Numerical simulations of electric potential field for alternating current potential drop associated with surface cracks in low-alloy steel nuclear material

被引:1
作者
Yeh, Chun-Ping [1 ]
Huang, Jiunn-Yuan [1 ]
机构
[1] INER, Taoyuan, Taiwan
关键词
Alternating current potential drop; surface crack measurements; unfolding theorem; electric potential field; low-alloy steel; FATIGUE RESISTANCE; ACPD TECHNIQUE;
D O I
10.1080/10589759.2017.1409747
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Low-alloy steels used as structural materials in nuclear power plants are subjected to cyclic stresses during power plant operations. As a result, cracks may develop and propagate through the material. The alternating current potential drop technique is used to measure the lengths of cracks in metallic components. The depth of the penetration of the alternating current is assumed to be small compared to the crack length. This assumption allows the adoption of the unfolding technique to simplify the problem to a surface Laplacian field. The numerical modelling of the electric potential and current density distribution prediction model for a compact tension specimen and the unfolded crack model are presented in this paper. The goal of this work is to conduct numerical simulations to reduce deviations occurring in the crack length measurements. Numerical simulations were conducted on AISI 4340 low-alloy steel with different crack lengths to evaluate the electric potential distribution. From the simulated results, an optimised position for voltage measurements in the crack region was proposed.
引用
收藏
页码:175 / 188
页数:14
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