JP3135316U - Simple single-pull reel localization structure - Google Patents

Simple single-pull reel localization structure Download PDF

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JP3135316U
JP3135316U JP2007004976U JP2007004976U JP3135316U JP 3135316 U JP3135316 U JP 3135316U JP 2007004976 U JP2007004976 U JP 2007004976U JP 2007004976 U JP2007004976 U JP 2007004976U JP 3135316 U JP3135316 U JP 3135316U
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cable
localization
tank
concave tank
reel
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陳相雄
許敏勇
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陳 相雄
許 敏勇
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Abstract

【課題】簡易式シングルプル型リール定位構造の提供。
【解決手段】本考案の簡易式シングルプル型リール定位構造は、渦巻きばね、滑盤、及び、定位盤と、正面と反面のケーブルの収巻により、必要な長さになるまで単一方向に引くと、自動的多段式定位機能を達成する。特に、この多段式定位機能は、ケーブルを一巻きすると、一次定位が可能である。よって、多段式定位制御能力下で、引き伸ばされる長さは精確に制御できる以外に、ケーブルの復位は、再度軽くケーブルを引くだけで、定位が脱離状態になり、快速に復位する。本構造と機能は公知の長さ固定のケーブルが生じる過長、過短、或いは、ケーブルの絡みの問題を解決する。
【選択図】 図2
A simple single-pull reel localization structure is provided.
The simplified single-pull type reel positioning structure of the present invention is arranged in a single direction until a required length is obtained by convolution of a spiral spring, a sliding plate, a positioning plate, and a front and opposite cable. When pulled, automatic multi-stage localization function is achieved. In particular, this multi-stage localization function allows primary localization when a cable is wound once. Therefore, in addition to being able to accurately control the length to be stretched under the multi-stage localization control capability, the cable can be repositioned by simply pulling the cable lightly again, and the localization becomes a detached state, and is quickly repositioned. This structure and function solves the problems of overlength, overshortness, or cable entanglement that result in known fixed length cables.
[Selection] Figure 2

Description

本考案は簡易式シングルプル型リール定位構造に関するものであって、特に、公知のケーブルを有する物品(マウス等)のケーブルに関する問題を解決する簡易式シングルプル型リール定位構造に関する。   The present invention relates to a simple single-pull reel localization structure, and more particularly to a simple single-pull reel localization structure that solves a problem related to a cable of an article (such as a mouse) having a known cable.

現在、スチールボール定位構造のリール器がある。図6、及び、図7で示されるように、公知のリール(A10)は、前蓋(A1)、渦巻きばね(A2)、滑座(A3)、伝送線(A4)、定位ボール(A5)、及び、後蓋(A6)からなる。公知のリール構造(A10)の基礎理念は、滑座(A3)内の渦巻きばねにより伝送線(A4)の復位を実行するものである。また、定位構造は、スチールボール(A5)により定位する。しかし、スチールボール(A5)の定位功能に合わせるため、滑座(A3)は底部に多数のトラック(A31)を設置して、スチールボール(A5)をこれらのトラック(A31)内に提供し、回転と嵌結を実施する。 Currently, there is a reel device with a steel ball localization structure. As shown in FIGS. 6 and 7, the known reel (A10) includes a front cover (A1), a spiral spring (A2), a slide (A3), a transmission line (A4), and a stereotaxic ball (A5). And the rear lid (A6). The basic idea of the known reel structure (A10) is that the transmission line (A4) is restored by a spiral spring in the slide (A3). In addition, the localization structure is localized by a steel ball (A5). However, in order to match the localization ability of the steel balls (A5), the slide (A3) installs a number of tracks (A31) at the bottom and provides the steel balls (A5) in these tracks (A31), Perform rotation and fitting.

公知のリール構造のトラック(A31)は滑座(A3)底部に配置され、加工組み立てや精密な金型が重視されるが、特に、加工組み立てにおいて、滑座(A3)が渦巻きばね(A2)を内嵌し、底部にスチールボール(A5)を配置する作業は困難で、不良率が高くなり、生産コストに影響する。更に、滑座(A3)の配置が不当であると損壊し、渦巻きばね(A2)と底部に設置されたトラック(A31)も使用できなくなるという欠点がある。 A known reel structure track (A31) is arranged at the bottom of the slide (A3), and emphasis is placed on machining assembly and precision molds. In particular, in machining assembly, the slide (A3) is a spiral spring (A2). It is difficult to place the steel ball (A5) in the bottom and the defective rate is high, which affects the production cost. Furthermore, if the arrangement of the slide (A3) is inappropriate, the slide is damaged, and the spiral spring (A2) and the track (A31) installed at the bottom cannot be used.

上述の問題を改善するため、本考案は、簡易式シングルプル型リール定位構造を提供することを目的とする。 In order to improve the above-described problems, an object of the present invention is to provide a simple single-pull reel localization structure.

本考案の構造は、1、本案を標的物の内部に内蔵し、正面のケーブル端を電源端とし、裏面のケーブル端と標的物を導接して、標的物のケーブルが多段定位できる機能を形成する。よって、標的物は不使用時、無ケーブル状態であり、使用時は、必要に応じて一定の長さに引き出し、自動定位する。2、本案の定位構造により、滑盤とトラック槽は別の構造で、且つ、トラック槽構造は簡単な円形内凹槽、円形外凹槽、V字型凹槽、及び、直通形凹槽の四種の形態からなり、ケーブルが滑盤を一度巻けば、一次定位機構を形成することができ、多段式定位以外に、更に、精確なケーブルの引き伸ばしが可能である。3、本案の定位釈放機能により、ケーブルの復位が快速で、操作しやすい。4、本案の構造により、リール装置が更に小型化、及び、低コスト化し、手持する、或いは、小型のケーブルを必要とする標的物に適用できる。   The structure of the present invention is 1. Built in the target object, the front cable end is the power supply end, the back cable end is connected to the target object, and the target cable can be localized in multiple stages To do. Therefore, the target object is in a no-cable state when not in use, and when used, it is pulled out to a certain length as necessary and is automatically localized. 2. Due to the stereotaxic structure of the present plan, the slide plate and the track tank are separate structures, and the track tank structure is a simple circular inner concave tank, circular outer concave tank, V-shaped concave tank, and direct through concave tank. It consists of four types, and once the cable winds the sliding board, a primary localization mechanism can be formed. In addition to multi-stage localization, the cable can be further accurately stretched. 3. The localization release function of this plan makes the cable repositioning fast and easy to operate. 4. With the structure of the present proposal, the reel device can be further reduced in size and cost, and can be applied to a target that is handheld or requires a small cable.

本考案の簡易式シングルプル型リール定位構造は多段式定位機能を有し、引き伸ばされる長さが精確に制御できる以外に、ケーブルの復位は、再度軽くケーブルを引くだけで、定位が脱離状態になり、快速に復位する。   The simple single-pull type reel positioning structure of the present invention has a multi-stage positioning function. Besides being able to precisely control the stretched length, the cable can be repositioned by simply pulling the cable lightly and the position is released. And then quickly recover.

図1、及び、図2で示されるように、本案の全体構造は、上蓋(1)、定位ボール(2)、定位盤(3)、渦巻きばね(4)、滑盤(5)、ケーブル(6)、及び、下蓋(7)からなる。渦巻きばね(4)は滑盤(5)の正面の縁座(51)内に置入され、その中心端(41)と下蓋中心軸(71)が嵌接し、渦巻きばね(4)の外縁端は、フック(42)により滑盤の正面の縁座(51)が開設するノッチ(511)から挿入されると共に、縁座(51)の周壁に固定されて、渦巻きばね(4)の中心端(41)、及び、外縁端フック(42)がそれぞれ上蓋(1)と滑盤(5)両者に抵接する。よって、滑盤(5)が正方向、反対方向のどちらに回転しても、渦巻きばね(4)を回転させて、収縮、或いは、釈放の状態になる。   As shown in FIG. 1 and FIG. 2, the overall structure of the present plan consists of an upper lid (1), a positioning ball (2), a positioning plate (3), a spiral spring (4), a sliding plate (5), a cable ( 6) and the lower lid (7). The spiral spring (4) is placed in the front edge seat (51) of the sliding plate (5), and its center end (41) and the lower lid center axis (71) are fitted to each other, and the outer edge of the spiral spring (4). The end is inserted from the notch (511) opened by the hook (42) at the front edge (51) of the sliding board, and is fixed to the peripheral wall of the edge (51), and the center of the spiral spring (4) The end (41) and the outer edge end hook (42) come into contact with both the upper lid (1) and the sliding board (5), respectively. Therefore, even if the sliding board (5) rotates in either the forward direction or the opposite direction, the spiral spring (4) is rotated to be contracted or released.

図3と図4を合わせて参照すると、定位盤(3)は、底縁部と若干のほぞ(31)と、滑盤(5)頂縁に開設されたノッチ(511)が蓋接式構造を形成し、滑盤(5)の旋転に伴って旋転する。次に、定位盤(3)の縁面中央に、貫通孔(32)を有して下蓋中心軸(71)と穿合する以外に、周縁面にそれぞれ円形内凹槽(33)、円形外凹槽(34)、V字型凹槽(35)、及び、直通型凹槽(36)から構成されるトラック槽(30)を有する。円形内凹槽(33)と円形外凹槽(34)の間に、V字型凹槽(35)、及び、直通型凹槽(36)を有し、V字型凹槽(35)のラッパ口方向を起点として、定位ボール(2)が前述のトラック槽(30)で制限を受けて、定位機能を形成する。   Referring to FIG. 3 and FIG. 4 together, the stereotaxic plate (3) has a lid-type structure with a bottom edge, a slight tenon (31), and a notch (511) provided at the top edge of the sliding plate (5). And rotates with the rotation of the slide (5). Next, in addition to having a through hole (32) in the center of the edge surface of the stereotaxic disk (3) and drilling with the lower lid central axis (71), a circular inner concave tank (33) and a circular shape are respectively formed on the peripheral surface. It has a track tank (30) composed of an outer concave tank (34), a V-shaped concave tank (35), and a direct through concave tank (36). Between the circular inner concave tank (33) and the circular outer concave tank (34), there is a V-shaped concave tank (35) and a direct through concave tank (36), and the V-shaped concave tank (35) Starting from the trumpet mouth direction, the localization ball (2) is restricted by the aforementioned track tank (30) to form a localization function.

図2と図5を参照すると、滑盤(5)は正面縁座(51)と反対縁座(52)両面を有し、正面縁座(51)は、片体(512)が開設する穿孔(513)により、ケーブル(6)を反面位置に引導し、ケーブル(6)が異なる面方向の正面ケーブル(6)と裏面ケーブル(6)を形成する。且つ、これらのケーブル(6)はそれぞれ、正面縁座(51)と反対縁座(52)の外縁に巻合される。   2 and 5, the slide (5) has both a front edge seat (51) and an opposite edge seat (52), and the front edge seat (51) is a perforation opened by a single body (512). By (513), the cable (6) is guided to the opposite side position, and the front cable (6) and the back cable (6) in the surface direction in which the cable (6) is different are formed. Each of these cables (6) is wound around the outer edge of the front edge seat (51) and the opposite edge seat (52).

前述の正面ケーブル(6)と裏面ケーブル(6)は同一線体で、反対縁座外縁が設置する挟着片(521)、及び、導引片(522)により固定すると共に、穿出した裏面ケーブル(6)を固定、並びに正しく導引し、正面ケーブル(6)が引っ張り力のために裏面ケーブル(6)の範囲内に進入しないようにし、裏面ケーブル(6)は正面ケーブル(6)の範囲内に進入しないようにする。よって、正面ケーブル(6)に収まる時、裏面ケーブル(6)は回収状態となる。正面ケーブル(6)に復位する時、裏面ケーブル(6)は旋転状態になる。   The front cable (6) and the back cable (6) described above are the same wire, and are fixed by the clamping piece (521) and the guiding piece (522) installed on the outer edge of the opposite edge seat, and the back surface is pierced The cable (6) is fixed and correctly guided so that the front cable (6) does not enter the range of the rear cable (6) due to the pulling force, and the rear cable (6) is connected to the front cable (6). Do not enter the range. Therefore, when it fits in the front cable (6), the back cable (6) is in a recovered state. When returning to the front cable (6), the back cable (6) is turned.

このような構造を前提下に、ケーブル(6)の正面ケーブル端(61)は外接の導電端(伝送端)になり、裏面ケーブル(6)が延伸する導電端(62)は、標的物と内部導接され、標的物内部に内蔵されて、シングルプル型リールの功能を達成する。 Under such a structure, the front cable end (61) of the cable (6) is a circumscribed conductive end (transmission end), and the conductive end (62) from which the back cable (6) extends is the target and Internally connected and built inside the target to achieve the function of a single-pull reel.

この他、下蓋(7)は中心軸(71)により滑盤(3)中央孔と定位盤貫通孔(32)を穿枢した後、ほぞ(72)で上蓋(1)に係接する。定位ボール(2)は上蓋(1)内面の制限槽(11)に対応し、定位ボール(2)はこの制限槽(11)だけで定位盤トラック槽(30)中に対応し、制限槽(11)は上下往復式でシフト運動して定位する。よって、正面ケーブル(6)が滑盤(5)を一巻きするとき、一次定位機能を生成し、リール装置全体が多段式定位できる。   In addition, the lower lid (7) is engaged with the upper lid (1) by a tenon (72) after pivoting the central hole (32) and the center plate through hole (32) through the central shaft (71). The localization ball (2) corresponds to the restriction tank (11) on the inner surface of the upper lid (1), and the localization ball (2) corresponds to the localization board truck tank (30) by this restriction tank (11) alone. 11) is moved by a reciprocating movement in the vertical direction and is localized. Therefore, when the front cable (6) winds the sliding board (5), the primary localization function is generated, and the entire reel device can be localized in a multistage manner.

本考案の好ましい実施例による外観立体図である(収巻状態)FIG. 3 is a three-dimensional appearance view according to a preferred embodiment of the present invention (contracted state) 本考案の各素子の分解構造図である。It is an exploded structure figure of each element of the present invention. 本考案の定位盤の側視平面構造図である。It is a side view plane structure figure of the stereotaxic board of this invention. 本考案の定位盤トラック槽構造を示す図である。It is a figure which shows the stereotaxic track tank structure of this invention. 本考案の滑盤の反面構造を示す図である。It is a figure which shows the other side structure of the sliding board of this invention. 公知のスチールボール定位のリールの各素子の分解構造図である。It is an exploded view of each element of a known steel ball localization reel. 公知のスチールボール定位のリールの滑座底部の構造図である。FIG. 4 is a structural diagram of a known bottom portion of a known steel ball localization reel.

符号の説明Explanation of symbols

1 上蓋
11 制限槽
2 定位ボール
3 定位盤
31 ほぞ
32 貫通孔
33 円形内凹槽
34 円形外凹槽
35 V字型凹槽
36 直通型凹槽
30 トラック槽
4 渦巻きばね
41 中心端
42 フック
5 滑盤
51 正面縁座
511 スリット
512 片体
513 穿孔
52 反面縁座
521 挟着片
522 導引片
6 ケーブル
61 正面ケーブル端
62 導線端
7 下蓋
71 中心軸
72 ほぞ
DESCRIPTION OF SYMBOLS 1 Upper lid 11 Restriction tank 2 Position ball 3 Position board 31 Mortise 32 Through-hole 33 Circular inner concave tank 34 Circular outer concave tank 35 V-shaped concave tank 36 Direct concave tank 30 Track tank 4 Spiral spring 41 Central end 42 Hook 5 Sliding Panel 51 Front edge seat 511 Slit 512 Single body 513 Perforation 52 On the other hand Edge seat 521 Holding piece 522 Guide piece 6 Cable 61 Front cable end 62 Conductor end 7 Lower lid 71 Central axis 72 Tenon

Claims (4)

シングルプル型リール定位構造であって、全体構造は、上蓋、定位ボール、定位盤、渦巻きばね、滑盤、ケーブル、及び、下蓋からなり、その特徴は、
前記渦巻きばねは前記滑盤の正面の縁座内に置入され、その中心端と下蓋中心軸が嵌接し、外縁端はフックにより前記縁座の周壁に固定されて、前記渦巻きばね前記上蓋と前記滑盤両者に抵接し、
前記定位盤は、底縁部と若干のほぞにより、前記滑盤頂縁を蓋合し、前記滑盤の旋転に伴って旋転し、且つ、前記定位盤の縁面中央に、貫通孔を有して前記下蓋中心軸と穿合する以外に、周縁面にそれぞれ円形内凹槽、円形外凹槽、V字型凹槽、及び、直通型凹槽から構成されるトラック槽を有し、前記円形内凹槽と前記円形外凹槽の間に、前記V字型凹槽、及び、前記直通型凹槽を有し、前記V字型凹槽のラッパ口方向を起点として、前記定位ボールが前記トラック槽で制限を受け、
前記滑盤は中央孔により前記下蓋中央軸を穿合し、盤体は、正面縁座と反対縁座両面を有し、前記ケーブルは反面位置に引導され、前記ケーブルが異なる面方向の正面ケーブルと裏面ケーブルを形成し、
前記定位ボールは、前記定位盤が構成するトラック槽に対応すると共に、前記上蓋内面の制限槽に対応し、前記定位ボールを上下往復式で定位することを特徴とするシングルプル型リール定位構造。
Single pull type reel localization structure, the overall structure consists of an upper lid, a localization ball, a localization board, a spiral spring, a sliding board, a cable, and a lower lid.
The spiral spring is placed in a front edge seat of the sliding plate, its central end and a lower lid central axis are fitted, and an outer edge end is fixed to a peripheral wall of the edge seat by a hook, and the spiral spring And tangent to both of the slides,
The stereotaxic plate covers the top of the slide with a bottom edge and a slight tenon, rotates with the rotation of the slide, and has a through-hole in the center of the edge of the stereotaxic plate. In addition to piercing with the lower lid center axis, each has a track tank composed of a circular inner concave tank, a circular outer concave tank, a V-shaped concave tank, and a direct through concave tank on the peripheral surface, Between the circular inner concave tank and the circular outer concave tank, there is the V-shaped concave tank and the direct through concave tank, and the localization ball starts from the trumpet mouth direction of the V-shaped concave tank. Is restricted in the truck tank,
The sliding board pierces the central axis of the lower lid by a central hole, the board body has both a front edge seat and an opposite edge seat, the cable is guided to the opposite side, and the cable is a front face in a different plane direction. Forming the cable and the backside cable,
A single pull type reel localization structure characterized in that the localization ball corresponds to a track tank formed by the localization board and also corresponds to a restriction tank on the inner surface of the upper lid, and the localization ball is localized in a reciprocating manner.
前記定位盤面に構成される前記トラック槽は、前記ケーブルが前記滑盤を一巻きすると、一次定位機能を生成することを特徴とする請求項1に記載のシングルプル型リール定位構造。 2. The single-pull reel localization structure according to claim 1, wherein the track tank configured on the localization board surface generates a primary localization function when the cable winds the sliding board once. 3. 前記ケーブルは同一線体であると共に、正面ケーブルと裏面ケーブルに分けられることを特徴とする請求項1に記載のシングルプル型リール定位構造。 The single-pull reel localization structure according to claim 1, wherein the cables are the same wire and are divided into a front cable and a back cable. 前記ケーブルの正面ケーブル端は導電端、或いは、伝送端になり、前記裏面ケーブルは、標的物と内部導接され、標的物内部に内蔵されることを特徴とする請求項1に記載のシングルプル型リール定位構造。 The single pull according to claim 1, wherein a front cable end of the cable is a conductive end or a transmission end, and the back cable is internally connected to a target and is built in the target. Type reel localization structure.
JP2007004976U 2007-06-29 2007-06-29 Simple single-pull reel localization structure Expired - Fee Related JP3135316U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20190059180A (en) * 2017-11-22 2019-05-30 주식회사 이엠텍 Automatic winding device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20190059180A (en) * 2017-11-22 2019-05-30 주식회사 이엠텍 Automatic winding device

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