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OpenAlex: !!python/object/new:pyalex.api.Topic
{
   dictitems:
   "OpenAlex": {
     cited_by_count: 964187
     "display_name": "Fatigue Mechanics and Fracture Analysis",
    created_date: '2024-01-23'
     "description": "This cluster of papers covers advances in fatigue mechanics and fracture analysis, including topics such as fatigue crack closure, multiaxial fatigue criterion, thermographic methodology for fatigue limit determination, microstructure-sensitive modeling of fatigue crack formation, and probabilistic fatigue life prediction. The research also delves into high-cycle fatigue behavior, stress intensity factors, crack propagation mechanisms, and the application of local approaches to fracture assessment.",
     description: This cluster of papers covers advances in fatigue mechanics and fracture
     "keywords": [
      analysis, including topics such as fatigue crack closure, multiaxial fatigue
       "Fatigue Crack Closure",
      criterion, thermographic methodology for fatigue limit determination, microstructure-sensitive
      "Fracture Toughness Testing",
      modeling of fatigue crack formation, and probabilistic fatigue life prediction.
      "Multiaxial Fatigue Criterion",
      The research also delves into high-cycle fatigue behavior, stress intensity
      "Thermographic Methodology",
      factors, crack propagation mechanisms, and the application of local approaches
      "Microstructure-Sensitive Modeling",
      to fracture assessment.
      "Probabilistic Fatigue Life Prediction",
     display_name: Fatigue Mechanics and Fracture Analysis
      "High-Cycle Fatigue Behavior",
    domain:
      "Stress Intensity Factors",
      display_name: Physical Sciences
      "Crack Propagation Mechanism",
      id: https://openalex.org/domains/3
      "Local Approach to Fracture"
    field:
     ],
      display_name: Engineering
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    id: https://openalex.org/T10396
       "wikipedia": "https://en.wikipedia.org/wiki/Fatigue_(material)"
    ids:
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       openalex: https://openalex.org/T10396
     "subfield": {
      wikipedia: https://en.wikipedia.org/wiki/Fatigue_(material)
       "id": "https://openalex.org/subfields/2211",
    keywords:
       "display_name": "Mechanics of Materials"
    - Fatigue Crack Closure
     },
    - Fracture Toughness Testing
     "field": {
    - Multiaxial Fatigue Criterion
       "id": "https://openalex.org/fields/22",
    - Thermographic Methodology
       "display_name": "Engineering"
    - Microstructure-Sensitive Modeling
     },
    - Probabilistic Fatigue Life Prediction
     "domain": {
    - High-Cycle Fatigue Behavior
       "id": "https://openalex.org/domains/3",
    - Stress Intensity Factors
       "display_name": "Physical Sciences"
    - Crack Propagation Mechanism
     },
    - Local Approach to Fracture
     "updated_date": "2024-08-12T05:54:22.956711",
     siblings:
     "created_date": "2024-01-23",
     - display_name: Applications of Infrared Thermography in Non-Destructive Testing
     "type": "topic",
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    - display_name: Cavitation in Hydropower Systems and Turbines
     "id": "https://openalex.org/T10396"
       id: https://openalex.org/T11202
  }
    - display_name: Characterization of Shale Gas Pore Structure
}
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    - display_name: Composite Materials and Structures
      id: https://openalex.org/T10219
     - display_name: Defect Identification using Positron Annihilation Spectroscopy
      id: https://openalex.org/T12579
     - display_name: Dynamic Recrystallization in Metal Deformation Processes
       id: https://openalex.org/T11201
    - display_name: Energetic Materials and Reactive Force Fields
      id: https://openalex.org/T10806
    - display_name: Finite Element Simulation and Experimental Validation of Fretting
        Wear
       id: https://openalex.org/T12252
    - display_name: Fracture Mechanics Modeling and Simulation
      id: https://openalex.org/T10514
     - display_name: Freeze Desalination for Water Treatment and Concentration
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     - display_name: Fundamentals and Applications of Finite Element Analysis
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    - display_name: Materials Engineering in Industrial Applications
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     - display_name: Mechanical and Thermal Properties of Nanocomposites
      id: https://openalex.org/T14204
     - display_name: Mechanical Properties of Thin Film Coatings
       id: https://openalex.org/T10377
    - display_name: Mechanics and Fracture of Nanomaterials and Composites
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       id: https://openalex.org/T12971
    - display_name: Mechanics of Gecko Foot Adhesion
      id: https://openalex.org/T11799
     - display_name: Modeling and Analysis of Functionally Graded Plates
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     - display_name: Multi-Scale Modeling of Heterogeneous Materials
      id: https://openalex.org/T11558
    - display_name: Optimization of Sustainable Biomass Supply Chains
      id: https://openalex.org/T12118
     - display_name: Rock Mechanics and Engineering
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    - display_name: Rock Mechanics and Wave Propagation in Geomedia
      id: https://openalex.org/T13619
    - display_name: Study on Rock Mechanics in Deep Mining Engineering
      id: https://openalex.org/T13772
     - display_name: Thermoelastic Damping and Heat Conduction
      id: https://openalex.org/T11565
     - display_name: Tribology of Polymers and Composites
      id: https://openalex.org/T12362
     - display_name: Ultrasonic Flow Measurement Techniques
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    subfield:
      display_name: Mechanics of Materials
      id: https://openalex.org/subfields/2211
    updated_date: '2024-05-20T05:09:01.937089'
    works_count: 96270

Latest revision as of 20:15, 12 September 2024

{

 "OpenAlex": {
   "display_name": "Fatigue Mechanics and Fracture Analysis",
   "description": "This cluster of papers covers advances in fatigue mechanics and fracture analysis, including topics such as fatigue crack closure, multiaxial fatigue criterion, thermographic methodology for fatigue limit determination, microstructure-sensitive modeling of fatigue crack formation, and probabilistic fatigue life prediction. The research also delves into high-cycle fatigue behavior, stress intensity factors, crack propagation mechanisms, and the application of local approaches to fracture assessment.",
   "keywords": [
     "Fatigue Crack Closure",
     "Fracture Toughness Testing",
     "Multiaxial Fatigue Criterion",
     "Thermographic Methodology",
     "Microstructure-Sensitive Modeling",
     "Probabilistic Fatigue Life Prediction",
     "High-Cycle Fatigue Behavior",
     "Stress Intensity Factors",
     "Crack Propagation Mechanism",
     "Local Approach to Fracture"
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   "updated_date": "2024-08-12T05:54:22.956711",
   "created_date": "2024-01-23",
   "type": "topic",
   "oa_id": "T10396",
   "id": "https://openalex.org/T10396"
 }

}