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    • 1. 发明授权
    • High strength aluminum alloy
    • 高强度铝合金
    • US5431751A
    • 1995-07-11
    • US13980
    • 1993-02-05
    • Yukio OkochiKazuaki SatoTetsuya SuganumaAkira KatoTsuyoshi MasumotoAkihisa Inoue
    • Yukio OkochiKazuaki SatoTetsuya SuganumaAkira KatoTsuyoshi MasumotoAkihisa Inoue
    • C22C21/00C22C45/08C22C21/12
    • C22C45/08C22C21/00
    • A high strength aluminum alloy is expressed by a general formula, Al.sub.a X.sub.b Mm.sub.c, in which "X" stands for at least one element selected from the group consisting of Ti, V, Cr, Mn, Fe, Co, Ni, Cu and Zr, "Mm" stands for a misch metal, a content "a" of aluminum falls in a range of from 95.2 to 97.5 atomic %, and a content "b" of "X" and a content "c" of the "Mm" fall in a hatched area enclosed by points "A," "B," "C" and "D" of accompanying FIG. 1 on atomic % basis, and whose metallic phase includes microcrystalline phases or mixed phases containing amorphous phases in a volume content of less than 50% and the balance of microcrystalline phases. As a result, the amorphous phases or the microcrystalline phases are dispersed uniformly in its base microcrystalline phases appropriately, and at the same time the thus generating base microcrystalline phases are reinforced by forming solid solutions including the "Mm" and the transition metal element "X" as well. Hence, the high strength aluminum alloy comes to have a low specific gravity and a high strength which have not been available from conventional Al amorphous alloys.
    • 高强度铝合金由通式AlaXbMmc表示,其中“X”表示选自由Ti,V,Cr,Mn,Fe,Co,Ni,Cu和Zr组成的组中的至少一种元素,“ Mm“表示混合金属,铝的含量”a“在95.2〜97.5原子%的范围内,”M“的含量”b“,”M“的含量”c“落在 由图A的点“A”,“B”,“C”和“D”所包围的阴影区域。 1,其金属相包含微晶相或含有体积含量小于50%的非晶相的混合相和微晶相的余量。 结果,非晶相或微晶相适当地分散在其基底微晶相中,同时通过形成包含“Mm”和过渡金属元素“X”的固溶体来增强如此产生的基底微晶相 “以及。 因此,高强度铝合金具有低常规的Al非晶态合金所不具备的低比重和高强度。
    • 7. 发明授权
    • High strength Mg alloy and method for producing same
    • 高强度镁合金及其制造方法
    • US09523141B2
    • 2016-12-20
    • US14356502
    • 2012-11-06
    • Kota WashioAkira KatoToshiji MukaiAlok SinghHidetoshi Somekawa
    • Kota WashioAkira KatoToshiji MukaiAlok SinghHidetoshi Somekawa
    • C22C23/04C22F1/06C22C1/02C22C23/00C22F1/00
    • C22F1/06C22C1/02C22C23/00C22C23/04C22F1/00
    • Provided is an Mg alloy and a method for producing same able to demonstrate high strength without requiring an expensive rare earth element (RE). The high-strength Mg alloy containing Ca and Zn within a solid solubility limit and the remainder having a chemical composition comprising Mg and unavoidable impurities is characterized in comprising equiaxial crystal particles, there being a segregated area of Ca and Zn along the (c) axis of a Mg hexagonal lattice within the crystal particle, and having a structure in which the segregated area is lined up by Mg3 atomic spacing in the (a) axis of the Mg hexagonal lattice. The method for producing the high-strength Mg alloy is characterized in that Ca and Zn are added to Mg in a compounding amount corresponding to the above composition and, after homogenization heat treating an ingot formed by dissolution and casting, the above structure is formed by subjecting the ingot to hot processing.
    • 提供一种Mg合金及其制造方法,能够显示高强度而不需要昂贵的稀土元素(RE)。 含有固溶度极限中的Ca和Zn的高强度Mg合金和其中包含Mg和不可避免的杂质的化学组成的其余部分的特征在于包括等轴晶体颗粒,沿着(c)轴具有Ca和Zn的偏析面积 的晶体粒子内的Mg六角形晶格,并且具有在Mg六方晶格的(a)轴上偏析区域被Mg 3原子间隔排列的结构。 高强度Mg合金的制造方法的特征在于,以与上述组成相对应的配合量将Mg和Ca添加到Mg中,在通过溶解和铸造形成的锭均质化热处理后,上述结构通过 对锭进行热加工。
    • 8. 发明授权
    • Radio-controlled watch
    • 无线电控制手表
    • US08792308B2
    • 2014-07-29
    • US13634403
    • 2011-03-23
    • Akira KatoTakushi HagitaTadashi Yasuoka
    • Akira KatoTakushi HagitaTadashi Yasuoka
    • G04C11/02
    • G05G5/005G04R20/06
    • Provided is a radio-controlled watch capable of performing leap second correction even when information on a leap second is not received from a satellite. Provided is a radio-controlled watch that adjusts time by receiving a signal containing time information from a satellite, the radio-controlled watch being configured to: store a leap second correction value to be used for leap second correction with respect to the time information; display a numerical value corresponding to the leap second correction value; receive an instruction operation of changing the leap second correction value from a user in a state in which the numerical value is displayed; and change the leap second correction value in response to the received instruction operation.
    • 提供了即使在没有从卫星接收到关于闰秒的信息的情况下也能够执行闰秒校正的无线电控制的手表。 提供一种无线电控制手表,其通过从卫星接收到包含时间信息的信号来调整时间,该无线电控制手表被配置为:存储用于相对于时间信息的闰秒校正的闰秒校正值; 显示对应于闰秒校正值的数值; 在显示数值的状态下接收从用户改变闰秒校正值的指令操作; 并且响应于接收到的指令操作来改变闰秒校正值。
    • 10. 发明申请
    • RADIO-CONTROLLED WRISTWATCH
    • 无线控制手表
    • US20140016440A1
    • 2014-01-16
    • US14008403
    • 2012-03-13
    • Akira KatoTakushi Hagita
    • Akira KatoTakushi Hagita
    • G04R20/04
    • G04R20/04G04C10/02G04R20/10
    • Provided is a radio-controlled wristwatch that receives a radio wave including day-related information from a satellite within a global positioning system, in which a cycle number of the day-related information is correctly updated even in a case where a power supply voltage drops. A radio-wave wristwatch (1) according to the present invention includes: reception means (11) for receiving a radio wave from a satellite and extracting day-related information therefrom; timekeeping-circuit halting means for halting an operation of a timekeeping circuit based on a power supply voltage; timekeeping-circuit halt detection means for detecting that the operation of the timekeeping circuit (13) has been halted by the timekeeping-circuit halting means; a nonvolatile memory (23) for storing the day-related information and a cycle number of the day-related information; and cycle-number updating means for updating, when the timekeeping-circuit halt detection means detects that the operation of the timekeeping circuit has been halted, the cycle number of the day-related information based on a comparison result between the day-related information extracted by the reception means (11) and the day-related information stored in the nonvolatile memory (23).
    • 提供一种无线电控制的手表,其在全球定位系统内接收包括来自卫星的日常相关信息的无线电波,其中即使在电源电压下降的情况下,日相关信息的周期数也被正确更新 。 根据本发明的无线电波手表(1)包括:接收装置(11),用于从卫星接收无线电波并从其中提取日期信息; 计时电路停止装置,用于基于电源电压停止计时电路的操作; 计时电路停止检测装置,用于检测计时电路(13)的运行已经被计时电路停止装置停止; 非易失性存储器(23),用于存储日期相关信息和日期相关信息的周期数; 以及循环次数更新装置,用于当计时电路停止检测装置检测到计时电路的操作已经停止时,更新基于提取的日间相关信息之间的比较结果的日期相关信息的循环次数 通过接收装置(11)和存储在非易失性存储器(23)中的日期相关信息。