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  • 1
    Online Resource
    Online Resource
    Springer Science and Business Media LLC ; 2023
    In:  Chemical and Petroleum Engineering Vol. 58, No. 9-10 ( 2023-01), p. 776-787
    In: Chemical and Petroleum Engineering, Springer Science and Business Media LLC, Vol. 58, No. 9-10 ( 2023-01), p. 776-787
    Type of Medium: Online Resource
    ISSN: 0009-2355 , 1573-8329
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 2023
    detail.hit.zdb_id: 2037114-7
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  • 2
    Online Resource
    Online Resource
    Allerton Press ; 2018
    In:  Journal of Machinery Manufacture and Reliability Vol. 47, No. 5 ( 2018-9), p. 442-450
    In: Journal of Machinery Manufacture and Reliability, Allerton Press, Vol. 47, No. 5 ( 2018-9), p. 442-450
    Type of Medium: Online Resource
    ISSN: 1052-6188 , 1934-9394
    Language: English
    Publisher: Allerton Press
    Publication Date: 2018
    detail.hit.zdb_id: 2399998-6
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  • 3
    Online Resource
    Online Resource
    TEST-ZL Publishing ; 2022
    In:  Industrial laboratory. Diagnostics of materials Vol. 88, No. 3 ( 2022-03-27), p. 41-50
    In: Industrial laboratory. Diagnostics of materials, TEST-ZL Publishing, Vol. 88, No. 3 ( 2022-03-27), p. 41-50
    Abstract: The possibility of assessing the safe size of the defects of metal continuity using risk criteria are considered. Such defects occur at all stages of the life cycle of structures. Assessment of their hazard and determination of their allowable size becomes important when the defects can lead to brittle or quasi-brittle fracture. In this case, models of linear and nonlinear fracture mechanics are used. In these models, defects are considered as internal elliptical or surface semi-elliptical cracks. The stochastic variety of shapes, sizes, locations, and orientations of defects has a significant effect on the destruction mechanisms. In this regard, the relevant probabilistic problem of assessing the permissible size of defects according to the criteria of the risk of destruction comes to the fore. We consider a general approach to assessing hazard of defects by risk criteria. Two settings of the probabilistic problem of risk assessment based on of one- and two-parameter fracture criteria are presented. The risk function in the form of the probability of fracture according to a given criterion is used as the main calculated characteristic. The expression of the risk function based on one-parameter criteria of fracture mechanics is presented. The main attention is paid to the probabilistic model based on the two-parameter fracture criterion by E. M. Morozov. This criterion provides ample opportunities for analyzing fracture mechanisms with a change in the size of defects. An expression for the risk function based on the family of two-dimensional probability distributions of Lu – Bhattacharya of the Weibull type is obtained. It is shown that the correlations of the fracture mechanisms can significantly affect the values of the fracture probabilities, and, consequently, the allowable size of defects.
    Type of Medium: Online Resource
    ISSN: 2588-0187 , 1028-6861
    Language: Unknown
    Publisher: TEST-ZL Publishing
    Publication Date: 2022
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  • 4
    Online Resource
    Online Resource
    TEST-ZL Publishing ; 2019
    In:  Industrial laboratory. Diagnostics of materials Vol. 85, No. 1(I) ( 2019-02-13), p. 49-56
    In: Industrial laboratory. Diagnostics of materials, TEST-ZL Publishing, Vol. 85, No. 1(I) ( 2019-02-13), p. 49-56
    Abstract: The results of unique experimental studies of the strength and service life of a metal-composite high-pressure tank are presented. The goal of the study is to analyze the fracture mechanisms and evaluate the strength characteristics of the structure. The methodology included tests of full-scale samples of the tank for durability under short-term static, long-term static and cyclic loading with internal pneumatic pressure. Generalized test results and data of visual measurements, instrumental and acoustic-emission control of deformation processes, accumulation of damages and destruction of full-scale tank samples are presented. Analysis of the strength and stiffness of the structure exposed to internal pneumatic pressure is presented. The types of limiting states of the tanks have been established experimentally. Change in the stress-strain state of the tank under cyclic and prolonged static loading is considered. Specific features of the mechanisms of destruction of a metal-composite tank are determined taking into account the role of strain of the metal liner. The calculated and experimental estimates of the energy potential of destruction and the size of the area affected upon destruction of the tank are presented. Analysis of test results showed that the tank has high strength and resource characteristics that meet the requirements of the design documentation. The results of the experiments are in good agreement with the results of numerical calculations and analysis of the stress-strain state and mechanisms of destruction of the metal-composite tank.
    Type of Medium: Online Resource
    ISSN: 2588-0187 , 1028-6861
    Language: Unknown
    Publisher: TEST-ZL Publishing
    Publication Date: 2019
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  • 5
    Online Resource
    Online Resource
    Pleiades Publishing Ltd ; 2021
    In:  Inorganic Materials Vol. 57, No. 15 ( 2021-12), p. 1511-1518
    In: Inorganic Materials, Pleiades Publishing Ltd, Vol. 57, No. 15 ( 2021-12), p. 1511-1518
    Type of Medium: Online Resource
    ISSN: 0020-1685 , 1608-3172
    Language: English
    Publisher: Pleiades Publishing Ltd
    Publication Date: 2021
    detail.hit.zdb_id: 2057339-X
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  • 6
    Online Resource
    Online Resource
    Springer Science and Business Media LLC ; 1991
    In:  Strength of Materials Vol. 23, No. 5 ( 1991-05), p. 481-488
    In: Strength of Materials, Springer Science and Business Media LLC, Vol. 23, No. 5 ( 1991-05), p. 481-488
    Type of Medium: Online Resource
    ISSN: 0039-2316 , 1573-9325
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 1991
    detail.hit.zdb_id: 2037314-4
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  • 7
    Online Resource
    Online Resource
    Allerton Press ; 2015
    In:  Journal of Machinery Manufacture and Reliability Vol. 44, No. 4 ( 2015-7), p. 344-349
    In: Journal of Machinery Manufacture and Reliability, Allerton Press, Vol. 44, No. 4 ( 2015-7), p. 344-349
    Type of Medium: Online Resource
    ISSN: 1052-6188 , 1934-9394
    Language: English
    Publisher: Allerton Press
    Publication Date: 2015
    detail.hit.zdb_id: 2399998-6
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  • 8
    Online Resource
    Online Resource
    TEST-ZL Publishing ; 2021
    In:  Industrial laboratory. Diagnostics of materials Vol. 87, No. 6 ( 2021-06-18), p. 45-53
    In: Industrial laboratory. Diagnostics of materials, TEST-ZL Publishing, Vol. 87, No. 6 ( 2021-06-18), p. 45-53
    Abstract: Scientific and methodological aspects of ensuring the safety of offshore subsea pipelines proceeding from the accident risk criteria are considered. A conceptual approach to assessing the defect hazard by risk criteria is formulated. This approach is based on the provisions of modern norms and requirements for the calculation of pipelines. A probabilistic model for assessing the risk of accidents at offshore subsea pipelines is developed with allowance for a random nature of defects and damage from accidents. The criterion conditions for the admissibility of defects in pipelines are formulated. Two conceptual directions for developing a methodological base for calculation of the permissible defects by risk criteria are thus proposed. The first direction is the development of semi-probabilistic calculation procedures using differentiated safety factors, with allowance for the level of the accident risk. The second direction consists in solving the problem of the probability of the pipeline destruction taking into account the restrictions in the form of a given risk value. The probability and scale of accidents are linked by a risk matrix. The calculation methodology was developed using a semi-probabilistic concept for the most typical defects in subsea pipelines. The suitability of the pipeline for operation after in-line diagnostics is determined using a three-level assessment of the permissible size of defects. The first, basic level, determines the permissible size of defects according to the strength criteria for the pipelines exposed to the action of the main loads, i.e., internal overpressure and hydrostatic external pressure. The second, extended level, determines the permissible dimensions of defects based on the strength criteria, taking into account the impact of additional longitudinal and bending loads on pipelines. The third, special level, determines the permissible dimensions of cracks and crack-like defects according to the characteristics of the crack resistance of the pipeline metal. The novelty of the methodology consists in the justification of the safety factors through the levels of failure probabilities corresponding to a given class of damage and losses. A scheme for making decisions on the admissibility of defects by risk criteria has been developed. An example of hazard assessment of defects in subsea pipelines is presented.
    Type of Medium: Online Resource
    ISSN: 2588-0187 , 1028-6861
    Language: Unknown
    Publisher: TEST-ZL Publishing
    Publication Date: 2021
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  • 9
    Online Resource
    Online Resource
    TEST-ZL Publishing ; 2020
    In:  Industrial laboratory. Diagnostics of materials Vol. 86, No. 7 ( 2020-07-18), p. 45-54
    In: Industrial laboratory. Diagnostics of materials, TEST-ZL Publishing, Vol. 86, No. 7 ( 2020-07-18), p. 45-54
    Abstract: The probabilistic aspects of multiscale modeling of the fracture of heterogeneous structures are considered. An approach combining homogenization methods with phenomenological and numerical models of fracture mechanics is proposed to solve the problems of assessing the probabilities of destruction of structurally heterogeneous materials. A model of a generalized heterogeneous structure consisting of heterogeneous materials and regions of different scales containing cracks and crack-like defects is formulated. Linking of scales is carried out using kinematic conditions and multiscale principle of virtual forces. The probability of destruction is formulated as the conditional probability of successive nested fracture events of different scales. Cracks and crack-like defects are considered the main sources of fracture. The distribution of defects is represented in the form of Poisson ensembles. Critical stresses at the tops of cracks are described by the Weibull model. Analytical expressions for the fracture probabilities of multiscale heterogeneous structures with multilevel limit states are obtained. An approach based on a modified Monte Carlo method of statistical modeling is proposed to assess the fracture probabilities taking into account the real morphology of heterogeneous structures. A feature of the proposed method is the use of a three-level fracture scheme with numerical solution of the problems at the micro, meso and macro scales. The main variables are generalized forces of the crack propagation and crack growth resistance. Crack sizes are considered generalized coordinates. To reduce the dimensionality, the problem of fracture mechanics is reformulated into the problem of stability of a heterogeneous structure under load with variations of generalized coordinates and analysis of the virtual work of generalized forces. Expressions for estimating the fracture probabilities using a modified Monte Carlo method for multiscale heterogeneous structures are obtained. The prospects of using the developed approaches to assess the fracture probabilities and address the problems of risk analysis of heterogeneous structures are shown.
    Type of Medium: Online Resource
    ISSN: 2588-0187 , 1028-6861
    Language: Unknown
    Publisher: TEST-ZL Publishing
    Publication Date: 2020
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  • 10
    Online Resource
    Online Resource
    Pleiades Publishing Ltd ; 2020
    In:  Inorganic Materials Vol. 56, No. 15 ( 2020-12), p. 1478-1484
    In: Inorganic Materials, Pleiades Publishing Ltd, Vol. 56, No. 15 ( 2020-12), p. 1478-1484
    Type of Medium: Online Resource
    ISSN: 0020-1685 , 1608-3172
    Language: English
    Publisher: Pleiades Publishing Ltd
    Publication Date: 2020
    detail.hit.zdb_id: 2057339-X
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