Fracture Mechanics and Fatigue Design in Metallic Materials
The accumulation of damage and the development of fatigue cracks under the influence of loads is a common phenomenon that occurs in metals. To slow down crack growth and ensure an adequate level of safety and the optimal durability of structural elements, experimental tests and simulations are requi...
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Year of Publication: | 2021 |
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Physical Description: | 1 electronic resource (180 p.) |
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Rozumek, Dariusz edt Fracture Mechanics and Fatigue Design in Metallic Materials Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021 1 electronic resource (180 p.) text txt rdacontent computer c rdamedia online resource cr rdacarrier The accumulation of damage and the development of fatigue cracks under the influence of loads is a common phenomenon that occurs in metals. To slow down crack growth and ensure an adequate level of safety and the optimal durability of structural elements, experimental tests and simulations are required to determine the influence of various factors. Such factors include, among others, the impact of microstructures, voids, notches, the environment, etc. Research carried out in this field and the results obtained are necessary to guide development toward the receipt of new and advanced materials that meet the requirements of the designers. This Special Issue aims to provide the data, models and tools necessary to provide structural integrity and perform lifetime prediction based on the stress (strain) state and, finally, the increase in fatigue cracks in the material. English Technology: general issues bicssc fatigue fracture very-high cycle high-entropy alloy powder metallurgy fish eye crack branching behavior micromechanical analysis crack propagation path welded joints stress concentration vibration-based fatigue ultra-high frequency very high cycle fatigue fatigue test titanium alloy hydrogen re-embrittlement environmentally assisted cracking galvanic protection high strength steel crack front shape structural plates through-the-thickness crack steady-state loading conditions small-scale yielding pearlitic steel CFRP patches crack retardation fatigue crack growth failure analysis fatigue variability alloy 625 thin tube fractography microstructure aluminum hand-hole nonreinforced hand-hole design S-N curve high cycle fatigue CP Ti stress amplitude fatigue crack propagation crack growth rate roughness-induced crack closure fracture toughness machine learning artificial neural network predictor yield stress tensile strength specimen size 2524-T3 aluminum alloy corrosion crack propagation 3-0365-2730-3 3-0365-2731-1 Rozumek, Dariusz oth |
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English |
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Rozumek, Dariusz |
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Rozumek, Dariusz |
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title |
Fracture Mechanics and Fatigue Design in Metallic Materials |
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Fracture Mechanics and Fatigue Design in Metallic Materials |
title_full |
Fracture Mechanics and Fatigue Design in Metallic Materials |
title_fullStr |
Fracture Mechanics and Fatigue Design in Metallic Materials |
title_full_unstemmed |
Fracture Mechanics and Fatigue Design in Metallic Materials |
title_auth |
Fracture Mechanics and Fatigue Design in Metallic Materials |
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Fracture Mechanics and Fatigue Design in Metallic Materials |
title_sort |
fracture mechanics and fatigue design in metallic materials |
publisher |
MDPI - Multidisciplinary Digital Publishing Institute |
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2021 |
physical |
1 electronic resource (180 p.) |
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3-0365-2730-3 3-0365-2731-1 |
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Not Illustrated |
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AT rozumekdariusz fracturemechanicsandfatiguedesigninmetallicmaterials |
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(CKB)5400000000042866 (oapen)https://directory.doabooks.org/handle/20.500.12854/77135 (EXLCZ)995400000000042866 |
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Fracture Mechanics and Fatigue Design in Metallic Materials |
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