Polycrystalline elastic constants of in situ cementite (Fe3C)

被引:37
|
作者
Ledbetter, Hassel [1 ]
机构
[1] Univ Colorado, Boulder, CO 80309 USA
关键词
Carbide; Carbon; Carbon steel; Cementite; Cohesion; Covalency; Debye temperature; Elastic constants; Intermetallic compound; Iron; Iron-carbon alloy; Pearlite; Steel; YOUNG MODULUS; CRYSTALLOGRAPHY; CARBON; PRECIPITATION; TEMPERATURE; PEARLITE; FERRITE; PHASES; STEEL; GPA;
D O I
10.1016/j.msea.2009.12.034
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
By extrapolation, we estimated cementite's elastic constants. Altogether, we studied seven Fe-C binary alloys varying from 0 to 17.3 at% carbon. Thus, we measured hypoeutectoid, near-eutectoid, and hypereutectoid alloys. Using the hypereutectoid compositions, for cementite, we report a complete set of quasiisotropic (polycrystal) elastic constants. To correct for texture, we used a Voigt-Reuss-Hill averaging method. Surprisingly, for the dilatational modes, cementite's elastic constants differ little from those of b.c.c. iron and are about 10% higher for a shear mode such as the Young modulus. This stiffening indicates a tendency toward Fe-C covalent bonding. The decrease in Poisson ratio supports covalent bonding, but the small decrease indicates smaller covalent-bonding effects than expected by Pauling. Against ten previous Young modulus reports, we find cementite stiffer than alpha-iron, almost 10% in the Young modulus. Our results support Pauling's suggested Fe-C bonding over Petch's suggested Fe-Fe bonding. We compare our results with those from recent ab Mina calculations, which make very different predictions, which suggests that cementite occurs in at least two crystal structures, a suggestion made at least twice previously. Our derived Debye temperature T-D = 501 K differs considerably from previous reports. Within measurement errors, our bulk modulus agrees with three recent geophysical measurements. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:2657 / 2661
页数:5
相关论文
共 50 条
  • [31] Experimental constraints on the sound velocities of cementite Fe3C to core pressures
    Chen, Bin
    Lai, Xiaojing
    Li, Jie
    Liu, Jiachao
    Zhao, Jiyong
    Bi, Wenli
    Alp, E. Ercan
    Hu, Michael Y.
    Xiao, Yuming
    EARTH AND PLANETARY SCIENCE LETTERS, 2018, 494 : 164 - 171
  • [32] Deformation and phase transformation in polycrystalline cementite (Fe3C) during single- and multi-pass sliding wear
    Tsybenko, Hanna
    Tian, Chunhua
    Rau, Julia
    Breitbach, Benjamin
    Schreiber, Paul
    Greiner, Christian
    Dehm, Gerhard
    Brinckmann, Steffen
    ACTA MATERIALIA, 2022, 227
  • [33] Chemical evolution of polycrystalline cementite (Fe3C) during single-pass sliding wear: An investigation by surface spectroscopy
    Tsybenko, Hanna
    Prabhakar, J. Manoj
    Rohwerder, Michael
    Dehm, Gerhard
    Brinckmann, Steffen
    ACTA MATERIALIA, 2023, 245
  • [34] THE DIFFUSION-COEFFICIENT OF CARBON IN CEMENTITE, FE3C, AT 450-DEGREES-C
    OZTURK, B
    FEARING, VL
    RUTH, JA
    SIMKOVICH, G
    SOLID STATE IONICS, 1984, 12 (MAR) : 145 - 151
  • [35] Effect of heat treatment on the local atomic structure of cementite Fe3C in steel
    Maratkanova, AN
    Rats, YV
    Surnin, DV
    Deev, AN
    Schastlivtsev, VM
    Yakovleva, IL
    Tabatchikova, TI
    Gusev, SA
    Salashchenko, NN
    PHYSICS OF METALS AND METALLOGRAPHY, 2000, 89 (06): : 604 - 609
  • [36] Deformation-induced dissolution of cementite in the nanocomposite material α-Fe+60% Fe3C
    Dorofeev, GA
    Elsukov, EP
    Zagainov, AV
    Ul'yanov, AI
    Arsent'eva, NB
    PHYSICS OF METALS AND METALLOGRAPHY, 2004, 98 (04): : 393 - 398
  • [37] Valence Electron Structure of Carburizing Cementite Fe3C and Analysis of Its Relevant Properties
    余瑞璜
    张瑞林
    郑伟涛
    胡安广
    ChineseScienceBulletin, 1994, (02) : 165 - 169
  • [38] Density functional theory characterisation of cementite (Fe3C) with substitutional molybdenum (Mo) atoms
    Restrepo, Sebastian Echeverri
    PHYSICA B-CONDENSED MATTER, 2022, 631
  • [39] Assessment of elastic anisotropy and incipient plasticity in Fe3C by nanoindentation
    Alkorta, Jon
    Gil Sevillano, Javier
    JOURNAL OF MATERIALS RESEARCH, 2012, 27 (01) : 45 - 52
  • [40] Assessment of elastic anisotropy and incipient plasticity in Fe3C by nanoindentation
    Jon Alkorta
    Javier Gil Sevillano
    Journal of Materials Research, 2012, 27 : 45 - 52