对离心力场作用下液态金属充型流动过程中气体的溶解度、气泡的形核条件,形核功、临界形核半径以及形核率进行了定量研究.结果表明,在离心力场作用下气体的溶解度是一个梯度量,随着离心半径和离心角速度的增大而增大;气泡的形核功和临界形核半径也随着离心半径和离心角速度的增大而增大,而气泡的形核率相应地减小;离心半径和离心角速度越大,对气体溶解度和气泡形核的影响越明显;因此,在离心力场作用下可通过提高离心旋转角速度和离心半径减少气孔缺陷.
参考文献
[1] | Wu Shiping,Liu Dongrong,Guo Jingjie,Li Changyun,Su Yanqing,Fu Hengzhi,Numerical simulation of microstructure evolution of Ti-6Al-4V alloy in vertical centrifugal casting,Materials Science and Engineering A,426,240-249(2006) |
[2] | Halvaee A,Talebi A,Efiect of process variables on microstructure and segregation in centrifugal casting of C92200 alloy,Journal of Materials Processing Technology,118(1-3),123-127(2001) |
[3] | G Chirita,D Soares,F S Silva,Advantages of the centrifugal casting technique for the production of structural components with Ai-Si alloys,Materials and Design,29,20-27(2008) |
[4] | R.A.Mesquita,D.R.Leiva,A.R.Yavari,W.J.Botta Filho,Microstructures and mechanical properties of bulk AlFeNd(Cu,Si)alloys obtained through centrifugal force casting,Materials Science and Engineering A,452-453,161-169(2007) |
[5] | LI Qingchun,Basis of Cast Forming Theory(Beijing,China Machine Press,1982)p.187-199(李庆春,铸件形成理论基础(北京,机械工业出版社,1982)p.187-199) |
[6] | Kun-Dar Li,Edward Chang,Mechanism of nucleation and growth of hydrogen poresity in solidifying A356 aluminum alloy:all analytical solution,Acta Materialia,52,219-231(2003) |
[7] | ZHANG Boning,Centrifugal Casing(Beijing,China Machine Press,2004) p.50-65(张伯明,离心铸造(北京,机械工业出版社,2004) p.50-65) |
[8] | TAN Yingyuan,Reasons for Producing Gas Hole and Prevention Measurement under Centrifugal Casting for Al-Si Alloy,Journal of Wuhan Institute of Shipbuilding Technology,1,28-29(2003)(谭银元,Al-si合金离心铸造产生气孔的原因及防止措施,武汉船舶职业技术学院学报,1,28-29(2003)) |
[9] | Wu.M,Auqthun.M,Wagner.I,Sahm.P.R,Spiekermann.H,Numerical simulation of the casting process of titanium tooth crowns and bridges,Journal of Materials Science:Materials in Medicine,12(6),485-490(2001) |
[10] | SHENG Wenbin,GUO Jingjie,SU Yanqing,DING Hongsheng,JIA Jun,Analysis on inner defects in TiAl based alloy exhaust valve during the centrifugal foundry process in permanent mold,Journal of Aeronautical Materials,20(2),40-45(2000)(盛文斌,郭景杰,苏彦庆,丁宏升,贾均,TiAl基合金排气阀金属型离心铸造过程内部缺陷分析,航空材料学报,20(2),40-45(2000)) |
[11] | Suzuki Ken-ichiro,Nishikawa Koji,Watakabe Sirou,Mold filling and solidification during centrifugal precision casting of Ti-6Al-4V alloy,Materials Transactions,JIM,37(12),1793-1801(1996) |
[12] | J Wannasin,M C Flemings,Fabrication of metal matrix composites by a high-pressure centrifugal infiltration process,Journal of Materials Processing Technology,169,143-149(2005) |
[13] | GUO Jingjie,FU Hengzhi,Alloy Melts and Its Treatment (Beijing,China Machine Press,2004)p.187-207(郭景杰,傅恒志,合金熔体及其处理(北京,机械工业出版社,2004)p.187-207) |
[14] | ZHAI Qijie,GUAN Shaokang,SHANG Quanyi,thermodynamics of alloys Theory and application(Beijing,Metallurgical Industry Press,1999)p.121-138(翟启杰,关绍康,商全义,合金热力学理论及其应用(北京,冶金工业出版社,1999)p.121-138) |
[15] | Institute of Metallurgy Chinese academy of sciences translate,Casting properties for Titanium alloys in Foreign Countries(Shanghai,Shanghai science and Technology in formation research institute press,1974) p.34-36(中国科学院冶金研究所译,国外钛合金的铸造性能(上海,上海科学技术情报研究所出版,1974) p.34-36) |
[16] | XU Zuyao,Phase Transformations Under Stress,Heat Treatment,19(2),1-17(2004)(徐祖耀,应力作用下的相变,热处理,19(2),1-17(2004)) |
[17] | Kim S W,Lee U J,Woo K D,Kim D K,Solidification microstructures and mechanical properties of vertical centrifugal cast high speed steel,Materials Science and Technololgy,19(22),1727-1732(2003) |
[18] | CUI Zhongqi,LIU Beixing,Metallurgy and Heat Treatment principles (Harbin,Harbin Institute of Technology Press,1998) p.40-52(崔忠圻,刘北兴,金属学与热处理原理(哈尔滨,哈尔滨工业大学出版社,1998) p.40-52) |
[19] | Tumbull D,Formation of crystal nuclei in liquid metals,Journal of Applied Physics,21(10),1022-1028(1950) |
[20] | Tiller W A,Jackson K A,Rutter J W.The redistribution of solute atoms during the solidification of metals,Acta Materialia,1,428-437(1951) |
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