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    • 1. 发明申请
    • Spinning-reel oscillating device
    • 旋转磁盘振荡装置
    • US20050045758A1
    • 2005-03-03
    • US10923826
    • 2004-08-24
    • Masuo BanKeigo KitajimaTaisei Morise
    • Masuo BanKeigo KitajimaTaisei Morise
    • A01K89/01
    • A01K89/0114
    • An oscillating mechanism includes a first non-circular gear, a rotary cam and a slider. The first non-circular gear is a bi-lobe gear rotatable about an axis of the handle rotation. The rotary cam is rotatably mounted in the reel unit so as to be parallel with the first non-circular gear. The rotary cam includes a cam protrusion, and a multi-lobe second non-circular gear arranged so that a tooth corresponding to the minimum tip diameter of the second non-circular gear meshes with a tooth corresponding to the maximum tip diameter of the first non-circular gear. The number of teeth of the second non-circular gear is greater than that of the first non-circular gear. The slider is axially movably mounted to the spool shaft. The slider includes a cam groove engaging the cam protrusion. The present invention facilitates tight winding of fishing line in a shape closer to a cylindrical shape.
    • 摆动机构包括第一非圆形齿轮,旋转凸轮和滑块。 第一非圆形齿轮是围绕手柄旋转的轴线旋转的双瓣齿轮。 旋转凸轮以与第一非圆形齿轮平行的方式可旋转地安装在卷轴单元中。 旋转凸轮包括凸轮突起和多叶片第二非圆形齿轮,其布置成使得与第二非圆形齿轮的最小尖端直径相对应的齿与对应于第一非圆形齿轮的最大尖端直径的齿啮合, 圆形齿轮 第二非圆形齿轮的齿数大于第一非圆形齿轮的齿数。 滑块可轴向移动地安装到卷筒轴上。 滑块包括与凸轮突起接合的凸轮槽。 本发明有助于将钓鱼线紧密地卷绕成更接近圆柱形的形状。
    • 2. 发明授权
    • Spinning-reel oscillating device
    • 旋转磁盘振荡装置
    • US07188794B2
    • 2007-03-13
    • US10923826
    • 2004-08-24
    • Masuo BanKeigo KitajimaTaisei Morise
    • Masuo BanKeigo KitajimaTaisei Morise
    • A01K89/01
    • A01K89/0114
    • An oscillating mechanism includes a first non-circular gear, a rotary cam and a slider. The first non-circular gear is a bi-lobe gear rotatable about an axis of the handle rotation. The rotary cam is rotatably mounted in the reel unit so as to be parallel with the first non-circular gear. The rotary cam includes a cam protrusion, and a multi-lobe second non-circular gear arranged so that a tooth corresponding to the minimum tip diameter of the second non-circular gear meshes with a tooth corresponding to the maximum tip diameter of the first non-circular gear. The number of teeth of the second non-circular gear is greater than that of the first non-circular gear. The slider is axially movably mounted to the spool shaft. The slider includes a cam groove engaging the cam protrusion. The present invention facilitates tight winding of fishing line in a shape closer to a cylindrical shape.
    • 摆动机构包括第一非圆形齿轮,旋转凸轮和滑块。 第一非圆形齿轮是围绕手柄旋转的轴线旋转的双瓣齿轮。 旋转凸轮以与第一非圆形齿轮平行的方式可旋转地安装在卷轴单元中。 旋转凸轮包括凸轮突起和多叶片第二非圆形齿轮,其布置成使得与第二非圆形齿轮的最小尖端直径相对应的齿与对应于第一非圆形齿轮的最大尖端直径的齿啮合, 圆形齿轮 第二非圆形齿轮的齿数大于第一非圆形齿轮的齿数。 滑块可轴向移动地安装到卷筒轴上。 滑块包括与凸轮突起接合的凸轮槽。 本发明有助于将钓鱼线紧密地卷绕成更接近圆柱形的形状。
    • 3. 发明授权
    • Fishing-reel power transmission device
    • 钓鱼卷动力传动装置
    • US06702214B2
    • 2004-03-09
    • US10337284
    • 2003-01-07
    • Keigo KitajimaKoji TakikuraTaisei Morise
    • Keigo KitajimaKoji TakikuraTaisei Morise
    • A01K8901
    • A01K89/0114
    • A power transmission mechanism is for transmitting power from a handle of a spinning reel to an oscillating mechanism, and includes a pinion gear, a dual-stepped gear, and a driven gear. The pinion gear rotates in cooperation with rotation of the handle. The dual-stepped gear has a larger-diameter gear that is a helical-tooth gear and meshes with the pinion gear, and a smaller-diameter gear that is arranged coaxially with the larger-diameter gear and is formed unitarily with the larger-diameter gear. The smaller-diameter gear is a straight-tooth gear or a helical gear whose orientation is substantially the same as an orientation of the larger gear. The driven gear meshes with the smaller-diameter gear to rotate the oscillating mechanism. In a power transmission device in a fishing reel, manufacturing cost is reduced while suppressing noise.
    • 动力传递机构用于将动力从旋转卷线轮的手柄传递到摆动机构,并且包括小齿轮,双阶齿轮和从动齿轮。 小齿轮与手柄的旋转协同旋转。 双级齿轮具有大齿轮,其为螺旋齿齿轮并与小齿轮啮合,小直径齿轮与大直径齿轮同轴设置并与较大直径的齿轮一体形成 齿轮。 小直径齿轮是直齿齿轮或斜齿轮,其取向与较大齿轮的取向基本相同。 从动齿轮与小直径齿轮啮合以旋转摆动机构。 在钓鱼卷轴的动力传递装置中,在抑制噪声的同时降低制造成本。
    • 7. 发明授权
    • Rear drag operation structure for a spinning reel
    • 用于旋转卷线筒的后拖动操作结构
    • US07165736B2
    • 2007-01-23
    • US10885448
    • 2004-07-07
    • Keigo Kitajima
    • Keigo Kitajima
    • A01K89/02
    • A01K89/029A01K89/0114
    • The rear drag operation structure includes a knob mounting portion, a first rear drag knob, and a second rear drag knob. The knob mounting portion includes a tubular portion that projects rearward from the rear portion of the reel unit, and a male threaded portion formed on the outer peripheral surface of the tubular portion. The first rear drag knob is mounted on the rear end portion of the knob mounting portion. The second rear drag knob includes lever members that are disposed between the rear portion of the reel unit and the front portion of the first rear drag knob, and a nut member that is mounted on the lever members so as to be not rotatable but moveable forward and backward relative thereto, and is screwed onto the male threaded portion of the knob mounting portion.
    • 后拖动操作结构包括旋钮安装部分,第一后拖动旋钮和第二后拖动旋钮。 旋钮安装部分包括从卷轴单元的后部向后突出的管状部分和形成在管状部分的外周表面上的阳螺纹部分。 第一后拖动旋钮安装在旋钮安装部分的后端部分上。 第二后拖把包括设置在卷轴单元的后部和第一后拖把的前部之间的杠杆构件,以及螺母构件,其安装在杠杆构件上以便不可旋转但可向前移动 并相对于其后退,并被拧到旋钮安装部分的外螺纹部分上。
    • 9. 发明授权
    • Fishing-reel sounding device
    • 钓鱼卷筒探测装置
    • US06688545B2
    • 2004-02-10
    • US10315055
    • 2002-12-10
    • Keigo KitajimaHirokazu Hiraoka
    • Keigo KitajimaHirokazu Hiraoka
    • A01K8900
    • A01K89/016A01K89/0111
    • First sounding mechanism, which issues sound when spool rotates relative to spool shaft, is furnished with sound-emitting member, pawl member, and plate spring. Sound-emitting member is non-rotatably mounted on spool shaft, and has multiple jags radially jutting on its outer periphery. Pawl member has body portion pivotably mounted on spool; pawl portion formed on the spool-shaft side of the swing center; and arcuate contact face formed on body portion on a side of the swing center SC opposite spool shaft. First-side radius R1 of contact face, is smaller than its second-side radius R2. Plate spring mounted on spool at an end nearer the first side of contact-face is, and contacts contact face at the other end, urging pawl portion of pawl member to collide with sound-emitting member. In a spinning-reel sounding device having a pawl member, the tone fluctuations due to spool rotational direction are controlled.
    • 当卷轴相对于卷筒轴旋转时发出声音的第一探测机构配备有发声部件,棘爪部件和板簧。 发声构件不可旋转地安装在卷筒轴上,并且在其外周上具有多个径向突出的凹凸。 爪构件具有可枢转地安装在卷轴上的主体部分; 形成在摆动中心的卷轴轴侧的棘爪部; 以及在摆动中心SC的与卷筒轴相对的一侧上的主体部分上形成的弓形接触面。 接触面的第一侧半径R1小于其第二侧半径R2。 在靠近接触面第一侧的端部安装在卷轴上的板簧弹簧在另一端接触接触面,从而推动棘爪部件的棘爪部分与发声部件碰撞。 在具有棘爪构件的旋转卷线筒探测装置中,控制由于滑阀旋转方向引起的音调波动。
    • 10. 发明授权
    • Spinning-reel reciprocating mechanism
    • 旋转往复机构
    • US06655619B2
    • 2003-12-02
    • US10225307
    • 2002-08-22
    • Keigo Kitajima
    • Keigo Kitajima
    • A01K8901
    • A01K89/0114
    • Reciprocating mechanism for a spinning-reel, which reciprocates the spool in response to rotation of the rotor, has a worm, a slider, an intermediate gear, a first guide shaft, and a second guide shaft. Crisscrossing helical grooves are formed in the outer circumference of worm, which is rotatively supported by the reel unit. Slider, which is coupled to the spool, has an engagement pin that engages helical grooves, and a slider body that has a mounting hole that pivotably supports engagement pin such that engagement pin engages helical grooves from radial outside of worm. Intermediate gear transmits rotation of rotor to worm. First and second guide shafts guide slider in the direction of spool shaft. First guide shaft is disposed on a side of engagement member opposite the side closer to worm. With the present invention, it is possible to reduce the size of reciprocating mechanism.
    • 用于响应于转子旋转而使卷轴往复运动的纺纱机的往复运动机构具有蜗杆,滑块,中间齿轮,第一导向轴和第二导向轴。 在蜗轮的外周形成交叉螺旋槽,蜗轮由卷轴单元旋转地支承。 滑动件联接到卷轴上,具有接合螺旋槽的接合销,以及具有可枢转地支撑接合销的安装孔的滑块主体,使得接合销从蜗杆的径向外侧接合螺旋槽。 中间齿轮将转子的旋转传递给蜗杆。 第一和第二引导轴沿滑阀轴的方向引导滑块。 第一引导轴设置在接合构件的与更靠近蜗杆的一侧相对的一侧。 通过本发明,可以减小往复运动机构的尺寸。