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Compression properties enhancement of Al-Cu alloy solidified under a 29 T high static magnetic field

机译:在29 T高静磁场下凝固的Al-Cu合金的压缩性能增强

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摘要

Bulk solidification of Al-40 wt% Cu hypereutectic alloy has been investigated using a high static magnetic field (HSMF). The results show that, by imposing a 29 T HSMF, the melt convection has been completely suppressed in the mushy zone and the whole scale. The primary Al2Cu faceted phase changed to non-faceted phase because of the growth enhancement of Al2Cu precipitates. Al-Al2Cu eutectic was destabilized as a coexisting of lamellar and rod-like α-Al phase under 0 T whereas it was stabilized as a lamellae under the 29 T HSMF. The dimension of primary Al2Cu precipitates has been refined. The interlamellar spacing of eutectic Al-Al2Cu structure has been reduced from 6.3 µm to 2–3 µm. The primary Al2Cu precipitates were almost oriented to its < 001 > crystal direction which was parallel to the direction of the vertical HSMF. The morphologies of shrinkages displays as approximately regular spheres. Compressive strength of Al-40 wt% Cu alloy has been enhanced from 248 MPa to 431 MPa and the maximum stain has been improved from 3.6% to 5%. This paper reveals the effect of HSMF on Al2Cu precipitates, provides a new sight about refinement theory and new pathway to fabricate brittle materials with excellent mechanical properties.
机译:已经使用高静磁场(HSMF)研究了Al-40%wt%Cu过共晶合金的整体凝固。结果表明,通过施加29 T HSMF,熔体对流在糊状区和整个尺度上被完全抑制。由于Al2Cu沉淀物的生长增强,主要的Al2Cu面状相变为非面状相。 Al-Al2Cu共晶在0 T下由于层状和棒状α-Al相共存而不稳定,而在29 T HSMF下则稳定为片状。 Al2Cu初生沉淀物的尺寸已精制。共晶Al-Al2Cu结构的层间间距从6.3µm减小至2-3µm。 Al2Cu初生沉淀物几乎垂直于平行于垂直HSMF方向的<001001>晶体方向。收缩的形态显示为近似规则的球体。 Al-40 wt%Cu合金的抗压强度从248 MPa提高到431 MPa,最大污点从3.6%提高到5%。本文揭示了HSMF对Al2Cu析出物的影响,为细化理论和制造具有优异机械性能的脆性材料提供了新途径。

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