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    • 1. 发明申请
    • Spark plug manufacturing method
    • 火花塞制造方法
    • US20060276097A1
    • 2006-12-07
    • US10565902
    • 2004-11-18
    • Akira SuzukiTomoaki KatoKazuyoshi ToriiAkikazu Taido
    • Akira SuzukiTomoaki KatoKazuyoshi ToriiAkikazu Taido
    • H01T13/20
    • H01T21/02H01T13/20H01T13/39
    • There is provided a method for producing a spark plug in which welding strength between a noble metal tip and an electrode joined by laser welding can be restrained from becoming weak. A noble metal tip (90) to be joined to a center electrode (2) or ground electrode of a spark plug to form a spark discharge gap is resistance-welded to each electrode containing no noble metal and then laser-welded. In the noble metal tip (90) exposed under a severe environment involving spark discharge, a molten portion (80) formed in such a manner that a portion of the noble metal tip (90) and a portion of the electrode are melted by laser welding and a non-molten portion (95) on the noble metal tip (90) side are apt to be peeled from each other in a boundary surface (83) between the molten portion (80) and the non-molten portion (95). The noble metal content in the molten portion (80) however becomes higher because a flange portion is formed in a bottom portion by pressing force applied on the noble metal tip (90) at the time of resistance welding and then irradiated with a laser beam. Accordingly, peeling can be prevented from occurring in the boundary surface (83).
    • 提供一种用于制造火花塞的方法,其中可以抑制贵金属电极头和通过激光焊接接合的电极之间的焊接强度变弱。 要连接到火花塞的中心电极(2)或接地电极以形成火花放电间隙的贵金属端头(90)被电阻焊接到不含贵金属的每个电极上,然后被激光焊接。 在涉及火花放电的恶劣环境下露出的贵金属电极头(90)中,以使得贵金属电极头(90)的一部分和电极的一部分通过激光焊接而熔化的方式形成的熔融部(80) 并且在熔融部分(80)和非熔融部分(95)之间的边界表面(83)中,在贵金属端头(90)侧上的非熔融部分(95)易于彼此剥离。 然而,熔融部分(80)中的贵金属含量变高,因为通过在电阻焊接时施加在贵金属电极头(90)上的压力而在底部形成凸缘部分,然后用激光束照射。 因此,能够防止在边界面(83)发生剥离。
    • 2. 发明授权
    • Method for securing a metal noble tip to an electrode of a spark plug using a resistance and laser welding process
    • 一种使用电阻和激光焊接方法将金属高贵尖端固定到火花塞的电极的方法
    • US07666047B2
    • 2010-02-23
    • US10565902
    • 2004-11-18
    • Akira SuzukiTomoaki KatoKazuyoshi ToriiAkikazu Taido
    • Akira SuzukiTomoaki KatoKazuyoshi ToriiAkikazu Taido
    • H01T1/22H01T21/00H01T21/02
    • H01T21/02H01T13/20H01T13/39
    • There is provided a method for producing a spark plug in which welding strength between a noble metal tip and an electrode joined by laser welding can be restrained from becoming weak.A noble metal tip (90) to be joined to a center electrode (2) or ground electrode of a spark plug to form a spark discharge gap is resistance-welded to each electrode containing no noble metal and then laser-welded. In the noble metal tip (90) exposed under a severe environment involving spark discharge, a molten portion (80) formed in such a manner that a portion of the noble metal tip (90) and a portion of the electrode are melted by laser welding and a non-molten portion (95) on the noble metal tip (90) side are apt to be peeled from each other in a boundary surface (83) between the molten portion (80) and the non-molten portion (95). The noble metal content in the molten portion (80) however becomes higher because a flange portion is formed in a bottom portion by pressing force applied on the noble metal tip (90) at the time of resistance welding and then irradiated with a laser beam. Accordingly, peeling can be prevented from occurring in the boundary surface (83).
    • 提供一种用于制造火花塞的方法,其中可以抑制贵金属电极头和通过激光焊接接合的电极之间的焊接强度变弱。 要连接到火花塞的中心电极(2)或接地电极以形成火花放电间隙的贵金属端头(90)被电阻焊接到不含贵金属的每个电极上,然后被激光焊接。 在涉及火花放电的恶劣环境下露出的贵金属电极头(90)中,以使得贵金属电极头(90)的一部分和电极的一部分通过激光焊接而熔化的方式形成的熔融部(80) 并且在熔融部分(80)和非熔融部分(95)之间的边界表面(83)中,在贵金属端头(90)侧上的非熔融部分(95)易于彼此剥离。 然而,熔融部分(80)中的贵金属含量变高,因为通过在电阻焊接时施加在贵金属电极头(90)上的压力而在底部形成凸缘部分,然后用激光束照射。 因此,能够防止在边界面(83)发生剥离。
    • 3. 发明申请
    • SPARK PLUG
    • SPARK插头
    • US20110294369A1
    • 2011-12-01
    • US13146816
    • 2010-01-27
    • Naomichi MiyashitaMamoru MusasaAkira SuzukiKazuyoshi ToriiTomoaki Kato
    • Naomichi MiyashitaMamoru MusasaAkira SuzukiKazuyoshi ToriiTomoaki Kato
    • H01R13/02
    • H01T13/39H01T13/32
    • The present invention provides a spark plug which is capable of suppressing a occurrence of crack and separation by determining a structural configuration of a melting portion formed in a junction portion between a discharge portion and a pedestal portion which form an ignition portion that protrudes from a ground electrode. In a profile line shape of a cross section including a center axis P of an ignition portion 80, an exposure surface 88 of a melting portion 83 connects a side surface 82 of a discharge portion 81 and a side surface 85 of a pedestal portion 84. Further, an exterior angle θ formed between an imaginary line Q, which passes through a boundary position X1 between the melting portion 83 and the pedestal portion 84 and a boundary position X2 between the melting portion 83 and the discharge portion 81, and the center axis P at a node C, satisfies 135°≦θ≦175°. Furthermore, a proportion T/S of a forming depth T of the melting portion 83 to an outside diameter S of the discharge portion 81 satisfies T/S≧0.5.
    • 本发明提供一种火花塞,其能够通过确定在形成从地面突出的点火部的排出部和基座部之间的接合部中形成的熔融部的结构构造来抑制裂纹和分离的发生 电极。 在包括点火部分80的中心轴线P的截面的轮廓线形状中,熔化部分83的暴露表面88连接排出部分81的侧表面82和基座部分84的侧表面85。 此外,外角&thetas; 形成在通过熔融部83与基座部84之间的边界位置X1的虚拟线Q与熔融部83与排出部81之间的边界位置X2以及节点C的中心轴P之间, 满足135°≦̸&thetas;≦̸ 175°。 此外,熔融部83的成形深度T与排出部81的外径S的比例T / S满足T /S≥0.5。
    • 4. 发明授权
    • Spark plug
    • 火花塞
    • US08476817B2
    • 2013-07-02
    • US13146816
    • 2010-01-27
    • Naomichi MiyashitaMamoru MusasaAkira SuzukiKazuyoshi ToriiTomoaki Kato
    • Naomichi MiyashitaMamoru MusasaAkira SuzukiKazuyoshi ToriiTomoaki Kato
    • H01T13/20
    • H01T13/39H01T13/32
    • The present invention provides a spark plug which is capable of suppressing a occurrence of crack and separation by determining a structural configuration of a melting portion formed in a junction portion between a discharge portion and a pedestal portion which form an ignition portion that protrudes from a ground electrode. In a profile line shape of a cross section including a center axis P of an ignition portion 80, an exposure surface 88 of a melting portion 83 connects a side surface 82 of a discharge portion 81 and a side surface 85 of a pedestal portion 84. Further, an exterior angle θ formed between an imaginary line Q, which passes through a boundary position X1 between the melting portion 83 and the pedestal portion 84 and a boundary position X2 between the melting portion 83 and the discharge portion 81, and the center axis P at a node C, satisfies 135°≦θ≦175°. Furthermore, a proportion T/S of a forming depth T of the melting portion 83 to an outside diameter S of the discharge portion 81 satisfies T/S≧0.5.
    • 本发明提供一种火花塞,其能够通过确定在形成从地面突出的点火部的排出部和基座部之间的接合部中形成的熔融部的结构构造来抑制裂纹和分离的发生 电极。 在包括点火部分80的中心轴线P的截面的轮廓线形状中,熔化部分83的暴露表面88连接排出部分81的侧表面82和基座部分84的侧表面85。 此外,在通过熔融部83和基座部84之间的边界位置X1的虚拟线Q与熔化部83与排出部81之间的边界位置X2之间形成的外角θ和中心轴 P在节点C处满足135°@ @ @ 175°。 此外,熔融部83的成形深度T与排出部81的外径S的比例T / S满足T /S≥0.5。
    • 5. 发明授权
    • Spark plug and process for producing same
    • 火花塞和生产过程
    • US08427038B2
    • 2013-04-23
    • US13058472
    • 2009-12-11
    • Akikazu TaidoTomoaki Kato
    • Akikazu TaidoTomoaki Kato
    • H01T13/20H01T21/02
    • C25D5/50C25D3/562C25D7/00H01T13/32H01T13/39H01T21/02
    • There are provided a spark plug in which a plating film applied to a ground electrode can be relatively easily removed, without cost increase, to prevent deterioration in ignition performance, and a process for producing the spark plug. A spark plug 1 has a metal shell 3, a ground electrode 27 made of a Ni alloy and a Ni plating layer 28 containing Ni as a main component and applied to surfaces of at least a rear end portion of the ground electrode 27 and of the metal shell 3. A Ni plating film 41 applied to a center-electrode-side part of a portion of the ground electrode 27 to be bent has been irradiated with a laser beam or the like, thereby forming a molten layer 29 in which metal materials of the Ni plating film 41 and the ground electrode 27 are molten together on the center-electrode-side part of the portion of the ground electrode 27 to be bent. The Ni plating layer 28 is formed on a part of the ground electrode 27 other than the part irradiated with the laser beam.
    • 提供了一种火花塞,其中施加到接地电极的镀膜可以相对容易地去除而不增加成本,以防止点火性能的劣化,以及用于制造火花塞的工艺。 火花塞1具有金属壳3,由Ni合金制成的接地电极27和以Ni为主要成分的Ni镀层28,并被施加到接地电极27的至少后端部分的表面和 金属壳体3.用激光束等照射施加到待弯曲的接地电极27的一部分的中心电极侧部分的Ni镀膜41,从而形成熔融层29,其中金属材料 的Ni电镀膜41和接地电极27在接地电极27的部分的中心电极侧部分熔融在一起,以弯曲。 在除了被激光束照射的部分之外的接地电极27的一部分上形成有Ni镀层28。
    • 6. 发明申请
    • SPARK PLUG AND PROCESS FOR PRODUCING SAME
    • 火花塞及其制造方法
    • US20110148275A1
    • 2011-06-23
    • US13058472
    • 2009-12-11
    • Akikazu TaidoTomoaki Kato
    • Akikazu TaidoTomoaki Kato
    • H01T13/20H01T21/02
    • C25D5/50C25D3/562C25D7/00H01T13/32H01T13/39H01T21/02
    • There are provided a spark plug in which a plating film applied to a ground electrode can be relatively easily removed, without cost increase, to prevent deterioration in ignition performance, and a process for producing the spark plug. A spark plug 1 has a metal shell 3, a ground electrode 27 made of a Ni alloy and a Ni plating layer 28 containing Ni as a main component and applied to surfaces of at least a rear end portion of the ground electrode 27 and of the metal shell 3. A Ni plating film 41 applied to a center-electrode-side part of a portion of the ground electrode 27 to be bent has been irradiated with a laser beam or the like, thereby forming a molten layer 29 in which metal materials of the Ni plating film 41 and the ground electrode 27 are molten together on the center-electrode-side part of the portion of the ground electrode 27 to be bent. The Ni plating layer 28 is formed on a part of the ground electrode 27 other than the part irradiated with the laser beam.
    • 提供了一种火花塞,其中施加到接地电极的镀膜可以相对容易地去除而不增加成本,以防止点火性能的劣化,以及用于制造火花塞的工艺。 火花塞1具有金属壳3,由Ni合金制成的接地电极27和以Ni为主要成分的Ni镀层28,并被施加到接地电极27的至少后端部分的表面和 金属壳体3.用激光束等照射施加到待弯曲的接地电极27的一部分的中心电极侧部分的Ni镀膜41,从而形成熔融层29,其中金属材料 的Ni电镀膜41和接地电极27在接地电极27的部分的中心电极侧部分熔融在一起,以弯曲。 在除了被激光束照射的部分之外的接地电极27的一部分上形成有Ni镀层28。
    • 8. 发明申请
    • METHOD FOR MANUFACTURING SPARK PLUG
    • 制造火花塞的方法
    • US20100116794A1
    • 2010-05-13
    • US12594380
    • 2008-03-31
    • Akikazu TaidoTomoaki Kato
    • Akikazu TaidoTomoaki Kato
    • B23K26/00
    • H01T21/02B23K26/06B23K26/28
    • A method for manufacturing a spark plug is a method for manufacturing the spark plug having an electrode base member and a noble metal tip welded thereto by means of a laser or an electrode base member, a tip base member joined thereto, and a noble metal tip welded to the tip bases material by means of a laser, and the method includes a laser welding process of welding the electrode base member or the tip base member to the noble metal tip by means of a laser and through use of a laser beam whose BBP value assumes 25 mm·mrad (a radius·a half angle) or less at a time point when a laser beam enters a transfer optical system for guiding the laser beam to areas to be welded where laser welding is to be performed.
    • 一种用于制造火花塞的方法是一种用于制造火花塞的方法,所述火花塞具有通过激光或电极基底部件焊接在其上的电极基底部件和贵金属电极头,连接到其上的尖端基体部件和贵金属电极头 通过激光焊接到尖端基材上,该方法包括激光焊接工艺,该激光焊接工艺通过激光将电极基底部件或尖端基底部件焊接到贵金属焊嘴上,并通过使用BBP 在激光束进入用于将激光束引导到要进行激光焊接的区域的传递光学系统的时间点,假定为25mm·mrad(半径·半角)或更小。
    • 9. 发明申请
    • SPARK PLUG MANUFACTURING METHOD
    • SPARK PLUG制造方法
    • US20100101073A1
    • 2010-04-29
    • US12593038
    • 2008-03-27
    • Tomoaki KatoAkikazu TaidoYuichi Nakano
    • Tomoaki KatoAkikazu TaidoYuichi Nakano
    • H01S4/00
    • H01T21/02B23K26/0622B23K26/28Y10T29/49002
    • There is provided manufacturing method of a spark plug that includes a center electrode and a ground electrode with a discharge gap left therebetween. At least one of the center electrode and the ground electrode has an electrode body containing a base metal and a noble metal tip welded to the electrode body. The spark plug manufacturing method includes a laser welding step for welding the noble metal tip and the electrode body by placing the noble metal tip at a given position on the electrode body, irradiating a pulsed laser onto the noble metal tip and the electrode body and thereby sequentially forming welding spots corresponding to pulses of the laser in a circumferential direction of the noble metal tip, wherein at least one of the laser pulses is an initially increasing type laser pulse having a laser intensity waveform in which a laser intensity increases with time during a predetermined initial period from a pulse start time.
    • 提供了一种火花塞的制造方法,该火花塞包括中心电极和接地电极,其间具有放电间隙。 中心电极和接地电极中的至少一个具有包含焊接到电极体的基体金属和贵金属电极头的电极体。 火花塞的制造方法包括:激光焊接步骤,用于通过将贵金属电极头放置在电极体上的给定位置上来焊接贵金属电极头和电极体,将脉冲激光照射到贵金属电极头和电极体上 在贵金属电极头的圆周方向依次形成与激光脉冲相对应的焊点,其中至少一个激光脉冲是具有激光强度波形的初始增加型激光脉冲,激光强度波形在激光强度波形 从脉冲开始时间起的预定的初始周期。
    • 10. 发明授权
    • Spark plug manufacturing method
    • 火花塞制造方法
    • US08633418B2
    • 2014-01-21
    • US12593038
    • 2008-03-27
    • Tomoaki KatoAkikazu TaidoYuichi Nakano
    • Tomoaki KatoAkikazu TaidoYuichi Nakano
    • B23K26/00
    • H01T21/02B23K26/0622B23K26/28Y10T29/49002
    • There is provided manufacturing method of a spark plug that includes a center electrode and a ground electrode with a discharge gap left therebetween. At least one of the center electrode and the ground electrode has an electrode body containing a base metal and a noble metal tip welded to the electrode body. The spark plug manufacturing method includes a laser welding step for welding the noble metal tip and the electrode body by placing the noble metal tip at a given position on the electrode body, irradiating a pulsed laser onto the noble metal tip and the electrode body and thereby sequentially forming welding spots corresponding to pulses of the laser in a circumferential direction of the noble metal tip, wherein at least one of the laser pulses is an initially increasing type laser pulse having a laser intensity waveform in which a laser intensity increases with time during a predetermined initial period from a pulse start time.
    • 提供了一种火花塞的制造方法,该火花塞包括中心电极和接地电极,其间具有放电间隙。 中心电极和接地电极中的至少一个具有包含焊接到电极体的基体金属和贵金属电极头的电极体。 火花塞的制造方法包括:激光焊接步骤,用于通过将贵金属电极头放置在电极体上的给定位置上来焊接贵金属电极头和电极体,将脉冲激光照射到贵金属电极头和电极体上 在贵金属电极头的圆周方向依次形成与激光脉冲相对应的焊点,其中至少一个激光脉冲是具有激光强度波形的初始增加型激光脉冲,激光强度波形在激光强度波形 从脉冲开始时间起的预定的初始周期。