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  • IOP Publishing  (3)
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  • IOP Publishing  (3)
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  • 1
    Online Resource
    Online Resource
    IOP Publishing ; 2021
    In:  IOP Conference Series: Earth and Environmental Science Vol. 787, No. 1 ( 2021-06-01), p. 012003-
    In: IOP Conference Series: Earth and Environmental Science, IOP Publishing, Vol. 787, No. 1 ( 2021-06-01), p. 012003-
    Abstract: A series of tests were conducted to investigate the effects of alternating stray current on chloride transport in cement-based materials (mortar). The chloride distributions in the mortar after the conditioning of immersion in 35 g/L NaCl solution or coupled with direct/alternating stray current within 14 days were gained. Test results show that: (1) The distribution of chloride ions along the depth in mortar shows an exponential shape, after the conditioning of immersion in 35 g/L NaCl solution or coupled with direct or alternating stray current within 14 days; (2) Comparing with the immersion in the NaCl solution without stray current, the transport of chloride in the mortar under DC electric field is significantly accelerated. The maximum chloride content in the mortar under this environment was almost seven times higher than that in the condition without current; (3) The chloride contents at different depths of the mortar in the AC electric field are slightly less than those in the solution without electric field and are much less than that with direct stray current.
    Type of Medium: Online Resource
    ISSN: 1755-1307 , 1755-1315
    Language: Unknown
    Publisher: IOP Publishing
    Publication Date: 2021
    detail.hit.zdb_id: 2434538-6
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  • 2
    Online Resource
    Online Resource
    IOP Publishing ; 2021
    In:  IOP Conference Series: Earth and Environmental Science Vol. 787, No. 1 ( 2021-06-01), p. 012037-
    In: IOP Conference Series: Earth and Environmental Science, IOP Publishing, Vol. 787, No. 1 ( 2021-06-01), p. 012037-
    Abstract: The deterioration mechanisms and corrosion of concrete exposed to Na 2 SO 4 and MgSO 4 solution were investigated in the present study. The damage of concrete specimen was evaluated by multi-scale observation, change of mass and relative dynamic modulus. Quantitatively analyse of the compositions for corrosion products during sulfate attack was applied in this study. The concrete was mainly cracked and spalling at the edges and corners when immersed in sodium sulfate solution. But pitting corrosion was formed on the surface of concrete under magnesium sulfate attack, and the powder peels off into a honeycomb hollow structure.
    Type of Medium: Online Resource
    ISSN: 1755-1307 , 1755-1315
    Language: Unknown
    Publisher: IOP Publishing
    Publication Date: 2021
    detail.hit.zdb_id: 2434538-6
    Location Call Number Limitation Availability
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  • 3
    Online Resource
    Online Resource
    IOP Publishing ; 2024
    In:  Measurement Science and Technology Vol. 35, No. 8 ( 2024-08-01), p. 086201-
    In: Measurement Science and Technology, IOP Publishing, Vol. 35, No. 8 ( 2024-08-01), p. 086201-
    Abstract: Feature selection is a crucial step in fault diagnosis. When rolling bearings are susceptible to compound faults, causal relationships are hidden within the signal features. Complex network analysis methods provide a tool for causal relationship modeling and feature importance assessment. Existing studies mainly focus on unweighted networks, overlooking the impact of the strength of causal relationships on feature selection. To address this issue, we propose a compound fault feature selection method based on the causal feature weighted network. First, we construct a weighted network using the incremental association Markov blanket discovery algorithm and Pearson correlation coefficient. Then, we quantify the importance of features by treating node strength as a centrality index and rank them to partition the feature subset. Finally, the optimal feature subset is obtained through a neural network with the accuracy of compound fault diagnosis as the threshold. Analysis of public datasets and comparative experiments demonstrate the advantages of our method. Compared to existing research, our method not only effectively reduces the number of optimal feature subsets to 11 but also improves the accuracy of compound fault diagnosis to 95.2%. Furthermore, we employ the SHapley Additive exPlanations to interpret the contribution of each feature in the optimal subset to the accuracy of compound fault diagnosis. This provides reference from both physical and network perspectives to feature selection and compound fault diagnosis in rolling bearings in practical working conditions.
    Type of Medium: Online Resource
    ISSN: 0957-0233 , 1361-6501
    Language: Unknown
    Publisher: IOP Publishing
    Publication Date: 2024
    detail.hit.zdb_id: 1362523-8
    detail.hit.zdb_id: 1011901-2
    SSG: 11
    Location Call Number Limitation Availability
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