JPH04108769U - Runner mounting structure - Google Patents
Runner mounting structureInfo
- Publication number
- JPH04108769U JPH04108769U JP1184491U JP1184491U JPH04108769U JP H04108769 U JPH04108769 U JP H04108769U JP 1184491 U JP1184491 U JP 1184491U JP 1184491 U JP1184491 U JP 1184491U JP H04108769 U JPH04108769 U JP H04108769U
- Authority
- JP
- Japan
- Prior art keywords
- runner
- door
- base
- hanging door
- width direction
- 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.)
- Granted
Links
- 238000005553 drilling Methods 0.000 claims abstract description 10
- 239000011120 plywood Substances 0.000 abstract description 6
- 239000002023 wood Substances 0.000 abstract description 5
- 239000000463 material Substances 0.000 description 8
- 230000037431 insertion Effects 0.000 description 7
- 238000003780 insertion Methods 0.000 description 7
- 238000005452 bending Methods 0.000 description 4
- 230000004308 accommodation Effects 0.000 description 3
- 238000006243 chemical reaction Methods 0.000 description 2
- 230000000694 effects Effects 0.000 description 2
- 230000003014 reinforcing effect Effects 0.000 description 2
- 241000425915 Nuxia congesta Species 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 239000011094 fiberboard Substances 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- 238000010008 shearing Methods 0.000 description 1
- 239000000725 suspension Substances 0.000 description 1
Landscapes
- Support Devices For Sliding Doors (AREA)
Abstract
(57)【要約】
【目的】 戸が木質系の場合、とりわけ、全体的には剛
性を有しながらも局部的には脆性を有する合板等におい
て取付強度の増大を図る。
【構成】 吊戸6の上方角部に形成された堀込穴16に
ランナベース18が固定されているとともに、上部レー
ル2内を走行可能にランナ本体20が設けられ、ランナ
ベース18とランナ本体20とは軸部材22で連結され
ている。ランナベース18には、吊戸6の横幅方向に突
出する凸部34,36が形成されているとともに、堀込
穴16には凸部34,36に嵌合する嵌合凹部16a,
16bが形成され、これらの凹凸嵌合による係合部3
8,40が吊戸6の横幅方向にSの間隔をおいて形成さ
れている。
(57) [Summary] [Purpose] To increase the mounting strength when the door is made of wood, especially when using plywood, etc., which has overall rigidity but is locally brittle. [Structure] A runner base 18 is fixed to a drilling hole 16 formed in the upper corner of the hanging door 6, and a runner body 20 is provided so as to be able to run within the upper rail 2. The runner base 18 and the runner body 20 are connected to each other by a shaft member 22. The runner base 18 is formed with protrusions 34 and 36 that protrude in the width direction of the hanging door 6, and the digging hole 16 has a fitting recess 16a that fits into the protrusions 34 and 36,
16b is formed, and the engaging portion 3 is formed by fitting these recesses and recesses.
8 and 40 are formed at intervals of S in the width direction of the hanging door 6.
Description
【0001】0001
この考案は、吊戸、折戸、引戸等に用いられるランナの取付構造に関し、特に 木質系の戸に好適なランナの取付構造に関するものである。 This idea is particularly related to the mounting structure of runners used for hanging doors, folding doors, sliding doors, etc. This invention relates to a runner mounting structure suitable for wooden doors.
【0002】0002
この種のランナの取付構造では、従来、図6に示すように、例えば戸6の上方 角部にランナベース92が固定されるとともに、上部レール2内を走行可能にラ ンナ本体20が設けられ、このランナ本体20とランナベース92とは軸部材9 4で連結される構造となっている。そして、戸6に対するランナベース92の固 定は、戸6の角部の上端面6aと木口面6bとに亘って形成される堀込穴96に ランナベース92を嵌合するとともに、ねじ込みのための十分な奥行きを確保で きる戸6の横幅方向と高さ方向をもってそれぞれ固定ねじ42,42で止める形 態となっている。 Conventionally, in this type of runner mounting structure, as shown in FIG. A runner base 92 is fixed to the corner, and the runner base 92 is mounted so that it can run inside the upper rail 2. A runner body 20 is provided, and the runner body 20 and the runner base 92 are connected to the shaft member 9. The structure is connected by 4. Then, the runner base 92 is fixed to the door 6. The hole 96 is formed between the upper end surface 6a and the end surface 6b of the corner of the door 6. In addition to fitting the runner base 92, it is possible to ensure sufficient depth for screwing. A type that locks the sliding door 6 in the width direction and height direction with fixing screws 42, 42, respectively. It has become a state.
【0003】0003
ところで、上記のような戸の上部におけるランナの取付では、固定ねじ部位に は戸の荷重による引張応力F1 や曲げ応力F2 等が作用するが、ミクロ的にみれ ば、固定ねじのねじ山部位では戸に対して極めて大きな剪断応力が作用しており 、特に木質系の戸では素材的強度が小さいために、早期に固定ねじが緩んでガタ ツキを生じたり、あるいは固定ねじのスッポ抜けによる離脱事故を来す場合もあ った。By the way, when installing the runner at the top of the door as described above, tensile stress F 1 and bending stress F 2 due to the load of the door act on the fixing screw part, but from a microscopic perspective, the thread of the fixing screw Extremely large shearing stress is applied to the door at certain points, and wooden doors in particular have low material strength, so the fixing screws may loosen early and cause rattling, or the fixing screws may slip out and come off. Sometimes accidents occurred.
【0004】 木質系の中でもとりわけ、近時普及化傾向にあるパーティクルボードや繊維板 等の合板では、天然木のような木目等による組織立った強度を有しないため局部 的には極めて脆く、上記不具合が顕著となっている。このため、使用が制限され るきらいを否めなかった。また、上方吊持タイプのものでは、下方のランナには 戸の荷重が直接には作用しないが、戸の振れ等による動荷重に基づいた曲げ応力 等が作用し、よって長期的にみれば下方のランナにおいても同様の懸念を有する ものである。0004 Among wood-based materials, particleboard and fiberboard have become popular recently. Plywood such as It is extremely brittle, and the above-mentioned problems are noticeable. For this reason, its use is restricted. I couldn't deny that it was strange. In addition, for the upper suspension type, the lower runner Bending stress based on dynamic loads caused by swinging of the door, etc., although the load on the door does not directly act on it. etc., and therefore, in the long term, there are similar concerns for the lower runners. It is something.
【0005】 そこで、この考案は、戸の素材的強度に拘らず強固な固定強度を長期に亘って 維持でき、よって使用性の向上を図れるランナの取付構造の提供をその目的とす る。[0005] Therefore, this idea provides strong fixing strength over a long period of time regardless of the material strength of the door. The purpose is to provide a runner mounting structure that can be maintained and thus improve usability. Ru.
【0006】[0006]
この考案は、局部的には脆いがある程度の面積下では極めて強度が大きい合板 等の木質系の特徴を踏まえ、その固定構造への具体的利用を企図したもので、ラ ンナベースと堀込穴との間には、戸の横幅方向に突出する凸部とこの凸部に嵌合 する嵌合凹部とからなる係合部が戸の横幅方向に間隔を置いて少なくとも二か所 に形成されていることを特徴とする。 This idea is based on plywood, which is locally brittle but extremely strong over a certain area. Based on the characteristics of wood-based materials such as Between the inner base and the drilling hole, there is a convex part that protrudes in the width direction of the door, and a convex part that fits into this convex part. There are at least two engaging parts spaced apart in the width direction of the door. It is characterized by being formed.
【0007】[0007]
この考案によれば、凹凸嵌合による係合部によって、相対的な組込み構造が得 られ、これによって戸の材質に基づく局部的脆さが回避されるとともに、戸の荷 重に基づく応力に対する構造的強度が得られる。また、係合部が戸の横幅方向に 間隔をおいて設けられるので、荷重が分散され、全体の固定強度の増大がなされ る。 According to this invention, a relative built-in structure can be achieved by the engaging portion by concave-convex fitting. This avoids local fragility due to the material of the door and reduces the load on the door. Provides structural strength against weight-based stresses. Also, the engaging part is aligned in the width direction of the door. Since they are spaced apart, the load is distributed and the overall fixing strength is increased. Ru.
【0008】[0008]
図1乃至図5はこの考案の一実施例を示し、吊戸への適用例を示したものであ る。 Figures 1 to 5 show an embodiment of this invention, and show an example of its application to a hanging door. Ru.
【0009】 図5に示すように、上部レール2と下部レール4との間には、吊戸6がその上 方角部に取付けられた上部ランナ8,10と、下方角部に取付けられた下部ラン ナ12,14とによって移動可能に設けられている。[0009] As shown in FIG. 5, a hanging door 6 is installed between the upper rail 2 and the lower rail 4. The upper runners 8 and 10 are attached to the directional parts, and the lower runners are attached to the lower corner parts. 12 and 14 so as to be movable.
【0010】 上部ランナ8は、吊戸6の上方の角部の上端面6aと木口面6bとに亘って形 成される堀込穴16に固定されるランナベース18と、上部レール2内を走行す るランナ本体20と、このランナ本体20とランナベース18とを連結する軸部 材22とから構成されている。0010 The upper runner 8 is shaped to span the upper end surface 6a and the end surface 6b of the upper corner of the hanging door 6. The runner base 18 is fixed to the drilled hole 16 formed by the runner base 18, and the runner base 18 is a runner body 20, and a shaft portion that connects the runner body 20 and the runner base 18; It is composed of a material 22.
【0011】 ランナベース18は、堀込穴16に直接固定される固定ケース24と、この固 定ケース24に着脱可能に取付けられるホルダケース26とから概略構成されて いる。なお、この例では、ホルダケース26の内部には、木口面6bの外方から 部材の取外しを要することなく吊戸6と上部レール2との間の隙間調整、すなわ ち上下調整を行うための上下調整機構28が設けられている。上下調整機構28 については後述する。[0011] The runner base 18 includes a fixed case 24 that is directly fixed to the drilling hole 16, and a fixed case 24 that is directly fixed to the drilling hole 16. The holder case 26 is detachably attached to the fixed case 24. There is. In addition, in this example, there is no light inside the holder case 26 from the outside of the butt end surface 6b. The gap between the hanging door 6 and the upper rail 2 can be adjusted without removing any parts, i.e. Specifically, a vertical adjustment mechanism 28 is provided for vertical adjustment. Vertical adjustment mechanism 28 This will be discussed later.
【0012】 固定ケース24は、前面側(木口面6b側)と上面側が開口された本体部30 と、この本体部30の前面側下方に連設された補強部32とから概略構成されて いる。補強部32と本体部30の後面側とにはそれぞれ、吊戸6の横幅方向に同 一向きとなる凸部34,36が一体に形成されており、凸部34,36とこれら に対応して堀込穴16に形成される嵌合凹部16a,16bによってそれぞれ係 合部38,40が吊戸6の横幅方向に間隔Sをおいて構成されている。0012 The fixed case 24 has a main body portion 30 that is open on the front side (end side 6b side) and the top side. and a reinforcing part 32 connected to the lower front side of the main body part 30. There is. The reinforcing part 32 and the rear side of the main body part 30 are provided with the same width in the width direction of the hanging door 6. Convex portions 34, 36 facing one direction are integrally formed, and these convex portions 34, 36 and The fitting recesses 16a and 16b formed in the drilled hole 16 corresponding to the Joining parts 38 and 40 are configured with an interval S in the width direction of the hanging door 6.
【0013】 凸部34,36は、木工用穿孔具の穿孔形状をそのまま利用できるように略円 筒形に形成されており、中央部にはそれぞれ、リブ34a,36aを介して固定 ねじ42の挿通部34b,36bが形成されている。[0013] The protrusions 34 and 36 are approximately circular so that the hole shape of the woodworking tool can be used as is. It is formed into a cylindrical shape, and is fixed in the center via ribs 34a and 36a, respectively. Insertion portions 34b and 36b for screws 42 are formed.
【0014】 軸部材22は径大の頭部22aと、長軸部22bとからなり、頭部22aをラ ンナ本体20の上面に開口する収容孔20aの底面に係止されているとともに、 長軸部22bを収容孔20aより径小で収容孔20aに連通して下方に貫通する 挿通孔12bに挿通して設けられている。ランナ本体20の収容孔20aには、 軸部材22の頭部22aの頭上に位置して軸ピン44が横架されており、これに よって軸部材22はランナ本体20に抜け止めされた状態で回動可能に設けられ ている。符号45はランナ本体20の車輪を示す。また、軸部材22の下端部に は挿通孔22cが形成されており、この挿通孔22cを介して上下調整機構28 の揺動板84に軸ピン46で回動可能に取付けられている。[0014] The shaft member 22 consists of a large-diameter head 22a and a long shaft portion 22b, and the head 22a is It is locked to the bottom surface of the accommodation hole 20a that opens on the top surface of the inner body 20, and The long shaft portion 22b has a smaller diameter than the accommodation hole 20a, communicates with the accommodation hole 20a, and penetrates downward. It is provided to be inserted into the insertion hole 12b. In the housing hole 20a of the runner body 20, A shaft pin 44 is horizontally suspended above the head 22a of the shaft member 22, and Therefore, the shaft member 22 is provided so as to be rotatable while being secured to the runner body 20. ing. Reference numeral 45 indicates wheels of the runner body 20. Also, at the lower end of the shaft member 22, An insertion hole 22c is formed, and the vertical adjustment mechanism 28 is inserted through this insertion hole 22c. It is rotatably attached to the rocking plate 84 of 1 with a shaft pin 46.
【0015】 係合部38,40が軸部材22の両側に間隔をおいて位置する構成であるので 、それぞれの部位に作用する吊戸6の荷重による曲げ応力ないし剪断応力等が相 互に減殺されるとともに分散され、よって荷重集中の少ない安定した応力分布と なる。[0015] Since the engaging portions 38 and 40 are located on both sides of the shaft member 22 with a gap between them, , the bending stress or shear stress due to the load of the hanging door 6 acting on each part is mutually They are mutually reduced and dispersed, resulting in a stable stress distribution with less load concentration. Become.
【0016】 また、凹凸嵌合の係合部38,40によって固定のための接触面積が増大する ので、これによってランナベース18と堀込穴16との間に剪断応力に対する抗 力の大きい結合構造が形成される。吊戸6の荷重に対する基本的固定強度は係合 部38,40で確保されるので、固定ねじ42は単に堀込穴16に対するランナ ベース18の引留具としての役割を有するにすぎない。このため、固定ねじ42 は、局部的脆性を有する合板等においても常に緩みのない安定した螺合強度を維 持でき、これが係合部38,40による固定強度とも相まって吊戸6に対するラ ンナベース18の全体的固定強度が高められる。[0016] In addition, the contact area for fixing is increased by the engaging portions 38 and 40 of concave and convex fitting. Therefore, this creates resistance to shear stress between the runner base 18 and the drilled hole 16. A strong bond structure is formed. The basic fixing strength against the load of the hanging door 6 is the engagement 38 and 40, the fixing screw 42 is simply a runner for the drilled hole 16. It merely serves as a retainer for the base 18. For this reason, the fixing screw 42 maintains stable screw strength without loosening even on locally brittle plywood etc. This, together with the fixing strength of the engaging parts 38 and 40, makes it possible to hold the door against the hanging door 6. The overall fixing strength of the inner base 18 is increased.
【0017】 従って、吊戸6の素材が合板等の木質系であっても強固な固定状態を長期に亘 って維持することができ、ガタツキや離脱事故等を回避することができることは 勿論、吊戸6の素材的強度に拘らず積極的な使用拡大を図ることができる。[0017] Therefore, even if the hanging door 6 is made of wood such as plywood, it will remain firmly fixed for a long time. It is possible to maintain the same condition and avoid rattling and disengagement accidents. Of course, the use of the hanging door 6 can be actively expanded regardless of its material strength.
【0018】 下部ランナ12も上部ランナ8と同様に形成することができる。すなわち、図 3に示すように、下部ランナ12は、吊戸6の下方の角部の下端面6cと木口面 6bとに亘って形成される堀込穴48に固定されるランナベース50と、下部レ ール4内を走行するランナ本体52と、このランナ本体52とランナベース50 とを連結する軸部材54とから構成されている。[0018] The lower runner 12 can also be formed similarly to the upper runner 8. That is, fig. 3, the lower runner 12 has a lower end surface 6c of the lower corner of the hanging door 6 and a butt end surface. 6b, and the runner base 50 fixed in the drilling hole 48 formed across the lower plate. A runner body 52 that runs inside the wheel 4, and this runner body 52 and a runner base 50. and a shaft member 54 that connects the two.
【0019】 ランナベース50は凸部34,36を有する固定ケース24とホルダケース5 6とから構成され、ホルダケース56は取付ねじ58によって固定ケース24に 取付けられている。堀込穴48には凸部34,36に対応して嵌合凹部48a, 48bが形成されており、これによって係合部60,62が構成されている。ま た、ホルダケース56には、軸部材54を上下方向にスライド可能に支持する支 持部56aが形成されている。[0019] The runner base 50 includes a fixed case 24 having convex portions 34 and 36 and a holder case 5. 6, and the holder case 56 is attached to the fixed case 24 by a mounting screw 58. installed. The drilling hole 48 has fitting recesses 48a, corresponding to the protrusions 34, 36, 48b is formed, thereby forming the engaging portions 60, 62. Ma In addition, the holder case 56 includes a support that supports the shaft member 54 in a vertically slidable manner. A holding portion 56a is formed.
【0020】 ランナ本体52は略円柱形に形成され、軸部材54の下端部54aに座金64 ,66を介して抜け止め状態で且つ回転可能に取付けられている。また、軸部材 54の上端部と支持部56aとの間にはばね部材68が設定されており、下部レ ール4の上面に対するランナ本体52の接触が弾性的に緩和されるようになって いる。[0020] The runner body 52 is formed into a substantially cylindrical shape, and a washer 64 is attached to the lower end 54a of the shaft member 54. , 66 so as to be prevented from coming off and to be rotatable. In addition, the shaft member A spring member 68 is set between the upper end of 54 and the support part 56a, and The contact of the runner body 52 with the upper surface of the roll 4 is elastically relaxed. There is.
【0021】 下部ランナ12においては吊戸6の荷重が直接的には作用しないが、吊戸6が 振れを生じた場合等には、軸部材54を介して吊戸6の荷重に基づく曲げ応力等 がランナベース50に作用し、吊戸6が木質系の場合には長期的にみて既述の不 具合が懸念される。しかしながら、係合部60,62の存在によって上部ランナ 8と同様の固定強度が得られる。[0021] Although the load of the hanging door 6 does not act directly on the lower runner 12, the hanging door 6 When vibration occurs, bending stress, etc. due to the load of the hanging door 6 is applied via the shaft member 54. acts on the runner base 50, and if the hanging door 6 is made of wood, the aforementioned problems will occur in the long run. There are concerns about his condition. However, due to the presence of the engaging portions 60 and 62, the upper runner The same fixing strength as 8 can be obtained.
【0022】 次に上下調整機構28による上下調整機能並びに他の部位の構造を概略的に説 明する。上下調整機構28は、軸部材22を吊戸6の上下方向に移動させるため のねじ送り機構70と、ねじ送り機構70による操作力を軸部材22の上下移動 に変換する変換機構72とから構成されている。[0022] Next, we will briefly explain the vertical adjustment function of the vertical adjustment mechanism 28 and the structure of other parts. I will clarify. The vertical adjustment mechanism 28 is for moving the shaft member 22 in the vertical direction of the hanging door 6. The screw feeding mechanism 70 and the operating force from the screw feeding mechanism 70 are used to move the shaft member 22 up and down. and a conversion mechanism 72 for converting into.
【0023】 固定ケース24の上面三方には、ホルダケース26の上端にスライド係合する 係合縁24aが形成されており、固定ケース24の底面24bには、ホルダケー ス26を取付けるための取付ねじ74に対するねじ受部76が一体に形成されて いる。取付ねじ74はホルダケース26の前面に形成された挿通孔26aから挿 通されてねじ受部76に螺合される。[0023] Three sides of the upper surface of the fixed case 24 are slidably engaged with the upper end of the holder case 26. An engaging edge 24a is formed on the bottom surface 24b of the fixed case 24, and a holder case is formed on the bottom surface 24b of the fixed case 24. A screw receiving portion 76 for a mounting screw 74 for attaching the base 26 is integrally formed. There is. The mounting screw 74 is inserted through the insertion hole 26a formed on the front surface of the holder case 26. It is passed through and screwed into the screw receiving part 76.
【0024】 ねじ送り機構70は、操作部としての頭部78aを有するねじ軸78と、この ねじ軸78に螺合される移動ナット80とから構成されている。また、変換機構 72は、ホルダケース26に横架される軸ピン82と、この軸ピン82に回動可 能に支持され移動ナット80によって回動される揺動部材84とから概略構成さ れている。ねじ軸78は、ホルダケース26の前面に形成された挿通孔26bか ら挿通され、先端部をホルダケース26の後面に形成された透孔26cに支持さ れている。ねじ軸78の先端部には抜け止め部材85が設けられている。符号8 4aは移動ナット80の係合凹部を示し、84b,84cはそれぞれ軸ピン46 ,82に対する挿通孔を示す。また、符号26d,26eはそれぞれ軸ピン46 ,82に対する挿通孔を示す。また、符号84dはねじ軸78の挿通孔を示す。[0024] The screw feed mechanism 70 includes a screw shaft 78 having a head 78a serving as an operating section, and The movable nut 80 is screwed onto the screw shaft 78. Also, the conversion mechanism 72 is a shaft pin 82 horizontally suspended on the holder case 26, and a shaft pin 82 that is rotatable on this shaft pin 82. The swing member 84 is supported by a swing member 84 and rotated by a moving nut 80. It is. The screw shaft 78 is inserted into the insertion hole 26b formed on the front surface of the holder case 26. is inserted through the holder case 26, and its tip is supported in the through hole 26c formed on the rear surface of the holder case 26. It is. A retaining member 85 is provided at the tip of the screw shaft 78. code 8 4a indicates the engagement recess of the moving nut 80, and 84b and 84c each indicate the shaft pin 46. , 82 are shown. Moreover, the symbols 26d and 26e are the shaft pins 46, respectively. , 82 are shown. Further, reference numeral 84d indicates an insertion hole for the screw shaft 78.
【0025】 例えば吊戸6を下方に移動調整する場合には、ねじ軸78を移動ナット80が 矢印V方向に移動するように回動する。移動ナット80が矢印V方向に移動する と、揺動部材84が矢印T方向に回動し、これによって吊戸6は下方に移動し、 吊戸6の上端面6aと上部レール2の下端面2aとの隙間はmからm1 へ拡大す る。For example, when adjusting the hanging door 6 by moving it downward, the screw shaft 78 is rotated so that the moving nut 80 moves in the direction of arrow V. When the moving nut 80 moves in the direction of arrow V, the swinging member 84 rotates in the direction of arrow T, thereby moving the hanging door 6 downward, and the upper end surface 6a of the hanging door 6 and the lower end surface 2a of the upper rail 2. The gap between the two increases from m to m 1 .
【0026】[0026]
この考案によれば、堀込穴との間における凹凸嵌合の係合部が戸の横幅方向に 間隔をおいて設けられるので、戸の荷重に対する強度が高められるとともに、構 造強度がたかめられ、局部的に脆性を有する合板等の木質系でも強固な固定状態 を長期に亘って維持することができる。従って、ガタツキや離脱事故等の不具合 を回避することができるとともに、使用性の向上を図ることができる。 According to this invention, the engaging part of the concave-convex fitting between the drilling hole is aligned in the width direction of the door. Since they are spaced apart, the strength of the door against load is increased and the structure is The structural strength is increased, and even locally brittle wood materials such as plywood are firmly fixed. can be maintained for a long period of time. Therefore, problems such as rattling and breakaway accidents may occur. It is possible to avoid this and improve usability.
【図1】この考案に係るランナの取付構造の一実施例を
示す使用状態の断面図である。FIG. 1 is a sectional view showing an embodiment of a runner mounting structure according to the invention in a used state.
【図2】図1で示した上部ランナの一部省略の分解斜視
図である。FIG. 2 is a partially omitted exploded perspective view of the upper runner shown in FIG. 1;
【図3】下部ランナの概要断面図である。FIG. 3 is a schematic cross-sectional view of the lower runner.
【図4】図1の状態から戸を下方へ移動調整をした状態
の断面図である。FIG. 4 is a cross-sectional view of a state in which the door has been adjusted to move downward from the state in FIG. 1;
【図5】使用状態の概要斜視図である。FIG. 5 is a schematic perspective view of the device in use.
【図6】従来の取付構造を示す概要図である。FIG. 6 is a schematic diagram showing a conventional mounting structure.
2 上部レール(レール) 4 下部レール(レール) 6 吊戸(戸) 16,48 堀込穴 16a,16b,48a,48b 嵌合凹部 18,50 ランナベース 20,52 ランナ本体 22,54 軸部材 34,36 凸部 38,40,60,62 係合部 2 Upper rail (rail) 4 Lower rail (rail) 6 Hanging door (door) 16,48 Drilling hole 16a, 16b, 48a, 48b fitting recess 18,50 runner base 20,52 Runner body 22,54 Shaft member 34, 36 Convex part 38, 40, 60, 62 Engagement part
───────────────────────────────────────────────────── フロントページの続き (72)考案者 増田 望 広島県廿日市市木材港南1番1号 株式会 社住建産業内 ──────────────────────────────────────────────── ─── Continuation of front page (72) Creator Nozomi Masuda 1-1 Zokuma Konan, Hatsukaichi City, Hiroshima Prefecture Co., Ltd. Inside the social housing industry
Claims (1)
ースが固定されるとともにレール内を走行可能にランナ
本体が設けられ、ランナベースとランナ本体とは軸部材
で連結されてなるランナの取付構造において、上記ラン
ナベースと堀込穴との間には、戸の横幅方向に突出する
凸部とこの凸部に嵌合する嵌合凹部とからなる係合部が
戸の横幅方向に間隔を置いて少なくとも二か所に形成さ
れていることを特徴とするランナの取付構造。Claim 1: A runner in which a runner base is fixed to a drilling hole formed in a corner of a door, and a runner body is provided so as to be able to run within a rail, and the runner base and the runner body are connected by a shaft member. In this mounting structure, between the runner base and the drilling hole, there is an engaging part consisting of a protrusion protruding in the width direction of the door and a fitting recess that fits into the protrusion, at intervals in the width direction of the door. A runner mounting structure characterized in that the runner is formed in at least two places.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1184491U JPH0712604Y2 (en) | 1991-03-06 | 1991-03-06 | Runner mounting structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1184491U JPH0712604Y2 (en) | 1991-03-06 | 1991-03-06 | Runner mounting structure |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH04108769U true JPH04108769U (en) | 1992-09-21 |
JPH0712604Y2 JPH0712604Y2 (en) | 1995-03-29 |
Family
ID=31900916
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP1184491U Expired - Lifetime JPH0712604Y2 (en) | 1991-03-06 | 1991-03-06 | Runner mounting structure |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH0712604Y2 (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0671863U (en) * | 1993-03-19 | 1994-10-07 | 段谷産業株式会社 | Frame body for flash panel |
JPH08184250A (en) * | 1994-11-04 | 1996-07-16 | Katsura:Kk | Folding door |
JP2017186755A (en) * | 2016-04-03 | 2017-10-12 | 磯川産業株式会社 | Runner structure for suspended door |
-
1991
- 1991-03-06 JP JP1184491U patent/JPH0712604Y2/en not_active Expired - Lifetime
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0671863U (en) * | 1993-03-19 | 1994-10-07 | 段谷産業株式会社 | Frame body for flash panel |
JPH08184250A (en) * | 1994-11-04 | 1996-07-16 | Katsura:Kk | Folding door |
JP2017186755A (en) * | 2016-04-03 | 2017-10-12 | 磯川産業株式会社 | Runner structure for suspended door |
Also Published As
Publication number | Publication date |
---|---|
JPH0712604Y2 (en) | 1995-03-29 |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
EXPY | Cancellation because of completion of term |