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    • 1. 发明专利
    • Magnesium alloy sheet material
    • 镁合金材料
    • JP2012140655A
    • 2012-07-26
    • JP2010292517
    • 2010-12-28
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • YAMAKAWA SHINKONUMANO MASASADASUGIHARA TAKAYASUKUBO YUGOIGUCHI KOJIMIZUNO OSAMU
    • C22C23/02C22C23/00C22C23/04C22C23/06C22F1/00C22F1/06
    • PROBLEM TO BE SOLVED: To provide a magnesium alloy sheet material with excellent corrosion resistance.SOLUTION: The magnesium alloy sheet material comprises a magnesium alloy containing 7.3 mass%-16 mass% Al. When the Al content of the whole sheet material is x mass%, the area with the Al content of 0.8x mass%-1.2x mass% is 50 area% or more, the area with the Al content of 1.4x mass% or more is 17.5 area% or less and there is substantially no area with the Al content of 4.2 mass% or less. In the magnesium alloy sheet material, since the variation of Al concentration is low and there are few areas with extremely low Al content, the occurrence of localized corrosion and the progression of the corrosion are effectively prevented. Thus, the magnesium alloy sheet material has excellent corrosion resistance compared to a die cast material with the same overall Al content.
    • 要解决的问题:提供具有优异耐腐蚀性的镁合金板材。 解决方案:镁合金片材包含含7.3质量%-16质量%Al的镁合金。 当整个片材的Al含量为x质量%时,Al含量为0.8×质量%-1.2×质量%的面积为50面积%以上,Al含量为1.4×质量%以上的面积 为17.5面积%以下,Al含量基本上为4.2质量%以下。 在镁合金板材中,由于Al浓度的变化小,Al含量极低的区域少,所以有效地防止了局部腐蚀的发生和腐蚀的进行。 因此,与具有相同总体Al含量的压铸材料相比,镁合金板材具有优异的耐腐蚀性。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Magnesium alloy casting, and method for producing the same
    • 镁合金铸造及其制造方法
    • JP2012024786A
    • 2012-02-09
    • JP2010163374
    • 2010-07-20
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • UCHIHARA TAKESHIMIYANAGA TOMOMASANUMANO MASASADAOISHI YUKIHIROKAWABE NOZOMI
    • B22D11/00B22D11/06C22C23/02
    • PROBLEM TO BE SOLVED: To provide a magnesium alloy casting suppressible of surface cracking over the entire length of a long cast sheet, and a method for producing the same.SOLUTION: The method for producing the magnesium alloy casting in which a long cast sheet 200 is produced by feeding magnesium alloy melt 100 to the mold of a continuous casting machine from a nozzle 50 includes: a magnesium alloy melt feeding step of feeding the magnesium alloy melt 100 to the tip end side of a nozzle 50; and a winding step of winding the long cast sheet 200 in a coil. In the magnesium alloy melt feeding step, the temperature of the magnesium alloy melt at the tip end position of a temperature controllable area controllable of the temperature of the magnesium alloy melt 100 in the process in which the magnesium alloy melt 100 reaches the nozzle tip end is set to be equal to or higher than the liquidus temperature of the magnesium alloy+50°C and equal to or lower than the liquidus temperature of the magnesium alloy+65°C.
    • 待解决的问题:提供一种镁合金铸件,其可在长期铸造片材的整个长度上抑制表面裂纹及其制造方法。 解决方案:通过从喷嘴50向连铸机的模具供给镁合金熔体100而制造长期铸造片200的镁合金铸件的制造方法包括:镁合金熔融进给步骤, 镁合金熔体100到喷嘴50的前端侧; 以及将长片200缠绕在线圈中的卷绕工序。 在镁合金熔融进料步骤中,在镁合金熔体100到达喷嘴末端的过程中,在镁合金熔体100的温度可控温度可控区域的前端位置处的镁合金熔体的温度 设定为等于或高于镁合金+ 50℃的液相线温度并且等于或低于镁合金的液相线温度+ 65℃。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Solution treatment method of magnesium alloy material
    • 镁合金材料的处理方法
    • JP2011174160A
    • 2011-09-08
    • JP2010041031
    • 2010-02-25
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • UCHIHARA TAKESHINUMANO MASASADAMIYANAGA TOMOMASAOISHI YUKIHIROKAWABE NOZOMI
    • C22F1/06B21C47/26C22F1/00
    • PROBLEM TO BE SOLVED: To provide a solution treatment method enabling to uniformly cool an alloy coil wound into a coil, even when directly subjecting the same to the solution treatment. SOLUTION: The solution treatment method of an Mg alloy material comprises: a heating step of heating the Mg alloy material; a cooling step of cooling the Mg alloy material by soaking the Mg alloy material in a refrigerant after the heating step; and a pulling step of pulling up the Mg alloy material from the refrigerant after the cooling step. The Mg alloy material is an Mg alloy coil 10 wound into a coil. The outermost layer of the Mg alloy coil 10 is covered with an outer cover 20 until it is subjected to the cooling step so as to prevent the surface of the Mg alloy coil 10 from being exposed. The Mg alloy coil 10 is directly subjected to the heating, cooling and pulling steps in the form of the coil. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:即使在直接对其进行固溶处理时,也可以提供能够均匀地冷却卷绕在线圈中的合金线圈的固溶处理方法。 解决方案:Mg合金材料的固溶处理方法包括:加热Mg合金材料的加热步骤; 冷却步骤,通过在加热步骤之后将Mg合金材料浸入制冷剂中来冷却Mg合金材料; 以及在冷却步骤之后从制冷剂中拉出Mg合金材料的拉拔步骤。 Mg合金材料是卷绕在线圈中的Mg合金线圈10。 Mg合金线圈10的最外层被外盖20覆盖,直到经受冷却步骤,以防止Mg合金线圈10的表面露出。 Mg合金线圈10直接进行线圈形式的加热,冷却和拉伸步骤。 版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Molded body of magnesium alloy
    • 镁合金的模制体
    • JP2010077465A
    • 2010-04-08
    • JP2008244437
    • 2008-09-24
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • MORI NOBUYUKIKAWABE NOZOMIOISHI YUKIHIROOKUDA NOBUYUKINUMANO MASASADAINOUE RYUICHIKITAMURA TAKAHIKOMORI KOJI
    • C22C23/02B21D22/20B21J5/00B21K21/16C22F1/00C22F1/06
    • PROBLEM TO BE SOLVED: To provide a molded body of a magnesium alloy, which is a press-molded body and has a wide inner space, and to provide a method for manufacturing the same. SOLUTION: The molded body of the magnesium alloy 1 is formed by press-molding a plate made from the magnesium alloy, and includes a bottom face section 10 and a sidewall section 11 which is provided so as to rise from the bottom face section 10. The sidewall section 11 includes a thin wall part 13 and a thick wall part 14 of which the thickness is thicker than the thickness t 13 of the thin wall part 13. The thickness of the thinnest portion in the thin wall part 13 is 40 to 90% of the thickness of the thickest portion in the thick wall part 14, and the length l 13 in a rising direction of the thin wall part 13 is 20 to 50% of the length l 11 in a rising direction of the sidewall section 11. The inner space of the molded body 1 is widened because the molded body 1 has the thin wall part 13. The molded body 1 can be formed, for instance, with a multistage pressing process. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种作为压制成型体并具有宽内部空间的镁合金成型体,并提供其制造方法。 解决方案:镁合金1的成形体通过对由镁合金制成的板进行加压成型而形成,并且包括底面部10和侧壁部11,该侧面部11设置成从底面 侧壁部分11包括薄壁部分13和厚壁部分14,其厚度厚于薄壁部分13的厚度t SB 13。厚度最薄部分 薄壁部13的厚壁部14的厚度的40〜90%是厚壁部14的上部方向上的长度l SB> 13 为20〜 在侧壁部分11的上升方向上的长度l 11 的50%。由于成型体1具有薄壁部分13,成型体1的内部空间变宽。成型体1 可以例如通过多级压制方法形成。 版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • Metal formed body and method of producing metal formed body
    • 金属成型体及金属成型体的制造方法
    • JP2014050863A
    • 2014-03-20
    • JP2012196954
    • 2012-09-07
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • MORI KOJINUMANO MASASADATSUBOTA TAISUKEKAWABE NOZOMI
    • B21D5/01B21D11/08C22C23/00C22C23/02C22C23/04C22C23/06C22F1/00C22F1/06
    • PROBLEM TO BE SOLVED: To provide a metal formed body having a sharp-edge corner part and its production method.SOLUTION: A metal formed body 2 is produced by shaping a metal plate 1 based on a light metal and has a corner part 2c formed by the shaping. In the corner part 2c of the metal formed body 2, there is an area in which the thickness is smaller than a thickness T of plane parts 2p other than the corner part 2c, and the outward bend radius Rof the corner part 2c is equal to or smaller than the thickness T of the plane parts 2p. The metal formed body 2 is produced by forming a groove 1g for bending in a part of the metal plate 1 (step α) and shaping the metal plate 1, with the groove 1g for bending located inside the bending, in such a manner that the outward bend radius Rof the corner part 2c is equal to or smaller than the thickness T of the plane parts 2p other than the corner part 2c (step β).
    • 要解决的问题:提供一种具有尖锐角部的金属成形体及其制造方法。解决方案:通过使金属板1基于轻金属成形而形成金属成形体2,并形成有角部2c 通过塑造。 在金属成形体2的角部2c中,存在厚度小于角部2c以外的平面部2p的厚度T的区域,角部2c的向外弯曲半径Rof等于 或小于平面部分2p的厚度T. 金属成形体2通过在金属板1的一部分(步骤α)中形成用于弯曲的槽1g并且使金属板1成形,通过在弯曲中位于弯曲处的弯曲槽1g来形成金属成形体2, 角部2c的向外弯曲半径Rof等于或小于角部2c以外的平面部2p的厚度T(步骤bgr)。
    • 10. 发明专利
    • Twin roll type continuous casting device and twin roll type continuous casting method
    • 双辊型连续铸造装置和双辊型连续铸造方法
    • JP2010115690A
    • 2010-05-27
    • JP2008291274
    • 2008-11-13
    • Sumitomo Electric Ind Ltd住友電気工業株式会社
    • NUMANO MASASADATSURITA TAMIO
    • B22D11/06B22D11/11B22D43/00
    • PROBLEM TO BE SOLVED: To provide a twin roll type continuous casting method which can produce a cast material while removing the solidified matter of a molten metal stuck to a molten metal supply port, and to provide a twin roll type continuous casting device suitable for the method.
      SOLUTION: The twin roll type continuous casting device is provided with: a pair of synchronously rotating casting rolls 41, 42; and a molten metal supply member 10 for continuously supplying a molten metal LM to the space between both the casting rolls 41, 42. The twin roll type casting device 1 is provided with: a supply mechanism 30 supplying wires 21, 22 (inclusions) to the space between the molten metal supply port of the molten metal supply member 10 and the casting rolls 41, 42. The wires 21, 22 supplied from the supply mechanism 30 are fed out to the casting direction together with the cast material M by the rotation of the casting rolls 41, 42 so as to remove the solidified matter of the molten metal LM stuck to the molten metal supply port 11.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种双辊式连续铸造方法,其可以在除去粘附到熔融金属供给口的熔融金属的固化物的同时制造铸造材料,并且提供双辊型连续铸造装置 适合该方法。 解决方案:双辊式连续铸造装置设置有:一对同步旋转的铸辊41,42; 以及用于将熔融金属LM连续地供给到两个铸辊41,42之间的空间的熔融金属供给构件10.双辊型铸造装置1具备供给机构30,将供给线21,22(夹杂物) 熔融金属供给部件10的熔融金属供给口与铸辊41,42之间的空间。从供给机构30供给的电线21,22与铸造材料M一起通过旋转被送出到铸造方向 的铸辊41,42,以除去粘附在熔融金属供给口11上的熔融金属LM的固化物质。(C)2010,JPO&INPIT