JPH0639463U - Three-dimensional calendar - Google Patents
Three-dimensional calendarInfo
- Publication number
- JPH0639463U JPH0639463U JP6398792U JP6398792U JPH0639463U JP H0639463 U JPH0639463 U JP H0639463U JP 6398792 U JP6398792 U JP 6398792U JP 6398792 U JP6398792 U JP 6398792U JP H0639463 U JPH0639463 U JP H0639463U
- Authority
- JP
- Japan
- Prior art keywords
- main body
- regular hexagonal
- regular
- faces
- ridge
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Landscapes
- Cartons (AREA)
Abstract
(57)【要約】
【目的】 シンプルなデザインで意匠性に優れるととも
に、安価に製造することができ、また、運搬や頒布の際
にも嵩ばることがなく、販促品用として好適な立体カレ
ンダーを提供すること
【構成】 紙等からなる中空部材であって、外形が2個
の正六角形底面と12個の側面をもつ多面体の本体を有
し、該本体の12個の側面には、これに隣接した正六角
形底面を天側として月別の暦を表示し、本体は、上下の
側面間稜部にスリットを形成し且つ他の各稜部を折り曲
げ可能に構成することで略平面状態に折畳み可能とし、
本体内部には本体を多面体形状に保持する弾性部材を設
け、本体を2個の正六角形底面方向で押圧することで略
平面状態に折畳み、且つ押圧力を開放した際に自動的に
多面体形状に復元できるようにした。
(57) [Abstract] [Purpose] A three-dimensional calendar suitable for promotional items, which is simple in design and excellent in designability, can be manufactured at low cost, and is not bulky during transportation or distribution. A hollow member made of paper or the like having a polyhedral main body having an outer shape of two regular hexagonal bottom surfaces and twelve side surfaces, and the twelve side surfaces of the main body have The monthly hexagon is displayed with the bottom of the regular hexagon adjacent to, and the main body is folded into a substantially flat state by forming slits on the ridges between the upper and lower side faces and making each of the other ridges foldable. Enable and
An elastic member that holds the main body in a polyhedral shape is provided inside the main body, and the main body is folded into a substantially flat state by pressing it in the direction of the bottom surface of two regular hexagons, and automatically becomes a polyhedral shape when the pressing force is released. I was able to restore.
Description
【0001】[0001]
この考案は、卓上型の立体カレンダーに関する。 This invention relates to a desk-type three-dimensional calendar.
【0002】[0002]
最近、卓上型の立体カレンダーが室内インテリアの一つとして好まれる傾向が あり、種々のデザインのものが市販されている。 ところで、カレンダーは所謂販促品として広く用いられているが、従来、販促 品として用いられているカレンダーは、ほとんどが紙等に印刷した壁掛け式のカ レンダーであり、立体型のカレンダーを使用している例はあまり見られない。こ の理由としては、従来の立体カレンダーは木製や金属或いは樹脂製のものが殆ど であり、製造コストが高く販促品用としては不向きであること、また、運搬や頒 布の際に嵩ばり、この面からも大量頒布を前提とする販促品として不向きである こと等が挙げられる。 Recently, a desk-type three-dimensional calendar has tended to be favored as one of interior interiors, and various designs are available on the market. By the way, although calendars are widely used as so-called promotional items, most of the calendars conventionally used as promotional items are wall-mounted calendars printed on paper etc. I don't see many examples. The reason for this is that most conventional three-dimensional calendars are made of wood, metal, or resin, and their manufacturing costs are high, making them unsuitable for promotional items, and they are bulky during transportation and distribution. From this point of view, it is unsuitable as a promotional item for mass distribution.
【0003】[0003]
本考案はこのような従来の問題に鑑み、販促品用として好適な立体カレンダー 、すなわち、シンプルなデザインで意匠性に優れ、しかも、安価に製造すること ができ、また、運搬や頒布の際にも嵩ばることがない立体カレンダーを提供しよ うとするものである。 In view of such conventional problems, the present invention is a three-dimensional calendar suitable for promotional items, that is, it has a simple design and excellent designability, and it can be manufactured at low cost, and it is suitable for transportation and distribution. The aim is to provide a three-dimensional calendar that is not bulky.
【0004】[0004]
このような目的を達成するための本考案は、紙または薄プレート材からなる中 空部材であって、外形が仮想上の2つの正六角錐台をそれらの底面間で対称的に 重合させた、2個の正六角形底面と12個の側面をもつ多面体であり、且つ2個 の正六角形底面の各角部を上下に結ぶ側面間稜部に、その全長に亘るスリットが 形成されるとともに、上下の側面間の各稜部および側面と正六角形底面間の各稜 部が折り曲げ可能に構成されることにより、一方の正六角形底面およびこれに隣 接した6個の側面と他方の正六角形底面およびこれに隣接した6個の側面の各裏 面どうしが略重合するような状態に折畳み可能とした本体と、該本体の中空内部 において対向する本体部位間に介在し、その弾性力により本体を前記多面体形状 に保持する弾性部材とからなり、12個の側面には、これに隣接した正六角形底 面を天側として月別の暦を表示した立体カレンダーである。 The present invention for achieving such an object is a hollow member made of paper or a thin plate material, and two regular hexagonal frustums having an imaginary outer shape are symmetrically overlapped between their bottom surfaces, It is a polyhedron with two regular hexagonal bottoms and twelve side faces, and a slit over the entire length is formed at the ridge between the side faces that connects the corners of the two regular hexagonal bottoms up and down. Each ridge between the side faces and each ridge between the side faces and the regular hexagonal bottom face are configured to be bendable, so that one regular hexagonal bottom face and the six side faces adjacent to the one regular hexagonal bottom face and the other regular hexagonal bottom face It is interposed between the main body that can be folded in such a manner that the back surfaces of the six adjacent side surfaces are substantially overlapped with each other, and the main body parts that face each other inside the hollow interior of the main body are elastically moved to the above-mentioned main body. Elasticity to hold in polyhedral shape Consists of a timber, the twelve sides, is a three-dimensional calendar displays the calendar month regular hexagonal bottom surface adjacent the top side thereto.
【0005】[0005]
多面体である本体は折畳み可能であるが、常態においては弾性部材に付勢され ることによって多面体(立体)形状に保持される。12個の各側面には、これに 隣接した正六角形底面を天側として1月から12月までの月別の暦が表示されて おり、2個の正六角形底面のうちいずれかの正六角形底面を底にして本体を置く ことにより、任意の月の暦を見ることができる。 The main body, which is a polyhedron, is foldable, but is normally held in a polyhedral (three-dimensional) shape by being urged by an elastic member. On each of the 12 side faces, the monthly calendar from January to December is displayed with the regular hexagonal base adjacent to this as the top side, and one of the two regular hexagonal bases is displayed. By placing the main body at the bottom, you can see the calendar of any month.
【0006】 本体は、弾性部材の弾性力に抗して2個の正六角形底面方向で押しつぶすよう に押圧することにより、略平面的な状態に折畳むことができる。すなわち、両正 六角形底面の各角部を上下に結ぶ側面間稜部にスリットが形成され、しかも、上 下の側面間の各稜部および側面と正六角形底面間の各稜部が折り曲げ可能に構成 されているため、本体は一方の正六角形底面およびこれに隣接した6個の側面と 他方の正六角形底面およびこれに隣接した6個の側面の各裏面どうしが略重合す るような状態に折畳まれる。また、上記押圧力を開放すると、弾性部材の弾性力 によって本体は折畳まれた状態から自動的に元の多面体(立体)形状に復元する 。 本体外面には、意匠的な効果を高めるためのイラストや宣伝広告用の表示等を 適宜付すことができる。The main body can be folded into a substantially flat state by pressing the main body against the elastic force of the elastic member so as to crush the two regular hexagonal bottom surfaces. In other words, slits are formed on the ridges between the side faces that connect the corners of both regular hexagon bottom faces to each other, and the ridges between the upper and lower side faces and each ridge between the side faces and the regular hexagon bottom face can be bent. Since the main body is composed of the regular hexagonal bottom surface and the six side surfaces adjacent to it, the other regular hexagonal bottom surface and the six side surfaces adjacent to this are such that the back surfaces are substantially overlapped with each other. Folded into. Further, when the pressing force is released, the main body is automatically restored from the folded state to the original polyhedral (three-dimensional) shape by the elastic force of the elastic member. The outer surface of the main body can be appropriately provided with an illustration for enhancing the design effect, a display for advertisement, and the like.
【0007】[0007]
図面は本考案の一実施例を示すもので、1は本体、2はその中空内部に設けら れる弾性部材である。 前記本体1は、紙製(比較的剛性のある厚紙製)の中空部材であり、外形が仮 想上の2つの正六角錐台をそれらの底面間で対称的に重合させたような多面体に 構成されている。すなわち、本体1は上下2個の正六角形底面3a、3bと12 個の側面4とから構成される14面体である。なお、本体1は紙以外に、例えば プラスチックや金属等の薄プレート材から構成することもできる。 The drawings show an embodiment of the present invention, in which 1 is a main body, and 2 is an elastic member provided inside the hollow thereof. The main body 1 is a hollow member made of paper (made of relatively rigid cardboard), and is configured as a polyhedron in which two regular hexagonal truncated pyramids having a virtual outer shape are symmetrically polymerized between their bottom surfaces. Has been done. That is, the main body 1 is a tetrahedron composed of two regular hexagonal bottom surfaces 3 a and 3 b and twelve side surfaces 4. The main body 1 may be made of a thin plate material such as plastic or metal other than paper.
【0008】 本体1を折畳み可能とするため、2個の正六角形底面3a、3bの各角部5を 上下に結ぶ側面間稜部A1には、その全長に亘るスリット6が形成されている。 さらに、上下の側面4間の稜部A2および側面4と正六角形底面3a、3b間の 各稜部A3は、それぞれ折り曲げ可能に構成されている。 また、本体1の内部には、弾性部材の端部を係止するための係止部が設けられ ている。この実施例では、上下の側面4間の稜部A2のうち180°反対側の各 稜部A2の裏側(本体内部側)にそれぞれフック部7が設けられ、このフック部 7が弾性部材の係止部を構成している。In order to make the main body 1 foldable, a slit 6 extending over the entire length is formed at the side surface ridge A 1 that vertically connects the corners 5 of the two regular hexagonal bottom surfaces 3 a and 3 b. . Further, the ridge A 2 between the upper and lower side faces 4 and each ridge A 3 between the side face 4 and the regular hexagonal bottom faces 3a, 3b are configured to be bendable. Further, inside the main body 1, a locking portion for locking the end of the elastic member is provided. In this embodiment, a hook portion 7 is provided on the back side (inside the main body) of each ridge portion A 2 on the opposite side of 180 ° among the ridge portions A 2 between the upper and lower side surfaces 4, and the hook portion 7 is an elastic member. Constitutes a locking portion of.
【0009】 前記弾性部材2は、本実施例では輪ゴム等の弾性紐体により構成され、その各 端部が本体1内部の対向した位置に設けられた前記各フック部7に係止されてい る。この弾性部材2は、その弾性力により本体1の側面4を本体の求心方向に牽 引し、前記スリット6が形成されているにも拘らず、本体1を常態において多面 体(立体)形状に保持する。なお、この弾性部材2としては、本実施例のような 弾性紐体以外に小径のコイルスプリング等を用いることもできる。また、場合に よっては、正六角形底面3a、3bの裏面間にルーズなコイルスプリングからな る弾性部材を介在させ、この弾性部材により正六角形底面3a、3bを外方に付 勢することにより、本体1を多面体形状に保持するような構造としてもよい。In this embodiment, the elastic member 2 is composed of an elastic cord body such as a rubber band, and each end of the elastic member 2 is locked to each of the hook portions 7 provided at opposing positions inside the main body 1. . This elastic member 2 draws the side surface 4 of the main body 1 in the centripetal direction of the main body by its elastic force, and despite the slit 6 being formed, the main body 1 is normally made into a polyhedral (three-dimensional) shape. Hold. As the elastic member 2, a coil spring having a small diameter may be used instead of the elastic cord body as in this embodiment. In some cases, an elastic member made of a loose coil spring is interposed between the back surfaces of the regular hexagonal bottom surfaces 3a and 3b, and the elastic member urges the regular hexagonal bottom surfaces 3a and 3b outward. The structure may be such that the main body 1 is held in a polyhedral shape.
【0010】 12個ある各側面4には、これに隣接した正六角形底面3a、3bを天側とし て1月から12月までの月別の暦が表示されている。 また、各側面4や正六角形底面3a、3bには、意匠的効果を高めるためのイ ラストや宣伝広告用の文字等の表示を適宜付すことができる。On each of the twelve side surfaces 4, a monthly calendar from January to December is displayed with the regular hexagonal bottom surfaces 3a and 3b adjacent to the side surfaces 4 as the heaven side. Further, on each side face 4 and regular hexagonal bottom faces 3a, 3b, an indication for enhancing the design effect, a letter for advertisement, or the like can be appropriately attached.
【0011】 図3は、本体1を折畳んだ状態を示すもので、本体1を弾性部材2の弾性力に 抗して2個の正六角形底面3a−3b方向で押しつぶすように押圧することによ り、稜部A2、A3が折り曲げられるとともに、稜部A1のスリット6が開き、本 体1は上部の正六角形底面3aおよびこれに隣接した6個の側面4と、下部の正 六角形底面3bおよびこれに隣接した側面4とが、それらの裏面どうしで略重合 するようにして略平面状態に折畳まれる。 また、上記押圧力を開放すると、弾性部材2の弾性力によって本体1は折畳ま れた状態から自動的に元の多面体(立体)形状に復元する。FIG. 3 shows a state in which the main body 1 is folded, and the main body 1 is pressed against the elastic force of the elastic member 2 so as to be crushed in the direction of the two regular hexagonal bottom surfaces 3a-3b. As a result, the ridges A 2 and A 3 are bent, and the slit 6 of the ridge A 1 is opened, so that the main body 1 has an upper regular hexagonal bottom surface 3a and six side surfaces 4 adjacent to this, and a lower regular surface. The hexagonal bottom surface 3b and the side surface 4 adjacent to the hexagonal bottom surface 3b are folded into a substantially flat state so that their rear surfaces are substantially overlapped with each other. When the pressing force is released, the elastic force of the elastic member 2 automatically restores the main body 1 from the folded state to the original polyhedral (three-dimensional) shape.
【0012】[0012]
以上述べた本考案のカレンダーによれば、2個の正六角形底面と12個の側面 とを有する14面体という斬新且つシンプルな外形状を有し、しかも12個の各 側面に1月から12月までの暦を表示してあるので、卓上式立体カレンダーとし て斬新性、デザイン性に優れている。加えて、紙やプラスチック等の薄プレート 材で製作できるため軽量でしかも極めて安価に製造することができ、また、略平 面状に折畳み可能でしかも弾性部材の作用により折畳まれた状態から自動的に多 面体形状に復元するため、運搬や頒布の際にも嵩ばることがないばかりでなく、 頒布時には、特別な組立て作業を行うことなく多面体形の状態で顧客等に手渡す ことができる。以上のことから、販促品用として極めて好適な立体カレンダーで ある。 According to the calendar of the present invention described above, it has a novel and simple outer shape of a tetrahedron having two regular hexagonal bottom faces and twelve side faces, and each of the twelve side faces is from January to December. Since the calendar up to is displayed, it is excellent in novelty and design as a desktop three-dimensional calendar. In addition, because it can be made of thin plate material such as paper or plastic, it is lightweight and extremely inexpensive to manufacture, and it can be folded into a substantially flat shape, and it can be automatically folded from the folded state by the action of elastic members. Since it is automatically restored to a polyhedral shape, it does not become bulky during transportation and distribution, and at the time of distribution, it can be handed over to customers etc. in a polyhedral shape without any special assembly work. From the above, it is a very suitable three-dimensional calendar for promotional items.
【図1】本考案の立体カレンダーの一実施例を示す斜視
図FIG. 1 is a perspective view showing an embodiment of a three-dimensional calendar of the present invention.
【図2】図1に示す立体カレンダーの一部切欠斜視図FIG. 2 is a partially cutaway perspective view of the three-dimensional calendar shown in FIG.
【図3】図1に示す立体カレンダーを折畳んだ状態で示
す斜視図FIG. 3 is a perspective view showing the three-dimensional calendar shown in FIG. 1 in a folded state.
1…本体、2…弾性部材、3a、3b…正六角形底面、
4…側面、5…角部、6…スリット、7…フック部、A
1、A2、A3…稜部1 ... Main body, 2 ... Elastic member, 3a, 3b ... Regular hexagonal bottom surface,
4 ... Side surface, 5 ... Corner portion, 6 ... Slit, 7 ... Hook portion, A
1 , A 2 , A 3 ... Ridge
Claims (1)
であって、外形が仮想上の2つの正六角錐台をそれらの
底面間で対称的に重合させた、2個の正六角形底面と1
2個の側面をもつ多面体であり、且つ2個の正六角形底
面の各角部を上下に結ぶ側面間稜部に、その全長に亘る
スリットが形成されるとともに、上下の側面間の各稜部
および側面と正六角形底面間の各稜部が折り曲げ可能に
構成されることにより、一方の正六角形底面およびこれ
に隣接した6個の側面と他方の正六角形底面およびこれ
に隣接した6個の側面の各裏面どうしが略重合するよう
な状態に折畳み可能とした本体と、該本体の中空内部に
おいて対向する本体部位間に介在し、その弾性力により
本体を前記多面体形状に保持する弾性部材とからなり、
12個の側面には、これに隣接した正六角形底面を天側
として月別の暦を表示してなる立体カレンダー。1. A hollow member made of paper or a thin plate material, wherein two regular hexagonal bases having an imaginary outer shape are symmetrically overlapped between their bottom faces, and two regular hexagonal bottom faces and 1
It is a polyhedron with two side faces, and a slit over the entire length is formed at the ridge between the side faces that vertically connects the corners of the two regular hexagonal bottom faces, and each ridge between the upper and lower sides. And each ridge between the side surface and the regular hexagonal bottom surface is configured to be bendable, so that one regular hexagonal bottom surface and six side surfaces adjacent thereto and the other regular hexagonal bottom surface and six side surfaces adjacent thereto. A main body that is foldable in such a manner that the back surfaces of the main bodies are substantially overlapped with each other, and an elastic member that is interposed between the main body parts facing each other in the hollow inside of the main body and that holds the main body in the polyhedral shape by its elastic force Becomes
A solid calendar that displays the calendar of each month on the 12 sides with the bottom of the regular hexagon adjacent to it as the top side.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6398792U JPH0639463U (en) | 1992-08-20 | 1992-08-20 | Three-dimensional calendar |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP6398792U JPH0639463U (en) | 1992-08-20 | 1992-08-20 | Three-dimensional calendar |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH0639463U true JPH0639463U (en) | 1994-05-27 |
Family
ID=13245153
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP6398792U Pending JPH0639463U (en) | 1992-08-20 | 1992-08-20 | Three-dimensional calendar |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH0639463U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2007168207A (en) * | 2005-12-21 | 2007-07-05 | 3Kaku Company:Kk | Calendar |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5549985B2 (en) * | 1974-10-11 | 1980-12-15 | ||
JPS6347169B2 (en) * | 1981-03-10 | 1988-09-20 | Fujitsu Ten Ltd |
-
1992
- 1992-08-20 JP JP6398792U patent/JPH0639463U/en active Pending
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5549985B2 (en) * | 1974-10-11 | 1980-12-15 | ||
JPS6347169B2 (en) * | 1981-03-10 | 1988-09-20 | Fujitsu Ten Ltd |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2007168207A (en) * | 2005-12-21 | 2007-07-05 | 3Kaku Company:Kk | Calendar |
JP4685622B2 (en) * | 2005-12-21 | 2011-05-18 | 株式会社サンカクカンパニー | calendar |
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