High-temperature strength and room-temperature toughness of Nb-W-Si-B alloys prepared by arc-melting

被引:76
|
作者
Sha, J [1 ]
Hirai, H
Tabaru, T
Kitahara, A
Ueno, H
Hanada, S
机构
[1] Natl Inst Adv Ind Sci & Technol, Inst Struct & Engn Mat, Tosu, Saga 8410052, Japan
[2] Natl Inst Adv Ind Sci & Technol, Collaborat Dept, Tosu, Saga 8410052, Japan
[3] Tohoku Univ, Mat Res Inst, Sendai, Miyagi 9808577, Japan
基金
日本科学技术振兴机构;
关键词
niobium solid solution; niobium silicide; high-temperature strength; fracture toughness; boron;
D O I
10.1016/j.msea.2003.08.014
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
As next generation ultra-high temperature structural materials, the balance between high-temperature strength and room-temperature toughness of the Nb-base in-situ composites is the most important issue. This paper investigated the mechanical behavior of Nb-10W-10Si-xB (x = 0, 0. 1, 1 and 2). Materials were prepared by arc-melting and annealed at 1870 K for 100 h. The microstructures of the Nb-10W-10Si-xB But those were increased at 2 mol% B. All the alloys have more than 7% compressive ductility at room temperature. B improves both the room-temperature toughness (K-Q) and the high-temperature strength (sigma(max)). The K-Q and the sigma(max) of the Nb-10W- 10Si alloy at 1670 K are 8.2 MPa m(1/2) and 400 MPa, respectively, and are 8.8 MPa m(1/2) and 470 MPa in the Nb-10W-10Si-2B alloy. With two-phase Nb-ss/Nb5Si3 microstructures, the compressive damage at high temperature was dominated by debonding of the interfaces between the primary Nb-ss and the 5-3 silicide, while the fracture mode at room temperature is transgranular, controlled by the primary Nbss cleavage. (C) 2003 Elsevier B.V. All rights reserved.
引用
收藏
页码:151 / 158
页数:8
相关论文
共 50 条
  • [21] Microstructure and room temperature fracture toughness of Nb-Si-based alloys with Sr addition
    Yong-Lin Huang
    Li-Na Jia
    Bin Kong
    Yue-Ling Guo
    Na Wang
    Rare Metals, 2024, 43 (08) : 3904 - 3912
  • [22] High temperature strength, fracture toughness and oxidation resistance of Nb-Si-Al-Ti multiphase alloys
    Murayama, Yonosuke
    Hanada, Shuji
    SCIENCE AND TECHNOLOGY OF ADVANCED MATERIALS, 2002, 3 (02) : 145 - 156
  • [23] Microstructure and room temperature fracture toughness of Nb-Si-based alloys with Sr addition
    Huang, Yong-Lin
    Jia, Li-Na
    Kong, Bin
    Guo, Yue-Ling
    Wang, Na
    RARE METALS, 2024, 43 (08) : 3904 - 3912
  • [24] High-temperature strength and room-temperature fracture toughness of Mo-ZrC in-situ composites with hyper-eutectic structure
    Suzuki, T
    Nomura, N
    Yoshimi, K
    Hanada, S
    JOURNAL OF THE JAPAN INSTITUTE OF METALS, 2000, 64 (11) : 1082 - 1088
  • [25] Effect of Microstructural Continuity on Room-Temperature Fracture Toughness of ZrC-Added Mo-Si-B Alloys
    Nakayama, Shunichi
    Sekido, Nobuaki
    Uemura, Sojiro
    Tsurekawa, Sadahiro
    Yoshimi, Kyosuke
    MATERIALS TRANSACTIONS, 2018, 59 (04) : 518 - 527
  • [26] Effect of Sc on the microstructure and room-temperature mechanical properties of Nb-Si based alloys
    Huang, Yonglin
    Jia, Lina
    Jin, Zuheng
    Kong, Bin
    Guo, Yueling
    Sha, Jiangbo
    Zhang, Hu
    MATERIALS & DESIGN, 2018, 160 : 671 - 682
  • [27] Correlations to improve high-temperature strength and room temperature ductility of refractory complex concentrated alloys
    Senkov, O. N.
    Gorsse, S.
    Miracle, D. B.
    Rao, S. I.
    Butler, T. M.
    MATERIALS & DESIGN, 2024, 239
  • [28] High-temperature oxidation resistance of w, b, y microalloyed TiAl based alloys with high Nb content
    Wang, Yanjing
    Liu, Le
    Song, Meijin
    Wang, Jijie
    Du, Xinghao
    Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering, 2014, 43 (08): : 1871 - 1875
  • [29] Microstructure and high-temperature strength in Cr-Si binary alloys
    Aono, Yuki
    Omori, Toshihiro
    Kainuma, Ryosuke
    INTERMETALLICS, 2019, 112
  • [30] MICROSTRUCTURE AND HIGH-TEMPERATURE STRENGTH IN CR-SI BINARY ALLOYS
    Aono, Yuki
    Omori, Toshihiro
    Kainuma, Ryosuke
    JOINT EPRI - 123HIMAT INTERNATIONAL CONFERENCE ON ADVANCES IN HIGH-TEMPERATURE MATERIALS, 2019, 2019, : 762 - 770