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Texture Formation in a Polycrystalline Fe–Ni–Co–Al–Ti–B Shape Memory Alloy

机译:在多晶Fe-Ni-Co-Al-Ti-B形状记忆合金中的纹理形成

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In polycrystalline Fe-Ni-Co-Al-based shape memory alloys, control of the recrystallization texture is significantly important to improve the ductility by suppressing the brittle precipitates of the β -B2 phase at grain boundaries during aging treatment. In this paper, the texture evolution in the recrystallization process was systematically investigated by means of the electron backscatter diffraction (EBSD) method in an Fe–Ni–Co–Al–Ti–B polycrystalline alloy. The development of a {110} texture was confirmed in the 98.5% cold-rolled sheet specimen. After primary recrystallization annealing, the γ matrix containing the β phase showed the continuous recrystallization remaining in the same orientation with a deformation texture after annealing at 1000°C. Grain growth of the γ phase was interrupted by the β phase. Then, abnormal grain growth of {210} grains began occurring in concurrence with the dissolution of the β phase and the main recrystallization texture changed from {110} to {210} at temperatures higher than 1100°C.
机译:在基于多晶Fe-Ni-Co-Al的形状记忆合金中,通过抑制老化处理期间晶界在晶界处的脆性沉淀,重结晶纹理的控制对于改善延展性来改善延展性。在本文中,通过在Fe-Ni-Co-Al-Ti-B多晶合金中通过电子反向散射衍射(EBSD)方法系统地研究了重结晶过程中的纹理演化。在98.5%冷轧板标本中确认了{110}纹理的发展。在一次重结晶退火后,含有

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