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    • 5. 发明授权
    • Pressure casting method of magnesium alloy and metal products thereof
    • 镁合金压铸法及其金属制品
    • US07343959B2
    • 2008-03-18
    • US11504958
    • 2006-08-16
    • Tetsuichi MotegiKazutoshi TakayamaKiyoto Takizawa
    • Tetsuichi MotegiKazutoshi TakayamaKiyoto Takizawa
    • B22D17/08B22D23/00B22D25/00B22D27/04
    • B22D17/007Y10S164/90
    • The present invention provides a pressure casting method of a magnesium alloy. In the method, a molten magnesium alloy is cooled to form a partially molten state containing a solid-phase, and the partially molten state is further cooled to form a solid-phase granularly crystallized solid material. The solid material is partially-melted and pressure cast into a mold by a molding machine. A ratio of primary crystals in said solid material is set to 55 to 65%. The solid material is partially-melted in a solid-phase and liquid-phase coexisting state at a selected heating temperature so that a semi-solid having thixotropic properties and having the size of a main solid phase of 50 to 250 μm and a solid-phase ratio of 30 to 70% is formed. The semi-solid is pressure cast into a mold through a nozzle while maintaining the semi-solid state to form metal products having a ratio of primary crystals of 20 to 50%.
    • 本发明提供一种镁合金的压铸法。 在该方法中,将熔融的镁合金冷却以形成含有固相的部分熔融状态,并将部分熔融状态进一步冷却以形成固相颗粒状结晶的固体材料。 固体材料部分熔化并通过模塑机压铸成模具。 所述固体材料中的一次晶体的比例设定为55〜65%。 固体材料在选定的加热温度下以固相和液相共存状态部分熔融,使得具有触变性并且具有50至250μm的主固相尺寸的半固体和固体 - 形成30〜70%的相位比。 将半固体通过喷嘴压入模具中,同时保持半固态形成具有20至50%的初晶的比例的金属产品。
    • 6. 发明申请
    • Pressure casting method of magnesium alloy and metal products thereof
    • 镁合金压铸法及其金属制品
    • US20060272750A1
    • 2006-12-07
    • US11504958
    • 2006-08-16
    • Tetsuichi MotegiKazutoshi TakayamaKiyoto Takizawa
    • Tetsuichi MotegiKazutoshi TakayamaKiyoto Takizawa
    • B22D17/00
    • B22D17/007Y10S164/90
    • The present invention provides a pressure casting method of a magnesium alloy. In the method, a molten magnesium alloy is cooled to form a partially molten state containing a solid-phase, and the partially molten state is further cooled to form a solid-phase granularly crystallized solid material. The solid material is partially-melted and pressure cast into a mold by a molding machine. A ratio of primary crystals in said solid material is set to 55 to 65%. The solid material is partially-melted in a solid-phase and liquid-phase coexisting state at a selected heating temperature so that a semi-solid having a thixotropic properties and having the size of a main solid phase of 50 to 250 μm and a solid-phase ratio of 30 to 70% is formed. The semi-solid is pressure cast into a mold through a nozzle while maintaining the semi-solid state to form metal products having a ratio of primary crystals of 20 to 50%.
    • 本发明提供一种镁合金的压铸法。 在该方法中,将熔融的镁合金冷却以形成含有固相的部分熔融状态,并将部分熔融状态进一步冷却以形成固相颗粒状结晶的固体材料。 固体材料部分熔化并通过模塑机压铸成模具。 所述固体材料中的一次晶体的比例设定为55〜65%。 固体材料在选定的加热温度下以固相和液相共存状态部分熔融,使得具有触变性并具有50至250μm的主固相尺寸的固体和固体 形成30〜70%的相位比。 将半固体通过喷嘴压入模具中,同时保持半固态形成具有20至50%的初晶的比例的金属产品。
    • 8. 发明申请
    • Pressure casting method of magnesium alloy and metal products thereof
    • 镁合金压铸法及其金属制品
    • US20050034837A1
    • 2005-02-17
    • US10888447
    • 2004-07-09
    • Tetsuichi MotegiKazutoshi TakayamaKiyoto Takizawa
    • Tetsuichi MotegiKazutoshi TakayamaKiyoto Takizawa
    • B22D1/00B22D17/00B22D17/08B22D21/04B22D23/00B22D25/00
    • B22D17/007Y10S164/90
    • The present invention provides a pressure casting method of a magnesium alloy. In the method, a molten magnesium alloy is cooled to form a partially molten state containing a solid-phase, and the partially molten state is further cooled to form a solid-phase granularly crystallized solid material. The solid material is partially-melted and pressure cast into a mold by a molding machine. A ratio of primary crystals in said solid material is set to 55 to 65%. The solid material is partially-melted in a solid-phase and liquid-phase coexisting state at a selected heating temperature so that a semi-solid having a thixotropic properties and having the size of a main solid phase of 50 to 250 μm and a solid-phase ratio of 30 to 70% is formed. The semi-solid is pressure cast into a mold through a nozzle while maintaining the semi-solid state to form metal products having a ratio of primary crystals of 20 to 50%.
    • 本发明提供一种镁合金的压铸法。 在该方法中,将熔融的镁合金冷却以形成含有固相的部分熔融状态,并将部分熔融状态进一步冷却以形成固相颗粒状结晶的固体材料。 固体材料部分熔化并通过模塑机压铸成模具。 所述固体材料中的一次晶体的比例设定为55〜65%。 固体材料在选定的加热温度下以固相和液相共存状态部分熔融,使得具有触变性并具有50至250μm的主固相尺寸的固体和固体 形成30〜70%的相位比。 将半固体通过喷嘴压入模具中,同时保持半固态形成具有20至50%的初晶的比例的金属产品。