JP5535580B2 - Automatic door hinge - Google Patents

Automatic door hinge Download PDF

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JP5535580B2
JP5535580B2 JP2009252032A JP2009252032A JP5535580B2 JP 5535580 B2 JP5535580 B2 JP 5535580B2 JP 2009252032 A JP2009252032 A JP 2009252032A JP 2009252032 A JP2009252032 A JP 2009252032A JP 5535580 B2 JP5535580 B2 JP 5535580B2
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cam
hinge member
shaft
bush
cam pin
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JP2011094445A (en
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力 阪田
益大 太田
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株式会社陽洋
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Description

本発明は開扉状態の扉を自動的に閉扉状態にさせたり、閉扉状態の扉を自動的に開扉させる事が出来る扉蝶番に関するものである。 The present invention relates to a door hinge that can automatically close a door in an open state or open a door in a closed state automatically.

従来、玄関ドアや会議室ドア等の開閉扉に用いる自動閉扉蝶番などにおいて、構造が複雑で、内部に油圧や空気圧のピストンシリンダーが入る為、全体的に高価で大型化してしまい、一般住宅や、マンションなどの内装用ドアとしては見栄えの問題や高価格のために使用しづらく、また油圧ピストンシリンダーを用いるものにあっては、油漏れが生じて周囲を汚す等の不具合もある。 Conventionally, in automatic door hinges used for opening and closing doors such as entrance doors and conference room doors, the structure is complicated, and hydraulic and pneumatic piston cylinders are included inside, so it is expensive and large overall, and it is expensive. In addition, it is difficult to use as an interior door in an apartment or the like because of its appearance and high price, and in the case of using a hydraulic piston cylinder, there are problems such as oil leaks and surroundings.

また、特許文献1にはカムブッシュに形成されたカム溝機構と油圧ダンパーとの併用又は、カムブッシュのみでも使用できるように提案されている。 Patent Document 1 proposes that a cam groove mechanism formed on a cam bush and a hydraulic damper may be used in combination or only a cam bush may be used.

特許第3485383号公報Japanese Patent No. 3485383

しかしながら、上記特許文献1は扉の重量によってカセット式のダンパーの付勢力の異なるもの種々用意しておかないといけないと言う不便さがあり、現実的には扉の重量以外に、換気の条件や密閉された部屋などにより状況が変わってくるので、現場での調整は必ず必要になってくる、
本発明は、扉の重量の調整を圧縮コイルばねの付勢により閉扉動作開始を調整し、ダンパー機能をカムブッシュに形成したカム溝の角度とカム溝をトレースするカムピンとによって閉扉する速度を調整するため、扉の重量が替わっても閉扉速度は変わらない様になることを提供する事と、必要に応じて同じ機能を使い簡単に自動開扉蝶番とする事が出来る蝶番機能を提供することにある。
However, the above-mentioned Patent Document 1 has the inconvenience that it is necessary to prepare various types of cassette-type dampers having different urging forces depending on the weight of the door. In reality, in addition to the weight of the door, ventilation conditions and Since the situation changes depending on the sealed room, etc., adjustments at the site will be necessary.
The present invention adjusts the weight of the door by adjusting the start of the closing operation by urging the compression coil spring, and adjusting the speed of closing the door by the cam groove angle formed in the cam bush and the cam pin tracing the cam groove. Therefore, providing the door closing speed does not change even if the door weight changes, and providing a hinge function that can be easily used as the automatic door opening hinge using the same function as necessary. It is in.

本発明は、圧縮コイルばねの付勢に対する復元力とカムブッシュに形成されたカム溝の傾斜角度とそれをトレースするカムピンの太さの関係が、それぞれの目的に対して対応できる強度やサイズに構成されている事と、特にカム溝の傾斜角度のダンパーの機能の部分に、重さに関係なく適当な閉扉速度になる様に形成されている事を備えることにより、上記課題を解決したものである。 According to the present invention, the relationship between the restoring force against the bias of the compression coil spring, the inclination angle of the cam groove formed in the cam bush, and the thickness of the cam pin that traces it is such that the strength and size can be adapted to each purpose. The above problem has been solved by providing that the damper is configured to have an appropriate door closing speed regardless of the weight, especially in the function part of the damper of the inclination angle of the cam groove. It is.

自動閉扉蝶番を使用する際大き過ぎると扉全体の見栄えが損なわれどちらかというと機能中心に取り付けられることが多かったが、本発明の商品は軸筒の直径が17ミリとスリムになっている為、扉全体の意匠感を損なわないで、デザイン重視の扉にも使用できる効果がある。 When using an automatic door hinge, if it is too large, the appearance of the entire door is impaired, and it is often attached to the center of the function, but the product of the present invention has a slim diameter of 17 mm. For this reason, there is an effect that it can be used for a door with an emphasis on design without impairing the design feeling of the entire door.

しかも、取り付けの際、一対の蝶番の上部扉側と下部枠側が分離するので、一般的な旗蝶番と同じで蝶番上下の厚みが重ならないので、扉枠とも掘り込み加工の必要が無く、扉側と枠側別々に取り付け、扉側を後で挿し込むだけなので、簡単に取り付けられ取り付けの費用や時間を節約できる効果がある。 Moreover, since the upper door side and the lower frame side of the pair of hinges are separated during installation, the thickness of the hinges does not overlap with each other, just like a general flag hinge. Since it is attached separately on the side and the frame side, and only the door side is inserted later, it is easy to attach and saves the cost and time of installation.

さらに、部品点数が少ないので安価に出来ることと、油漏れなどを心配しなくても良いという効果がある。 Furthermore, since the number of parts is small, there is an effect that it can be made inexpensive and there is no need to worry about oil leakage.

その上、必要に応じて簡単に自動開扉機能にする事ができる効果もある。 In addition, the automatic door opening function can be easily made as necessary.

自動開閉扉蝶番の各部材の名称及び分解図Names and exploded views of each part of the automatic door hinge 自動開閉扉蝶番の閉成状態を示す断面図Sectional view showing the closed state of the automatic door hinge 自動開閉扉蝶番の開成状態を示す断面図Sectional view showing the opened state of the automatic door hinge (a)、(b)、(c)、(d)は自動開閉扉蝶番に使用するカムブッシュの側面図、縦断面図、底面図及び側面展開図(a), (b), (c), (d) are a side view, a longitudinal sectional view, a bottom view, and a side development view of a cam bush used for an automatic door hinge. 図5は扉の開閉状態を示す説明図である。FIG. 5 is an explanatory view showing an open / closed state of the door.

以下、図に基づいて説明する。図1は各部材の名称及び分解図、図2は自動開閉扉蝶番の閉成状態を示す断面図、図3は自動開閉扉蝶番の開成状態を示す断面図、図4(a)、(b)、(c)、(d)は自動開閉扉蝶番に使用するカムブッシュの側面図、縦断面図、底面図及び側面展開図、図5は扉の開閉状態を示す説明図である。 Hereinafter, a description will be given based on the drawings. FIG. 1 is a name and exploded view of each member, FIG. 2 is a cross-sectional view showing a closed state of an automatic door hinge, FIG. 3 is a cross-sectional view showing an open state of an automatic door hinge, and FIGS. ), (C), (d) are a side view, a longitudinal sectional view, a bottom view and a side development view of a cam bush used for an automatic opening / closing door hinge, and FIG. 5 is an explanatory view showing an open / closed state of the door.

これらの図において、Eは扉、Fは扉Eを取り付ける扉枠を示す。1は扉Eに取り付けられる上蝶番部材を示し、羽根板15と、この羽根板15の一端に一体的に形成された軸筒19とで構成されている。そして羽根板15には扉Eにビス止めするための取付孔17が複数設けられている。 In these drawings, E indicates a door, and F indicates a door frame to which the door E is attached. Reference numeral 1 denotes an upper hinge member attached to the door E. The upper hinge member 1 includes a blade plate 15 and a shaft cylinder 19 formed integrally with one end of the blade plate 15. The blade 15 is provided with a plurality of mounting holes 17 for screwing the door E.

2は扉枠Fに取り付けられる下蝶番部材を示し、羽根板16と、この羽根板16の一端に一体的に形成された軸筒20とで構成されている。そして羽根板16には扉枠Fにビス止めするための取付孔18が複数設けられている。 Reference numeral 2 denotes a lower hinge member attached to the door frame F, which is composed of a blade plate 16 and a shaft cylinder 20 formed integrally with one end of the blade plate 16. The blade plate 16 is provided with a plurality of mounting holes 18 for screwing the door frame F.

7は軸筒20上端に固着して取り付けられるワッシャを示す。 Reference numeral 7 denotes a washer fixedly attached to the upper end of the shaft cylinder 20.

10は軸筒20に取り付けられるカムブッシュを示し、カムブッシュ10は図3の(b)で示されるように円筒の形状を有し、その筒に軸5(本願発明における軸芯に該当する)を挿入し、軸5に設けられた孔21にカムピン11が挿入された状態で取り付けられている。このカムブッシュ10は、軸筒20の内側に設けられた溝に沿って昇降可能に取り付けられる。
Reference numeral 10 denotes a cam bush attached to the shaft cylinder 20, and the cam bush 10 has a cylindrical shape as shown in FIG. 3B, and the cylinder 5 has a shaft 5 (corresponding to the shaft core in the present invention). And the cam pin 11 is inserted in the hole 21 provided in the shaft 5. The cam bush 10 is attached so as to be movable up and down along a groove provided inside the shaft cylinder 20.

また、カムブッシュ10と軸5及びカムピン11を軸筒20に挿入する際、摩擦軽減の為に、ボールベアリング9及びボールベアリング受け8を軸5側に設けられたボールベアリング受け23に装着し、軸筒20の下方向から挿入する。 Further, when the cam bush 10, the shaft 5 and the cam pin 11 are inserted into the shaft cylinder 20, the ball bearing 9 and the ball bearing receiver 8 are attached to the ball bearing receiver 23 provided on the shaft 5 side in order to reduce friction. The shaft cylinder 20 is inserted from below.

12は軸筒20に挿入される圧縮コイルばねを示し、13のワッシャ、14の圧力調整ネジと共に軸筒20に装着する。 A compression coil spring 12 is inserted into the shaft cylinder 20 and is mounted on the shaft cylinder 20 together with 13 washers and 14 pressure adjusting screws.

4は軸筒19内に取り付けられる軸受けを示す。この軸受け4は軸筒19の内側に設けられた溝に、軸受け4の突起部分を合わせて挿入し、回転を規制し、上蝶番部材1と一体化したものとして構成される。 Reference numeral 4 denotes a bearing mounted in the shaft cylinder 19. The bearing 4 is configured to be integrated with the upper hinge member 1 by inserting the protruding portion of the bearing 4 together in a groove provided inside the shaft cylinder 19 to restrict rotation.

6は上蝶番部材1と下蝶番部材2の軸5を中心とした回転運動の際に発生する、摩擦を軽減するブッシュを示す。 Reference numeral 6 denotes a bush that reduces friction generated when the upper hinge member 1 and the lower hinge member 2 are rotated around the shaft 5.

3は軸筒19及び軸筒20に装着するエンドキャップを示す。このエンドキャップ3は本自動開閉扉蝶番の取り付けが終了した際、埃等の浸入を防止し、外観上の美観を上げる為に装着する。 Reference numeral 3 denotes an end cap attached to the shaft cylinder 19 and the shaft cylinder 20. The end cap 3 is attached to prevent the entry of dust and the like and improve the appearance of the appearance when the automatic opening / closing door hinge is completely attached.

次に動作について説明する。図が示すように扉が閉成状態にある時、軸5に取り付けられているカムピン11は、カム溝22の一番下に位置する。これが開成状態に移行して行く時、軸5が上蝶番部材1の回転運動と連動して回転する。その時、カム溝22にトレースされながら、カムピンが回転し、カムブッシュ10が下方向に押し下げられる。この状態が図の開成状態である。
Next, the operation will be described. As shown in FIG. 2, when the door is in the closed state, the cam pin 11 attached to the shaft 5 is positioned at the bottom of the cam groove 22. When this shifts to the open state, the shaft 5 rotates in conjunction with the rotational movement of the upper hinge member 1. At that time, the cam pin rotates while being traced in the cam groove 22, and the cam bush 10 is pushed downward. This condition is the open state in FIG.

この時、圧縮コイルばね12が、カムブッシュ10に押し下げられた状態になり、この圧縮コイルばね12の復元力により、先述の閉成状態から開成状態への運動の逆の作用力が生まれる。これにより扉が閉成状態になる。 At this time, the compression coil spring 12 is pushed down by the cam bush 10, and the restoring force of the compression coil spring 12 generates an action force opposite to the movement from the closed state to the open state. As a result, the door is closed.

この時、カム溝22の角度の変化で、扉の開閉に次のような作用をもたらす。
閉成状態から90度開いた状態で、図4(d)の10aにカムピン11が位置する。この状態は、扉が90度開いた状態で仮止めする位置であり、扉の取り付け時や、開成状態の維持の為に必要である。次に85度から21度の状態は10bにカムピン11が位置し、直線的なカム溝22で構成され、抵抗なく、扉を閉成に向かわせる区間である。次に20度から0度の状態は、10cにカムピン11が位置し、ドアに設けられたラッチが扉枠に設けられたストライクに確実に収納される為に、カム溝22の傾斜を10bより急にして、閉成の力を強くしている。
At this time, the change of the angle of the cam groove 22 has the following effects on the opening and closing of the door.
The cam pin 11 is positioned at 10a in FIG. 4 (d) in a state opened 90 degrees from the closed state. This state is a position where the door is temporarily fixed when the door is opened 90 degrees, and is necessary when the door is attached or for maintaining the opened state. Next, the state from 85 degrees to 21 degrees is a section in which the cam pin 11 is located at 10b and is constituted by a straight cam groove 22, which allows the door to be closed without resistance. Next, in the state of 20 ° to 0 °, the cam pin 11 is located at 10c, and the latch provided on the door is securely stored in the strike provided on the door frame. Suddenly, the closing power is strengthened.

このように、カム溝22の傾斜角度や形状を変化させることにより、開閉の角度を大きくしたり、速度の調節ができる Thus, by changing the inclination angle and shape of the cam groove 22, the opening / closing angle can be increased and the speed can be adjusted.

また、圧縮コイルばね12の下部にある、圧力調整ネジ14により、扉の閉成の力を調整できる。軸筒20に装着された圧力調整ネジを締め込んでいくと、圧縮コイルばねが押し縮められ、より強い力で扉を閉成させる事ができる。 Further, the closing force of the door can be adjusted by the pressure adjusting screw 14 at the lower part of the compression coil spring 12. When the pressure adjusting screw attached to the shaft cylinder 20 is tightened, the compression coil spring is compressed and the door can be closed with a stronger force.

本自動開閉扉蝶番が開成の状態の時、圧縮コイルばね12は円筒カム10に押し下げられた状態であるが、この時、上蝶番部材1を90度回転させ、軸5に挿入して、閉成の状態にすると、自動で扉を開成させることができる。 When the automatic opening / closing door hinge is in the open state, the compression coil spring 12 is pushed down by the cylindrical cam 10. At this time, the upper hinge member 1 is rotated 90 degrees, inserted into the shaft 5, and closed. When it is in the completed state, the door can be opened automatically.

1、上蝶番部材
2、下蝶番部材
3、エンドキャップ
4、軸受け
5、軸
6、ブッシュ
7、ワッシャ
8、ボールベアリング受け
9、ボールベアリング
10、カムブッシュ
11、カムピン
12、圧縮コイルばね
13、ワッシャ
14、圧力調整ネジ
15、16、羽根板
17、18、取付孔
19、20、軸筒
21、孔
22、カム溝
23、ボールベアリング受け
1. Upper hinge member
2, Lower hinge member
3, end cap
4, bearing
5, axis
6, bush
7, washer
8, ball bearing receiver
9, ball bearing
10, cam bush
11, cam pin
12, compression coil spring
13, washer
14, pressure adjusting screw
15, 16, slats
17, 18, mounting hole
19, 20, shaft cylinder
21, hole
22, cam groove
23, ball bearing receiver

Claims (4)

各々一体的に構成された羽根板と筒状の軸筒とを有する一対の上蝶番部材と下蝶番部材とから構成される自動開閉扉蝶番であって、
前記下蝶番部材の前記軸筒内には、傾斜形状を有したカム溝が周面に開口させて形成された円筒形状のカムブッシュを、当該軸筒内に凹設された溝に沿って昇降可能に挿入し取り付けるとともに、
前記上蝶番部材の軸筒内に、軸受けを回転を規制した状態で挿入し取り付け、
前記カムブッシュの中心に設けられた円筒状の穴に下端部を係入した軸芯を配置し、当該軸芯の下端部に挿入したカムピンを前記カム溝に係合させることによって、当該軸芯と前記下蝶番部材の軸筒とを係合し、当該カムブッシュが挿入された軸筒から上方へ突出させた当該軸芯の上端部を前記軸受けに回転を規制した状態で挿入することによって、当該軸芯と前記上蝶番部材の軸筒とを係合しており、
前記下蝶番部材の軸筒内に、前記カムピンを支点として前記カムブッシュにより下降方向へ付勢される圧縮コイルばねを装着し、
前記カムブッシュにおいて前記カム溝の上端部と下端部を共に、直線状の傾斜した中央部分とは傾斜角度を変化させ且つ斜め下方を向けて形成し、
前記一対の上蝶番部材と下蝶番部材を閉成状態から開放させることにより、前記カム溝の下端部に位置していた前記カムピンが前記カムブッシュの周面に沿って回転しつつ上端部へと移動することで当該カムブッシュが相対的に下降することに伴って前記圧縮コイルばねを伸張させて開成状態となり、
前記一対の上蝶番部材と下蝶番部材を開成状態から閉成させることにより、前記カム溝の上端部に位置していた前記カムピンが下端部へと移動する際に、当該カムピンを支点として前記カムブッシュが上昇方向へ付勢されることで、当該カム溝の直線的な中央部分の傾斜を当該カムピンが移動することによるダンパー機能と前記圧縮コイルばねの復元力による戻り動作とによって、当該一対の上蝶番部材と下蝶番部材の閉成動作を抑制しつつ閉成状態となる、ことを特徴とする自動開閉扉蝶番。
An automatic opening / closing door hinge comprising a pair of upper hinge member and lower hinge member each having a blade plate and a cylindrical shaft cylinder integrally formed,
A cylindrical cam bush formed by opening a cam groove having an inclined shape in the peripheral surface in the shaft cylinder of the lower hinge member is moved up and down along the groove recessed in the shaft cylinder. Insert and install as possible,
Insert and install the bearing in a state where the rotation is restricted in the shaft of the upper hinge member,
A shaft core having a lower end portion engaged with a cylindrical hole provided in the center of the cam bush is disposed, and a cam pin inserted into the lower end portion of the shaft core is engaged with the cam groove, thereby And the shaft of the lower hinge member are engaged, and the upper end portion of the shaft core protruding upward from the shaft tube in which the cam bush is inserted is inserted into the bearing in a state where rotation is restricted, Engaging the shaft core and the shaft of the upper hinge member;
A compression coil spring that is urged downward by the cam bush with the cam pin as a fulcrum is mounted in the shaft of the lower hinge member,
In the cam bush, both the upper end portion and the lower end portion of the cam groove are formed so as to change the inclination angle and obliquely downward with the linear inclined central portion,
By releasing the pair of upper and lower hinge members from the closed state, the cam pin located at the lower end portion of the cam groove rotates to the upper end portion while rotating along the peripheral surface of the cam bush. As the cam bush moves relatively downward by moving, the compression coil spring is extended to be in an open state,
By closing the pair of upper and lower hinge members from the open state, the cam pin positioned at the upper end of the cam groove moves to the lower end to use the cam pin as a fulcrum. By urging the bush in the upward direction, the pair of the pair of the cam groove is caused by the damper function due to the cam pin moving along the inclination of the linear center portion of the cam groove and the return operation by the restoring force of the compression coil spring. An automatic opening / closing door hinge characterized by being in a closed state while suppressing the closing operation of an upper hinge member and a lower hinge member.
前記カム溝は、前記一対の上蝶番部材と下蝶番部材の開放状態の角度については前記端部の斜め下方への傾斜部分に前記カムピンを位置付けることによって約90度の開成角度で静止し仮止め機能を有し、約85度の開成角度で前記カムピンを端部から中央部の直線状の傾斜部分へと移動することで前記仮止め機能が解除され閉成方向へ移行し、約85度から約21度までの開成角度において中央部の直線状の傾斜部分に前記カムピンを位置付けることでダンパー機能を働かせ、完全閉成状態になる機能の働く約20度から0度の開成角度において前記端部の斜め下方への傾斜部分に前記カムピンを位置付けることによって完全な閉成状態となるように構成されていることを特徴とする請求項1に記載の自動開閉扉蝶番。 The cam groove, the angle of the open state of the pair of upper hinge member and a lower hinge member is stationary in opening angle of about 90 degrees by positioning the cam pin to tilt part of the diagonally downward of the upper end tentative It has a stop function, and the transition to the tacking function is released closing direction by moving the said cam pin from above end at opening angle of approximately 85 degrees to the linear slope portion of the central portion, about 85 The damper function is activated by positioning the cam pin on the linear inclined portion in the central portion at an opening angle of from about 21 degrees to about 21 degrees, and the opening angle of about 20 degrees to 0 degrees where the function of becoming a fully closed state works. automatic door hinge according to claim 1, characterized in that it is configured to be fully closed state by locating the cam pin to tilt part of the obliquely below the lower end. 前記上蝶番部材及び前記下蝶番部材の前記各軸筒の直径が15mmから20mmまでの大きさとしていることを特徴とする請求項1又は2に記載の自動開閉扉蝶番。 The automatic opening / closing door hinge according to claim 1 or 2, wherein a diameter of each shaft cylinder of the upper hinge member and the lower hinge member is 15 mm to 20 mm. 前記下蝶番部材の軸筒より突出した前記軸芯の上端部に対して、前記上蝶番部材の前記軸受けを挿入する際に、前記軸芯廻りに前記一対の羽根板が90度開いた状態で挿入することにより、前記圧縮コイルばねの復元力を開成方向に作用させて自動開扉蝶番として構成し得ることを特徴とする請求項1乃至3の何れかに記載の自動開閉扉蝶番。 When the bearing of the upper hinge member is inserted into the upper end portion of the shaft core protruding from the shaft tube of the lower hinge member, the pair of blades are opened 90 degrees around the shaft core. The automatic opening / closing door hinge according to any one of claims 1 to 3, wherein the automatic opening / closing door hinge can be configured as an automatic opening hinge by inserting the restoring force of the compression coil spring in the opening direction.
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