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4 Result(s) for 'Plasticity'
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1.
Evaluation of Aluminium Alloy for Plasticity Applications
J.D. Amine, K. Abubakar, L.T. Tuleun
American Journal of Materials Science and Engineering. 2015 3 (1). doi: 10.12691/ajmse-3-1-1
Keywords: magnesium, copper, mechanical properties, Plasticity , hardness, aluminium, alloy
Context: An evaluation of aluminium alloy for Plasticity applications was undertaken to bridge the gap in appraising the impact of variation of alloying elements such as magnesium (Mg) and...
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2.
Large Strain Elasto Plasticity
Juraj Šarloši, Jozef Bocko
American Journal of Mechanical Engineering. 2016 4 (7). doi: 10.12691/ajme-4-7-19
Keywords: Elasto-Plasticity , Kirchhoff stress tensor, Cauchy stress tensor, elasto-plastic decomposition, Jauman rate, Truesdell rate
Context: In this paper we present a continuum theory for large strain Elasto-Plasticity based on formulations: Eulerian Formulation and Multiplicative Elasto-Plasticity. The theories includes Cauchy and Kirchhoff stress...
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3.
Plasticity and Formability Controlling of Cast Iron Using Thermo-Mechanical Treatment
Mohammed Y. Abdellah, Mohamed K. Hassan, H. M .Abu El-Ainin
American Journal of Materials Engineering and Technology. 2014 2 (3). doi: 10.12691/materials-2-3-3
Keywords: Thermo-Mechanical Treatment, ductile cast iron, flow behaviors, percentage elongation
Context: There are different methods to improve the mechanical properties of materials such as, heat treatment, casting of alloying element etc. Thermo-Mechanical Treatment at different level of deformation is carried out to enhance the mechanical behavior of ductile cast iron. The tensile properties of the tested iron are determined at room temperature, 450C, 750C, and 850C. However, the effect of testing temperature on ultimate tensile strength, strain hardening coefficient and ductility are investigated at different deformation speed; 1 mm/s, 5 mm/s and 25 mm/s. the results show that temperature affects significantly the deformation properties of the cast iron, the absorbed energy of the materials increases with the increase of deformation temperature and loading speed. The maximum softening is obtained for deformation temperature 850C and smaller strain hardening coefficient 0.27. The deformation parameters temperature and speed make the deformation and flow behavior of this case of cast iron becomes like flow behavior of ductile steel.
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4.
Selection of a Significant Numerical Model of Plasticity for the Purpose of Numerical Analysis of Plastic Reinforcement
Jozef Bocko, Ingrid Delyová, Peter Sivák, Marián Tomko
American Journal of Mechanical Engineering. 2017 5 (6). doi: 10.12691/ajme-5-6-21
Keywords: plastic deformation, model of Plasticity , experimental and numerical analysis
Context: The paper is focused on the process of selecting a suitable material Plasticity model. Such a model would be used in the future numerical analysis of the behaviour of selected structural elements in the elastic-...
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