박사

고로 벽부 내화물의 마모거동 및 결합구조 개선 연구

김장원 2018년
논문상세정보
' 고로 벽부 내화물의 마모거동 및 결합구조 개선 연구' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 금속학
  • alkali erosion
  • blast furnace
  • deform
  • refractory
  • wear
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
91 0

0.0%

' 고로 벽부 내화물의 마모거동 및 결합구조 개선 연구' 의 참고문헌

  • Y. W. Yu, C. G. Bai, Z. R. Zhang, F. Wang, D. G. Lv & C. Pan, Theoretical calculation and validation of burden trajectory in bell.less top blast furnace, Ironmaking and Steelmaking, 36 (2009) 505.
  • Y. Okuno, S. Matsuzaki, K. Kunitomo, M. Isoyama and Y. Kusano, Development of a mathematical model to estimate burden distribution in bell-less type charging for blast furnace, Tetsu-to-Hagan , 73 (1987) 91.
  • Y. Okuno, K. Kunitomo, T. Irita, S. Matsuzaki, Tetsuto Hagan , Influence of coke layer collapse phenomenon on burden distribution at the top of blast furnace, Tetsu-to-Hagan , 72 (1986) 783.
  • Y. Matsui, A. Kasai, K Ito, T. Matsuo, S. Kitayama, N. Nagai, Stabilizing burden trajectroy into blast furnace top under high ore to coke ratio operation, ISIJ Int., 43 (2003) 1159
  • Y. Ishikawa, T. Yamamoto, Y. Abe, Κ. Okuda, Operation methods and improved blast furnace cooling and lining techniques for prolongation of campaign life, proceedings of the 1st european ironmaking conference (EIC), Aachen, 1986, Vol 3, V2.
  • W. Koen, J. Van Laar, N. Noort, K. Schmidt, C. Stolwijk and J. Van Stralen, The modernization and reline of Hoogovens No. 7 blast furnace, AIME Ironmaking Conf. Proc. (Toronto), 51 (1992), 275.
  • V. A. Kamenskikh, I. D. Kashcheev, N. A. Mityushov, A. A. Gulyaev, M. V. Kotova, A. S. Kiselev and S. A. Leshkeev, Silicon carbide refractory castables, Refract. Ind. Ceram. 46 (2005) 412.
  • T. Narushima, T. Goto, T. Hirai and Y. Iguchi, High temperature oxidation of silicon carbide and silicon nitride, Mater. Trans. JIM, 38 (1997) 821.
  • T. Inada, Y. Kajiwara, T. Tanaka, 49th Ironmak. Conf. Proc., Iron and Steel Society, Warrendale, PA (1990) p. 263.
  • T. Inada, K. Takatani, K. takata and T. Yamamoto, The effect of the change of furnace profile with the increase in furnce volume on operation, ISIJ Int., 43 (2003) 1143.
  • T. Inada, A. Kasai, K. Nakano, S. Komatsu and A. Ogawa, Dissection investigation of blast furnace hearth—Kokura No. 2 blast furnace (2nd campaign), ISIJ Int., 49 (2009) 470.
  • T. Goto and H. Homma, High-temperature acive/passive oxidation and bubble formation of CVD SiC in O2 and CO2 atmospheres, J. Eur. Ceram. Soc. 22 (2002) 2749.
  • T. Altan, M. Knoerr, Application of the 2D finite element method to simulation of cold-forging processes, J. Mater. Process. Technol. 35 (1992) 275.
  • S. W. Choi, J. L. Yoo, T. H. Choi and K. T. Kim, Measuring thickness of the copper stave in blast furnace using ultrasonic technique in cooling line, ICCAS 2010 in KINTEX, Gyeonggi.do, Korea.
  • S. SinghaL , Thermodynamics and kinetics of oxidation of hot-pressed silicon nitride, J. Mater. Sci., 11( 1976) 500.
  • S. R. Zhang, Practice for extending blast furnace campaign life at Wuhan iron and steel corporation, J. Iron Steel Res. Int., 13 (2006) 1.
  • S. Nestorovic, J. Min. Metall. Sect. B-Metall, Influence of deformation degree at cold-rolling on the anneal hardening effect in sintered copper-based alloys, 40 (2004) 101.
  • S. N. Silva, F. Vernilli, S. M. Justus, O. R. Marques, A. Mazine, J. B. Baldo, E. Longo3 and J. A. Varela, Wear mechanism for blast furnace hearth refractory lining, Ironmaking and Steelmaking, 32 (2005) 459.
  • S. K. Jung, C. Y. Baek and W. S. Chung, The analysis on solid flow transition in the vertical direction of blast furnace, J. Kor. Inst. Met. & Mater., 39 (2001) 1179.
  • S. Balamurugan, R. Shunmugasundaram, M. Patra, S. Pani and M. Dutta, Evaluation of copper stave remnant thickness in blast furnace using ultrasonic method, ISIJ Int., 55 (2015) 605.
  • R. Takahashi, S. Kurozu and Y. Takahashi, Tetsu-to-Haganė, Redu -ction rates of iron oxide pellet with hydrogen at high pressures, 66 (1980) 23
  • P. den Exter, R. Molenaar, G. Tijhuis and H. Toxopeus, Corus IJmuiden BF No. 6 ends successful 16year campaign, ISSTech 2003.
  • N. S. JACOBSON, Corrosion of silicon‐based ceramics in combustion environments, J. Amer. Ceram. Soc. 76 (1993) 3.
  • M. R. Bateni, F. Ashrafizadeh, J.A. Szpunar, and R.A.L. Drew, Improving the tribological behavior of copper through novel Ti–Cu intermetallic coatings, Wear, 253 (2002) 626.
  • M. F. Barb s, E. Marinas, E. Brandaleze, R. Parra, L.F. Verdeja, G.A. Castillo, R. Col s, Design of Blast furnace crucibles by means of the nodal wear model, ISIJ Int. 48 (2008) 134.
  • M. A. Mulla and V. D. Krstic, Pressureless sintering of β-SIC with Al203 Additions, J. Mater. Sci., 29 (1994) 934.
  • M. A. Mulla and V. D. Krstic, Mechanical Properties of β-SIC Pressureless Sintered with Al203 Additions, Acta Met. Mater, 42 (1994) 303.
  • L. Ogbuji, Role of SizNzO in the passive oxidation of CVD Si,N,. J. Am. Ceram. Sot., 75 (1992) 2995.
  • L. L. Snead, T. Nozawa, Y. Katoh, T. S. byun, S. Kondo and D. A. Petti, Handbook of SiC properties for fuel performance modeling, J. Nucl. Mater. 371 (2007) 329.
  • L. H. Mair, T. A. Stolarski, R. W. Vowles and C. H. Lloyd, Wear: mechanism, manifestations and measurement. Report of a workshop. J Dent 24 (1996) 141-148.
  • K. Okimoto, S. Inaba, R. Ono and M. Takada. Tetsu-to-Hagan 71, A9 (1985).
  • K. L. Luthra, Some new perspectives on oxidation of silicon carbide and silicon nitride, J. Am. Ceram. Soc., 74, 1095 (1991).
  • K. Kawaoka, K. Anan, A. Tsuda, K. Kakiuchi, Y. Matsuoka, H. Takeshita, K. Nishioka, H. Takasaki, Last blast furnace relining technology at nippon steel, Nippon steel technical report, No. 94 (2006).
  • J.R. Davis, ASM Specialty Handbook: Copper and copper alloy, p.31-53, ASM Int. OH, USA (2001)
  • J.R. Davis, ASM Specialty Handbook: Copper and copper alloy, p.242-263, ASM Int. OH, USA (2001)
  • J. W. Kim, J. I. Park, K. W. Lee, E. H. Kwon, K. M. Kim, J. H. Kwon, J. K. Chung, T. H. Choi and J. W. Han, Wear characteristics of cooling Cu stave during blast furnace operating conditions, J. Kor. Inst. Met. & Mater., Vol. 53, No. 5 (2015) 370.
  • J. K. Yoon, J. D. Shim, Ferrous metallurgy for specialists. Seoul: Daewoong, Pub; 2004
  • J. J. Povermo, Blast furnace burden distribution principles and practices, Iron and Steel Society (1995) p. 1.
  • J. I. Park, U. H. Baek, K. S. Jang, H. S. Oh and J. W. Han, Development of the burden distribution and gas flow model in the blast furnace shaft, ISIJ Int., 51 (2011) 1617.
  • J. I. Park, H. J. Jung, M. K. Jo, H. S. Oh, J. W. Han, Mathematical modeling of the burden distribution in the blast furnace shaft, Met. Mater. Int., 17 (2011) 485.
  • I. Cudu, M. P. Ionescu, V. Munteanu, I. F. Sandu, and P. Nedelcu, A tribosystemic approach to refractory lining destruction in blast furnaces, Wear 216, 251 (1998).
  • G. X. Wang, G. Q. (MAX) LU, Benyan PEI and A. B. Yu, Oxidation mechanism of Si3N4 bonded SiC ceramics by CO, CO2 and steam, J. Mater. Sci., 33 (1998) 1309.
  • G. X. Wang, Benyan PEI and J. D. Litster, High temperature behavior of Si3N4 bonded SiC bricks in blast furnace environment, ISIJ int., 38 (1998) 1326.
  • G. R. Pickrell, T. Sun, J. J. Brown, High temperature alkali corrosion of SiC and Si3N4, Fuel Proces. Tech., 44 (1995) 213.
  • G. Jiacheng and Z. Yaping, Application of graded ceramic coatings for thermal barriers, Surf. Coat. Technol, 63 (1994) 93.
  • F. M. Zhang, Design and operation control for long campaign life of blast furnaces, J. Iron Steel Res. Int. 20 (2013) 53.
  • F. A. Sadykov, N. P. Barykin, and I. R. Aslanyan, The influence of strain-heat processing on copper wear , Wear, 212 (1997) 160.
  • E. Wilms, J. Janz, Η. Β. Lungen, M. Peters, P. Schmole, Prolongation of blast furnace campaigns.factors which affect the life of the furnace hearth, Stahl und Eisen, 113 (1993) 81.
  • Du, H., Tressler, R., Spear, K. and Pantano, C., Oxidation studies of crystalline CVD silicon nitride. J. Electrochem. Sot., 136 (1989) 1527.
  • C. L. Keran and R W. Brown, World report on silicon carbide blast furnace refractories, iron Steel Eng., 64 (1987), 35.
  • A. Shinotake, H. Nakamura, N. Yadoumaru, Y. Morizane and M. Meguro, Investigation of blast-furnace hearth sidewall erosion by core sample analysis and consideration of campaign operation, ISIJ Int., 43 (2003) 321.
  • A. Gallet-Doncieux, O. Bahloul, C. Gault, M. Huger, T. Chotard, Investigations of SiC aggregates oxidation: influence on SiC castables refractories life time at high temperature, J. Eur. Ceram. Soc., 32 (2012) 73.
  • A. G. Evans and D. B. Marshall, Fundamentals of friction and wear of materials, pp.439-452, ASM, Ohio (1981).