EFFECTS OF DEUTERIUM CONTENT ON MICROSTRUCTURE AND MECHANICAL PROPERTIES OF Zr-4 ALLOY

被引:0
|
作者
Zhang Cheng [1 ]
Song Xiping [1 ]
Liu Lingru [1 ]
Yang Yun [1 ]
You Li [1 ]
机构
[1] Univ Sci & Technol Beijing, State Key Lab Adv Met & Mat, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
zircaloy; deuterium content; microstructure; mechanical property; deuteride; ZIRCONIUM ALLOYS; ANISOTROPIC BEHAVIOR; FRACTURE INITIATION; CRACK-TIP; HYDRIDE; ZIRCALOY-4; ABSORPTION; 350-DEGREES-C; 20-DEGREES-C; CHALLENGES;
D O I
10.11900/0412.1961.2016.00193
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
Zirconium alloy has been employed widely in nuclear industry, yet the absorption of deuterium in zircaloy is considered to play a critical role in mechanical properties especially in high temperature under a loss of coolant accident (LOCA) and application for deuterium storage. However, little is known about the microstructure evolution of zircaloy during deuterium absorption. In this work, deuterium was charged into the sample at 900 degrees C and different pressures, and the effects of deuterium content on microstructure and mechanical properties of Zr-4 alloy have been studied by means of OM, BSE, SEM, XRD, and hardness and compressive tests. The results showed that the amount of deuteride increased with the increase of deuterium content from 1.35% to 2.21%, accompanying with the morphology variations from intragranular deuteride needles to intergranular deuteride blocks, which formed an interlinked deuteride configuration and grew into equiaxed alpha-Zr grains. Deuteride layer was observed on the surface of sample at higher deuterium content with the micro-crack appeared within it. The mostly deuteride was delta-deuteride, and epsilon-deuteride was observed on sample surface with high deuterium content. There existed a hardness gradient from surface to center. With the increase of deuterium content, the hardness increased and hardness gradient became evident. With increasing deuterium content, the compressive yield strength of samples increased slightly, but the compressive ultimate strength decreased greatly from 1176 MPa (1.35%) to 856 MPa (2.21%). The deceasing of compressive ultimate strength was probably related to the formation of micro-crack. The cracks nucleated and propagated within the intergranular deuteride blocks, which leads to the degradation of compressive ultimate strength.
引用
收藏
页码:1572 / 1578
页数:7
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