مشخصات پژوهش

صفحه نخست /Correlation between grain ...
عنوان Correlation between grain size, texture evolution, and mechanical performance in pure magnesium processed by equal-channel angular pressing
نوع پژوهش مقاله چاپ‌شده در مجلات علمی
کلیدواژه‌ها Severe plastic deformationgrain, refinement, microstructural evolution, texture development, Hall-Petch strengthening
چکیده This study investigated the effects of equal-channel angular pressing (ECAP) on the microstructure and mechanical behaviour of pure magnesium across different pass numbers (1, 4, 8) and deformation temperatures (225, 325, 425°C). After one pass at 325°C, initial coarse columnar grains (∼1 × 3 mm) were refined to equiaxed grains averaging ∼25 µm, with minimal further refinement at higher passes, indicating microstructural stabilisation. Misorientation analysis revealed a stable grain-boundary character, with average angles of approximately 40°. Texture analysis showed {0001} basal plane tilting from 20° to 40° relative to the extrusion direction with increasing passes, attributed to sample rotation during ECAP. Yield strength increased from 12 MPa (as-cast) to 60 MPa after one pass but decreased to 41 MPa after eight passes due to dynamic recovery and texture softening, while elongation-to-failure rose from 8% to 16.7%. Deformation temperature critically influenced outcomes: at 225°C, one pass yielded finer grains (15–25 µm) compared to ∼85 µm at 425°C, resulting in superior properties (75 MPa yield strength, 15% elongation). These results demonstrate that ECAP effectively tailors microstructure and texture, enabling synergistic improvement in strength and ductility, particularly at lower processing temperatures.
پژوهشگران زیاد ادهم (نفر اول)، محمود ابراهیمی (نفر دوم)