JP6570560B2 - Hinge - Google Patents

Hinge Download PDF

Info

Publication number
JP6570560B2
JP6570560B2 JP2017019156A JP2017019156A JP6570560B2 JP 6570560 B2 JP6570560 B2 JP 6570560B2 JP 2017019156 A JP2017019156 A JP 2017019156A JP 2017019156 A JP2017019156 A JP 2017019156A JP 6570560 B2 JP6570560 B2 JP 6570560B2
Authority
JP
Japan
Prior art keywords
door
side case
slide member
spring
insertion hole
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
JP2017019156A
Other languages
Japanese (ja)
Other versions
JP2018123655A (en
Inventor
西谷 均
均 西谷
Original Assignee
西谷 均
均 西谷
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 西谷 均, 均 西谷 filed Critical 西谷 均
Priority to JP2017019156A priority Critical patent/JP6570560B2/en
Publication of JP2018123655A publication Critical patent/JP2018123655A/en
Application granted granted Critical
Publication of JP6570560B2 publication Critical patent/JP6570560B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Description

本発明は枠体に扉を開閉自在に保持するための丁番に関するものである。   The present invention relates to a hinge for holding a door in an openable and closable manner on a frame.

従来から、家具等の枠体に扉を開閉自在に取り付ける際には丁番やピボットヒンジが使用されており、通常は軸芯を扉面から持ち出した位置に配置した持ち出し吊が扉の開閉の条件として最もよいとされている。しかしながら持ち出し吊の場合は必ず扉の外部に軸芯部分が突出した状態で露出してしまい、収納家具などにおいてはデザイン面でよくないとされている。また収納家具等では枠体の前面に扉が被さった納まりが多く、通常の丁番そのままでは対応しにくい。   Traditionally, hinges and pivot hinges have been used to attach doors to furniture and other frames so that they can be opened and closed. It is said that the condition is the best. However, in the case of hanging out, the shaft core part is always exposed outside the door, and it is said that the design of storage furniture is not good. In addition, in storage furniture and the like, there are many cases in which a door is covered on the front surface of the frame, and it is difficult to deal with ordinary hinges as they are.

そこで扉41の厚み内に軸心13を配置する構成が考えられるのであるが、扉正面17や側面に露出させずに軸心13を配置する場合では、図14(a)に示すように扉正面17や側面に一定の厚みを残した条件で扉内面16を彫り込み、その内部に軸心挿入孔10を有した扉側ケース1を配置し、同様に軸心挿入孔10を有した羽根部材3を扉側ケース1に差し込んで軸心13を両者に貫通させて構成することになる。そして羽根部材3を枠体側板内面18に装着して扉41を枠体42に保持するのであるが、このとき扉内面16と枠体側板前面19はわずかな隙間しか設定されていないため、図14(b)に示すように扉内面端部コーナー20が開放動作と共にすぐに枠体側板前面19に接近後当接してしまう軌跡になり、やはり被せ納まりにおいては適応させることが難しい。そこで枠体側板前面19に扉内面16が被さった状態で開閉可能なスライド丁番が最も一般的に用いられており、複数の扉41が同一面に並んだ状態での壁面収納などにおいては枠体側板前面19が扉41により隠された状態になり非常にデザイン性がよいとされている。   Therefore, a configuration in which the shaft center 13 is disposed within the thickness of the door 41 is conceivable. However, in the case where the shaft center 13 is disposed without being exposed on the door front surface 17 or the side surface, as shown in FIG. The door inner case 16 is engraved under the condition that a certain thickness is left on the front surface 17 and the side surface, the door side case 1 having the axial insertion hole 10 is disposed therein, and the blade member having the axial insertion hole 10 is also provided. 3 is inserted into the door-side case 1 and the shaft center 13 is passed through both of them. The blade member 3 is mounted on the frame side plate inner surface 18 and the door 41 is held by the frame body 42. At this time, only a slight gap is set between the door inner surface 16 and the frame side plate front surface 19. As shown in FIG. 14 (b), the inner surface end corner 20 of the door immediately follows the opening operation and comes into contact with the front surface 19 of the frame body side plate 19, and it is difficult to adapt the cover. In view of this, a slide hinge that can be opened and closed with the door inner surface 16 covering the frame body side plate front surface 19 is most commonly used. In the case of wall storage, etc., with a plurality of doors 41 arranged on the same surface. It is said that the body side plate front surface 19 is hidden by the door 41 and the design is very good.

このスライド丁番に関しては、基本構造であるリンクの機構はすでに公知とされており、その改良品としては、特開平6−34665号公報や、特開2000−17931号公報や、特開2002−138748号公報や、特開2005−194747号公報や、特開2012−12823号公報等に多数報告されている。また上記特開平6−34665号公報においてはスライド丁番全ての問題として改良の余地があるとされる項目で、収納スペース内部にスライド丁番自体が出っ張ってしまうため荷物の出し入れの際に邪魔になる点や、クローゼットの場合には衣服の出し入れの際に引っ掛ける点が改良点として挙げられている。そして特開平6−34665号公報では建付け調整のためのねじ等がさらに突出するのを回避するための改良であり、スライド丁番自体の出っ張りを低減させることには触れられていない。つまり現状においては、スライド丁番のリンク機構で固有の動作を得るには現行程度の収納スペース内部での出っ張りは避けられないと想定される。   Regarding the slide hinge, the link mechanism as the basic structure is already known, and as an improved product thereof, Japanese Patent Laid-Open No. 6-34665, Japanese Patent Laid-Open No. 2000-17931, or Japanese Patent Laid-Open No. 2002-2002. Many reports have been made in 138748, JP-A 2005-194747, JP-A 2012-12823, and the like. In addition, in the above-mentioned Japanese Patent Laid-Open No. 6-34665, there is room for improvement as a problem of all the slide hinges, and the slide hinge itself protrudes inside the storage space. In the case of a closet, the point to be caught when putting in and out clothes is mentioned as an improvement point. Japanese Patent Application Laid-Open No. 6-34665 is an improvement for avoiding further protrusion of the screws for adjusting the installation, and does not touch on reducing the protrusion of the slide hinge itself. In other words, in the present situation, it is assumed that the protrusion inside the storage space of the current level is unavoidable in order to obtain a unique operation with the slide hinge link mechanism.

また特開2000−17931号公報や特開2005−194747号公報にも記されているように、従来のスライド丁番は多数の部品を高精度に仕上げる必要があり、それらの組み立ても厳密さが要求される。そこで部品点数も少なく、もう少し容易な組み立て作業にて実現できる新たな構成が望まれる。   In addition, as described in Japanese Patent Application Laid-Open Nos. 2000-17931 and 2005-194747, the conventional slide hinge needs to finish a large number of parts with high accuracy, and the assembly thereof is also strict. Required. Therefore, there is a demand for a new configuration that can be realized by a slightly easier assembly operation with a small number of parts.

またスライド丁番はばね性を用いたリンク部分の機構にて、閉鎖時に扉が所定の角度以下になると閉鎖力が働く機構を兼ね備えており、その結果扉を完全に閉じきることが可能となる。そして通常の収納家具用の扉では上下に2個のスライド丁番を用いるのであるが、この閉鎖力は1個のスライド丁番に対しては均一の荷重であるため、実際には扉のサイズや重量により閉鎖条件が変わってしまう。つまり幅が狭く軽い扉では非常に強く閉鎖力が働いてしまい、バタンと衝突するような閉鎖条件になり、逆に幅が広く重い扉の場合は閉鎖力が足らなく完全に閉じきらないような現象が起こる。しかし扉が閉じきらない現象は重要度が高く誤作動となるため、大多数の扉でも閉じきるようにバネ力を強めに設定しておき、軽い扉においてはダンパーを用いて最終段階での衝撃を緩和させる手段が採用されており、その構成が特開2002−138748号公報や特開2012−12823号公報等に報告されている。
特開平6−34665号公報 特開2000−17931号公報 特開2002−138748号公報 特開2005−194747号公報 特開2012−12823号公報
In addition, the slide hinge is a link part mechanism that uses springiness, and it also has a mechanism that works when the door is less than a predetermined angle when it is closed. As a result, the door can be completely closed. . And in normal storage furniture doors, two slide hinges are used at the top and bottom, but since this closing force is a uniform load for one slide hinge, the size of the door is actually used. The closing condition changes depending on the weight. In other words, the door is narrow and light, and the closing force works very strongly, and the closing condition is such that it collides with the bang. On the other hand, the wide and heavy door does not have enough closing force to close completely. A phenomenon occurs. However, the phenomenon that the door does not close completely has a high degree of importance and causes a malfunction, so the spring force is set to be strong so that the majority of doors can be closed. Is employed, and the configuration is reported in Japanese Patent Application Laid-Open Nos. 2002-138748 and 2012-12823.
JP-A-6-34665 JP 2000-17931 A JP 2002-138748 A JP 2005-194747 A JP 2012-12823 A

本発明は上記問題点を解決するためになされたものであり、新しい軌跡にて被せ納まりでの扉の開閉動作を可能とし、扉のサイズや重量に対応した閉鎖最終段階での閉鎖力が得られ、さらに収納スペースの内側に配置する出っ張りを極力薄く形成可能とした丁番を提供することである。   The present invention has been made in order to solve the above-mentioned problems, and enables the door to be opened and closed with a new trajectory so that the closing force at the final closing stage corresponding to the size and weight of the door can be obtained. Furthermore, it is to provide a hinge that can be formed as thin as possible with a ledge disposed inside the storage space.

本発明では上記目的を達成するために次の技術手段を設けた。まず長孔を形成した水平面を有した扉側ケースと、軸心挿入孔と軸心挿入孔を中心とした円弧孔が形成された水平面を有したスライド部材と、連動ピン挿入孔と軸心挿入孔が形成された水平面と取り付け面を有する羽根部材を設ける。そして羽根部材とスライド部材の水平面を重ね合わせた状態で、軸心を羽根部材とスライド部材の軸心挿入孔に貫通させて挿入することで両者は回動自在に連結される。次に扉側ケース内でスライド部材が直線動作のみ可能に規制された状態で両者の水平面を重ね合わせて配置し、連動ピンを扉側ケースの長孔とスライド部材の円弧孔に同時に貫通させた状態で羽根部材の連動ピン挿入孔に差し込んで扉側ケースとスライド部材と羽根部材を組み付ける。   In the present invention, the following technical means are provided to achieve the above object. First, a door-side case having a horizontal plane in which a long hole is formed, a slide member having a horizontal plane in which an arc hole is formed around the axial insertion hole and the axial insertion hole, an interlocking pin insertion hole and an axial insertion A blade member having a horizontal surface in which holes are formed and an attachment surface is provided. Then, in a state where the horizontal surfaces of the blade member and the slide member are overlapped with each other, the shaft centers are inserted through the shaft center insertion holes of the blade member and the slide member so that both are rotatably connected. Next, in the state where the sliding member is restricted to allow only linear movement in the door side case, the horizontal surfaces of the both are placed on top of each other, and the interlocking pin is passed through the long hole of the door side case and the arc hole of the sliding member simultaneously. In the state, it inserts in the interlocking pin insertion hole of a blade member, and assembles a door side case, a slide member, and a blade member.

また上記の水平面は1個ずつの単独の構成では安定しにくいため、扉側ケースに長孔を有した水平面を平行な配置で2個設け、その間は略直方体の凹み部分として形成し、スライド部材も軸心挿入孔と軸心挿入孔を中心とした円弧孔を有した水平面を2個備えた略箱型形状にて形成し、羽根部材も連動ピン挿入孔と軸心挿入孔を有した2個の水平面を略コの字形状に連結させ、さらに垂直方向の取り付け面を設けた形状にて形成しておくと良い。そして羽根部材の略コの字形状の2個の水平面をスライド部材に挿入し、各々2個の水平面を重ね合わせた状態で軸心にて連結し、その状態の略箱型形状のスライド部材をさらに扉側ケースの凹み部分に一方向にしか移動できない状態で嵌め込んで、各々3個の水平面を重ね合わせた状態で連動ピンを長孔と円弧孔に貫通させて連動ピン挿入孔に差し込んで扉側ケースとスライド部材と羽根部材を組み付けて丁番を構成する。   In addition, since the above-described horizontal planes are not stable with a single configuration each one, two horizontal planes having long holes are provided in parallel in the door side case, and the slide member is formed as a substantially rectangular parallelepiped recess therebetween. 2 is formed in a substantially box shape having two horizontal planes having an axial hole and an arc hole centered on the axial hole, and the blade member also has an interlocking pin insertion hole and an axial insertion hole. It is preferable that the horizontal planes are connected to each other in a substantially U-shape and further provided with a vertical mounting surface. Then, two substantially U-shaped horizontal surfaces of the blade member are inserted into the slide member, and the two horizontal surfaces are overlapped with each other and connected with an axis, and the substantially box-shaped slide member in this state is connected. Furthermore, it is fitted in the recessed part of the door side case so that it can move only in one direction, and with the three horizontal surfaces superimposed, the interlocking pin is inserted through the long hole and the circular arc hole and inserted into the interlocking pin insertion hole. A hinge is constructed by assembling the door side case, the slide member, and the blade member.

上記丁番を扉と枠体に装着する手段としては、扉側ケースに取り付け面を形成し、水平面の長孔が扉の厚み内に配置されるように扉の吊元側を彫り込んで扉側ケースを装着し、羽根部材の略コの字形状の部分から連続させて垂直方向の取り付け面を設け、枠体側板内面の手前側位置に羽根部材の取り付け面を装着することで扉が枠体に保持される。このとき閉鎖状態で扉内面が枠体側板前部に一定の隙間を有して近接して配置しておく。   As a means to attach the hinge to the door and the frame body, the door side case is formed with a mounting surface, and the door side is engraved on the door side so that the long holes in the horizontal plane are arranged within the thickness of the door. Install the case, provide a vertical mounting surface continuously from the substantially U-shaped portion of the blade member, and mount the blade member mounting surface on the near side of the inner surface of the frame body side plate so that the door is framed Retained. At this time, the door inner surface is arranged close to the front part of the frame side plate with a certain gap in the closed state.

そして閉鎖状態から扉を開放すると、連動ピンがスライド部材の円弧孔と扉側ケースの長孔に同時に挿入されているため、所定角度範囲まではスライド部材に対して扉側ケースを手前方向に徐々に押し出しながら開放する動作になり、扉は扉側ケースに固定されているため、扉内面端部コーナーが枠体側板前面に当接することなく回転する軌跡が得られる。そして所定角度範囲以降はスライド部材に対して扉側ケースが奥方向に戻る動作になる。また扉の最大開放角度はスライド部材の円弧孔の軸心挿入孔に対する開き角度にて設定できるため、最大開放時に扉正面端部コーナーが枠体側板前面に当接する直前の位置になるように、90度以上の任意の角度にてスライド部材の円弧孔の開き角度を設定しておくと良い。   When the door is opened from the closed state, the interlocking pin is inserted into the arc hole of the slide member and the long hole of the door side case at the same time, so that the door side case is gradually moved forward with respect to the slide member up to a predetermined angle range. Since the door is fixed to the door side case, the door inner end corner is rotated without coming into contact with the frame body side plate front surface. After the predetermined angle range, the door side case returns to the back direction with respect to the slide member. In addition, since the maximum opening angle of the door can be set by the opening angle with respect to the axial insertion hole of the arc hole of the slide member, the door front end corner is at the position just before contacting the front surface of the frame side plate at the maximum opening. The opening angle of the arc hole of the slide member may be set at an arbitrary angle of 90 degrees or more.

また従来のスライド丁番自体が有している閉鎖力も必要条件となるため、本発明の丁番においても同様の機能を有していなければならないと想定される。そこで扉側ケースの略直方体形状の凹み部分の横側部分に矩形スペースを拡張しておき、スライド部材に第一傾斜面を設け、第二傾斜面を有したばね受けをスライド部材の第一傾斜面とばね受けの第二傾斜面が面対するように配置し、矩形スペース端部と受け部材間にばね部材を挿入して、常に両傾斜面がより多く重なり合う方向に付勢するように構成する。すると閉鎖状態から扉を開放する際には、所定角度範囲まではスライド部材に対して扉側ケースを手前方向に徐々に押し出しながら開放する動作になるため、スライド部材の第一傾斜面がばね受けの第二傾斜面を押し込むと共にばね部材を圧縮させる動作になり、所定角度範囲未満での開放角度でそのまま扉を放置すると、ばね部材の付勢力により扉側ケースを奥方向に戻そうとする力が発生し、その結果扉が閉鎖する動作が得られる   Moreover, since the closing force which the conventional slide hinge itself has is a necessary condition, the hinge of the present invention is assumed to have the same function. Therefore, a rectangular space is expanded in the side portion of the substantially rectangular parallelepiped recess portion of the door side case, the first inclined surface is provided on the slide member, and the spring receiver having the second inclined surface is attached to the first inclined surface of the slide member. It arrange | positions so that a surface and the 2nd inclined surface of a spring receiver may face each other, A spring member is inserted between rectangular space edge parts and a receiving member, and it is comprised so that it may always urge in the direction where both inclined surfaces may overlap more. . Then, when opening the door from the closed state, the first inclined surface of the slide member receives the spring support because the door side case is opened while gradually pushing the door side case toward the slide member up to a predetermined angle range. When the door is left as it is at an opening angle that is less than the predetermined angle range, the force to try to return the door side case to the back direction by the biasing force of the spring member Occurs, resulting in the action of closing the door

次に扉を所定角度範囲を超えてさらに開放すると、連動ピンがスライド部材の円弧孔と扉側ケースの長孔に同時に挿入されているため、スライド部材に対して手前方向に持ち出されている扉側ケースが奥方向に戻る動作になり、ばね部材の付勢力により扉側ケースを奥方向に戻そうとする力と同方向になり、その結果所定角度範囲を超えた位置で扉を放置すると、そのまま最大開放角度まで扉を開かせる動作が得られる。その結果扉を開ける際には所定角度範囲を真ん中としてそれより開き角度が小さいときにはそのまま扉は閉鎖し、開き角度が大きいときにはそのまま最後まで扉は開放し、閉鎖時にはその逆の動作になり、所定角度範囲を挟んで開放側と閉鎖側に振り分けて付勢する動作が得られる。また扉側ケースの長孔の形状や角度を変えることにより所定角度範囲を任意に設定することも可能である。   Next, when the door is further opened beyond the predetermined angle range, the interlocking pin is inserted into the arc hole of the slide member and the long hole of the door side case at the same time. The side case returns to the back direction, and in the same direction as the force to return the door side case to the back direction by the biasing force of the spring member, as a result, if the door is left at a position exceeding the predetermined angle range, The operation to open the door to the maximum opening angle is obtained. As a result, when opening the door, the door is closed when the opening angle is smaller than the predetermined angle range in the middle, and when the opening angle is large, the door is opened until the end. An operation of allocating and energizing the opening side and the closing side across the angle range is obtained. It is also possible to arbitrarily set the predetermined angle range by changing the shape and angle of the long hole of the door side case.

また上記閉鎖力を軽い扉の時は小さく、重い扉の時は大きくできるとより効果的である。そこで扉側ケースの矩形スペース内でのばね部材を挟んだばね受けとは逆側にばね力調整部材を設け、扉を開放した状態で扉内面側からばね力調整部材を移動させることで、ばね部材の付勢力を強弱できる操作手段を有しているとさらに良い。その手段としては、傾斜面を有した2個の調整部材を互いの傾斜面が面対した状態で扉側ケースの矩形スペース内でのばね部材を挟んだばね受けとは逆側に配置し、片方の調整部材には雌ねじ部分を設けておき、ばね力調整ねじを雌ねじ部に螺合させた状態でねじの頭部が扉の内面に向いた状態で扉側ケースに対して空転するように配置し、ばね力調整ねじを回すことで他方のばね力調整部材を横方向に移動させてばね部材を押し込むことで付勢力が調整可能となる構成が良い。またさらに別の手段としては、ドライバーと適合する十字ビットと一体化された操作部分を有する偏心カムを設け、操作部分が扉内面に配置された状態で扉側ケースの矩形スペース内に配置し、操作部分を回す動作と共に偏心カムの側面がばね部材を押し込んで付勢力を調整可能とする構成であっても良い。   In addition, it is more effective if the closing force can be reduced when the door is light and can be increased when the door is heavy. Therefore, a spring force adjusting member is provided on the opposite side of the spring receiver sandwiching the spring member in the rectangular space of the door side case, and the spring force adjusting member is moved from the door inner surface side with the door opened, thereby It is even better to have operating means that can increase or decrease the biasing force of the member. As its means, two adjusting members having inclined surfaces are arranged on the opposite side to the spring receiver sandwiching the spring member in the rectangular space of the door side case with the inclined surfaces facing each other. One adjustment member is provided with a female thread part so that the spring force adjustment screw is screwed into the female thread part so that the head of the screw faces the inner surface of the door and rotates idly with respect to the door side case. It is preferable that the urging force can be adjusted by arranging and turning the spring force adjusting screw to move the other spring force adjusting member in the lateral direction and pushing the spring member. Furthermore, as another means, an eccentric cam having an operation part integrated with a cross bit compatible with a driver is provided, and the operation part is arranged in the rectangular space of the door side case with the operation part arranged on the inner surface of the door, A configuration in which the biasing force can be adjusted by pushing the spring member with the side surface of the eccentric cam together with the operation of rotating the operation portion.

また家具等の収納スペースをより広く確保することも重要であり、丁番等を枠体側板内面に装着する際に出っ張りは極力小さいことが望まれる。そこで扉側ケースを扉の厚み内に彫り込んだ状態で配置し、その内部で扉の開閉動作を実施し、羽根部材の取り付け面を垂直方向の板形状にて設定しておくことにより、収納スペース内に突出する寸法を低減させることが可能となる。   It is also important to secure a wider storage space for furniture and the like, and it is desirable that the protrusion is as small as possible when a hinge or the like is attached to the inner surface of the frame side plate. Therefore, by placing the door-side case engraved within the thickness of the door, opening and closing the door inside it, and setting the mounting surface of the blade member in a vertical plate shape, storage space It is possible to reduce the dimension protruding inward.

また施工後に枠体に対して扉の位置を前後左右上下に建付け調整する手段も必要である。そこで、さらに追加して枠側ベース部材を設け、枠側ベース部材に前後調整用の偏心カムを配置して羽根部材の取り付け面に係合させ、左右調整ねじを設けて枠側ベースに対して羽根部材の取り付け面を、支点を中心に角度を変化させる略シーソー動作を採用すると、収納スペース内の出っ張りは非常に薄い形状で、左右と前後方向の調整を実施できる構成にすることが可能になる。また上下調整においては、扉側ケースの取り付け面に上下方向の長孔を設け、取り付けねじを緩めた後に押し引きして上下方向の位置を調整後に再固定する構成が簡単である。   In addition, a means for installing and adjusting the position of the door in the front, rear, left, right, up and down with respect to the frame after construction is also necessary. Therefore, an additional frame side base member is provided, an eccentric cam for front and rear adjustment is arranged on the frame side base member and engaged with the mounting surface of the blade member, and a left and right adjustment screw is provided to the frame side base. By adopting a substantially seesaw operation that changes the angle of the blade member mounting surface around the fulcrum, the protrusion in the storage space has a very thin shape and can be adjusted in the left and right and front and rear directions. Become. Further, in the vertical adjustment, a configuration is simple in which a long hole in the vertical direction is provided on the mounting surface of the door-side case, and the vertical position is re-fixed after pushing and pulling after loosening the mounting screw.

長孔を有する扉側ケースと、軸心挿入孔と円弧孔を有するスライド部材と、連動ピン挿入孔と軸心挿入孔を有する羽根部材を軸心と連動ピンにて組み付けることで、開放時に扉内面側端部コーナーが枠体側板前面に当接することなく回転する軌跡が得られ、被せ納まりでの扉の開閉動作が可能になる。また開閉機構部分自体は扉側ケースを扉の厚み内に彫り込んだ状態での、埋め込まれた範囲で実施可能になるため、家具等の収納スペース内を有効に利用することができる。   By opening the door-side case with a long hole, a slide member having an axial insertion hole and an arc hole, and a blade member having an interlocking pin insertion hole and an axial insertion hole with the axial center and the interlocking pin, the door is opened when opened. A trajectory is obtained in which the inner surface side end corner rotates without contacting the front surface of the frame body side plate, and the door can be opened and closed in the cover. Moreover, since the opening / closing mechanism part itself can be implemented in the embedded range in a state where the door-side case is engraved in the thickness of the door, the inside of the storage space for furniture or the like can be used effectively.

開閉動作の際のスライド部材に対する扉側ケースの一方向のみへの移動動作を利用して、扉側ケースに矩形スペースを拡張しておき、その中に第一傾斜面を設けたスライド部材と、第二傾斜面を備えたばね受けとばね部材を挿入し、常に両傾斜面がより多く重なり合う方向にばね部材を付勢させることで、閉鎖状態から扉を開放する際には、スライド部材の第一傾斜面がばね受けの第二傾斜面を押し込むと共にばね部材を圧縮させる動作になり、所定角度範囲未満での開放角度でそのまま扉を放置すると、ばね部材の付勢力により扉側ケースを奥方向に戻そうとする力により扉が閉鎖する動作を得ることができる。   Using the movement operation of the door side case in only one direction with respect to the slide member during the opening and closing operation, a rectangular space is expanded in the door side case, and a slide member provided with a first inclined surface therein, When the spring member and the spring member having the second inclined surface are inserted and the spring member is always biased in a direction in which both inclined surfaces more overlap, when the door is opened from the closed state, the first slide member The inclined surface pushes the second inclined surface of the spring receiver and compresses the spring member.If the door is left as it is at an opening angle less than the predetermined angle range, the door side case is moved in the back direction by the biasing force of the spring member. The operation of closing the door by the force of returning can be obtained.

扉を所定角度範囲を超えてさらに開放すると、スライド部材に対して扉側ケースが奥方向に戻る動作になり、ばね部材の付勢力により扉側ケースを奥方向に戻そうとする力と同方向になり、その結果所定角度範囲を超えた位置で扉を放置すると、そのまま最大開放角度まで扉を開かせる動作が得られ、扉が勝手に閉鎖してくることはなく、最大開放位置にて停止保持させることができる。 When the door is further opened beyond the predetermined angle range, the door side case returns to the back direction with respect to the slide member, and the same direction as the force to return the door side case to the back direction by the biasing force of the spring member As a result, if the door is left at a position that exceeds the specified angle range, the door can be opened to the maximum opening angle as it is, and the door will not be closed without permission. Can be retained.

扉側ケースの矩形スペース内で、ばね部材を挟んだばね受けとは逆側にばね力調整部材を設け、扉を開放した状態で扉内面側からばね力調整部材を移動調整させ、ばね部材の付勢力を強弱できる操作手段を設けると、扉のサイズや重量に任意に対応した閉鎖最終段階での最適な閉鎖力が得られ、扉の急激な閉鎖や、閉じきらないような誤作動を阻止することが可能になる。その結果従来のスライド丁番で用いられている衝撃吸収のためのダンパーは必要なくなると想定される。 Within the rectangular space of the door side case, a spring force adjusting member is provided on the opposite side of the spring receiver with the spring member interposed therebetween, and the spring force adjusting member is moved and adjusted from the inner surface side of the door with the door open, Providing operation means that can increase or decrease the urging force provides the optimal closing force at the final stage of closing, which can arbitrarily correspond to the size and weight of the door, preventing sudden closing of the door and malfunctions that cannot be fully closed. It becomes possible to do. As a result, it is assumed that the shock absorbing damper used in the conventional slide hinge is not necessary.

さらに建付け調整機構を具備させる場合も、追加して枠側ベース部材を設け、枠側ベース部材に前後調整用の偏心カムを配置して羽根部材の取り付け面に係合させ、左右調整ねじを設けて枠側ベースに対して羽根部材の取り付け面を、支点を中心に角度を変化させる略シーソー動作により実施すると、収納スペース内側には薄平らな調整機構部分が出っ張るのみで左右と前後方向の調整が可能になる。また扉側ケースの取り付け面に上下方向の長孔を設け、取り付けねじを緩めた後に押し引きして上下方向の位置を調整後に再固定する構成の、上下方向への調整機構を有することも簡単である。その結果収納スペース内に突出する寸法を大幅に低減させることが可能となる。 In addition, when the installation adjustment mechanism is provided, a frame-side base member is additionally provided, an eccentric cam for front-rear adjustment is arranged on the frame-side base member and engaged with the attachment surface of the blade member, and a left-right adjustment screw is installed. When the mounting surface of the blade member is installed on the frame side base by a substantially seesaw operation that changes the angle around the fulcrum, a thin flat adjustment mechanism part protrudes inside the storage space, and it moves in the left and right and front and rear directions. Adjustment is possible. It is also easy to have a vertical adjustment mechanism that has a long hole in the vertical direction on the mounting surface of the door-side case, and then pushes and pulls it after loosening the mounting screw and re-fixes it after adjusting the vertical position. It is. As a result, the dimension protruding into the storage space can be greatly reduced.

以下図面に基づいて本発明の実施の形態を説明する。図1は本発明の丁番の、扉の開閉機構部分のみを有した基本形態の斜視図であり、図2は基本形態での扉側ケースの上面図を、図3はスライド部材の上面図を、図4は羽根部材の上面図を示している。まず扉側ケース1は図1と図2に示すように長孔4を備えた2個の平行な水平面5を底面7と両側面で連結した形状の略直方体の凹み部分6を有しており、その上下に取り付け面8を設けておく。また長孔4は図2に示すように一定の角度で傾きを有している。そしてスライド部材2も図1と図3に示すように、軸心挿入孔10と軸心挿入孔10を中心とした円弧孔11を有した水平面5を2個備えた略箱型形状にて形成されている。この時扉側ケース1の凹み部分6にスライド部材2を挿入した際に、がたつきなく一方向にしか移動できないように両者の寸法を設定しておくと良い。   Embodiments of the present invention will be described below with reference to the drawings. FIG. 1 is a perspective view of a basic form of the hinge of the present invention having only a door opening / closing mechanism portion, FIG. 2 is a top view of a door-side case in the basic form, and FIG. 3 is a top view of a slide member. FIG. 4 shows a top view of the blade member. First, as shown in FIGS. 1 and 2, the door-side case 1 has a substantially rectangular parallelepiped recessed portion 6 having a shape in which two parallel horizontal surfaces 5 each having a long hole 4 are connected to a bottom surface 7 and both side surfaces. The attachment surface 8 is provided above and below. Further, the long hole 4 has an inclination at a certain angle as shown in FIG. As shown in FIGS. 1 and 3, the slide member 2 is also formed in a substantially box shape having two horizontal planes 5 having an axial insertion hole 10 and an arc hole 11 centered on the axial insertion hole 10. Has been. At this time, when the slide member 2 is inserted into the recessed portion 6 of the door-side case 1, it is preferable to set both dimensions so that they can move only in one direction without rattling.

また羽根部材3も図1や図4に示すように、連動ピン挿入孔12と軸心挿入孔10を有した水平面2個を略コの字形状に連結させた部分と垂直方向の取り付け面8からなり、羽根部材3の略コの字形状の部分をスライド部材2に挿入し、上下各々2個ずつの水平面5を重ね合わせた状態で軸心13にて両者を回転自在に連結する。そして連結された状態の略箱型形状のスライド部材2を扉側ケース1の略直方体の凹み部分6にさらに嵌め込んで、上下各々3個の水平面5を重ね合わせた状態で、上下から2本の連動ピン14を扉側ケース1の長孔4とスライド部材2の円弧孔10に貫通させた状態で羽根部材3の連動ピン挿入孔12に差し込んで扉側ケース1とスライド部材2と羽根部材3を組み付けて丁番を構成する。この時連動ピン14は圧入に適したスプリングのロールピン等でもよいが、図1に示すように連動ピン14の片端部を雄ねじ部として形成しておき、羽根部材3の連動ピン挿入孔12を雌ねじ部として形成しておくと連動ピン14の固定が確実でかつ容易である。   As shown in FIGS. 1 and 4, the blade member 3 also has a mounting surface 8 in a direction perpendicular to a portion where two horizontal surfaces each having an interlocking pin insertion hole 12 and an axial center insertion hole 10 are connected in a substantially U shape. The substantially U-shaped portion of the blade member 3 is inserted into the slide member 2, and the two are horizontally connected to each other at the axis 13 in a state where two horizontal surfaces 5 are superposed on each other. Then, the substantially box-shaped slide member 2 in the connected state is further fitted into the recessed portion 6 of the substantially rectangular parallelepiped of the door-side case 1, and two horizontal surfaces 5 are overlapped on the top and bottom, and two from the top and bottom. The interlocking pin 14 is inserted into the interlocking pin insertion hole 12 of the blade member 3 in a state where the interlocking pin 14 is passed through the long hole 4 of the door side case 1 and the arc hole 10 of the slide member 2, and the door side case 1, the slide member 2 and the blade member. 3 is assembled to form a hinge. At this time, the interlocking pin 14 may be a roll pin or the like of a spring suitable for press-fitting. However, as shown in FIG. 1, one end of the interlocking pin 14 is formed as a male screw part, and the interlocking pin insertion hole 12 of the blade member 3 is formed as a female screw. If it forms as a part, fixation of interlocking pin 14 will be reliable and easy.

図5は上記丁番を箱型の収納部材に取り付けた状態の上面図であり、まず扉41の吊元側を扉側ケース1の凹み部分6と取り付け面8が両方埋め込まれるように2段に彫り込み、扉側ケース1の取り付け面8を木ねじ等の取り付けねじ15で扉内面16に固定する。そして羽根部材3の垂直方向の取り付け面8を枠体側板内面18の手前位置に同様に木ねじ等の取り付けねじ15で固定して扉41を枠体42に装着する。このとき枠体側板前面19に扉内面16が被さった状態で、小さい寸法の隙間を有して近接して配置されるのが一般的な納まりになる。またこの状態からの扉41の開閉動作の説明の際に、位置関係や方向が分かりやすいように、図5に示すように扉41の各箇所の表記としては、外観として見える側を扉正面17とし、その逆の裏側を扉内面16と表記し、扉41の角位置は扉内面端部コーナー20と扉正面端部コーナー21として表記し、方向としては収納部材全体での扉正面17側を手前方向、収納部材の逆側を奥方向として表記する。また枠体42の各箇所の表記に関しても、図5に示すように枠体側板内面18と枠体側板前面19として表記する。   FIG. 5 is a top view of a state in which the hinge is attached to a box-shaped storage member. First, the door 41 is hung on the two sides so that both the recessed portion 6 and the attachment surface 8 of the door-side case 1 are embedded. The mounting surface 8 of the door-side case 1 is fixed to the door inner surface 16 with mounting screws 15 such as wood screws. The vertical attachment surface 8 of the blade member 3 is fixed to the front side of the inner surface 18 of the frame body side plate 18 with the attachment screws 15 such as wood screws, and the door 41 is attached to the frame body 42. At this time, in a state where the door inner surface 16 is covered with the frame body side plate front surface 19, it is generally accommodated so as to be closely arranged with a small gap. Further, in explaining the opening / closing operation of the door 41 from this state, as shown in FIG. 5, as shown in FIG. The opposite reverse side is expressed as the door inner surface 16, the corner position of the door 41 is expressed as the door inner surface end corner 20 and the door front end corner 21, and the direction is the door front 17 side of the entire storage member. The front direction and the opposite side of the storage member are described as the back direction. Further, the notation of each part of the frame body 42 is also expressed as a frame body side plate inner surface 18 and a frame body side plate front surface 19 as shown in FIG.

図6は閉鎖状態から扉41を10度ごとに開放した位置を連続させて表記した軌跡図であり、扉側ケース1に対するスライド部材2の位置関係をわかりやすくするために、扉側ケース1の底面7の位置とスライド部材2の手前辺9の位置を主に明記している。まず図6(a)は扉41が完全に閉じた状態であり、連動ピン14は重なった状態での扉側ケース1の長孔4とスライド部材2の円弧孔11の手前端部に貫通して配置されており、扉側ケース1の凹み部分6の底面7にスライド部材2の手前辺9が接した状態で完全に嵌まり込んでいる。そして図6(a)に示す閉鎖状態から扉41を開放すると、連動ピン14がスライド部材2の円弧孔11と扉側ケース1の長孔4に同時に挿入されているため、スライド部材2の円弧孔11に沿って連動ピン14は移動しようとする。このときスライド部材2の円弧孔11と扉側ケース1の長孔4が交差した状態になっており、その交差角度が比較的大きいため、扉側ケース1の長孔4を手前方向に押し出す動作になる。またスライド部材2は扉側ケース1の凹み部分6に対して扉41と垂直方向である扉内面16方向にしか移動できないため、その結果図6(b)に示すようにスライド部材2に対して扉側ケース1の凹み部分6が滑りつつ、扉41を手前方向に持ち出しながら回転することになる。つまり扉側ケース1の底面7とスライド部材2の手前辺9に隙間が生じることになり、その隙間の寸法を図6(b)の状態でB寸法とする。   FIG. 6 is a trajectory diagram in which the positions where the door 41 is opened every 10 degrees from the closed state are continuously described. In order to make the positional relationship of the slide member 2 relative to the door-side case 1 clear, The position of the bottom surface 7 and the position of the front side 9 of the slide member 2 are mainly clearly described. First, FIG. 6A shows a state in which the door 41 is completely closed, and the interlocking pin 14 penetrates through the front end portion of the long hole 4 of the door side case 1 and the arc hole 11 of the slide member 2 in the overlapped state. And is completely fitted with the front side 9 of the slide member 2 in contact with the bottom surface 7 of the recessed portion 6 of the door-side case 1. When the door 41 is opened from the closed state shown in FIG. 6A, the interlock pin 14 is inserted into the arc hole 11 of the slide member 2 and the long hole 4 of the door side case 1 at the same time. The interlocking pin 14 tries to move along the hole 11. At this time, the arc hole 11 of the slide member 2 and the long hole 4 of the door side case 1 are in an intersecting state, and since the intersection angle is relatively large, the operation of pushing the long hole 4 of the door side case 1 forward. become. Further, since the slide member 2 can move only in the direction of the door inner surface 16 which is perpendicular to the door 41 with respect to the recessed portion 6 of the door side case 1, as a result, as shown in FIG. While the recessed portion 6 of the door-side case 1 slides, the door 41 rotates while taking the door 41 forward. That is, a gap is generated between the bottom surface 7 of the door-side case 1 and the front side 9 of the slide member 2, and the dimension of the gap is set to the B dimension in the state of FIG.

この開放と共に扉41を手前方向に持ち出す動作は、扉41を20度開放した状態での図6(c)から30度開放した図6(d)を経て40度開放した図6(e)まで続き、したがって扉側ケース1の底面7とスライド部材2の手前辺9の隙間はB<C<D<Eと徐々に大きくなっていく。この動作は扉41の開放での初期段階に図14に示すように扉内面端部コーナー20が枠体側板前面19に当接してしまう問題点を解消するのに有効である。ここで図14は同じ条件の扉41と枠体42で、軸心13位置も図6と同じ状態からの単軸での回転軌跡を示しており、図14(a)に示す閉鎖状態では図6(a)と同じ位置にあるが、扉の開放と共に20度〜30度の位置で図14(b)に示すように扉内面端部コーナー20が枠体側板前面19に当接してそれ以上開放できない状態になってしまう。   The operation of bringing the door 41 forward along with this opening is from FIG. 6C with the door 41 opened 20 degrees to FIG. 6E opening FIG. 6D with 30 degrees opened and FIG. 6D opened. Therefore, the gap between the bottom surface 7 of the door-side case 1 and the front side 9 of the slide member 2 gradually increases as B <C <D <E. This operation is effective in solving the problem that the door inner surface end corner 20 abuts against the frame side plate front surface 19 as shown in FIG. 14 in the initial stage of opening the door 41. Here, FIG. 14 shows the door 41 and the frame body 42 under the same conditions, and the position of the shaft center 13 also shows a single-axis rotation trajectory from the same state as FIG. 6, and in the closed state shown in FIG. 6 (a), but at the position of 20 to 30 degrees when the door is opened, the door inner end corner 20 abuts against the frame side plate front face 19 as shown in FIG. It will be in a state that can not be opened.

ところが図6においては、開放と共に扉41自体が扉側ケース1と共に手前方向に持ち出されながら回転するため、図6(a)での閉鎖状態での扉内面16の位置を一点鎖線にて基準線として表示すると、扉内面端部コーナー20が枠体側板前面19に接近しようとする分徐々に扉41自体が持ち出されるため、40度開放位置である図6(e)までは扉内面端部コーナー20は枠体側板前面19にほぼ接近しない軌跡が得られる。   However, in FIG. 6, the door 41 itself rotates together with the door-side case 1 while being opened, and rotates while being opened, so that the position of the door inner surface 16 in the closed state in FIG. Since the door 41 itself is gradually taken out as the door inner surface end corner 20 approaches the frame body side plate front surface 19, the door inner surface end corner is until the 40 ° open position in FIG. 6 (e). A trajectory 20 that does not substantially approach the frame body side plate front surface 19 is obtained.

そして40度開放位置の図6(e)から50度開放位置の図6(f)を経て60度開放位置の図6(g)に至る範囲はスライド部材2の円弧孔11と扉側ケース1の長孔4との交差角度が非常に小さい状態になり、扉41の開放角度に対する扉側ケース1の持ち出し量の変化はほとんど無い状態になる。したがって扉側ケース1の底面7とスライド部材2の手前辺9の隙間寸法はほぼE≒F≒Gになる。ここで上記の図6(e)から図6(g)に至る範囲を所定角度範囲とする。また図6(e)の段階で扉内面端部コーナー20が枠体側板前面19に接近していないため、その後の開放動作で扉内面端部コーナー20がわずかに枠体側板前面19に接近する軌跡になるが、初期に設定された納まりでの隙間範囲内で十分動作するため、図6(g)においても扉41の開放には全く支障はない。   The range from FIG. 6 (e) at the 40 ° open position to FIG. 6 (g) at the 50 ° open position through FIG. 6 (g) is the arc hole 11 of the slide member 2 and the door side case 1. The crossing angle with the long hole 4 is very small, and the amount of the door case 1 taken out with respect to the opening angle of the door 41 is hardly changed. Therefore, the clearance dimension between the bottom surface 7 of the door-side case 1 and the front side 9 of the slide member 2 is approximately E≈F≈G. Here, the range from FIG. 6E to FIG. 6G is defined as a predetermined angle range. In addition, since the door inner surface end corner 20 does not approach the frame body side plate front surface 19 at the stage of FIG. 6E, the door inner surface end corner 20 slightly approaches the frame body side plate front surface 19 in the subsequent opening operation. Although it becomes a locus, since it operates sufficiently within the gap range in the initial set-up, there is no problem in opening the door 41 in FIG.

そして60度開放位置である図6(g)からはまたスライド部材2の円弧孔11と扉側ケース1の長孔4との交差角度が逆方向に徐々に大きくなっていくため、今度は扉側ケース1の底面7とスライド部材2の手前辺9の隙間寸法は逆に小さくなっていき、70度開放位置から80度開放を経て90度開放においてはG>H>I>Jになる。そして図6(k)に示す100度開放位置では、扉側ケース1の底面7とスライド部材2の手前辺9の隙間Kはかなり小さくなる。またこの100度開放位置で扉正面端部コーナー21が枠体側板前面19に当接する直前にまで移動するため、スライド部材2の円弧孔11の開き角度を100度にて設定しておくと、この位置で扉41の開放を停止させることができる。そして図6(g)から図6(k)においても扉内面端部コーナー20が枠体側板前面19に当接することはない。   Then, from FIG. 6 (g), which is the 60 ° open position, the intersection angle between the arc hole 11 of the slide member 2 and the long hole 4 of the door side case 1 gradually increases in the opposite direction. The gap dimension between the bottom surface 7 of the side case 1 and the front side 9 of the slide member 2 is conversely reduced, so that G> H> I> J when opening 90 degrees from the 70 degree opening position and opening 90 degrees. And in the 100 degree | times open position shown in FIG.6 (k), the clearance gap K of the bottom face 7 of the door side case 1 and the near side 9 of the slide member 2 becomes quite small. In addition, since the door front end corner 21 moves to the position just before the frame body side plate front surface 19 abuts at the 100 degree open position, if the opening angle of the arc hole 11 of the slide member 2 is set at 100 degrees, The opening of the door 41 can be stopped at this position. 6 (g) to 6 (k), the door inner surface end corner 20 does not contact the frame body side plate front surface 19.

上記の扉41を手前方向に持ち出しながら回転させる構成は図6の設定が基本となるのであるが、その持ち出す程度や開放角度ごとの位置は任意に変更可能である。その手段としては扉側ケース1の長孔4の傾斜度合を変更する方法や、長孔4自体の形状を直線形状ではなく、スライド部材2の円弧孔11とは逆Rでの大きな円弧形状にする方法や、直線部分と大きな円弧部分を連続させた形状にする等様々な手段が可能である。また閉鎖状態における凹み部分6内での軸心13の位置とその位置に対する円弧孔11の距離や配置も開放軌跡において影響を及ぼすため、様々な要素を選択して最も有効な開閉軌跡を選択すると良い。   The configuration of rotating the door 41 while taking it forward is based on the setting shown in FIG. 6, but the extent of the take-out and the position for each opening angle can be arbitrarily changed. As the means, a method of changing the inclination degree of the long hole 4 of the door side case 1 or the shape of the long hole 4 itself is not a linear shape, but a large arc shape with a reverse R to the arc hole 11 of the slide member 2. Various means are possible, such as a method of making a straight line portion and a large arc portion continuous. In addition, since the position of the axis 13 in the recessed portion 6 in the closed state and the distance and arrangement of the arc hole 11 with respect to the position also affect the opening locus, selecting various elements and selecting the most effective opening / closing locus good.

次にもう一つの必要条件である閉鎖機構について説明し、その後にさらにもう一つの必要条件である枠体42に対する扉41の位置を施工後に建付け調整する構成を説明する。図7は図1に示した基本形態に閉鎖機構と建付け調整機構を追加した構成の分解斜視図である。そして図8は基本形態に閉鎖機構のみを追加して組み込んだ構成の上面図である。まず図7と図8に示すようにスライド部材2に第一傾斜面22を設ける。そして図8に示すように扉側ケース1の略直方体形状の凹み部分6の横側部分に矩形スペース25を拡張し、第二傾斜面24を有したばね受け23をばね部材26と共に矩形スペース25に挿入し、スライド部材2の第一傾斜面22とばね受け23の第二傾斜面24が面対するように配置する。このときばね部材26を両傾斜面がより多く重なり合う方向に付勢するように設定する。したがってばね部材26によりばね受け23の第二傾斜面24が常にスライド部材2の第一傾斜面22を押し付けている状態になっている。   Next, a closing mechanism that is another necessary condition will be described, and then a configuration in which the position of the door 41 with respect to the frame body 42 that is another necessary condition is installed and adjusted after construction will be described. FIG. 7 is an exploded perspective view of a configuration in which a closing mechanism and a building adjustment mechanism are added to the basic form shown in FIG. FIG. 8 is a top view of a configuration in which only a closing mechanism is added to the basic form. First, as shown in FIGS. 7 and 8, the first inclined surface 22 is provided on the slide member 2. Then, as shown in FIG. 8, the rectangular space 25 is extended to the lateral side portion of the substantially rectangular parallelepiped recessed portion 6 of the door side case 1, and the spring receiver 23 having the second inclined surface 24 is combined with the spring member 26 into the rectangular space 25. The first inclined surface 22 of the slide member 2 and the second inclined surface 24 of the spring receiver 23 are arranged so as to face each other. At this time, the spring member 26 is set so as to be urged in a direction in which both inclined surfaces overlap more. Therefore, the second inclined surface 24 of the spring receiver 23 is always pressed against the first inclined surface 22 of the slide member 2 by the spring member 26.

この図8の状態から扉41を開放した時の軌跡図が図9であり、開閉機構部分は図6に示す動作と同様であるため、扉側ケース1の底面7とスライド部材2の手前辺9との隙間寸法は図6での0度〜40度まではB<C<D<Eと隙間寸法は増加し、その後の60度解放まではE≒F≒Gとほぼ隙間寸法は一定になり、さらにその後の100度解放まではG>H>I>Jと隙間寸法は再度小さくなっていく。したがって開放初期においては扉側ケース1が手前方向に移動しつつスライド部材2の第一傾斜面22がばね受け23の第二傾斜面24を押す動作になり、両傾斜面により力の方向が変更され、その結果ばね部材を圧縮させることになる。図9(b)は40度開放段階を示しており、ばね部材26は大きく圧縮された状態で、そのまま扉41を放置するとばね部材26が戻ろうとする力によりスライド部材2も図9(a)の閉鎖状態に復帰しようとする力が働き、すなわち扉41を閉鎖することが可能になる。   FIG. 9 is a locus diagram when the door 41 is opened from the state of FIG. 8, and the opening / closing mechanism portion is the same as the operation shown in FIG. 6, so the bottom surface 7 of the door side case 1 and the front side of the slide member 2 are the same. The gap dimension with 9 is B <C <D <E from 0 degrees to 40 degrees in FIG. 6 and the gap dimension increases, and until the subsequent 60 degrees release, E≈F≈G and the gap dimension is almost constant. Then, G> H> I> J and the gap size become smaller again until 100 degrees after that. Therefore, in the initial stage of opening, the door-side case 1 moves in the forward direction while the first inclined surface 22 of the slide member 2 pushes the second inclined surface 24 of the spring receiver 23, and the direction of the force is changed by both inclined surfaces. As a result, the spring member is compressed. FIG. 9B shows the 40-degree opening stage, and when the door 41 is left as it is with the spring member 26 being greatly compressed, the slide member 2 is also moved by the force of the spring member 26 returning. The force for returning to the closed state is activated, that is, the door 41 can be closed.

そして前述のように図9(b)に示す40度開放から図9(c)に示す60度開放付近までは、扉側ケース1の底面7とスライド部材2の手前辺9の隙間寸法がほぼ一定である所定角度範囲であるため、この所定角度範囲内で扉41を放置するとそのままの位置で止まった状態になると想定される。そして所定角度範囲を超えてさらに大きく扉41を開放すると、扉側ケース1の底面7とスライド部材2の手前辺9の隙間寸法が小さくなっていく現象になるため、スライド部材2に対して扉側ケース1が奥方向に戻る動作になり、ばね部材26の付勢力によりスライド部材2を奥方向に戻そうとする力と同方向になり、そのまま扉41を放置すると図9(d)に示すようにそのまま最大角度まで扉41を開放させる動作になる。   As described above, from the 40 degree opening shown in FIG. 9B to the 60 degree opening vicinity shown in FIG. 9C, the gap dimension between the bottom surface 7 of the door-side case 1 and the front side 9 of the slide member 2 is almost the same. Since the predetermined angle range is constant, if the door 41 is left in the predetermined angle range, it is assumed that the door 41 stops at the same position. When the door 41 is further opened beyond the predetermined angle range, the gap dimension between the bottom surface 7 of the door-side case 1 and the front side 9 of the slide member 2 becomes smaller. The side case 1 returns to the back direction, and the same direction as the force to return the slide member 2 to the back direction by the biasing force of the spring member 26. If the door 41 is left as it is, it is shown in FIG. 9 (d). In this way, the door 41 is opened to the maximum angle as it is.

したがって全体の開閉動作としては、閉鎖状態から扉41を開ける際には所定角度範囲を真ん中としてそれより開き角度が小さいときにはそのまま扉41は閉鎖し、開き角度が大きいときにはそのまま最後まで扉41は開放し、閉鎖時にはその逆の動作になる、所定角度範囲を挟んで開放側と閉鎖側に振り分けて付勢する動作が得られることになる。   Therefore, as a whole opening / closing operation, when the door 41 is opened from the closed state, the door 41 is closed when the opening angle is smaller than the predetermined angle range in the middle, and when the opening angle is large, the door 41 is opened to the end as it is. In the closing operation, the opposite operation is performed, and an operation of allocating and energizing the opening side and the closing side across a predetermined angle range is obtained.

ここで従来のスライド丁番においては扉41の閉鎖力は一定であり、したがって間口の狭い軽い扉においてはばね力が勝ってバタンと閉じてしまうような動作になりがちであり、逆に間口の広い重い扉であればばね力が足らずに閉じきらないというような現象がどうしても発生してしまう。そこで強めのばね力に設定しておき、強すぎる場合にはダンパーを用いて閉鎖直前に力を吸収させる構成が用いられることが多い。しかし本来では閉鎖力そのものを調整できればダンパーを使用する必要はないと想定され、さらに効果的な構成が望まれる。   Here, in the conventional slide hinge, the closing force of the door 41 is constant. Therefore, in a light door with a narrow frontage, the spring force tends to be over and it closes easily. If the door is wide and heavy, there will be a phenomenon that the spring force will not be enough to close. Therefore, a configuration is often used in which a strong spring force is set and when the force is too strong, a damper is used to absorb the force immediately before closing. However, if the closing force itself can be adjusted, it is assumed that it is not necessary to use a damper, and a more effective configuration is desired.

そこで扉側ケース1の矩形スペース25内でのばね部材26を挟んだばね受け23とは逆側にばね力を調整できる構成を設け、扉41を開放した状態で扉内面16側からばね部材26の付勢力を強弱できる操作手段を有していると良い。図10はその手段としての一例の上面図であり、図7にも同様の構成を表記している。まず図7に示すように、ばね部材26を挟んでばね受け23とは逆の位置に、第三傾斜面28を有した略三角形のばね力調整部材27を設け、さらに第四傾斜面31と雌ねじ部29を有した略三角形の雌ねじ部付きばね力調整部材を30設け、図10(a)に示すように、互いの傾斜面が面対した状態で矩形スペース25内に配置し、ばね力調整ねじ32を雌ねじ部付きばね力調整部材30に螺合させた状態で、ばね力調整ねじ32の頭部が扉内面16に向いた配置で扉側ケース1に対して空転するように装着しておく。図11は図10(a)の状態を扉内面16から見た平面図であり、扉41を開けた状態でばね力調整ねじ32を回しやすいように配置しておくと良い。   Therefore, a configuration is provided in which the spring force can be adjusted on the side opposite to the spring receiver 23 sandwiching the spring member 26 in the rectangular space 25 of the door side case 1, and the spring member 26 is opened from the door inner surface 16 side with the door 41 opened. It is preferable to have an operation means that can increase or decrease the urging force. FIG. 10 is a top view of an example of the means, and FIG. 7 shows the same configuration. First, as shown in FIG. 7, a substantially triangular spring force adjusting member 27 having a third inclined surface 28 is provided at a position opposite to the spring receiver 23 with the spring member 26 interposed therebetween. A spring force adjusting member 30 having a substantially triangular female thread portion having a female thread portion 29 is provided, and is arranged in the rectangular space 25 with the inclined surfaces facing each other as shown in FIG. With the adjustment screw 32 screwed into the spring force adjustment member 30 with the female thread portion, the spring force adjustment screw 32 is mounted so that the head of the spring force adjustment screw 32 faces the door inner surface 16 so as to idle. Keep it. FIG. 11 is a plan view of the state of FIG. 10A viewed from the door inner surface 16, and it is preferable that the spring force adjusting screw 32 be arranged so as to be easily turned with the door 41 opened.

そして図10(a)はばね部材26による付勢力が最も弱い状態を示しており、雌ねじ部付きばね力調整部材30は矩形スペース25内での手前側に配置されている。この状態からばね力調整ねじ32を回すと、雌ねじ部付きばね力調整部材30が奥方向に移動し、面対した第四傾斜面31と第三傾斜面28によりばね力調整部材27の移動方向が変換され、図10(b)に示すようにばね力調整部材27がばね部材26を圧縮させることになる。すると閉鎖力が増幅されることになり、その結果施工後に扉41のサイズや重量に応じた閉鎖力に簡単に調整することが可能になり、強すぎることもなく、弱すぎることもない適度な閉鎖条件を得ることが容易に実現できる。またばね部材26の付勢力の調整できる範囲を大きく設定することで、1枚の扉41に複数個のスライド丁番を使用している場合においても、本発明の丁番を使用する場合では数量を削減することも可能になると想定される。   FIG. 10A shows a state in which the urging force by the spring member 26 is the weakest, and the spring force adjusting member 30 with the female thread portion is arranged on the front side in the rectangular space 25. When the spring force adjusting screw 32 is turned from this state, the spring force adjusting member 30 with the female thread portion moves in the back direction, and the moving direction of the spring force adjusting member 27 is caused by the fourth inclined surface 31 and the third inclined surface 28 facing each other. Is converted, and the spring force adjusting member 27 compresses the spring member 26 as shown in FIG. Then, the closing force is amplified, and as a result, it becomes possible to easily adjust the closing force according to the size and weight of the door 41 after construction, and it is not too strong and not too weak. Obtaining the closing condition can be easily realized. Further, by setting a large range in which the biasing force of the spring member 26 can be adjusted, even when a plurality of slide hinges are used for one door 41, the number of the hinges according to the present invention is limited. It is assumed that it will be possible to reduce this.

またさらに別の手段としては図12に示すように、ドライバーと適合する十字ビットと一体化された操作部分を有する偏心カム33を設け、操作部分が扉内面16側なるように扉側ケース1内に配置し、操作部分を回す動作と共に偏心カム33の側面がばね部材26を押し込んで付勢力を調整可能とする構成であっても良い。この機構を用いる場合はばね部材26により戻る方向への付勢力で偏心カム33が逆回転してしまわないように、接点に細かいギザギザを用いる等の手段を合わせて採用することが必要であり、この点においては図示はしないが、偏心カム33の代わりに等速カムを用いる構成であっても良い。   As another means, as shown in FIG. 12, an eccentric cam 33 having an operation part integrated with a cross bit compatible with a driver is provided, and the inside of the door side case 1 is arranged so that the operation part is on the door inner surface 16 side. It is possible to adopt a configuration in which the biasing force can be adjusted by pushing the spring member 26 with the side surface of the eccentric cam 33 along with the operation of rotating the operation portion. When this mechanism is used, it is necessary to employ a means such as using fine jagged contact points so that the eccentric cam 33 does not reversely rotate due to the biasing force in the return direction by the spring member 26. Although not shown in this respect, a configuration using a constant velocity cam instead of the eccentric cam 33 may be used.

また施工後に枠体42に対して扉41の位置を前後左右上下の三方向に調整する建付け調整機構も必要であり、様々な構成が可能であるが、本発明の丁番においては、開閉機構部分自体は扉側ケース1を扉41の厚み内に彫り込んだ状態での埋め込まれた範囲で実施可能になることが特徴であり、したがって羽根部材3の枠体42に対する取り付け面8を利用して建付け調整を実施すると良い。さらには収納スペースをより広く確保することも重要であり、枠体側板内面18に装着する際に出っ張りは極力小さいことが望まれる。   In addition, a construction adjustment mechanism that adjusts the position of the door 41 in the three directions of front, rear, left, right, up and down with respect to the frame body 42 after the construction is necessary, and various configurations are possible. The mechanism portion itself is characterized in that it can be implemented within the range in which the door-side case 1 is engraved within the thickness of the door 41, and therefore, the attachment surface 8 of the blade member 3 to the frame body 42 is utilized. It is advisable to carry out installation adjustment. Furthermore, it is also important to secure a wider storage space, and it is desirable that the protrusion is as small as possible when it is attached to the inner surface 18 of the frame body side plate.

そこで図7に示すように、板状で凸状の支点35を挟んで両側に雌ねじ部29を有した枠側ベース部材34を設け、支点35の横にさらに偏心形状の前後調整カム36を配置しておく。そして羽根部材3の取り付け面8を、上下を曲げ込んだ略コの字形状にて形成し、前後調整用長孔39と前後調整カム挿入孔37を設け、枠側ベース部材34に羽根部材3の取り付け面8を被せるようにして、前後調整カム36を前後調整カム挿入孔37に差し込んだ状態で装着する。そして支点35を挟んだ両側の前後調整用長孔39を通して枠側ベース部材34の雌ねじ部29に2本の左右調整ねじ38を螺合しておく。   Therefore, as shown in FIG. 7, a frame-side base member 34 having a female threaded portion 29 is provided on both sides of a plate-like convex fulcrum 35, and a further eccentric shaped front / rear adjustment cam 36 is arranged beside the fulcrum 35. Keep it. Then, the attachment surface 8 of the blade member 3 is formed in a substantially U-shape bent upward and downward, provided with a front / rear adjustment long hole 39 and a front / rear adjustment cam insertion hole 37, and the frame-side base member 34 is provided with the blade member 3. The front / rear adjustment cam 36 is mounted in a state where the front / rear adjustment cam 36 is inserted into the front / rear adjustment cam insertion hole 37. Then, two left and right adjustment screws 38 are screwed into the female screw portion 29 of the frame side base member 34 through the longitudinal adjustment long holes 39 on both sides of the fulcrum 35.

図13は図7に示す建付け調整機構を備えた丁番を取り付けた状態の上面図であり、あらかじめ枠側ベース部材34を木ねじ等の取り付けねじ15で枠体側板内面18に固定しておき、羽根部材3を2本の左右調整ねじ38にて装着した、建付け調整前の基準状態を示している。そしてこの状態から2本の左右調整ねじ38を少しだけ緩め、前後調整カム36を回転させると前後調整が実施され、2本の左右調整ねじ38を押し引きすることで、羽根部材3は枠側ベース部材34の支点35に対して略シーソー動作して左右調整を実施することが可能となり、適正な位置で左右調整ねじ38を締め込むと固定することができる。また図7と図11に示すように扉側ケース1の取り付け面8の孔を上下方向に長い上下調整用長孔40にしておくと、取り付けねじ15を緩めて上下方向に移動後再度締め付けることで上下方向の調整も併せ持つ構成にできる。   FIG. 13 is a top view of a state in which a hinge provided with the installation adjusting mechanism shown in FIG. 7 is attached. The frame side base member 34 is fixed to the inner surface 18 of the frame body side plate with the mounting screws 15 such as wood screws in advance. The reference | standard state before installation adjustment which mounted | wore with the blade member 3 with the two right-and-left adjustment screws 38 is shown. In this state, the two left / right adjustment screws 38 are slightly loosened and the front / rear adjustment cam 36 is rotated to perform front / rear adjustment. By pushing and pulling the two left / right adjustment screws 38, the blade member 3 is moved to the frame side. It is possible to perform left and right adjustment by performing a substantially seesaw operation on the fulcrum 35 of the base member 34, and it can be fixed by tightening the left and right adjustment screw 38 at an appropriate position. Also, as shown in FIGS. 7 and 11, if the hole on the mounting surface 8 of the door side case 1 is made into a vertically adjusting long hole 40 that is long in the vertical direction, the mounting screw 15 is loosened, moved in the vertical direction, and then tightened again. It can be configured to have both vertical adjustment.

そしてこの建付け調整の構成は、図13に示すように枠側ベース部材34と羽根部材3の取り付け面8と、左右調整のためのシーソー動作による移動幅のみが枠体側板内面18から突出するだけで済み、全体として非常に薄く設定することができ、収納スペースを広く有効に使用することが可能になる。また建付け調整機構は上記の構成に限ったものではなく、略シーソー動作の支点位置を変えた構成であるとか、左右調整を扉側で実施する等限定されず任意である。   As shown in FIG. 13, the construction adjustment is such that only the frame-side base member 34 and the attachment surface 8 of the blade member 3 and the movement width by the seesaw operation for left-right adjustment protrude from the inner surface 18 of the frame-side plate. As a whole, it can be set very thin, and the storage space can be used widely and effectively. Further, the installation adjustment mechanism is not limited to the above-described configuration, and is not limited to any configuration such as a configuration in which the fulcrum position of the substantially seesaw operation is changed or the left-right adjustment is performed on the door side.

本発明の丁番の、開閉機構部分を備えた基本形態の斜視図である。It is a perspective view of the basic form provided with the opening-and-closing mechanism part of the hinge of this invention. 本発明の丁番の、扉側ケースの上面図である。It is a top view of the door side case of the hinge of this invention. 本発明の丁番の、スライド部材の上面図である。It is a top view of the slide member of the hinge of this invention. 本発明の丁番の、羽根部材の上面図である。It is a top view of the blade member of the hinge of the present invention. 本発明の基本形態の丁番を収納家具に装着した状態の上面図である。It is a top view of the state which mounted | wore the storage furniture with the hinge of the basic form of this invention. 本発明の基本形態の丁番の開閉軌跡図である。It is an opening-and-closing locus | trajectory figure of the hinge of the basic form of this invention. 本発明の基本形態の丁番に、閉鎖力調整機構と建付け調整機構を追加した構成の斜視図である。It is a perspective view of the structure which added the closing force adjustment mechanism and the building adjustment mechanism to the hinge of the basic form of this invention. 本発明の基本形態の丁番に、閉鎖機構を追加した構成の上面図である。It is a top view of the structure which added the closing mechanism to the hinge of the basic form of this invention. 本発明の基本形態の丁番に、閉鎖機構を追加した構成の開閉軌跡図である。It is an opening-and-closing locus | trajectory figure of the structure which added the closing mechanism to the hinge of the basic form of this invention. 本発明の基本形態の丁番に、閉鎖力調整機構を追加した構成の上面図である。It is a top view of the structure which added the closing force adjustment mechanism to the hinge of the basic form of this invention. 本発明の丁番の閉鎖力調整機構に、2個の傾斜面を有するばね力調整部材を用いた構成の平面図である。It is a top view of the structure which used the spring force adjustment member which has two inclined surfaces for the closing force adjustment mechanism of the hinge of this invention. 本発明の丁番の閉鎖力調整機構に、偏心カムを用いた構成の平面図である。It is a top view of the structure which used the eccentric cam for the closing force adjustment mechanism of the hinge of this invention. 本発明の基本形態の丁番に、閉鎖力調整機構と建付け調整機構を追加した構成の上面納まり図である。It is an upper surface accommodation figure of the structure which added the closing force adjustment mechanism and the building adjustment mechanism to the hinge of the basic form of this invention. 従来の単軸の丁番を、本発明の丁番と同じ配置で収納家具に装着した時の軌跡図である。It is a locus | trajectory figure when attaching the conventional single axis | shaft hinge to storage furniture in the same arrangement | positioning as the hinge of this invention.

1 扉側ケース
2 スライド部材
3 羽根部材
4 長孔
5 水平面
6 凹み部分
7 底面
8 取り付け面
9 手前辺
10 軸心挿入孔
11 円弧孔
12 連動ピン挿入孔
13 軸心
14 連動ピン
15 取り付けねじ
16 扉内面
17 扉正面
18 枠体側板内面
19 枠体側板前面
20 扉内面端部コーナー
21 扉正面端部コーナー
22 第一傾斜面
23 ばね受け
24 第二傾斜面
25 矩形スペース
26 ばね部材
27 ばね力調整部材
28 第三傾斜面
29 雌ねじ部
30 雌ねじ部付きばね力調整部材
31 第四傾斜面
32 ばね力調整ねじ
33 偏心カム
34 枠側ベース部材
35 支点
36 前後調整カム
37 前後調整カム挿入孔
38 左右調整ねじ
39 前後調整用長孔
40 上下調整用長孔
41 扉
42 枠体
DESCRIPTION OF SYMBOLS 1 Door side case 2 Slide member 3 Blade member 4 Long hole 5 Horizontal surface 6 Recessed part 7 Bottom surface 8 Mounting surface 9 Front side 10 Axis center insertion hole 11 Arc hole 12 Interlocking pin insertion hole 13 Axis 14 Interlocking pin 15 Mounting screw 16 Door Inner surface 17 Door front surface 18 Frame body side plate inner surface 19 Frame body side plate front surface 20 Door inner surface end corner 21 Door front end corner 22 First inclined surface 23 Spring receiver 24 Second inclined surface 25 Rectangular space 26 Spring member 27 Spring force adjusting member 28 Third inclined surface 29 Female thread portion 30 Spring force adjusting member with female thread portion 31 Fourth inclined surface 32 Spring force adjusting screw 33 Eccentric cam 34 Frame side base member 35 Support point 36 Front and rear adjustment cam 37 Front and rear adjustment cam insertion hole 38 Left and right adjustment screw 39 Long hole for longitudinal adjustment 40 Long hole for vertical adjustment 41 Door 42 Frame

Claims (12)

枠体に扉を開閉自在に保持するための丁番であって、長孔が形成された水平面を有した扉側ケースと、軸心挿入孔と軸心挿入孔を中心とした円弧孔が形成された水平面を有したスライド部材と、連動ピン挿入孔と軸心挿入孔が形成された水平面と取り付け面を有した羽根部材が設けられ、羽根部材とスライド部材の水平面を重ね合わせた状態で、軸心を羽根部材とスライド部材の軸心挿入孔に貫通させて挿入することで両者は回動自在に連結され、さらに扉側ケース内にスライド部材を一方向にのみ移動可能に規制された状態で水平面を重ね合わせて配置され、連動ピンを扉側ケースの長孔とスライド部材の円弧孔に同時に貫通させた状態で、羽根部材の連動ピン挿入孔に差し込んで扉側ケースとスライド部材と羽根部材を組み付けて構成したことを特徴とする丁番。 A hinge for holding the door in the frame so that it can be opened and closed. A door-side case with a horizontal surface with a long hole, and an arc hole centered on the axis insertion hole and the axis insertion hole are formed. In a state in which a slide member having a horizontal surface, a horizontal surface in which an interlocking pin insertion hole and an axial center insertion hole are formed, and a blade member having an attachment surface are provided, and the horizontal surfaces of the blade member and the slide member are overlapped, The shaft center is inserted through the blade core and the shaft insertion hole of the slide member so that both are pivotally connected, and the slide member is restricted to move in one direction in the door side case. In the state where the interlocking pin is inserted through the long hole of the door side case and the arc hole of the slide member at the same time, the door side case, the slide member and the blade are inserted into the interlocking pin insertion hole of the blade member. Assemble the components It hinges, characterized in that. 前記扉側ケースに長孔を有した水平面を平行な配置で2個設け、その間は略直方体の凹み部分として形成され、軸心挿入孔と軸心挿入孔を中心とした円弧孔を有した水平面を2個平行に備えた略箱型形状にてスライド部材は形成され、連動ピン挿入孔と軸心挿入孔を有した2個の水平面を略コの字形状に連結して羽根部材が形成され、羽根部材の略コの字形状の2個の水平面をスライド部材に挿入し、各々2個の水平面を重ね合わせた状態で軸心にて連結し、さらに略箱型形状のスライド部材を扉側ケースの凹み部分に一方向にしか移動できない状態で嵌め込んで、各々3個の水平面を重ね合わせた状態で連動ピンを長孔と円弧孔に貫通させて連動ピン挿入孔に差し込んで扉側ケースとスライド部材と羽根部材を組み付けて丁番を構成し、扉側ケースは扉に、羽根部材は枠体に装着されることで扉が枠体に保持され、扉の開閉動作によりスライド部材に対して扉側ケースが出没しながらの羽根部材に対する回転動作が得られることを特徴とする請求項1に記載の丁番。 Two horizontal surfaces having long holes in the door-side case are provided in a parallel arrangement, and a space between them is formed as a concave portion of a substantially rectangular parallelepiped, and has an arc hole centered on the shaft center insertion hole and the shaft center insertion hole. The slide member is formed in a substantially box shape with two parallel members, and the blade member is formed by connecting two horizontal surfaces having the interlocking pin insertion hole and the shaft center insertion hole in a substantially U-shape. , Insert two substantially U-shaped horizontal surfaces of the blade member into the slide member, and connect the two horizontal surfaces with each other in the state of overlapping, and further connect the substantially box-shaped slide member to the door side. Fit in the recessed part of the case in a state where it can move only in one direction, with the three horizontal planes superimposed, insert the interlocking pin through the long hole and arc hole, and insert it into the interlocking pin insertion hole. A hinge is constructed by assembling the slide member and the blade member, and the door The case is attached to the door and the blade member is attached to the frame so that the door is held by the frame, and the opening and closing operation of the door allows the rotation of the blade member while the door-side case protrudes and retracts from the slide member. The hinge according to claim 1. 前記扉側ケースに垂直方向の取り付け面を形成し、水平面の長孔が扉の厚み内に配置されるように扉の吊元側を彫り込んで扉側ケースを装着し、羽根部材に垂直方向の取り付け面を設け、枠体側板内面の手前位置に羽根部材を装着し、閉鎖状態で扉内面が枠体側板前面に一定の隙間を有して配置された納まり位置から扉を開放すると、連動ピンがスライド部材の円弧孔と扉側ケースの長孔に同時に挿入されているため、所定角度範囲まではスライド部材に対して扉側ケースを手前方向に徐々に押し出す動作になり、その結果扉側ケースと共に扉内面端部コーナーが枠体側板前面に接近する度合いを低減する軌跡が得られ、所定角度範囲以降はスライド部材に対して扉側ケースが奥方向に戻る動作になることを特徴とする請求項2に記載の丁番。 A vertical mounting surface is formed on the door-side case, and the door-side case is mounted by carving the door suspension side so that the long holes in the horizontal plane are arranged within the thickness of the door. Provide a mounting surface, attach a blade member to the front side of the inner surface of the frame body side plate, and when the door is opened from the stored position where the inner surface of the door is arranged with a certain gap on the front surface of the frame side plate in the closed state, Is inserted into the arc hole of the slide member and the long hole of the door side case at the same time, so that the door side case is gradually pushed out toward the slide member up to a predetermined angle range, and as a result, the door side case In addition, a trajectory that reduces the degree to which the door inner surface end corner approaches the front surface of the frame body side plate is obtained, and after the predetermined angle range, the door side case returns to the back direction with respect to the slide member. The hinge described in Item 2 前記スライド部材の円弧孔の軸心挿入孔に対する開き角度を、最大開放時に扉正面端部コーナーが枠体側板前部面に当接する直前の位置になるように、90度以上の任意の角度にて設定したことを特徴とする請求項3に記載の丁番。 The opening angle of the slide member with respect to the axial insertion hole of the circular arc hole is set to an arbitrary angle of 90 degrees or more so that the door front end corner is in a position immediately before contacting the frame body side plate front surface when the door is fully opened. The hinge according to claim 3, wherein the hinge is set. 前記略箱型形状のスライド部材に第一傾斜面が設けられ、扉側ケースの直方体形状の凹み部分の横側部分に矩形スペースが拡張され、ばね部材と第二傾斜面を有したばね受けが設けられ、スライド部材の第一傾斜面とばね受けの第二傾斜面が面対する配置で、ばね部材により両傾斜面がより多く重なり合う方向に付勢するように、扉側ケースの矩形スペース内にばね部材とばね受けが配置されたことを特徴とする請求項2に記載の丁番The substantially box-shaped slide member is provided with a first inclined surface, a rectangular space is expanded on a lateral side portion of the rectangular parallelepiped recessed portion of the door side case, and a spring receiver having a spring member and a second inclined surface is provided. Provided in the rectangular space of the door-side case so that the first inclined surface of the slide member and the second inclined surface of the spring receiver face each other, and the two inclined surfaces are biased by the spring member in a more overlapping direction. The hinge according to claim 2, wherein a spring member and a spring receiver are arranged. 閉鎖状態から扉を開放する際に、所定角度範囲まではスライド部材に対して扉側ケースを手前方向に徐々に押し出す動作により、スライド部材の第一傾斜面がばね受けの第二傾斜面を押し込むと共にばね部材を圧縮させる動作になり、所定角度範囲未満の開放角度でそのまま扉を放置すると、ばね部材の付勢力によりスライド部材を奥方向に戻そうとする力が発生し、その結果扉が閉鎖する動作が得られることを特徴とする請求項3または5に記載の丁番。 When opening the door from the closed state, the first inclined surface of the slide member pushes the second inclined surface of the spring support by the action of gradually pushing the door-side case forward toward the slide member up to a predetermined angle range. At the same time, the spring member is compressed, and if the door is left as it is at an opening angle less than the predetermined angle range, a force to return the slide member to the back direction is generated by the biasing force of the spring member, and the door is closed as a result. The hinge according to claim 3 or 5, characterized in that an operation is performed. 扉を所定角度範囲を超えてさらに開放すると、連動ピンがスライド部材の円弧孔と扉側ケースの長孔に同時に挿入されているため、スライド部材に対して扉側ケースが奥方向に戻る動作になり、ばね部材の付勢力によりスライド部材を奥方向に戻そうとする力と同方向になり、その結果所定角度範囲を超えた位置で扉を放置すると、そのまま最大開放角度まで扉を開かせる動作になることを特徴とする請求項3または5に記載の丁番。 When the door is further opened beyond the predetermined angle range, the interlocking pin is inserted into the arc hole of the slide member and the long hole of the door side case at the same time, so the door side case returns to the back direction with respect to the slide member. Therefore, when the door is left at a position beyond the specified angle range, the door is opened to the maximum opening angle as it is in the same direction as the force to return the slide member to the back direction by the biasing force of the spring member. The hinge according to claim 3 or 5, wherein 前記扉側ケースの矩形スペース内でのばね部材を挟んだばね受けとは逆側にばね力調整機構が設けられ、扉を開放した状態で扉内面側からばね部材の付勢力を強弱できる操作手段を有し、施工後にばね部材による付勢力を変えることで扉の閉鎖力が任意に調整可能とされたことを特徴とする請求項3または5に記載の丁番。 An operating means provided with a spring force adjusting mechanism on the opposite side to the spring receiver sandwiching the spring member in the rectangular space of the door-side case so that the biasing force of the spring member can be increased or decreased from the door inner surface side in a state where the door is opened. The hinge according to claim 3 or 5, wherein the closing force of the door can be arbitrarily adjusted by changing the biasing force by the spring member after construction. 前記ばね力調整機構が、傾斜面を有した2個のばね力調整部材を互いの傾斜面が面対した状態で扉側ケースの矩形スペース内でのばね部材を挟んだばね受けとは逆側に配置され、片方のばね力調整部材には雌ねじ部分が設けてあり、ばね力調整ねじを雌ねじ部に螺合させた状態でねじの頭部が扉内面に向いた状態で扉側ケースに対して空転するように配置され、ばね力調整ねじを回すことで両傾斜面により他方のばね力調整部材がばね部材を押し込むことで付勢力が調整可能となる構成であることを特徴とする請求項8に記載の丁番。 The spring force adjusting mechanism is opposite to the spring receiver that sandwiches the spring member in the rectangular space of the door-side case with the two spring force adjusting members having inclined surfaces facing each other with the inclined surfaces facing each other. One spring force adjustment member is provided with a female thread part, and with the spring force adjustment screw screwed into the female thread part, the screw head faces the door inner surface and the door side case The configuration is such that the urging force can be adjusted by rotating the spring force adjusting screw so that the other spring force adjusting member pushes the spring member into the two inclined surfaces by turning the spring force adjusting screw. The hinge described in 8. 前記ばね力調整機構が、ドライバーと適合する十字ビットと一体化された操作部分を有する偏心カムが設けられ、操作部分が扉内面に配置された状態で扉側ケースの矩形スペース内に配置されており、操作部分を回す動作と共に偏心カムの側面がばね部材を押し込んで付勢力が調整可能となる構成であることを特徴とする請求項8に記載の丁番。 The spring force adjusting mechanism is provided with an eccentric cam having an operation part integrated with a cross bit adapted to a driver, and the operation part is arranged in the rectangular space of the door side case with the operation part arranged on the door inner surface. The hinge according to claim 8, wherein the biasing force can be adjusted by pressing the spring member with the side surface of the eccentric cam along with the operation of turning the operation portion. 前記扉側ケースを扉の厚み内に彫り込んだ状態で配置し、その内部で扉の開閉動作を実施し、羽根部材の取り付け面を垂直方向の板形状にて設定したことを特徴とする請求項1または2に記載の丁番
The door-side case is arranged in a state of being carved into the thickness of the door, the door is opened and closed inside, and the attachment surface of the blade member is set in a vertical plate shape. The hinge described in 1 or 2 .
施工後に枠体に対して扉の位置を建付け調整する手段として、支点と雌ねじ部を有する枠側ベース部材を設け、枠側ベース部材に偏心形状の前後調整カムを配置して羽根部材の取り付け面に挿入し、前後調整カムを回す操作で前後調整が実施可能とされ、左右調整ねじを羽根部材を介して枠側ベース部材の雌ねじ部に螺合し、枠側ベース部材に対して支点を中心に羽根部材の角度を変化させる略シーソー動作により左右調整が実施可能とされ、扉側ケースの取り付け面に上下方向の長孔を設け、取り付けねじを緩めた後に押し引きして上下方向の位置を調整後に再固定することにより、上下調整が実施可能とされたことを特徴とする請求項1または2に記載の丁番。 As a means of installing and adjusting the position of the door with respect to the frame after installation, a frame-side base member having a fulcrum and an internal thread is provided, and an eccentric front and rear adjustment cam is arranged on the frame-side base member to attach the blade member It is possible to adjust the front / rear by inserting it into the surface and turning the front / rear adjustment cam. The left / right adjustment screw is screwed into the female screw part of the frame side base member via the blade member, and the fulcrum is fixed to the frame side base member It is possible to adjust left and right by a substantially seesaw operation that changes the angle of the blade member at the center. A vertical hole is provided in the mounting surface of the door side case, and the mounting screw is loosened and pushed up and down to position in the vertical direction. The hinge according to claim 1 or 2, wherein the vertical adjustment can be performed by re-fixing the post-adjustment.
JP2017019156A 2017-02-05 2017-02-05 Hinge Active JP6570560B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2017019156A JP6570560B2 (en) 2017-02-05 2017-02-05 Hinge

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2017019156A JP6570560B2 (en) 2017-02-05 2017-02-05 Hinge

Publications (2)

Publication Number Publication Date
JP2018123655A JP2018123655A (en) 2018-08-09
JP6570560B2 true JP6570560B2 (en) 2019-09-04

Family

ID=63111146

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2017019156A Active JP6570560B2 (en) 2017-02-05 2017-02-05 Hinge

Country Status (1)

Country Link
JP (1) JP6570560B2 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113294046B (en) * 2020-02-23 2024-04-16 刘经红 Guide rail hinge integrated device
KR102616278B1 (en) * 2022-04-21 2023-12-20 주식회사 이피텍 Coupling apparatus for door

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5578775A (en) * 1978-12-08 1980-06-13 Nippon Musical Instruments Mfg Hinge
JP4344459B2 (en) * 2000-05-08 2009-10-14 下西技研工業株式会社 Opening and closing body hinge
WO2002064925A1 (en) * 2001-02-15 2002-08-22 Gronbach Forschungs- Und Entwicklungs Gmbh & Co. Kg Hinge for a stove door
JP2002276232A (en) * 2001-03-13 2002-09-25 Hitoshi Nishitani Hinge fitting

Also Published As

Publication number Publication date
JP2018123655A (en) 2018-08-09

Similar Documents

Publication Publication Date Title
JP4071262B2 (en) Hidden hinge
EP1555372B1 (en) Hinge device
US10745954B2 (en) Compact hinge apparatus and method of use
US8650711B1 (en) Hinge assembly with damping device
US9739080B2 (en) Device for opening and closing sliding door
US11168502B2 (en) Door device
JP5535580B2 (en) Automatic door hinge
KR20100099301A (en) Universal damping mechanism
JP6570560B2 (en) Hinge
KR101138288B1 (en) Stay Bar for Turning Type Window
JP2008008015A (en) Hidden hinge
JP4956676B2 (en) Biaxial hinge device
JP2022067000A (en) Door stopper
JP2017218879A (en) Door hinge
JP2012041688A (en) Pivot hinge
JP5336719B2 (en) Shock absorber
KR200361241Y1 (en) door shock absorber
JP4999001B2 (en) Folding door device
KR20090090837A (en) Door hinge
RU2808781C2 (en) Hinge for furniture door and furniture frame having such hinge
CN216641785U (en) Hinge assembly
JP5292275B2 (en) Opening restriction device in hinged door device
JP2008248598A (en) Buffer
JP4272955B2 (en) Door opening angle regulating device
JP5323629B2 (en) Door closer

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20180330

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20190123

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20190219

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20190406

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20190723

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20190806

R150 Certificate of patent or registration of utility model

Ref document number: 6570560

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250