eprintid: 2891 rev_number: 7 eprint_status: archive userid: 15 dir: disk0/00/00/28/91 datestamp: 2021-03-13 15:19:39 lastmod: 2022-09-02 04:09:39 status_changed: 2021-03-13 15:19:39 type: article metadata_visibility: show creators_name: Kartikasari, Ratna creators_id: kartikafajar@yahoo.com title: Effect of Aluminum Content on Microstructure and Corrosion Behavior of as Cast Fe-Al-C Alloys Lightweight Steel ispublished: pub subjects: TJ keywords: Fe-Al-C alloys, argon atmosphere, microstructure, corrosion resistance abstract: Effects of aluminum content on microstructure and corrosion behavior of as cast Fe-Al-C alloys lightweight steel have been studied. The alloys were prepared by an induction furnace under an argon atmosphere. Microstructure of Fe-Al-C alloys containing 1.24, 3.3, 5.5, 7.5, and 9.05 wt-% aluminum showed ferrite and pearlite, where the higher levels of Al increases the amountof ferrite structures. Scanning electron microscope test results indicate the presence of aluminum carbides at the grain boundary of pearlite of Fe-Al-C alloy with 3.3% up to 9.05% Al. At 9.05% Al alloy structure nearly 100% ferrite, pearlite structures remaining are in the ferrite grain boundaries. Anincrease Al content resulted in significant improvement corrosion resistance in 0.5% NaCl solution. date: 2014 date_type: published publisher: Research India Publications official_url: https://itny.ac.id contact_email: library@sttnas.ac.id full_text_status: public publication: International Journal of Applied Engineering Research volume: 9 number: 13 article_number: . pagerange: 2241-2249 refereed: TRUE issn: 0973-4562 referencetext: References [1] Shackelford, J.F., 1992, Introduction to Material Science for engineers, Effect of Aluminum Content on Microstructure and Corrosion Behavior 2249 Paris. Sec.4. [4] [12] Giza, K., Bala, H., Wysocki, J.J., and Szymura, S., 1999, Corrosion Resistance of Fe-Al-C Permanent Magnet Alloy, Intermetallic, Vol.6, issue 5, p.357-362. [13] Chao, Y.C., and Liu, C.H., 2002, Effect of Mn Content on the Microstructure and Mechanical Properties of Fe-10Al-xMn-1.0C Alloy, Materials Transactions, Vol. 3, No. 10, pp. 2635-2642. [15] Shankar Rao, V., 2004, High Temperature Oxidation Behavior of Fe-Al-C alloys : an Overview, Materials Science and Engineering. A, Vol. 364, No. 1- 2, pp 232-239. [16] Tjong, S.C., 1986, Stress Corrosion Cracking behavior of the duplex Fe-10Al29Mn-0, 4C alloy in 20% NaCl solution at 100o C, Journal of Material Science, [14] Honeycombe, R.W.K. and Bhadeshia, H.K.D., 1995, Steel Microstructure and Properties, 2nd ed., Edward Arnold, London. [11] Kao, C.H., dan Wan C.M., 1988, Effect of Manganese on the oxidation of Fe-Mn-Al-CAlloys, Journal of Materials Science, Vol. 23, pp.: 744-752. Vol. 21, pp.: 1166-1170. [8] Baligidad, R.G., Prakash, U., and Radha Krishna, 1998, Effect of Carbon Addition on Structure and Mechanical Properties of Electroslag Remelted Fe-0wt.% Al alloy, Vol. 249, No. 1-2, pp.97-102. Huang, B.X., Wang, X.D., Rong, Y.H., Wang, L., and Jin, L., 2006, Mechanical behavior and martensitic transformation of an Fe–Mn–Si–Al–Nb alloy, Materials Science Engineering A 438-440 pp. 306-311 [5] Kobayashi, S., Zaefferer, S., Schneider, A., Raabe, D., and Frommeyer, G., 2005, Optimisation of Precipitation for Controlling Recrystallization of Wrought Fe3Al Based Alloys, Intermetallics, 13, pp.1296-1303. [6] Jablonska, M., Jasik, A., and Hanc, A., 2009, Structures and Phases transitions of The Alloys on the bases of Fe-Al Intermetallic Phases, International Scientific Journal vol. 29. Issue 1, pp.16-19. [7] Baligidad, R.G., Prakash, U., Ramakrishna Rao, V., Rao, P.K., and Ballal N.B., 1996, Effect of Carbon Content on Mechanical Properties of Electroslag Remelted Fe3Al Based Intermetallic alloys, ISIJ, Vol. 36, No.12, 1453-1458. [9] Baligidad, R.G., and Satya Prasad, K./2007, Effect of Al and C on Structure And Mechanical Properties of Fe-Al-C alloys, Materials Science And Technology, vol 23, no. 1, pp.: 38-44. [10] Parker, S.H.F., Grundy, P.J., Jones, G.A., Briggs, I. and Clegg, A.G., 1988, Micro structural and Magnetic Properties of the Permanent Magnet Material Fe-Al-C, Journal of Material Science, Vol. 23, pp. : 217-222. citation: Kartikasari, Ratna (2014) Effect of Aluminum Content on Microstructure and Corrosion Behavior of as Cast Fe-Al-C Alloys Lightweight Steel. International Journal of Applied Engineering Research, 9 (13): .. pp. 2241-2249. ISSN 0973-4562 document_url: https://repository.itny.ac.id/id/eprint/2891/1/Effect%20of%20Aluminum%20Content%20on%20Microstructure%20and%20Corrosion%20Behavior%20of%20as%20Cast%20Fe-Al-C%20Alloys%20Lightweight%20Steel%20_.pdf