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    • 1. 发明授权
    • Superplastic aluminum-based alloy material and production process thereof
    • 超塑性铝基合金材料及其制备方法
    • US5332456A
    • 1994-07-26
    • US951197
    • 1992-09-25
    • Tsuyoshi MasumotoAkihisa InoueKenji HigashiKatsumasa OhteraMakoto Kawanishi
    • Tsuyoshi MasumotoAkihisa InoueKenji HigashiKatsumasa OhteraMakoto Kawanishi
    • C22C21/00C22C45/08C22F1/04C22F1/00
    • C22C21/00C22C45/08C22F1/04Y10S420/902
    • A superplastic aluminum-based alloy material consisting of a matrix formed of aluminum or a supersaturated aluminum solid solution, whose average crystal grain size is 0.005 to 1 .mu.m, and particles made of a stable or metastable phase of various intermetallic compounds formed of the main alloying element (i.e., the matrix element) and the other alloying elements and/or of various intermetallic compounds formed of the other alloying elements and distributed evenly in the matrix, the particles having a mean particle size of 0.001 to 0.1 .mu.m. The superplastic aluminum-based alloy material is produced from a rapidly solidified material consisting of an amorphous phase, a microcrystalline phase or a mixed phase thereof by optionally heat treating the material at a prescribed temperature for a prescribed period of time and then subjecting it to a single or combined thermomechanical treatment. The superplastic aluminum-based alloy material of the present invention is suited for superplastic working.
    • 由铝或由过饱和铝固溶体形成的平均晶粒尺寸为0.005-1μm的基质和由主要形成的各种金属间化合物的稳定或亚稳相制成的颗粒组成的超塑性铝基合金材料 合金元素(即基质元素)和其它合金元素和/或由其它合金元素形成的各种金属间化合物,并均匀地分布在基质中,颗粒的平均粒度为0.001至0.1μm。 超塑性铝基合金材料由非晶相,微晶相或其混合相组成的快速凝固材料制成,可任选地在预定温度下将材料热处理规定的时间,然后将其 单一或组合的热机械治疗。 本发明的超塑性铝基合金材料适用于超塑性加工。
    • 2. 发明授权
    • Superplastic aluminum-based alloy material and production process thereof
    • 超塑性铝基合金材料及其制备方法
    • US5405462A
    • 1995-04-11
    • US200230
    • 1994-02-23
    • Tsuyoshi MasumotoAkihisa InoueKenji HigashiKatsumasa OhteraMakoto Kawanishi
    • Tsuyoshi MasumotoAkihisa InoueKenji HigashiKatsumasa OhteraMakoto Kawanishi
    • C22C21/00C22C45/08C22F1/04
    • C22C21/00C22C45/08C22F1/04Y10S420/902
    • A superplastic aluminum-based alloy material consisting of a matrix formed of aluminum or a supersaturated aluminum solid solution, whose average crystal grain size is 0.005 to 1 .mu.m, and particles made of a stable or metastable phase of various intermetallic compounds formed of the main alloying element (i.e., the matrix element) and the other alloying elements and/or of various intermetallic compounds formed of the other alloying elements and distributed evenly in the matrix, the particles having a mean particle size of 0.001 to 0.1 .mu.m. The superplastic aluminum-based alloy material is produced from a rapidly solidified material consisting of an amorphous phase, a microcrystalline phase or a mixed phase thereof by optionally heat treating at a prescribed temperature for a prescribed period of time and then subjecting to a single or combined thermo-mechanical treatment. The superplastic aluminum-based alloy material of the present invention is suited for to superplastic working.
    • 由铝或由过饱和铝固溶体形成的平均晶粒尺寸为0.005-1μm的基质和由主要形成的各种金属间化合物的稳定或亚稳相制成的颗粒组成的超塑性铝基合金材料 合金元素(即基质元素)和其它合金元素和/或由其它合金元素形成的各种金属间化合物,并均匀地分布在基质中,颗粒的平均粒度为0.001至0.1μm。 超塑性铝基合金材料由非晶相,微晶相或其混合相组成的快速凝固材料通过任意在规定温度下热处理规定的时间段,然后进行单一或组合 热机械处理。 本发明的超塑性铝基合金材料适用于超塑性加工。
    • 4. 发明授权
    • High strength and high rigidity aluminum-based alloy
    • 高强度高刚性铝基合金
    • US06017403A
    • 2000-01-25
    • US601949
    • 1996-02-15
    • Tsuyoshi MasumotoAkihisa InoueYuma Horio
    • Tsuyoshi MasumotoAkihisa InoueYuma Horio
    • C22C21/00
    • C22C21/00
    • An aluminum-based alloy having the general formula Al.sub.x L.sub.y M.sub.z (wherein L is Mn or Cr; M is Ni, Co, and/or Cu; and x, y, and z, representing a composition ratio in atomic percentages, satisfy the relationships x+y+z=100, 75.ltoreq.x.ltoreq.95, 2.ltoreq.y.ltoreq.15, and 0.5.ltoreq.z.ltoreq.10) having a metallographic structure comprising a quasi-crystalline phase possesses high strength and high rigidity. In order to enhance the ductility and toughness of the aluminum-based alloy, the atomic percentage of M may be further limited to 0.5.ltoreq.z.ltoreq.4, and more preferably to 0.5.ltoreq.z.ltoreq.3. The aluminum-based alloy is useful as a structural material for aircraft, vehicles and ships, and for engine parts; as material for sashes, roofing materials, and exterior materials for use in construction; or as materials for use in marine equipment, nuclear reactors, and the like.
    • 具有通式AlxLyMz(其中L是Mn或Cr; M是Ni,Co和/或Cu;和表示原子百分比的组成比的x,y和z)的铝基合金满足关系x + 具有包含准结晶相的金相组织的y + z = 100,75,或者= x,y = x,z = 100,75
    • 9. 发明授权
    • Sacrificial electrode material for corrosion prevention
    • 用于防腐的牺牲电极材料
    • US5423969A
    • 1995-06-13
    • US217009
    • 1994-03-23
    • Tsuyoshi MasumotoAkihisa InoueTakashi SakumaToshisuke Shibata
    • Tsuyoshi MasumotoAkihisa InoueTakashi SakumaToshisuke Shibata
    • C22C23/00C22C45/00C23F13/00C23F13/14C25B11/04
    • C23F13/14
    • The present invention provides a sacrificial electrode material which consists of a single phase amorphous structure or a structure consisting of an amorphous phase and a crystalline solid solution phase and provides electrochemical corrosion protection to metallic articles exposed to an aqueous electrolytic solution. The electrode material is prepared by rapidly quenching a magnesium-based alloy material from the liquid phase or vapor phase thereof, the magnesium-based alloy material consisting the general formula: Mg.sub.bal X1.sub.a X2.sub.b or Mg.sub.bal X1.sub.a, wherein X1 is at least one element selected from the group consisting of Al, Zn, Ga, Ca and In; X2 is at least one element selected from the group consisting of Mm (misch metal), Y and rare earth metal elements; a and b are, in atomic percentages, 5.0.ltoreq.a.ltoreq.35.0 and 3.0.ltoreq.b.ltoreq.25.0, respectively. The magnesium-based alloy material may further contain one or more transition metal elements in their total contents not exceeding 1.0 atomic %.
    • 本发明提供一种牺牲电极材料,其由单相无定形结构或由非晶相和结晶固溶体相组成的结构组成,并且对暴露于水性电解液的金属制品提供电化学腐蚀保护。 通过从其液相或气相快速淬火镁基合金材料制备电极材料,镁基合金材料由以下通式组成:MgbalX1aX2b或MgbalX1a,其中X1是选自以下的至少一种元素: 的Al,Zn,Ga,Ca和In; X2是选自由Mm(混合稀土金属),Y和稀土金属元素组成的组中的至少一种元素; a和b分别为原子百分比为5.0