期刊文献+

基于ProCAST的高炉铸铜冷却壁铸造工艺优化 被引量:3

Processing Optimization of Cast Copper Stave Based on ProCAST Software
原文传递
导出
摘要 根据铸铜冷却壁的结构,设计了两种不同的浇注系统,并利用ProCAST对其进行数值模拟,预测了铸造缺陷可能存在的部位。针对模拟结果,对优选工艺进行工艺优化,确定了铸铜冷却壁的铸造工艺。试生产结果表明,所生产的铜冷却壁铸件基本满足技术要求。 Based on the structure of cast copper cooling stave,two kinds of gating systems were designed,and the casting process was simulated by the ProCAST software in order to visualize the casting defects.And then,the process was optimized based on the simulated results,and the final casting process of cast copper cooling stave was determined.The trial production shows that the cast copper cooling stave can meet the requirement.
出处 《特种铸造及有色合金》 CAS CSCD 北大核心 2014年第9期913-916,共4页 Special Casting & Nonferrous Alloys
关键词 铸铜冷却壁 数值模拟 PROCAST 工艺优化 Cast Copper Stave, Numerical Simulation, ProCAST, Process Optimization
  • 相关文献

参考文献3

二级参考文献13

  • 1MORIMITSU K,NISHICKA K.New type east copper stave[J].Nippon Steel, 2003(10):11-12.
  • 2何康生,曹雄夫.异种金属焊接[M].北京:机械工业出版社,1984.
  • 3P. CTOKMAH, p. BAH LAAP[J]. CTAЛb, 2003:13.
  • 4项中庸,王筱留,等.高炉设计--炼铁工艺设计理论与实践[M].北京:冶金出版社,2007:373.
  • 5吴启常,佘克事,佘京鹏,等.高炉应用铜冷却壁的合理化[C]//中国金属学会.2005中国钢铁年会论文集.北京:中围金属学会,2005:353-356.
  • 6李峰光,张建良,魏丽,等.铜冷却壁使用现状及破损原冈浅析[C]//中国金属学会炼铁分会2012年全国高炉长寿与高风温技术研讨会论文集.北京:中同金属学会,2012:46-54.
  • 7魏丽,李东旭.铜冷却壁使用十年回顾[C]//中国金属学会炼铁分会.2012年全国炼铁生产技术会议暨炼铁学术年会文集.无锡:中国金属学会,2012:201-204.
  • 8吴启常.我国高炉工艺设计的技术进步[J].炼铁,2011,30(2):1-5. 被引量:2
  • 9吴启常,魏丽.薄壁高炉内型设计[J].炼铁,2011,30(2):6-9. 被引量:9
  • 10张寿荣.延长高炉寿命是系统工程 高炉长寿技术是综合技术[J].炼铁,2000,19(1):1-4. 被引量:33

共引文献17

同被引文献30

  • 1林振丽,黄孙姜,黄宗辉.气缸盖侧浇铸造工艺及应用[J].铸造,2007,56(10):1110-1112. 被引量:7
  • 2SPENCER D B, MEHARABIAN R, FLEMINGS M C. Rheologi- cal behavior of Sn-ISPb in the crystallization range[J]. Metallurgi- cal Transactions, 1972(3) : 1 925-1 932.
  • 3DAS P, KUMAR M, SAMANTA S K, et al. Semisolid processing of A380 Alalloy using cooling slope[J]. Materials and Manufactur- ing Processes, 2014, 29: 422-428.
  • 4MALLIKARJUNA C, SHASHIDHARA S M, MALLIK U S, et al. Grain refinement and wear properties evaluation of aluminum alloy 2014 matrix-Til~ in-situ composites[J]. Materials and De- sign, 2011, 32:3 554-3 559.
  • 5YANG B, GANG S, YANG L, et at. Microstructural character- ization and wear behavior of in situ TIC/7075 composites synthe sized by displacement reactions and spray forming[J]. Materials Science and Engineering, 2011, A528:5 649-5 655.
  • 6MOHANTY P S, GRUZLESKI J E. Mechanism of grain refine- ment in aluminum[J]. Acta. Metal. Mater., 1995, 43(5): 2 001- 2 012.
  • 7ATKINSON H V, LIU D. Microstruetural coarsening of semi-sol id aluminum alloys[J]. Materials Science and Engineering, 2008, A496: 439-466.
  • 8MANSON-WHITTON E D, STONE I CO JONES J R, et al. Iso- thermal grain coarsening of spray formed alloys in the semi-solid state[J]. Acta Materialia, 2002, 50:2 517-2 535.
  • 9ATSUMI O. Solidification: the separation theory and its practical applications [M]. Berlin: New York Springer-Verlag, 1987.
  • 10彭潜,华林.Cr12MoV模块的铸造工艺模拟研究[J].热加工工艺,2009,38(21):49-53. 被引量:2

引证文献3

二级引证文献9

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部