DOAJ Open Access 2022

Creep strain modeling for alloy 690 SG tube material based on modified theta projection method

Seongin Moon Jong-Min Kim Joon-Yeop Kwon Bong-Sang Lee Kwon-Jae Choi +1 lainnya

Abstrak

During a severe accident, steam generator (SG) tubes undergo rapid changes in the pressure and temperature. Therefore, an appropriate creep model to predict a short term creep damage is essential. In this paper, a novel creep model for Alloy 690 SG tube material was proposed. It is based on the theta (θ) projection method that can represent all three stages of the creep process. The original θ projection method poses a limitation owing to its inability to represent experimental creep curves for SG tube materials for a large strain rate in the tertiary creep region. Therefore, a new modified θ projection method is proposed; subsequently, a master curve for Alloy 690 SG material is also proposed to optimize the creep model parameters, θi (i = 1–5). To adapt the implicit creep scheme to the finite element code, a partial derivative of incremental creep with respect to the stress is necessary. Accordingly, creep model parameters with a strictly linear relationship with the stress and temperature were proposed. The effectiveness of the model was validated using a commercial finite element analysis software. The creep model can be applied to evaluate the creep rupture behavior of SG tubes in nuclear power plants.

Penulis (6)

S

Seongin Moon

J

Jong-Min Kim

J

Joon-Yeop Kwon

B

Bong-Sang Lee

K

Kwon-Jae Choi

M

Min-Chul Kim

Format Sitasi

Moon, S., Kim, J., Kwon, J., Lee, B., Choi, K., Kim, M. (2022). Creep strain modeling for alloy 690 SG tube material based on modified theta projection method. https://doi.org/10.1016/j.net.2021.11.005

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Informasi Jurnal
Tahun Terbit
2022
Sumber Database
DOAJ
DOI
10.1016/j.net.2021.11.005
Akses
Open Access ✓