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    • 2. 发明专利
    • Holding structure and webbing winder
    • 保持结构和网络WINDER
    • JP2006213156A
    • 2006-08-17
    • JP2005027243
    • 2005-02-03
    • Tokai Rika Co Ltd株式会社東海理化電機製作所
    • KITAZAWA YASUOTAKAMATSU HITOSHIYASUDA MASAKIAIHARA KAZUHIKONAKAJIMA TOSHIONAGATA TOMONORI
    • B60R22/36
    • B60R22/405
    • PROBLEM TO BE SOLVED: To provide a holding structure and a webbing winder, capable of surely regulating the displacement of a held member such as a rotary body, by restricting the deformation of a holding claw by pressing force from the held member such as the rotary body. SOLUTION: A regulating rib 78 is formed in an inner peripheral part of a peripheral wall 70 for constituting a sensor cover 66 on the opposite side of a body 44 of a sensor gear 42 via a base part 62 of the holding claw 60 of opposing a claw part 64 to the body 44 of the sensor gear 42 in the shaft direction of the sensor gear 42, and when the holding claw 60 deflects to the outside in the turning radius direction of the sensor gear 42, a wide part 82 of the regulating rib 78 abuts on the claw part 64. Thus, before eliminating an opposed state of the claw part 64 and the body 44, since deflection of the holding claw 60 is regulated, even if the sensor gear 42 presses the claw part 64 by excessive force, the holding claw 60 can regulate displacement of the sensor gear 42. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种保持结构和织带卷绕机,其能够通过限制来自被保持构件的按压力来限制保持爪的变形,从而可靠地调节诸如旋转体的保持构件的位移, 作为旋转体。 解决方案:调节肋78形成在周壁70的内周部分中,用于构成传感器盖66,在传感器齿轮42的主体44的相对侧上经由保持爪60的基部62 在传感器齿轮42的轴向上将爪部64与传感器齿轮42的主体44相对,并且当保持爪60在传感器齿轮42的转动半径方向上偏转到外部时,宽部82 因此,在消除爪部64和主体44的相对状态之前,由于保持爪60的偏转被调节,所以即使传感器齿轮42按压爪部64 通过过大的力,保持爪60可以调节传感器齿轮42的位移。版权所有:(C)2006,JPO&NCIPI
    • 3. 发明专利
    • Webbing winding-up device
    • 网络上网设备
    • JP2006188138A
    • 2006-07-20
    • JP2005001222
    • 2005-01-06
    • Tokai Rika Co Ltd株式会社東海理化電機製作所
    • KITAZAWA YASUONAGATA TOMONORITAKAMATSU HITOSHIYASUDA MASAKINAKAJIMA TOSHIOAIHARA KAZUHIKO
    • B60R22/46
    • B60R22/4633B60R22/405B60R2022/4661
    • PROBLEM TO BE SOLVED: To obtain a webbing winding-up device capable of preventing gas for rotating a winding-up shaft in a winding-up direction from affecting other components. SOLUTION: In this webbing winding-up device 10, working gas in a cylinder 68 is discharged on a pinion 58 side through a gas venting hole formed at a flange portion of a piston 74 at the time of operating a pre-tensioner mechanism 56. Since a block wall 57 is provided between a pinion 58 and an acceleration sensor 88, the exhaust gas passes between the pinion 58 and the block wall 57, and is discharged to the outside of the device from an upper edge side of a cover plate 80 and the like (refer to the arrow E). With this constitution, blowing of the exhaust gas to the acceleration sensor 88 can be blocked, thus preventing the exhaust gas from affecting the acceleration sensor 88. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:获得能够防止气体沿卷绕方向旋转卷绕轴的织带卷绕装置,从而影响其它部件。 解决方案:在该织带卷绕装置10中,在操作预张紧器时,气缸68中的工作气体通过形成在活塞74的凸缘部分的排气孔在小齿轮58侧排出 由于在小齿轮58和加速度传感器88之间设置有阻挡壁57,所以排气通过小齿轮58和阻挡壁57之间,并从该外壳的上边缘侧排出 盖板80等(参照箭头E)。 利用这种结构,可以阻止向加速度传感器88吹送废气,从而防止排气影响加速度传感器88.(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Webbing winder
    • WEBBING WINDER
    • JP2006088780A
    • 2006-04-06
    • JP2004274167
    • 2004-09-21
    • Tokai Rika Co Ltd株式会社東海理化電機製作所
    • KITAZAWA YASUONAGATA TOMONORITAKAMATSU HITOSHIYASUDA MASAKINAKAJIMA TOSHIOAIHARA KAZUHIKO
    • B60R22/28B60R22/46
    • PROBLEM TO BE SOLVED: To obtain a webbing winder which can prevent a torsion shaft and a pinion from exerting unnecessary influence. SOLUTION: The other end part (the end part on the left in a drawing) of a torsion shaft 24 of the webbing winder 10 is pivoted by a housing 84 made of resin which is installed on the opposite side of a spool 18 of the other side wall 12B of a frame 12. The other end part (a spindle part 25 ) of the torsion shaft 24 penetrates a through-hole 15 and a hole part 63 in a state of non-contact with both the through-hole and the hole part. The through-hole is formed on the other side wall 12B of the frame 12, and the hole part is formed at the axial center part of the pinion 58. That is to say, the torsion shaft 24 of a force limiter mechanism is supported independently from the pinion 58 of a pretensioner mechanism 56. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:获得能够防止扭转轴和小齿轮施加不必要的影响的织带卷绕机。 解决方案:织带卷绕机10的扭转轴24的另一端部(图中左侧的端部)由安装在卷轴18的相对侧上的由树脂制成的壳体84枢转 扭转轴24的另一端部(主轴部25)穿过贯通孔15和孔部63,该通孔15和孔部63与两个通孔不接触 和孔部分。 通孔形成在框架12的另一侧壁12B上,并且孔部形成在小齿轮58的轴向中心部分。也就是说,力限制器机构的扭转轴24被独立地支撑 来自预张紧机构56的小齿轮58。版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Webbing winder
    • WEBBING WINDER
    • JP2005306354A
    • 2005-11-04
    • JP2004218487
    • 2004-07-27
    • Tokai Rika Co Ltd株式会社東海理化電機製作所
    • TAKAMATSU HITOSHINAGATA TOMONORIAIHARA KAZUHIKOYASUDA MASAKINAKAJIMA TOSHIO
    • B60R22/38B60R22/28B60R22/34B60R22/36B60R22/46
    • B60R22/4676B60R22/4633B60R2022/287B60R2022/468
    • PROBLEM TO BE SOLVED: To lessen an amount of a webbing pulled out unnecessarily after the actuation of a pretensioner. SOLUTION: In a webbing winder 10, a lock pawl 78 cannot be meshed with a lock gear 26. When the pretensioner mechanism 34 is actuated to make a clutch plate 42 rotate in a winding direction, a lock stopper 86 rotates together with the clutch plate 42 and disengages the lock stopper 86 from the lock pawl 78, which is then rotated by a compression spring 70 to be set capable of engaging. As a result, when a rotational force in a pull-out direction is applied to the lock gear 26 by a load applied by an occupant after the actuation of the pretensiner mechanism 34, the lock pawl 78 is engaged with the lock gear 26 to prevent pulling out of the webbing 20 to lessen the amount of webbing 20 pulled out unnecessarily. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:减轻在预紧器致动之后不必要地拉出的织带的量。 解决方案:在织带卷绕机10中,锁定爪78不能与锁定齿轮26啮合。当预紧器机构34被致动以使离合器片42沿卷绕方向旋转时,锁定挡块86与 离合器板42并且将锁定止动器86与锁定爪78分离,锁定爪78然后由压缩弹簧70旋转以设定能够接合。 结果,当在预致冷器机构34的致动之后,当通过乘员施加的负载将拉出方向上的旋转力施加到锁定齿轮26时,锁定爪78与锁定齿轮26接合以防止 拉出带子20以减少不必要地拉出的织带20的量。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • Fastening structure
    • 快速结构
    • JP2006138389A
    • 2006-06-01
    • JP2004328115
    • 2004-11-11
    • Tokai Rika Co Ltd株式会社東海理化電機製作所
    • TAKAMATSU HITOSHIYASUDA MASAKI
    • F16B19/10F16B5/00
    • F16B19/1081Y10T403/648
    • PROBLEM TO BE SOLVED: To obtain a fastening structure by which fastening failure and fastening forgetting can be prevented without fail and besides it becomes unnecessary to set strictly positional accuracy between each of members. SOLUTION: A cylindrical portion 34 is formed at a leg plate 20 side of a plurality of opposed walls 32 formed in a sensor holder 24. Besides, a pin 40 is formed coaxially to the cylindrical portion 34 at an opposed side to the leg plate 20 of the opposed walls 32. By building-in a sensor cover 44 in the leg plate 20 with the cylindrical portion 34 inserted into a see-through hole 28 of the cylindrical portion 34, a crisscross rib 56 formed in the sensor cover 44 corresponding to each pin 40 depresses each the pin 40 to make each the pin get into the cylindrical portion 34. As a result, the cylindrical portion 34 is enlarged in diameter and hence the sensor holder 24 is fastened to the leg plate 20. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了获得能够不发生紧固故障和紧固忘记的紧固结构,并且不需要在每个构件之间设置严格的位置精度。 解决方案:圆柱形部分34形成在形成在传感器保持器24中的多个相对的壁32的腿板20侧。此外,销40与圆柱形部分34同轴地形成在与 通过在圆柱形部分34插入到圆柱形部分34的通孔28中的腿板20中构建传感器盖44,形成在传感器盖中的十字交叉肋56 对应于每个销40的每个销40的每个销40按压每个销40以使每个销进入圆柱形部分34.结果,圆筒部分34的直径增大,因此传感器保持器24被紧固到腿板20上。 P>版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Webbing take-up device
    • WEBBING TAKE-UP DEVICE
    • JP2005289320A
    • 2005-10-20
    • JP2004111475
    • 2004-04-05
    • Tokai Rika Co Ltd株式会社東海理化電機製作所
    • TAKAMATSU HITOSHINAGATA TOMONORIAIHARA KAZUHIKOYASUDA MASAKI
    • B60R22/28B60R22/34
    • B60R22/3413B60R2022/287
    • PROBLEM TO BE SOLVED: To firmly mount a mounting member to a take-up shaft impossibly to separate. SOLUTION: In this webbing take-up device 10, by screwing screw member 28 with a torsion shaft 24, the torsion shaft 24 and a lock gear 36 are mounted to the spool 18 impossibly to separate. Thus, the torsion shaft 24 and the lock gear 36 are firmly mounted to the spool 18 impossibly to separate. The other end of the spool 18 is locked with the other end of the torsion shaft 24 to prevent the relative rotation between the torsion shaft 24 and the lock gear 36, and the spool 18, so that the release of the mounting of the torsion shaft 24 and the lock gear 36 to the spool 18 by the relative rotation can be prevented. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:将安装构件牢固地安装到不可能分离的卷取轴上。 解决方案:在这种织带卷取装置10中,通过用扭转轴24旋拧螺杆构件28,扭力轴24和锁定齿轮36不可能地分离安装到线轴18。 因此,扭转轴24和锁定齿轮36牢固地安装到线轴18,不可能分离。 卷轴18的另一端与扭转轴24的另一端锁定,以防止扭转轴24与锁定齿轮36以及线轴18之间的相对转动,使得扭转轴的安装松动 24并且可以防止锁定齿轮36通过相对旋转到卷轴18。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • Webbing take-up device
    • WEBBING TAKE-UP DEVICE
    • JP2005297702A
    • 2005-10-27
    • JP2004115210
    • 2004-04-09
    • Tokai Rika Co Ltd株式会社東海理化電機製作所
    • TAKAMATSU HITOSHINAGATA TOMONORIAIHARA KAZUHIKOYASUDA MASAKI
    • B60R22/46
    • PROBLEM TO BE SOLVED: To provide a webbing take-up device capable of realizing excellent arrangement balance of a mechanism between one side of a take-up shaft and the other side thereof even when providing an additional mechanism requiring a slight arrangement space. SOLUTION: In a webbing take-up device 10, a pretensioner mechanism 56 and a sensor mechanism 82 are arranged on one end side of a spool 18. An urging mechanism 36 is arranged on the other end side of the spool 18, and the arrangement space of the urging mechanism 36 is small. Thus, even when providing an additional mechanism requiring a slight arrangement space in addition to the pretensioner mechanism 56, the sensor mechanism 82 and the urging mechanism 36, excellent arrangement balance of the mechanism can be realized between one side and the other side of a frame 12 by arranging the additional mechanism on the other end side of the spool 18. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够实现在卷取轴的一侧与其另一侧之间的机构的良好布置平衡的织带卷取装置,即使当提供需要稍微布置空间的附加机构 。 解决方案:在卷带卷取装置10中,预卷紧机构56和传感器机构82布置在卷轴18的一端侧上。在卷轴18的另一端侧布置有推压机构36, 并且推压机构36的配置空间小。 因此,即使在除了预紧器机构56,传感器机构82和推压机构36之外,当提供除了预紧器机构56之外需要稍微的布置空间的附加机构时,可以在框架的一侧和另一侧之间实现优异的机构的布置平衡 (C)2006年,JPO&NCIPI
    • 10. 发明专利
    • Webbing take-up device
    • WEBBING TAKE-UP DEVICE
    • JP2005289275A
    • 2005-10-20
    • JP2004109969
    • 2004-04-02
    • Tokai Rika Co Ltd株式会社東海理化電機製作所
    • TAKAMATSU HITOSHINAGATA TOMONORIAIHARA KAZUHIKOYASUDA MASAKI
    • B60R22/34
    • PROBLEM TO BE SOLVED: To improve rigidity of a supporting member and to precisely position a pair of facing walls. SOLUTION: In this webbing take-up device 10, a spool 32 for taking up a webbing 34 is rotatably supported by a frame 12 between a pair of sidewalls 16 and 18, and a bar support 28 is suspended between the pair of sidewalls 16 and 18. A gripped plate 30 is gripped in the inside between the pair of sidewalls 16 and 18. Even when a large load acts on the sidewall 16 from a lock gear 40 or the like integral with the spool 32, the twist of the frame 12 by relative movement of the pair of sidewalls 16 and 18 can be sufficiently prevented, and the rigidity of the frame 12 can be improved. The distance between the pair of sidewalls 16 and 18 can be accurately defined, and the pair of sidewalls 16 and 18 can be precisely positioned. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提高支撑构件的刚性并精确地定位一对相对的壁。 解决方案:在这种织带卷绕装置10中,用于卷绕织带34的卷轴32由框架12可旋转地支撑在一对侧壁16和18之间,并且杆支撑件28悬挂在一对 侧壁16和18.夹持板30夹在一对侧壁16和18之间的内部。即使当大的负载从与卷轴32一体的锁定齿轮40等施加在侧壁16上时, 可以充分地防止框架12通过一对侧壁16和18的相对运动,并且可以提高框架12的刚性。 可以精确地限定一对侧壁16和18之间的距离,并且可以精确地定位一对侧壁16和18。 版权所有(C)2006,JPO&NCIPI