Identification Damage Model for Thermomechanical Degradation of Ductile Heterogeneous Materials

The failure of ductile materials subject to high thermal and mechanical loading rates is notably affected by material inertia. The mechanisms of fatigue-crack propagation are examined with particular emphasis on the similarities and differences between cyclic crack growth in ductile materials, such...

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Published inInternational Journal of Applied Mechanics and Engineering Vol. 22; no. 2; pp. 475 - 481
Main Authors Amri, A. El, Yakhloufi, M.H. El, Khamlichi, A.
Format Journal Article
LanguageEnglish
Published Zielona Góra De Gruyter Open 24.05.2017
University of Zielona Góra, Institute of Mechanical Engineering
University of Zielona Góra
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ISSN1734-4492
2353-9003
DOI10.1515/ijame-2017-0031

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Abstract The failure of ductile materials subject to high thermal and mechanical loading rates is notably affected by material inertia. The mechanisms of fatigue-crack propagation are examined with particular emphasis on the similarities and differences between cyclic crack growth in ductile materials, such as metals, and corresponding behavior in brittle materials, such as intermetallic and ceramics. Numerical simulations of crack propagation in a cylindrical specimen demonstrate that the proposed method provides an effective means to simulate ductile fracture in large scale cylindrical structures with engineering accuracy. The influence of damage on the intensity of the destruction of materials is studied as well.
AbstractList The failure of ductile materials subject to high thermal and mechanical loading rates is notably affected by material inertia. The mechanisms of fatigue-crack propagation are examined with particular emphasis on the similarities and differences between cyclic crack growth in ductile materials, such as metals, and corresponding behavior in brittle materials, such as intermetallic and ceramics. Numerical simulations of crack propagation in a cylindrical specimen demonstrate that the proposed method provides an effective means to simulate ductile fracture in large scale cylindrical structures with engineering accuracy. The influence of damage on the intensity of the destruction of materials is studied as well.
Author Amri, A. El
Khamlichi, A.
Yakhloufi, M.H. El
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Snippet The failure of ductile materials subject to high thermal and mechanical loading rates is notably affected by material inertia. The mechanisms of fatigue-crack...
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SubjectTerms Accuracy
Alloys
Brittle materials
Brittleness
Ceramics
Computer simulation
Crack propagation
damage
Damage assessment
Damage detection
Destruction
Ductile brittle transition
Ductile fracture
Ductility
Fatigue failure
Fracture mechanics
Inertia
manufacturing
Mathematical models
Structural damage
thermal and mechanical fatigue
Thermomechanical analysis
Title Identification Damage Model for Thermomechanical Degradation of Ductile Heterogeneous Materials
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