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Information Journal Paper

Title

INVESTIGATION ON EFFECT OF STANDOFF DISTANCE ON MORPHOLOGY AND MECHANICAL PROPERTIES OF EXPLOSIVELY ALMG5-AI-STEEL THICK THREE BONDED LAYERS PLATES

Author(s)

EKRAMI AMIR | KHANZADEH GHARAH SHIRAN MOHAMMAD REZA | ARABI HAMID | Issue Writer Certificate 

Pages

  67-77

Abstract

 In this paper, effect of STANDOFF DISTANCE parameter on morphology and mechanical properties of explosively bonded AlMg5-AI-Steel is being studied. Results have shown that by changing STANDOFF DISTANCE and loss of kinetic energy, the shape of interface is transited from Smooth-wavy to Wavy and wavy in a vortex way. With increasing of the STANDOFF DISTANCE due to the loss of kinetic energy also LOCAL MELTED ZONE has been created in front of VORTICES. Chemical composition of local melting zone was mixed of parent and flyer plates due to circular movement of JET. These areas have reduced bonding strength due to stress concentratio; results also have shown that strength level of all weldment was above standard level .The sample without local melting zone and wavy interface has the highest strength.

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    APA: Copy

    EKRAMI, AMIR, KHANZADEH GHARAH SHIRAN, MOHAMMAD REZA, & ARABI, HAMID. (2015). INVESTIGATION ON EFFECT OF STANDOFF DISTANCE ON MORPHOLOGY AND MECHANICAL PROPERTIES OF EXPLOSIVELY ALMG5-AI-STEEL THICK THREE BONDED LAYERS PLATES. ADVANCED PROCESSES IN MATERIALS, 9(3 (34)), 67-77. SID. https://sid.ir/paper/172599/en

    Vancouver: Copy

    EKRAMI AMIR, KHANZADEH GHARAH SHIRAN MOHAMMAD REZA, ARABI HAMID. INVESTIGATION ON EFFECT OF STANDOFF DISTANCE ON MORPHOLOGY AND MECHANICAL PROPERTIES OF EXPLOSIVELY ALMG5-AI-STEEL THICK THREE BONDED LAYERS PLATES. ADVANCED PROCESSES IN MATERIALS[Internet]. 2015;9(3 (34)):67-77. Available from: https://sid.ir/paper/172599/en

    IEEE: Copy

    AMIR EKRAMI, MOHAMMAD REZA KHANZADEH GHARAH SHIRAN, and HAMID ARABI, “INVESTIGATION ON EFFECT OF STANDOFF DISTANCE ON MORPHOLOGY AND MECHANICAL PROPERTIES OF EXPLOSIVELY ALMG5-AI-STEEL THICK THREE BONDED LAYERS PLATES,” ADVANCED PROCESSES IN MATERIALS, vol. 9, no. 3 (34), pp. 67–77, 2015, [Online]. Available: https://sid.ir/paper/172599/en

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