Please wait a minute...
金属学报  1995, Vol. 31 Issue (5): 201-208    
  论文 本期目录 | 过刊浏览 |
Fe_2B相价电子结构及其本质脆性
李木森;傅绍丽;徐万东;张瑞林;余瑞璜
山东工业大学;天津大学;吉林大学
VALENCE ELECTRON STRUCTURE OF Fe_2B PHASE AND ITS EIGEN-BRITTLENESS
LI Musen; FU Shaoli(Shandong University of Technology; Jinan 250014). XU Wandong(Tianjin University; Mianjin 300072); ZHANG Ruilin. YU Ruihuang(Jilin University; Changchun 130023)
引用本文:

李木森;傅绍丽;徐万东;张瑞林;余瑞璜. Fe_2B相价电子结构及其本质脆性[J]. 金属学报, 1995, 31(5): 201-208.
, , , , . VALENCE ELECTRON STRUCTURE OF Fe_2B PHASE AND ITS EIGEN-BRITTLENESS[J]. Acta Metall Sin, 1995, 31(5): 201-208.

全文: PDF(496 KB)  
摘要: 根据固体与分子经验电子理论对Fe_2B相的价电子结构进行了定量分析,通过键距差(BondLengthDifference)方法计算了Fe_2B晶体配位团各键上的共价电子数。结果表明,沿[220]位向分布的Fe-Fe原子键最强,其共价电子数n_A=0.3852,键能E_A=15.7372kJ/mol;沿[002]位向分布的B-B原子键较弱,其共价电子数n_D=0.1392,键能E_D=4.5052kJ/mol。从而建立了Fe_2B晶体原子间的空间键络,并从键络分布的不均匀性解释了Fe2B本质脆性的产生原因。将Fe_2B脆性的实验观察和理论分析结果相比较,两者吻合
关键词 Fe_2B相价电子结构本质脆性    
Abstract:The valence electron structure of Fe_2B phase was studied on the basis of Yu's empirical electron theory of solids and molecules.The values of valence electrons on every bond in an atomic coordinate cluster were calculated by the method of bond length difference(BLD). The results showed that the bonds between Fe-Fe atoms along (220] direction were strongest, of which the value of valence electrons n_A=0.3852 and the bond energy E_A = 1 5.7372 kJ / mol, The bonds between B-B atoms along [002] direction were weaker, of which n_D = 0. 1 392 and E_D = 4.5052 kJ/ mol. A space bond network of Fe_2B crystal was built,so the cause of the eigen-brittleness could be translated by a heterogeneity of the bond distribution. Comparing experimental results to theoretical analysis, it came to the conclusion that there was a conformability between them.
Key words Fe_2B phase    valence electron structure    eigen-brittleness
收稿日期: 1995-05-18     
1片桐敏夫.金属表面技术,1978;29(5):2562周建初,王介淦,滕立霞,赵荣椿,张世雄.金属热处理学报,1980;1(2):413吴鲁周,高金华.金属热处理,1983;6:424LilientalW,TacikowskiJ.IndustrialHeating,1980;47(4):345何孝渝,虞润林,王玲,吴宝善,宣建功.兰州大学学报(自然科学版),1984;20(2):226余瑞璜.科学通报,1978;23:2177余瑞璜.科学通报,1981;26:2068AronssonB.LundstromT,RundqivstS.In:Borides,SilicidesandPhosphides,London:Methuen,1965:1959PearsonWB.AHandbookofLatticeSpacingsandStructuresofMetalsandAlloys.NewYork:Pergamon,1958:22010张瑞林.固体与分子经验电子理论.长春:吉林科学技术出版社,1993:23611余瑞璜.金属学报,1982;18:33612余瑞璜.吉林大学自然科学学报,1977;4:6713BrownP1,CoxJL.PhilosMag,1971;23:70514PerkinsRS,BrownPJ.JPhys,F:MatelPhys,1974;4:90615张瑞林.固体与分子经验电子理论.长春:吉林科学技术出版社,1993:26816徐万东,张瑞林,余瑞璜,中国科学,1988;A18(3):32317孟陈吕,张何刘.钢铁,1979;14(5):3518李木森,侯绪荣,郭晓燕,邹习文.理化检验(物理分肥),1989;27(1):7
[1] 黄炼,高坤元,文胜平,黄晖,王为,聂祚仁. Al3M(M=Ti, Zr, Hf)亚稳相和平衡相的价电子结构分析[J]. 金属学报, 2012, 48(4): 492-501.
[2] 刘伟东; 刘志林; 屈华 . Ti-4.5Al-5Mo-1.5Cr合金增韧的价电子理论研究[J]. 金属学报, 2002, 38(12): 1246-1250 .
[3] 刘伟东; 刘志林; 屈华; 刘艳 . 高合金化β钛合金拉伸延性的价电子理论分析[J]. 金属学报, 2002, 38(10): 1037-1041 .
[4] 朱瑞富;吕宇鹏;陈传忠;李士同;王世清;张福成. Fe-C-Mn合金奥氏体的价电子结构分析[J]. 金属学报, 1996, 32(6): 561-564.
[5] 张建民;张瑞林;余瑞璜. Fe_3Al氢脆机理的研究[J]. 金属学报, 1995, 31(7): 300-303.
[6] 郑炀曾;张福成. 合金元素及碳在Fe-Mn-Cr-C合金中的不均匀分布对γ→α′转变的影响[J]. 金属学报, 1991, 27(3): 82-85.