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    • 4. 发明授权
    • High strength, heat resistant aluminum-based alloys
    • 高强度,耐热铝基合金
    • US5334266A
    • 1994-08-02
    • US980421
    • 1992-11-23
    • Makoto KawanishiHidenobu Nagahama
    • Makoto KawanishiHidenobu Nagahama
    • B22D11/06C22C21/00C22C45/08
    • C22C45/08C22C21/00
    • High strength, heat resistant aluminum-based alloys have a composition consisting of the following general formula Al.sub.a M.sub.b X.sub.d or Al.sub.a' M.sub.b Q.sub.c X.sub.d, wherein M is at least one metal element selected from the group consisting of Co, Ni, Cu, Zn and Ag; Q is at least one metal element selected from the group consisting of V, Cr, Mn and Fe; X is at least one metal element selected from the group consisting of Li, Mg, Si, Ca, Ti and Zr; and a, a', b, c and d are, in atomic percentages; 80.ltoreq.a.ltoreq.94.5, 80.ltoreq.a'.ltoreq.94, 5.ltoreq.b.ltoreq.15, 0.5.ltoreq.c.ltoreq.3 and 0.5.ltoreq.d.ltoreq.10. In the above specified alloys, aluminum intermetallic compounds are finely dispersed throughout an aluminum matrix and, thereby, the mechanical properties, especially strength and heat resistance, are considerably improved. The aluminum-based alloys of the present invention are very useful as light-weight, high-strength materials, namely, high specific strength materials, both at room temperature and elevated temperatures.
    • 高强度,耐热的铝基合金具有由以下通式AlaMbXd或Ala'MbQcXd组成的组成,其中M是选自Co,Ni,Cu,Zn和Ag中的至少一种金属元素; Q是选自V,Cr,Mn和Fe中的至少一种金属元素; X是选自Li,Mg,Si,Ca,Ti和Zr中的至少一种金属元素; a,a,b,c和d为原子百分数; 80
    • 5. 发明申请
    • Injection molding apparatus
    • 注塑设备
    • US20060254747A1
    • 2006-11-16
    • US11487052
    • 2006-07-14
    • Mamoru IshidaMakoto Kawanishi
    • Mamoru IshidaMakoto Kawanishi
    • B22D17/12
    • B22D17/30B22D17/04B22D17/14B22D17/203
    • An apparatus provided is capable of performing injection molding of a high-melting point metal. The injection molding apparatus comprises a mold, a sleeve disposed so as to be movable forward and backward toward a pouring gate of the mold, a plunger slidably disposed in the sleeve, a heating means for heating and melting a raw material lump supplied into a raw material accommodating part formed by an inside wall of the sleeve and the plunger mentioned above, and a raw material lump supplying means for supplying the raw material lump to the above-mentioned raw material accommodating part from above. For the purpose of ensuring that a melt of a metal which has been heated and melted hardly flows into a gap between the plunger and the sleeve, the above-mentioned plunger and/or sleeve is equipped with a cooling means.
    • 提供的装置能够进行高熔点金属的注射成型。 注射成型装置包括:模具,套筒,其可以朝向模具的浇注口向前和向后移动,可滑动地设置在套筒中的柱塞,用于加热和熔化供给原料的原料块的加热装置 由套筒的内壁和上述柱塞形成的材料容纳部分,以及用于从上方将原料块供给到上述原料容纳部的原料块供给装置。 为了确保已经被加热和熔化的金属的熔体几乎不流入柱塞和套筒之间的间隙,上述柱塞和/或套筒配备有冷却装置。
    • 7. 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。
    • 8. 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。