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    • 3. 发明授权
    • Method and apparatus for increasing thickness of tubular member
    • 增加管状部件厚度的方法和装置
    • US4625533A
    • 1986-12-02
    • US599471
    • 1984-04-12
    • Kenichi OkadaHiroshi AsaoHideo Yonemura
    • Kenichi OkadaHiroshi AsaoHideo Yonemura
    • B21C37/16B21J5/08B21J9/08B60G21/055B21K21/08
    • B60G21/0551B21C37/16B21J5/08B21J9/08B60G2204/1222B60G2204/44B60G2204/45B60G2206/427
    • A method and apparatus for increasing a thickness of a tubular member which ensures a uniform thickness increase of the tubular member and a reduction of an increase in a thickness on an inner diameter side of the tubular member. A portion of the tubular member is subjected to upsetting by applying thereto a compressive force in an axial direction of the tubular member, while the portion is being heated locally and progressively so that a surface layer of the portion of the tubular member reaches a high temperature and a thermal gradient is generated between inner and outer diameter portions of the tubular member. A loading arrangement is provided which is adapted to apply a compressive force in the tubular member in an axial direction thereof, with an annular heater being arranged around an outer circumference of the tubular member. The annular heater is capable of being moved in an axial direction of the tubular member and a control device is provided for controlling a temperature of the heater.
    • 一种用于增加管状构件的厚度的方法和装置,其确保管状构件的均匀厚度增加和减小管状构件的内径侧上的厚度增加。 管状构件的一部分通过向管状构件的轴向施加压缩力而受到镦锻,同时部分被局部和逐渐加热,使得管状构件的该部分的表面层达到高温 并且在管状构件的内径部分和外径部分之间产生热梯度。 提供了一种装载装置,其适于在管状构件的轴向方向上施加压缩力,环形加热器围绕管状构件的外周布置。 环形加热器能够沿着管状构件的轴向移动,并且提供控制装置来控制加热器的温度。
    • 4. 发明授权
    • T-joint manufacturing apparatus
    • T型接头制造装置
    • US4676088A
    • 1987-06-30
    • US742794
    • 1985-06-10
    • Kenichi OkadaHiroshi AsaoHideo Yonemura
    • Kenichi OkadaHiroshi AsaoHideo Yonemura
    • B21C37/29B21D37/16
    • B21C37/292Y10T29/49442
    • This invention relates to an apparatus for manufacturing a T-joint, which consists of a tube portion and a collar portion, by using burring techniques. The apparatus is provided with a high-frequency induction heating unit for heating the circumferential portion of a pilot hole made in a tube, a cooling ring for ejecting a coolant to the circumferential portion of the pilot hole, and a temperature distribution control for controlling the heating rate of the heating unit and the coolant ejection rate of the cooling ring. The apparatus thus constructed enables the working temperature of the parts of the circumferential portion of the pilot hole in the plane of which includes the axes of the tube and the collar to be lower than that of the parts of the circumferential portion in the plane extending at right angle to the above-mentioned plane. Therefore, this apparatus can be used effectively to manufacture a T-joint of which the thicknes of the collar portion is substantially uniform in the circumferential direction of the circumferential portion of the pilot hole.
    • 本发明涉及一种用于制造T形接头的设备,该设备由管部分和套环部分组成,通过使用翻边技术。 该装置设置有用于加热管中制成的引导孔的圆周部分的高频感应加热单元,用于将冷却剂喷射到引导孔的周向部分的冷却环,以及用于控制 加热单元的加热速度和冷却环的冷却剂喷射速率。 如此构造的装置使得导向孔的圆周部分的包括管和轴环的轴线的部分的工作温度低于在延伸的平面中的平面中的圆周部分的部分的工作温度 与上述平面成直角。 因此,能够有效地利用该装置来制造在导向孔的圆周部的圆周方向上轴环部的厚度大致均匀的T形接头。
    • 7. 发明申请
    • INJECTION-LOCKED-TYPE FREQUENCY-LOCKED OSCILLATOR
    • 注射锁定型频率锁定振荡器
    • US20140021987A1
    • 2014-01-23
    • US14008961
    • 2012-03-12
    • Kenichi Okada
    • Kenichi Okada
    • H03L7/083
    • H03L7/083H03L7/24H03L2207/06
    • Provided is an injection-locked-type frequency-locked oscillator capable of stable operation and exhibiting low phase noise. This injection-locked-type frequency-locked oscillator comprises: a locked loop (10) provided with a first injection-locked-type signal-controlled oscillator (14); and a second injection-locked-type signal-controlled oscillator (20). In the first injection-locked-type signal-controlled oscillator (14), an output frequency signal is made variable by an oscillation frequency control signal, and no reference clock signal is injected. In the second injection-locked-type signal-controlled oscillator (20), a reference clock signal corresponding to a reference clock signal of the locked loop (10) is injected, an oscillation frequency control signal corresponding to the same oscillation frequency control signal as the oscillation frequency control signal to the first injection-locked-type signal-controlled oscillation (14) is inputted, the circuit configuration is the same as that of the first injection-locked-type signal-controlled oscillator, and a desired frequency signal is outputted.
    • 提供了一种能够稳定运行并且表现出低相位噪声的注入锁定型锁频振荡器。 该注入锁定型锁频振荡器包括:具有第一注入锁定型信号控制振荡器(14)的锁定环(10); 和第二注入锁定型信号控制振荡器(20)。 在第一注入锁定型信号控制振荡器(14)中,通过振荡频率控制信号使输出频率信号变化,并且不注入参考时钟信号。 在第二注入锁定型信号控制振荡器(20)中,注入与锁定环路(10)的参考时钟信号相对应的基准时钟信号,对应于相同振荡频率控制信号的振荡频率控制信号, 输入到第一注入锁定型信号控制振荡(14)的振荡频率控制信号,该电路配置与第一注入锁定型信号控制振荡器相同,所需频率信号为 输出。
    • 8. 发明授权
    • Voltage-controlled oscillator
    • 压控振荡器
    • US08149067B2
    • 2012-04-03
    • US12782519
    • 2010-05-18
    • Kenichi Okada
    • Kenichi Okada
    • H03B5/12
    • H03B5/1228H03B5/1212H03B5/1243
    • A voltage-controlled oscillator that can achieve low phase noise while ensuring stable oscillation startup and stable oscillation maintenance even under low supply voltage conditions. The voltage-controlled oscillator includes an LC parallel resonant circuit, whose impedance varies with a control input voltage and a negative resistance circuit for introducing negative resistance into the LC parallel resonant circuit, wherein the negative resistance circuit includes at least: a first amplifier circuit, provided in parallel with the LC parallel resonant circuit and having a first pair of transistors cross-coupled via a capacitor, that achieves class-C amplifier operation by biasing the gate of each transistor in the first transistor pair with a first bias voltage; and a similarly configured second amplifier circuit that achieves class-C amplifier operation by biasing the gate of each transistor with a second bias voltage which is different from the first bias voltage.
    • 一个压控振荡器,即使在低电源条件下,也能确保稳定的振荡启动和稳定的振荡维护,从而实现低相位噪声。 压控振荡器包括LC并联谐振电路,其阻抗随着控制输入电压而变化,负电阻电路用于将负电阻引入LC并联谐振电路,其中负电阻电路至少包括:第一放大电路, 提供与LC并联谐振电路并联并且具有通过电容器交叉耦合的第一对晶体管,其通过以第一偏置电压偏置第一晶体管对中的每个晶体管的栅极来实现C类放大器的操作; 以及类似配置的第二放大器电路,其通过以与第一偏置电压不同的第二偏置电压来偏置每个晶体管的栅极来实现C类放大器的操作。
    • 9. 发明申请
    • WIDEBAND OSCILLATION CIRCUIT
    • 宽带振荡电路
    • US20110187469A1
    • 2011-08-04
    • US13019032
    • 2011-02-01
    • Kenichi OkadaShoichi Hara
    • Kenichi OkadaShoichi Hara
    • H03B5/12
    • H03B5/12
    • A wideband oscillation circuit outputting oscillation signals (divided signals) of continuous frequencies is disclosed and the wideband oscillation circuit includes an oscillator that outputs an oscillation signal, a filter that filters the oscillation signal output from the oscillator and outputs an injection locked signal, and an injection locked frequency divider that performs a free-run operation and outputs a divided signal of the oscillation signal while its oscillating operation is regulated by the injection locked signal, the division ratio of which varies in accordance with a control signal, wherein the filter generates the injection locked signal by controlling the passing characteristic that caused the oscillation signal to pass with respect to time in accordance with a filter control signal locked with the divided signal.
    • 公开了输出连续频率的振荡信号(分频信号)的宽带振荡电路,宽带振荡电路包括输出振荡信号的振荡器,对从振荡器输出的振荡信号进行滤波并输出注入锁定信号的滤波器, 注入锁定分频器,其执行自由运行操作,并且在其振荡操作由所述注入锁定信号调节的同时输出所述振荡信号的分频信号,其分频比根据控制信号而变化,其中所述滤波器产生 通过根据用分割信号锁定的滤波器控制信号控制使振荡信号相对于时间的通过特性的注入锁定信号。