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    • 5. 发明授权
    • TIG welding method and apparatus
    • TIG焊接方法和设备
    • US09061364B2
    • 2015-06-23
    • US13366822
    • 2012-02-06
    • Tsuyoshi HayakawaHideaki Shirai
    • Tsuyoshi HayakawaHideaki Shirai
    • B23K9/24B23K9/08B23K9/167
    • B23K9/08B23K9/167
    • A TIG welding method and apparatus which enable a higher aspect ratio weld zone cross-sectional shape to be obtained and which further can prevent the heat radiated from the weld arc causing the permanent magnets to overheat, specifically a TIG welding method which causes an arc discharge between a workpiece and an electrode of a welding torch to cause the generation of a weld arc, uses permanent magnets to generate a magnetic field around the weld arc, and causes an electromagnetic force which is generated by electromagnetic interaction between the magnetic field and a current to act on a weld pool of the workpiece in welding, the TIG welding method arranging the permanent magnets around the electrode of the welding torch and moving the permanent magnets to make the magnetic field fluctuate and thereby make the drive force of convection which is applied to the weld pool fluctuate.
    • 具有能够获得更高纵横比的焊接区横截面形状的TIG焊接方法和装置,并且可以进一步防止导致永久磁铁过热的焊接电弧辐射的热,特别是导致电弧放电的TIG焊接方法 在焊炬的工件和电极之间产生焊接电弧,使用永磁体在焊接电弧周围产生磁场,并且产生由磁场和电流之间的电磁相互作用产生的电磁力 在焊接中在工件的焊池上作用,TIG焊接方法将永久磁铁布置在焊炬的电极周围并移动永磁体,使得磁场发生波动,从而使施加到工件的对流的驱动力 焊池波动。
    • 6. 发明授权
    • Method of controlling operation of injection molding system
    • 注塑系统运行控制方法
    • US06572797B1
    • 2003-06-03
    • US09702663
    • 2000-11-01
    • Kouzou HibiHideaki Shirai
    • Kouzou HibiHideaki Shirai
    • B29C4576
    • B29C45/84B29C45/0053B29C45/76B29C2945/76066B29C2945/76187B29C2945/76648B29C2945/76719B29C2945/76943B29L2017/005
    • A method of controlling operation of an injection molding system in which at least one injection molding device successively executes an injection molding operation thereof so as to successively produce the molded product, and at least one takeout device successively takes out the molded product from the corresponding injection molding device so as to successively transfer the molded product to a subsequent-step part in which the molded product is further processed, while a monitoring device is arranged for detecting an abnormal operation in the subsequent-step part and generating an abnormal signal upon detection of the abnormal signal, the method comprising the steps of: changing an operation mode of the at least one of takeout device so as to transfer the molded disk to another part which is separate from the subsequent-step part, upon generation of the abnormal signal by the monitoring device; and extending a cycle time of the injection molding operation of the at least one injection molding device upon generation of the abnormal signal by the monitoring device.
    • 一种控制注射成型系统的操作的方法,其中至少一个注射成型装置依次执行其注射成型操作,以便连续地生产模制产品,并且至少一个取出装置依次从相应的注射器中取出模制产品 成型装置,以便连续地将模制品转移到其中进一步处理模制产品的后续部分,同时设置用于检测后续步骤部分中的异常操作的监测装置,并且在检测到异常信号时产生异常信号 异常信号,该方法包括以下步骤:改变取出装置中的至少一个的操作模式,以便在产生异常信号时,将模制盘转移到与后续步骤部分分离的另一部分 监控装置; 并且通过所述监视装置产生异常信号,延长所述至少一个注射成型装置的注射成型操作的循环时间。
    • 8. 发明授权
    • Resistance welding system
    • 电阻焊系统
    • US09333587B2
    • 2016-05-10
    • US13314812
    • 2011-12-08
    • Hideaki ShiraiTomohiko Takenaka
    • Hideaki ShiraiTomohiko Takenaka
    • B23K11/30B23K11/11B23K11/06B23K11/14
    • B23K11/11B23K11/06B23K11/14
    • A resistance welding system includes a plurality of first electrodes, and a second electrode which is provided facing the plurality of first electrodes and which is electrically connected to a welding power source. The welding system welds a plurality of weld members sandwiched between the plurality of first electrodes and the second electrode by resistance welding. A current feed roller which is electrically connected to the welding power source and which rotates while successively contacting the plurality of first electrodes for successively feeding current to the plurality of first electrodes and a pressing device which is designed to move in the rolling direction together with the current feed roller and presses the current feed roller so as to successively apply welding pressure to the plurality of weld members W are included in the resistance welding system.
    • 一种电阻焊接系统,包括多个第一电极以及与该多个第一电极相对设置且与电源电连接的第二电极。 焊接系统通过电阻焊接焊接夹在多个第一电极和第二电极之间的多个焊接部件。 一种电流馈送辊,其电连接到焊接电源并且在连续接触多个第一电极的同时旋转,以连续地将电流馈送到多个第一电极;以及加压装置,其被设计成与轧制方向一起移动, 电流馈送辊并按压电流馈送辊以便连续施加多个焊接部件W的焊接压力包括在电阻焊接系统中。
    • 10. 发明授权
    • Method of welding composite member
    • 复合材料焊接方法
    • US06446856B2
    • 2002-09-10
    • US09797979
    • 2001-03-05
    • Hideaki ShiraiTakafumi SatoEiji IwanariYoshinori Ohmi
    • Hideaki ShiraiTakafumi SatoEiji IwanariYoshinori Ohmi
    • B23K3102
    • F02M61/168B23K26/02B23K26/035B23K26/244B23K26/28
    • A method of welding a hollow member and an insert member to form a composite member including a hollow member and insertion member requiring a high dimensional accuracy in the end-to-end distance in the axial direction and requiring a reliable concentricity in the center axes of the hollow member and insertion member, including preparing a hollow member and insertion member, inserting the insertion member in the hollow member, providing spot welds at an overlap portion where the hollow member and insertion member overlap to correct the axial end-to-end distance of the hollow member and the insertion member, and providing a partial weld at an overlap portion where the hollow member and insertion member overlap to correct the concentricity of the hollow member and the insertion member.
    • 一种焊接中空构件和插入构件的方法,以形成包括中空构件和插入构件的复合构件,所述中空构件和插入构件在轴向方向上的端到端距离需要高尺寸精度,并且需要在中心轴的中心轴上具有可靠的同心度 中空构件和插入构件,包括制备中空构件和插入构件,将插入构件插入中空构件中,在中空构件和插入构件重叠的重叠部分处提供点焊,以校正轴向端对端距离 并且在中空构件和插入构件重叠的重叠部分处提供局部焊接,以校正中空构件和插入构件的同心度。