JP2023168302A - partition structure - Google Patents

partition structure Download PDF

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JP2023168302A
JP2023168302A JP2023078660A JP2023078660A JP2023168302A JP 2023168302 A JP2023168302 A JP 2023168302A JP 2023078660 A JP2023078660 A JP 2023078660A JP 2023078660 A JP2023078660 A JP 2023078660A JP 2023168302 A JP2023168302 A JP 2023168302A
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partition
projecting
longitudinal direction
partition structure
furring
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雅也 相澤
Masaya Aizawa
幸自 永田
Koji Nagata
護 桑本
Mamoru Kuwamoto
吉紀 野崎
Yoshinori Nozaki
隆 山崎
Takashi Yamazaki
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YKK AP Inc
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YKK AP Inc
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Abstract

To provide a partition structure which is excellent in assemblability and manufacturability.SOLUTION: A partition structure includes a furring strip which has a hollow part in a longitudinal direction and has a slit communicating the hollow part with the outside, and a partition member which is formed with a partition surface partitioning a space, has an end stored in the hollow part and is arranged through the slit, wherein the partition member has an overhanging part which is provided in the longitudinal direction and overhangs both sides in the out-of-plane direction of the partition surface in the hollow part, and a projection part projecting in a direction crossing the overhanging part in the hollow part, and the furring strip is slidable in the longitudinal direction in a state in which movement in the out-of-plane direction is restricted by the overhanging part and movement in a vertical direction is restricted by the overhanging part and the projection part.SELECTED DRAWING: Figure 4

Description

本発明は、空間を仕切る仕切り面を形成する仕切り部材を有する仕切り構造体に関する。 The present invention relates to a partition structure having a partition member that forms a partition surface that partitions a space.

従来から、上桟、下桟、縦桟、小桟および上下枠により構成される本体部が、支柱およびブラケットで支持されたフェンスは、知られている(例えば、特許文献1参照)。このフェンスは、一対の縦桟と一対の上下枠及び小桟とがそれぞれ連結され上下枠が上下桟に組み付けられた本体部が、地面等に立設された支柱に本体部がブラケットにより支持されている。そして、上下枠は、フェンスの面外方向に張り出す張出部を有しており、断面が略U字状をなす上桟および下桟の内面に対向させて設けられているスライドガイドに、張出部がスライド可能に把持されて連結されている。 DESCRIPTION OF RELATED ART Conventionally, the fence in which the main body part comprised by the upper crosspiece, the lower crosspiece, the vertical crosspiece, the small crosspiece, and the upper and lower frame is supported by a support and a bracket is known (for example, refer patent document 1). This fence consists of a pair of vertical frames, a pair of upper and lower frames, and a small frame that are connected to each other, and the upper and lower frames are assembled to the upper and lower frames, and the main body is supported by brackets on posts erected on the ground. ing. The upper and lower frames each have a protruding portion that extends outward from the surface of the fence. The projecting portions are slidably gripped and connected.

特開2021-85301号公報Japanese Patent Application Publication No. 2021-85301

上記フェンスのような従来の仕切り構造体は、本体部が有する上下枠の張出部が、上桟及び下桟のスライドガイドに把持されているが、スライドガイドは、薄い略板状の張出部を上下から挟むように設けられており、張出部を上下に挟む部位の間隔は狭く形成されている。このため、上下枠を、上桟及び下桟の長手方向にスライドさせて取り付ける際には、上下枠と上桟及び下桟とが、ほぼ水平な状態を保ちつつスライドさせる必要があり、作業が繁雑であり組み立て性が悪い。 In conventional partition structures such as the above-mentioned fence, the overhanging parts of the upper and lower frames of the main body are held by slide guides on the upper and lower crosspieces, but the slide guides are thin, approximately plate-shaped overhangs. The space between the parts that sandwich the projecting part from above and below is narrow. Therefore, when attaching the upper and lower frames by sliding them in the longitudinal direction of the upper and lower bars, it is necessary to keep the upper and lower frames and the upper and lower bars in a nearly horizontal state while sliding them, which makes the work easier. It is complicated and difficult to assemble.

また、スライドガイド及び張出部の形状が複雑であると共に、滑らかにスライドさせるためには、長手方向に沿って設けられ狭い隙間のスライドガイド及び薄い略板状の張出部を、各々高い精度で製造する必要があり、製造性が悪いという課題があった。
本発明は、かかる課題に鑑みてなされたものであり、その目的とするところは、組み立て性及び製造性に優れた仕切り構造体を提供することにある。
In addition, the shapes of the slide guide and the overhang are complicated, and in order to slide smoothly, the slide guide with a narrow gap provided along the longitudinal direction and the thin approximately plate-shaped overhang have to be constructed with high precision. However, there was a problem with poor manufacturability.
The present invention has been made in view of such problems, and an object of the present invention is to provide a partition structure with excellent assembly and manufacturability.

かかる目的を達成するための主たる発明は、長手方向に沿う中空部を有し、前記中空部と外部とを連通するスリットを備えた胴縁と、空間を仕切る仕切り面を形成し、端部が前記中空部に収容され前記スリットを通して配置される仕切り部材と、を備え、前記仕切り部材は、長手方向に沿って設けられ前記中空部内にて前記仕切り面の面外方向における両側に張り出す張出部と、前記中空部内にて前記張出部と交差する方向に突出する突出部と、を有しており、前記胴縁は、前記張出部により前記面外方向の移動が規制され、前記張出部と前記突出部とにより上下方向の移動が規制された状態で前記長手方向にスライド可能であることを特徴とする仕切り構造体である。
本発明の他の特徴については、本明細書および添付図面の記載により明らかにする。
The main invention for achieving this object is to form a rim having a hollow part extending in the longitudinal direction, a slit that communicates the hollow part with the outside, and a partitioning surface that partitions the space, and an end part a partition member accommodated in the hollow part and disposed through the slit, the partition member having an overhang provided along the longitudinal direction and projecting to both sides in the out-of-plane direction of the partition surface within the hollow part. and a protruding part that protrudes within the hollow part in a direction intersecting the protruding part, and the furring edge has movement in the out-of-plane direction regulated by the protruding part, and The partition structure is characterized in that it is slidable in the longitudinal direction while vertical movement is restricted by the overhang and the protrusion.
Other features of the present invention will become apparent from the description of this specification and the accompanying drawings.

本発明によれば、組み立て性及び製造性に優れた仕切り構造体を提供することが可能である。 According to the present invention, it is possible to provide a partition structure with excellent assemblability and manufacturability.

本実施形態に係る格子ユニットを示す外観図である。FIG. 2 is an external view showing a lattice unit according to the present embodiment. 本実施形態に係る格子ユニットを示す縦断面図である。FIG. 3 is a longitudinal cross-sectional view showing a lattice unit according to the present embodiment. 上胴縁及び取付部材を示す斜視図である。It is a perspective view which shows an upper furrow and an attachment member. パネル体の上部を上胴縁の長手方向に沿う方向から見た図である。It is a figure which looked at the upper part of a panel body from the direction along the longitudinal direction of an upper furring. 取付部材が取り付けられた格子体に胴縁をスライドする様子を示す斜視図である。FIG. 7 is a perspective view illustrating how the rim is slid onto the lattice body to which the attachment member is attached. 取付部材に設けられた押圧部を示す図である。It is a figure which shows the press part provided in the attachment member. 押圧部の変形例を示す図である。It is a figure which shows the modification of a press part. 格子ユニットの変形例における上胴縁及び取付部材を示す斜視図である。It is a perspective view which shows the upper furrow and attachment member in the modification of a lattice unit. 格子ユニットの変形例における取付部材を上胴縁の長手方向に沿う方向から見た図である。It is a figure which looked at the attachment member in the modification of a lattice unit from the direction along the longitudinal direction of an upper furring. 突出対向部を上方から見た図である。FIG. 3 is a view of the protruding opposing portion viewed from above. 突出対向部の変形例を上方から見た図である。FIG. 7 is a diagram of a modification of the protruding opposing portion viewed from above.

以下、本発明の一実施形態に係る仕切り構造体について図面を参照して説明する。
本実施形態においては、図1、図2に示すように、例えばブロック塀などに設けられ建物側となる内側と道路などの外側との境界に設けられて空間を仕切る仕切り構造体としての格子ユニットを例に挙げて説明する。
DESCRIPTION OF THE PREFERRED EMBODIMENTS A partition structure according to an embodiment of the present invention will be described below with reference to the drawings.
In this embodiment, as shown in FIGS. 1 and 2, a lattice unit is used as a partitioning structure that is installed, for example, on a block wall, and is installed at the boundary between the inside of a building and the outside, such as a road, to partition a space. This will be explained using an example.

本実施形態の格子ユニット1は、互いに間隔を隔てて立設された2本の柱2と、柱2に取り付けられるパネル体3と、を備えている。
以下の説明においては、立設されている状態の格子ユニット1を外側(道路側)から見たときに、上下となる方向を上下方向、左右となり格子ユニット1の幅方向を左右方向、左右方向と直交する方向を奥行き方向として示す。格子ユニット1の各部位であっても、また、格子ユニット1を構成する各部材については単体の状態であっても、立設されている状態にて上下方向、左右方向、奥行き方向となる方向にて方向を特定して説明する。
The lattice unit 1 of this embodiment includes two pillars 2 erected at a distance from each other, and a panel body 3 attached to the pillars 2.
In the following explanation, when the lattice unit 1 in an upright state is viewed from the outside (road side), the vertical direction is the up-down direction, and the left-right direction is the left-right direction, and the left-right direction is the width direction of the lattice unit 1. The direction perpendicular to is shown as the depth direction. Even if each part of the lattice unit 1 or each member constituting the lattice unit 1 is in a standalone state, the directions that are the vertical direction, horizontal direction, and depth direction when standing upright. The direction will be specified and explained.

柱2は、長手方向に貫通する中空部を有する角パイプ状の部材である。パネル体3は、図2に示すように、柱2の外側(道路側)に臨む側面2aに当接され、柱2の下部に固定された支持部材4に支持されると共に、上端が連結部材5により柱2に取り付けられている。 The pillar 2 is a rectangular pipe-shaped member having a hollow portion passing through it in the longitudinal direction. As shown in FIG. 2, the panel body 3 is in contact with a side surface 2a facing the outside (road side) of the column 2, is supported by a support member 4 fixed to the lower part of the column 2, and has an upper end connected to a connecting member. 5 is attached to the pillar 2.

パネル体3は、上胴縁6及び下胴縁7と、上胴縁6と下胴縁7との間に設けられ、仕切り部材としてのパネル本体10と、を有している。パネル本体10は、後述する格子体8と、格子体8の上端部及び下端部をそれぞれ上胴縁6または下胴縁7に取り付ける取付部材9と、を有している。 The panel body 3 includes an upper furrow 6 and a lower furrow 7, and a panel body 10 that is provided between the upper furrow 6 and the lower furrow 7 and serves as a partition member. The panel body 10 includes a lattice body 8, which will be described later, and mounting members 9 that attach the upper and lower ends of the lattice body 8 to the upper furrow 6 or the lower furrow 7, respectively.

上胴縁6及び下胴縁7は、いずれも長手方向を押し出し方向として成形された押出成形材であり、断面形状が略矩形状をなし、長手方向に貫通する中空部6a、7aを有している。上胴縁6及び下胴縁7は、上下に間隔を空けて配置されて互いに対向する面に、長手方向に沿ってスリット6b、7bが設けられている。上胴縁6及び下胴縁7の中空部6a、7aには、取付部材9が取り付けられた格子体8、すなわち格子本体10の、後述する縦材80の上端部80aが上胴縁6に収容され、下端部80bが下胴縁7に収容されて、格子体8はスリット6b、7bを通して上胴縁6及び下胴縁7に亘るように配置されている。 The upper furring edge 6 and the lower furring edge 7 are both extruded materials molded with the longitudinal direction as the extrusion direction, have a substantially rectangular cross-sectional shape, and have hollow portions 6a and 7a penetrating in the longitudinal direction. ing. The upper furrow 6 and the lower furrow 7 are vertically spaced from each other and have slits 6b and 7b provided in their opposing surfaces along the longitudinal direction. In the hollow parts 6a and 7a of the upper furrow 6 and the lower furrow 7, upper ends 80a of vertical members 80 of the lattice body 8 to which the attachment members 9 are attached, that is, the lattice main body 10, which will be described later, are attached to the upper furrow 6. The lower end portion 80b is accommodated in the lower furrow 7, and the lattice body 8 is arranged so as to extend over the upper furrow 6 and the lower furrow 7 through the slits 6b and 7b.

上胴縁6及び下胴縁7において、格子体8の縦材80の上端部80a及び下端部80bと取付部材9が、中空部6a、7aに収容される部位の構成は、同一であって上下が反転している。このため、胴縁6、7の構成について上胴縁6を例に挙げて説明する。 In the upper and lower furring edges 6 and 7, the upper end portions 80a and lower end portions 80b of the vertical members 80 of the lattice body 8 and the mounting members 9 are housed in the hollow portions 6a and 7a, and their configurations are the same. The top and bottom are reversed. For this reason, the configuration of the furrings 6 and 7 will be explained using the upper furring 6 as an example.

上胴縁6は、図3、図4に示すように、奥行き方向に間隔を空けて対向する一対の壁部6cと、一対の壁部6cの下端から各々、対向する側に延出された一対の延出部6dと、一対の壁部6c間を繋ぎ、延出部6dの上方に間隔を空けて設けられ、延出部6dと対向する対向部6eと、を有している。奥行き方向に対向する一対の延出部6dの延出された先端の間がスリット6bをなし長手方向に沿って設けられている。対向部6eは、上胴縁6内の中空部6aを上下に区画しており、中空部6aの下側部分は、スリット6bを通して外部と連通している。 As shown in FIGS. 3 and 4, the upper body rim 6 includes a pair of wall portions 6c that face each other with an interval in the depth direction, and extends from the lower ends of the pair of wall portions 6c to the opposite sides. It has a pair of extension parts 6d and a facing part 6e that connects the pair of wall parts 6c, is provided above the extension part 6d with a space therebetween, and faces the extension part 6d. A slit 6b is formed between the extended ends of a pair of extension parts 6d facing each other in the depth direction, and is provided along the longitudinal direction. The opposing part 6e divides the hollow part 6a in the upper furrow 6 into upper and lower parts, and the lower part of the hollow part 6a communicates with the outside through the slit 6b.

格子体8は、図1、図5に示すように、左右方向に間隔を空けて配置される4本の縦材80と、隣り合う縦材80の対向する側面間に設けられる複数の横格子材82とが格子状に連結されている。格子体8の縦材80と横格子材82により仕切り面8aが形成され、仕切り面8aの面外方向が奥行き方向となる。 As shown in FIGS. 1 and 5, the lattice body 8 includes four vertical members 80 arranged at intervals in the left-right direction and a plurality of horizontal lattices provided between opposing sides of the adjacent vertical members 80. The members 82 are connected in a grid pattern. A partitioning surface 8a is formed by the vertical members 80 and horizontal lattice members 82 of the lattice body 8, and the out-of-plane direction of the partitioning surface 8a is the depth direction.

4本の縦材80は、上胴縁6と下胴縁7との間隔よりも長く形成されている。各縦材80は、上端部80aが上胴縁6の中空部6aに、また、下端部80bが下胴縁7の中空部7aに収容される。 The four vertical members 80 are formed longer than the distance between the upper furrow 6 and the lower furrow 7. Each vertical member 80 has an upper end portion 80a accommodated in the hollow portion 6a of the upper furrow 6, and a lower end portion 80b accommodated in the hollow portion 7a of the lower furrow 7.

取付部材9は、長手方向を押し出し方向として成形された押出成形材であり、格子体8の上端と下端とにそれぞれ配置されて、各縦材80に取り付けられている。取付部材9は、図3に示すように、水平に配置される水平板部9aと、水平板部9aと交差する直交方向、すなわち垂直に立設された鉛直板部9bと、を有している。取付部材9は、上胴縁6及び下胴縁7とほぼ同じ長さを有している。 The mounting members 9 are extruded members formed with the longitudinal direction as the extrusion direction, and are disposed at the upper and lower ends of the lattice body 8 and attached to each vertical member 80. As shown in FIG. 3, the mounting member 9 has a horizontal plate part 9a arranged horizontally, and a vertical plate part 9b arranged vertically in the orthogonal direction intersecting the horizontal plate part 9a. There is. The attachment member 9 has approximately the same length as the upper furrow 6 and the lower furrow 7.

水平板部9aには、長手方向において、縦材80が配置される位置に、格子体8の縦材80の上端部80aまたは下端部80bが突出される切り欠き部9cが設けられている。切り欠き部9cは、内側が開放されたコ字状をなしており、長手方向の幅は、縦材80の幅より僅かに広く形成されている。水平板部9aは、切り欠き部9cに上端部80aまたは下端部80bが配置されたときに、縦材80の内側に臨む側面及び外側に臨む側面よりも奥行き方向にそれぞれ張り出す張出部9dを有している。すなわち、水平板部9aにおいて縦材80の上端部80aまたは下端部80bよりも奥行き方向に張り出している部位が張出部9dに相当し、張出部9dと交差する直交方向に突出する鉛直板部9bが突出部に相当する。上端部80aまたは下端部80bの内側に張り出す張出部9dと外側に張り出す張出部9dの張り出し量はほぼ等しく形成されている。 The horizontal plate portion 9a is provided with a cutout portion 9c in the longitudinal direction at a position where the vertical members 80 are arranged, from which the upper end portion 80a or the lower end portion 80b of the vertical member 80 of the lattice body 8 projects. The cutout portion 9c has a U-shape with an open inner side, and its width in the longitudinal direction is slightly wider than the width of the vertical member 80. The horizontal plate portion 9a has an overhang portion 9d that extends in the depth direction from the side surface facing the inside and the side surface facing the outside of the vertical member 80 when the upper end portion 80a or the lower end portion 80b is placed in the notch portion 9c. have. That is, the portion of the horizontal plate portion 9a that protrudes further in the depth direction than the upper end 80a or the lower end 80b of the vertical member 80 corresponds to the overhang portion 9d, and the vertical plate protrudes in the orthogonal direction intersecting the overhang portion 9d. The portion 9b corresponds to a protrusion. The overhanging amount of the overhanging portion 9d that overhangs inside the upper end portion 80a or the lower end portion 80b and the overhanging amount of the overhanging portion 9d that overhangs outside the upper end portion 80a or the lower end portion 80b is approximately equal.

鉛直板部9bは、切り欠き部9cにおける長手方向に沿う縁の位置に配置されており、長手方向の全長に亘って設けられている。鉛直板部9bは、切り欠き部9cに配置されて水平板部9aよりも突出する上端部80aまたは下端部80bの外側に臨む側面と対面して当接するように配置される。取付部材9は、鉛直板部9bが縦材80にビスやクリンチング接合などにより固定されている。取付部材9が縦材80に固定された状態では、鉛直板部9bの先端と縦材80の先端の位置はほぼ一致している。 The vertical plate portion 9b is disposed at the edge of the notch portion 9c along the longitudinal direction, and is provided over the entire length in the longitudinal direction. The vertical plate portion 9b is disposed in the notch portion 9c and is arranged so as to face and abut the side surface facing the outside of the upper end portion 80a or the lower end portion 80b that protrudes beyond the horizontal plate portion 9a. The mounting member 9 has a vertical plate portion 9b fixed to the vertical member 80 by screws, clinching, or the like. When the mounting member 9 is fixed to the vertical member 80, the positions of the tips of the vertical plate portions 9b and the ends of the vertical members 80 are substantially aligned.

格子体8は、取付部材9が上下の端部に取り付けられたパネル本体10の状態で、図4に示すように、取付部材9及び上端部80aまたは下端部80bが、上胴縁6及び下胴縁7の、スリット6b、7bにより外部と連通する中空部6a、7aに収容される。縦材80に取り付けられた取付部材9が、上胴縁6及び下胴縁7に収容された状態は、上下の方向が相違するだけなので、ここでは上胴縁6側を例に挙げて、取付部材9及び上端部80aが上胴縁6の中空部6aに収容された状態について説明する。 The lattice body 8 is a panel body 10 with mounting members 9 attached to the upper and lower ends, and as shown in FIG. It is accommodated in hollow parts 6a and 7a of the furring 7, which communicate with the outside through slits 6b and 7b. The state in which the mounting member 9 attached to the vertical member 80 is housed in the upper furrow 6 and the lower furrow 7 differs only in the vertical direction, so here, the upper furrow 6 side will be taken as an example. A state in which the attachment member 9 and the upper end portion 80a are accommodated in the hollow portion 6a of the upper furring 6 will be described.

取付部材9及び上端部80aが上胴縁6の中空部6aに収容された状態では、図4に示すように、上胴縁6の一対の延出部6dの上面と、取付部材9の張出部9dの下面とが対面し、上胴縁6の対向部6eの下面と鉛直板部9bの上端と縦材80の上端とが近接して対向している。また、上胴縁6の一対の壁部6cの内面と、取付部材9の張出部9dの先端9eとが近接して対向している。 When the attachment member 9 and the upper end portion 80a are housed in the hollow portion 6a of the upper furrow 6, as shown in FIG. The lower surface of the projecting portion 9d faces each other, and the lower surface of the opposing portion 6e of the upper furring 6, the upper end of the vertical plate portion 9b, and the upper end of the vertical member 80 closely face each other. In addition, the inner surfaces of the pair of wall portions 6c of the upper body rim 6 and the tip 9e of the projecting portion 9d of the attachment member 9 are close to each other and face each other.

上胴縁6の延出部6dの上面と対向部6eの下面との間隔W1は、張出部9dの下面から鉛直板部9bの先端9fまでの高さH1より僅かに広く、上胴縁6の一対の壁部6cの内面間の間隔W2は、水平板部9aの奥行き方向の幅、すなわち両側の張出部9dの先端9eの間隔W3より僅かに広く形成されている。このため、上胴縁6の延出部6dの上面と張出部9dの下面、及び、鉛直板部9bの先端9fと対向部6eの少なくとも一方は、僅かな隙間を有して近接しており、上胴縁6の一対の壁部6cの内面と水平板部9aの先端の少なくとも一方は、僅かな隙間を有して近接している。 The distance W1 between the upper surface of the extending portion 6d of the upper furrow 6 and the lower surface of the opposing portion 6e is slightly wider than the height H1 from the lower surface of the overhanging portion 9d to the tip 9f of the vertical plate portion 9b. The distance W2 between the inner surfaces of the pair of wall portions 6c of 6 is slightly wider than the width in the depth direction of the horizontal plate portion 9a, that is, the distance W3 between the tips 9e of the projecting portions 9d on both sides. Therefore, the upper surface of the extending portion 6d and the lower surface of the protruding portion 9d of the upper body rim 6, and at least one of the tip 9f of the vertical plate portion 9b and the opposing portion 6e are close to each other with a slight gap. At least one of the inner surfaces of the pair of wall portions 6c of the upper body rim 6 and the tip of the horizontal plate portion 9a are close to each other with a slight gap.

これらの隙間は、例えば、製造公差及び組み立て公差を積み上げたときに、格子体8に取り付けられた取付部材9の水平板部9aの先端が上胴縁6の一対の壁部6cの内面と干渉しないように、また、鉛直板部9bの先端9fが対向部6eと干渉しないように、設けられる僅かな隙間である。このため、取付部材9が取り付けられた格子体8の上端部が、上胴縁6の中空部6aに収容されると、僅かな隙間を有しつつも、上胴縁6内における取付部材9及び格子体8の上端部80aの上下方向及び奥行き方向の移動が規制される。 These gaps are caused by, for example, when manufacturing tolerances and assembly tolerances are accumulated, the tip of the horizontal plate portion 9a of the mounting member 9 attached to the grid body 8 interferes with the inner surface of the pair of wall portions 6c of the upper rim 6. This is a small gap provided to prevent the tip 9f of the vertical plate portion 9b from interfering with the facing portion 6e. Therefore, when the upper end portion of the lattice body 8 to which the attachment member 9 is attached is accommodated in the hollow portion 6a of the upper furrow 6, the attachment member 9 inside the upper furrow 6 may have a slight gap. Also, movement of the upper end portion 80a of the grid body 8 in the vertical direction and the depth direction is restricted.

また、取付部材9が取り付けられた格子体8の上端部が、上胴縁6の中空部6aに収容されるように、上胴縁6を長手方向に沿ってスライドさせて、格子体8に上胴縁6を取り付けることが可能であり、スライドする際には、取付部材9の張出部9d及び鉛直板部9bの先端9fが上胴縁6を案内するガイドとなる。 Further, the upper furrow 6 is slid along the longitudinal direction so that the upper end portion of the lattice body 8 to which the attachment member 9 is attached is accommodated in the hollow portion 6a of the upper furrow 6. The upper furring 6 can be attached, and when sliding, the overhanging portion 9d of the attachment member 9 and the tip 9f of the vertical plate portion 9b serve as a guide for guiding the upper furring 6.

また、取付部材9には、図6に示すように、長手方向における一方の端側の水平板部9aの張出部9dに、対向する延出部6d側に突出する押圧部9gが設けられている。押圧部9gは、例えばプレス加工などにより張出部9dを窪ませて形成されている。押圧部9gの突出量L1は、延出部6dの上面に張出部9dの下面が当接する状態における鉛直板部9bの先端9fと対向部6eとの間に生じる隙間よりも大きく設定されている。このため、押圧部9gは、取付部材9の他方の端側から上胴縁6をスライドしたときに、上胴縁6のスライド方向における先端が、押圧部9gが設けられている位置に移動すると、対向する延出部6dを下方に押圧する。そして、格子体8に上胴縁6が取り付けられた状態では、押圧部9gが延出部6dを押圧しているので、上胴縁6のスライド移動が抑制されて固定される。 Further, as shown in FIG. 6, the mounting member 9 is provided with a pressing portion 9g that protrudes toward the opposing extension portion 6d on the overhang portion 9d of the horizontal plate portion 9a on one end side in the longitudinal direction. ing. The pressing portion 9g is formed by recessing the projecting portion 9d by, for example, press processing. The protrusion amount L1 of the pressing portion 9g is set to be larger than the gap generated between the tip 9f of the vertical plate portion 9b and the facing portion 6e when the lower surface of the projecting portion 9d is in contact with the upper surface of the extending portion 6d. There is. For this reason, the pressing portion 9g is configured such that when the upper furring edge 6 is slid from the other end side of the mounting member 9, the tip of the upper furring edge 6 in the sliding direction moves to the position where the pressing portion 9g is provided. , presses the opposing extension portions 6d downward. In a state where the upper furring 6 is attached to the lattice body 8, the pressing portion 9g presses the extension portion 6d, so that the upper furring 6 is restrained from sliding and fixed.

本実施形態の格子ユニット1によれば、上胴縁6及び下胴縁7は、格子体8に取り付けられた取付部材9により、仕切り面8aの面外方向及び上下方向の移動が規制された状態で長手方向にスライド可能なので、上胴縁6及び下胴縁7を、容易にスライドさせることが可能であり、上胴縁6及び下胴縁7の中空部6a、7aに、格子体8が有する縦材80の上端部80a及び下端部80bを挿通して、格子体8の端部に上胴縁6及び下胴縁7を容易に備えることが可能である。 According to the lattice unit 1 of the present embodiment, the upper rim 6 and the lower rim 7 are restricted from moving in the out-of-plane direction and the up-down direction of the partition surface 8a by the mounting member 9 attached to the lattice body 8. Since it is slidable in the longitudinal direction in the state, it is possible to easily slide the upper and lower furring edges 6 and 7, and the lattice body 8 is placed in the hollow parts 6a and 7a of the upper and lower furring edges 6 and 7. It is possible to easily provide the upper furrow 6 and the lower furrow 7 at the end of the lattice body 8 by inserting the upper end 80a and the lower end 80b of the vertical member 80.

このとき、上胴縁6及び下胴縁7の面外方向の規制は、上胴縁6及び下胴縁7内に配置されて面外方向における両側に張り出す張出部9dにより規制され、上下方向における規制は、胴縁6、7内に配置される張出部9dと、張出部9dと交差する方向に突出する鉛直板部9bとにより規制される。このため、規制される部位は、面外方向及び上下方向においていずれも離れているので、例えば、間隔の狭い部位に把持または挟持されることにより規制される場合よりも、僅かな傾きが許容されやすく自由度が高い。このため、間隔の狭い部位に把持または挟持されてスライドする場合よりも滑らかにスライドさせることが可能であり組み立て性に優れている。 At this time, the out-of-plane direction of the upper furrow 6 and the lower furrow 7 is regulated by overhanging portions 9d that are arranged within the upper furrow 6 and the lower furrow 7 and extend to both sides in the out-of-plane direction, Regulation in the up-down direction is regulated by the overhanging portions 9d disposed within the flanges 6 and 7 and the vertical plate portion 9b protruding in a direction intersecting the overhanging portions 9d. Therefore, since the parts to be regulated are far apart both in the out-of-plane direction and in the vertical direction, a slight inclination is more permissible than when, for example, the parts are regulated by being gripped or clamped by narrowly spaced parts. Easy and highly flexible. Therefore, it is possible to slide the device more smoothly than when the device is gripped or clamped between narrowly spaced parts, and is easy to assemble.

また、胴縁6、7の面外方向及び上下方向の規制をする部位として、間隔が狭い部位を設ける必要がないので、製造及び加工において高い精度が要求されない。このため、製造性に優れている。 Further, since there is no need to provide narrowly spaced sections as sections for regulating the out-of-plane and up-down directions of the furrings 6 and 7, high precision is not required in manufacturing and processing. Therefore, it has excellent manufacturability.

また、面外方向を規制する部位は、上胴縁6において面外方向に間隔を空けて対向する一対の壁部6cと、各々の壁部6cと対向する張出部9dの先端9eなので、例え接触しても接触面積が小さいため、摩擦による負荷は小さい。また、上下方向の規制は、上胴縁6の延出部6d及び延出部6dと間隔を空けて対向する対向部6eと、延出部6dと対向する張出部9dの上側または下側のいずれか一方及び対向部6eと対向する鉛直板部9bの先端9fなので、鉛直板部9bの先端9fが例え接触したとしても摩擦による負荷は小さく、また、張出部9dが接触したとしても上側または下側のいずれか一方だけなので、上下が挟持されている場合よりも摩擦により負荷は小さい。このため、面外方向及び上下方向を規制している部位が接触したとしても、容易にスライドすることが可能である。 In addition, the parts that regulate the out-of-plane direction are a pair of wall portions 6c facing each other at a distance in the out-of-plane direction on the upper body rim 6, and the tips 9e of the overhanging portions 9d facing each wall portion 6c. Even if they make contact, the contact area is small, so the load due to friction is small. Further, the vertical direction is restricted by the extending portion 6d of the upper furring 6, the opposing portion 6e facing the extending portion 6d with a gap, and the upper or lower side of the overhanging portion 9d facing the extending portion 6d. Since the tip 9f of the vertical plate part 9b faces either one of the opposing parts 6e and the opposing part 6e, the load due to friction is small even if the tip 9f of the vertical plate part 9b contacts, and even if the overhanging part 9d contacts. Since only either the upper side or the lower side is held, the load due to friction is smaller than when the upper and lower sides are sandwiched. Therefore, even if the parts regulating the out-of-plane direction and the up-down direction come into contact, it is possible to easily slide.

また、水平板部9aの面外方向の幅W3は、スリット6b、7bの幅W4より広いので、スライドする際に、胴縁6、7が格子体8から外れることを防止することが可能である。 Further, since the width W3 of the horizontal plate portion 9a in the out-of-plane direction is wider than the width W4 of the slits 6b and 7b, it is possible to prevent the furring edges 6 and 7 from coming off the grid body 8 when sliding. be.

また、張出部9dと鉛直板部9bとは、格子体8が有する縦材80に取付られる別体の取付部材9に設けられているので、格子体8の縦材80及び取付部材9が複雑な形状とならず製造が容易である。また、張出部9dと鉛直板部9bのサイズが互いに異なる取付部材9を縦材80に付け替えることにより、例えば、格子体8に対する胴縁6、7の位置を変更するなど、仕様を変えることができるので、汎用性が高い格子ユニット1を実現することが可能である。また、縦材80の形状及び取付部材9の形状が単純なので、生産性の向上に寄与することが可能であり、また、組み立ての自動化も実現可能となる。 Furthermore, since the overhanging portion 9d and the vertical plate portion 9b are provided on a separate attachment member 9 that is attached to the vertical members 80 of the lattice body 8, the vertical members 80 and the attachment members 9 of the lattice body 8 are It does not have a complicated shape and is easy to manufacture. In addition, by replacing the mounting member 9 with the vertical member 80 in which the overhanging portion 9d and the vertical plate portion 9b have different sizes, the specifications can be changed, for example, by changing the position of the furring edges 6 and 7 with respect to the lattice body 8. Therefore, it is possible to realize a highly versatile lattice unit 1. Further, since the shapes of the vertical members 80 and the mounting members 9 are simple, it is possible to contribute to an improvement in productivity, and it is also possible to realize automation of assembly.

また、取付部材9の長手方向における一方の端部に、水平板部9aから鉛直板部9bとは反対側にて上胴縁6の延出部6dを押圧する押圧部9gを備えているので、取付部材9が取り付けられた格子体8の長手方向における他方の端部側から上胴縁6をスライドさせて、格子体8及び取付部材9の端部を上胴縁6の中空部6a内に挿入すると、一方の端部が上胴縁6内に進入したときには、押圧部9gが上胴縁6の延出部6dに接触し、押圧部9gが上胴縁6の延出部6dを押圧する。このため、取付部材9が取り付けられた格子体8の一方の端部が上胴縁6に収容された状態では、安定した状態で格子体8に上胴縁6を備えることが可能である。 Further, one end in the longitudinal direction of the mounting member 9 is provided with a pressing portion 9g that presses the extending portion 6d of the upper furring rim 6 from the horizontal plate portion 9a on the opposite side from the vertical plate portion 9b. , slide the upper rim 6 from the other end in the longitudinal direction of the lattice body 8 to which the mounting member 9 is attached, and insert the ends of the lattice body 8 and the mounting member 9 into the hollow part 6a of the upper rim 6. When the one end enters the upper furrow 6, the pressing portion 9g contacts the extension 6d of the upper furrow 6, and the pressing portion 9g pushes the extension 6d of the upper furrow 6. Press. Therefore, in a state where one end of the lattice body 8 to which the attachment member 9 is attached is housed in the upper furrow 6, it is possible to provide the upper furrow 6 to the lattice body 8 in a stable state.

また、張出部9dにおいて鉛直板部9bとは反対側に突出している押圧部9gの突出量L1は、鉛直板部9bの先端9fと上胴縁6との間隔W5より大きいので、押圧部9gが上胴縁6を押圧する際には、押圧部9gとは反対側にて鉛直板部9bの先端9fが対向部6eを押圧する。このため、押圧部9gと鉛直板部9bとが上胴縁6の内側にて上下方向に突っ張るので、より確実に上胴縁6を安定させることが可能である。 Further, since the protruding amount L1 of the pressing portion 9g protruding on the side opposite to the vertical plate portion 9b in the overhanging portion 9d is larger than the distance W5 between the tip 9f of the vertical plate portion 9b and the upper body rim 6, the pressing portion When 9g presses the upper furring 6, the tip 9f of the vertical plate part 9b presses the opposing part 6e on the opposite side to the pressing part 9g. For this reason, since the pressing portion 9g and the vertical plate portion 9b stretch in the vertical direction inside the upper furrow 6, it is possible to stabilize the upper furrow 6 more reliably.

上記実施形態においては、取付部材9の鉛直板部9bの先端9fと対向部6eとが僅かな隙間を有して対向する例について説明したが、これに限らず、例えば、縦材80の上端が対向部6eと僅かな隙間を有して対向している構成であっても構わない。この場合には、取付部材9の鉛直板部9bは取付部材9を縦材80に固定可能な高さを有していればよい。 In the above embodiment, an example has been described in which the tip 9f of the vertical plate portion 9b of the mounting member 9 and the opposing portion 6e face each other with a slight gap, but the present invention is not limited to this, and for example, the upper end of the vertical member 80 may be configured to face the facing portion 6e with a slight gap therebetween. In this case, the vertical plate portion 9b of the mounting member 9 only needs to have a height that allows the mounting member 9 to be fixed to the vertical member 80.

また、上記実施形態においては、取付部材9の張出部9dにプレス加工などにより押圧部9gを設ける例について説明したが、これに限らず、例えば、弾性部材を取り付けても構わない。 Further, in the above embodiment, an example has been described in which the pressing portion 9g is provided on the overhanging portion 9d of the attachment member 9 by press working or the like, but the present invention is not limited to this, and for example, an elastic member may be attached.

また、押圧部9gを取付部材9側に設ける例について説明したが、これに限るものではない。例えば、図7に示すように、上胴縁6の対向部6eの長手方向における一方の端部に、上胴縁6の中空部6a内にて鉛直板部9bの先端9fに当接し、パネル本体10をスリット6bの外方向に向かって押圧する押圧部6fを設けても構わない。この場合には、上胴縁6をスライドさせて、一方の端部が上胴縁6内に進入したときには、押圧部6fが、取付部材9の鉛直板部9bの先端9fに接触し、押圧部6fが鉛直板部9bを押圧するので、安定した状態でパネル本体10に上胴縁6を備えることが可能となる。 Further, although an example in which the pressing portion 9g is provided on the mounting member 9 side has been described, the present invention is not limited to this. For example, as shown in FIG. 7, one end in the longitudinal direction of the facing portion 6e of the upper furring 6 is brought into contact with the tip 9f of the vertical plate portion 9b within the hollow portion 6a of the upper furring 6, and the panel A pressing portion 6f that presses the main body 10 toward the outside of the slit 6b may be provided. In this case, when the upper furrow 6 is slid and one end enters the upper furrow 6, the pressing portion 6f contacts the tip 9f of the vertical plate portion 9b of the mounting member 9, and presses Since the portion 6f presses the vertical plate portion 9b, it is possible to provide the panel main body 10 with the upper rim 6 in a stable state.

また、上記実施形態においては、押圧部9g、6fを長手方向における一方側のみに備えた構成を例に挙げて説明したが、押圧部9g、6fは長手方向の両側に設けられていても構わない。この場合には、長手方向における両側で、上胴縁6とパネル本体10とが接触するので、より安定した状態でパネル本体10に上胴縁6を備えることが可能となる。 Further, in the above embodiment, the configuration in which the pressing portions 9g and 6f are provided only on one side in the longitudinal direction has been described as an example, but the pressing portions 9g and 6f may be provided on both sides in the longitudinal direction. do not have. In this case, since the upper furrow 6 and the panel main body 10 are in contact with each other on both sides in the longitudinal direction, it is possible to provide the upper furrow 6 on the panel main body 10 in a more stable state.

次に、格子ユニット1の変形例について説明する。
変形例の格子ユニット11は、上述した格子ユニット1と、取付部材12のみが相違し、その他の部位は同一である。このため、格子ユニット1と同一構成については図中で同符号を付して示し、その説明については省略する。変形例においても取付部材12は、上胴縁6及び下胴縁7に収容された状態では、格子ユニット1の取付部材9と同様に上下の方向が相違するだけなので、ここでも上胴縁6側を例に挙げて説明する。
Next, a modification of the lattice unit 1 will be described.
The lattice unit 11 of the modified example differs from the lattice unit 1 described above only in the mounting member 12, and the other parts are the same. Therefore, the same components as those of the grid unit 1 are indicated by the same reference numerals in the drawings, and the explanation thereof will be omitted. In the modified example as well, when the mounting member 12 is housed in the upper furrow 6 and the lower furrow 7, the only difference is in the vertical direction, similar to the attachment member 9 of the lattice unit 1, so here also the upper furrow 6 This will be explained using the side as an example.

格子ユニット11の取付部材12は、図8、図9に示すように、格子ユニット1の取付部材9と同様に、水平板部12aと鉛直板部12bを有し、水平板部12aは、切り欠き部12c、張出部12d及び押圧部12gを有しているが、取付部材12は、張出部12dに突出対向部12hを有している点で、取付部材9と相違している。 As shown in FIGS. 8 and 9, the mounting member 12 of the lattice unit 11 has a horizontal plate portion 12a and a vertical plate portion 12b, similar to the mounting member 9 of the lattice unit 1, and the horizontal plate portion 12a has a cutout. The mounting member 12 has a notch portion 12c, an overhanging portion 12d, and a pressing portion 12g, but is different from the mounting member 9 in that the overhanging portion 12d has a protruding opposing portion 12h.

突出対向部12hは、張出部12dの先端12eより、図10に示すように、上方から見て円弧状に奥行き方向に突出するように形成されている。そして、取付部材12が上胴縁6に収容された状態で上胴縁6が有する一対の壁部6cに、突出対向部12hの先端が近接して対向する、或いは当接する。すなわち、突出対向部12hは、上胴縁6の一対の壁部6cの内面間の間隔W2と、奥行き方向における両側の張出部12dの先端12eの間隔W3との差のほぼ半分となる突出量L2に形成されている。 The protruding opposing portion 12h is formed to protrude in the depth direction from the tip 12e of the protruding portion 12d in an arc shape when viewed from above, as shown in FIG. Then, with the attachment member 12 housed in the upper furrow 6, the tips of the protruding opposing parts 12h closely oppose or abut against a pair of wall parts 6c that the upper furrow 6 has. That is, the protruding opposing portion 12h is a protrusion that is approximately half the difference between the distance W2 between the inner surfaces of the pair of walls 6c of the upper body rim 6 and the distance W3 between the tips 12e of the projecting portions 12d on both sides in the depth direction. The amount L2 is formed.

突出対向部12hの先端が近接して対向する場合とは、設計上は突出対向部12hの先端が上胴縁6の一対の壁部6cに当接するように設定された突出対向部12hが、部品の加工精度及び製造誤差などにより当接せず近接して対向する場合である。このため、突出対向部12hの先端が近接して対向する場合であっても、突出対向部12hの先端と上胴縁6の一対の壁部6cとの間隔は、突出対向部12hが設けられていない上述した張出部9dの先端9eと一対の壁部6cとの間隔よりも狭い。 The case where the tips of the protruding opposing portions 12h are close to each other means that the protruding opposing portions 12h, which are designed such that the tips of the protruding opposing portions 12h abut against the pair of walls 6c of the upper body rim 6, This is a case where the parts do not come into contact but face each other closely due to processing accuracy and manufacturing errors of the parts. Therefore, even if the tips of the protruding opposing portions 12h are close to each other and facing each other, the distance between the tip of the protruding opposing portions 12h and the pair of walls 6c of the upper body rim 6 is such that the protruding opposing portions 12h are provided. The distance between the tip 9e of the overhang 9d and the pair of walls 6c is narrower than the distance between the tip 9e of the overhang 9d and the pair of walls 6c.

突出対向部12hは、長手方向において、一方側に押圧部12gが設けられている場合には、押圧部12gが設けられている端部とは、反対側の端部近傍と、中央近傍とに設けられ、それぞれ奥行き方向における両側に突出させて設けられている。突出対向部12hを設ける位置は、端部近傍及び中央近傍に限らず、また、長手方向における2箇所に限らず、1箇所または3箇所以上であっても構わない。また、突出対向部12hは、奥行き方向における片側のみに設けられていても構わない。 In the longitudinal direction, when the pressing part 12g is provided on one side, the protruding opposing part 12h has two parts near the end opposite to the end where the pressing part 12g is provided and near the center. They are provided so as to protrude from both sides in the depth direction. The position where the protruding opposing portion 12h is provided is not limited to the vicinity of the end and the vicinity of the center, and is not limited to two locations in the longitudinal direction, but may be provided at one location or three or more locations. Further, the protruding opposing portion 12h may be provided only on one side in the depth direction.

突出対向部12hは、例えばプレス加工などにより張出部12dを上方から円弧状をなす圧縮部により圧縮し、張出部12dの長手方向における一部を奥行き方向に僅かに突出させて形成されている。取付部材12おいて、奥行き方向の両側に設けられた張出部12dの先端12eの間隔W3は、取付部材9と同様に上胴縁6の一対の壁部6cの内面間の間隔W2より僅かに狭く形成されており、奥行き方向の両側に突出する突出対向部12hの先端の間隔W6は、上胴縁6の一対の壁部6cの内面間の間隔W2とほぼ同じか、僅かに広くなるように設定されている。 The protruding opposing portion 12h is formed by compressing the protruding portion 12d from above with an arcuate compression portion by pressing, for example, and causing a portion of the protruding portion 12d in the longitudinal direction to slightly protrude in the depth direction. There is. In the mounting member 12, the distance W3 between the tips 12e of the projecting portions 12d provided on both sides in the depth direction is slightly smaller than the distance W2 between the inner surfaces of the pair of walls 6c of the upper body rim 6, as in the case of the mounting member 9. The distance W6 between the tips of the protruding opposing portions 12h that protrudes from both sides in the depth direction is approximately the same as or slightly wider than the distance W2 between the inner surfaces of the pair of wall portions 6c of the upper body rim 6. It is set as follows.

取付部材12が取り付けられた格子体8の上端部が、上胴縁6の中空部6aに収容されるように、上胴縁6を長手方向に沿ってスライドさせる際には、まず取付部材12の張出部12d及び鉛直板部12bの先端12fが上胴縁6を案内するガイドとなる。このとき、張出部12dと一対の壁部6cとの間に僅かな隙間を有している。 When sliding the upper furring 6 along the longitudinal direction so that the upper end of the lattice body 8 to which the mounting member 12 is attached is accommodated in the hollow part 6a of the upper furrow 6, first the mounting member 12 is slid. The overhanging portion 12d and the tip 12f of the vertical plate portion 12b serve as a guide for guiding the upper body rim 6. At this time, there is a slight gap between the projecting portion 12d and the pair of wall portions 6c.

スライドされて中空部6a内に進入する取付部材12の突出対向部12hが、中空部6a内に進入する際に、長手方向の2箇所に設けられた突出対向部12hが一対の壁部6cに当接し、一対の壁部6cの間隔を僅かに広げつつ進入する。このとき、取付部材12は一対の壁部6cに挟持されつつ長手方向に進入する。 When the protruding opposing portions 12h of the mounting member 12 that are slid into the hollow portion 6a enter the hollow portion 6a, the protruding opposing portions 12h provided at two locations in the longitudinal direction touch the pair of wall portions 6c. They come into contact with each other and enter while slightly widening the distance between the pair of wall portions 6c. At this time, the attachment member 12 enters in the longitudinal direction while being held between the pair of wall portions 6c.

そして、上胴縁6のスライド方向における先端が、押圧部12gが設けられている位置に移動すると、対向する延出部6dを下方に押圧する。そして、格子体8に上胴縁6が取り付けられた状態では、押圧部12gが延出部6dを押圧し、取付部材12が一対の壁部6cに挟持されているので、上胴縁6のスライド移動が抑制され、奥行き方向のがたつきも生じることなく固定される。 When the tip of the upper body rim 6 in the sliding direction moves to the position where the pressing portion 12g is provided, it presses the opposing extending portion 6d downward. When the upper rim 6 is attached to the lattice body 8, the pressing part 12g presses the extension part 6d, and the mounting member 12 is held between the pair of walls 6c, so that the upper rim 6 Sliding movement is suppressed and it is fixed without wobbling in the depth direction.

変形例の仕切り構造体によれば、上胴縁6及び下胴縁7は、格子体8に取り付けられた取付部材12の突出対向部12hにより面外方向が規制され、張出部12d及び鉛直板部12bにより上下方向の移動が規制された状態で長手方向にスライド可能なので、上胴縁6及び下胴縁7を容易にスライドさせることが可能であり、上胴縁6及び下胴縁7の中空部6a、7aに格子体8の端部を挿通して、格子体8の端部に上胴縁6及び下胴縁7を容易に備えることが可能である。 According to the partition structure of the modified example, the upper furrow 6 and the lower furrow 7 are regulated in the out-of-plane direction by the protruding facing portion 12h of the mounting member 12 attached to the lattice body 8, and the overhanging portion 12d and the vertical Since it is possible to slide in the longitudinal direction while the vertical movement is restricted by the plate portion 12b, it is possible to easily slide the upper furrow 6 and the lower furrow 7. By inserting the ends of the lattice body 8 into the hollow portions 6a and 7a of the lattice body 8, it is possible to easily provide the upper furrow 6 and the lower furrow 7 at the ends of the lattice body 8.

このとき、上胴縁6及び下胴縁7と対向する突出対向部12hは、張出部12dから面外方向に突出して上胴縁6及び下胴縁7と対向しているので、張出部12dと対向している部位よりも上胴縁6及び下胴縁7との間隔が狭い。このため、上胴縁6及び下胴縁7の面外方向の移動をより小さく規制することが可能である。また、突出対向部12hが一対の壁部6cに当接する場合には、取付部材12が一対の壁部6cに挟持されるので、上胴縁6及び下胴縁7の面外方向の移動を防止することが可能となる。そして、突出対向部12hは、張出部12dの一部が突出しているので、例え一対の壁部6cに当接したとしても、張出部12dが全長にわたって当接する場合よりも、スライドする際の摩擦は小さい。このため、スライドさせやすい構成としつつも格子体8をより安定させて保持することが可能となる。 At this time, the protruding opposing portion 12h that faces the upper furrow 6 and the lower furrow 7 protrudes in an out-of-plane direction from the overhang 12d and faces the upper furrow 6 and the lower furrow 7, so that the overhang The distance between the upper furrow 6 and the lower furrow 7 is narrower than the region facing the portion 12d. Therefore, it is possible to restrict the movement of the upper furrow 6 and the lower furrow 7 in the out-of-plane direction to a smaller extent. Further, when the protruding opposing portion 12h abuts the pair of walls 6c, the mounting member 12 is held between the pair of walls 6c, so that the movement of the upper furring rim 6 and the lower furring rim 7 in the out-of-plane direction is prevented. It becomes possible to prevent this. Since a part of the protruding part 12d protrudes, the protruding opposing part 12h, even if it comes into contact with the pair of wall parts 6c, is more likely to slide than if the protruding part 12d abuts over its entire length. friction is small. For this reason, it becomes possible to hold the grid body 8 more stably while having a structure that makes it easy to slide.

また、上胴縁6及び下胴縁7の面外方向及び上下方向の規制をする部位として間隔が狭い部位を設ける必要がないので、製造及び加工に高い精度が要求されない。このため、製造性に優れている。 Further, since there is no need to provide narrowly spaced sections as sections for regulating the out-of-plane direction and the vertical direction of the upper furrow 6 and the lower furrow 7, high precision is not required in manufacturing and processing. Therefore, it has excellent manufacturability.

上記実施形態においては、突出対向部12hが、上方から見て円弧状に奥行き方向に突出するように形成されている例について説明したがこれに限るものではない。例えば、図11(a)、図11(b)に示すように、上方から見て三角形状の部位または矩形状の部位が突出する、或いは、図11(c)に示すように、突出した先端が張出部12dの先端12eとほぼ平行になる部位を有し、円弧状の部位にて張出部12dと繋がる形態であっても構わない。 In the embodiment described above, an example has been described in which the protruding opposing portion 12h is formed to protrude in the depth direction in an arc shape when viewed from above, but the present invention is not limited to this. For example, as shown in FIGS. 11(a) and 11(b), a triangular or rectangular portion protrudes when viewed from above, or a protruding tip as shown in FIG. 11(c). It may have a portion that is substantially parallel to the tip 12e of the overhanging portion 12d, and may be connected to the overhanging portion 12d at an arc-shaped portion.

上記実施形態においては、格子をなす格子体3を用いた例について説明したが、これに限らず、面材、フェンスなど、空間を仕切る部材であれば構わない。 In the above-mentioned embodiment, an example using the lattice body 3 forming a lattice has been described, but the present invention is not limited to this, and any member that partitions a space, such as a panel or a fence, may be used.

また、上記実施形態は、本発明の理解を容易にするためのものであり、本発明を限定して解釈するためのものではない。本発明は、その趣旨を逸脱することなく、変更、改良され得ると共に、本発明にはその等価物が含まれることはいうまでもない。
本実施形態には、少なくとも以下の態様の発明が含まれる。
Further, the above embodiments are for facilitating understanding of the present invention, and are not intended to be interpreted as limiting the present invention. It goes without saying that the present invention may be modified and improved without departing from its spirit, and that the present invention includes equivalents thereof.
This embodiment includes at least the following aspects of the invention.

態様1:長手方向に沿う中空部を有し、前記中空部と外部とを連通するスリットを備えた胴縁と、空間を仕切る仕切り面を形成し、端部が前記中空部に収容され前記スリットを通して配置される仕切り部材と、を備え、前記仕切り部材は、長手方向に沿って設けられ前記中空部内にて前記仕切り面の面外方向における両側に張り出す張出部と、前記中空部内にて前記張出部と交差する方向に突出する突出部と、を有しており、前記胴縁は、前記張出部により前記面外方向の移動が規制され、前記張出部と前記突出部とにより上下方向の移動が規制された状態で前記長手方向にスライド可能であることを特徴とする仕切り構造体である。 Aspect 1: A furring edge having a hollow portion extending in the longitudinal direction and having a slit that communicates the hollow portion with the outside, and a partitioning surface that partitions the space, the end portion being accommodated in the hollow portion and the slit. a partition member disposed through the partition member, the partition member being provided along the longitudinal direction and projecting on both sides in the out-of-plane direction of the partition surface within the hollow portion; a protrusion protruding in a direction intersecting the protrusion; the furring rim has movement in the out-of-plane direction regulated by the protrusion; The partition structure is characterized in that it is slidable in the longitudinal direction while vertical movement is restricted by.

態様1の仕切り構造体によれば、胴縁は、仕切り部材の張出部及び突出部により仕切り面の面外方向及び上下方向の移動が規制された状態で長手方向にスライド可能なので、胴縁を容易にスライドさせることが可能であり、胴縁の中空部に仕切り部材の端部を挿通して、仕切り部位の端部に胴縁を容易に備えることが可能である。 According to the partition structure of aspect 1, the furring edge is slidable in the longitudinal direction while the out-of-plane and vertical movement of the partition surface is restricted by the overhanging portion and the protruding portion of the partition member. The end portion of the partition member can be inserted into the hollow portion of the furrow to easily provide the furrow at the end of the partition portion.

このとき、面外方向の規制は、胴縁内に配置されて面外方向における両側に張り出す張出部により胴縁が規制され、上下方向における規制は、胴縁内に配置される張出部と、張出部と交差する方向に突出する突出部とにより胴縁が規制される。このため、規制される部位は、面外方向及び上下方向においていずれも離れているので、例えば、間隔の狭い部位に把持または挟持されることにより規制される場合よりも、僅かな傾きが許容されやすく、僅かに姿勢を変えつつスライドすることが可能となる。このため、間隔の狭い部位に把持または挟持されてスライドする場合よりも、僅かに姿勢を変えつつ滑らかにスライドさせることが可能であり組み立て性に優れている。 At this time, the out-of-plane direction is regulated by the overhanging parts that are placed inside the rim and protrudes on both sides in the out-of-plane direction, and the up-down direction is regulated by the overhangs placed inside the rim. and a protruding part that protrudes in a direction intersecting the protruding part. Therefore, since the parts to be regulated are far apart both in the out-of-plane direction and in the vertical direction, a slight inclination is more permissible than when, for example, the parts are regulated by being gripped or clamped by narrowly spaced parts. It is easy to slide while changing your posture slightly. For this reason, it is possible to slide smoothly while changing the posture slightly, and it is easier to assemble than when the slide is gripped or held between narrowly spaced parts.

また、胴縁の面外方向及び上下方向の規制をする部位として間隔が狭い部位を設ける必要がないので、製造及び加工に高い精度が要求されない。このため、製造性に優れている。 Further, since there is no need to provide narrowly spaced sections as sections for regulating the out-of-plane direction and the vertical direction of the furring rim, high precision is not required in manufacturing and processing. Therefore, it has excellent manufacturability.

態様2:態様1に記載の仕切り構造体であって、前記胴縁は、面外方向に間隔を空けて対向する一対の壁部と、前記一対の壁部の端から互いに対向する側に延出され、互いの間に前記スリットを形成する延出部と、前記一対の壁部間を繋ぎ、前記面外方向と交差する方向に間隔を空けて設けられ前記延出部と対向する対向部と、を有し、前記張出部は、張り出している先端が前記一対の壁部と対向すると共に、上側または下側のいずれか一方が前記延出部と対向し、前記突出部は、突出している先端が前記対向部と対向していることを特徴とする。 Aspect 2: The partition structure according to Aspect 1, wherein the furring edge includes a pair of wall portions facing each other with an interval in an out-of-plane direction, and extending from ends of the pair of wall portions to sides opposite to each other. an extending portion that extends out and forms the slit therebetween; and an opposing portion that connects the pair of wall portions, is spaced apart in a direction intersecting the out-of-plane direction, and faces the extended portion; The protruding portion has an overhanging tip facing the pair of walls, and either an upper side or a lower side facing the extending portion, and the protruding portion has a protruding portion. It is characterized in that the tip of the holder faces the opposing portion.

態様2の仕切り構造体によれば、面外方向の規制は、胴縁において面外方向に間隔を空けて対向する一対の壁部と、各々の壁部と対向する張出部の先端なので、例え接触しても接触面積が小さいため摩擦による負荷は小さい。また、上下方向の規制は、胴縁の延出部及び延出部と間隔を空けて対向する対向部と、延出部と対向する張出部の上側または下側のいずれか一方及び対向部と対向する突出部の先端なので、突出部の先端が例え接触したとしても摩擦による負荷は小さく、また、張出部が接触したとしても上側または下側のいずれかだけなので、上下が挟持されている場合よりも摩擦による負荷は小さい。このため、面外方向及び上下方向を規制している部位が接触したとしても、容易にスライドすることが可能である。 According to the partition structure of aspect 2, the out-of-plane direction is restricted by the pair of walls facing each other with a space between them in the out-of-plane direction on the trunk edge, and the tips of the overhanging parts facing each wall. Even if they make contact, the load due to friction is small because the contact area is small. In addition, the vertical direction is restricted by the extending portion of the furring edge, the opposing portion facing the extending portion with a space between them, and either the upper or lower side of the overhang facing the extending portion and the opposing portion. Even if the tips of the protrusions were to come into contact with each other, the load due to friction would be small, and even if the protrusions did come into contact, it would only be on either the upper or lower sides, so the top and bottom would not be pinched. The load due to friction is smaller than when there is no friction. Therefore, even if the parts regulating the out-of-plane direction and the up-down direction come into contact, it is possible to easily slide.

態様3:態様2に記載の仕切り構造体であって、両側の前記張出部の先端の間隔は、前記スリットの幅より広いことを特徴とする。 Aspect 3: The partition structure according to Aspect 2, wherein the distance between the tips of the projecting portions on both sides is wider than the width of the slit.

態様3の仕切り構造体によれば、張出部の面外方向の幅は、前記スリットの幅より広いので、スライドする際に、胴縁が仕切り部材から外れることを防止することが可能である。 According to the partition structure of aspect 3, since the width of the projecting portion in the out-of-plane direction is wider than the width of the slit, it is possible to prevent the furring edge from coming off from the partition member when sliding. .

態様4:態様1乃至態様3のいずれかに記載の仕切り構造体であって、前記仕切り部材は、上下方向に沿って配置され端部が前記中空部に収容される縦材を有し、前記縦材に取り付けられ、前記張出部と前記突出部とを備えた取付部材と、を有することを特徴とする。 Aspect 4: The partition structure according to any one of Aspects 1 to 3, wherein the partition member has a vertical member arranged along the vertical direction and whose end portion is accommodated in the hollow portion, The present invention is characterized in that it has a mounting member that is attached to the vertical member and includes the overhang portion and the protrusion portion.

態様4の仕切り構造体によれば、張出部と突出部とは、仕切り部材が有する縦材に取付られる別体の取付部材に設けられているので、仕切り部材及び取付部材が複雑な形状とならず製造が容易である。また、張出部及び突出部のサイズが互いに異なる取付部材を縦材に付け替えることにより、例えば、仕切り部材に対する胴縁の位置を変更するなど、仕様を変えることができるので、汎用性が高い仕切り構造体を実現することが可能である。また、仕切り部材の形状及び取付部材の形状が単純なので、生産性の向上に寄与することが可能であり、また、組み立ての自動化も実現可能となる。 According to the partition structure of aspect 4, the overhanging portion and the protruding portion are provided on separate attachment members that are attached to the vertical members of the partition member, so that the partition member and the attachment member do not have complicated shapes. However, it is easy to manufacture. In addition, by replacing mounting members with different sizes of overhangs and protrusions with vertical members, specifications can be changed, for example by changing the position of the rim relative to the partition member, making the partition highly versatile. It is possible to realize a structure. Furthermore, since the shapes of the partition member and the mounting member are simple, it is possible to contribute to an improvement in productivity, and it is also possible to realize automation of assembly.

態様5:態様1乃至態様4のいずれかに記載の仕切り構造体であって、前記張出部の長手方向における少なくとも一方の端部に、前記突出部とは反対側にて前記胴縁を押圧する押圧部を備えていることを特徴とする。 Aspect 5: The partition structure according to any one of Aspects 1 to 4, wherein the furring edge is pressed on at least one end in the longitudinal direction of the protruding portion on a side opposite to the protruding portion. It is characterized by having a pressing part that does.

態様5の仕切り構造体によれば、仕切り部材の長手方向における他方の端部側からスライドさせて、仕切り部材の端部を胴縁の中空部内に挿入すると、一方の端部が胴縁内に進入したときには、押圧部が胴縁に接触し、張出部が胴縁を押圧する。このため、仕切り部材の一方の端部が胴縁に収容された状態では、安定した状態で仕切り部材に胴縁を備えることが可能である。 According to the partition structure of aspect 5, when the end of the partition member is inserted into the hollow part of the furring edge by sliding it from the other end side in the longitudinal direction of the partition member, one end is inserted into the hollow part of the furring edge. When it enters, the pressing part contacts the furring edge, and the projecting part presses the furring edge. Therefore, when one end of the partition member is accommodated in the furring, it is possible to provide the partitioning member with the furring in a stable state.

態様6:態様5に記載の仕切り構造体であって、前記押圧部は、前記突出部とは反対側に突出して設けられており、前記押圧部の突出量は、前記突出部の先端と前記胴縁との間隔より大きいことを特徴とする。 Aspect 6: The partition structure according to Aspect 5, wherein the pressing portion is provided to protrude on the opposite side to the protrusion, and the amount of protrusion of the pressing portion is equal to the distance between the tip of the protrusion and the It is characterized by being larger than the distance from the body rim.

態様6の仕切り構造体によれば、張出部において突出部とは反対側に突出している押圧部の突出量は、突出部の先端と胴縁との間隔より大きいので、押圧部が胴縁を押圧する際には、押圧部とは反対側にて突出部の先端が胴縁を押圧する。このため、押圧部と突出部とが胴縁の内側にて上下方向に突っ張るので、より確実に胴縁を安定させることが可能である。 According to the partition structure of aspect 6, the amount of protrusion of the pressing part that projects on the side opposite to the projecting part in the projecting part is larger than the distance between the tip of the projecting part and the furring edge, so that the pressing part is connected to the furring edge. When pressing, the tip of the protruding portion presses the rim on the side opposite to the pressing portion. For this reason, since the pressing part and the protruding part stretch the inside of the furrow in the vertical direction, it is possible to stabilize the furrow more reliably.

態様7:態様1乃至態様4のいずれかに記載の仕切り構造体であって、前記胴縁は、長手方向における少なくとも一方の端部に、前記中空部内にて前記突出部に当接し、前記仕切り部材を前記スリットの外方向に押圧する押圧部を備えていることを特徴とする。 Aspect 7: The partition structure according to any one of Aspects 1 to 4, wherein the furring edge abuts the protrusion in the hollow portion at least one end in the longitudinal direction, and the partition structure The device is characterized in that it includes a pressing portion that presses the member outward of the slit.

態様7の仕切り構造体によれば、仕切り部材の長手方向における他方の端部側からスライドさせて、仕切り部材の端部を胴縁の中空部内に挿入すると、仕切り部材が胴縁内にて一方の端部に進入したときには、押圧部が突出部に接触し、突出部がスリット側に押圧されて張出部が胴縁を押圧する。このため、仕切り部材の一方の端部が胴縁に収容された状態では、安定した状態で仕切り部材に胴縁を備えることが可能である。 According to the partition structure of aspect 7, when the end of the partition member is inserted into the hollow part of the furring edge by sliding it from the other end side in the longitudinal direction of the partition member, the partition member is inserted into the hollow part of the furring edge on one side. When it enters the end of the slit, the pressing part contacts the protrusion, the protrusion is pressed toward the slit, and the protrusion presses the rim. Therefore, when one end of the partition member is accommodated in the furring, it is possible to provide the partitioning member with the furring in a stable state.

態様8:長手方向に沿う中空部を有し、前記中空部と外部とを連通するスリットを備えた胴縁と、空間を仕切る仕切り面を形成し、端部が前記中空部に収容され前記スリットを通して配置される仕切り部材と、を備え、前記仕切り部材は、長手方向に沿って設けられ前記中空部内にて前記仕切り面の面外方向における両側に張り出す張出部と、前記中空部内にて前記張出部と交差する方向に突出する突出部と、を有し、前記張出部は、その一部から面外方向に突出して前記胴縁と対向する突出対向部を有しており、前記胴縁は、前記突出対向部により前記面外方向の移動が規制され、前記張出部と前記突出部とにより上下方向の移動が規制された状態で前記長手方向にスライド可能であることを特徴とする仕切り構造体である。 Aspect 8: A rim having a hollow part along the longitudinal direction and having a slit communicating the hollow part with the outside, forming a partition surface partitioning the space, and having an end part accommodated in the hollow part and the slit. a partition member disposed through the partition member, the partition member being provided along the longitudinal direction and projecting on both sides in the out-of-plane direction of the partition surface within the hollow portion; a protrusion that protrudes in a direction intersecting the protrusion; the protrusion has a protrusion facing portion that protrudes in an out-of-plane direction from a portion thereof and faces the furring edge; The body rim is capable of sliding in the longitudinal direction with movement in the out-of-plane direction being regulated by the protruding opposing portion and movement in the vertical direction being regulated by the projecting portion and the protruding portion. This is a distinctive partition structure.

態様8の仕切り構造体によれば、胴縁は、仕切り部材の突出対向部により面外方向が規制され、張出部及び突出部により仕切り面の上下方向の移動が規制された状態で長手方向にスライド可能なので、胴縁を容易にスライドさせることが可能であり、胴縁の中空部に仕切り部材の端部を挿通して、仕切り部位の端部に胴縁を容易に備えることが可能である。 According to the partition structure of aspect 8, the furring rim is regulated in the out-of-plane direction by the protruding opposing portion of the partition member, and in the longitudinal direction while the vertical movement of the partition surface is regulated by the overhanging portion and the protruding portion. Therefore, it is possible to easily slide the furring, and it is possible to easily provide a furring at the end of the partition by inserting the end of the partition member into the hollow part of the furring. be.

このとき、胴縁と対向する突出対向部は、張出部から面外方向に突出して胴縁と対向しているので、張出部と対向している部位よりも胴縁との間隔が狭い。このため、胴縁の面外方向の移動をより小さく規制することが可能である。そして,突出対向部は、張出部の一部が突出して胴縁に当接するので、張出部が全長にわたって当接する場合よりも、スライドする際の摩擦は小さい。このため、スライドさせやすい構成としつつも仕切り部材をより安定させて保持することが可能となる。 At this time, the protruding opposing part facing the furring rim protrudes out of the plane from the overhanging part and faces the furring rim, so the distance between it and the furring rim is narrower than that of the part facing the overhanging part. . Therefore, it is possible to restrict the movement of the furring edge in the out-of-plane direction to a smaller extent. Since a part of the protruding part of the protruding opposing part protrudes and abuts against the furring edge, the friction during sliding is smaller than when the protruding part abuts over its entire length. For this reason, it becomes possible to hold the partition member more stably while having a structure that makes it easy to slide.

また、胴縁の面外方向及び上下方向の規制をする部位として間隔が狭い部位を設ける必要がないので、製造及び加工に高い精度が要求されない。このため、製造性に優れている。 Further, since there is no need to provide narrowly spaced sections as sections for regulating the out-of-plane direction and the vertical direction of the furring rim, high precision is not required in manufacturing and processing. Therefore, it has excellent manufacturability.

1 格子ユニット、6 上胴縁、6a 中空部、6b スリット、
6c 壁部、6d 延出部、6e 対向部、6f 押圧部、7 下胴縁、
7a 中空部、7b スリット、8 格子体、8a 仕切り面、
9 取付部材、9a 水平板部、9b 鉛直板部、9d 張出部、
9g 押圧部、10 パネル本体、80 縦材、80a 上端部、80b 下端部、
12 取付部材、12a 水平板部、12b 鉛直板部、12d 張出部、
12g 押圧部、12h 突出対向部、
L1 押圧部の突出量、W3 水平板部の奥行き方向の幅、
W4 スリットの幅、
1 lattice unit, 6 upper rim, 6a hollow part, 6b slit,
6c wall part, 6d extending part, 6e opposing part, 6f pressing part, 7 lower body edge,
7a hollow part, 7b slit, 8 lattice body, 8a partition surface,
9 mounting member, 9a horizontal plate part, 9b vertical plate part, 9d overhang part,
9g pressing part, 10 panel body, 80 vertical member, 80a upper end, 80b lower end,
12 mounting member, 12a horizontal plate part, 12b vertical plate part, 12d overhang part,
12g pressing part, 12h protruding opposing part,
L1 protrusion amount of the pressing part, W3 width in the depth direction of the horizontal plate part,
W4 slit width,

Claims (8)

長手方向に沿う中空部を有し、前記中空部と外部とを連通するスリットを備えた胴縁と、
空間を仕切る仕切り面を形成し、端部が前記中空部に収容され前記スリットを通して配置される仕切り部材と、
を備え、
前記仕切り部材は、長手方向に沿って設けられ前記中空部内にて前記仕切り面の面外方向における両側に張り出す張出部と、前記中空部内にて前記張出部と交差する方向に突出する突出部と、を有しており、
前記胴縁は、前記張出部により前記面外方向の移動が規制され、
前記張出部と前記突出部とにより上下方向の移動が規制された状態で前記長手方向にスライド可能であることを特徴とする仕切り構造体。
A furring edge having a hollow portion extending in the longitudinal direction and having a slit communicating the hollow portion with the outside;
a partition member that forms a partition surface that partitions a space, and whose end portion is accommodated in the hollow portion and is disposed through the slit;
Equipped with
The partition member includes a projecting portion provided along the longitudinal direction and projecting in the hollow portion to both sides in an out-of-plane direction of the partition surface, and projecting in a direction intersecting the projecting portion within the hollow portion. It has a protrusion,
The movement of the furring edge in the out-of-plane direction is regulated by the overhang,
The partition structure is capable of sliding in the longitudinal direction while vertical movement is restricted by the overhang and the protrusion.
請求項1に記載の仕切り構造体であって、
前記胴縁は、面外方向に間隔を空けて対向する一対の壁部と、前記一対の壁部の端から互いに対向する側に延出され、互いの間に前記スリットを形成する延出部と、前記一対の壁部間を繋ぎ、前記面外方向と交差する方向に間隔を空けて設けられ前記延出部と対向する対向部と、を有し、
前記張出部は、張り出している先端が前記一対の壁部と対向すると共に、上側または下側のいずれか一方が前記延出部と対向し、
前記突出部は、突出している先端が前記対向部と対向していることを特徴とする仕切り構造体。
The partition structure according to claim 1,
The furring edge includes a pair of wall portions that face each other at a distance in an out-of-plane direction, and an extension portion that extends from the ends of the pair of wall portions to opposite sides and forms the slit therebetween. and an opposing portion that connects the pair of wall portions, is spaced apart in a direction intersecting the out-of-plane direction, and faces the extending portion;
The overhanging portion has an overhanging tip facing the pair of walls, and either an upper side or a lower side facing the extending portion,
The partition structure is characterized in that the protruding portion has a protruding tip facing the opposing portion.
請求項2に記載の仕切り構造体であって、
両側の前記張出部の先端の間隔は、前記スリットの幅より広いことを特徴とする仕切り構造体。
The partition structure according to claim 2,
A partition structure characterized in that an interval between tips of the projecting portions on both sides is wider than a width of the slit.
請求項1乃至請求項3のいずれかに記載の仕切り構造体であって、
前記仕切り部材は、上下方向に沿って配置され端部が前記中空部に収容される縦材を有し、
前記縦材に取り付けられ、前記張出部と前記突出部とを備えた取付部材と、
を有することを特徴とする仕切り構造体。
The partition structure according to any one of claims 1 to 3,
The partition member has a vertical member arranged along the vertical direction and whose end portion is accommodated in the hollow portion,
a mounting member that is attached to the vertical member and includes the overhang and the protrusion;
A partition structure characterized by having.
請求項1乃至請求項3のいずれかに記載の仕切り構造体であって、
前記張出部の長手方向における少なくとも一方の端部に、前記突出部とは反対側にて前記胴縁を押圧する押圧部を備えていることを特徴とする仕切り構造体。
The partition structure according to any one of claims 1 to 3,
A partition structure characterized in that at least one end in the longitudinal direction of the projecting portion is provided with a pressing portion that presses the furring edge on a side opposite to the projecting portion.
請求項5に記載の仕切り構造体であって、
前記押圧部は、前記突出部とは反対側に突出して設けられており、
前記押圧部の突出量は、前記突出部の先端と前記胴縁との間隔より大きいことを特徴とする仕切り構造体。
The partition structure according to claim 5,
The pressing portion is provided to protrude on the opposite side to the protruding portion,
A partition structure characterized in that the amount of protrusion of the pressing portion is greater than the distance between the tip of the protruding portion and the rim.
請求項1乃至請求項3のいずれかに記載の仕切り構造体であって、
前記胴縁は、長手方向における少なくとも一方の端部に、前記中空部内にて前記突出部に当接し、前記仕切り部材を前記スリットの外方向に押圧する押圧部を備えていることを特徴とする仕切り構造体。
The partition structure according to any one of claims 1 to 3,
The furring rim is characterized in that it includes a pressing portion at least one end in the longitudinal direction that abuts the protruding portion within the hollow portion and presses the partition member toward the outside of the slit. Partition structure.
長手方向に沿う中空部を有し、前記中空部と外部とを連通するスリットを備えた胴縁と、
空間を仕切る仕切り面を形成し、端部が前記中空部に収容され前記スリットを通して配置される仕切り部材と、
を備え、
前記仕切り部材は、長手方向に沿って設けられ前記中空部内にて前記仕切り面の面外方向における両側に張り出す張出部と、前記中空部内にて前記張出部と交差する方向に突出する突出部と、を有し、
前記張出部は、その一部から面外方向に突出して前記胴縁と対向する突出対向部を有しており、
前記胴縁は、前記突出対向部により前記面外方向の移動が規制され、
前記張出部と前記突出部とにより上下方向の移動が規制された状態で前記長手方向にスライド可能であることを特徴とする仕切り構造体。
A furring edge having a hollow portion extending in the longitudinal direction and having a slit communicating the hollow portion with the outside;
a partition member that forms a partition surface that partitions a space, and whose end portion is accommodated in the hollow portion and is disposed through the slit;
Equipped with
The partition member includes a projecting portion provided along the longitudinal direction and projecting in the hollow portion to both sides in an out-of-plane direction of the partition surface, and projecting in a direction intersecting the projecting portion within the hollow portion. a protrusion;
The projecting portion has a projecting opposing portion projecting in an out-of-plane direction from a part thereof and facing the furring edge,
The movement of the furring edge in the out-of-plane direction is regulated by the protruding opposing portion,
The partition structure is capable of sliding in the longitudinal direction while vertical movement is restricted by the overhang and the protrusion.
JP2023078660A 2022-05-12 2023-05-11 partition structure Pending JP2023168302A (en)

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JP2022078691 2022-05-12

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