Correlation of Microstructure with Mechanical Properties of Zr-Based Amorphous Matrix Composite Reinforced with Tungsten Continuous Fibers and Ductile Dendrites

被引:0
|
作者
Chang-Young Son
Gyeong Su Kim
Sang-Bok Lee
Sang-Kwan Lee
Hyoung Seop Kim
Hoon Huh
Sunghak Lee
机构
[1] Center for Advanced Aerospace Materials,Department of Materials Science and Engineering
[2] Pohang University of Science and Technology,Department of Mechanical Engineering
[3] Next Generation Products Research Group,undefined
[4] Technical Research Laboratories,undefined
[5] POSCO,undefined
[6] Pohang University of Science and Technology,undefined
[7] Composite Materials Laboratory,undefined
[8] Korea Institute of Materials Science,undefined
[9] Korea Advanced Institute of Science and Technology,undefined
来源
Metallurgical and Materials Transactions A | 2012年 / 43卷
关键词
Plastic Strain; Amorphous Alloy; Amorphous Matrix; Longitudinal Crack; Maximum Compressive Strength;
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中图分类号
学科分类号
摘要
A Zr-based amorphous matrix composite reinforced with tungsten continuous fibers in an amorphous LM2 alloy matrix containing ductile β dendrites was fabricated without pores or defects by the liquid pressing process, and its tensile and compressive properties were examined in relation with microstructures and deformation mechanisms. Overall, 68 vol pct of tungsten fibers were distributed in the matrix, in which 35 vol pct of β dendrites were present. The LM2 composite had the greatly improved tensile strength and elastic modulus over the LM2 alloy, and it showed a stable crack propagation behavior as cracks stopped propagating at the longitudinal cracks of tungsten fibers or ductile β dendrites. According to the compressive test results, fracture did not take place at one time after the yield point, but it proceeded as the applied loads were sustained by fibers, thereby leading to the maximum strength of 2432 MPa and plastic strain of 16.4 pct. The LM2 composite had the higher strength, elastic modulus, and ductility under both tensile and compressive loading conditions than the tungsten-fiber-reinforced composite whose matrix did not contain β dendrites. These distinctively excellent properties indicated a synergy effect arising from the mixing of amorphous matrix and tungsten fibers, as well as from the excellent bonding of interfaces between them.
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页码:4088 / 4096
页数:8
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