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<t>EBSD</t> analysis of the T6-treated AC alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.
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EBSD analysis of the T6-treated AC alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.

Journal: Materials

Article Title: Evolution of the Young’s Modulus of Al-7Si-4Cu Alloy with Increasing Temperature by Various Strengthening Approaches

doi: 10.3390/ma19091831

Figure Lengend Snippet: EBSD analysis of the T6-treated AC alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.

Article Snippet: Electron backscatter diffraction (EBSD) analysis was performed using a JEOL JSM-7800F SEM (Japan Electron Optics Laboratory Co., Ltd., Tokyo, Japan) to characterize the grain size, crystallographic orientation, grain boundary (GB) distribution, and recrystallized fraction (RF).

Techniques:

EBSD analysis of the T6-treated AE alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.

Journal: Materials

Article Title: Evolution of the Young’s Modulus of Al-7Si-4Cu Alloy with Increasing Temperature by Various Strengthening Approaches

doi: 10.3390/ma19091831

Figure Lengend Snippet: EBSD analysis of the T6-treated AE alloy: ( a ) grain orientation and size distribution of α-Al grains; ( b ) corresponding PFs; ( c ) GB analysis; ( d ) RF analysis.

Article Snippet: Electron backscatter diffraction (EBSD) analysis was performed using a JEOL JSM-7800F SEM (Japan Electron Optics Laboratory Co., Ltd., Tokyo, Japan) to characterize the grain size, crystallographic orientation, grain boundary (GB) distribution, and recrystallized fraction (RF).

Techniques: