JP5220681B2 - Mounting structure for surface lock - Google Patents

Mounting structure for surface lock Download PDF

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JP5220681B2
JP5220681B2 JP2009106624A JP2009106624A JP5220681B2 JP 5220681 B2 JP5220681 B2 JP 5220681B2 JP 2009106624 A JP2009106624 A JP 2009106624A JP 2009106624 A JP2009106624 A JP 2009106624A JP 5220681 B2 JP5220681 B2 JP 5220681B2
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mounting structure
stud bolts
glass door
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JP2010255298A (en
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龍司 村上
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美和ロック株式会社
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本発明は、面付錠の取付構造に関し、特に、面付錠の取付高さを一定にするとともに、面付錠のズレを防止する改良技術に関する。   The present invention relates to a mounting structure for a surface lock, and more particularly to an improved technique for making the mounting height of the surface lock constant and preventing the displacement of the surface lock.

近年、ガラス素材の強度向上によって全面ガラス扉が多用されるようになってきている。全面ガラス扉は、例えばオフィスビルの玄関や店舗の入り口に設置される場合、施錠装置を設ける必要がある。従来、この種の全面ガラス扉に施錠装置を設けるには、吊元金具や、上框、下框、或いは中央部に付設した金属枠部に施錠装置を設けるのが一般的であった。
ところが、施錠装置を設けるために金属枠部分を付設するのでは、折角の全面ガラス扉の意匠性を低下させることがあり、好ましくはこれら金属枠部分が設けられない方が良い。
このような不具合を解消するものに、扉ガラス素材に直接穿設した取付穴を利用して、施錠装置のみを全面ガラス扉に取り付けた特許文献1のドア錠が提案されている。
このドア錠によれば、全面ガラス扉に施錠装置を設けるための金属枠部を付設せずに、全面ガラス扉の開閉端にドア錠のみを取り付けでき、全面ガラス扉の意匠性を損ねず、見栄えを向上させることができた。
In recent years, glass doors have been frequently used due to the improvement in strength of glass materials. For example, when the full glass door is installed at an entrance of an office building or a store entrance, it is necessary to provide a locking device. Conventionally, in order to provide a locking device on this type of full-surface glass door, it has been common to provide a locking device on a hanging metal fitting, an upper collar, a lower collar, or a metal frame attached to the center.
However, if a metal frame portion is provided in order to provide a locking device, the design of the folded glass door may be lowered, and it is preferable that these metal frame portions are not provided.
In order to solve such a problem, the door lock of Patent Document 1 in which only the locking device is attached to the entire glass door using an attachment hole directly drilled in the door glass material has been proposed.
According to this door lock, it is possible to attach only the door lock to the open / close end of the full surface glass door without attaching a metal frame part for providing a locking device to the full surface glass door, without impairing the design of the full surface glass door, I was able to improve the appearance.

特表2002−523660号公報JP 2002-523660 Gazette

ガラス扉に取り付けられる面付錠は、ガラス扉を貫通する複数のスタッドボルトを介してガラス扉を表裏面から挟んで取り付けられる。この際、面付錠の裏面とガラス扉面とには、ズレ止めなどの目的でゴム板製のライナーが挟まれる。
しかしながら、ガラス扉の場合、その素材の弾性の乏しい素材特性から、食い込みや撓みが全く発生せず、スタッドボルトの締込みにより、ゴム板がどこまでも潰れてしまい、弾性限度を超える。このため、それぞれのスタッドボルトの締結状態が均等になり難く、面付錠のガラス扉面に対する取り付け高さが一定にならないことがある。また、ゴム板が弾性限度を超えて薄く延びてしまうため、弾性復元力が得られず、その結果、取付構造に緩みが生じ、面付錠がズレ易くなることがあった。
The surfaced lock attached to the glass door is attached by sandwiching the glass door from the front and back surfaces through a plurality of stud bolts penetrating the glass door. At this time, a liner made of a rubber plate is sandwiched between the back surface of the surface lock and the glass door surface for the purpose of preventing displacement.
However, in the case of a glass door, the material characteristic of the material having poor elasticity does not cause any biting or bending, and the rubber plate is crushed by the tightening of the stud bolt, exceeding the elastic limit. For this reason, the fastening state of each stud bolt is difficult to be uniform, and the mounting height of the face-locking on the glass door surface may not be constant. Further, since the rubber plate extends thinly beyond the elastic limit, an elastic restoring force cannot be obtained. As a result, the mounting structure is loosened, and the surfaced lock may be easily displaced.

本発明は上記状況に鑑みてなされたもので、面付錠の取付高さを一定にできるとともに、面付錠のズレを防止できる面付錠の取付構造を提供し、もって、取付状態の安定化を図ることを目的とする。   The present invention has been made in view of the above situation, and provides a mounting structure for a surface-mounted lock that can make the mounting height of the surface-mounted lock constant and prevent displacement of the surface-mounted lock, thereby stabilizing the mounting state. The purpose is to make it easier.

次に、上記の課題を解決するための手段を、実施の形態に対応する図面を参照して説明する。
本発明の請求項1記載の面付錠の取付構造は、ガラス扉11を貫通する複数のスタッドボルト41を介して前記ガラス扉11を表裏面から挟んで取り付けられる面付錠100の取付構造であって、
複数の透孔53を有し面付錠100の裏面形状と略同一形状に形成されてガラス扉面55と前記裏面57とに挟持される樹脂プレート51と、
前記裏面57に固定されるとともに前記透孔53の内周に間隙69を有して配置され前記樹脂プレート51の扉当接面51aより突出するゴム板67と、
を具備したことを特徴とする。
Next, means for solving the above problems will be described with reference to the drawings corresponding to the embodiments.
The attachment structure of the surface lock according to claim 1 of the present invention is an attachment structure of the surface lock 100 attached by sandwiching the glass door 11 from the front and back surfaces via a plurality of stud bolts 41 penetrating the glass door 11. There,
A resin plate 51 having a plurality of through-holes 53 and formed in substantially the same shape as the back surface shape of the surface-coated lock 100 and sandwiched between the glass door surface 55 and the back surface 57;
A rubber plate 67 that is fixed to the back surface 57 and that is disposed with a gap 69 on the inner periphery of the through-hole 53 and protrudes from the door contact surface 51a of the resin plate 51;
It is characterized by comprising.

この面付錠の取付構造では、スタッドボルト41が締結されると、樹脂プレート51の扉当接面51aから突出したゴム板67が圧縮され、扉当接面51aがガラス扉面55に当接して締結が完了する。この際、ゴム板67が弾性限度内で圧縮され、弾性復元力が持続する。すなわち、ゴム板67が過剰に薄く延ばされて、弾性限度を超えることがない。これにより、均一な厚みの樹脂プレート51が挟持されて固定が完了し、面付錠100の取付高さが一定になるとともに、ゴム板67の弾性復元力により締結位置からのズレが防止される。   In this surface-locking mounting structure, when the stud bolt 41 is fastened, the rubber plate 67 protruding from the door contact surface 51a of the resin plate 51 is compressed, and the door contact surface 51a contacts the glass door surface 55. The conclusion is completed. At this time, the rubber plate 67 is compressed within the elastic limit, and the elastic restoring force is maintained. That is, the rubber plate 67 does not extend excessively thinly and does not exceed the elastic limit. Thereby, the resin plate 51 having a uniform thickness is sandwiched and the fixing is completed, the mounting height of the surface lock 100 is constant, and the displacement from the fastening position is prevented by the elastic restoring force of the rubber plate 67. .

請求項2記載の面付錠の取付構造は、請求項1記載の面付錠の取付構造であって、
前記樹脂プレート51を略等面積に区画した領域73,75において前記スタッドボルト41の数の多い領域75に配置される前記ゴム板67が、前記スタッドボルト41の数の少ない領域73に配置される前記ゴム板67よりも硬いことを特徴とする。
The mounting structure of the surface-locking according to claim 2 is the mounting structure of the surface-locking according to claim 1,
The rubber plate 67 disposed in the region 75 having a large number of stud bolts 41 in the regions 73 and 75 in which the resin plate 51 is divided into substantially equal areas is disposed in the region 73 having a small number of stud bolts 41. It is characterized by being harder than the rubber plate 67.

この面付錠の取付構造では、樹脂プレート51において、スタッドボルト41の数の多い領域75と、スタッドボルト41の数の少ない領域73とが混在し、スタッドボルト41の数の多い領域75でスタッドボルト41が締め付けられるとその領域75全体の締め付け力は、スタッドボルト41の少ない領域73全体の締め付け力よりも大きくなるが、硬いゴム板67bが挟まれていることで、ゴム板67bの反発力も大きくなる。その結果、各領域73,75において樹脂プレート51の挟持力が均一となる。   In this surface-attached lock mounting structure, in the resin plate 51, a region 75 having a large number of stud bolts 41 and a region 73 having a small number of stud bolts 41 are mixed. When the bolt 41 is tightened, the tightening force of the entire region 75 is larger than the tightening force of the entire region 73 having a small number of stud bolts 41. However, since the hard rubber plate 67b is sandwiched, the repulsive force of the rubber plate 67b is also increased. growing. As a result, the clamping force of the resin plate 51 is uniform in each of the regions 73 and 75.

請求項3記載の面付錠の取付構造は、請求項1記載の面付錠の取付構造であって、
前記樹脂プレートを略等面積に区画した領域73,75において前記スタッドボルト41の数の多い領域75に配置される前記透孔53及び前記ゴム板67が、前記スタッドボルト41の数の少ない領域73に配置される前記透孔53及び前記ゴム板67よりも多いことを特徴とする。
The attachment structure of the surface lock according to claim 3 is the attachment structure of the surface lock according to claim 1,
In the regions 73 and 75 in which the resin plate is divided into substantially equal areas, the through holes 53 and the rubber plate 67 arranged in the region 75 having a large number of stud bolts 41 are regions 73 having a small number of stud bolts 41. The number of the through holes 53 and the number of the rubber plates 67 are larger than that of the rubber plate 67.

この面付錠の取付構造では、スタッドボルト41の数の多い領域75と、スタッドボルト41の数の少ない領域73とが混在し、スタッドボルト41の数の多い領域75でスタッドボルト41が締め付けられると、その領域75全体の締め付け力は、スタッドボルト41の少ない領域73全体の締め付け力よりも大きくなるが、ゴム板67の数も多いことで、ゴム板67の反発力も大きくなる。その結果、各領域73,75において樹脂プレート51の挟持力が均一となる。   In this surface-attached lock mounting structure, a region 75 having a large number of stud bolts 41 and a region 73 having a small number of stud bolts 41 are mixed, and the stud bolt 41 is tightened in a region 75 having a large number of stud bolts 41. Then, the tightening force of the entire region 75 is larger than the tightening force of the entire region 73 having a small number of stud bolts 41, but the repulsive force of the rubber plate 67 is increased due to the large number of rubber plates 67. As a result, the clamping force of the resin plate 51 is uniform in each of the regions 73 and 75.

請求項4記載の面付錠の取付構造は、請求項1,2,3記載のいずれか1つに記載の面付錠の取付構造であって、
前記スタッドボルト41の数の多い領域75にシリンダー錠29が配設されることを特徴とする。
The mounting structure of the surface-locking according to claim 4 is the mounting structure of the surface-locking according to any one of claims 1, 2, and 3,
A cylinder lock 29 is disposed in a region 75 having a large number of stud bolts 41.

この面付錠の取付構造では、シリンダー錠29の配置領域75には他の領域73より多くのスタッドボルト41が設けられ、固定強度が高まる。その一方で、上記の硬いゴム板67bの配設やゴム板数67の増加により、各領域73,75での樹脂プレート51の挟持力は均一となり、取付高さに差異が生じない。   In this surface-attached lock mounting structure, more stud bolts 41 are provided in the arrangement region 75 of the cylinder lock 29 than in the other regions 73, and the fixing strength is increased. On the other hand, due to the arrangement of the hard rubber plate 67b and the increase in the number of rubber plates 67, the clamping force of the resin plate 51 in each of the regions 73 and 75 becomes uniform, and there is no difference in the mounting height.

本発明に係る請求項1記載の面付錠の取付構造によれば、透孔を有しガラス扉面と面付錠裏面とに挟持される樹脂プレートと、面付錠裏面に固定されるとともに透孔に配置され樹脂プレートの扉当接面より突出するゴム板とを備えたので、面付錠の取付高さを一定にできるとともに、面付錠のズレを防止できる。この結果、従来、ゴムライナーだけでは安定しなかった取付状態を安定させることができる。   According to the surface-attached lock mounting structure of claim 1 according to the present invention, the resin plate that has a through hole and is sandwiched between the glass door surface and the surface-locked back surface, and is fixed to the surface-locked back surface. Since the rubber plate which is disposed in the through hole and protrudes from the door contact surface of the resin plate is provided, the mounting height of the surface lock can be made constant and the displacement of the surface lock can be prevented. As a result, it is possible to stabilize the mounting state that was not stable with the rubber liner alone.

請求項2記載の面付錠の取付構造によれば、スタッドボルトの数の多い領域に配置されるゴム板が、スタッドボルトの数の少ない領域に配置されるゴム板よりも硬いので、スタッドボルトの数の多い領域では、スタッドボルトを締め付けたときに生じるゴム板の反発力が大きくなり、各領域において樹脂プレートの挟持力が均一となり、取付高さの差異を生じ難くできる。   According to the mounting structure of the surface-coated lock according to claim 2, the rubber plate disposed in the region having a large number of stud bolts is harder than the rubber plate disposed in the region having a small number of stud bolts. In the region where the number of is large, the repulsive force of the rubber plate generated when the stud bolt is tightened becomes large, the holding force of the resin plate becomes uniform in each region, and the difference in the mounting height can be made difficult.

請求項3記載の面付錠の取付構造によれば、スタッドボルトの数の多い領域に配置される透孔及びゴム板が、スタッドボルトの数の少ない領域に配置される透孔及びゴム板よりも多いので、スタッドボルトを締め付けたときにゴム板に生じる反発力が等しくなり、各領域において樹脂プレートの挟持力が均一となり、取付高さの差異を生じ難くできる。   According to the mounting structure of the surface-coated lock according to claim 3, the through holes and the rubber plate arranged in the region having a large number of stud bolts are more than the through holes and the rubber plate arranged in a region having a small number of stud bolts. Therefore, the repulsive force generated in the rubber plate when the stud bolt is tightened becomes equal, the holding force of the resin plate becomes uniform in each region, and the difference in mounting height can be made difficult.

請求項4記載の面付錠の取付構造によれば、スタッドボルトの数の多い領域にシリンダー錠が配設されるので、シリンダー錠の配置領域における固定強度を高めながら、面付錠取付高さの差異を生じ難くできる。   According to the mounting structure of the surface lock according to claim 4, since the cylinder lock is disposed in the region where the number of stud bolts is large, the surface lock mounting height is increased while increasing the fixing strength in the region where the cylinder lock is disposed. It is difficult to make a difference.

本発明の実施の形態に係る取付構造で面付錠が取り付けられたガラス扉の正面図The front view of the glass door to which the surface lock was attached with the attachment structure which concerns on embodiment of this invention 図1に示した面付錠の取付部分の横断面図である。It is a cross-sectional view of the attachment part of the surface-mounted lock | rock shown in FIG. 図2に示した面付錠を裏面側から見た斜視図である。It is the perspective view which looked at the lock with a surface shown in FIG. 2 from the back surface side. 図3の分解斜視図である。FIG. 4 is an exploded perspective view of FIG. 3. 実施の形態の取付構造における要部断面図である。It is principal part sectional drawing in the attachment structure of embodiment.

以下、本発明の実施の形態を図面を参照して説明する。
図1は本発明の実施の形態に係る取付構造で面付錠が取り付けられたガラス扉の正面図、図2は図1に示した面付錠の取付部分の横断面図、図3は図2に示した面付錠を裏面側から見た斜視図である。
本実施の形態による面付錠の取付構造は、ガラス開閉体である例えば両開きの全面ガラス扉に用いて好適となる。この他、当該取付構造は、片開きの全面ガラス扉、両開き・片開きのスチール扉等に用いることもできる。本実施の形態では、当該取付構造を備えた図1に示す面付錠100が両開きの全面ガラス扉11(11a,11b)に設けられる例を説明する。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
FIG. 1 is a front view of a glass door to which a face lock is attached in the attachment structure according to the embodiment of the present invention, FIG. 2 is a cross-sectional view of the attachment portion of the face lock shown in FIG. 1, and FIG. It is the perspective view which looked at the lock with face shown in 2 from the back side.
The attachment structure of the face-locking according to the present embodiment is suitable for use in, for example, a double-sided full-face glass door that is a glass opening / closing body. In addition, the mounting structure can be used for a single-open full-surface glass door, a double-open / single-open steel door, and the like. In the present embodiment, an example will be described in which the surface lock 100 shown in FIG. 1 having the mounting structure is provided on the double-sided full-face glass door 11 (11a, 11b).

建物開口の左右にはガラスパネル13,13が設けられ、ガラスパネル13,13は開口サッシ等に取付固定されている。ガラスパネル13,13に挟まれる出入口開口部には上記した一対のガラス扉11a,11bがヒンジ15,15を介して開閉自在に支持され、ガラス扉11a,11bは一方向(本実施の形態では図1の紙面裏となる室外側)へ開放規制可能となる。   Glass panels 13 and 13 are provided on the left and right of the building opening, and the glass panels 13 and 13 are fixedly attached to an opening sash or the like. The pair of glass doors 11a and 11b described above are supported by hinges 15 and 15 so that the glass doors 11a and 11b can be opened and closed between the glass panels 13 and 13 through hinges 15 and 15, respectively. It is possible to restrict the opening to the outdoor side (the back of the paper in FIG. 1).

ガラス扉11a,11bは、例えば一方のガラス扉11aが開閉規制され、他方のガラス扉11bのみが開閉可能となる。この場合、一方のガラス扉11aの開閉規制は、ヒンジ15等に設けられる開閉規制手段等によって可能となる。この状態で、他方のガラス扉11bが一方のガラス扉11aへ施錠されれば、一対のガラス扉11a,11bの双方は、開閉規制された施錠状態となる。本実施の形態の面付錠100は、他方のガラス扉11bを一方のガラス扉11aへ施錠するように働く。   As for glass doors 11a and 11b, for example, one glass door 11a is restricted from opening and closing, and only the other glass door 11b can be opened and closed. In this case, the opening / closing regulation of one glass door 11a can be performed by an opening / closing regulating means provided on the hinge 15 or the like. In this state, if the other glass door 11b is locked to the one glass door 11a, both the pair of glass doors 11a and 11b are in a locked state in which opening and closing is restricted. The surface-coated lock 100 according to the present embodiment works to lock the other glass door 11b to the one glass door 11a.

一方のガラス扉11aには被係止体17が取り付けられ、被係止体17は面付錠100から突出する図2に示すデッドボルト兼用ラッチ(以下、単に、「ラッチ」とも称す。)25の先端を係止可能としている。つまり、一方のガラス扉11aが固定されている状態で、他方のガラス扉11bは、ラッチ25が被係止体17に係止することで、室内側(図1の紙面表側、図2の上側)への開放が規制される。   A locked body 17 is attached to one of the glass doors 11a, and the locked body 17 protrudes from the face lock 100 and is a dead-bolt latch (hereinafter simply referred to as “latch”) 25 shown in FIG. The tip can be locked. In other words, in a state where one glass door 11a is fixed, the other glass door 11b has the latch 25 locked to the locked body 17 so that the indoor side (the front side of FIG. 1, the upper side of FIG. 2). ) Is restricted.

面付錠100は、錠ケース21と、開閉操作部材であるレバーハンドル23A,23Bと、ラッチ25と、レバーハンドル23A,23Bに並設される施解錠操作部材としてのサムターン27及びシリンダー錠29と、トリガー31(図3参照)とが外部に表出して設けられている。錠ケース21は、室外側ケース21aと、室内側ケース21bとからなる。室外側ケース21aと室内側ケース21bとは、ガラス扉11bの扉開閉端32を挟持して取り付けられる。   The face lock 100 includes a lock case 21, lever handles 23A and 23B as opening / closing operation members, a latch 25, a thumb turn 27 and a cylinder lock 29 as locking / unlocking operation members arranged in parallel with the lever handles 23A and 23B. The trigger 31 (see FIG. 3) is provided outside. The lock case 21 includes an outdoor case 21a and an indoor case 21b. The outdoor case 21a and the indoor case 21b are attached with the door open / close end 32 of the glass door 11b being sandwiched.

面付錠100は、ガラス扉11bに固定された錠ケース21から進退するラッチ25の先端を扉開閉端32から突出させて、被係止体17に係止することでガラス扉11bを施錠、すなわち開扉規制状態とする。レバーハンドル23A,23Bは、軸部35がガラス扉11b及び錠ケース21を貫通して回動自在となっている。面付錠100は、レバーハンドル23A,23Bが用いられることで、開閉操作部材が例えば玉状握りハンドル等である場合に比べ、回動中心(軸部35の中心)から操作力の印加される作用点までの距離が大きく確保され、少ない回転操作力が容易且つ確実に錠機構へ入力可能となっている。   The surface lock 100 locks the glass door 11b by protruding the front end of a latch 25 that moves forward and backward from the lock case 21 fixed to the glass door 11b from the door opening / closing end 32 and locking it to the locked body 17. That is, the door opening restricted state is set. The lever handles 23 </ b> A and 23 </ b> B are pivotable with the shaft portion 35 penetrating the glass door 11 b and the lock case 21. Since the lever handle 23A, 23B is used for the surface lock 100, an operation force is applied from the rotation center (center of the shaft portion 35) as compared with the case where the opening / closing operation member is a ball grip handle or the like. A large distance to the action point is ensured, and a small rotational operation force can be easily and reliably input to the lock mechanism.

本実施の形態による面付錠100の取付構造では、ガラス扉11bに、一対の錠箱37,39が表裏から挟着される。錠箱37,39は、上記室内側ケース21b、室外側ケース21aに覆われる。室内側錠箱39には複数、本実施の形態では4本のスタッドボルト41(41a,41b,41c),42の基端部が加締め等により固定される。スタッドボルト41はガラス扉11bの貫通穴43(図5参照)を貫通して室外側ケース21aに挿入され、錠箱37の表面から挿入された固定ネジ45に先端面の雌ネジ47が螺着される。つまり、面付錠100は、ガラス扉11bを貫通する複数のスタッドボルト41a,41b,41cを介してガラス扉11bを表裏面から挟んで取り付けられる。なお、図3中、42は錠箱37,39の相対位置を位置決めする位置決め軸を示す。   In the mounting structure of the surface-coated lock 100 according to the present embodiment, a pair of lock boxes 37 and 39 are sandwiched from the front and back sides of the glass door 11b. The lock boxes 37 and 39 are covered with the indoor case 21b and the outdoor case 21a. A plurality of, in the present embodiment, four stud bolts 41 (41a, 41b, 41c), 42 are fixed to the indoor side lock box 39 by caulking or the like. The stud bolt 41 passes through the through hole 43 (see FIG. 5) of the glass door 11 b and is inserted into the outdoor case 21 a, and the female screw 47 on the front end face is screwed onto the fixing screw 45 inserted from the surface of the lock box 37. Is done. That is, the surface-coated lock 100 is attached by sandwiching the glass door 11b from the front and back surfaces via a plurality of stud bolts 41a, 41b, 41c penetrating the glass door 11b. In FIG. 3, reference numeral 42 denotes a positioning shaft for positioning the relative positions of the lock boxes 37 and 39.

本実施の形態では、スタッドボルト41の基端部が室内側の錠箱39に固定されるが、スタッドボルト41は上記構成と逆に室外側の錠箱37に固定されてもよい。この場合、スタッドボルト41の雌ネジ47には、室内側の錠箱39に挿入された固定ネジ45が螺着される。   In the present embodiment, the base end portion of the stud bolt 41 is fixed to the indoor lock box 39. However, the stud bolt 41 may be fixed to the outdoor lock box 37 in the reverse configuration. In this case, the fixing screw 45 inserted into the lock box 39 on the indoor side is screwed onto the female screw 47 of the stud bolt 41.

図4は図3の分解斜視図、図5は実施の形態の取付構造における要部断面図である。
面付錠100は、ガラス扉11bとの間に樹脂製、例えばポリプロピレン製のプレートであるライナー51を挟んで取り付けられる。ライナー51は、複数、本実施の形態では4つの透孔53を有し、面付錠(室内側ケース21b)の裏面形状と略同一形状に形成されて、ガラス扉面55と面付錠100の裏面(錠箱39の裏面57)とに挟持される。
4 is an exploded perspective view of FIG. 3, and FIG. 5 is a cross-sectional view of a main part in the mounting structure of the embodiment.
The face lock 100 is attached with a liner 51, which is a plate made of resin, for example, polypropylene, between the glass door 11b. The liner 51 has a plurality of, in this embodiment, four through-holes 53 and is formed in substantially the same shape as the back surface shape of the surface lock (inner side case 21 b), and the glass door surface 55 and the surface lock 100. And the back surface (the back surface 57 of the lock box 39).

より正確には、図5に示すように、錠箱39の裏面57は、室内側ケース21bの後面59より低くなっている。つまり、凹んでいる。錠箱39の裏面57に密接したライナー51は、扉当接面51aが、室内側ケース21bの後面59と同一平面又はそれよりも若干高く位置する。なお、図4中、61は施解錠操作部材(サムターン27、シリンダー錠29)の連結穴、63は軸部35の貫通穴、65は位置決め軸42の貫通穴を示す。   More precisely, as shown in FIG. 5, the back surface 57 of the lock box 39 is lower than the rear surface 59 of the indoor case 21b. That is, it is recessed. The liner 51 that is in close contact with the back surface 57 of the lock box 39 has the door contact surface 51a positioned flush with or slightly higher than the rear surface 59 of the indoor case 21b. In FIG. 4, reference numeral 61 denotes a connection hole for the locking / unlocking operation member (thumbturn 27, cylinder lock 29), 63 denotes a through hole in the shaft portion 35, and 65 denotes a through hole in the positioning shaft 42.

錠箱39の裏面57には、透孔53に一致する位置で複数の円板状のゴム板67が固定される。ゴム板67は、透孔53と同心円状に配置されることで、透孔53の内周に間隙69(図5参照)を有して配置される。この間隙69は、ゴム板67が圧縮されて延展したときの収容空間となる。また、ゴム板67は、ライナー51の扉当接面51aより締め代dだけ突出する。固定ネジ45が締め込まれていない状態で、ライナー51の扉当接面51aとガラス扉面55との間には締め代dの間隙が空く。この間隙は固定ネジ45の締め込みが完了することでなくなる。締め代dは、ゴム板67の弾性範囲内となる歪み量で設定されている。   A plurality of disk-shaped rubber plates 67 are fixed to the back surface 57 of the lock box 39 at positions corresponding to the through holes 53. The rubber plate 67 is disposed concentrically with the through-hole 53, so that the rubber plate 67 is disposed with a gap 69 (see FIG. 5) on the inner periphery of the through-hole 53. The gap 69 serves as an accommodation space when the rubber plate 67 is compressed and extended. Further, the rubber plate 67 protrudes from the door contact surface 51a of the liner 51 by a fastening allowance d. In a state where the fixing screw 45 is not tightened, a gap of a tightening allowance d is provided between the door contact surface 51a of the liner 51 and the glass door surface 55. This gap is not due to the completion of tightening of the fixing screw 45. The fastening allowance d is set by the amount of strain that falls within the elastic range of the rubber plate 67.

本実施の形態において、ライナー51は、略等面積に区画した領域、例えば図4に示す区画線71にて二分割される左右の領域73,75において、スタッドボルト41の数の多い、この例では3本有する領域75に配置されるゴム板67b,67bが、スタッドボルト41の数の少ない領域、この例では1本も配置されない領域73に配置されるゴム板67a,67aよりも硬い硬度となっている。なお。これらゴム板67の素材としては、EPDM(エチレン−プロピレン−ジエンゴム)が好ましい。   In the present embodiment, the liner 51 has a large number of stud bolts 41 in a region divided into substantially equal areas, for example, left and right regions 73 and 75 divided into two by a dividing line 71 shown in FIG. Then, the rubber plates 67b, 67b arranged in the region 75 having three are harder than the rubber plates 67a, 67a arranged in the region where the number of stud bolts 41 is small, in this example, the region 73 where none is arranged. It has become. Note that. As a material of these rubber plates 67, EPDM (ethylene-propylene-diene rubber) is preferable.

ライナー51において、スタッドボルト41の数の多い領域75と、スタッドボルト41の数の少ない領域73が混在し、スタッドボルト41の数の多い領域75でスタッドボルト41が締め付けられるとその領域75全体の締め付け力は、スタッドボルト41の少ない領域73全体の締め付け力よりも大きくなるが、硬いゴム板67b,67bが挟まれていることで、ゴム板67b,67bの反発力も大きくなる。その結果、各領域73,75においてライナー51の挟持力が均一となる。これにより、各領域73,75間での取付高さの差異を生じ難くしている。   In the liner 51, the region 75 having a large number of stud bolts 41 and the region 73 having a small number of stud bolts 41 are mixed, and when the stud bolt 41 is tightened in the region 75 having a large number of stud bolts 41, The tightening force is larger than the tightening force of the entire region 73 having a small number of stud bolts 41, but the repulsive force of the rubber plates 67b and 67b is increased by sandwiching the hard rubber plates 67b and 67b. As a result, the clamping force of the liner 51 is uniform in each of the regions 73 and 75. This makes it difficult to produce a difference in mounting height between the regions 73 and 75.

仮に、全てのゴム板67が同一の硬さであると、領域75に配置されるゴム板67が、領域73に配置されるゴム板67よりも早く圧縮されて、ライナー51と同一厚みとなる。このため、ライナー51に過剰な締め付け力が作用し、ライナー51自身の圧縮や錠箱39の変形により、領域75側が余計に締め付けられ、低く取り付けられる可能性が発生する。逆に領域73に配置されるゴム板67は、同一高さ且つ同数であるため、スタッドボルト41による締め付け力が作用し難く、ライナー51の扉当接面51aがガラス扉面55に押しつけられなかったり、当接しなかったりする状態、すなわち、高く取り付けられる可能性が発生する。本構成では、ゴム板67の硬さを変えることで、このような各領域73,75間での取付高さの差異を生じ難くしている。   If all the rubber plates 67 have the same hardness, the rubber plate 67 disposed in the region 75 is compressed faster than the rubber plate 67 disposed in the region 73 and has the same thickness as the liner 51. . For this reason, an excessive tightening force is applied to the liner 51, and the region 75 side is excessively tightened due to the compression of the liner 51 itself or the deformation of the lock box 39, and there is a possibility that the liner 51 is attached low. Conversely, since the rubber plates 67 arranged in the region 73 have the same height and the same number, the fastening force by the stud bolt 41 is difficult to act, and the door contact surface 51a of the liner 51 is not pressed against the glass door surface 55. Or a state where they do not come into contact with each other, that is, there is a possibility that they are attached with high. In this configuration, by changing the hardness of the rubber plate 67, such a difference in mounting height between the regions 73 and 75 is made difficult to occur.

なお、本実施の形態では、ゴム板67の硬度を変えることで、スタッドボルト41の配置バランスに対応させるが、この他の対策として、ライナー51を略等面積に区画した領域73,75においてスタッドボルト41の数の多い領域75に配置される透孔53及びゴム板67を、スタッドボルト41の数の少ない領域73に配置される透孔53及びゴム板67よりも多くする変形例に係る構成としてもよい。   In the present embodiment, the hardness of the rubber plate 67 is changed to correspond to the arrangement balance of the stud bolts 41. As another countermeasure, the studs in the regions 73 and 75 in which the liner 51 is divided into substantially equal areas are used. The structure which concerns on the modification which increases the through-hole 53 and the rubber plate 67 arrange | positioned in the area | region 75 with many bolts 41 from the through-hole 53 and rubber plate 67 arrange | positioned in the area | region 73 with few numbers of stud bolts 41. It is good.

このような変形例によれば、スタッドボルト41の数の多い領域75と、スタッドボルト41の数の少ない領域73とが混在し、スタッドボルト41の数の多い領域75でスタッドボルト41が締め付けられると、その領域75全体の締め付け力は、スタッドボルト41の少ない領域73全体の締め付け力よりも大きくなるが、ゴム板67の数も多いことで、ゴム板67の反発力も大きくなる。その結果、各領域73,75においてライナー51の挟持力が均一となる。これによっても、取付高さの差異を生じ難くできる。   According to such a modification, the region 75 having a large number of stud bolts 41 and the region 73 having a small number of stud bolts 41 are mixed, and the stud bolt 41 is tightened in the region 75 having a large number of stud bolts 41. Then, the tightening force of the entire region 75 is larger than the tightening force of the entire region 73 having a small number of stud bolts 41, but the repulsive force of the rubber plate 67 is increased due to the large number of rubber plates 67. As a result, the clamping force of the liner 51 is uniform in each of the regions 73 and 75. This also makes it difficult to produce a difference in mounting height.

また、スタッドボルト41の数の多い領域75には、シリンダー錠29が配設される。シリンダー錠29の配置領域には他の領域73より多くのスタッドボルト41が設けられ、固定強度が高まる。その一方で、上記の硬いゴム板67bの配設やゴム板数の増加により、各領域73,75でのライナー51の挟持力は均一となり、取付高さに差異が生じない。これにより、シリンダー錠29の配置領域75における固定強度を高めながら、面付錠取付高さの差異を生じ難くできる。   Further, the cylinder lock 29 is disposed in the region 75 having a large number of stud bolts 41. More stud bolts 41 are provided in the arrangement area of the cylinder lock 29 than in the other areas 73, and the fixing strength is increased. On the other hand, due to the arrangement of the hard rubber plate 67b and the increase in the number of rubber plates, the clamping force of the liner 51 in each of the regions 73 and 75 becomes uniform, and there is no difference in the mounting height. Thereby, the difference in the surface-attached lock mounting height can be made difficult to occur while increasing the fixing strength in the arrangement region 75 of the cylinder lock 29.

以上のように構成される面付錠100の取付構造では、スタッドボルト41が締結されると、ライナー51の扉当接面51aから突出したゴム板67が圧縮され、扉当接面51aがガラス扉面55に当接して締結が完了する。この際、ゴム板67が弾性限度内で圧縮され、弾性復元力が持続する。すなわち、ゴム板67が薄く延ばされて、弾性限度を超えることがない。これにより、均一な厚みのライナー51が挟持されて固定が完了し、面付錠100の取付高さが一定になるとともに、ゴム板67の弾性復元力によりズレが防止される。   In the mounting structure of the surface lock 100 configured as described above, when the stud bolt 41 is fastened, the rubber plate 67 protruding from the door contact surface 51a of the liner 51 is compressed, and the door contact surface 51a is made of glass. The fastening is completed by contacting the door surface 55. At this time, the rubber plate 67 is compressed within the elastic limit, and the elastic restoring force is maintained. That is, the rubber plate 67 is thinly extended and does not exceed the elastic limit. As a result, the liner 51 having a uniform thickness is sandwiched and the fixing is completed, the mounting height of the surface lock 100 becomes constant, and the elastic restoring force of the rubber plate 67 prevents the displacement.

したがって、本実施の形態による取付構造によれば、透孔53を有しガラス扉面55と面付錠裏面57とに挟持されるライナー51と、面付錠裏面57に固定されるとともに透孔53に配置されライナー51の扉当接面51aより突出するゴム板67とを備えたので、面付錠100の取付高さを一定にできるとともに、面付錠100のズレを防止できる。この結果、従来、ゴムライナーだけでは安定しなかったガラス扉11に対する面付錠100の取付状態を安定させることができる。   Therefore, according to the mounting structure of the present embodiment, the liner 51 that has the through-hole 53 and is sandwiched between the glass door surface 55 and the surface-attached lock back surface 57, and is fixed to the surface-attached lock back surface 57 and the through-hole. Since the rubber plate 67 that is arranged at 53 and protrudes from the door contact surface 51a of the liner 51 is provided, the mounting height of the surface lock 100 can be made constant, and the displacement of the surface lock 100 can be prevented. As a result, it is possible to stabilize the attachment state of the face-attached lock 100 to the glass door 11 that has not been stabilized with a rubber liner alone.

11…ガラス扉
29…シリンダー錠
41…スタッドボルト
51…ライナー(樹脂プレート)
51a…扉当接面
53…透孔
55…ガラス扉面
57…裏面
67…ゴム板
69…間隙
73,75…区画した領域
100…面付錠
11 ... Glass door 29 ... Cylinder lock 41 ... Stud bolt 51 ... Liner (resin plate)
51a ... Door contact surface 53 ... Through hole 55 ... Glass door surface 57 ... Back surface 67 ... Rubber plate 69 ... Gap 73,75 ... Partition area 100 ... Lock with surface

Claims (4)

ガラス扉を貫通する複数のスタッドボルトを介して前記ガラス扉を表裏面から挟んで取り付けられる面付錠の取付構造であって、
複数の透孔を有し面付錠の裏面形状と略同一形状に形成されてガラス扉面と前記裏面とに挟持される樹脂プレートと、
前記裏面に固定されるとともに前記透孔の内周に間隙を有して配置され前記樹脂プレートの扉当接面より突出するゴム板と、
を具備したことを特徴とする面付錠の取付構造。
It is a mounting structure of a lock with a surface that is attached by sandwiching the glass door from the front and back surfaces through a plurality of stud bolts that penetrate the glass door,
A resin plate that has a plurality of through holes and is formed in substantially the same shape as the back surface shape of the surface-coated lock, and is sandwiched between the glass door surface and the back surface;
A rubber plate that is fixed to the back surface and is disposed with a gap in the inner periphery of the through hole and protrudes from the door contact surface of the resin plate;
A mounting structure for a surface-mounted lock, comprising:
請求項1記載の面付錠の取付構造であって、
前記樹脂プレートを略等面積に区画した領域において前記スタッドボルトの数の多い領域に配置される前記ゴム板が、前記スタッドボルトの数の少ない領域に配置される前記ゴム板よりも硬いことを特徴とする面付錠の取付構造。
A mounting structure for a surface-coated lock according to claim 1,
The rubber plate disposed in a region having a large number of stud bolts in a region where the resin plate is divided into substantially equal areas is harder than the rubber plate disposed in a region having a small number of stud bolts. The mounting structure of the surface lock.
請求項1記載の面付錠の取付構造であって、
前記樹脂プレートを略等面積に区画した領域において前記スタッドボルトの数の多い領域に配置される前記透孔及び前記ゴム板が、前記スタッドボルトの数の少ない領域に配置される前記透孔及び前記ゴム板よりも多いことを特徴とする面付錠の取付構造。
A mounting structure for a surface-coated lock according to claim 1,
In the region where the resin plate is divided into substantially equal areas, the through hole and the rubber plate arranged in a region having a large number of stud bolts are arranged in the region having a small number of stud bolts and the A mounting structure for a surface-mounted lock, characterized in that there are more than rubber plates.
請求項1,2,3記載のいずれか1つに記載の面付錠の取付構造であって、
前記スタッドボルトの数の多い領域にシリンダー錠が配設されることを特徴とする面付錠の取付構造。
A mounting structure for a face-locking device according to any one of claims 1, 2, and 3,
A mounting structure for a surface-attached lock, wherein a cylinder lock is disposed in an area where the number of stud bolts is large.
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JP2551292Y2 (en) * 1993-02-19 1997-10-22 クローバ金属株式会社 Locking device
JPH09177383A (en) * 1995-12-22 1997-07-08 Hatsupoo Kagaku Kogyo Kk Handle mounting structure of door
DE19838623C1 (en) * 1998-08-26 2000-04-06 Dorma Gmbh & Co Kg Door lock for an all-glass door with a fixed glass side panel
JP4351515B2 (en) * 2003-11-07 2009-10-28 美和ロック株式会社 Improvised door lock

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