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    • 5. 发明申请
    • WELDING OUTPUT CONTROL METHOD AND ARC WELDING EQUIPMENT
    • 焊接输出控制方法和焊接设备
    • US20100176105A1
    • 2010-07-15
    • US12064142
    • 2007-08-03
    • Toshinori HonguKazunori MatsumotoKimiya SatouYoshiaki Tanaka
    • Toshinori HonguKazunori MatsumotoKimiya SatouYoshiaki Tanaka
    • B23K9/10B23K9/00
    • B23K9/0731B23K9/0953
    • A superimposed voltage waveform with a predetermined cycle and amplitude is superimposed on a commanded voltage waveform for a second predetermined time after a first predetermined time elapses within an arcing period in which an arc is produced. The predetermined cycle of the superimposed voltage waveform is shorter than a short-circuit cycle and longer than a control cycle of a welding power supply unit. This suppresses a growth of a weld droplet by being pushed up toward a consumable electrode and suppresses an excessive growth of the droplet over an entire range from a low current range, characterized by frequent short-circuits, to a medium to high current range where short-circuits are less frequent. The droplet is also smoothly transferred to the weld pool in addition to preventing excessive droplet growth. This reduces the generation of spatter, giving a flatter bead appearance.
    • 在产生电弧的电弧期间经过第一预定时间后,具有预定周期和幅度的叠加电压波形叠加在指令电压波形上第二预定时间。 叠加电压波形的预定周期短于短路周期,并且长于焊接电源单元的控制周期。 这通过向消耗性电极向上推压而抑制熔滴的生长,并且在从短路频率特性的低电流范围的整个范围内抑制液滴的过度生长到短到中等到高电流范围 电路较不频繁。 除了防止过度的液滴生长之外,液滴也顺利地转移到熔池中。 这样可以减少飞溅物的产生,从而形成更平坦的珠子外观。
    • 6. 发明授权
    • Welding output control method and arc welding equipment
    • 焊接输出控制方法及电弧焊设备
    • US08723081B2
    • 2014-05-13
    • US12064142
    • 2007-08-03
    • Toshinori HonguKazunori MatsumotoKimiya SatouYoshiaki Tanaka
    • Toshinori HonguKazunori MatsumotoKimiya SatouYoshiaki Tanaka
    • B23K9/09
    • B23K9/0731B23K9/0953
    • A superimposed voltage waveform with a predetermined cycle and amplitude is superimposed on a commanded voltage waveform for a second predetermined time after a first predetermined time elapses within an arcing period in which an arc is produced. The predetermined cycle of the superimposed voltage waveform is shorter than a short-circuit cycle and longer than a control cycle of a welding power supply unit. This suppresses a growth of a weld droplet by being pushed up toward a consumable electrode and suppresses an excessive growth of the droplet over an entire range from a low current range, characterized by frequent short-circuits, to a medium to high current range where short-circuits are less frequent. The droplet is also smoothly transferred to the weld pool in addition to preventing excessive droplet growth. This reduces the generation of spatter, giving a flatter bead appearance.
    • 在产生电弧的电弧期间经过第一预定时间后,具有预定周期和幅度的叠加电压波形叠加在指令电压波形上第二预定时间。 叠加电压波形的预定周期短于短路周期,并且长于焊接电源单元的控制周期。 这通过向消耗性电极向上推压而抑制熔滴的生长,并且在从短路频率特性的低电流范围的整个范围内抑制液滴的过度生长到短到中等到高电流范围 电路较不频繁。 除了防止过度的液滴生长之外,液滴也顺利地转移到熔池中。 这样可以减少飞溅物的产生,从而形成更平坦的珠子外观。
    • 10. 发明授权
    • Image forming apparatus that detects timing for maintenance
    • 检测维护定时的图像形成装置
    • US08818213B2
    • 2014-08-26
    • US13587556
    • 2012-08-16
    • Yoshiaki Tanaka
    • Yoshiaki Tanaka
    • G03G15/00
    • G03G15/00G03G21/1871G03G21/1875
    • According to one embodiment, a process unit includes a process section present around an image bearing member, attached and detached to and from a body, including a rotating section, and configured to apply an image forming process to the image bearing member, a moving section present on a shaft of the rotating section and configured to slide to a first position close to the rotating section and a second position away from the rotating section, and a positioning section present between the rotating section and the moving section and configured to move following the rotating section and hold the moving section in the first position and the second position.
    • 根据一个实施例,处理单元包括存在于图像承载部件周围的处理部件,该部件与包括旋转部分的主体相连和分离,并且构造成对图像承载部件施加图像形成处理;移动部件 存在于所述旋转部的轴上并被配置为滑动到靠近所述旋转部的第一位置和远离所述旋转部的第二位置;以及定位部,其位于所述旋转部与所述移动部之间, 旋转部分并且将移动部分保持在第一位置和第二位置。