OALib Journal期刊
ISSN: 2333-9721
费用:99美元
|
|
|
冶金熔体热力学的若干研究
, PP. 127-140
Abstract:
为了从二元系中两组元活度的测定值之比求得该两组元的活度值,导出了一个变通的Gibbs-Duhem方程式,并在PbCl_2-SnCl_2,PbCl_2-CdCl_2,AgCl-CuCl,Cu_2S-FeS,PbO-BiO_(1.5),PbO-SbO_(1.5),CaO-CaF_2及CaO-SiO_2-CaF_2等冶金熔体中得到应用.多年前所发展的从Ag和Pb二元相图求得两组元活度的方法已扩大到含有单个AB化合物的二元系.用这一方法已求得In-Sb和Sn-Te系中各组元的活度.在研究某些黑色冶金渣与金属间的平衡时,用一适当选择的非铁金属代替Fe作为熔剂金属有助于克服某些实验上的困难.采用Sn或Cu与熔渣平衡研究了CaO-SiO_2,CaO-Al_2O_3和CaO-SiO_2-Al_2O_3体系.对CaO-SiO_2二元系获得的数据可以认为具有足够的准确度来验证Masson模型的合理性.
References
[1] | 3 Wagner,C.,Thermodynamic of Alloys,Addison-Wesley,New York,1952,p.19.
|
[2] | 4 徐元森;邹元爔;刘辅链,金属学报,7(1964) ,24.
|
[3] | 5 徐元森;邹元爔,化学学报,29(1963) ,181.
|
[4] | 6 彭瑞伍;陈自姚;邹元爔,金属学报,8(1965) ,401.
|
[5] | 7 沈令康;韩兆隆;赵彭年;邹元爔,金属学报,9(1966) ,226.
|
[6] | 8 邹元爔,中国科学,13(1964) ,1348.
|
[7] | 9 邹元爔,金属学报,6(1963) ,83.
|
[8] | 10 Krivsky,W.A.;Schuhmann,R.,Jr.,Trans.AIME,209(1957) ,981.
|
[9] | 11 Jel linek,K.,Siewers,H.,Elektrochem.,40(1934) ,871.
|
[10] | 12 Strickler,H.S.;Seitz,H.,J.Am.Chem.Soc.,58(1936) ,2084.
|
[11] | 13 邹元爔,金属学报,7(1964) ,123.
|
[12] | 14 周国治,金属学报,8(1965) ;545.
|
[13] | 15 三本木贡治;大谷正康,铁钢,36(1950) ,1.
|
[14] | 16 三本木贡治;大谷正康,铁钢,37(1951) ,13.
|
[15] | 17 三本木贡洽;大谷正康;中村元,铁钢,38(1952) ,12.
|
[16] | 18 Fulton,J.C.;Chipman;J.,Trans.AIME,200(1954) ,1136.
|
[17] | 19 Langenberg,F.C.;Chipman,J.;Trans.Metall.Soc.AIME,215(1959) ,958.
|
[18] | 20 Philbrook,W.O.;Goldman,K.M.;Helzel,M.M.,Trans.AIME,188(1950) ,361.
|
[19] | 21 邹元爔;赵彭年,中国科学,11(1962) ,1287.
|
[20] | 22 Kay,D.A.R.;Taylor,J.,Trans.Faraday Soc.,56(1960) ,1372.
|
[21] | 23 三本木贡治;大森康男,日本金属学会会志,25(1961) ,139.
|
[22] | 24 Elliott,J.F.;Gleiser,M.;Ramakrishna,V.,Thermoehemistry for Steelmaking,Addison-Wesley,New York,1963,Vol.Ⅱ,p.589.
|
[23] | 25 Rein,R.H.;Chipman,J.,Trans.Metall.Soc.AIME,233(1965) ,415.
|
[24] | 26 沢村企好,铁钢,47(1961) ,1873.
|
[25] | 27 Chipman,J.,Trans.Metall.Soc.AIME,221(1961) ,1272.
|
[26] | 28 Cowles,A.H.;Cowles,E.H.,U.S.Pat.319 795,424 659,(1884) .
|
[27] | 29 Kelley,K.K.,Thermodynamic Properities of Sulfur and Its Inorganic Compounds,U.S.Bureau of Mines,1937,p.406.
|
[28] | 30 Kubaschewski,O.;Catterall,J.,Thermoehemical Data of Alloys,Pergaman,New York,1956,p.151.
|
[29] | 31 Ruddle,R.W.,The Physical Chemistry of Copper Smelting,IMM,London,1953,p.106.
|
[30] | 32 Barker,I.L.;Jacobi,J.S.;Wadis,B.H.,Trans.AIME,209(1957) ,774.
|
[31] | 33 Lumsden,J.,Metallurgical Society Conferences,Intersciences Publishers,New York,Vol.7,1961,p.165.
|
[32] | 34 Terpilowski,J.,Arch.Burn.,4(1959) ,355.
|
[33] | 35 #12
|
[34] | 36 Masson,C.R.,J.Iron Steel Inst.,210(1972) ,89.
|
[35] | 37 Darken,L.S.,Thermodynamics in Physical Metallurgy,ASM,Cleveland,1950,p.28.
|
[36] | 38 Fetters,K.L.;Chipman,J.,Trans.AIME,145(1941) ,95.
|
[37] | 1 王常珍;邹元爔;金属学报,16(1980) ,190.
|
[38] | 2 邹元爔;Elliott,J.F.,化学学报,22(1956) ,14.
|
[39] | 39 Taylor,C.R.;Chipman,J.,Trans.AIME,154(1943) ,228.F
|
Full-Text
|
|
Contact Us
service@oalib.com QQ:3279437679 
WhatsApp +8615387084133
|
|