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Changing Behavior of Non-metallic Inclusions in Solid Iron Deoxidized by Al–Ti Addition during Heating at 1473 K

机译:在1473 K加热下Al-Ti添加脱氧固体铁中非金属夹杂物的变化行为

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Changing behavior of non-metallic inclusions in composition and size distribution at high temperature was investigated by preparing three kinds of Fe–Al–Ti steels, heating at 1473 K, and observing inclusions by SEM-EDS. In the case of the specimen in which thermodynamically stable inclusion at 1873 K is Al_(2)O_(3), mostly pure Al_(2)O_(3) inclusions were observed in an as cast sample, while many dual phase inclusions were observed after heating. Iron content in inclusions increased and many Al–Ti–Fe–O inclusions in narrow composition range were observed. In the case of the specimen in which stable inclusion at 1873 K is Ti_(3)O_(5), TiO_(x) inclusions were observed in an as cast sample. Inclusion compositions changed to Fe–Ti–O by heating and inclusion size became smaller to 2 to 3 μm. In the case of the specimen which composition is located at the boundary area of Al_(2)O_(3), Al_(2)TiO_(5), and Ti_(3)O_(5) stable regions at 1873 K, various inclusions from pure Al_(2)O_(3) to TiO_(x) were observed in an as cast sample. By heating, three types of inclusions, namely, Al_(2)O_(3), Al–Fe–O, and Al–Ti–Fe–O inclusions were observed and average inclusion size decreased. Although the stable phase of oxide equilibrated with Fe–Al–Ti–O system at 1473 K are not clarified, inclusions equilibrated with molten metal are no longer stable in solid state steel and thus inclusion composition and size change by reacting with solid steel.
机译:通过制备三种Fe–Al–Ti钢,在1473 K加热并通过SEM-EDS观察夹杂物,研究了高温下非金属夹杂物在成分和尺寸分布中的变化行为。对于在1873 K处热力学稳定的夹杂物为Al_(2)O_(3)的标本,在铸态样品中观察到大部分为纯Al_(2)O_(3)夹杂物,而观察到许多双相夹杂物加热后。夹杂物中的铁含量增加,并且观察到许多窄成分范围的Al-Ti-Fe-O夹杂物。在样品中1873 K处的稳定夹杂物为Ti_(3)O_(5)的情况下,铸态样品中观察到TiO_(x)夹杂物。通过加热,夹杂物成分变为Fe–Ti–O,夹杂物尺寸减小至2至3μm。如果样品的成分位于1873 K处的Al_(2)O_(3),Al_(2)TiO_(5)和Ti_(3)O_(5)稳定区域的边界区域,则各种夹杂物在铸造样品中观察到从纯Al_(2)O_(3)到TiO_(x)的变化。通过加热,观察到三种夹杂物,即Al_(2)O_(3),Al–Fe–O和Al–Ti–Fe–O夹杂物,平均夹杂物尺寸减小。尽管尚不清楚在1473 K下用Fe–Al–Ti–O系统平衡的氧化物的稳定相,但与熔融金属平衡的夹杂物在固态钢中不再稳定,因此夹杂物的组成和尺寸会因与固态钢反应而发生变化。

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