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    • 4. 发明授权
    • Apparatus for continuous manufacture of butt-welded pipe
    • 连续生产对接焊管的设备
    • US4357512A
    • 1982-11-02
    • US171542
    • 1980-07-23
    • Koji NishimotoKenji HiguchiToshiyuki OkiNobuo Machida
    • Koji NishimotoKenji HiguchiToshiyuki OkiNobuo Machida
    • B23K11/087B23K13/02H05B6/06H05B6/40
    • B23K13/02B23K11/0873
    • An apparatus for continuous manufacture of butt-welded pipes is constituted by a heating furnace for heating a skelp continuously passed therethrough up to a predetermined temperature less than the butt-welding temperature for the material of the skelp, heaters adjacent the outlet end of the heating furnace and having spaced opposed induction heating coils on opposite sides of the path along which the skelp is passed through the heaters and adjacent the edge portions of the skelp for heating only the edge portions of the skelp discharged from the heating furnace up to the butt-welding temperature. The induction heating coils are such that the electromagnetic coupling between the induction heating coils and the corresponding edge portions of the skelp can be varied to adjust the temperature to which the edge portions are heated. A bending device adjacent the outlet end of the heaters bends the skelp into a generally tubular form, and butt-welding rolls adjacent the outlet end of the bending apparatus apply a predetermined pressure to the bent up skelp for butt-welding the edges of the skelp to each other. A cooling device along the path of the pipe between pairs of contracting rolls cools the seamed portion of the pipe to the temperature of the remainder of the pipe.
    • 用于连续制造对接焊管的装置由加热炉构成,该加热炉用于加热连续通过的钢板,直到预定温度小于用于该钢板的材料的对接焊接温度,加热器邻近加热出口端 炉子,并且在路径的相对侧上具有间隔开的相对的感应加热线圈,沿着该相对侧的边缘通过加热器并且邻近边缘部分,仅加热从加热炉排出的边缘部分的边缘部分, 焊接温度。 感应加热线圈使得感应加热线圈和边缘部分的相应边缘部分之间的电磁耦合可以改变以调节边缘部分被加热到的温度。 邻近加热器的出口端的弯曲装置将骨架弯曲成大致管状的形式,邻近弯曲装置的出口端的对接辊对弯曲的边缘施加预定的压力,用于对接边缘的边缘 对彼此。 沿着成对的收缩辊之间的管道的冷却装置将管的接合部分冷却到管的其余部分的温度。
    • 5. 发明授权
    • Operational direction detecting device
    • 操作方向检测装置
    • US08149226B2
    • 2012-04-03
    • US12466352
    • 2009-05-14
    • Toshiyuki Oki
    • Toshiyuki Oki
    • G06F3/045
    • G06F3/044
    • An operational direction detecting device includes a device body that includes an operational area operable in two or more directions, two or more detection electrode/drive electrode pairs that are formed at direction detecting positions of the operational area and form capacitance between a detection electrode and a drive electrode, and a control unit that decides an entrance direction of an object to be detected from capacitance acquired by each of the two or more detection electrode/drive electrode pairs when an object to be detected performing an operation enters the operational area. The control unit decides the direction of the area corresponding to larger capacitance as the entrance direction of the object to be detected when the composite capacitance of capacitances acquired at the two or more detection electrode/drive electrode pairs exceeds a first predetermined value.
    • 操作方向检测装置包括:装置主体,包括可在两个或多个方向上操作的操作区域,两个或更多个检测电极/驱动电极对,其形成在操作区域的方向检测位置处,并且形成检测电极和检测电极之间的电容 驱动电极,以及控制单元,当进行操作的检测对象进入操作区域时,通过由两个以上的检测电极/驱动电极对中的每一个获取的电容来决定待检测物体的入射方向。 当在两个或更多个检测电极/驱动电极对上获取的电容的复合电容超过第一预定值时,控制单元将对应于较大电容的区域的方向作为待检测对象的入口方向。
    • 6. 发明申请
    • FAST ELECTROMAGNET DEVICE
    • 快速电子设备
    • US20100060206A1
    • 2010-03-11
    • US12518704
    • 2007-07-04
    • Toshiyuki OkiTakahisa ItahashiYoshitaka Kuno
    • Toshiyuki OkiTakahisa ItahashiYoshitaka Kuno
    • H05H13/04H05H7/04
    • H05H7/04H01F7/20
    • A fast electromagnet device (140) receives a high voltage from a pulse power supply through a coaxial cable and excites an electromagnet at high speed, so as to bend a charged particle beam. The fast electromagnet device (140) includes a kicker magnet (150) and an auxiliary circuit (160). The kicker magnet (150) is equivalent to a circuit element of a lumped constant circuit, is formed with a space penetrating in the traveling direction of the charged particle beams, instantaneously generates a magnetic field in the penetrated space with a high voltage applied, and bends the charged particle beams passing through the penetrated space. The auxiliary circuit (160) constitutes a matching circuit in combination with the kicker magnet (150), so that the input impedance of the matching circuit and the characteristic impedance of the coaxial cable connected to the input terminal of the matching circuit are matched.
    • 快速电磁体装置(140)通过同轴电缆从脉冲电源接收高电压,并以高速激发电磁铁,以便使带电粒子束弯曲。 快速电磁体装置(140)包括踢球磁体(150)和辅助电路(160)。 icker子磁体(150)等效于集总常数电路的电路元件,形成有沿着带电粒子束的行进方向穿透的空间,瞬时在施加高电压的穿透空间中产生磁场,并且 使穿过穿透空间的带电粒子束弯曲。 辅助电路(160)构成与icker子磁铁(150)组合的匹配电路,使得匹配电路的输入阻抗和连接到匹配电路的输入端的同轴电缆的特性阻抗相匹配。
    • 7. 发明授权
    • Capacitive motion detection device and input device using the same
    • 电容运动检测装置及使用其的输入装置
    • US08194049B2
    • 2012-06-05
    • US12511984
    • 2009-07-29
    • Toshiyuki Oki
    • Toshiyuki Oki
    • G06F3/044G09G5/00
    • G06F3/044G06F3/0346
    • When a motion in the X-axis direction is detected, first electrodes are set as drive electrodes, and second electrodes are set as detection electrodes. A switching circuit performs switching so as to electrically connect a drive circuit to the first electrodes, electrically connect a first detection circuit to one of the second electrodes, and electrically connect a second detection circuit to the other second electrode. In a motion detection circuit in which connections are established in this manner, the drive circuit drives the drive electrodes, and then the position of an object to be detected in the X-axis direction is obtained from the difference between capacitances detected by the first and second detection circuits at this time.
    • 当检测到X轴方向的运动时,将第一电极设置为驱动电极,将第二电极设置为检测电极。 切换电路进行切换,以将驱动电路与第一电极电连接,将第一检测电路电连接到第二电极中的一个,并将第二检测电路与另一第二电极电连接。 在以这种方式建立连接的运动检测电路中,驱动电路驱动驱动电极,然后从X轴方向上的被检测物体的位置由第一和第 此时第二检测电路。
    • 9. 发明申请
    • OPERATIONAL DIRECTION DETECTING DEVICE
    • 操作方向检测装置
    • US20090225055A1
    • 2009-09-10
    • US12466352
    • 2009-05-14
    • Toshiyuki Oki
    • Toshiyuki Oki
    • G06F3/041
    • G06F3/044
    • An operational direction detecting device includes a device body that includes an operational area operable in two or more directions, two or more detection electrode/drive electrode pairs that are formed at direction detecting positions of the operational area and form capacitance between a detection electrode and a drive electrode, and a control unit that decides an entrance direction of an object to be detected from capacitance acquired by each of the two or more detection electrode/drive electrode pairs when an object to be detected performing an operation enters the operational area. The control unit decides the direction of the area corresponding to larger capacitance as the entrance direction of the object to be detected when the composite capacitance of capacitances acquired at the two or more detection electrode/drive electrode pairs exceeds a first predetermined value.
    • 操作方向检测装置包括:装置主体,包括可在两个或多个方向上操作的操作区域,两个或更多个检测电极/驱动电极对,其形成在操作区域的方向检测位置处,并且形成检测电极和检测电极之间的电容 驱动电极,以及控制单元,当进行操作的检测对象进入操作区域时,通过由两个以上的检测电极/驱动电极对中的每一个获取的电容来决定待检测物体的入射方向。 当在两个或更多个检测电极/驱动电极对上获取的电容的复合电容超过第一预定值时,控制单元将对应于较大电容的区域的方向作为待检测对象的入口方向。
    • 10. 发明授权
    • Fast electromagnet device
    • 快速电磁铁装置
    • US08089222B2
    • 2012-01-03
    • US12518704
    • 2007-07-04
    • Toshiyuki OkiTakahisa ItahashiYoshitaka Kuno
    • Toshiyuki OkiTakahisa ItahashiYoshitaka Kuno
    • H05H7/04
    • H05H7/04H01F7/20
    • A fast electromagnet device (140) receives a high voltage from a pulse power supply through a coaxial cable and excites an electromagnet at high speed, so as to bend a charged particle beam. The fast electromagnet device (140) includes a kicker magnet (150) and an auxiliary circuit (160). The kicker magnet (150) is equivalent to a circuit element of a lumped constant circuit, is formed with a space penetrating in the traveling direction of the charged particle beams, instantaneously generates a magnetic field in the penetrated space with a high voltage applied, and bends the charged particle beams passing through the penetrated space. The auxiliary circuit (160) constitutes a matching circuit in combination with the kicker magnet (150), so that the input impedance of the matching circuit and the characteristic impedance of the coaxial cable connected to the input terminal of the matching circuit are matched.
    • 快速电磁体装置(140)通过同轴电缆从脉冲电源接收高电压,并以高速激发电磁铁,以便使带电粒子束弯曲。 快速电磁体装置(140)包括踢球磁体(150)和辅助电路(160)。 icker子磁体(150)等效于集总常数电路的电路元件,形成有沿着带电粒子束的行进方向穿透的空间,瞬时在施加高电压的穿透空间中产生磁场,并且 使穿过穿透空间的带电粒子束弯曲。 辅助电路(160)构成与icker子磁铁(150)组合的匹配电路,使得匹配电路的输入阻抗和连接到匹配电路的输入端的同轴电缆的特性阻抗相匹配。