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    Flow Stress Behavior of AZ81 Magnesium Alloy under Dynamic Loads

    Source: Journal of Materials in Civil Engineering:;2021:;Volume ( 033 ):;issue: 003::page 04020486
    Author:
    Gyan Prakash
    ,
    N. K. Singh
    ,
    N. K. Gupta
    DOI: 10.1061/(ASCE)MT.1943-5533.0003607
    Publisher: ASCE
    Abstract: The performance of a structure depends on its material characteristics under various conditions of loadings, strain rate, and temperature, and therefore, it is necessary to understand these characteristics properly for the safe and reliable design of structures. In this paper, the flow stress behavior of AZ81 magnesium alloy is determined under tensile, compressive, and flexural loads at different strain rates and temperatures. An electromechanical universal testing machine of capacity 250 kN is used to perform quasi-static tests (0.0001–0.1  s−1) under tension and compression; and three-point bending (flexure) tests using suitable fixtures at crosshead speeds (1–100  mm/min) for varying span lengths (80–160  mm) and orientations (flat and transverse) at room temperature, 25°C. The thermal and fracture behaviors of the alloy at various temperatures (25°C, 100°C, 150°C, and 200°C) are studied under quasi-static tension (0.001  s−1). The heating rate of the tensile specimens is 20°C/min and the soaking time is 15  min. Dynamic tensile (850–1,400  s−1) and compressive (1,900–3,300  s−1) experiments are conducted using appropriate arrangements of Hopkinson bar systems. The effects of specimen geometry on the flow stress of the alloy are observed under compression. Ductility and toughness are determined to establish the energy dissipation capacity of the alloy. Fractographs of the fractured tensile specimens are studied by scanning electron microscope (SEM). Also, the applicability of the existing Cowper–Symonds and Johnson–Cook models in the aforementioned loading conditions is discussed.
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      Flow Stress Behavior of AZ81 Magnesium Alloy under Dynamic Loads

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4269472
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    contributor authorGyan Prakash
    contributor authorN. K. Singh
    contributor authorN. K. Gupta
    date accessioned2022-01-30T22:43:12Z
    date available2022-01-30T22:43:12Z
    date issued3/1/2021
    identifier other(ASCE)MT.1943-5533.0003607.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4269472
    description abstractThe performance of a structure depends on its material characteristics under various conditions of loadings, strain rate, and temperature, and therefore, it is necessary to understand these characteristics properly for the safe and reliable design of structures. In this paper, the flow stress behavior of AZ81 magnesium alloy is determined under tensile, compressive, and flexural loads at different strain rates and temperatures. An electromechanical universal testing machine of capacity 250 kN is used to perform quasi-static tests (0.0001–0.1  s−1) under tension and compression; and three-point bending (flexure) tests using suitable fixtures at crosshead speeds (1–100  mm/min) for varying span lengths (80–160  mm) and orientations (flat and transverse) at room temperature, 25°C. The thermal and fracture behaviors of the alloy at various temperatures (25°C, 100°C, 150°C, and 200°C) are studied under quasi-static tension (0.001  s−1). The heating rate of the tensile specimens is 20°C/min and the soaking time is 15  min. Dynamic tensile (850–1,400  s−1) and compressive (1,900–3,300  s−1) experiments are conducted using appropriate arrangements of Hopkinson bar systems. The effects of specimen geometry on the flow stress of the alloy are observed under compression. Ductility and toughness are determined to establish the energy dissipation capacity of the alloy. Fractographs of the fractured tensile specimens are studied by scanning electron microscope (SEM). Also, the applicability of the existing Cowper–Symonds and Johnson–Cook models in the aforementioned loading conditions is discussed.
    publisherASCE
    titleFlow Stress Behavior of AZ81 Magnesium Alloy under Dynamic Loads
    typeJournal Paper
    journal volume33
    journal issue3
    journal titleJournal of Materials in Civil Engineering
    identifier doi10.1061/(ASCE)MT.1943-5533.0003607
    journal fristpage04020486
    journal lastpage04020486-1
    page1
    treeJournal of Materials in Civil Engineering:;2021:;Volume ( 033 ):;issue: 003
    contenttypeFulltext
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