JP3193420U - Storage rack - Google Patents

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JP3193420U
JP3193420U JP2014003874U JP2014003874U JP3193420U JP 3193420 U JP3193420 U JP 3193420U JP 2014003874 U JP2014003874 U JP 2014003874U JP 2014003874 U JP2014003874 U JP 2014003874U JP 3193420 U JP3193420 U JP 3193420U
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support member
shelf
fitting
storage rack
shelf board
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秉憲 呉
秉憲 呉
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秉憲 呉
秉憲 呉
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Abstract

【課題】容易に組み立てることができ、かつ製造コストを低減することのできるDIY組立式の収納ラックを提供する。【解決手段】被収納物品を収納する複数の棚板部と、所定の長さを有し、棚板部の所定の位置にそれぞれ設けられて棚板部を位置決めするとともに、複数の棚板部を上下に多層設ける支持部材30と、を含んでなる収納ラックであって、支持部材30の外周面に少なくとも1以上の突起部を長手方向に設けるとともに、突起部に複数の位置決め溝32を形成し、別途、棒材を曲げて嵌合支持部材を形成し、嵌合支持部材に支持部材30を嵌挿し、かつ回転させて位置決め溝32に嵌合させて複数の棚板部を支持し、位置決めするように構成する。【選択図】図2PROBLEM TO BE SOLVED: To provide a DIY assembly type storage rack which can be easily assembled and can reduce a manufacturing cost. SOLUTION: A plurality of shelf board portions for storing articles to be stored, and a plurality of shelf board portions having a predetermined length and provided at predetermined positions of the shelf board portions to position the shelf board portions and a plurality of shelf board portions. A storage rack including a support member 30 provided in multiple layers on the upper and lower sides, in which at least one or more protrusions are provided in the longitudinal direction on the outer peripheral surface of the support member 30, and a plurality of positioning grooves 32 are formed in the protrusions. Separately, the rod material is bent to form a fitting support member, the support member 30 is fitted and inserted into the fitting support member, and the support member 30 is rotated to fit into the positioning groove 32 to support the plurality of shelf boards. Configure to position. [Selection diagram] Fig. 2

Description

この考案は、被収納物品の収納に供する収納ラックに関し、特にDIY組立方式で、かつ組立てが容易な構造の収納ラックに関する。   The present invention relates to a storage rack used for storing articles to be stored, and more particularly to a storage rack having a DIY assembly method and a structure that can be easily assembled.

近年家庭での使用を目的とした各種製品の製造技術が向上し、生活水準が高められてきた。消費者はDIY組立式の収納ラックを購買して物品の整理に利用するようになった。係る収納ラックの構造は、二種類に大別される。即ち、棚板と支柱とをねじで締結して固定する形式と、ねじなどの締結部材を用いない形式である。前者は、製造工程において、必要箇所にねじ孔を穿設する必要があり、しかも必要に応じてナットを容易しなければならない。また、使用者は購買した後、同梱のねじ、ナットなどの締結部材を取出し、これらを利用して収納棚を組み立てる。かかる組み立て方式は手順が煩雑で、しかも組み立てた後、締結部材の一端が完成品の表面に露出するため、好ましい外観とは言えなくなる。   In recent years, manufacturing techniques for various products aimed at home use have improved and the standard of living has been raised. Consumers purchase DIY assembling-type storage racks and use them for organizing goods. The structure of the storage rack is roughly divided into two types. That is, there are a form in which the shelf board and the column are fastened and fixed with screws, and a form in which a fastening member such as a screw is not used. In the former, it is necessary to make a screw hole in a necessary part in the manufacturing process, and the nut must be easily made as necessary. Further, after purchasing, the user takes out the fastening members such as the included screws and nuts, and uses these to assemble the storage shelf. Such an assembly method has a complicated procedure, and after assembly, one end of the fastening member is exposed on the surface of the finished product, so that it cannot be said to have a preferable appearance.

後者は、支柱を継ぎ足して組み立てる形式であって、支柱を構成する部材にプラスチック材による滑り止め部材を嵌着し、棚板の四隅に設けた金属製の筒体に押し込んで嵌設する。係る形式は組立作業が容易で、消費者に好まれている。但し、該筒体のコストは、ねじなどの締結部材ほど低くはない。さらに、それぞれの筒体には溶接による固定ポイントを4か所に形成しなければならず、仮に4層の収納ラックであれば、16本の筒体を必要とし、かつ64箇所の溶接による固定ポイントを必要とする。また、プラスチック材による滑り止め部材は32個必要となる。よって、製造時の加工の工程數が増えて煩雑になり、このため製造コストは低くはならない。しかも、近年原料の価格が高騰しているため、コストダウンは望めそうもない。   The latter is a form in which a support is added and assembled, and a non-slip member made of a plastic material is fitted to a member constituting the support, and is pushed into a metal cylinder provided at the four corners of the shelf. This type is easy to assemble and is preferred by consumers. However, the cost of the cylinder is not as low as that of a fastening member such as a screw. Furthermore, each cylindrical body must be formed with four fixing points by welding, and if it is a four-layer storage rack, 16 cylindrical bodies are required and fixing by 64 welding points is required. Need points. Further, 32 anti-slip members made of plastic material are required. Therefore, the number of processing steps during manufacturing increases and becomes complicated, and thus the manufacturing cost does not decrease. Moreover, the cost of raw materials has soared in recent years, so it is unlikely that cost reduction will be expected.

図1に開示する従来の収納ラック10は、金属製の棚板部11と、棚板部11の四隅に設ける嵌着管体12と、支柱体13と、及びプラスチック材によってなる滑り止め部材14と、を含んでなる。   A conventional storage rack 10 disclosed in FIG. 1 includes a metal shelf 11, fitting tubes 12 provided at four corners of the shelf 11, struts 13, and a non-slip member 14 made of a plastic material. And comprising.

滑り止め部材14は上端から下端に向かって外径が漸拡し、内周面に突起部141を一体に形成してなる。   The non-slip member 14 has an outer diameter that gradually increases from the upper end to the lower end, and a protrusion 141 is integrally formed on the inner peripheral surface.

組み立てる場合は、滑り止め部材14を支柱体13に形成した凹溝15に取り付けて嵌着管体12に圧入する。よって、滑り止め部材14の外周面が嵌着管体12に当接し、棚板部11と支柱体13とが連結する。 When assembling, the anti-slip member 14 is attached to the concave groove 15 formed in the support column 13 and press-fitted into the fitting tube 12. Therefore, the outer peripheral surface of the anti-slip member 14 comes into contact with the fitting tube body 12, and the shelf board portion 11 and the column body 13 are connected.

上述する従来の収納ラックは、棚板部11を嵌着管体12に設けるために、四箇所の固定ポイントに溶接をしなければならず、また組み立てる場合には滑り止め部材14を取り付ける高さを注視し、滑り止め部材14の内周面の突起部141が支柱体13の凹溝15の位置に至るよう正確に嵌挿して、はじめて嵌着管体12を位置決めすることができる。係る組み立て作業は不便である。   In the conventional storage rack described above, in order to provide the shelf plate portion 11 on the fitting tube body 12, four fixing points must be welded. The fitting tube body 12 can be positioned only after the projection 141 on the inner peripheral surface of the anti-slip member 14 is accurately fitted and inserted so as to reach the position of the concave groove 15 of the column body 13. Such assembly work is inconvenient.

上述するように、従来のDIY組立て方式の収納ラックは、力学と物理の原理を応用し、ねじなの締結部材で締結する方式のものがあり、一方ではプラスチック材による滑り止め部材を金属製の支柱に取付け、さらに棚板部の嵌着管体に圧入して連結するものがあるが、これらはいずれも組立ての作業が煩雑で、容易ではない。さらには、部品の点数が多くなり、製造工程数のも多くなり、製造コストが高くなる。このため製品の販売価格も高くなり、消費者の経済的負担を増大させる。   As described above, conventional DIY assembly type storage racks are based on the principles of mechanics and physics and are fastened with screw-type fastening members. On the other hand, non-slip members made of plastic material are made of metal support columns. In addition, there are some which are press-fitted and connected to the fitting tube body of the shelf plate part, but all of these are complicated and difficult to assemble. Furthermore, the number of parts increases, the number of manufacturing processes increases, and the manufacturing cost increases. This increases the selling price of the product and increases the consumer's economic burden.

この考案は、容易に組み立てることができ、かつ製造コストを低減することのできるDIY組立式の収納ラックを提供することを課題とする。   An object of the present invention is to provide a DIY assembly-type storage rack that can be easily assembled and can reduce the manufacturing cost.

そこで、本考案者は従来の収納ラックに見られる欠点に鑑み鋭意研究を重ねた結果、
被収納物品を収納する複数の棚板部と、所定の長さを有し、該棚板部の所定の位置にそれぞれ設けられて該棚板部を位置決めするとともに、複数の該棚板部を上下に多層設ける支持部材と、を含んでなる収納ラックであって、
該支持部材の外周面に少なくとも1以上の突起部を長手方向に設けるとともに、該突起部に複数の位置決め溝を形成し、別途、棒材を曲げて嵌合支持部材を形成し、該嵌合支持部材に該支持部材を嵌挿し、かつ回転させて該位置決め溝に嵌合させて複数の該棚板部を支持し、位置決めするように構成した収納ラックによって課題を解決できる点に着眼し、係る知見に基づいて本考案を完成させた。
Therefore, as a result of intensive research in view of the drawbacks found in conventional storage racks,
A plurality of shelf boards for storing articles to be stored, and having a predetermined length, each provided at a predetermined position of the shelf board to position the shelf board, and a plurality of the shelf boards A storage rack comprising a plurality of support members provided vertically,
At least one protrusion is provided in the longitudinal direction on the outer peripheral surface of the support member, a plurality of positioning grooves are formed in the protrusion, and a fitting support member is formed by bending a bar separately. The support member is inserted into the support member, rotated and fitted into the positioning groove to support and position the plurality of shelves, and attention is paid to the point that the problem can be solved by the storage rack configured to position, The present invention was completed based on such knowledge.

以下この考案について説明する。請求項1に記載する収納ラックは、被収納物品を収納する複数の棚板部と、所定の長さを有し、該棚板部の所定の位置にそれぞれ設けられて該棚板部を位置決めするとともに、複数の該棚板部を上下に多層設ける支持部材と、を含んでなる収納ラックであって、
該支持部材の外周面に少なくとも1以上の突起部を長手方向に設けるとともに、該突起部に複数の位置決め溝を形成し、
別途、棒材を曲げて嵌合支持部材を形成し、該嵌合支持部材に該支持部材を嵌挿し、かつ回転させて該位置決め溝に嵌合させて複数の該棚板部を支持し、位置決めするように構成する。
This device will be described below. The storage rack according to claim 1 has a plurality of shelf plates for storing articles to be stored and a predetermined length, and each of the storage racks is provided at a predetermined position of the shelf plate to position the shelf plates. And a support member that is provided with a plurality of the shelf parts in multiple layers on the top and bottom, and a storage rack comprising:
Providing at least one protrusion in the longitudinal direction on the outer peripheral surface of the support member, and forming a plurality of positioning grooves in the protrusion;
Separately, a bar material is bent to form a fitting support member, the support member is inserted into the fitting support member, and rotated to fit into the positioning groove to support the plurality of shelf parts. Configure to position.

請求項2に記載する収納ラックは、請求項1における嵌合支持部材が独立した部材であって、棒材を曲げて矩形に形成してなり、該支持部材は横断面が矩形を呈する縦長の柱体であって、四隅に角を有し、該支持部材を該嵌合支持部材に嵌挿すると該支持部材と該嵌合支持部材にとの間に嵌挿空間が形成さるように構成し、該棚板部に複数の支柱体を設け、少なくとも1本以上の該支柱体を該嵌挿空間に嵌挿した該棚板部を位置決めする。   The storage rack according to claim 2 is a member in which the fitting support member according to claim 1 is an independent member, and is formed into a rectangular shape by bending a bar, and the support member is a vertically long cross section having a rectangular shape. It is a pillar body, and has corners at four corners, and is configured such that when the support member is inserted into the fitting support member, a fitting space is formed between the support member and the fitting support member. A plurality of support columns are provided on the shelf plate portion, and the shelf plate portion in which at least one or more support columns are inserted into the insertion space is positioned.

請求項3に記載する収納ラックは、請求項1における嵌合支持部材が棒材によって方形に形成され、かつ該棚板部内に形成され、該支持部材は横断面が矩形を呈する縦長の柱体であって、四隅に角を有して、直接該棚板部を支持して位置決めする。   According to a third aspect of the present invention, there is provided a storage rack according to the first aspect, wherein the fitting support member in the first aspect is formed in a square shape by a bar and is formed in the shelf board, and the support member is a vertically long column having a rectangular cross section. And it has a corner in four corners and supports and positions the shelf part directly.

請求項4に記載する収納ラックは、請求項1における嵌合支持部材が棒材によって方形に形成され、かつ該棚板部内に形成され、該支持部材が円柱状を呈し、外周面に横断面が三角形を呈する突起部を長手方向に形成し、該嵌合支持部材に該支持部材を嵌挿して直接該棚板部を支持して位置決めする。   According to a fourth aspect of the present invention, there is provided the storage rack according to the first aspect, wherein the fitting support member is formed in a square shape by a bar and is formed in the shelf plate, the support member has a columnar shape, and has a cross section on the outer peripheral surface. Is formed in the longitudinal direction, and the support member is inserted into the fitting support member to directly support and position the shelf plate portion.

従来の締結部材を用いないDIY組立式収納ラックの構造を示した説明図である。It is explanatory drawing which showed the structure of the DIY assembly-type storage rack which does not use the conventional fastening member. この考案における支持管体を示した斜視図である。It is the perspective view which showed the support pipe body in this device. この考案による収納ラックの斜視図である。It is a perspective view of the storage rack by this device. この考案における嵌合支持部材を示した斜視図である。It is the perspective view which showed the fitting support member in this device. 実施例1における支持部材と嵌合支持部材との関係を示した説明図である。It is explanatory drawing which showed the relationship between the support member in Example 1, and a fitting support member. 実施例1における支持部材と嵌合支持部材との関係を示した他の説明図である。It is the other explanatory view showing the relation between the support member and fitting support member in Example 1. 実施例1における支持部材と嵌合支持部材との関係を示した平面説明図である。FIG. 3 is an explanatory plan view showing a relationship between a support member and a fitting support member in Example 1. 実施例1における支持部材と嵌合支持部材との関係を示したその他説明図である。It is the other explanatory view showing the relation between the support member and fitting support member in Example 1. 実施例1における支持部材と嵌合支持部材との関係を示した別の説明図である。It is another explanatory drawing which showed the relationship between the supporting member in Example 1, and a fitting support member. 実施例1における支持部材と嵌合支持部材との関係を示した断面説明図である。It is sectional explanatory drawing which showed the relationship between the supporting member in Example 1, and a fitting support member. 実施例1における支持柱と支持部材と嵌合支持部材との関係を示した説明図である。It is explanatory drawing which showed the relationship between the support pillar in Example 1, a support member, and a fitting support member. 実施例2による収納ラックの平面図である。6 is a plan view of a storage rack according to Embodiment 2. FIG. 実施例3における支持部材を示した斜視図である。10 is a perspective view showing a support member in Embodiment 3. FIG. 実施例3における支持部材と嵌合支持部材となる枠との関係を示した平面説明図である。It is plane explanatory drawing which showed the relationship between the support member in Example 3, and the frame used as a fitting support member. 実施例3における支持部材と嵌合支持部材となる枠との関係を示した説明図である。It is explanatory drawing which showed the relationship between the support member in Example 3, and the frame used as a fitting support member. 実施例3における支持部材と嵌合支持部材となる枠との関係を示した他の説明図である。It is the other explanatory view showing the relation between the support member in Example 3, and the frame used as a fitting support member. 実施例3における支持部材と嵌合支持部材となる枠との関係を示した平面説明図である。It is plane explanatory drawing which showed the relationship between the support member in Example 3, and the frame used as a fitting support member. 実施例3における持部材と嵌合支持部材となる枠との関係を示した断面説明図である。It is sectional explanatory drawing which showed the relationship between the holding member in Example 3, and the frame used as a fitting support member. 実施例3による収納ラックの平面図である。6 is a plan view of a storage rack according to Embodiment 3. FIG. 実施例3による収納ラックの斜視図である。6 is a perspective view of a storage rack according to Embodiment 3. FIG.

この考案は、容易に組み立てることができ、かつ製造コストを低減することのできるDIY組立式の収納ラックを提供するものであって、被収納物品を収納する複数の棚板部と、所定の長さを有し、該棚板部の所定の位置にそれぞれ設けられて該棚板部を位置決めするとともに、複数の該棚板部を上下に多層設ける支持部材と、を含んでなる収納ラックにおいて、 該支持部材の外周面に少なくとも1以上の突起部を長手方向に設けるとともに、該突起部に複数の位置決め溝を形成し、別途、棒材を曲げて嵌合支持部材を形成し、該嵌合支持部材に該支持部材を嵌挿し、かつ回転させて該位置決め溝に嵌合させて複数の該棚板部を支持し、位置決めするように構成する。係る収納ラックの構造と特徴を説明するために、具体的な実施例を挙げ、図面を参照にして以下に説明する。   The present invention provides a DIY assembly-type storage rack that can be easily assembled and reduced in manufacturing cost, and includes a plurality of shelf boards for storing articles to be stored, and a predetermined length. And a support member that is provided at a predetermined position of the shelf plate portion to position the shelf plate portion and provides a plurality of the shelf plate portions in the upper and lower layers. At least one protrusion is provided in the longitudinal direction on the outer peripheral surface of the support member, a plurality of positioning grooves are formed in the protrusion, and a fitting support member is formed by bending a bar separately. The support member is inserted and inserted into the support member, and rotated and fitted into the positioning groove to support and position the plurality of shelf boards. In order to describe the structure and characteristics of the storage rack, a specific example will be given and described below with reference to the drawings.

図2、3、4に、この考案による収納ラックを開示する。図面の開示によれば、この考案による収納ラックは、複数の棚板部20と、少なくとも1以上の支持部材30と、嵌合支持部材40とを含んでなる。   A storage rack according to the present invention is disclosed in FIGS. According to the disclosure of the drawings, the storage rack according to the present invention includes a plurality of shelf boards 20, at least one support member 30, and a fitting support member 40.

図面によれば、棚板部20は物品を乗せる部分であって、複数の棒材を縦、横方向に交錯させてなるが、但し一枚の平面板であってもよく、また、金属材でもよく、プラスチック材か、木材であってもよい。   According to the drawings, the shelf board portion 20 is a part on which an article is placed, and a plurality of bars are interlaced in the vertical and horizontal directions, but may be a single flat plate, or a metal material. However, it may be a plastic material or wood.

また、棚板部20の外周部には、下方に複数の支持柱21と、複数の支持部材30を設けて、棚板部20を支持して位置決めする。また、複数の棚板部20を上下方向に組立ててもよい。   In addition, a plurality of support pillars 21 and a plurality of support members 30 are provided below the outer peripheral portion of the shelf board portion 20 to support and position the shelf board portion 20. Moreover, you may assemble the several shelf part 20 in an up-down direction.

図面によれば、支持部材30は横断面が矩形を呈する縦長の柱体であるが、但し、その他不規則な形状であってもよい。また、図面によれば支持部材30は中空状であるが、非中空状であってもよい。また、図2に開示するように支持部材30は所定の長さとするが、実際の必要に応じてこれを決める。さらに、実施例において、支持部材30は、4つの角31を有し、それぞれの角31の高さの等しい位置に位置決め溝32を形成する。   According to the drawing, the support member 30 is a vertically long column having a rectangular cross section, but may have other irregular shapes. Further, according to the drawings, the support member 30 is hollow, but may be non-hollow. Further, as disclosed in FIG. 2, the support member 30 has a predetermined length, which is determined according to actual needs. Further, in the embodiment, the support member 30 has four corners 31 and forms the positioning grooves 32 at positions where the heights of the corners 31 are equal.

図4に開示するように、嵌合支持部材40は、別途独立した部材であって、棒材を曲げて矩形を形成してなり、支持部材30を嵌挿する。   As shown in FIG. 4, the fitting support member 40 is a separately independent member, which is formed by bending a bar to form a rectangle, and the support member 30 is inserted.

また、図5、6、7に開示するように、嵌合支持部材40の内径は支持部材30の外径に比して長く、広い。嵌合支持部材40の四辺が、支持部材30の外周と平行になった状態において、支持部材30を嵌挿することができ、支持部材30の角が嵌合支持部材40の辺に当たるように回転させると、嵌挿することができなくなる。   In addition, as disclosed in FIGS. 5, 6, and 7, the inner diameter of the fitting support member 40 is longer and wider than the outer diameter of the support member 30. In a state where the four sides of the fitting support member 40 are parallel to the outer periphery of the supporting member 30, the supporting member 30 can be inserted and rotated so that the corners of the supporting member 30 hit the sides of the fitting support member 40. If it does, it will become impossible to insert.

図8、11に開示するように支持部材30を嵌合支持部材40に嵌挿し、支持部材30の位置決め溝32を形成した位置において嵌合支持部材40を回転させて位置決め溝32に嵌合させると、支持部材30と嵌合支持部材40にとの間に嵌挿空間41が形成され、支持柱21を嵌挿空間41に嵌挿して棚板部20を位置決めする。   As shown in FIGS. 8 and 11, the support member 30 is fitted into the fitting support member 40, and the fitting support member 40 is rotated and fitted into the positioning groove 32 at the position where the positioning groove 32 of the support member 30 is formed. An insertion space 41 is formed between the support member 30 and the fitting support member 40, and the shelf 20 is positioned by inserting the support column 21 into the insertion space 41.

この考案による収納ラックは、上述する構造を具えてなり、組み立てる場合は図7から図11に開示するように、支持部材30を嵌合支持部材40に嵌挿し、支持部材30の位置決め溝32を形成した位置において嵌合支持部材40を回転させて位置決め溝32に嵌合させる。さらに、支持部材30と嵌合支持部材40にとの間に形成された嵌挿空間41に棚板部20の外周部に設けた支持柱21を嵌挿して棚板部20を位置決めする。この状態において、嵌合支持部材40は支持部材の下方、もしくは上方に形成した位置決め溝32に嵌合して、第2の棚板部20を位置決めする。係る方式によって複数の棚板部20を位置決めする。   The storage rack according to the present invention has the above-described structure, and when assembled, as shown in FIGS. 7 to 11, the support member 30 is inserted into the fitting support member 40, and the positioning groove 32 of the support member 30 is formed. At the formed position, the fitting support member 40 is rotated and fitted into the positioning groove 32. Furthermore, the support column 21 provided in the outer peripheral part of the shelf board part 20 is inserted and inserted in the insertion space 41 formed between the support member 30 and the fitting support member 40 to position the shelf board part 20. In this state, the fitting support member 40 is fitted into the positioning groove 32 formed below or above the support member, and positions the second shelf board portion 20. A plurality of shelf boards 20 are positioned by such a method.

実施例において、支持部材30は4本であるが、3本の支持部材30で棚板部20を位置決めして組み立ててもよい。また、棚板部20の外周の支持柱21は、2本並設して嵌挿空間41に嵌挿してもよい。係る変更もこの考案の実施の範囲に含まれる。   In the embodiment, the number of support members 30 is four. However, the shelf board portion 20 may be positioned and assembled by the three support members 30. Further, two support pillars 21 on the outer periphery of the shelf board portion 20 may be provided side by side and inserted into the insertion space 41. Such changes are also included in the scope of implementation of the present invention.

第2の実施例においては、図2開示する支持部材を、図12に開示ように棚板部50内の四隅に設ける。棚板部50は縦横に交錯させた棒材によってなり、複数の方形の枠51が形成される。よって、該方形の枠51を実施例1における嵌合支持部材40とする。   In the second embodiment, the supporting members disclosed in FIG. 2 are provided at the four corners in the shelf 50 as disclosed in FIG. The shelf board portion 50 is made of bars crossed vertically and horizontally, and a plurality of rectangular frames 51 are formed. Therefore, the rectangular frame 51 is used as the fitting support member 40 in the first embodiment.

実施例2における支持部材30は、実施例1と同様に横断面が矩形を呈する縦長の柱体であり、中空状であっても、非中空状であってもよい。また、同様に位置決め溝32を形成する。   The support member 30 in Example 2 is a vertically long columnar body having a rectangular cross section as in Example 1, and may be hollow or non-hollow. Similarly, the positioning groove 32 is formed.

実施例2における収納ラックを組み立てる場合は、支持部材30を棚板部50の実施例1における嵌合支持部材40となる方形の枠51に嵌挿し、さらに支持部材30を所定の角度だけ回転させると、位置決め溝32に枠51が嵌合する。よって、枠51と支持部材30とによって棚板部50が位置決めされる。   When assembling the storage rack according to the second embodiment, the support member 30 is fitted into the rectangular frame 51 serving as the fitting support member 40 according to the first embodiment of the shelf 50, and the support member 30 is further rotated by a predetermined angle. Then, the frame 51 is fitted into the positioning groove 32. Therefore, the shelf unit 50 is positioned by the frame 51 and the support member 30.

実施例2において、支持部材30を3本として棚板部50を位置決めしてもよい。   In the second embodiment, the shelf board 50 may be positioned using three support members 30.

また、棚板部50が平面板の場合は、実施例1における嵌合支持部材40となる方形の枠51を棚板部50の中央の位置に形成して支持部材30を嵌挿し。1本の支持部材30で棚板部50を位置決めして収納ラックを組み立てる。   Moreover, when the shelf board part 50 is a plane board, the square frame 51 used as the fitting support member 40 in Example 1 is formed in the center position of the shelf board part 50, and the support member 30 is inserted. The shelf board 50 is positioned by one support member 30 to assemble the storage rack.

図13、14、15、16、19に第3の実施例を開示する。図面の開示によれば、第2の実施例と同様に、棚板部50に掲載される方形の枠51を実施例1における嵌合支持部材40とする。支持部材60は円柱状を呈し、所定の長さを具えるが、実際の製品の仕様に応じて長さを決める。   A third embodiment is disclosed in FIGS. 13, 14, 15, 16 and 19. According to the disclosure of the drawings, as in the second embodiment, the rectangular frame 51 placed on the shelf board portion 50 is used as the fitting support member 40 in the first embodiment. The support member 60 has a cylindrical shape and has a predetermined length, but the length is determined according to the actual product specifications.

図13に開示するように、支持部材60は所定の長さを有し、外周面には、横断面が三角形を呈する突起部61を長手方向に形成する。また、突起部61には複数の位置決め溝62を形成する。   As shown in FIG. 13, the support member 60 has a predetermined length, and a protrusion 61 having a triangular cross section is formed in the longitudinal direction on the outer peripheral surface. A plurality of positioning grooves 62 are formed in the protrusion 61.

実施例1における嵌合支持部材40となる方形の枠51の内径は、支持部材60の外径より大きくする。   The inner diameter of the rectangular frame 51 serving as the fitting support member 40 in the first embodiment is made larger than the outer diameter of the support member 60.

第3の実施例による収納ラックを組み立てる場合は、支持部材60を突起部61が枠51の角に対応する位置にして嵌挿し、支持部材60を所定の角度だけ回転させ、位置決め溝62に枠51を嵌合する。よって、図17、18、19、20に開示するように支持部材60によって棚板部50が支持され、位置決めされる。   When assembling the storage rack according to the third embodiment, the support member 60 is fitted and inserted so that the protrusion 61 corresponds to the corner of the frame 51, the support member 60 is rotated by a predetermined angle, and the frame is placed in the positioning groove 62. 51 is fitted. Therefore, as disclosed in FIGS. 17, 18, 19, and 20, the shelf board portion 50 is supported and positioned by the support member 60.

10 収納ラック
11 棚板部
12 嵌着管体
13 支柱体
14 滑り止め部材
141 突起部
15 凹溝
20 棚板部
21 支持柱
30 支持部材
31 角
32 位置決め溝
40 嵌合支持部材
41 嵌挿空間
50 棚板部
51 枠
60 支持部材
61 突起部
62 位置決め溝
DESCRIPTION OF SYMBOLS 10 Storage rack 11 Shelf board part 12 Insertion pipe body 13 Column body 14 Antislip member 141 Protrusion part 15 Groove 20 Shelf board part 21 Support pillar 30 Support member 31 Corner | angular 32 Positioning groove 40 Fitting support member 41 Insertion space 50 Shelf board 51 Frame 60 Support member 61 Projection 62 Positioning groove

Claims (4)

被収納物品を収納する複数の棚板部と、
所定の長さを有し、該棚板部の所定の位置にそれぞれ設けられて該棚板部を位置決めするとともに、複数の該棚板部を上下に多層設ける支持部材と、を含んでなる収納ラックであって、
該支持部材の外周面に少なくとも1以上の突起部を長手方向に設けるとともに、該突起部に複数の位置決め溝を形成し、
別途、棒材を曲げて嵌合支持部材を形成し、該嵌合支持部材に該支持部材を嵌挿し、かつ回転させて該位置決め溝に嵌合させて複数の該棚板部を支持し、位置決めするように構成したことを特徴とする収納ラック。
A plurality of shelf boards for storing articles to be stored;
A support member having a predetermined length and provided at a predetermined position of the shelf plate portion to position the shelf plate portion and providing a plurality of the shelf plate portions in upper and lower layers. Rack,
Providing at least one protrusion in the longitudinal direction on the outer peripheral surface of the support member, and forming a plurality of positioning grooves in the protrusion;
Separately, a bar material is bent to form a fitting support member, the support member is inserted into the fitting support member, and rotated to fit into the positioning groove to support the plurality of shelf parts. A storage rack configured to be positioned.
前記嵌合支持部材が独立した部材であって、棒材を曲げて矩形に形成してなり、該支持部材は横断面が矩形を呈する縦長の柱体であって、四隅に角を有し、該支持部材を該嵌合支持部材に嵌挿すると該支持部材と該嵌合支持部材にとの間に嵌挿空間が形成さるように構成し、該棚板部に複数の支柱体を設け、少なくとも1本以上の該支柱体を該嵌挿空間に嵌挿した該棚板部を位置決めすることを特徴とする請求項1に記載の収納ラック。   The fitting support member is an independent member and is formed into a rectangular shape by bending a bar, and the support member is a vertically long column having a rectangular cross section, and has corners at four corners, When the support member is inserted into the fitting support member, a fitting insertion space is formed between the support member and the fitting support member, and a plurality of support columns are provided on the shelf plate portion. The storage rack according to claim 1, wherein the shelf board portion in which at least one of the support columns is inserted into the insertion space is positioned. 前記嵌合支持部材が棒材によって方形に形成され、かつ該棚板部内に形成され、該支持部材は横断面が矩形を呈する縦長の柱体であって、四隅に角を有して、直接該棚板部を支持して位置決めすることを特徴とする請求項1に記載の収納ラック。   The fitting support member is formed in a square shape by a bar and is formed in the shelf plate portion, and the support member is a vertically long column having a rectangular cross section, and has corners at four corners, and is directly The storage rack according to claim 1, wherein the shelf is supported and positioned. 前記嵌合支持部材が棒材によって方形に形成され、かつ該棚板部内に形成され、該支持部材が円柱状を呈し、外周面に横断面が三角形を呈する突起部を長手方向に形成し、該嵌合支持部材に該支持部材を嵌挿して直接該棚板部を支持して位置決めすることを特徴とする請求項1に記載の収納ラック。   The fitting support member is formed in a square shape by a bar, and is formed in the shelf plate portion, the support member has a columnar shape, and a protrusion portion having a triangular cross section on the outer peripheral surface is formed in the longitudinal direction; The storage rack according to claim 1, wherein the shelf member is directly supported and positioned by inserting the support member into the fitting support member.
JP2014003874U 2014-07-22 2014-07-22 Storage rack Expired - Fee Related JP3193420U (en)

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