JP3106749U - Storage shelf column structure - Google Patents

Storage shelf column structure Download PDF

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JP3106749U
JP3106749U JP2004004345U JP2004004345U JP3106749U JP 3106749 U JP3106749 U JP 3106749U JP 2004004345 U JP2004004345 U JP 2004004345U JP 2004004345 U JP2004004345 U JP 2004004345U JP 3106749 U JP3106749 U JP 3106749U
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tubular body
shelf
storage
storage shelf
column
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柏儒 陳
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陳柏儒
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Abstract

【課題】収納棚の支柱管状体構造を提供する。
【解決手段】本考案収納棚の支柱管状体構造は、前記支柱管状体10は、外周方向を複数に等分した棚板連結部31を連結する凸部11を有し、前記凸部11の外周から管中心に向かって窪み部111が形成され、該窪み部111は水平断面が弧状面を有すると共に、前記凸部11の外周表面には、周方向の上下方向に所定間隔で刻設した複数の環状のスロット12を設けたことを特徴とする。したがって、収納棚の組み合わせ角度は、少なくとも、支柱管状体10を中心点として、30度毎で、360度の角度の範囲において、囲繞組み合わせの変化が可能であると共に、使用者が必要に応じて、棚板連結部31の高度、及び、他の収納棚30の棚板連結部31間との距離を調節することが出来る。
【選択図】図3


A column structure of a storage rack is provided.
In the column structure of the storage shelf of the present invention, the column structure has a convex portion that connects a shelf plate connecting portion that is equally divided into a plurality of outer peripheral directions. A recess 111 is formed from the outer periphery toward the center of the tube. The recess 111 has an arc-shaped horizontal cross section, and is engraved on the outer peripheral surface of the protrusion 11 at a predetermined interval in the circumferential direction. A plurality of annular slots 12 are provided. Therefore, as for the combination angle of the storage shelves, at least every 30 degrees with the column tubular body 10 as the center point, the range of the go combination can be changed within the range of 360 degrees. The altitude of the shelf board connecting portion 31 and the distance between the shelf board connecting portions 31 of the other storage shelves 30 can be adjusted.
[Selection] Figure 3


Description

本考案は、収納棚の支柱管状体構造に関するものであって、特に、多方向性、及び、棚板連結部の組み合わせが変化可能な支柱管状体構造に関するものである。   The present invention relates to a support column tubular body structure of a storage shelf, and more particularly to a column tubular body structure in which the combination of multi-directionality and shelf plate connecting portions can be changed.

現在一般に見られる組み合わせ式収納棚構造は、図1で示されるように、複数の環溝2を有する支柱管状体3に、一対の半円形状を一組とした環状取付部材4を囲繞して取り付け、この支柱管状体3に棚板連結部の四隅に形成されているスリーブ5を、それぞれ、「上から下」に嵌めこみ収納棚1を完成するようにしている。
このような収納棚構造の最大の欠点は、棚板連結部1の左右、或いは、前後に棚板連結部1を拡張したい場合、主体構造の棚板連結部の組み合わせが、「上から下」の連接に制限されているために、棚板連結部1を拡張する時、先に、支柱管状体3とスリーブとの連接個所を部分的に取り外した後でないと、次の拡張動作が行えないので、非常に不便である。
As shown in FIG. 1, the combination storage shelf structure that is generally seen at present encloses a ring tubular member 3 having a plurality of annular grooves 2 and an annular mounting member 4 that is a pair of semicircular shapes. The sleeves 5 formed at the four corners of the shelf connecting portion are fitted into the columnar tubular body 3 from the top to the bottom to complete the storage shelf 1.
The biggest drawback of such a storage shelf structure is that when the shelf connection part 1 is to be expanded to the left or right of the shelf connection part 1 or before and after, the combination of the shelf connection parts of the main structure is “from top to bottom”. Therefore, when the shelf connecting portion 1 is expanded, the next expansion operation cannot be performed unless the connecting portion between the support tubular body 3 and the sleeve is partially removed first. So it is very inconvenient.

また、図2で示されるように、支柱管状体3、及び、その組み合わせ設計を改良したものは、主体構造である支柱管状体3の断面が、H字型、或いは、円形で、H字型の二つの窪み6が嵌合連接部になっている。支柱管状体3上には、上下方向に等間隔の複数の水平貫通孔7、或いは、凹槽を設置している。収納棚1の組み合わせは、開口状を呈する差込片8を支柱管状体3に連接し、半開口状の連結部9によって両者を保持し、この支柱管状体3と収納棚1の外周4隅に配設した嵌合部1aとを連結して組み立てている。
この従来技術においては、収納棚1を拡張したい場合、支柱管状体3一側において、順に、差込片8、連結部9を嵌接するだけでよく、元の棚板連結部1を取り外す必要がない。この改良方法は、前述の公知の支柱管状体構造の問題を改善している。
しかし、前述の収納棚のような構造は、左右方向の組み合わせだけが提供され、特殊な角度や、特殊な壁面の交差する位置に設置するのには適さない。
Further, as shown in FIG. 2, the columnar tubular body 3 and an improved combination design thereof have an H-shaped or circular cross section of the columnar tubular body 3 as the main structure. These two depressions 6 are fitting connection portions. On the columnar tubular body 3, a plurality of horizontal through holes 7 or concave tubs are installed at equal intervals in the vertical direction. The combination of the storage shelves 1 is such that an insertion piece 8 having an opening shape is connected to the column tubular body 3, and both are held by a semi-opening connection portion 9. It is assembled by connecting the fitting part 1a arranged in the above.
In this prior art, when it is desired to expand the storage shelf 1, it is only necessary to fit the insertion piece 8 and the connecting portion 9 in order on one side of the support tubular body 3, and it is necessary to remove the original shelf board connecting portion 1. Absent. This improved method improves the problems of the known strut tubular structure described above.
However, the structure like the storage shelf described above is provided only in the left-right combination, and is not suitable for installation at a special angle or at a position where a special wall surface intersects.

本考案は、支柱管状体構造であって、異なる角度の壁部の交差位置、展示場等の場所に応じて、若干の嵌合接続部材、棚板連結部を使用し、収納棚の組み合わせ角度及び形態が任意に変化できる支柱管状体構造を提供することを目的とする。   The present invention is a column structure of struts, which uses some fitting connection members and shelf coupling parts according to the crossing position of the walls at different angles, the location of the exhibition hall, etc., and the combination angle of the storage shelves And it aims at providing the support | pillar tubular body structure which a form can change arbitrarily.

本考案の請求項1の考案は、収納棚の支柱管状体構造であって、前記支柱管状体は、外周方向を複数に等分した棚板連結部を連結する凸部を有し、前記凸部の外周から管中心に向かって窪み部が形成され、該窪み部は水平断面が弧状面を有すると共に、前記凸部の外周表面には、周方向に上下方向に所定間隔で刻設した複数の環状のスロットを設けたことを特徴とする。   The invention of claim 1 of the present invention is a support tubular structure of a storage shelf, wherein the support tubular body has a convex part for connecting a shelf plate connecting part equally divided into a plurality of outer circumferential directions, and the convex A recess is formed from the outer periphery of the portion toward the center of the tube, and the recess has a horizontal cross section having an arcuate surface, and a plurality of recesses are engraved on the outer peripheral surface of the convex portion in the circumferential direction at predetermined intervals. An annular slot is provided.

請求項2の考案は、請求項1に記載の収納棚の支柱管状体構造において、前記支柱管状体構造の前記凸部は、前記支柱管状体の管径と重量負荷に応じて、単一または複数の前記凸部を一組として利用して、前記支柱管状体に連結される嵌板を配設し、収納棚の棚板連結部と共に組み立てるようにしたことを特徴とする。
請求項3の考案は、請求項1に記載の収納棚の支柱管状体構造において、前記支柱管状体と前記棚板連結部の組み合わせの水平方向の角度は、少なくとも、支柱管状体を中心点として、360度の角度の範囲における囲繞組み合わせ変化が可能であることを特徴とする。
請求項4の考案は、請求項1に記載の収納棚の支柱管状体構造において、前記支柱管状体は、外周方向を複数に等分した少なくとも三つ以上の凸部を有することを特徴とする。
The invention of claim 2 is the columnar tubular body structure of the storage shelf according to claim 1, wherein the convex portion of the columnar tubular body structure is single or depending on the tube diameter and weight load of the columnar tubular body. A plurality of convex portions are used as a set, and a fitting plate connected to the columnar tubular body is disposed, and assembled together with a shelf plate connecting portion of a storage shelf.
The invention according to claim 3 is the column structure of the storage shelf according to claim 1, wherein the horizontal angle of the combination of the column structure and the shelf connecting portion is at least the column structure as the center point. It is characterized in that it is possible to change the Go combination in the range of 360 degrees.
The invention according to claim 4 is the columnar structure of the storage shelf according to claim 1, wherein the columnar tubular body has at least three or more convex portions equally divided into a plurality of outer circumferential directions. .

本考案は、収納棚の組み合わせ角度が、少なくとも、支柱管状体10を中心点として、30度毎で、360度の角度範囲における外周側に組み合わせの変化が可能である。支柱管状体10上には、複数の環状スロット12を有し、嵌板20の内壁面に突出した突起21により、スロット12と係合する構造であるため、使用者が必要に応じて、棚板連結部31の高度、及び、他の収納棚30の棚板連結部31間の距離を調節することが出来る。   In the present invention, the combination angle of the storage shelves can be changed to the outer peripheral side in an angle range of 360 degrees at least every 30 degrees with the columnar tubular body 10 as the center point. On the support tubular body 10, there are a plurality of annular slots 12, and the protrusions 21 projecting from the inner wall surface of the fitting plate 20 are engaged with the slots 12. The altitude of the plate connecting portion 31 and the distance between the shelf plate connecting portions 31 of the other storage shelves 30 can be adjusted.

以下本考案の具体的な実施例について図面を基に説明する   Hereinafter, specific embodiments of the present invention will be described with reference to the drawings.

図3の(a),(b)は本考案の収納棚の支柱管状体構造を示す第1実施例を示す分解斜視図並びに嵌板の裏面図である。
本考案の収納棚30の構造は、4本の支柱管状体10(1本のみ示す)と、前記支柱管状体10に取付けられる複数の嵌板20と、矩形状の収納棚30の4角隅に配設される棚板連結部31からなる。
FIGS. 3A and 3B are an exploded perspective view showing the first embodiment of the tubular column structure of the storage shelf of the present invention and a rear view of the fitting plate.
The structure of the storage shelf 30 of the present invention includes four columnar tubular bodies 10 (only one is shown), a plurality of fitting plates 20 attached to the columnar tubular body 10, and four corners of the rectangular storage shelf 30. It consists of the shelf connection part 31 arrange | positioned.

該支柱管状体10は、円周方向が6つに等分された位置に、棚板連結部31を設置する凸部11を有し、凸部11の外周から管中心に向かって窪み部111が形成されている。窪み部111は水平断面が弧状面を有している。前記凸部11の外周表面には、周方向に上下方向に所定間隔で刻設した複数の環状のスロット12を有し、スロット12のスロット幅は、前記嵌板20の突起21を嵌合接続するのに充分な大きさとなっている。   The columnar tubular body 10 has a convex portion 11 for installing the shelf connecting portion 31 at a position where the circumferential direction is equally divided into six, and a concave portion 111 from the outer periphery of the convex portion 11 toward the center of the tube. Is formed. The recess 111 has an arcuate surface in the horizontal section. On the outer peripheral surface of the convex portion 11, there are a plurality of annular slots 12 that are engraved in the circumferential direction at a predetermined interval in the circumferential direction. It is big enough to do.

該嵌板20は、支柱管状体10の凸部11外形に合わせて、ほぼ半環形状の下方大径の斜面体になっており、両端側は内側に折り曲げられて前記窪み部111に適合すると共に、内壁面には突出した突起21を有し、前記支柱管状体10の凸部11のスロット12に係合するようになっている。   The fitting plate 20 is a substantially semi-annular downward large-diameter sloped body in conformity with the outer shape of the convex portion 11 of the columnar tubular body 10, and both end sides are bent inward to fit the recess 111. At the same time, the inner wall surface has a protruding projection 21 and is engaged with the slot 12 of the convex portion 11 of the columnar tubular body 10.

前記収納棚30は、物を載置する矩形状の網状のトレイ体で、四隅に前記嵌板20に嵌合接続できる棚板連結部31が形成されている。   The storage shelf 30 is a rectangular net-like tray body on which objects are placed, and shelf plate coupling portions 31 that can be fitted and connected to the fitting plate 20 are formed at four corners.

上述の三つの部材により組み立てるには、まず、嵌板20を支柱管状体10の凸部11位置に嵌合接続すると共に、内壁面の突起21を凸部11のスロット12に係合させて、しっかりと固定する。更に、物の重量により脱落するのを防止するため、棚板連結部31を嵌板20に連結し、嵌板20外形の斜面テーパにより、重力による下滑を阻止している。その組み立て状態は図4で示されている。   To assemble with the above three members, first, the fitting plate 20 is fitted and connected to the position of the convex portion 11 of the column tubular body 10, and the protrusion 21 on the inner wall surface is engaged with the slot 12 of the convex portion 11, Secure firmly. Furthermore, in order to prevent falling off due to the weight of an object, the shelf board connecting portion 31 is connected to the fitting plate 20 and the downslip due to gravity is prevented by the inclined taper of the outer shape of the fitting plate 20. The assembled state is shown in FIG.

更に、本考案の重点である支柱管状体10において、6個の凸部11は、その管径と重量負荷に応じて、二個の凸部11を一組にしたり、単一で凸部11を設置したりして、嵌板20、及び、棚板連結部30と共に、収納棚30として組み立てることが出来る。故に、収納棚30の水平面の組み合わせ角度は、少なくとも、支柱管状体10を中心点として、30度毎で、360度の角度範囲において囲繞組み合わせの変化が可能である。   Further, in the columnar tubular body 10 which is an emphasis of the present invention, the six convex portions 11 can be formed as a pair of two convex portions 11 or a single convex portion 11 according to the tube diameter and weight load. Can be assembled as a storage shelf 30 together with the fitting plate 20 and the shelf board connecting portion 30. Therefore, the combination angle of the horizontal plane of the storage shelf 30 can be changed at least every 30 degrees with the columnar tubular body 10 as the center point in the angle range of 360 degrees.

図5は、本考案の収納棚の支柱管状体構造のおける水平方向に併設状態に拡張組み合わせた状態を示す全体斜視図である。
この実施例においては、収納棚の支柱管状体構造は前述の第1実施例と全く同一であるが、収納棚30の4角隅に夫々配設される支柱管状体10が、併設部分では互いに共用されており、2つの収納棚30に対し支柱管状体10が6本で構成できるようにしたものである。
FIG. 5 is an overall perspective view showing a state in which the support tubular body structure of the storage shelf of the present invention is expanded and combined in the horizontal state.
In this embodiment, the column structure of the storage rack is exactly the same as that of the first embodiment, but the column tubular bodies 10 respectively disposed at the four corners of the storage rack 30 are mutually connected in the side portion. The column tubular body 10 is configured to be six for the two storage shelves 30.

図6は、本考案の収納棚の支柱管状体構造において、矩形状の収納棚の対角線上の角部同士を連接して併設状態に拡張組み合わせた状態を示す全体斜視図である。
この実施例においては、収納棚の支柱管状体構造は前述の第1実施例と全く同一であるが、収納棚30の4角隅に夫々配設される支柱管状体10が、併設部分では互いに共用されており、2つの収納棚30に対し支柱管状体10が7本で構成できるようにしたものである。
FIG. 6 is an overall perspective view showing a state in which diagonal corners of a rectangular storage shelf are connected to each other and expanded in the side-by-side state in the columnar tubular structure of the storage shelf of the present invention.
In this embodiment, the column structure of the storage rack is exactly the same as that of the first embodiment, but the column tubular bodies 10 respectively disposed at the four corners of the storage rack 30 are mutually connected in the side portion. It is shared and is configured such that seven support columns 10 can be configured for two storage shelves 30.

図7は、本考案の収納棚の支柱管状体構造において、矩形状の2つの収納棚の角部同士を所望の位置状態に連接して併設状態に拡張組み合わせた状態を示す全体斜視図である。
この実施例においては、収納棚の支柱管状体構造は前述の第1実施例と全く同一であるが、収納棚30の2角隅に夫々配設される支柱管状体10が、併設部分では互いに共用されており、3つの収納棚30に対し支柱管状体10が7本で構成できるようにしたものである。
FIG. 7 is an overall perspective view showing a state in which corners of two rectangular storage shelves are connected to each other in a desired position state and expanded in the side-by-side state in the columnar tubular structure of the storage shelf of the present invention. .
In this embodiment, the column structure of the storage rack is exactly the same as that of the first embodiment, but the column tubular bodies 10 respectively disposed at the two corners of the storage rack 30 are mutually connected in the side portion. The column tubular body 10 can be composed of seven for the three storage shelves 30.

図8は、本考案の収納棚の支柱管状体構造において、矩形状の3つの収納棚の角部同士を所望の位置状態に連接して併設状態に拡張組み合わせた状態を示す全体斜視図である。
この実施例においては、収納棚の支柱管状体構造は前述の第1実施例と全く同一であるが、収納棚30の2角隅に夫々配設される支柱管状体10が、併設部分では互いに共用されており、3つの収納棚30に対し支柱管状体10が9本で構成できるようにしたものである。
FIG. 8 is an overall perspective view showing a state in which corners of three rectangular storage shelves are connected to each other in a desired position state and expanded and combined in a side-by-side state in the column structure of the storage shelf of the present invention. .
In this embodiment, the column structure of the storage rack is exactly the same as that of the first embodiment, but the column tubular bodies 10 respectively disposed at the two corners of the storage rack 30 are mutually connected in the side portion. The column tubular body 10 is configured to be composed of nine for the three storage shelves 30.

従来の収納棚の支柱管状体及びその組み立て方式を示した分解図である。It is the exploded view which showed the support | pillar tubular body of the conventional storage shelf, and its assembly system. 従来のもう一つの収納棚の支柱管状体及びその組み立て方式を示した分解図である。It is the exploded view which showed the pillar tubular body of another conventional storage shelf, and its assembly system. (a),(b)は本考案の収納棚の支柱管状体構造の第1実施例を示すもので、(a)は分解斜視図、(b)は嵌板の裏面図である。(A), (b) shows the 1st Example of the support | pillar tubular body structure of the storage shelf of this invention, (a) is an exploded perspective view, (b) is a back view of a fitting board. 本考案の収納棚の支柱管状体構造の第1実施例の組み立て斜視図である。It is an assembly perspective view of the 1st example of the support tubular body structure of the storage shelf of the present invention. 本考案の収納棚の支柱管状体構造の第2実施例の組み立て状態を示す斜視図である。It is a perspective view which shows the assembly state of 2nd Example of the support | pillar tubular body structure of the storage shelf of this invention. 本考案の収納棚の支柱管状体構造の第3実施例の組み立て状態を示す斜視図である。It is a perspective view which shows the assembly state of 3rd Example of the support | pillar tubular body structure of the storage shelf of this invention. 本考案の収納棚の支柱管状体構造の第4実施例の組み立て状態を示す斜視図である。It is a perspective view which shows the assembly state of 4th Example of the support | pillar tubular body structure of the storage shelf of this invention. 本考案の収納棚の支柱管状体構造の第5実施例の組み立て状態を示す斜視図である。It is a perspective view which shows the assembly state of 5th Example of the support | pillar tubular body structure of the storage shelf of this invention.

符号の説明Explanation of symbols

10… 支柱管状体
11… 凸部
111…窪み部
12… スロット
20… 嵌板
21… 突起
30… 収納棚
31… 棚板連結部
DESCRIPTION OF SYMBOLS 10 ... Tubular tubular body 11 ... Convex part 111 ... Depression part 12 ... Slot 20 ... Fitting plate 21 ... Protrusion
30 ... Storage shelf 31 ... Shelf plate connection

Claims (4)

収納棚の支柱管状体構造であって、前記支柱管状体は、外周方向を複数に等分した棚板連結部を連結する凸部を有し、前記凸部の外周から管中心に向かって窪み部が形成され、該窪み部は水平断面が弧状面を有すると共に、前記凸部の外周表面には、周方向に上下方向に所定間隔で刻設した複数の環状のスロットを設けたことを特徴とする収納棚の支柱管状体構造。   It is a support tubular body structure of a storage shelf, and the support tubular body has a convex portion that connects a shelf plate connecting portion equally divided into a plurality of outer peripheral directions, and is recessed from the outer periphery of the convex portion toward the tube center. The recess has a horizontal cross section having an arcuate surface, and the outer peripheral surface of the convex portion is provided with a plurality of annular slots cut in the circumferential direction at predetermined intervals. The column structure of the storage rack. 前記支柱管状体構造の前記凸部は、前記支柱管状体の管径と重量負荷に応じて、単一または複数の前記凸部を一組として利用して、前記支柱管状体に連結される嵌板を配設し、収納棚の棚板連結部と共に組み立てるようにしたことを特徴とする請求項1に記載の収納棚の支柱管状体構造。   The convex portion of the columnar tubular body structure is fitted to the columnar tubular body using a single or a plurality of the convex portions as a set according to the tube diameter and weight load of the columnar tubular body. 2. The column structure of a storage shelf column according to claim 1, wherein a plate is disposed and assembled together with a shelf connecting portion of the storage shelf. 前記支柱管状体と前記棚板連結部の組み合わせの水平方向の角度は、少なくとも、支柱管状体を中心点として、360度の角度の範囲において、囲繞組み合わせ変化が可能であることを特徴とする請求項1に記載の収納棚の支柱管状体構造。   The angle of the horizontal direction of the combination of the columnar tubular body and the shelf connecting portion can be changed at least in the range of 360 degrees with the columnar tubular body as a center point. Item 2. A storage column support body structure according to Item 1. 前記支柱管状体は、外周方向を複数に等分した少なくとも三つ以上の凸部を有することを特徴とする請求項1に記載の収納棚の支柱管状体構造。
The said support tubular body has at least 3 or more convex parts which equally divided the outer peripheral direction into plurality, The support tubular body structure of the storage shelf of Claim 1 characterized by the above-mentioned.
JP2004004345U 2004-07-23 2004-07-23 Storage shelf column structure Expired - Fee Related JP3106749U (en)

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