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    • 1. 发明专利
    • Rotary component, movement, timepiece, and method of manufacturing rotary component
    • 旋转部件,运动,定时器和制造旋转部件的方法
    • JP2014163737A
    • 2014-09-08
    • JP2013033171
    • 2013-02-22
    • Seiko Instruments Incセイコーインスツル株式会社
    • NIWA TAKASHINAKAJIMA MASAHIROKAWACHIYA TAKUMAFUJIEDA HISASHIARAYA MANABU
    • G04B13/02F16H55/17G04B15/14
    • PROBLEM TO BE SOLVED: To provide: a rotary component in which a rotating body and a rotation shaft can be surely and accurately fixed; a movement; a timepiece; and a method of manufacturing the rotary component.SOLUTION: A rotary component includes: an escapement gear portion 101 made of a material having a crystal orientation; and a shaft member 102 inserted to a through hole 115 of the escapement gear portion 101 and fixed to the escapement gear portion 101 via a connection body 110. An inner surface of the through hole 115 is formed by consecutively providing a plurality of first slopes 116 which are inclined relative to an axial direction of the shaft member 102 and are formed of crystal faces of the material, along a circumferential direction of the shaft member 102, and a plurality of second slopes 133 having the same angle as the first slopes are formed on an outer peripheral surface of the connection body 110 correspondingly to the first slopes 116. The connection body 110 is fixed to the shaft member 102, and is located within the through hole 115 in a state where the second slopes 133 are in contact with the first slopes 116.
    • 要解决的问题:提供:可以可靠且精确地固定旋转体和旋转轴的旋转部件; 运动; 钟表; 以及制造旋转部件的方法。旋转部件包括:由具有晶体取向的材料制成的擒纵齿轮部分101; 以及轴构件102,其插入到擒纵齿轮部101的通孔115中,并且经由连接体110固定到擒纵齿轮部101.通孔115的内表面通过连续地设置多个第一斜面116 其相对于轴构件102的轴向倾斜并且沿着轴构件102的圆周方向由材料的晶面形成,并且形成与第一斜面具有相同角度的多个第二斜面133 在连接体110的外周表面上,与第一斜面116对应。连接体110固定在轴构件102上,并且在第二斜面133与第二斜面133接触的状态下位于通孔115内 第一斜坡116。
    • 2. 发明专利
    • Bearing structure and timepiece equipped with same
    • 轴承结构和定时装配
    • JP2010169547A
    • 2010-08-05
    • JP2009012644
    • 2009-01-23
    • Seiko Instruments Incセイコーインスツル株式会社
    • FUJIEDA HISASHI
    • G04B31/00
    • G04B31/04
    • PROBLEM TO BE SOLVED: To provide a bearing structure capable of directly adjusting the gap with a counter bearing even after assembly and to provide a timepiece equipped with the same.
      SOLUTION: The bearing structure 1 of the timepiece 3 rotation-freely supports a tip part 31a of a shaft 31 of a wheel 30 to a substrate 20 and comprises a bearing 50; a bearing support 40 provided with a male screw part 45 in its outer circumferential surface concentric with the shaft 31 of the wheel 30 for supporting the bearing 50; and an adjusting nut 70 provided with a female screw part 71 to be helically engaged with the male screw part 45 of the bearing support 40 for restricting displacements of the shaft 31 of the wheel 30 in extending directions A1 and A2 by the substrate 20 and adjusting the position of the bearing 50 on the extending directions A1 and A2 of the shaft 31 via the bearing support 40.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种即使在组装之后能够与逆轴承直接调节间隙的轴承结构,并提供配备有该轴承结构的钟表。 解决方案:钟表3的轴承结构1将轮30的轴31的尖端部分31a自由地支撑到基板20,并且包括轴承50; 轴承支撑件40,其在其外圆周表面上设置有与用于支撑轴承50的轮30的轴31同心的阳螺纹部分45; 以及调节螺母70,其具有内螺纹部71,以与轴承支撑件40的阳螺纹部45螺旋结合,用于限制由基板20沿着延伸方向A1和A2的轮30的轴31的位移,并调整 轴承50在轴31的延伸方向A1和A2上通过轴承座40的位置。版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Chronograph display mechanism and chronograph timepiece equipped therewith
    • CHRONOGRAPH显示机构和CHRONOGRAPH TIMEPIECE设备
    • JP2009121962A
    • 2009-06-04
    • JP2007296604
    • 2007-11-15
    • Seiko Instruments Incセイコーインスツル株式会社
    • FUJIEDA HISASHI
    • G04F7/08
    • PROBLEM TO BE SOLVED: To provide a retrograde-type chronograph display mechanism with the use of heart cams minimized which are apt to cause a cost increase as to retrograde-type chronograph display, and a chronograph timepiece equipped therewith.
      SOLUTION: This retrograde-type chronograph display mechanism 1 of this chronograph timepiece 2 includes a cam wheel 10 comprising a cam equipped with a spiral cam face, and control mechanisms 20 and 40 for retrograde-type chronograph display which make contact with the cam face 12 by means of an end part 24 of a regulation lever part 21 to make turning motion according to the rotation of the cam wheel in the normal direction A1 for displaying a chronograph pointer 42 in a range extending from an initial position M1 to a maximum position M3 different from the initial position. The chronograph pointer 42 is set at the initial position M1 when the end part 24 of the lever part is positioned at a step part 19 formed between the maximum and minimum diameter parts 18 and 16 of a spiral of the cam of the cam wheel or a reference position D1 in the vicinity thereof.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供使用最小化的心形凸轮的逆行式计时器显示机构,其倾向于导致逆时针式计时显示器的成本增加,以及配备有计时码表的计时钟表。 该计时钟表2的逆行型计时显示机构1包括:凸轮10,其包括配备有螺旋凸轮面的凸轮,以及用于逆时针计时显示的控制机构20和40, 凸轮面12通过调节杆部分21的端部部分24根据凸轮在正常方向A1上的转动进行转动,以便在从初始位置M1延伸到一定范围的范围内显示计时指针42 最大位置M3与初始位置不同。 当杠杆部分的端部24位于形成在凸轮的凸轮的螺旋的最大和最小直径部分18和16之间的阶梯部分19处时,计时指针42被设置在初始位置M1,或 参考位置D1在其附近。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • 脱進機、時計用ムーブメントおよび時計
    • ESCAPEMENT,在TIMEPIECES中使用的运动和TIMEPIECE
    • JP2015025719A
    • 2015-02-05
    • JP2013154978
    • 2013-07-25
    • セイコーインスツル株式会社Seiko Instruments Inc
    • KODA MASAYUKISUZUKI SHIGEOFUJIEDA HISASHI
    • G04B17/06
    • G04B15/08G04B15/14
    • 【課題】エネルギーの伝達効率を向上できる脱進機、この脱進機を備えた時計用ムーブメントおよびこの時計用ムーブメントを備えた時計を提供する。【解決手段】がんぎ車11と、てん真51を中心として回動するてんぷ5に設けられた振り座53と、アンクル真33周りに回動可能なアンクル12と、を備えた脱進機1であって、振り座53は、振り座53の回動にともなってアンクル12に接触し、アンクル12をアンクル真33周りに回動させる第一振り石57と、がんぎ車11の歯部23と接触可能な第二振り石58と、を備え、アンクル12は、入りつめ石45および出つめ石38の2個のつめ石を備えたことを特徴とする。【選択図】図2
    • 要解决的问题:提供能够提高能量传递效率的擒纵机构,用于配备有该擒纵机构的钟表的运动,以及配备有用于钟表的该运动的钟表。解决方案:擒纵机构1包括擒纵轮 如图11所示,设置在平衡台5上围绕平衡工作人员51旋转的滚子53,可围绕托盘工作人员33旋转的托盘12.滚子53设置有与托盘12接触的第一冲击销57以及 辊53的旋转并使托盘12围绕托板工作人员33旋转,并且第二冲击销58可以与擒纵轮11的齿部23接触。托板12设置有两个托盘石,包括 向内的托盘石45和向外的托盘石38。
    • 5. 发明专利
    • Temperature-compensated balance, timepiece movement, and mechanical timepiece
    • 温度补偿平衡,时间运动和机械时序
    • JP2014163784A
    • 2014-09-08
    • JP2013034703
    • 2013-02-25
    • Seiko Instruments Incセイコーインスツル株式会社
    • NAKAJIMA MASAHIRONIWA TAKASHIKAWACHIYA TAKUMAFUJIEDA HISASHIARAYA MANABU
    • G04B17/22
    • PROBLEM TO BE SOLVED: To provide a temperature-compensated balance which is capably of ensuring an amount of temperature compensation of a required inertial moment while ensuring strength, and a timepiece movement and a mechanical timepiece including the same.SOLUTION: A temperature-compensated balance includes: a balance staff turning around an axis; and a balance wheel which has a plurality of bimetal parts 50 arcuately extending along a circumferential direction of the axis of turning and connection members connecting respective bimetal parts 50 and the balance staff in a radial direction. Each bimetal part 50 is a laminate where a first member 60 and a second member 61 different by thermal expansion coefficients are laminated in the radial direction, and one end part in the circumferential direction of the bimetal part 50 is a fixed end 50A connected to the connection member, and the other end in the circumferential direction is a free end 50B. Each bimetal part 50 has a thickness gradually reduced from the side of the fixed end 50A toward the free end 50B along the radial direction.
    • 要解决的问题:提供一种温度补偿平衡,其可以确保在确保强度的同时确保所需惯性力矩的温度补偿量,以及包括该温度补偿平衡的时钟运动和机械钟表。解决方案:温度补偿平衡 包括:平衡人员转动轴; 以及平衡轮,其具有沿着转动轴的圆周方向弧形地延伸的多个双金属件50,并且在径向方向上连接各个双金属件50和平衡件的连接构件。 每个双金属部分50是沿径向层叠第一构件60和不同于热膨胀系数的第二构件61的层压体,并且双金属件50的圆周方向上的一个端部是与第二构件60和第二构件61连接的固定端50A 连接构件,而在圆周方向上的另一端是自由端50B。 每个双金属部分50具有从固定端50A侧朝向径向自由端50B逐渐减小的厚度。
    • 6. 发明专利
    • Balance, timepiece movement, and mechanical clock
    • 平衡,时间运动和机械时钟
    • JP2014160037A
    • 2014-09-04
    • JP2013031415
    • 2013-02-20
    • Seiko Instruments Incセイコーインスツル株式会社
    • KAWACHIYA TAKUMANIWA TAKASHINAKAJIMA MASAHIROFUJIEDA HISASHIARAYA MANABU
    • G04B17/06
    • PROBLEM TO BE SOLVED: To provide a balance allowing an adjustment work of an inertia moment in a wide adjustable range, securing a fixed rigidity, and suppressing thickness in an axial direction to suppress an influence on an installing space of a balance spring.SOLUTION: A balance 40 includes a balance staff 41, a balance wheel 42 connected with the balance staff and in which a plurality of guide holes 50 are formed, and a weight part 51 movable along the guide hole. The guide hole extends in a diameter direction of a rotating axis O of the balance staff, and is placed with a space in a circumference of the rotating axis. The weight part is movably stored along the guide hole in the diameter direction of the rotating axis while at least its part is stored in the guide hole from a width direction of the balance wheel.
    • 要解决的问题:为了提供能够在宽的可调节范围内的惯性力矩的调整工作的平衡,确保固定的刚性,并且抑制轴向的厚度,以抑制对平衡弹簧的安装空间的影响。解决方案: 余量40包括平衡工作人员41,与平衡工作人员连接的平衡轮42,其中形成有多个导向孔50,以及可沿导向孔移动的配重部51。 引导孔沿着平衡人员的旋转轴线O的直径方向延伸,并且在旋转轴线的圆周上设置有空间。 重量部分沿着旋转轴线的直径方向的导向孔可移动地存储,而至少其部分从平衡轮的宽度方向存储在引导孔中。
    • 7. 发明专利
    • Anchor escapement and mechanical timepiece including the same
    • 锚固装置和机械装置包括它们
    • JP2012107995A
    • 2012-06-07
    • JP2010257221
    • 2010-11-17
    • Seiko Instruments Incセイコーインスツル株式会社
    • FUJIEDA HISASHI
    • G04B15/14
    • G04B15/14G04B15/08
    • PROBLEM TO BE SOLVED: To provide an anchor escapement in which a lift angle of a balance is substantially changed according to the amplitude of the balance, and to provide a governor escapement and a mechanical timepiece including the anchor escapements.SOLUTION: An anchor escapement 1 of a governor escapement mechanism 2 in a mechanical timepiece 3 includes: an escapement wheel 5; an anchor 6 allowed to be engaged/disengaged with/from a swing jewel on a casket tip to be a tip of an anchor beam 30 having bank engagement parts 63 on both the sides; and an anchor receiver 8 engaged with the bank engagement parts 63 by anchor engagement parts 70 to regulate the rotation range of the anchor 6. One member 30 out of the anchor beam 30 and the anchor receiver 8 is provided with an elastic arm part 60, the elastic arm part 60 is extended from a base end part 61 connected to a sidewall 36 of the one member 30 up to a tip part 62 along the sidewall 36, the tip part of the elastic arm part 60 becomes the engagement part 63 of the one member 30, and in a state of locking the escapement wheel 5 by a pallet stone, the engagement part of the tip of the elastic arm part 60 is engaged with the engagement part 70 of the other member 8 out of the anchor beam 30 and the anchor receiver 8.
    • 要解决的问题:提供一种主体擒纵机构,其中天平的提升角度根据天平的幅度基本上改变,并且提供调速器擒纵机构和包括该擒纵机构的机械钟表。 解决方案:机械钟表3中的调速器擒纵机构2的擒纵机构1包括:擒纵轮5; 允许与棺材尖端上的摆动宝石接合/脱离的锚杆6成为在两侧具有堤接合部分63的锚梁30的顶端; 以及锚固接收器8,其通过锚定接合部分70与锚定接合部分63接合,以调节锚固件6的旋转范围。锚固梁30和锚固接收器8中的一个构件30设置有弹性臂部分60, 弹性臂部60从连接到一个构件30的侧壁36的基端部61沿着侧壁36延伸到前端部62,弹性臂部60的前端部成为 一个构件30,并且在通过托盘石来锁定擒纵轮5的状态下,弹性臂部60的前端的接合部分与另一个构件8的接合部70与锚梁30接合, 主播接收器8.版权所有(C)2012,JPO&INPIT
    • 8. 发明专利
    • トルク調整装置、ムーブメント及び機械式時計
    • 扭矩调节装置,运动和机械手表
    • JP2015040718A
    • 2015-03-02
    • JP2013170619
    • 2013-08-20
    • セイコーインスツル株式会社Seiko Instruments Inc
    • FUJIEDA HISASHI
    • G04B17/20G04B1/22
    • G04B1/225G04B15/08G04B15/14G04B17/06
    • 【課題】脱進機の動作トルクの変化を抑制すること。【解決手段】機械式時計の香箱車から脱進機への輪列に組み込まれるトルク調整用ぜんまいと、前記トルク調整用ぜんまいの第一端部が連結されるとともに、前記トルク調整用ぜんまいより前記脱進機側の輪列に連結される脱進機側トルク調整用車と、前記トルク調整用ぜんまいの第二端部が連結されるとともに、前記トルク調整用ぜんまいより前記香箱車側の輪列に連結される香箱車側トルク調整用車と、前記香箱車側トルク調整用車を所定角度だけ回転させた後に前記香箱車側トルク調整用車から前記脱進機側にトルクが伝達されないように前記香箱車側トルク調整用車を係止する係止部、及び、所定周期で前記係止部に作用し前記香箱車側トルク調整用車の係止を解除する係止解除部を有し、前記脱進機側トルク調整用車に対して前記香箱車側トルク調整用車を間欠的に相対回転させる周期制御機構とを備える。【選択図】図2
    • 要解决的问题:抑制擒纵机构的运动扭矩的变化。解决方案:扭矩调节装置包括:扭矩调节力弹簧,其组装成从所述筒轮到机械手表的擒纵机构的环排; 擒纵侧扭矩调节轮,其联接在扭矩调节力弹簧的第一端,并且从扭矩调节力弹簧联接到擒纵侧环排; 桶轮侧扭矩调节轮,其联接到扭矩调节力弹簧的第二端,并且从转矩调节力弹簧联接到桶轮侧环排; 以及具有锁定部件的循环控制机构,该锁定部件用于将筒轮侧扭矩调节轮锁定在适当位置,使得在筒轮侧扭矩调节轮之后扭矩不从筒轮侧扭矩调节轮传递到擒纵侧 旋转预定角度的解锁部件和用于通过以规定的周期作用在锁定部上来解锁筒轮侧扭矩调节轮的解锁部,循环控制机构相对于擒纵机构间歇地旋转筒轮侧扭矩调节轮, 侧扭矩调节轮。
    • 9. 发明专利
    • Torque adjustment device, movement, and mechanical timepiece
    • 扭矩调节装置,运动和机械定时器
    • JP2014174118A
    • 2014-09-22
    • JP2013049550
    • 2013-03-12
    • Seiko Instruments Incセイコーインスツル株式会社
    • FUJIEDA HISASHI
    • G04B17/06G04B9/00
    • G04B1/22G04B9/005G04B13/008G04B15/10
    • PROBLEM TO BE SOLVED: To provide a torque adjustment device which can grasp the winding-up amount of a sub-spring and which is excellent in volumetric efficiency.SOLUTION: A torque adjustment device 6 includes: a sub-spring 65; an output gear 66 to which an inner-peripheral end part of the sub-spring 65 is connected and which is connected to an escapement 50; a ratchet wheel 64 to which an outer-peripheral end part of the sub-spring 65 is connected and which intermittently rotates in a manner relative to the output gear 66; a winding-up amount adjustment mechanism 80 adjusting the winding-up amount of the sub-spring 65; and a planetary gear mechanism 90 connected to the ratchet wheel 64, a barrel wheel 10, and the winding-up amount adjustment mechanism 80. The winding-up amount adjustment mechanism 80 includes: a winding-up amount maintenance part for maintaining the winding-up amount of the sub-spring 65; and the winding-up amount display part for displaying the winding-up amount of the sub-spring 65.
    • 要解决的问题:提供一种扭矩调节装置,其能够掌握副弹簧的卷绕量并且容积效率优异。转矩调节装置6包括:副弹簧65; 输出齿轮66,子弹簧65的内周端部连接到该输出齿轮66并连接到擒纵机构50; 棘轮64,副弹簧65的外周端部连接并以相对于输出齿轮66间歇地旋转的棘轮64; 调整副弹簧65的卷绕量的卷取量调节机构80; 以及与棘轮64连接的行星齿轮机构90,筒轮10和卷绕量调节机构80.卷起量调节机构80包括:卷绕量维护部, 副弹簧65的上升量; 以及用于显示副弹簧65的卷起量的卷绕量显示部。
    • 10. 发明专利
    • Constant torque mechanism for clock, movement provided with the mechanism, and mechanical clock
    • 用于时钟,运动提供机械和机械时钟的恒定扭矩机制
    • JP2014081334A
    • 2014-05-08
    • JP2012230993
    • 2012-10-18
    • Seiko Instruments Incセイコーインスツル株式会社
    • FUJIEDA HISASHI
    • G04B1/22
    • G04B1/225
    • PROBLEM TO BE SOLVED: To provide a constant torque mechanism for a clock, a movement provided with the same, and a mechanical clock capable of minimizing an output torque fluctuation.SOLUTION: The constant torque mechanism 1 of the movement 2 of a mechanical clock 3 includes: an escapement wheel 30 arranged to locate between a barrel wheel 10 and a balance 98 and including a first winding shaft 60, a second winding shaft 50 eccentric to the first winding shaft, and a ratchet wheel 33 and coupled to a drive wheel row and made to rotate around the central axial line A of the first winding shaft; a drive wheel 35 coupled to a driven side wheel row and relatively rotatable around the central axial line A for the escapement wheel; a spring 40 with the first winding shaft mounted on the escapement wheel and one wheel of the drive wheels and the second winding shaft mounted on the other wheel and wound between the first and second winding shafts so as to constitute a constant torque spring mechanism 5; and an intermittent rotation control mechanism for intermittently allowing a relative rotation for the drive wheel 35 of the escapement wheel 30.
    • 要解决的问题:提供用于时钟的恒定转矩机构,具有该转矩机构的机构,以及能够最小化输出转矩波动的机械时钟。解决方案:机械时钟3的运动2的恒定转矩机构1 包括:擒纵轮30,其布置成定位在滚轮10和平衡器98之间并且包括第一卷绕轴60,偏心于第一卷绕轴的第二卷绕轴50和棘轮33并且联接到驱动轮排 并围绕第一卷绕轴的中心轴线A旋转; 驱动轮35,其联接到从动侧轮排,并且围绕擒纵轮的中心轴线A可相对旋转; 弹簧40,其中第一卷绕轴安装在擒纵轮上,驱动轮的一个轮和安装在另一个轮上的第二卷绕轴卷绕在第一和第二卷绕轴之间,以构成恒定的扭矩弹簧机构5; 以及用于间歇地允许擒尺轮30的驱动轮35的相对旋转的间歇旋转控制机构。