JP3455936B2 - Tent house frame structure - Google Patents
Tent house frame structureInfo
- Publication number
- JP3455936B2 JP3455936B2 JP01474296A JP1474296A JP3455936B2 JP 3455936 B2 JP3455936 B2 JP 3455936B2 JP 01474296 A JP01474296 A JP 01474296A JP 1474296 A JP1474296 A JP 1474296A JP 3455936 B2 JP3455936 B2 JP 3455936B2
- Authority
- JP
- Japan
- Prior art keywords
- main
- detachably
- bone
- girder
- main body
- 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.)
- Expired - Lifetime
Links
Landscapes
- Tents Or Canopies (AREA)
Description
【発明の詳細な説明】
【0001】
【発明の属する技術分野】本発明は、例えば大型倉庫等
に用いられるテントハウスの骨組構造の改良に関する。
【0002】
【従来の技術】従来、この種のテントハウスの骨組構造
としては、例えば実公昭62−20608号、実公昭6
3−22278号、実公平1−42625号等に記載さ
れたものが知られている。
【0003】
【発明が解決しようとする課題】ところが、従来の何れ
のものも、仮設を前提としているものの、構造的には、
半永久的に設置する様に構成されて居り、組立分解が容
易に行なえなかった。
【0004】本発明は、叙上の問題点に鑑み、これを解
消する為に創案されたもので、その目的とする処は、組
立分解が容易に行なえる様にしたテントハウスの骨組構
造を提供するにある。
【0005】
【課題を解決するための手段】本発明のテントハウスの
骨組構造は、支柱とこれの上部から斜め上方に延出する
屋根骨とを備えて両者が着脱可能に連結される主骨体
と、主骨体の下端に着脱可能に設けられて接地面に対し
て主骨体を高さ調整する為の座体と、前後方向に隣接す
る主骨体間に着脱可能に設けられる適数の筋違体と、前
後方向に隣接する主骨体間に着脱可能に設けられる適数
の桁体と、から構成した事に特徴が存する。
【0006】接地面に複数の主骨体の支柱が前後方向に
所定間隔を置いて立てられると共に、前後方向に隣接す
る主骨体の支柱どうしが筋違体に依り連結されてこれら
が丁度作業用足場の様に自立される。この時、座体に依
り接地面の凹凸に合わせて各主骨体の支柱の高さを調整
して適正な状態にする。各主骨体の支柱が自立される
と、これの上部に屋根骨が連結され、前後方向に隣接す
る主骨体間が適数の桁体に依り連結される。主骨体の支
柱と屋根骨、主骨体と座体、主骨体と筋違体、主骨体と
桁体は、何れも着脱可能に設けられているので、組立分
解が容易に行なえる。
【0007】
【発明の実施の形態】以下、本発明の実施の形態を、図
面に基づいて説明する。図1は、本発明の骨組構造の要
部を示す斜視図。図2は、図1の正面図。図3は、主骨
体の先端部分を示す拡大斜視図。図4は、主骨体の支柱
と屋根骨との連結部分を示す拡大斜視図。図5は、座体
付近を示す拡大斜視図。図6は、主骨体と筋違体との連
結部分を示す拡大斜視図。図7は、桁体の桁材の連結部
分を示す拡大斜視図である。
【0008】骨組構造1は、主骨体2、座体3、筋違体
4、桁体5とからその主要部が構成されている。この例
では、正面が山形(両流れ形)を呈し、左側半分を省略
して示している。骨組構造1は、図略しているが、これ
の外側に膜体が張られてテントハウスにされる。
【0009】主骨体2は、支柱6とこれの上部から斜め
上方に延出する屋根骨7とを備えて両者が着脱可能に連
結されるもので、この例では、左右に一対設けられると
共に、前後方向に所定間隔を置いて複数(四つ)設けら
れ、トラスに組んで剛性を付与してあり、支柱6の上部
寄りが二分割されてこれらが連結具8に依り着脱可能に
連結される。支柱6は、左右の縦管9と、これらを連結
する適数(八つ)の横管10及び適数(六つ)の筋違管
11とから成っている。屋根骨7は、上下の斜管12
と、これらを連結する適数(二つ)の縦管13及び適数
(九つ)の筋違管14と、両斜管12の先端間を連結す
る取付板15とから成っている。連結具8は、上側の支
柱6の縦管9に嵌挿固定されて下側の支柱6の縦管9に
挿入される連結管16と、上下の支柱6の横管10に付
設された連結板17と、これらを着脱可能に締結するボ
ルト・ナット18とから成っている。左右の主骨体2
は、ボルト・ナット(図示せず)に依り取付板15どう
しが着脱可能に締結されて山形(両流れ形)にされる。
【0010】座体3は、主骨体2の基端に着脱可能に設
けられて接地面Gに対して主骨体2を高さ調整する為の
もので、この例では、スクリュベースにしてあり、各支
柱6の下部の左右に設けられ、接地されてアンカーボル
ト等(図示せず)で据付けられる座板19と、これに植
設されて上部が支柱6の縦管9に着脱可能に挿入される
螺子棒20と、これに螺合されて支柱6の縦管9の下面
に当合されるハンドルナット21と、支柱6の縦管9に
螺設されて螺子棒20を抜止めするボルト22とから成
っている。
【0011】筋違体4は、前後方向に隣接する主骨体2
間に着脱可能に設けられる適数のもので、この例では、
交差筋違にしてあり、隣接する主骨体2の支柱6間の上
下に設けられ、端部が扁平されてX状に交差された二つ
の斜架管23と、これらの交点を枢結する枢軸24と、
主骨体2の支柱6の縦管9に付設されて斜架管23の端
部を着脱可能に掛止するグラビティロックと称される掛
止具25とから成っている。
【0012】桁体5は、前後方向に隣接する主骨体2間
に着脱可能に設けられる適数のもので、この例では、四
つの桁材26と、一つの棟材27とから成っている。桁
材26は、前後方向に隣接する主骨体2のピッチとは異
なる長さを有するものにしてあり、複数の桁管28と、
これらを突き合わせて着脱可能に連結する連結具29
と、各主骨体2の縦管9,13及び横管10に取付られ
て桁管28を着脱可能に掴持する掴持具30とから成っ
ている。連結具29は、桁管28に外嵌される連結管
と、これに螺設されて桁管28を止結するボルトとから
成っている。棟材27は、前後方向に隣接する主骨体2
のピッチと略同じ長さを有するものにしてあり、上下の
桁管31と、これらの端部どうしを連結する縦板32
と、これを各主骨体2の取付板15に着脱可能に取付け
るボルト・ナット33とから成っている。
【0013】次に、この様な構成に基づいてその作用を
述解する。主骨体2の支柱6が左右一対で前後方向に所
定間隔を置いて複数だけ接地面Gの上に立てられると共
に、前後方向に隣接する主骨体2の支柱6どうしが筋違
体4に依り連結されてこれらが丁度作業用足場の様に自
立される。この時、座体3に依り接地面Gの凹凸に合わ
せて各主骨体2の支柱6の高さを調整して適正な状態に
する。各主骨体2の支柱6が自立されると、支柱6の上
部に屋根骨7が連結されると共に、左右の主骨体2の屋
根骨7どうしが連結され、隣接する主骨体2の支柱6及
び尾根骨7どうしが桁体5の桁材26及び棟材27に依
り連結される。
【0014】主骨体2の支柱6と屋根骨7、主骨体2と
座体3、主骨体2と筋違体4、主骨体2と桁体5は、何
れも着脱可能に設けられているので、組立分解が容易に
行なえる。この為、作業時間の短縮を図る事ができる。
【0015】次に、本発明の他の例を図8に基づいて説
明する。これは、主骨体2を左右片側(右側)だけにし
て骨組構造1を片流れ型にした点、各主骨体2の先端に
庇体34を設けた点、前後方向の複数の主骨体2のうち
所定数毎に接地面から主骨体2の先端に達する補強支柱
35を設けた点、が先の例と異なる。
【0016】尚、主骨体2は、先の例では、トラスに組
んで剛性を付与してあるが、これに限らず、例えばこの
様にしなくても良い。
【0017】
【発明の効果】以上、既述した如く、本発明に依れば、
次の様な優れた効果を奏する事ができる。
(1) 主骨体、座体、筋違体、桁体とで構成し、とり
わけ主骨体の支柱と屋根骨、主骨体と座体、主骨体と筋
違体、主骨体と桁体を何れも着脱可能に設けたので、組
立分解が容易に行なえる。
(2) 接地面に対して主骨体を高さ調整する為の座体
を設けたので、接地面が不整地であっても適正に設置す
る事ができる。
(3) 前後方向に隣接する主骨体間に筋違体を設ける
様にしたので、主骨体の支柱だけをクレーン等の機械力
を用いずに丁度作業用足場の様に自立させる事ができ
る。
(4) 主骨体の支柱だけを丁度作業用足場の様に自立
させる事ができるので、主骨体の屋根骨や膜体等の取付
けに際してこれを足場として利用する事ができる。Description: BACKGROUND OF THE INVENTION [0001] 1. Field of the Invention [0002] The present invention relates to an improvement of a frame structure of a tent house used for, for example, a large warehouse. 2. Description of the Related Art Hitherto, as a frame structure of this kind of tent house, for example, Japanese Utility Model Publication No. 62-20608 and Japanese Utility Model Publication No. 6
No. 3,22,278 and Japanese Utility Model Publication No. 1-262525 are known. [0003] However, although all of the conventional devices are premised on temporary construction, structurally,
It was configured to be installed semi-permanently and could not be easily assembled and disassembled. SUMMARY OF THE INVENTION The present invention has been made in view of the above problems, and has been made in order to solve the problem. The object of the present invention is to provide a frame structure of a tent house which can be easily assembled and disassembled. To offer. A tent house frame structure according to the present invention comprises a main column and a main frame having a roof frame extending obliquely upward from an upper portion of the column and to which both are detachably connected. A main body, a seat body detachably provided at a lower end of the main body to adjust the height of the main body with respect to the grounding surface, and an appropriate body detachably provided between main bodies adjacent in the front-rear direction. The present invention is characterized in that it is composed of a number of struts and an appropriate number of girders detachably provided between main bones adjacent in the front-rear direction. [0006] A plurality of pillars of main skeletons are erected at predetermined intervals in the front-rear direction on the ground contact surface, and the pillars of main skeletons adjacent in the front-rear direction are connected to each other by a braided body, and these are just worked. Be independent like a scaffold. At this time, the height of the strut of each main bone is adjusted according to the unevenness of the ground contact surface depending on the seat, so that an appropriate state is obtained. When the pillars of each main body are self-supported, a roof bone is connected to the upper part thereof, and the main bodies adjacent in the front-rear direction are connected by an appropriate number of girders. Since the main column and the roof, the main frame and the seat, the main frame and the braid, and the main frame and the girder are all provided detachably, they can be easily assembled and disassembled. . Embodiments of the present invention will be described below with reference to the drawings. FIG. 1 is a perspective view showing a main part of a frame structure of the present invention. FIG. 2 is a front view of FIG. 1. FIG. 3 is an enlarged perspective view showing a tip portion of a main bone body. FIG. 4 is an enlarged perspective view showing a connection portion between a main pillar and a roof bone. FIG. 5 is an enlarged perspective view showing the vicinity of a seat body. FIG. 6 is an enlarged perspective view showing a connection portion between a main bone body and a muscle body. FIG. 7 is an enlarged perspective view showing a connection portion of the girder members of the girder body. The main structure of the frame structure 1 is composed of a main body 2, a seat 3, a braced body 4, and a girder 5. In this example, the front surface has a chevron shape (double flow shape), and the left half is omitted. Although not shown, the skeleton structure 1 is formed into a tent house with a membrane stretched on the outside thereof. The main body 2 is provided with a support post 6 and a roof bone 7 extending obliquely upward from the upper portion thereof, and the two are detachably connected to each other. A plurality (four) is provided at predetermined intervals in the front-rear direction, and is provided with rigidity by assembling it with a truss. The upper part of the support column 6 is divided into two parts, which are detachably connected by a connection tool 8. You. The support column 6 includes left and right vertical pipes 9, an appropriate number (eight) of horizontal pipes 10, and an appropriate number (six) of bracing pipes 11 connecting the vertical pipes 9. The roof bone 7 includes upper and lower inclined pipes 12.
And an appropriate number (two) of vertical pipes 13 and an appropriate number (nine) of braced pipes 14 for connecting them, and a mounting plate 15 for connecting the distal ends of both inclined pipes 12. The connecting tool 8 is connected to a connecting pipe 16 which is inserted into and fixed to the vertical pipe 9 of the upper support 6 and is inserted into the vertical pipe 9 of the lower support 6, and a connection provided to the horizontal pipe 10 of the upper and lower supports 6. It comprises a plate 17 and bolts and nuts 18 for removably fastening them. Left and right main body 2
The mounting plates 15 are detachably fastened to each other by bolts and nuts (not shown) to form a mountain shape (both flow types). The seat body 3 is detachably provided at the base end of the main body 2 to adjust the height of the main body 2 with respect to the ground plane G. In this example, a screw base is used. There is a seat plate 19 provided on the left and right of the lower part of each column 6 and grounded and installed with anchor bolts or the like (not shown). A threaded rod 20 to be inserted, a handle nut 21 screwed to this and abutted against the lower surface of the vertical pipe 9 of the column 6, and a threaded screw provided on the vertical tube 9 of the column 6 to prevent the threaded rod 20 from coming off. And a bolt 22. [0011] The strut 4 is composed of the main bone 2 adjacent in the front-rear direction.
It is an appropriate number that is provided detachably between, in this example,
Crossed struts are provided above and below between the struts 6 of the adjacent main body 2, and the two oblique tubes 23 whose ends are flattened and intersect in an X-shape are pivotally connected to these intersections. Axis 24,
A hook 25 called a gravity lock is attached to the vertical pipe 9 of the column 6 of the main body 2 and detachably hooks the end of the oblique tube 23. The girder 5 is an appropriate number that is detachably provided between the main bones 2 adjacent in the front-rear direction. In this example, the girder 5 includes four girder members 26 and one ridge member 27. I have. The girder member 26 has a length different from the pitch of the main skeleton 2 adjacent in the front-rear direction.
A connecting tool 29 for connecting these detachably to each other.
And a gripper 30 attached to the vertical pipes 9 and 13 and the horizontal pipe 10 of each main body 2 to grip the girder pipe 28 in a detachable manner. The connecting tool 29 is composed of a connecting pipe externally fitted to the girder pipe 28 and a bolt screwed into the connecting pipe to fasten the girder pipe 28. The ridge 27 is a main frame 2 adjacent in the front-rear direction.
And a vertical plate 32 connecting the upper and lower girder pipes 31 with their ends.
And bolts and nuts 33 for detachably attaching the nuts to the attachment plate 15 of each main frame 2. Next, the operation will be described based on such a configuration. A plurality of struts 6 of the main skeleton 2 are erected on the ground plane G at predetermined intervals in the front-rear direction at right and left pairs, and the struts 6 of the main skeleton 2 adjacent to each other in the front-rear direction are formed into braces 4. These are connected so that they become free standing just like a working scaffold. At this time, the height of the column 6 of each main skeleton 2 is adjusted in accordance with the unevenness of the ground contact surface G by the seat 3, so as to be in an appropriate state. When the support 6 of each main body 2 is self-supported, the roof bone 7 is connected to the upper part of the support 6, and the roof bones 7 of the left and right main bodies 2 are connected to each other. The support 6 and the ridge 7 are connected to each other by the girder 26 and the ridge 27 of the girder 5. The column 6 and the roof 7 of the main frame 2, the main frame 2 and the seat 3, the main frame 2 and the bracing 4, and the main frame 2 and the beam 5 are all detachably provided. The assembly and disassembly can be performed easily. Therefore, the working time can be reduced. Next, another example of the present invention will be described with reference to FIG. This is because the main structure 2 has only one left and right side (right side) and the frame structure 1 is of a single-flow type, the point that an eave 34 is provided at the tip of each main structure 2, a plurality of main structures in the front-rear direction. 2 is different from the previous example in that reinforcing struts 35 reaching the tip of the main bone 2 from the ground contact surface are provided at predetermined intervals. In the above example, the main body 2 is provided with rigidity by being assembled to a truss. However, the present invention is not limited to this. As described above, according to the present invention,
The following excellent effects can be obtained. (1) It is composed of a main body, a seat body, a braided body, and a girder body. In particular, a main body support and a roof bone, a main body and a seat body, a main body and a braided body, and a main bone body. Since both of the beam members are detachably provided, assembly and disassembly can be easily performed. (2) is provided with the seat body for adjusting the height of the main bone body with respect to the ground surface, it is possible to ground surface is properly installed even in the rough terrain. (3) Since a strut is provided between adjacent main bodies in the front-rear direction, only the main body supports can be made to stand alone just like a working scaffold without using mechanical power such as a crane. it can. (4) Since only the main body support can be made to stand alone just like a working scaffold, it can be used as a scaffold when attaching a roof bone or a membrane body of the main body.
【図面の簡単な説明】
【図1】本発明の骨組構造の要部を示す斜視図。
【図2】図1の正面図。
【図3】主骨体の先端部分を示す拡大斜視図。
【図4】主骨体の支柱と屋根骨との連結部分を示す拡大
斜視図。
【図5】座体付近を示す拡大斜視図。
【図6】主骨体と筋違体との連結部分を示す拡大斜視
図。
【図7】桁体の桁材の連結部分を示す拡大斜視図。
【図8】本発明の他の例の骨組構造を示す正面図。
【符号の説明】
1…骨組構造、2…主骨体、3…座体、4…筋違体、5
…桁体、6…支柱、7…屋根骨、8,29…連結具、
9,13…縦管、10…横管、11,14…筋違管、1
2…斜管、15…取付板、16,31…連結管、17…
連結板、18,33…ボルト・ナット、19…座板、2
0…螺子棒、21…ハンドルナット、22…ボルト、2
3…斜架管、24…枢軸、25…掛止具、26…桁材、
27…棟材、28,31…桁管、30…掴持具、32…
縦板、34…庇体、35…補強支柱、G…接地面。BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 is a perspective view showing a main part of a skeleton structure of the present invention. FIG. 2 is a front view of FIG. 1; FIG. 3 is an enlarged perspective view showing a distal end portion of a main bone body. FIG. 4 is an enlarged perspective view showing a connecting portion between a support of a main body and a roof bone. FIG. 5 is an enlarged perspective view showing the vicinity of a seat body. FIG. 6 is an enlarged perspective view showing a connection portion between a main bone and a muscle body. FIG. 7 is an enlarged perspective view showing a connection part of the girder members of the girder body. FIG. 8 is a front view showing a frame structure according to another example of the present invention. [Description of Signs] 1 ... Frame structure, 2 ... Main body, 3 ... Seat, 4 ... Brace, 5
... Girder body, 6 ... Prop, 7 ... Roof, 8,29 ... Connector,
9, 13 ... vertical pipe, 10 ... horizontal pipe, 11, 14 ... braced pipe, 1
2 ... inclined tube, 15 ... mounting plate, 16, 31 ... connecting tube, 17 ...
Connection plate, 18, 33 ... bolt and nut, 19 ... seat plate, 2
0: screw bar, 21: handle nut, 22: bolt, 2
3 ... oblique tube, 24 ... axis, 25 ... hook, 26 ... girder material,
27 ... ridge material, 28, 31 ... girder tube, 30 ... gripper, 32 ...
Vertical plate, 34: eaves, 35: reinforcement column, G: ground plane.
───────────────────────────────────────────────────── フロントページの続き (56)参考文献 特開 平5−79193(JP,A) 実開 昭51−138906(JP,U) 実開 昭56−122807(JP,U) 実開 昭54−43010(JP,U) 実開 昭58−11504(JP,U) 実公 昭63−22278(JP,Y2) 実公 昭62−20608(JP,Y2) ────────────────────────────────────────────────── ─── Continuation of front page (56) References JP-A-5-79193 (JP, A) Shokai Sho 51-138906 (JP, U) Shokai Sho 56-122807 (JP, U) Actual opening 1979-43010 (JP, U) Actual opening 58-1504 (JP, U) Jiko 63-22278 (JP, Y2) Jiko 62-20608 (JP, Y2)
Claims (1)
る屋根骨とを備えて両者が着脱可能に連結される主骨体
と、主骨体の支柱の下部の左右に着脱可能に設けられて
接地面に対して主骨体を高さ調整する為の座体と、前後
方向に隣接する主骨体の支柱間に着脱可能に設けられる
適数の筋違体と、前後方向に隣接する主骨体間に着脱可
能に設けられる適数の桁体とから構成し、主骨体の支柱
と座体と筋違体とに依りこれらが自立されると共に、桁
体は、前後方向に隣接する主骨体のピッチとは異なる長
さを有する桁材と、前後方向に隣接する主骨体のピッチ
と略同じ長さを有する棟材とから成り、桁材は、複数の
桁管と、これらを着脱可能に連結する連結具から成って
いる事を特徴とするテントハウスの骨組構造。(57) [Claims 1] A main frame having a column and a roof bone extending diagonally upward from the upper portion thereof, and a main frame that is detachably connected to each other, and a column of the main frame. A suitable number of seats that are detachably provided on the left and right of the lower part of the lower part of the main body to adjust the height of the main body with respect to the ground surface, It is composed of a braided body and an appropriate number of girders detachably provided between main bone bodies adjacent in the front-rear direction. These are self-supported by the strut, the seat body, and the braided body of the main bone body. together, Ketatai is Ri consists a spar having a length different from the pitch of the main bone bodies adjacent in the longitudinal direction, the ridge member having substantially the same length as the pitch of the main bone bodies adjacent in the longitudinal direction , Girder material, multiple
Digit tube and, frame structure tent house of the connector for connecting the detachably characterized Life has formed.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP01474296A JP3455936B2 (en) | 1996-01-31 | 1996-01-31 | Tent house frame structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP01474296A JP3455936B2 (en) | 1996-01-31 | 1996-01-31 | Tent house frame structure |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH09209613A JPH09209613A (en) | 1997-08-12 |
JP3455936B2 true JP3455936B2 (en) | 2003-10-14 |
Family
ID=11869578
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP01474296A Expired - Lifetime JP3455936B2 (en) | 1996-01-31 | 1996-01-31 | Tent house frame structure |
Country Status (1)
Country | Link |
---|---|
JP (1) | JP3455936B2 (en) |
Families Citing this family (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP4881847B2 (en) * | 2007-12-19 | 2012-02-22 | 株式会社サンエープロテント | Tent frame |
JP5108651B2 (en) * | 2008-06-25 | 2012-12-26 | 株式会社サンエープロテント | Tent frame |
JP6452253B2 (en) * | 2016-03-17 | 2019-01-16 | 株式会社サンエープロテント | Frame structure |
CN107237546A (en) * | 2017-07-31 | 2017-10-10 | 青岛圣合钢管制品有限公司 | A kind of car and boat tent for being easy to adjust |
-
1996
- 1996-01-31 JP JP01474296A patent/JP3455936B2/en not_active Expired - Lifetime
Also Published As
Publication number | Publication date |
---|---|
JPH09209613A (en) | 1997-08-12 |
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