Study of phase transformations in Ni3Al superalloy after shock-wave loading

被引:0
|
作者
Kazantseva, NV
Greenberg, BA
Shorokhov, EV
Pirogov, AN
Dorofeev, YA
机构
[1] Russian Acad Sci, Inst Phys Met, Ural Div, Ekaterinburg 620219, Russia
[2] All Russia Res Inst Tech Phys, Russian Fed Nucl Ctr, Chelyabinsk 456770, Russia
来源
PHYSICS OF METALS AND METALLOGRAPHY | 2005年 / 99卷 / 05期
关键词
D O I
暂无
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Phase transformations induced by pulsed shock-wave loading in a single crystal of the nickel superalloy have been studied. The crystal was loaded by an impact with a steel plate (the maximum pressure on the sample surface was 100 GPa, and the pulse duration was 10 mu s) and by the deceleration of explosion products at an obstacle (the maximum pressure was 20 GPa, and the pulse duration was 10 mu s). Depending on the loading conditions, various pressure-drop gradients behind the shock front were realized. After loading at 20 GPa, the crystal has a high dislocation density; after loading at 100 GPa, a banded structure with misorientation bands directed along the < 111 > directions is formed. X-ray diffraction, neutron diffraction, and high-resolution transmission electron microscopy of the crystal subjected to shock-wave loading reveal an L1(2) -> D0(22) phase transformation in it. Deformation microtwins are observed near microcracks in the D0(22) phase.
引用
收藏
页码:535 / 544
页数:10
相关论文
共 50 条
  • [21] Study of MAX Phase-Based Compacts Obtained by Shock-Wave Loading Method
    Sudnik, Larysa
    Luchenok, Aleksey
    Kaladkevich, Yuliya
    Tkachuk, Victor
    Prikhna, Tatiana
    Kozyrev, Artem
    NANOPHYSICS, NANOMATERIALS, INTERFACE STUDIES, AND APPLICATIONS, NANO2016, 2017, 195 : 327 - 333
  • [22] Shock-wave compacting of a Fe-Ni-Al powder mixture and its study
    Akopov, F. Kh.
    Gabuniya, V. M.
    Mamniashvili, G. I.
    Martkoplishvili, G. S.
    Oniashvili, G. Sh.
    Peikrishvili, A. V.
    Chikhradze, N. M.
    Chkhartishvili, I. V.
    PHYSICS OF METALS AND METALLOGRAPHY, 2006, 102 (05): : 541 - 544
  • [23] Antisite defects in the Ni3Al phase
    Kozlov E.V.
    Fedorishcheva M.V.
    Nikonenko E.L.
    Koneva N.A.
    Bulletin of the Russian Academy of Sciences: Physics, 2008, 72 (10) : 1311 - 1314
  • [24] FERROMAGNETISM IN INTERMETALLIC PHASE NI3AL
    DEBOER, FR
    BIESTERBOS, J
    SCHINKEL, CJ
    PHYSICS LETTERS A, 1967, A 24 (07) : 355 - +
  • [25] Transient liquid phase bonding of Ni3Al based superalloy using Mn-Ni-Cr filler
    Yuan, Lin
    Ren, Jin
    Xiong, Jiangtao
    Zhao, Wei
    Shi, Junmiao
    Li, Jinglong
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2021, 11 : 1583 - 1593
  • [26] INTERACTION OF NI3AL PHASE WITH NI3TA
    MINTS, RS
    DYAKONOV.NP
    UMANSKII, YS
    BONDAREN.TA
    BONDAREN.YA
    DOKLADY AKADEMII NAUK SSSR, 1972, 206 (01): : 87 - &
  • [27] Phase transformations in the ordered Ni3Al (L12) compound upon mechanical alloying with Al
    MGU im. M.V. Lomonosova, Vorob'evy gory, Moscow, 119899, Russia
    Fizika Metallov i Metallovedenie, 2002, 94 (04): : 61 - 65
  • [28] Modelling the chemical transformations in system of titanium-silicon during shock-wave loading
    Zelepugin, S.A.
    Nikulichev, V.B.
    Ivanova, O.V.
    Zelepugin, A.S.
    Khimicheskaya Fizika, 2005, 24 (10): : 76 - 83
  • [29] Phase transformations in the ordered Ni3Al (L12) compound upon mechanical alloying with Al
    Portnoi, VK
    Tret'yakov, KV
    Fadeeva, VI
    PHYSICS OF METALS AND METALLOGRAPHY, 2002, 94 (04): : 373 - 377
  • [30] Numerical Simulation of Wave Propagation and Phase Transition of Tin under Shock-Wave Loading
    Song Hai-Feng
    Liu Hai-Feng
    Zhang Guang-Cai
    Zhao Yan-Hong
    CHINESE PHYSICS LETTERS, 2009, 26 (06)