Characterization of the brittle mechanism in a Au-Ge microalloy

被引:7
|
作者
Li, Juzi [1 ,2 ]
Acoff, Viola L. [2 ]
Gong, Xibing [3 ]
机构
[1] China Univ Geosci, Gemmol Inst, Wuhan 430074, Hubei, Peoples R China
[2] Univ Alabama, Dept Met & Mat Engn, Tuscaloosa, AL 35487 USA
[3] Univ Alabama, Dept Mech Engn, Tuscaloosa, AL 35487 USA
关键词
Au-Ge microalloy; Brittle mechanism; Vickers hardness; Internal;
D O I
10.1007/s13404-015-0159-z
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
In order to improve the hardness of pure gold, alloying with small amounts of germanium (Ge) is of great interest. However, the resulting embrittlement of the new alloy is undesirable for use in jewelry applications. Thus, it is necessary to elucidate the cause of this behavior in this microalloy in order to avoid it in future cases. The Au-Ge alloy was characterized using a combination of inductively coupled plasma mass spectrometry (ICP-MS) to investigate the nominal chemistry, Vickers microhardness to determine the alloy's hardness in comparison to pure Au, X-ray diffraction (XRD) to find the phases/structures, along with light optical microscopy (LOM) and scanning electron microscopy (SEM) to explore the alloy's surface features including grain size, and phase distributions. A heating microscope and differential thermal analyzer (DTA) were also used in order to determine the phase transformation behavior. Trace amount of Ge was found to render Au grains refined to the size of 10 to 160 mu m. The corresponding microhardness was remarkably improved from 31 to 56 HV. The Au-Ge microalloy was found to exhibit Ge enrichment along the grain boundaries, resulting in an interdendritic, eutectic that forms throughout the microstructure. This phase distribution is likely the cause of the brittle mechanical behavior of the Au-Ge alloy.
引用
收藏
页码:47 / 56
页数:10
相关论文
共 50 条
  • [41] FORMATION, MICROSTRUCTURE AND RESISTANCES OF AU-GE/N-GAAS, AU-GE/N-INP, AU-ZN/P-INP AND AU-BE/P-INP CONTACTS
    AUVRAY, P
    GUIVARCH, A
    LHARIDON, H
    MERCIER, JP
    HENOC, P
    THIN SOLID FILMS, 1985, 127 (1-2) : 39 - 68
  • [42] Electrochemical Behaviour of an Au-Ge Alloy in an Artificial Saliva and Sweat Solution
    Vastag, Gyongyi
    Majeric, Peter
    Lazic, Vojkan
    Rudolf, Rebeka
    METALS, 2024, 14 (06)
  • [43] CONTACT RESISTIVITY OF IR LAMP ALLOYED AU-GE METALLIZATION ON GAAS
    GILL, SS
    DAWSEY, JR
    CULLIS, AG
    ELECTRONICS LETTERS, 1984, 20 (22) : 944 - 945
  • [44] Structure of eutectic liquids in the Au-Si, Au-Ge, and Ag-Ge binary systems by neutron diffraction
    Chirawatkul, Prae
    Zeidler, Anita
    Salmon, Philip S.
    Takeda, Shin'ichi
    Kawakita, Yukinobu
    Usuki, Takeshi
    Fischer, Henry E.
    PHYSICAL REVIEW B, 2011, 83 (01)
  • [45] PHASE DECOMPOSITION IN LIQUID-QUENCHED EUTECTIC AU-GE ALLOY
    AGARWAL, SC
    HERMAN, H
    JOURNAL OF MATERIALS SCIENCE, 1978, 13 (04) : 916 - 919
  • [46] EFFECT OF SUBSTRATE ON THE CONDUCTIVITY OF EVAPORATED AU-GE ALLOY-FILMS
    JOHNSON, BC
    ASPIN, CH
    WADLIN, WH
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY, 1979, 16 (02): : 145 - 146
  • [47] COALESCENCE OF THIN AU-GE FILMS IN THE FORMATION OF CONTACTS OF LIMITED DIMENSIONS
    BRYANTSEVA, TA
    LOPATIN, VV
    LYUBCHENKO, VE
    FIZIKA TVERDOGO TELA, 1988, 30 (03): : 645 - 648
  • [48] PHOTOVOLTAIC EFFECT OF A AU-GE BARRIER IN A QUANTIZING MAGNETIC-FIELD
    ROCHON, P
    FORTIN, E
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1974, 19 (03): : 248 - 248
  • [49] Dynamics of Au-Ge liquid droplets on Ge(111) terraces: Nucleation, growth and dynamic coalescence
    El-Barraj, Ali
    Curiotto, Stefano
    Cheynis, Fabien
    Muller, Pierre
    Leroy, Frederic
    APPLIED SURFACE SCIENCE, 2020, 509
  • [50] SUPERCONDUCTIVITY OF AU-GE FILMS OBTAINED BY EVAPORATING ALLOY WITH A LASER PULSE
    ALEKSEEVSKII, NE
    ZAKOSARENKO, VM
    TSEBRO, VI
    JETP LETTERS-USSR, 1970, 12 (05): : 157 - +