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    • 1. 发明授权
    • Ni-base brazing alloy
    • 镍基钎焊合金
    • US06696017B2
    • 2004-02-24
    • US09878333
    • 2001-06-12
    • Shozo NagaiKanichi TanakaKensuke Hidaka
    • Shozo NagaiKanichi TanakaKensuke Hidaka
    • C22C1905
    • B23K35/304
    • The present invention relates to a Ni-base brazing alloy. The alloy has a good wettability toward a material to be brazed when melting, an excellent corrosion resistance and a high strength. The alloy is used for process of joining two pieces of metal such as stainless steel. The alloy contains Cr in an mount of 25 to 35% by weight, P in an amount of 4 to 8% by weight, Si in an amount of 3 to 6% by weight, wherein the total amount of P and Si is 9 to 11.5% by weight, at least one selected from a group consisting of Al, Ca, Y and misch metal in an amount of 0.01 to 0.10% by weight, and the balance of Ni and unavoidable impurities.
    • 本发明涉及镍基钎焊合金。 该合金在熔融时对钎焊材料具有良好的润湿性,优异的耐腐蚀性和高强度。 该合金用于连接两块金属如不锈钢的工艺。 该合金含有25〜35重量%的Cr,4〜8重量%的P,3〜6重量%的Si,P和Si的总量为9〜 11.5重量%,选自Al,Ca,Y和混合稀土金属中的至少一种,其量为0.01〜0.10重量%,余量为Ni和不可避免的杂质。
    • 3. 发明授权
    • Hard facing nickel-base alloy
    • 硬面镍基合金
    • US4404049A
    • 1983-09-13
    • US189843
    • 1980-10-24
    • Kanichi TanakaKensuke Hidaka
    • Kanichi TanakaKensuke Hidaka
    • B23K35/30C22C19/05
    • C22C19/05B23K35/304
    • Hard facing nickel-base alloys comprising 0.05 to 1.5% by weight of boron, 3 to 7% by weight of silicon, 7.5 to 35% by weight of chromium, 0.05 to 1.5% by weight of carbon, and if necessary, less than 30% by weight of iron and/or less than 5% by weight of tungsten, the balance being nickel, with the weight ratio of silicon to boron being equivalent to or exceeding 3.3. The alloys have a high degree of toughness, ductility, wear resistance and corrosion resistance, and no cracks occur in the hard facing layer. Addition of 0.1 to 3% by weight of the tin and/or 0.1 to 3% by weight of tantalum remarkably increases the corrosion resistance. The alloys can be used as a hard facing material to be applied to parts of various instruments, machines and plants.
    • PCT No.PCT / JP79 / 00026 Sec。 371日期1979年10月24日 102(e)日期1979年10月24日PCT提交1979年2月5日PCT公布。 出版物WO79 / 00772 日期为1979年10月4日。面对镍基合金,其包含0.05至1.5重量%的硼,3至7重量%的硅,7.5至35重量%的铬,0.05至1.5重量%的碳, 如果需要,小于30重量%的铁和/或小于5重量%的钨,余量为镍,硅与硼的重量比等于或超过3.3。 合金具有高韧性,延展性,耐磨性和耐腐蚀性,并且在硬面层中不发生裂纹。 添加0.1〜3重量%的锡和/或0.1〜3重量%的钽显着提高耐腐蚀性。 该合金可以用作硬面材料,以应用于各种仪器,机器和设备的部件。
    • 10. 发明授权
    • Power window driving control device
    • 电动车窗驱动控制装置
    • US5723959A
    • 1998-03-03
    • US613599
    • 1996-03-11
    • Hitoshi IwataKanichi TanakaShigekazu YasudaYasushi NishibeKenichi Kinoshita
    • Hitoshi IwataKanichi TanakaShigekazu YasudaYasushi NishibeKenichi Kinoshita
    • H02H7/085H02K17/34
    • H02H7/0851
    • A power window driving control device formed of a measuring device which measures time elapsed since closing of a window glass has been designated by a switch, a sensor which detects a completely closed state of the window glass, a current detecting device which detects that current flowing to a motor when the window glass is being closed exceeds a predetermined value, and a driving control device which effects one of stopping the motor and stopping the motor after driving the motor reversely for a predetermined time, in at least one of a first state, in which the current detecting device detects that the current flowing to the motor exceeds the predetermined value and in which the completely closed state of the window glass is not detected by the sensor, and a second state, in which the time elapsed since closing of the window glass was designated exceeds a predetermined time. Even if a foreign object exists on a path of movement of the window glass in a closing direction, the foreign object is not caught between the window glass and a window frame so that stability is guaranteed.
    • 由测量窗玻璃关闭后经过的时间的测量装置形成的电动车窗驱动控制装置已由开关,检测窗玻璃的完全关闭状态的传感器指定,检测电流流动的电流检测装置 以及驱动控制装置,该驱动控制装置在第一状态和第二状态中的至少一个中反作用马达驱动马达并停止马达反转预定时间, 其中电流检测装置检测到流过电动机的电流超过预定值,并且其中窗口玻璃的完全关闭状态未被传感器检测到,并且第二状态,其中从关闭 指定窗玻璃超过预定时间。 即使异物存在于窗玻璃在关闭方向的移动路径上,异物也不会夹在窗玻璃和窗框之间,从而保证了稳定性。