Stochastic modeling of corrosion growth
Corrosion is a major threat to the structural integrity and safe operation of infrastructures throughout the world. Corrosion growth modeling is important in structure maintenance planning. Existing models focus on the maximum corrosion pit depth growth which may lead to inaccurate life predictions...
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Published in | Reliability engineering & system safety Vol. 204; p. 107120 |
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Language | English |
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01.12.2020
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Abstract | Corrosion is a major threat to the structural integrity and safe operation of infrastructures throughout the world. Corrosion growth modeling is important in structure maintenance planning. Existing models focus on the maximum corrosion pit depth growth which may lead to inaccurate life predictions since the corrosion volume growth may result in failures before the depth reaches its failure threshold. We develop a stochastic model that characterizes both corrosion volume and depth growth. The distribution of volume growth increments with time and the reliability estimate based on the corrosion depth, the corrosion volume growth and their combined effect are obtained. The influence of stresses, which include the relative humidity, pH level and temperature is incorporated into the model based on the physics of the corrosion reaction mechanisms. Field corrosion data are used for the model's validation. The proposed model results in more accurate predictions of the remaining lives compared with the existing models. |
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AbstractList | Corrosion is a major threat to the structural integrity and safe operation of infrastructures throughout the world. Corrosion growth modeling is important in structure maintenance planning. Existing models focus on the maximum corrosion pit depth growth which may lead to inaccurate life predictions since the corrosion volume growth may result in failures before the depth reaches its failure threshold. We develop a stochastic model that characterizes both corrosion volume and depth growth. The distribution of volume growth increments with time and the reliability estimate based on the corrosion depth, the corrosion volume growth and their combined effect are obtained. The influence of stresses, which include the relative humidity, pH level and temperature is incorporated into the model based on the physics of the corrosion reaction mechanisms. Field corrosion data are used for the model's validation. The proposed model results in more accurate predictions of the remaining lives compared with the existing models. |
ArticleNumber | 107120 |
Author | Elsayed, Elsayed A. Wang, Changxi |
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CitedBy_id | crossref_primary_10_1016_j_ress_2022_108711 crossref_primary_10_1007_s10924_023_03015_5 crossref_primary_10_1680_jstbu_22_00047 crossref_primary_10_1016_j_ress_2023_109095 crossref_primary_10_1061_AJRUA6_RUENG_1109 crossref_primary_10_1016_j_diamond_2023_109793 crossref_primary_10_1016_j_ress_2022_108417 crossref_primary_10_1016_j_ress_2023_109721 crossref_primary_10_1016_j_psep_2021_08_003 crossref_primary_10_1016_j_ress_2021_108231 crossref_primary_10_1016_j_ress_2021_107561 crossref_primary_10_1016_j_ress_2022_108507 |
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