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首页> 外文期刊>Metallurgical and Materials Transactions A >Mg-Al-Ca In-Situ Composites with a Refined Eutectic Structure and Their Compressive Properties
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Mg-Al-Ca In-Situ Composites with a Refined Eutectic Structure and Their Compressive Properties

机译:具有细化共晶结构的Mg-Al-Ca原位复合材料及其压缩性能

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摘要

In a series of Mg x (Al2Ca)100?x (76 ≤ x ≤ 87) ternary alloys near the Mg-(Mg,Al)2Ca pseudo-binary eutectic point, different phases and morphologies based on ultrafine eutectic microstructure have been obtained by controlling the composition and changing the cooling rate via either induction melting or copper mold casting. For 81 ≤ x ≤ 87, the chill-cast alloys with ductile Mg dendrites embedded in an ultrafine [Mg + (Mg,Al)2Ca] eutectic matrix exhibit gradually increased fracture strength from 415 to 491 MPa with the decrease of Mg content. At x = 79, the Mg79Al14Ca7 alloy contains hard (Mg,Al)2Ca precipitates coexisting with ductile Mg dendrite, dispersed in the strong eutectic matrix. This alloy exhibits the highest compressive fracture strength (600 MPa), and the specific strength reaches 3.4 × 105 N·m·kg?1. The alloys all exhibit substantial plastic strain (5 to 6 pct). The attainment of such a combination of strength and plasticity is an interesting and useful step in improving the mechanical properties of lightweight Mg alloys.
机译:在Mg-(Mg,Al)2 Ca伪附近的一系列Mg x (Al2 Ca)100?x (76≤x≤87)三元合金-通过感应熔炼或铜铸件控制成分并改变冷却速率,已经获得了基于超细共晶微观结构的二元共晶点,不同的相和形态。对于81≤x≤87,在超细[Mg +(Mg,(Al,Al)2 Ca]共晶基质中嵌入有延性Mg树枝晶的冷铸合金,其断裂强度从415 MPa逐渐增加到491 MPa,并且降低镁含量。在x = 79时,Mg79 Al14 Ca7 合金包含硬质(Mg,Al)2 Ca沉淀物与延性Mg枝晶共存,并分散在强共晶基质中。该合金表现出最高的压缩断裂强度(600 MPa),比强度达到3.4×105 N·m·kg?1。合金全部显示相当大的塑性应变(5到6 pct)。实现强度和塑性的这种结合是改善轻质镁合金机械性能的有趣且有用的步骤。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2008年第5期|1225-1235|共11页
  • 作者

    Ling-Ling Shi; Jian Xu; Evan Ma;

  • 作者单位

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences Shenyang 110016 P.R. China;

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences Shenyang 110016 P.R. China;

    Department of Materials Science and Engineering The Johns Hopkins University Baltimore MD 21218 USA;

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