期刊文献+

蠕墨铸铁铁液状态的定量化测评 被引量:4

Quantitative Measurement of Compacted Graphite Cast Iron Melt Quality
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摘要 高质量蠕墨铸铁的最佳生产方式是在炉前预处理(蠕化和孕育)后,对铁液状态进行快速准确测评,并根据测评结果进行快速调整,实现铁液状态的闭环控制。在本研究中,用热分析曲线整体形状表征蠕墨铸铁铁液状态,当热分析曲线之间的差别很小时,相同凝固条件下试样组织的蠕化率差别可忽略。热分析曲线整体形状法与定量金相、模式识别和数据库技术相结合,能够实现蠕墨铸铁铁液状态的定量化预测,为铁液状态的闭环控制奠定基础。 The closed-loop control of melt quality is the best method for the production of high quality CGI. In this process, after pre-treating, the melt quality of compacted graphite iron is assessed rapidly and precisely, some corrective adjustment treatments can be carded out when needed to meet production requirements. In this paper, the freezing segment of a cooling curve is picked out as the token of melt quality. When two curves are closely similar, the microstructure differences of corresponding samples under the same cooling condition can be neglected. Therefore, freezing parts of cooling curves integrated with quantitative metallography, pattern recognition and database technology can be used to quantitatively predict CGI melt quality, paving the way for closed-loop control of CGI melt quality.
出处 《铸造》 EI CAS CSCD 北大核心 2007年第1期59-61,64,共4页 Foundry
关键词 蠕墨铸铁 铁液状态 蠕化率 compacted graphite iron melt quality vermicularity
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参考文献11

  • 1DAWSON S.Controlling the production of compacted graphite iron[J].Modern Casting,1998,88 (12):38-41.
  • 2DAWSON J V,EVANS E R.Compacted graphite irons produced by magnesium additions[J].BCIRA Journal,1974,22 (3):136-144.
  • 3EVANS E R,DAWSON J V,LALICH M J.Compacted graphite cast irons and their production by a single alloy addition[J].AFS International Cast Metals Journal,1976,1 (2):13-18.
  • 4李言祥,胡晓.冷却曲线人工智能识别与新一代铸造合金熔体质量评估技术[J].铸造,1999,48(7):4-6. 被引量:18
  • 5Yanxiang LI,Xiao HU,Xuerong XU.Pattern Recognition of Thermal Analysis Cooling Curves and Quality Evaluation of Melt Cast Alloys[J].Journal of Materials Science & Technology,2001,17(1):73-74. 被引量:12
  • 6LI Y,WANG Q.Intelligent evaluation of melt iron quality by pattern recognition of thermal analysis cooling curves[J].Journal of Materials Processing Technology,2005,161 (3):430-434.
  • 7LI Y X,XU X R,WANG Q,LIU B C.Evaluating melt iron features by computer aided recognition of thermal analysis cooling curves[J].International Journal of Cast Metals Research,2003,16(1-3):41-45.
  • 8ISO 16112,Compacted (vermicular) graphite cast irons-Classification[S].2006.
  • 9STEFANESCU D M,LOPER C R.J,VOIGHT R C,CHEN I G.Cooling curve structure analysis of compacted/vermicular graphite cast irons produced by different melt treatments[J].AFS Transactions,1982,90:333-348.
  • 10KIMURA T,LOPER C R,et al.Post inoculation of rare earth treated compacted graphite cast iron[J].AFS Transactions,1980,88:443-450.

二级参考文献23

  • 1郝启堂,陈洪升,毕维生.亚共晶铝硅合金晶粒度热分析法评估判据[J].铸造,1994,43(5):2-6. 被引量:5
  • 2龚磊清.现代热分析技术在ZL104合金铸件质量控制方面的应用[J].特种铸造及有色合金,1996,16(1):16-19. 被引量:13
  • 3B.Marincek.铁水质量控制的原理和方法.第46届国际铸造年会论文集[M].沈阳:沈阳铸造研究所,1980,11..
  • 4S.Juara.铸铁凝固过程微分分析.第46届国际铸造年会论文集[M].沈阳:沈阳铸造研究所,1980.11.
  • 5张云启.微机热分析仪研制和应用,清华大学博士论文[M].,1989..
  • 6[1]J.G.Humphreys: BCRIAJ, 1961, 9, 609.
  • 7[2]D.A.Sparkman and C.A.Baskaran: AFS Trans., 1996,104, 969.
  • 8[3]P. Zhu and R.W.Smith: Mater. Sci. Forum, 1996,215-216, 503.
  • 9[4]R.V.Sillen: Modern Casting, Nov.1996, 86, 43.
  • 10[5]Y.X.Li and X.Hu: Foundry, July 1999, 4.

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