EVOLUTION OF MICROSTRUCTURE IN A RAPIDLY SOLIDIFIED AL-FE-V-SI ALLOY

被引:29
|
作者
PARK, WJ
AHN, S
KIM, NJ
机构
[1] POHANG UNIV SCI & TECHNOL,CTR ADV AEROSP MAT,POHANG 790784,SOUTH KOREA
[2] RES INST IND SCI & TECHNOL,DIV MAT MET,POHANG 790600,SOUTH KOREA
关键词
D O I
10.1016/0921-5093(94)90427-8
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Microstructural development in a rapidly solidified Al-Fe-V-Si alloy has been investigated by transmission electron microscopy (TEM). The as-cast microstructure varies depending on casting conditions and also through the thickness of melt-spun ribbon. The microstructure of the completely zone A ribbon consists of the microcellular precipitation of a microquasi-crystalline phase, with globular particles of clustered microquasi-crystalline phase near the air side of the ribbon. For the ribbon with mixed zone A and zone B, in contrast, an intercellular particle is composed of silicide phase, but the formation of globular particles of microquasi-crystalline phase (somewhat decomposed) is again observed near the air side of the ribbon. During heating, as observed by annealing studies and by in situ hot-stage TEM studies, intercellular microquasi-crystalline particles are quite unstable and decompose at a very fast rate, resulting in a coarse distribution of silicide particles. This decomposition of the intercellular microquasi-crystalline particles assists the decomposition of globular particles of clustered microquasi-crystalline phase in completely zone A ribbon, resulting in a very coarse distribution of silicide particles after annealing. For the ribbon with mixed zone A and zone B, decomposition of globular particles of clustered microquasi-crystalline phase results in the precipitation of silicide particles along the cell boundaries.
引用
收藏
页码:291 / 299
页数:9
相关论文
共 50 条
  • [41] On the high temperature creep behavior of two rapidly solidified dispersion strengthened Al-Fe-V-Si materials
    Carreno, F
    Ruano, OA
    ZEITSCHRIFT FUR METALLKUNDE, 1998, 89 (03): : 216 - 221
  • [42] On the High Temperature Creep Behavior of Two Rapidly Solidified Dispersion Strengthened Al-Fe-V-Si Materials
    Carreño, Fernando
    Ruano, Oscar A.
    International Journal of Materials Research, 1998, 89 (03): : 216 - 221
  • [43] MICROSTRUCTURAL DEVELOPMENT DURING CONSOLIDATION OF RAPIDLY SOLIDIFIED AL-FE-V-SI POWDER BY VHP, EXTRUSION AND ROLLING
    WANG, Y
    LORIMER, GW
    SALE, FR
    SCRIPTA METALLURGICA ET MATERIALIA, 1994, 31 (10): : 1337 - 1342
  • [44] Effect of cryogenic treatment on Al-Fe-V-Si alloy
    Chen, Gang
    Chen, Ding
    Jinshu Rechuli/Heat Treatment of Metals, 2002, 27 (10):
  • [45] Study on process techniques of Al-Fe-V-Si alloy
    Xu, Yongli
    Ji, Daoxin
    Chen, Changqi
    Cailiao Gongcheng/Journal of Materials Engineering, 1993, (09):
  • [46] Characterisation of a rapidly solidified Al-V-Fe alloy
    Humphreys, ES
    Warren, PJ
    Cerezo, A
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1998, 250 (01): : 158 - 163
  • [47] Long term thermal stability of silicide dispersoids in rapidly solidified Al-Fe-V-Si and related alloys.
    Wilkes, DMJ
    Jones, H
    Gardiner, RW
    ALUMINIUM ALLOYS: THEIR PHYSICAL AND MECHANICAL PROPERTIES, PTS 1-3, 1996, 217 : 943 - 948
  • [48] Microstructure and phase structure of rapidly solidified Al-Si alloy
    Key Laboratory of Material Physics, Zhengzhou University, Zhengzhou 450052, China
    不详
    Cailiao Rechuli Xuebao, 2008, 2 (99-102):
  • [49] Microstructure of rapidly solidified Al-20Si alloy powders
    Kim, TS
    Lee, BT
    Lee, CR
    Chun, BS
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2001, 304 (1-2): : 617 - 620
  • [50] Formation of the microstructure of rapidly solidified hypoeutectic Al-Si alloy
    Olga Gusakova
    Vasiliy Shepelevich
    Dmitri V. Alexandrov
    Ilya O. Starodumov
    The European Physical Journal Special Topics, 2020, 229 : 417 - 425