JP2005126971A - Vertical shaft type door closer - Google Patents

Vertical shaft type door closer Download PDF

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JP2005126971A
JP2005126971A JP2003362622A JP2003362622A JP2005126971A JP 2005126971 A JP2005126971 A JP 2005126971A JP 2003362622 A JP2003362622 A JP 2003362622A JP 2003362622 A JP2003362622 A JP 2003362622A JP 2005126971 A JP2005126971 A JP 2005126971A
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shaft
bevel gear
serration
serration shaft
door
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JP4056455B2 (en
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Yasushi Demukai
康司 出向井
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Nippon Door Check Manufacturing Co Ltd
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Nippon Door Check Manufacturing Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To maintain a constantly stable meshed state between both bevel gears without the bevel gear on the operating side separating from the bevel gear at the head of an adjusting rod even if mutually separating force works between the bevel gear at the head of the adjusting rod and the bevel gear on the operating side. <P>SOLUTION: In this vertical shaft type door closer, a height adjusting part of a valve pin 14 is provided at the upper end of a body 1, and the height adjusting part is provided with an operating shaft 19 disposed in the diametrical direction of a serration shaft 11 to straddle an upper end recessed part 18 of the serration shaft 11, with both ends rotatably supported to the serration shaft 11. The operating shaft 19 is mounted with the bevel gear 20 meshed with an upper end tooth part 17a of the bevel gear 17 engaged with a valve head 16, with a shaft part 17b rotatably inserted in a center hole part 11e of the serration shaft 11 so that the upper end tooth part 17a is exposed on a bottom part of the recessed part 18, and the back face of the bevel gear 20 indirectly or directly abuts on the inner surface of the recessed part 18. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は、回動式扉を自動的に閉じるための縦軸型ドアークローザーに関するものである。   The present invention relates to a vertical door closer for automatically closing a rotary door.

従来から縦軸型ドアークローザーとして、例えば特許文献1に開示されているように床側に対し不動状態で設けられ、扉を支持する支軸と、前記支軸に固着されているとともに内部のダンパ室内にダンパオイルが封入され、扉の開閉動作とともに回転するシリンダと、このシリンダに螺装されていると共に逆支弁を有し、シリンダの回転によって上下動するピストンと、このピストンの中心部側の貫通孔に貫通され、閉扉動作の際の閉扉速度を調整する調速棒と、前記ピストンの貫通孔に嵌挿されていると共に調速通路を上下に有する円筒体とを備え、閉扉動作時には開口する調速通路内でのダンパオイルの通過量を調速棒によって規制するようにしたものが知られている。   2. Description of the Related Art Conventionally, as a vertical door closer, for example, as disclosed in Patent Document 1, it is provided in a stationary state with respect to the floor side, a support shaft that supports a door, and an internal damper that is fixed to the support shaft. Damper oil is enclosed in the room, and a cylinder that rotates as the door opens and closes, a piston that is screwed in the cylinder and has a reverse support valve, and moves up and down by the rotation of the cylinder, A speed adjusting rod that passes through the through hole and adjusts the closing speed at the time of closing operation, and a cylindrical body that is fitted in the through hole of the piston and that has a speed adjusting passage up and down, is opened during the closing operation. There is known one in which the amount of damper oil passing through the speed control passage is regulated by a speed control rod.

この特許文献1に開示されている縦軸型ドアークローザーは調整棒の上端にケーシングの上端と平行に設けられた調整つまみを回してダンパオイルの通過量の調整、つまり閉扉速度の調整を行なうようになっているが、調整つまみはケーシングの上端と平行に位置して厚みの薄い板状であるがために操作がしにくいという問題がある。   In the vertical door closer disclosed in Patent Document 1, an adjustment knob provided in parallel with the upper end of the casing is turned at the upper end of the adjustment rod so as to adjust the amount of damper oil passing through, that is, the closing speed. However, the adjustment knob is located in parallel with the upper end of the casing and has a thin plate shape.

そこで、このような問題を解決するために特許文献2に開示されているような自動閉扉装置の調速機構を採用することも考えられる。
この特許文献2に開示されている自動閉扉装置の調速機構はピボット軸の中心孔内に回動可能に設けられた調整杆を備え、ドライバ等の工具により操作する回動手段を介して前記調整杆を側方から回動操作させ自動閉扉装置の閉扉速度を調節する自動閉扉装置調速機構であって、前記回動手段として、前記調整杆の頭部に形成した傘歯部と、この傘歯部に噛合する傘歯を対称位置に配設した一対の伝達ギアと枠上部に取付けた枠側座板の側方に開口する連結穴に回動自在に嵌挿されているとともに前記伝達ギアの何れか一方と係合され、前記工具による回動操作により調整杆を回動調節する操作部材とを備えたものである。
実公平7−52922号公報 実公平4−9428号公報
Therefore, in order to solve such a problem, it is conceivable to employ a speed control mechanism of an automatic door closing device as disclosed in Patent Document 2.
The speed control mechanism of the automatic door closing device disclosed in Patent Document 2 includes an adjustment rod that is rotatably provided in the center hole of the pivot shaft, and the rotation control means that is operated by a tool such as a driver. An automatic door closing mechanism for adjusting the closing speed of the automatic closing device by rotating the adjustment rod from the side, and the bevel tooth portion formed on the head of the adjustment rod as the rotating means, A pair of transmission gears arranged at symmetrical positions with the bevel teeth meshing with the bevel teeth and a connecting hole that opens to the side of the frame side seating plate attached to the upper part of the frame and is rotatably inserted into the transmission hole. An operation member that is engaged with any one of the gears and that rotates and adjusts the adjustment rod by a rotation operation by the tool is provided.
No. 7-52922 No. 4-9428

前記特許文献1に開示されている縦軸型ドアークローザーの調速機構として特許文献2に開示されている調速機構に置き換えて縦軸型ドアークローザーを構成した場合、特許文献2に開示されている自動閉扉装置の調速機構は、同特許文献2の図面にも開示されているように一対の伝達ギアの何れか一方の伝達ギアに操作部材が係合され、工具により前記何れか一方の伝達ギアを回動操作させることにより調整杆を回動調節できるようになっているが、前記何れか一方の伝達ギアは操作部材と完全結合されておらず、この一方の伝達ギアと他方のギアの両者共にピボット軸の通穴に嵌挿されているだけであり、工具により前記何れか一方の伝達ギアを回動操作させて調整杆の頭部の傘歯部を回動させるときに互いに噛み合っている一対の伝達ギアと調整杆の頭部の傘歯部との間で互いに離れようとする力が働き、一対の伝達ギアはピボット軸の通穴の中で調整杆の頭部の傘歯部から離れる方向に動き、常に安定した噛み合い状態を維持するのは困難で、工具により前記何れか一方の伝達ギアを回動操作させても空回りするという問題が発生する。また、一対の伝達ギアはピボット軸の通穴の中に収納されることからその大きさに限度があり、一対の伝達ギアは小さなものとなり、高い部品精度が求められている。   When a vertical axis door closer is configured by replacing the speed adjusting mechanism disclosed in Patent Document 2 as the speed adjusting mechanism of the vertical door closer disclosed in Patent Document 1, it is disclosed in Patent Document 2. The speed control mechanism of the automatic door closing device, as disclosed in the drawing of Patent Document 2, has an operating member engaged with one of the transmission gears of the pair of transmission gears, By rotating the transmission gear, the adjustment rod can be rotated, but either one of the transmission gears is not completely coupled to the operation member, and this one transmission gear and the other gear are not connected. Both of them are only inserted into the through hole of the pivot shaft, and are engaged with each other when rotating one of the transmission gears with a tool to rotate the umbrella tooth portion of the head of the adjusting rod. A pair of transmissions A force is exerted between the arm and the umbrella tooth of the head of the adjusting rod, and the pair of transmission gears move away from the umbrella tooth of the head of the adjusting rod in the through hole of the pivot shaft. It is difficult to move and maintain a stable meshing state at all times, and there arises a problem that even if one of the transmission gears is rotated by a tool, it rotates idly. Further, since the pair of transmission gears are housed in the through-holes of the pivot shaft, the size of the pair of transmission gears is limited. The pair of transmission gears is small, and high component accuracy is required.

本発明は、調整杆の頭部の傘歯車に噛み合う操作側の傘歯車をドライバなどの治具により回動させて調整杆の頭部の傘歯部を回動させるとき、両傘歯車間に互いに離れようとする力が働いても操作側の傘歯車は調整杆の頭部の傘歯部から離れることなく両傘歯車間を常に安定した噛み合い状態を維持させ、さらに操作側の傘歯車ならびに調整杆の頭部の傘歯部ともに比較的大きな傘歯車を用いることができ、製造ならびに組み立てを容易に行なえるようにすることを目的とする。   In the present invention, when the operation-side bevel gear that meshes with the bevel gear on the head of the adjustment rod is rotated by a jig such as a screwdriver, Even if a force to move away from each other works, the bevel gear on the operation side always maintains a stable meshing state between the bevel gears without being separated from the bevel tooth portion of the head of the adjusting rod. A comparatively large bevel gear can be used for both the bevel tooth portion of the head of the adjusting rod, and the object is to facilitate manufacture and assembly.

本発明の請求項1に記載の縦軸型ドアークローザーは、回動式扉に閉方向の付勢力を与えるばねを上下方向に向くパイプ状の本体内に設け、前記本体内の上端にセレーション軸を設けるとともに、回動式扉の開閉動作に伴いセレーション軸に案内されて回動式扉の開動時には上昇し閉動時には下降し下端のピストン蓋を境にして上下に存在するダンパオイルを動作方向に対して反対側に押し流すピストンを設け、前記ピストン蓋には中心部にバルブピンの挿通孔が形成されているとともに、この中心部からずれた位置においてダンパオイルの流路が形成されており、この流路の内部には回動式扉の閉動時に流路を閉じる逆止弁が設けられており、前記バルブピンは下端部の軸径が前記挿通孔の内径よりも極く僅かに小さくなるように形成され、この下端部から上端に向って徐々に軸径が小さくなるように形成されていて、ピストン蓋の下方に突出するように構成され、前記バルブピンの上端にはセレーション軸の中心孔部の内面の雌ねじに螺合する雄ねじが外面に形成されているバルブ頭部が結合され、本体の上端にバルブピンの高さ調整部を備え、この高さ調整部は前記セレーション軸の上端凹部を跨ぐようにセレーション軸の直径方向に配設されて両端がセレーション軸に回転可能に支持された操作軸を備え、この操作軸には前記バルブ頭部に係合され前記凹部の底部上に上端歯部が露出するようにセレーション軸の中心孔部に軸部が回動自在に挿入された傘歯車の前記上端歯部に噛合する傘歯車が装着されており、この操作軸に装着された傘歯車の背面とセレーション軸の上端凹部の内面との間にスペーサーを介在させて、スペーサーの一方の面は操作軸に装着された傘歯車の背面に当接し、スペーサーの他方の面は前記セレーション軸の上端凹部の内面に当接するように構成されていることを特徴とする。   According to a first aspect of the present invention, a vertical door closer is provided with a spring in the pipe-shaped main body facing the up and down direction, which applies a biasing force in the closing direction to the rotary door, and a serration shaft at the upper end of the main body. As the revolving door is opened and closed, it is guided by the serration shaft and rises when the revolving door is opened, descends when the revolving door is closed, and the damper oil that exists above and below the lower end of the piston lid serves as the operating direction. A piston is provided on the opposite side of the piston lid, and a valve pin insertion hole is formed at the center of the piston lid, and a damper oil flow path is formed at a position shifted from the center. A check valve that closes the flow path when the rotary door is closed is provided inside the flow path, and the valve pin has a shaft diameter at the lower end that is slightly smaller than the inner diameter of the insertion hole. Formed into The shaft diameter is gradually reduced from the lower end portion toward the upper end, and is configured to protrude below the piston lid. The upper end of the valve pin has an internal thread on the inner surface of the central hole portion of the serration shaft. A valve head having a male screw threaded on the outer surface is coupled, and a height adjustment portion of the valve pin is provided at the upper end of the main body, and the height adjustment portion straddles the upper end recess of the serration shaft. The operation shaft is disposed in the diametrical direction and is rotatably supported at both ends by the serration shaft. The operation shaft is engaged with the valve head so that the upper tooth portion is exposed on the bottom of the recess. A bevel gear that meshes with the upper tooth portion of a bevel gear that is rotatably inserted in the central hole portion of the serration shaft is mounted on the back surface of the bevel gear that is mounted on the operation shaft and the serration shaft. upon A spacer is interposed between the inner surface of the recess and one surface of the spacer contacts the back surface of the bevel gear mounted on the operation shaft, and the other surface of the spacer contacts the inner surface of the upper end recess of the serration shaft. It is comprised as follows.

本発明の請求項2に記載の縦軸型ドアークローザーは、回動式扉に閉方向の付勢力を与えるばねを上下方向に向くパイプ状の本体内に設け、前記本体内の上端にセレーション軸を設けるとともに、回動式扉の開閉動作に伴いセレーション軸に案内されて回動式扉の開動時には上昇し閉動時には下降し下端のピストン蓋を境にして上下に存在するダンパオイルを動作方向に対して反対側に押し流すピストンを設け、前記ピストン蓋には中心部にバルブピンの挿通孔が形成されているとともに、この中心部からずれた位置においてダンパオイルの流路が形成されており、この流路の内部には回動式扉の閉動時に流路を閉じる逆止弁が設けられており、前記バルブピンは下端部の軸径が前記挿通孔の内径よりも極く僅かに小さくなるように形成され、この下端部から上端に向って徐々に軸径が小さくなるように形成されていて、ピストン蓋の下方に突出するように構成され、前記バルブピンの上端にはセレーション軸の中心孔部の内面の雌ねじに螺合する雄ねじが外面に形成されているバルブ頭部が結合され、本体の上端にバルブピンの高さ調整部を備え、この高さ調整部は前記セレーション軸の上端凹部を跨ぐようにセレーション軸の直径方向に配設されて両端がセレーション軸に回転可能に支持された操作軸を備え、この操作軸には前記バルブ頭部に係合され前記凹部の底部上に上端歯部が露出するようにセレーション軸の中心孔部に軸部が回動自在に挿入された傘歯車の前記上端歯部に噛合する傘歯車が装着されており、この操作軸に装着された傘歯車の背面がセレーション軸の上端凹部の内面に直接当接するように構成されていることを特徴とする。   According to a second aspect of the present invention, the vertical door closer is provided with a spring in the pipe-shaped main body facing the up-and-down direction, which applies a biasing force in the closing direction to the rotary door, and a serration shaft at the upper end of the main body. As the revolving door is opened and closed, it is guided by the serration shaft and rises when the revolving door is opened, descends when the revolving door is closed, and the damper oil that exists above and below the lower end of the piston lid serves as the operating direction. A piston is provided on the opposite side of the piston lid, and a valve pin insertion hole is formed at the center of the piston lid, and a damper oil flow path is formed at a position shifted from the center. A check valve that closes the flow path when the rotary door is closed is provided inside the flow path, and the valve pin has a shaft diameter at the lower end that is slightly smaller than the inner diameter of the insertion hole. Formed into The shaft diameter is gradually reduced from the lower end portion toward the upper end, and is configured to protrude below the piston lid. The upper end of the valve pin has an internal thread on the inner surface of the central hole portion of the serration shaft. A valve head having a male screw threaded on the outer surface is coupled, and a height adjustment portion of the valve pin is provided at the upper end of the main body, and the height adjustment portion straddles the upper end recess of the serration shaft. The operation shaft is disposed in the diametrical direction and is rotatably supported at both ends by the serration shaft. The operation shaft is engaged with the valve head so that the upper tooth portion is exposed on the bottom of the recess. A bevel gear that meshes with the upper tooth portion of the bevel gear whose shaft portion is rotatably inserted in the center hole portion of the serration shaft is mounted, and the back surface of the bevel gear mounted on the operation shaft is the serration shaft upon Characterized in that it is configured to directly abut the inner surface of the recess.

以上のように、本発明の縦軸型ドアークローザーは、調整杆の頭部の傘歯車に噛み合う操作側の傘歯車をドライバなどの治具により回動させて調整杆の頭部の傘歯部を回動させるとき、両傘歯車間に互いに離れようとする力が働いても操作側の傘歯車は背面がセレーション軸の上端凹部の内面に間接的または直接的に当接しているので調整杆の頭部の傘歯部から離れることなく両傘歯車間を常に安定した噛み合い状態を維持させることができる。また、操作軸に装着された傘歯車はセレーション軸の上端凹部内に位置することにより、操作側の傘歯車ならびに調整杆の頭部の傘歯部ともに比較的大きな傘歯車を用いることができ、製造ならびに組み立てを容易に行なうことができる。   As described above, the vertical door closer according to the present invention has a bevel tooth portion on the head of the adjustment rod by rotating the bevel gear on the operation side meshing with the bevel gear on the head of the adjustment rod with a jig such as a screwdriver. Since the back side of the operation side bevel gear is indirectly or directly in contact with the inner surface of the upper end recess of the serration shaft, even if a force is exerted between the bevel gears to move away from each other. A stable meshing state can always be maintained between the bevel gears without leaving the bevel tooth portion of the head. Further, since the bevel gear mounted on the operation shaft is located in the upper end recess of the serration shaft, a relatively large bevel gear can be used for both the bevel gear on the operation side and the bevel tooth portion of the head of the adjustment rod. Manufacture and assembly can be performed easily.

以下、本発明の実施の形態を、図面に基づいて具体的に説明する。
先ず、図1〜図7に示す第1の実施の形態について説明すると、1は上下方向に向くパイプ状の本体で、この本体1の下端には幅方向一端側に回動中心を持つ回動式扉2の幅方向一端下端に下側からビス止めされるアーム3が取り付けられている。また、前記本体1の内部には下端から上方に主軸4が本体1に対し鉛直軸心の周りで回転可能に設けられている。主軸4の上端は前記本体1の上下長さの中間部よりやや上側に位置し、主軸4の下端は本体1の下端から突出してその突出部に角軸5が外嵌されてピン結合されている。また、前記主軸4には本体1の内部においてばね6が外嵌されており、ばね6の下端は主軸4に取り付けられたばね係止金具7に係止され、ばね6の上端は主軸4に対して回動可能で前記本体1に結合されている座金8に係止されている。
Hereinafter, embodiments of the present invention will be specifically described with reference to the drawings.
First, the first embodiment shown in FIGS. 1 to 7 will be described. Reference numeral 1 denotes a pipe-shaped main body that faces in the vertical direction, and the lower end of the main body 1 has a rotation center at one end in the width direction. An arm 3 that is screwed from below is attached to the bottom end of the width direction of the type door 2. A main shaft 4 is provided in the main body 1 so as to be rotatable about the vertical axis with respect to the main body 1 upward from the lower end. The upper end of the main shaft 4 is positioned slightly above the middle portion of the vertical length of the main body 1, the lower end of the main shaft 4 protrudes from the lower end of the main body 1, and the angular shaft 5 is externally fitted to the protruding portion and is pin-coupled Yes. A spring 6 is externally fitted to the main shaft 4 inside the main body 1, and the lower end of the spring 6 is locked to a spring locking bracket 7 attached to the main shaft 4, and the upper end of the spring 6 is connected to the main shaft 4. It is locked to a washer 8 that is rotatable and coupled to the main body 1.

また、前記本体1の内部には前記主軸4の上側においてシリンダー9が設けられている。このシリンダー9は下端が主軸4の上端に外嵌して主軸4と結合されている。シリンダー9の内面には雌ねじ10が形成されている。   A cylinder 9 is provided inside the main body 1 above the main shaft 4. The lower end of the cylinder 9 is externally fitted to the upper end of the main shaft 4 and is coupled to the main shaft 4. An internal thread 10 is formed on the inner surface of the cylinder 9.

11は前記本体1の上端内部に取り付けられたセレーション軸で、上端側より大径部11aと、中径部11bと、小径部11cを備え、大径部11aは外面が本体1の上端内面に当接し、中径部11bは外面が前記シリンダー9の上端内面に当接し、小径部11cには外面に周方向適当間隔おきに上下方向に向く縦溝11dが形成されている。   11 is a serration shaft attached inside the upper end of the main body 1, and includes a large diameter portion 11a, a medium diameter portion 11b, and a small diameter portion 11c from the upper end side. The large diameter portion 11a has an outer surface on the upper end inner surface of the main body 1. The outer surface of the middle diameter portion 11b comes into contact with the inner surface of the upper end of the cylinder 9, and the small diameter portion 11c has vertical grooves 11d that are directed in the vertical direction at appropriate intervals in the circumferential direction.

12は前記セレーション軸11の小径部11cの縦溝11dに噛み合う縦溝12aが内面に形成され、セレーション軸11に対し上下動するピストンで、このピストン12の外面には前記シリンダー9の雌ねじ10に螺合する雄ねじ12bが形成されている。さらに詳しくは、ピストン12は上端が開口して上端より下端近傍まで縦溝12aが形成されており、ピストン12の下端はピストン蓋13により閉じられている。このピストン蓋13には中心部にバルブピン14の挿通孔13aが形成されているとともに、この中心部からずれた位置において前記セレーション軸11と前記主軸4の上端との間に亘って充填されているダンパオイルの流路13bが形成されており、流路13bの内部には流路13bを下方から閉じる球状の逆止弁15が設けられている。   A piston 12a is formed on the inner surface of a longitudinal groove 12a that meshes with the longitudinal groove 11d of the small diameter portion 11c of the serration shaft 11. The piston 12 moves up and down with respect to the serration shaft 11. A male screw 12b to be screwed is formed. More specifically, the piston 12 is open at the upper end and has a vertical groove 12 a formed from the upper end to the vicinity of the lower end, and the lower end of the piston 12 is closed by the piston lid 13. The piston lid 13 is formed with an insertion hole 13a for the valve pin 14 at the center, and is filled between the serration shaft 11 and the upper end of the main shaft 4 at a position shifted from the center. A damper oil passage 13b is formed, and a spherical check valve 15 for closing the passage 13b from below is provided inside the passage 13b.

前記バルブピン14は上端に上下方向に向く溝16aが切られたバルブ頭部16の下端が結合されていて、前記セレーション軸11の中心孔部11e内に設けられ、バルブ頭部16の下端外面に形成されている雄ねじ16bがセレーション軸11の中心孔部11eの内面の雌ねじ11fに螺合している。また、バルブピン14は下端部の軸径が前記挿通孔13aの内径よりも極く僅かに小さくなるように形成され、この下端部から上端に向って徐々に軸径が小さくなるように形成されていて、ピストン蓋13の下方に突出している。   The valve pin 14 is coupled to the upper end of the valve head 16 having a groove 16 a vertically oriented at the upper end, and is provided in the center hole 11 e of the serration shaft 11. The formed male screw 16 b is screwed into the female screw 11 f on the inner surface of the center hole portion 11 e of the serration shaft 11. The valve pin 14 is formed so that the shaft diameter at the lower end is slightly smaller than the inner diameter of the insertion hole 13a, and the shaft diameter is gradually decreased from the lower end toward the upper end. And protrudes below the piston lid 13.

17は前記セレーション軸11の上端において形成された内面が円筒状の凹部18の底部上に上端歯部17aが露出するようにセレーション軸11の中心孔部11eに軸部17bが回動自在に挿入された傘歯車で、軸部17bの下端からは前記バルブ頭部16の溝16aに上側から差し込まれる差し込み片17cが突設されている。   Reference numeral 17 denotes a shaft portion 17b that is rotatably inserted into the central hole portion 11e of the serration shaft 11 so that the inner surface formed at the upper end of the serration shaft 11 is exposed on the bottom portion of the cylindrical recess 18. An inserted piece 17c is projected from the lower end of the shaft portion 17b and is inserted into the groove 16a of the valve head portion 16 from above.

19は前記セレーション軸11の上端において凹部18を跨ぐようにセレーション軸11の直径方向に配設され両端がセレーション軸11に回転可能に支持された操作軸で、この操作軸19には凹部18内において前記傘歯車17の上端歯部17aに噛合する傘歯車20が装着されている。25は傘歯車20の背面と凹部18の内面との間に介在されたスペーサーで、このスペーサー25の一方の面はフラットに形成されて傘歯車20のフラットな背面に当接し、スペーサー25の他方の面は円弧面に形成されて前記凹部18の内面に面で当接するように構成されている。つまり、傘歯車20の背面と凹部18の内面との間の隙間にスペーサー25を介在させて、傘歯車20の余分な遊びをなくすように構成されている。   Reference numeral 19 denotes an operation shaft disposed in the diameter direction of the serration shaft 11 so as to straddle the recess 18 at the upper end of the serration shaft 11, and both ends of the operation shaft 19 are rotatably supported by the serration shaft 11. The bevel gear 20 that meshes with the upper end tooth portion 17a of the bevel gear 17 is mounted. Reference numeral 25 denotes a spacer interposed between the back surface of the bevel gear 20 and the inner surface of the recess 18, and one surface of the spacer 25 is formed flat and abuts against the flat back surface of the bevel gear 20. The surface is formed as an arc surface so as to abut the inner surface of the concave portion 18 by the surface. In other words, the spacer 25 is interposed in the gap between the back surface of the bevel gear 20 and the inner surface of the recess 18 so that extra play of the bevel gear 20 is eliminated.

なお、21は前記ピストン12の上端外面に装着されたシール用のOリングで、前記シリンダー9の雌ねじ10よりも上側のシリンダー9内面に圧接する。22は前記セレーション軸11の中径部11bの下端外面に装着されたシール用のOリングで、前記シリンダー9の上端内面に圧接する。23は前記傘歯車17の軸部17bの外面に装着されたシール用のOリングで、前記セレーション軸11の中心孔部11eの上端内面に圧接する。さらに、前記本体1の下端のアーム3から下方に突出する角軸5は床面に埋設された軸受け金具24に上方から回転できないように嵌入されている。   Reference numeral 21 denotes a sealing O-ring mounted on the outer surface of the upper end of the piston 12 and press-contacts the inner surface of the cylinder 9 above the internal thread 10 of the cylinder 9. Reference numeral 22 denotes a sealing O-ring attached to the outer surface of the lower end of the middle diameter portion 11 b of the serration shaft 11, and press-contacts the inner surface of the upper end of the cylinder 9. Reference numeral 23 denotes a sealing O-ring mounted on the outer surface of the shaft portion 17 b of the bevel gear 17, and press-contacts the upper end inner surface of the center hole portion 11 e of the serration shaft 11. Further, the square shaft 5 projecting downward from the arm 3 at the lower end of the main body 1 is fitted into a bearing bracket 24 embedded in the floor so as not to rotate from above.

上記構成の縦軸型ドアークローザーは回動式扉2の下端内部にセットされ、前記アーム3が回動式扉2の下端に下側からビス止めされる。これにより、縦軸型ドアークローザーの本体1が回動式扉2と一体に回動するようになる。また、前記本体1の下端のアーム3から下方に突出する角軸5は床面に埋設された軸受け金具24に回転できないように嵌入される。これにより、角軸5とともに主軸4も床面側に固定された状態となる。前記本体1は回動式扉2と一体に回動することにより、回動式扉2が開動するときに前記ばね6は捩られて回動式扉2が閉動するときの付勢力が蓄積され、開かれた回動式扉2から手を離すとばね6の付勢力により回動式扉2は自動的に閉じられるようになっている。   The vertical door closer with the above configuration is set inside the lower end of the rotary door 2, and the arm 3 is screwed to the lower end of the rotary door 2 from below. As a result, the main body 1 of the vertical door closer is rotated integrally with the rotary door 2. Further, the square shaft 5 projecting downward from the arm 3 at the lower end of the main body 1 is fitted so as not to rotate into a bearing fitting 24 embedded in the floor surface. Thereby, the main shaft 4 as well as the angular shaft 5 is fixed to the floor surface side. The main body 1 rotates integrally with the rotary door 2, so that when the rotary door 2 is opened, the spring 6 is twisted to accumulate the urging force when the rotary door 2 is closed. When the hand is released from the opened rotary door 2, the rotary door 2 is automatically closed by the biasing force of the spring 6.

次に、本体1の上部に設けられているシリンダー9、ピストン12、セレーション軸11、バルブピン14、バルブ頭部16、傘歯車17、操作軸19、傘歯車20からなるブレーキ力調整機構について説明する。回動式扉2には前記操作軸19の位置に操作孔(図示せず)が形成されており、この操作孔よりドライバなどの治具を差し入れて治具の先端を操作軸19の一端の溝部19aに係合させ、かかる状態で治具により操作軸19を水平軸心の周りで回すことにより、操作軸19に装着した傘歯車20を介して傘歯車17が鉛直軸心の周りで回転する。傘歯車17に下向きに突設した差し込み片17cは前記バルブ頭部16と係合しており、傘歯車17の回転によりバルブ頭部16とともにバルブピン14が回転する。バルブ頭部16は下端外面の雄ねじ16bがセレーション軸11の中心孔部11eの内面の雌ねじ11fに螺合していることにより、バルブ頭部16は回転しながらバルブピン14を一緒に上下動させ、バルブピン14の高さ調整を行なう。   Next, a brake force adjusting mechanism including a cylinder 9, a piston 12, a serration shaft 11, a valve pin 14, a valve head 16, a bevel gear 17, an operation shaft 19, and a bevel gear 20 provided on the upper portion of the main body 1 will be described. . An operation hole (not shown) is formed in the rotary door 2 at the position of the operation shaft 19. A jig such as a screwdriver is inserted through the operation hole so that the tip of the jig is connected to one end of the operation shaft 19. The bevel gear 17 is rotated around the vertical axis via the bevel gear 20 mounted on the operation shaft 19 by engaging with the groove portion 19a and rotating the operation shaft 19 around the horizontal axis with a jig in this state. To do. An insertion piece 17 c protruding downward from the bevel gear 17 is engaged with the valve head 16, and the valve pin 14 is rotated together with the valve head 16 by the rotation of the bevel gear 17. The valve head 16 has a male screw 16b on the outer surface at the lower end engaged with a female screw 11f on the inner surface of the center hole portion 11e of the serration shaft 11, so that the valve head 16 moves the valve pin 14 up and down together while rotating. The height of the valve pin 14 is adjusted.

回動式扉2が回動すると前記本体1も一緒に回動し、セレーション軸11も回動するとともにこのセレーション軸11の小径部11cの縦溝11dに縦溝12aが噛み合った状態でピストン12も回動する。このとき、ピストン12は雄ねじ12bがシリンダー9の雌ねじ10に螺合しており、セレーション軸11に対して上下動する。具体的には、回動式扉2が閉じているときは図3に示すようにピストン12は下がり切った状態にあり、この状態から回動式扉2が開動するとピストン12は上昇して図2に示す状態となる。このとき、ピストン12の内部および上部に存在するダンパオイルはピストン12に押されて前記流路13bから逆止弁15を押し開きながらピストン12の下方に流れ込む。また、このときダンパオイルの一部はピストン12の下端の挿通孔13aとバルブピン14との間の隙間を通ってピストン12の下方に流れ込む。ピストン12が上昇するとピストン12の下端からバルブピン14が大きく突出する。バルブピン14の突出長さ、つまりバルブピン14の高さ調整は前述のごとく予めなされている。回動式扉2が開動すると前記ばね6が捩られて回動式扉2の閉動方向の付勢力が蓄えられた状態となり、開かれた回動式扉2から手を離すと、このばね6の付勢力により回動式扉2は自動的に閉動する。前記バルブピン14はこの回動式扉2の閉動時にブレーキを掛けるために設けられたもので、回動式扉2が閉動することによりピストン12が下動し、ピストン12の下端の挿通孔13aとバルブピン14との間の隙間が徐々に狭くなる。ピストン12の下動によりピストン12の下方に存在するダンパオイルはピストン12に押されてピストン12の内部および上部に逃げようとするが、前記流路13bは逆止弁15が押されることにより閉じられるのでダンパオイルの流路は挿通孔13aとバルブピン14との間の隙間からのみとなる。挿通孔13aとバルブピン14との間の隙間は回動式扉2が閉じるにつれて徐々に狭くなるので、回動式扉2の閉じ始めよりも閉じ終わりのほうがブレーキ力が強くなり、回動式扉2の閉じ終わりの速度を急激に落とし、回動式扉2を静かに閉じることができるようになっている。回動式扉2の閉動速度の調整は前述のように操作軸19の操作により傘歯車20および傘歯車17を介してバルブ頭部16を回転させながらバルブピン14を一緒に上下動させ、ピストン12の下端の挿通孔13aに対するバルブピン14の高さを調整することにより行なえるのである。図6および図7に回動式扉2の閉動時のブレーキ力が弱くなるようにバルブピン14の高さを調整した状態を示している。この調整部における操作軸19の取り付けは、前記セレーション軸11の上端において凹部18を跨ぐようにセレーション軸11の直径方向に操作軸19が配設され両端がセレーション軸11に回転可能に支持され、この操作軸19に前記傘歯車17の上端歯部17aに噛合する傘歯車20が装着されている。従って、ドアークローザー内部のダンパオイルにより傘歯車17に上向きの押し上げ力が働いても、この傘歯車17に噛合する操作軸19側の傘歯車20の傾きを無くし、操作性の向上を図ることができる。   When the rotary door 2 is rotated, the main body 1 is also rotated, the serration shaft 11 is also rotated, and the piston 12 is in a state where the vertical groove 12a is engaged with the vertical groove 11d of the small diameter portion 11c of the serration shaft 11. Also rotate. At this time, the piston 12 has the male screw 12 b screwed into the female screw 10 of the cylinder 9 and moves up and down with respect to the serration shaft 11. Specifically, when the rotary door 2 is closed, the piston 12 is fully lowered as shown in FIG. 3, and when the rotary door 2 is opened from this state, the piston 12 is raised. The state shown in FIG. At this time, the damper oil present inside and above the piston 12 is pushed by the piston 12 and flows into the lower side of the piston 12 while pushing the check valve 15 open from the flow path 13b. At this time, a part of the damper oil flows into the lower part of the piston 12 through the gap between the insertion hole 13 a at the lower end of the piston 12 and the valve pin 14. When the piston 12 rises, the valve pin 14 protrudes greatly from the lower end of the piston 12. The protrusion length of the valve pin 14, that is, the height of the valve pin 14 is adjusted in advance as described above. When the revolving door 2 is opened, the spring 6 is twisted to store the biasing force in the closing direction of the revolving door 2, and when the hand is released from the opened revolving door 2, the spring 6 is released. The revolving door 2 is automatically closed by the urging force 6. The valve pin 14 is provided to apply a brake when the rotary door 2 is closed. When the rotary door 2 is closed, the piston 12 moves downward, and an insertion hole at the lower end of the piston 12 is provided. The gap between 13a and the valve pin 14 is gradually narrowed. The damper oil existing below the piston 12 is pushed by the piston 12 due to the downward movement of the piston 12 and tries to escape inside and above the piston 12, but the flow path 13b is closed when the check valve 15 is pushed. Therefore, the damper oil flow path is only from the gap between the insertion hole 13 a and the valve pin 14. Since the clearance between the insertion hole 13a and the valve pin 14 is gradually narrowed as the rotary door 2 is closed, the braking force is stronger at the closing end than at the beginning of the closing of the rotary door 2, so that the rotary door. The speed at the closing end of 2 is drastically reduced so that the rotary door 2 can be closed quietly. The closing speed of the rotary door 2 is adjusted by moving the valve pin 14 up and down together while rotating the valve head 16 via the bevel gear 20 and the bevel gear 17 by operating the operation shaft 19 as described above. This can be done by adjusting the height of the valve pin 14 with respect to the insertion hole 13a at the lower end of Twelve. 6 and 7 show a state in which the height of the valve pin 14 is adjusted so that the braking force when the rotary door 2 is closed is weakened. The operation shaft 19 is attached to the adjustment portion by the operation shaft 19 being disposed in the diameter direction of the serration shaft 11 so as to straddle the recess 18 at the upper end of the serration shaft 11 and supported at both ends rotatably on the serration shaft 11. A bevel gear 20 that meshes with an upper end tooth portion 17 a of the bevel gear 17 is attached to the operation shaft 19. Therefore, even if an upward pushing force is applied to the bevel gear 17 by the damper oil inside the door closer, the bevel gear 20 on the operation shaft 19 side meshing with the bevel gear 17 is not inclined, and the operability is improved. it can.

次に、図8および図9に示す第2の実施の形態について説明する。この第2の実施の形態は前記第1の実施の形態におけるスペーサー25を省略したもので、セレーション軸11の上端の凹部18を角筒状とし、傘歯車20のフラットな背面が凹部18のフラットな内面に面で直接当接するように構成されている。   Next, a second embodiment shown in FIGS. 8 and 9 will be described. In this second embodiment, the spacer 25 in the first embodiment is omitted. The concave portion 18 at the upper end of the serration shaft 11 is formed in a rectangular tube shape, and the flat back surface of the bevel gear 20 is flat in the concave portion 18. It is comprised so that it may contact | abut directly on the inner surface.

本発明の第1の実施の形態における縦軸型ドアークローザーを回動式扉にセットした状態を示す回動式扉の一部切り欠き正面図である。It is a partially cutaway front view of a revolving door which shows the state where the vertical axis type door closer in the 1st embodiment of the present invention was set in the revolving door. 同回動式扉の開状態における縦軸型ドアークローザーの断面図である。It is sectional drawing of the vertical axis | shaft type door closer in the open state of the rotation type door. 同回動式扉の閉状態における縦軸型ドアークローザーの断面図である。It is sectional drawing of the vertical axis | shaft type door closer in the closed state of the rotation type door. 同縦軸型ドアークローザーの平面図である。It is a top view of the vertical axis | shaft type door closer. 図4のX−X断面図である。It is XX sectional drawing of FIG. 同縦軸型ドアークローザーの回動式扉閉動時のブレーキ力が弱くなるように調整した回動式扉の開状態における縦軸型ドアークローザーの断面図である。It is sectional drawing of the vertical axis | shaft type door closer in the open state of the rotary door adjusted so that the brake force at the time of the rotary door closing of the vertical axis | shaft type door closer might become weak. 同縦軸型ドアークローザーの回動式扉閉動時のブレーキ力が弱くなるように調整した回動式扉の閉状態における縦軸型ドアークローザーの断面図である。It is sectional drawing of the vertical axis | shaft type door closer in the closed state of the rotary door adjusted so that the brake force at the time of the rotary door closing of the vertical axis | shaft type door closer might become weak. 本発明の第2の実施の形態における縦軸型ドアークローザーの平面図である。It is a top view of the vertical axis | shaft type door closer in the 2nd Embodiment of this invention. 図8のY−Y断面図である。It is YY sectional drawing of FIG.

符号の説明Explanation of symbols

1 本体
2 回動式扉
3 アーム
4 主軸
5 角軸
6 ばね
7 ばね係止金具
8 座金
9 シリンダー
10 雌ねじ
11 セレーション軸
11a 大径部
11b 中径部
11c 小径部
11d 縦溝
11e 中心孔部
11f 雌ねじ
12 ピストン
12a 縦溝
12b 雄ねじ
13 ピストン蓋
13a 挿通孔
13b 流路
14 バルブピン
15 逆止弁
16 バルブ頭部
16a 溝
16b 雄ねじ
17 傘歯車
17a 上端歯部
17b 軸部
17c 差し込み片
18 凹部
19 操作軸
19a 溝部
20 傘歯車
24 軸受け金具
25 スペーサー
DESCRIPTION OF SYMBOLS 1 Main body 2 Revolving door 3 Arm 4 Main shaft 5 Square shaft 6 Spring 7 Spring latching metal 8 Washer 9 Cylinder 10 Female screw 11 Serration shaft 11a Large diameter part 11b Medium diameter part 11c Small diameter part 11d Vertical groove 11e Center hole part 11f Female thread 12 Piston 12a Vertical groove 12b Male thread 13 Piston lid 13a Insertion hole 13b Flow path 14 Valve pin 15 Check valve 16 Valve head 16a Groove 16b Male screw 17 Bevel gear 17a Upper end tooth part 17b Shaft part 17c Insertion piece 18 Recess 19 Operation shaft 19a Groove part 20 Bevel gear 24 Bearing bracket 25 Spacer

Claims (2)

回動式扉に閉方向の付勢力を与えるばねを上下方向に向くパイプ状の本体内に設け、前記本体内の上端にセレーション軸を設けるとともに、回動式扉の開閉動作に伴いセレーション軸に案内されて回動式扉の開動時には上昇し閉動時には下降し下端のピストン蓋を境にして上下に存在するダンパオイルを動作方向に対して反対側に押し流すピストンを設け、前記ピストン蓋には中心部にバルブピンの挿通孔が形成されているとともに、この中心部からずれた位置においてダンパオイルの流路が形成されており、この流路の内部には回動式扉の閉動時に流路を閉じる逆止弁が設けられており、前記バルブピンは下端部の軸径が前記挿通孔の内径よりも極く僅かに小さくなるように形成され、この下端部から上端に向って徐々に軸径が小さくなるように形成されていて、ピストン蓋の下方に突出するように構成され、前記バルブピンの上端にはセレーション軸の中心孔部の内面の雌ねじに螺合する雄ねじが外面に形成されているバルブ頭部が結合され、本体の上端にバルブピンの高さ調整部を備え、この高さ調整部は前記セレーション軸の上端凹部を跨ぐようにセレーション軸の直径方向に配設されて両端がセレーション軸に回転可能に支持された操作軸を備え、この操作軸には前記バルブ頭部に係合され前記凹部の底部上に上端歯部が露出するようにセレーション軸の中心孔部に軸部が回動自在に挿入された傘歯車の前記上端歯部に噛合する傘歯車が装着されており、この操作軸に装着された傘歯車の背面とセレーション軸の上端凹部の内面との間にスペーサーを介在させて、スペーサーの一方の面は操作軸に装着された傘歯車の背面に当接し、スペーサーの他方の面は前記セレーション軸の上端凹部の内面に当接するように構成されていることを特徴とする縦軸型ドアークローザー。 A spring that applies a biasing force in the closing direction to the revolving door is provided in the pipe-shaped main body facing up and down, and a serration shaft is provided at the upper end of the main body. The piston lid is provided with a piston that rises when the pivoting door is opened, descends when the pivoting door is closed, and pushes the damper oil that exists above and below the piston lid at the lower end to the opposite side of the operation direction. A valve pin insertion hole is formed at the center, and a damper oil passage is formed at a position deviated from the center, and the passage is formed inside the passage when the rotary door is closed. The valve pin is formed so that the shaft diameter at the lower end is slightly smaller than the inner diameter of the insertion hole, and the shaft diameter gradually increases from the lower end toward the upper end. Becomes smaller The valve head is formed so as to protrude downward from the piston lid, and has a valve head on the outer surface of which an external thread that engages with an internal thread of the inner surface of the central hole of the serration shaft is formed at the upper end of the valve pin. It is connected, and the height adjustment part of the valve pin is provided at the upper end of the main body. This height adjustment part is arranged in the diameter direction of the serration shaft so as to straddle the upper end recess of the serration shaft, and both ends can be rotated to the serration shaft The operation shaft is supported, and the operation shaft is engaged with the valve head, and the shaft portion is rotatably inserted into the central hole portion of the serration shaft so that the upper tooth portion is exposed on the bottom portion of the recess. A bevel gear that meshes with the upper end tooth portion of the bevel gear is mounted, and a spacer is interposed between the back surface of the bevel gear mounted on the operation shaft and the inner surface of the upper end recess of the serration shaft. The vertical axis is configured so that one surface of the spacer contacts the back surface of the bevel gear mounted on the operation shaft, and the other surface of the spacer contacts the inner surface of the upper end recess of the serration shaft. Type door closer. 回動式扉に閉方向の付勢力を与えるばねを上下方向に向くパイプ状の本体内に設け、前記本体内の上端にセレーション軸を設けるとともに、回動式扉の開閉動作に伴いセレーション軸に案内されて回動式扉の開動時には上昇し閉動時には下降し下端のピストン蓋を境にして上下に存在するダンパオイルを動作方向に対して反対側に押し流すピストンを設け、前記ピストン蓋には中心部にバルブピンの挿通孔が形成されているとともに、この中心部からずれた位置においてダンパオイルの流路が形成されており、この流路の内部には回動式扉の閉動時に流路を閉じる逆止弁が設けられており、前記バルブピンは下端部の軸径が前記挿通孔の内径よりも極く僅かに小さくなるように形成され、この下端部から上端に向って徐々に軸径が小さくなるように形成されていて、ピストン蓋の下方に突出するように構成され、前記バルブピンの上端にはセレーション軸の中心孔部の内面の雌ねじに螺合する雄ねじが外面に形成されているバルブ頭部が結合され、本体の上端にバルブピンの高さ調整部を備え、この高さ調整部は前記セレーション軸の上端凹部を跨ぐようにセレーション軸の直径方向に配設されて両端がセレーション軸に回転可能に支持された操作軸を備え、この操作軸には前記バルブ頭部に係合され前記凹部の底部上に上端歯部が露出するようにセレーション軸の中心孔部に軸部が回動自在に挿入された傘歯車の前記上端歯部に噛合する傘歯車が装着されており、この操作軸に装着された傘歯車の背面がセレーション軸の上端凹部の内面に直接当接するように構成されていることを特徴とする縦軸型ドアークローザー。 A spring that applies a biasing force in the closing direction to the revolving door is provided in the pipe-shaped main body facing up and down, and a serration shaft is provided at the upper end of the main body. The piston lid is provided with a piston that rises when the pivoting door is opened, descends when the pivoting door is closed, and pushes the damper oil that exists above and below the piston lid at the lower end to the opposite side of the operation direction. A valve pin insertion hole is formed at the center, and a damper oil passage is formed at a position deviated from the center, and the passage is formed inside the passage when the rotary door is closed. The valve pin is formed so that the shaft diameter at the lower end is slightly smaller than the inner diameter of the insertion hole, and the shaft diameter gradually increases from the lower end toward the upper end. Becomes smaller The valve head is formed so as to protrude downward from the piston lid, and has a valve head on the outer surface of which an external thread that engages with an internal thread of the inner surface of the central hole of the serration shaft is formed at the upper end of the valve pin. It is connected, and the height adjustment part of the valve pin is provided at the upper end of the main body. This height adjustment part is arranged in the diameter direction of the serration shaft so as to straddle the upper end recess of the serration shaft, and both ends can be rotated to the serration shaft The operation shaft is supported, and the operation shaft is engaged with the valve head, and the shaft portion is rotatably inserted into the central hole portion of the serration shaft so that the upper tooth portion is exposed on the bottom portion of the recess. The bevel gear that meshes with the upper end tooth portion of the bevel gear is mounted, and the back surface of the bevel gear mounted on the operation shaft is configured to directly contact the inner surface of the upper end recess of the serration shaft. The vertical axis type door closers, characterized.
JP2003362622A 2003-10-23 2003-10-23 Vertical door closer Expired - Lifetime JP4056455B2 (en)

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JP2003362622A JP4056455B2 (en) 2003-10-23 2003-10-23 Vertical door closer

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JP2003362622A JP4056455B2 (en) 2003-10-23 2003-10-23 Vertical door closer

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100644009B1 (en) 2004-08-20 2006-11-10 주식회사 아이원이노텍 Slim Type Hinge Apparatus Having Automatic Return Function
WO2009060851A1 (en) * 2007-11-08 2009-05-14 Nitto Kohki Co., Ltd. Door closer
CN114016834A (en) * 2021-10-29 2022-02-08 张亚范 Damping hinge

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100644009B1 (en) 2004-08-20 2006-11-10 주식회사 아이원이노텍 Slim Type Hinge Apparatus Having Automatic Return Function
WO2009060851A1 (en) * 2007-11-08 2009-05-14 Nitto Kohki Co., Ltd. Door closer
CN114016834A (en) * 2021-10-29 2022-02-08 张亚范 Damping hinge

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