跳到主要导航 跳到搜索 跳到主要内容

Study on the microstructure evolution and fracture mechanism of C7(Zr–1Nb-0.01Cu) cladding alloy with different hydrogen contents

  • Zhongtang Gao
  • , Teng Cao
  • , Tianxiang Cheng
  • , Guanghai Bai
  • , Zhiming Gao
  • , Biao Chen
  • , Yanwei Zhang
  • , Huanchun Wu
  • Xi'an University of Science and Technology
  • Suzhou Nuclear Power Research Institute

科研成果: 期刊稿件文章同行评审

摘要

The microstructural evolution, texture characteristics, and mechanical responses of the C7 (Zr–1Nb-0.01Cu) cladding alloy were systematically investigated as a function of hydrogen content (in weight parts per million, wppm). Specimens with hydrogen concentrations of 200, 400, 600, and 800 wppm were prepared through gas-state hydrogen absorption experiment charging. The distribution of hydride phases, the interfacial characteristics between hydrides and the matrix, and the corresponding changes in mechanical properties were examined using metallographic analysis, scanning electron microscopy (SEM), electron backscatter diffraction (EBSD), and ring tensile testing. Pronounced microstructural alterations were observed with increasing hydrogen content, particularly in the precipitation behavior and spatial distribution of hydrides. Hydrides tested at 400 wppm, were predominantly distributed along grain boundaries and exhibited relatively low brittleness. Extensive hydride aggregation and the formation of a continuous network resulted in a significant increase in brittleness at 800 wppm. Ring tensile tests indicated that while the yield and tensile strengths remained largely unchanged, a marked reduction in ductility occurred, especially at higher hydrogen concentrations. The fracture mode transitioned from ductile dimple rupture to brittle cleavage. This study elucidates the effect of hydrogen content on the grain structure, hydride precipitation behavior, and mechanical properties of the C7 alloy.

源语言英语
页(从-至)2954-2965
页数12
期刊Journal of Materials Research and Technology
42
DOI
出版状态已出版 - 1 5月 2026

指纹

探究 'Study on the microstructure evolution and fracture mechanism of C7(Zr–1Nb-0.01Cu) cladding alloy with different hydrogen contents' 的科研主题。它们共同构成独一无二的指纹。

引用此