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Plastic deformation magnesium alloy having excellent thermal conductivity and flame retardancy, and preparation method

机译:具有优异的导热性和阻燃性的塑性变形镁合金及其制备方法

摘要

Disclosed is a magnesium alloy that has high thermal conductivity and flame retardancy and facilitates plastic working, wherein magnesium is added with 0.5 to 5 wt % of zinc (Zn) and 0.3 to 2.0 wt % of at least one of yttrium (Y) and mischmetal, with, as necessary, 1.0 wt % or less of at least one selected from among calcium (Ca), silicon (Si), manganese (Mn) and tin (Sn), the total amount of alloy elements being 2.5 to 6 wt %. A method of manufacturing the same is also provided, including preparing a magnesium-zinc alloy melt in a melting furnace, adding high-melting-point elements in the form of a master alloy and melting them, and performing mechanical stirring during cooling of a cast material in a continuous casting mold containing the magnesium alloy melt, thus producing a magnesium alloy cast material having low segregation, after which a chill is removed from the cast material or diffusion annealing is performed, followed by molding through a tempering process such as rolling, extrusion or forging. This magnesium alloy is improved in ductility by the action of alloy elements for inhibiting the formation of lamella precipitates due to a low-melting-point eutectic phase in a magnesium matrix structure, can be extruded even at a pressure of 1,000 kgf/cm2 or less due to the increased plasticity thereof, and can exhibit thermal conductivity of 100 W/m·K or more and flame retardancy satisfying the requirements for aircraft materials and is thus suitable for use in fields requiring fire safety, thereby realizing wide application thereof as a heat sink or a structural material for portable appliances, vehicles and aircraft components and contributing to weight reduction.
机译:公开了一种具有高导热性和阻燃性并促进塑性加工的镁合金,其中向镁中添加0.5至5重量%的锌(Zn)和0.3至2.0重量%的钇(Y)和稀土金属中的至少一种必要时,选自钙(Ca),硅(Si),锰(Mn)和锡(Sn)中的至少一种为1.0重量%以下,合金元素的总量为2.5至6重量% 。还提供了一种制造该合金的方法,包括在熔炉中制备镁-锌合金熔体,以母合金的形式添加高熔点元素并将其熔化,以及在铸件冷却期间进行机械搅拌。在含有镁合金熔体的连续铸造模具中将其浇铸,从而产生偏析度低的镁合金铸造材料,然后从铸造材料中去除冷却或进行扩散退火,然后通过诸如轧制的回火工艺进行成型,挤压或锻造。该镁合金通过抑制镁基体结构中的低熔点共晶相导致的薄片状析出物的合金元素的作用而改善了延展性,即使在1,000 kgf / cm 2 归因于其可塑性的提高,并且可以表现出100 W / m·K或更高的导热率,并且阻燃性满足飞机材料的要求,因此适用于需要防火安全的领域,从而实现了其作为用于便携式设备,车辆和飞机部件的散热器或结构材料的广泛应用,并有助于减轻重量。

著录项

  • 公开/公告号US10767248B2

    专利类型

  • 公开/公告日2020-09-08

    原文格式PDF

  • 申请/专利权人 IN-YOUNG LEE;

    申请/专利号US201615553688

  • 申请日2016-02-24

  • 分类号C22C23/04;C22C1/02;C22C23/06;

  • 国家 US

  • 入库时间 2022-08-21 11:28:23

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