HIC) dianalisa dengan melihat perubahan yang terjadi pada nilai mekanikal dan perubahan mikro struktur yang dihasilkan setelah hasil uji HIC. Pengujian HIC dilakukan dengan mengikutis spesifikasi uji dari NACE TM0284. Perubahan nilai mekanikal diinvestigasi dengan melihat nilai uji tarik dan nilai kekerasaan dan perubahan struktur mikro diinvestigasi dengan menggunakan Scanning Electron Microscope (SEM) dan Energy Dispersive Spectrocopy (EDS). Dari data nilai pengujian tarik tanpa HIC dan sesudah HIC, nilai kuat luluh dan elongasi pipa setelah uji HIC mengalami penurunan dan nilai kuat tarik pipa mengalami kenaikan. Kenaikan nilai kuat tarik menjadi acuan bahwa pengujian HIC dengan waktu uji selama 96 jam telah cukup menunjukkan adanya difusi hidrogen pada permukaan sampel pipa. Pada pengukuran nilai kekerasaan terdapat kecenderungan kenaikan nilai kekerasaan pada daerah lasan dan daerah terkena panas sebagian baik pada pipa X 70 dan X 65, untuk area logam induk pada pipa X 70 terjadi penurunan nilai kekerasaan setelah uji HIC. Penurunan nilai kekerasaan pada logam induk pipa X 70 lebih diakibatkan karena terdapatnya kumpulan unsur paduan metalik yang terjadi pada permukaan pipa X 70. Dari hasil pengamatan dengan menggunakan EDS terdapat area terindikasi yang disebabkan karena terbentuknya kumpulan unsur paduan metalik pada permukaan pipa sampel yang mengakibatkan perubahan topografi permukaan pipeline steel.

The resistance of the pipeline steel API 5L X70 MO / MS and X65 MO from hydrogen attacks applied in a sour service environment by Hydrogen Induced Cracking (HIC) testing is analyzed by looking at the changes of the mechanical properties and microstructure changes produced after the HIC test results. HIC test is done by specification from NACE TM0284. Changes in mechanical properties were investigated by looking at the value of tensile test and the hardness, the microstructure changes were investigated using Scanning Electron Microscope (SEM) and Energy Dispersive Spectrocopy (EDS). From the tensile test without HIC and after HIC, the yield strength and pipe elongation after the HIC test decreased and the tensile strength of the pipe increased. The increase in tensile strength is a reference that HIC testing with a test time of 96 hours has sufficiently shown the presence of hydrogen diffusion on the surface of the pipe sample. On the measurement of the hardness there is a tendency to increase the hardness in the welded area and heat affected areas in both the X 70 and X 65 pipes, for the base metal in the X 70 pipeline there is a decrease the hardness after the HIC test. Decrease in the hardness value on the base metal of pipe X 70 more due to the presence of metallic alloy elements that occur on the surface of pipe X 70. From the observation by using EDS there is an indicated area caused by the formation of metallic alloy elements on the surface of the sample pipe, resulting topographic Surface changes in pipeline steel."
Depok: Fakultas Teknik Universitas Indonesia, 2017
T52615
UI - Tesis Membership  Universitas Indonesia Library
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Sihombing, Lise Maitner
"Ketahanan pipeline steel API 5L X70 MO/MS dan X65 MO terhadap serangan hidrogen yang diaplikasikan dalam lingkungan yang bersifat sour service dengan dilakukannya pengujian Hydrogen Induced Cracking HIC dianalisa dengan melihat perubahan yang terjadi pada nilai mekanikal dan perubahan mikro struktur yang dihasilkan setelah hasil uji HIC. Pengujian HIC dilakukan dengan mengikutis spesifikasi uji dari NACE TM0284. Perubahan nilai mekanikal diinvestigasi dengan melihat nilai uji tarik dan nilai kekerasaan dan perubahan struktur mikro diinvestigasi dengan menggunakan Scanning Electron Microscope SEM dan Energy Dispersive Spectrocopy EDS . Dari data nilai pengujian tarik tanpa HIC dan sesudah HIC, nilai kuat luluh dan elongasi pipa setelah uji HIC mengalami penurunan dan nilai kuat tarik pipa mengalami kenaikan. Kenaikan nilai kuat tarik menjadi acuan bahwa pengujian HIC dengan waktu uji selama 96 jam telah cukup menunjukkan adanya difusi hidrogen pada permukaan sampel pipa. Pada pengukuran nilai kekerasaan terdapat kecenderungan kenaikan nilai kekerasaan pada daerah lasan dan daerah terkena panas sebagian baik pada pipa X 70 dan X 65, untuk area logam induk pada pipa X 70 terjadi penurunan nilai kekerasaan setelah uji HIC. Penurunan nilai kekerasaan pada logam induk pipa X 70 lebih diakibatkan karena terdapatnya kumpulan unsur paduan metalik yang terjadi pada permukaan pipa X 70. Dari hasil pengamatan dengan menggunakan EDS terdapat area terindikasi yang disebabkan karena terbentuknya kumpulan unsur paduan metalik pada permukaan pipa sampel yang mengakibatkan perubahan topografi permukaan pipeline steel.

The resistance of the pipeline steel API 5L X70 MO MS and X65 MO from hydrogen attacks applied in a sour service environment by Hydrogen Induced Cracking HIC testing is analyzed by looking at the changes of the mechanical properties and microstructure changes produced after the HIC test results. HIC test is done by specification from NACE TM0284. Changes in mechanical properties were investigated by looking at the value of tensile test and the hardness, the microstructure changes were investigated using Scanning Electron Microscope SEM and Energy Dispersive Spectrocopy EDS. From the tensile test without HIC and after HIC, the yield strength and pipe elongation after the HIC test decreased and the tensile strength of the pipe increased. The increase in tensile strength is a reference that HIC testing with a test time of 96 hours has sufficiently shown the presence of hydrogen diffusion on the surface of the pipe sample. On the measurement of the hardness there is a tendency to increase the hardness in the welded area and heat affected areas in both the X 70 and X 65 pipes, for the base metal in the X 70 pipeline there is a decrease the hardness after the HIC test. Decrease in the hardness value on the base metal of pipe X 70 more due to the presence of metallic alloy elements that occur on the surface of pipe X 70. From the observation by using EDS there is an indicated area caused by the formation of metallic alloy elements on the surface of the sample pipe, resulting topographic Surface changes in pipeline steel."
Depok: Fakultas Teknik Universitas Indonesia, 2017
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Shkarofsky, I.P.
Reading, MA: Addison-Wesley, 1966
533.7 SHK p
Buku Teks SO  Universitas Indonesia Library
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Laidler, Keith James, 1916-
New Delhi: Tata McGraw-Hill, 1993
541.39 LAI c
Buku Teks SO  Universitas Indonesia Library
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Moore, John W.
New York: John Wiley & Sons, 1981
541.394 MOO k (1)
Buku Teks SO  Universitas Indonesia Library
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Laidler, Keith James, 1916-
New York: McGraw-Hill, 1950
541.394 LAI c (1);541.394 LAI c (2)
Buku Teks SO  Universitas Indonesia Library
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House, J.E.
Dubuque: Iowa: Wm. C. Brown, 1997
541.394 HOU p
Buku Teks SO  Universitas Indonesia Library
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Connors, Kenneth Antonio, 1932-
New York: VCH, 1990
541.394 CON c
Buku Teks SO  Universitas Indonesia Library
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Frost, Arthur A.
New York: John Wiley & Sons, 1961
541.394 FRO k
Buku Teks SO  Universitas Indonesia Library
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