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MICROSTRUCTURE AND MECHANICAL PROPERTIES OF MAGNESIUM-ALUMINUM-MANGANESE CAST ALLOYS

机译:镁铝锰铸造合金的组织和力学性能

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摘要

Mg-Al-Mn (AM) based cast alloys were optimized for balanced tensile properties (strength and ductility) and response to heat treatment. The microstructure and mechanical property tests suggest that an aluminum content of 7-8% Al is optimum in these alloys for structural applications. AM80 (Mg-8%Al-0.3%Mn) alloy castings produced by super-vacuum die casting process show very good properties; yield strength of 157 MPa, ultimate tensile strength of 252 MPa and elongation of 5.6% in the as-cast condition, which compare favorably with the workhorse aluminum die casting alloy A380. Both T5 (artificial aging after as-cast condition) and T6 (artificial aging after solution and water quench) provided a similar improvement in strength for gravity-cast AM alloys containing more than 8% Al, but minimal strengthening in high pressure die castings.
机译:基于Mg-Al-Mn(AM)的铸造合金经过优化,可实现平衡的拉伸性能(强度和延展性)以及对热处理的响应。显微组织和力学性能测试表明,在这些用于结构应用的合金中,最佳的铝含量为7-8%。通过超真空压铸工艺生产的AM80(Mg-8%Al-0.3%Mn)合金铸件具有很好的性能;屈服强度为157 MPa,极限抗拉强度为252 MPa,在铸态下的伸长率为5.6%,与主力铝压铸合金A380相比是有利的。 T5(铸态条件下的人工时效)和T6(固溶和水淬火后的人工时效)都为包含超过8%Al的重力铸造AM合金提供了类似的强度提高,但在高压压铸件中的强化却很少。

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