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The ECAP Process Simulation and Experiments with Different Back Pressures for Magnesium Alloy
The ECAP Process Simulation and Experiments with Different Back Pressures for Magnesium Alloy
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The ECAP Process Simulation and Experiments with Different Back Pressures for Magnesium Alloy
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The ECAP Process Simulation and Experiments with Different Back Pressures for Magnesium Alloy
The ECAP Process Simulation and Experiments with Different Back Pressures for Magnesium Alloy
Journal Article

The ECAP Process Simulation and Experiments with Different Back Pressures for Magnesium Alloy

2022
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Overview
According to this study, the ECAP process with different BP is performed on the engineering magnesium alloy ( AZ31 ). The effect of BP on the strain condition and flow paths may differ as the statically deformed portion of the sample passes through the strain zone. The BP application of 25, 50 and 100 MPa brings about the forward typical shear rotation of structural components in the horizontal direction. The complex (20 x 20 x 200) mm 3 ECAP engine is applied with movable outer walls and specially designed sliding bottoms for low friction (moving die). The flow model is made by a cubic flow net of the DEFORM software tool on the workpiece. Structural features and initial micro-hardness measurements made on the x and y planes of the workpiece also received a special attention. Since BP leads to increased density the micro-hardness could be improved and ascribed to the change in texture.