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    • 2. 发明申请
    • Casting Method And Casting Apparatus
    • 铸造方法和铸造设备
    • US20080169078A1
    • 2008-07-17
    • US11883772
    • 2006-03-15
    • Yuuichi IenagaTadayoshi TsukedaHitohisa YamadaMasahiko MuroYasuhiro Aoki
    • Yuuichi IenagaTadayoshi TsukedaHitohisa YamadaMasahiko MuroYasuhiro Aoki
    • B22D27/08
    • B22D27/08
    • The present invention has an object of preventing segregation during the casting of Mg alloy or the like containing additive elements having a great difference of specific gravity to obtain a cast having a good quality.A casting mold 1 having a molten metal received therein is rotated in one direction by a rotary device 7 with the vertical axis as a rotary axis while solidifying the molten metal for a predetermined period of time, and, after the predetermined period of time is lapsed, the casting mold 1 is rotated in the direction opposite the direction of rotation for a predetermined period of time, and the rotation in the opposing directions is repeated so that the molten metal is solidified. The molten metal can be shaken and agitated without roughening the surface of the molten metal to uniformalize the distribution of temperature of the molten metal in the casting mold. The production of segregates can be minimized and a fine homogenous structure can be obtained. Thus, a metallic material excellent in ductility and strength can be obtained.
    • 本发明的目的是防止在含有比重差的添加元素的Mg合金等的铸造中产生偏析,得到质量好的铸件。 其中容纳有熔融金属的铸模1通过旋转装置7沿垂直轴线作为旋转轴线在一个方向上旋转,同时使熔融金属凝固预定时间段,并且在预定时间段过去之后 ,铸造模具1沿与旋转方向相反的方向旋转预定时间,并且重复相反方向的旋转,使得熔融金属固化。 可以摇动和搅拌熔融金属,而不会使熔融金属的表面变粗糙,从而使铸模中熔融金属的温度分布均匀化。 分离物的生产可以最小化,并且可以获得精细的均匀结构。 因此,可以获得延展性和强度优异的金属材料。
    • 3. 发明申请
    • Process for Producing Mg Alloy
    • 生产镁合金的工艺
    • US20080317621A1
    • 2008-12-25
    • US11795795
    • 2006-03-15
    • Yasuhiro AokiHitohisa YamadaMasahiko MuroYuuichi Ienaga
    • Yasuhiro AokiHitohisa YamadaMasahiko MuroYuuichi Ienaga
    • C22C1/02
    • C22C1/02C22C23/00
    • An object of the present invention is to obtain an ingot containing homogeneous ingredients with suppressing ingredient segregation of Y in the melt-production of an Mg alloy containing Y.An ingot is formed in a solidification time of not more than 200 seconds after an Mg alloy containing Y is melted. The above solidification is desirably performed after the melt liquid of the Mg alloy is stirred and left standing. The above Mg alloy, for example, contains Y in an amount of 0.5 to 20% by weight. There is an advantage that an Mg alloy having low ingredient segregation and containing homogeneous ingredients is obtained. Therefore, in the production of alloys whose performance considerably varies depending on the ingredient concentration, such as functional materials, high-quality products can be produced in good yield rates. In order to achieve the above object, specifically, the raw material is melted in a melting furnace and, after melt drop, the melt liquid is sufficiently stirred and left standing. Thereafter, it is cast into a mold designed so that solidification is completed within the above-defined solidification time. Moreover, it is also possible to shorten the solidification time by casting the melt liquid into a sufficiently water-cooled mold.
    • 本发明的目的是在含有Y的Mg合金的熔融生产中获得含有均匀成分的含有抑制成分Y的成分的锭。在Mg合金之后的固化时间不超过200秒形成锭 含有Y被熔化。 上述凝固优选在将Mg合金的熔融液搅拌并静置之后进行。 上述Mg合金例如含有0.5〜20重量%的Y。 获得具有低成分偏析并含有均匀成分的Mg合金的优点。 因此,在功能材料等成分浓度的性能显着变化的合金的制造中,可以以良好的成品率制造高品质的产品。 为了实现上述目的,具体地说,将原料在熔炉中熔化,在熔融熔融之后,将熔融液充分搅拌并静置。 此后,将其浇铸成设计的模具,使得在上述凝固时间内完成固化。 此外,还可以通过将熔融液体浇铸到足够水冷的模具中来缩短凝固时间。