JPS59158864A - Building apparatus of cylindrical tower body structure - Google Patents

Building apparatus of cylindrical tower body structure

Info

Publication number
JPS59158864A
JPS59158864A JP3053883A JP3053883A JPS59158864A JP S59158864 A JPS59158864 A JP S59158864A JP 3053883 A JP3053883 A JP 3053883A JP 3053883 A JP3053883 A JP 3053883A JP S59158864 A JPS59158864 A JP S59158864A
Authority
JP
Japan
Prior art keywords
formwork
support beam
tower structure
yoke
cylindrical tower
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
Application number
JP3053883A
Other languages
Japanese (ja)
Inventor
若曽根 勝利
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
IHI Corp
Original Assignee
IHI Corp
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by IHI Corp filed Critical IHI Corp
Priority to JP3053883A priority Critical patent/JPS59158864A/en
Publication of JPS59158864A publication Critical patent/JPS59158864A/en
Pending legal-status Critical Current

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Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】 本発明は、新硯な節状塔体構造物の建造装置に係り、特
に、基礎−トに支柱を起立させ、この支柱にこれより径
方向外力に延出された支持梁を昇降自在に設け、この支
持梁にコンクIJ−1−を打設するだめの型枠を垂下支
持させることにより、型枠を上昇移動させつつコンクリ
ートを打設シ5.て、筒状塔体構造物をその基礎上の最
下層部から連続して建造するスライディング・フオーム
工法の建造装置に関する。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a construction device for a novel jointed tower structure, and in particular, a support column is erected on a foundation, and an external force is applied to the support column in a radial direction. 5. By providing a support beam that can be raised and lowered freely, and by suspending and supporting the formwork for pouring concrete IJ-1- on this support beam, concrete can be poured while moving the formwork upward. The present invention relates to a construction device for a sliding form construction method for constructing a cylindrical tower structure continuously from the lowest layer on its foundation.

地上に設けられた基礎上に、リング状のコンクリート製
周壁を順次打設して起立(〜、節状塔体構造物を建造す
るにあたって、一般に、スライディング・フオーム工法
が知られている。
The sliding form construction method is generally known for constructing a jointed tower structure by sequentially placing ring-shaped concrete peripheral walls on a foundation set on the ground.

上記スライディング・フオーム工法は、高さ約1mの型
枠を使用して、これをジヤツキで押しトげて上昇させな
がら連続的にコノクリ−1−を拐設して、打継ぎ目の無
い良質なコン5クリ−1・壁によって、高さと共に直径
や壁厚が連続的に変化する筒状塔体構造物を建造する工
法である。
The above-mentioned sliding form construction method uses a formwork approximately 1 m in height, and uses jacks to push it upwards while continuously laying concretion 1-. 5 Cree-1 - This is a method of constructing a cylindrical tower structure whose diameter and wall thickness change continuously with height.

従来このスライディング・フオーム工法による建造装置
は第1図及び第2図に示すごとく、主に次のものから構
成される装置 1はリング状のコンクリート製周壁を打設するだめの型
枠であり、構造物2の直径の変化に応じて円周方向の長
さを自由に変えることができるよう構成されている。3
はヨークであり、型枠1、作業床4′:#!rを支えて
その荷重を備え付けられた上昇用ジヤツキ5によって構
造物2の筒壁6内に埋め込まれたロッドγに伝えると共
に、このロッド7に反力を得てこれに沿って上昇移動で
きるよう構成されている。
Conventional construction equipment using this sliding form construction method is shown in Figures 1 and 2, and equipment 1 mainly consists of the following: a formwork for pouring a ring-shaped concrete peripheral wall; It is configured such that the length in the circumferential direction can be freely changed according to the change in the diameter of the structure 2. 3
is the yoke, formwork 1, work floor 4': #! r and transmits the load to the rod γ embedded in the cylindrical wall 6 of the structure 2 by the provided lifting jack 5, and also obtains a reaction force on this rod 7 so that it can move upward along this. It is configured.

1プζ、上記ヨーり3は円周方向に適宜間隔に放射状に
設けられており、これらヨーク3間を連結し2−f:の
間隔を調節してヨーク3を保持すると共にその円周方向
の圧縮圧力を負担するヨークっなぎ8が配設されている
The yaws 3 are provided radially at appropriate intervals in the circumferential direction, and these yokes 3 are connected and the yoke 3 is held by adjusting the interval 2-f:, and the yaws 3 are held in the circumferential direction. A yoke hook 8 is provided to bear the compression pressure.

9はスポークワイヤであり、上記各ヨーり3を円の中上
・に向けで引っ張ると共に、円の直径の調節を行なうも
のである。上記スポークワイヤ9は中央リング10によ
ってその端部が固定され、ヨーり3側に設けられたヌク
マンジャ2ツキ11により、その引張力及び伸縮量が調
整されるよう構成されている。
9 is a spoke wire, which pulls each of the yaws 3 toward the center of the circle and adjusts the diameter of the circle. The ends of the spoke wires 9 are fixed by a central ring 10, and the tension and the amount of expansion and contraction thereof are adjusted by a two-way hook 11 provided on the yaw 3 side.

また、型枠1はスクリューシャフト12とナラ1− (
図示せず)とによってヨーり3にL側部とF側部とで固
定“され、ナツトの調整により壁厚乃至その傾斜角を任
意に設定することができる」:う構成されている。
In addition, the formwork 1 has a screw shaft 12 and an oak 1- (
(not shown) is fixed to the yaw 3 at the L side and the F side, and the wall thickness and its inclination angle can be set arbitrarily by adjusting nuts.

施工に際しては、型枠1がジヤツキ5によ−って一ト昇
されると同時に、構造物2の建造形状に応じて型枠1の
直径及び周方向の長さが調整されつつ連続的にコンクリ
−1・が打設される。この周方向の長さ調整はヨーク3
間隔の伸縮操作によって、また直径はスポークワイヤ9
の伸縮操作によって行なわれる。
During construction, the formwork 1 is raised one step by the jacks 5, and at the same time, the diameter and circumferential length of the formwork 1 are adjusted according to the construction shape of the structure 2, and the formwork is continuously raised. Concrete 1. is poured. This length adjustment in the circumferential direction is performed using the yoke 3.
By the expansion and contraction operation of the interval, and the diameter of the spoke wire 9
This is done by expanding and contracting operations.

そして、型枠1の上昇はコンクリートの硬化速度及び打
設速度に合わせて行なわれ、ト昇の開始乃至停止、また
上昇量の調整及び各ジヤツキ5間相互のレベル調整等の
操作は、上記周方向の長さ調整と共に、作業床4上に設
置される中央コントローラ(図示せず)によって自動制
御される。
The formwork 1 is raised in accordance with the curing speed and casting speed of the concrete, and operations such as starting and stopping the rise, adjusting the amount of rise, and mutual level adjustment between the jacks 5 are performed in the above-mentioned period. Along with direction and length adjustment, it is automatically controlled by a central controller (not shown) installed on the work floor 4.

従来以上のごとくし7て、高さと共に壁厚や直径が連イ
、;LI−=て環化する面状塔体構造物2が建造されて
いf(、、 シ2.かじながら、上記従来の建造装置13にあっては
、各3−り3毎に上昇用ジャツギ5を設ける4’/、要
があるばかりか、名ジヤツキ5毎に対応させて(−の反
りを受けるだめのロッド7を筒壁6内に埋め込む・V−
要があった。また、型枠1は一体的に略均−に1−列さ
せる必要がある。このため、各ジー\′ツキ5毎にその
」−件量を制御してジャッキ5相41間の17ベル調整
をし7なければならず、制御対象か多く正確な制御を行
なうのが難しいものであっ/こ。
As described above, a planar tower structure 2 is constructed in which the wall thickness and diameter vary with the height, and the planar tower structure 2 is cyclized. In the construction device 13, it is necessary not only to provide a lifting jack 5 for each 3-rib 3, but also to provide a rod 7 for receiving the warp (-) for each famous jack 5. embedded in the cylinder wall 6・V-
There was a point. Further, the molds 1 must be integrally arranged in one row approximately evenly. For this reason, it is necessary to control the quantity of each gear and adjust the 17 bells between the five jack phases 41, making it difficult to perform accurate control since there are many objects to be controlled. De/ko.

す1に、トー記ロッド7は建造後に抜き取られるもので
あり、埋設本数も多いためこの抜き取り作業イ)大変手
間の掛かるものであった。そして寸だ、多数のジャツギ
5を必要とするため型枠1やヨーク3告の組立でに多く
の日数を費すものであった。
First, the rods 7 are removed after construction, and since there are a large number of them buried, this removal process is very time-consuming. Moreover, since a large number of jatsugi 5 were required, it took many days to assemble the formwork 1 and yoke 3.

ま/こ史に、直径の精度はスポークワイヤ9の張7J及
び伸張叶等に依存するため高い精度を保つことが困難な
ものであった。
Historically, it has been difficult to maintain high precision in diameter because it has depended on the tension 7J of the spoke wire 9, the extension leaf, etc.

本発明は、以上のごとき問題点に鑑み、これらを”J及
的に改善すべく創案された。ものである。
The present invention has been devised in view of the above-mentioned problems and to comprehensively improve them.

本発明の目的は、基礎上に支柱を起立させ、との支柱か
ら径方向外方に延出された支持梁を支柱に沿って昇降自
在に設け、この支持梁にコンクリ−1・を打設するだめ
の型枠を支持させて一体的に一ト昇移動させることによ
り、各ヨーク毎に設置される上昇用ジヤツキと筒壁内に
埋め込捷れるロッドとを不要となすと共に、型枠等の組
立日数をb期化させ、上昇移動の際の制御を容易と成す
ことができるスライプ・fング・フオーム工法による筒
状塔体構造物を提供することにある。
The purpose of the present invention is to erect a column on a foundation, provide a support beam extending radially outward from the column so that it can rise and fall freely along the column, and pour concrete 1 on this support beam. By supporting the formwork and moving it up and down as one unit, it becomes unnecessary to use lifting jacks installed for each yoke and rods that are embedded in the cylinder wall and can be bent, and the formwork, etc. The object of the present invention is to provide a cylindrical tower structure using the slide-fing-form construction method, which can shorten the assembly time and facilitate control during upward movement.

身重に本発明の好適一実施例を添イマj図面に従い詳述
する。
A preferred embodiment of the present invention will be described in detail with reference to the accompanying drawings.

第3図に示すごとく、地上に設けられた基礎21上に起
立し2て支柱22が設けられる。この支柱22には、こ
れに沿って昇降自在な列降移動丁゛段23を備えた支持
梁24が設けられる。支持梁24は径方向外方に適宜間
隔に放射状に延出されて傘状に形成される。
As shown in FIG. 3, a support 22 is provided standing up on a foundation 21 provided on the ground. This support beam 22 is provided with a support beam 24 equipped with a row-and-down movement stage 23 that can be raised and lowered along the support beam 22. The support beams 24 extend radially outward in the radial direction at appropriate intervals and are formed in an umbrella shape.

上ifl’2支持梁24にはこれに垂下支持されてヨー
り3が設けられる。ヨーク3は油圧等の作動手段によっ
て上記支持梁24の長手方向に沿って移動自在に設けら
れている。また、ヨーク3には型枠1が支持されている
。この型枠1は上記支柱22を軸芯とするリング状のコ
ンクリート製周壁25を打設ずべく構成されでいる。
The upper ifl'2 support beam 24 is provided with a yaw 3 that is suspended from the upper ifl'2 support beam 24. The yoke 3 is provided so as to be movable along the longitudinal direction of the support beam 24 by operating means such as hydraulic pressure. Further, the formwork 1 is supported on the yoke 3. This formwork 1 is constructed in such a way that a ring-shaped concrete peripheral wall 25 is cast around the support 22 as its axis.

本発明に依る筒状塔体構造物2の建造装置37の特長と
するところはト述し7た支柱22と支持梁24とによっ
て、上記ヨーり3及び型枠1を支承させたことにあり、
ヨーク3及び型枠1どには従来のものと略同−なものが
使用される。従来と相違する点は、ヨーり3に付属され
る構成物であり、■」二昇用ジーヤツキが不要なことと
、■メク″?ンジャツギが不要なこと、■スポークワイ
ヤが不要な変りにヨーク3の傾きを調整するトラワイヤ
26が設けられることにある。
The feature of the construction device 37 for the cylindrical tower structure 2 according to the present invention is that the yaw 3 and the formwork 1 are supported by the pillars 22 and support beams 24 mentioned above. ,
The yoke 3, formwork 1, etc. are approximately the same as conventional ones. The points that are different from the conventional ones are the components attached to the yaw 3: ■ No need for a 2-lifting jack, ■ No need for a second lift, ■ No need for a spoke wire, and the new yoke A tri wire 26 is provided to adjust the inclination of 3.

L記トラワイヤ26はヨーり3下部の内周側と支柱22
の起端部27とを結び、その張力によってヨーク3の傾
きが調整されるよう構成されている。
The L truy wire 26 is attached to the inner peripheral side of the lower part of the yaw 3 and the support 22.
The yoke 3 is connected to the starting end 27 of the yoke 3, and the inclination of the yoke 3 is adjusted by its tension.

なお、前述した支持梁24の昇降移動手段23には種々
な機構のものが考えられ得るが、本実施例ではその一例
として第4図及び第5図に示すごときランク式の昇降移
動手段23を例示する。
Note that various mechanisms can be considered for the elevating and lowering moving means 23 of the support beam 24 mentioned above, but in this embodiment, as an example, a rank type elevating and lowering moving means 23 as shown in FIGS. 4 and 5 is used. Illustrate.

図示するごとく、支柱22の母線に沿って、900の間
隔を隔てて4本のランク28が設けられる。そして支持
梁の基端部たるスリーブ29が支柱22に嵌装される。
As shown, four ranks 28 are provided along the generatrix of the strut 22 at 900 intervals. Then, the sleeve 29, which is the base end of the support beam, is fitted onto the support column 22.

スリーブ29の上側面30には上記各ラック28に噛合
する係止用のロック部材31が設けられ、F側面32に
は昇降移動用の油圧ジヤツキ33が備えられたロック部
材34が設けられる。
The upper side 30 of the sleeve 29 is provided with a locking member 31 that engages with each of the racks 28, and the F side 32 is provided with a locking member 34 equipped with a hydraulic jack 33 for lifting and lowering.

以[に、本発明の作用について説明する。Below, the operation of the present invention will be explained.

第3図において先ず型枠1が基礎21Fに設置された状
態でコンクリートが打設され、筒状塔体構造物2の最下
層部が基礎21上に成形される4、この後、昇降移動手
段23が駆動される。これに伴い型枠1は支持梁24と
共に一体的に上昇移動される。そして型枠1が上昇移動
されっつコンクリ−1・が連続的に打設さ’tLvi笥
状塔体iA造物2が連続的に形成され−Cいく。
In Fig. 3, concrete is first placed with the formwork 1 installed on the foundation 21F, and the lowest layer of the cylindrical tower structure 2 is formed on the foundation 21. 23 is driven. Accordingly, the formwork 1 is moved upward together with the support beam 24. Then, as the formwork 1 is moved upward, concrete 1 is continuously poured, and a column-shaped tower body 2 is continuously formed.

この十ケイ移動に伴い、型枠1は構造物2の形状に合わ
せてその直径及び周方向の長さが調整される。周方向の
長さは従来通りにヨーク3間隔の伸縮操作によI17調
整さft2、直径は支持梁24の長手J)向に沿って油
1F−等の作動手段によりヨーり3が移動されてA11
l整される。
Along with this movement, the diameter and length of the formwork 1 in the circumferential direction are adjusted according to the shape of the structure 2. The length in the circumferential direction is adjusted in ft2 by expanding and contracting the intervals between the yokes 3 as before, and the diameter is adjusted by moving the yaw 3 along the longitudinal direction of the support beam 24 by an actuating means such as oil 1F-. A11
l will be adjusted.

4/こ、第4図及び第5図に示すごとく、4降移動手段
23は互いに相対向するロック部拐31゜34を一対と
して、それらを各々Aロック35及びBロック36とす
れば、Aロック35とBロック36とを各々交互にラッ
ク28に噛合させてジー?ツギ33を伸張させることに
より、支持梁24即ち型枠1を連続して−・体重に上昇
移動させることができる。
4/ As shown in FIGS. 4 and 5, the four lowering moving means 23 has a pair of lock parts 31 and 34 facing each other, and if these are respectively designated as A lock 35 and B lock 36, then A The locks 35 and B locks 36 are alternately engaged with the racks 28. By extending the nail 33, the support beam 24, ie, the formwork 1, can be continuously moved upward to -.weight.

そ1.て、型枠1の上昇量及びその直径、周方向の長さ
とはコンクリートの硬化速度、その打設速度及び1笥状
塔体構造物2の建造形状に合わせて、腎−来と同様に、
中央コノトローチによって自動制御11される。
Part 1. The amount of rise of the formwork 1, its diameter, and length in the circumferential direction are determined in accordance with the hardening speed of concrete, its casting speed, and the construction shape of the 1-shape tower structure 2, as in the case of kidneys.
Automatically controlled 11 by a central conotroche.

なお、支柱22は支持梁24の上昇した高さに合わせて
I;部より継ぎ込外れることになる。
Incidentally, the support column 22 will be removed from the section I in accordance with the increased height of the support beam 24.

従って、本発明の筒状塔体構造物の建造装置に依れば、
型枠1は支持梁24によって一体的に一ヒ昇されるので
個々のヨーク3に上昇用ジヤツキを設ける必要がなく、
−また、上昇量の調整は支持梁24の十41”を制御す
るだけで行なえるので制御対象が減少(−調整が容易と
なる。
Therefore, according to the cylindrical tower structure construction apparatus of the present invention,
Since the formwork 1 is raised integrally by the support beams 24, there is no need to provide lifting jacks for each yoke 3.
-Also, since the amount of rise can be adjusted by simply controlling 141'' of the support beam 24, the number of objects to be controlled is reduced (-adjustment becomes easier).

また、節壁内に埋め込むロッドと各ヨークを中心方向に
引張するスポークワイヤ等が不要となり、型枠1及びヨ
ーク3等の装置の組立が容易とガって作業の省力化が計
れ、工期を短縮できる。そして型枠1は支持梁24に確
実に支持されることになり、直径の調整もこの支持梁2
4の長手方向に沿って油圧等の移動手段により確実に行
なえるので出来形の精度を高く保つことができる。
In addition, rods embedded in the joint walls and spoke wires that pull each yoke toward the center are no longer required, making it easy to assemble devices such as the formwork 1 and yoke 3, saving labor and shortening the construction period. Can be shortened. The formwork 1 is reliably supported by the support beams 24, and the diameter can also be adjusted using the support beams 24.
4 can be reliably carried out using a moving means such as hydraulic pressure along the longitudinal direction, so that the accuracy of the finished shape can be maintained at a high level.

以」二、要するに本発明に依れば次のごとき優れた効果
を発揮する。
In summary, the present invention provides the following excellent effects.

(1)筒壁内に埋め込むロッドと、各ヨークに設ける1
−、ケ1用ノーVノへ−と、各ヨークを中心力向に引張
−ノーるスポーク・ワイヤとが不要となり、型枠及びヨ
ーり等の装置の組立てが容易となって作業の省力化が計
れ、工期を短縮できる。
(1) A rod embedded in the cylinder wall and a rod installed in each yoke
This eliminates the need for spoke wires that pull each yoke in the direction of the central force, making it easier to assemble forms and devices such as yaws, which saves work. can be measured and the construction period can be shortened.

(2)  型枠が支持梁によって確実に支持され、かつ
直径の調整も支持梁の長手方向に沿って油圧等の移動手
段により確実に行なえるので、筒状塔体構造物の出来形
を高精度に建造できる。
(2) The formwork is reliably supported by the support beams, and the diameter can be reliably adjusted along the longitudinal direction of the support beams using hydraulics or other moving means, making it possible to improve the finished form of the cylindrical tower structure. Can be built with precision.

(3)型枠は支持梁によって一体的に上昇されるので、
−に昇はの調整は支持梁の圭昇量の制御だけで行なえ、
制御対象が少なくなり容易に且つ確実なfti!I御が
行なえる。
(3) Since the formwork is raised integrally by the support beams,
- Adjustment of the rise can be done simply by controlling the amount of rise of the support beam.
Easy and reliable fti with fewer control objects! I can control myself.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は従来のスライディング・フオーム工法による節
状塔体構造物の建造装置を示す概略断面図、第2図(は
第1図のll−11線矢視図、第3図は本発明の好適一
実施例のスライディング・フォート下法による尚状塔体
構造物建造装置を示す概略(則断面図、第4図は本発明
に用いられる昇降移動手段の一例を示す概略平面図、第
5図は第4図の■−V線矢視断面図である。 図中、1は型枠、2は筒状塔体構造物、21(・よ基礎
、22は支柱、24は支持梁、25は二1ンクIJ  
l−製周壁、37id筒状塔体構造物の建造装置ηであ
る。 特許 出願人 石川島播磨重工業株式会社代理人弁理士
 絹 谷 信 雄 第3図 1−、・ 11 ・、    、37 j’、1 6 第 5ハ?1 9 305
Fig. 1 is a schematic sectional view showing a construction apparatus for a jointed tower structure using the conventional sliding form construction method; A schematic cross-sectional view showing an apparatus for constructing a vertical tower structure using the sliding fort method according to a preferred embodiment; FIG. is a sectional view taken along the line ■-V in Fig. 4. In the figure, 1 is the formwork, 2 is the cylindrical tower structure, 21 is the foundation, 22 is the column, 24 is the support beam, and 25 is the 21ink IJ
This is a construction device η for a 37id cylindrical tower structure with a peripheral wall made of L-. Patent Applicant: Ishikawajima-Harima Heavy Industries Co., Ltd. Representative Patent Attorney Nobuo Kinutani Figure 3 1-, 11 ・, , 37 j', 1 6 5th H? 1 9 305

Claims (1)

【特許請求の範囲】[Claims] 池I厘で設けられた基礎−トにリング状のコンクリート
製周壁を順次打設して起立し、筒状塔体構造物を建造す
る装置において、上記基礎上に起立し−C設けられた支
柱と、該支柱に昇降自在に設けられると共に径方向外方
に延出さ11だ支持梁と、該支持梁の長手方向に沿って
移動自在に設けられ上記支柱を軸芯とするリング状のコ
ンクリート製周壁を杓設するだめの型枠とを備えて、上
記型枠を上記支持梁に沿って移動させると共に支柱に沿
って上昇移動させてリング状のコンクリート製周壁を順
次積み重ねて打設するように構成したことを特徴とする
筒状塔体構造物の建造装置。
In a device for constructing a cylindrical tower structure by sequentially pouring ring-shaped concrete peripheral walls on a foundation established in a pond I-T, a column erected on the above-mentioned foundation is installed. a support beam that is movable along the longitudinal direction of the support beam and that is made of ring-shaped concrete and has the support beam as its axis; and a formwork for ladle-setting the peripheral wall, and the formwork is moved along the support beam and moved upwardly along the pillars to sequentially stack and cast the ring-shaped concrete peripheral wall. 1. A construction device for a cylindrical tower structure.
JP3053883A 1983-02-25 1983-02-25 Building apparatus of cylindrical tower body structure Pending JPS59158864A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3053883A JPS59158864A (en) 1983-02-25 1983-02-25 Building apparatus of cylindrical tower body structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3053883A JPS59158864A (en) 1983-02-25 1983-02-25 Building apparatus of cylindrical tower body structure

Publications (1)

Publication Number Publication Date
JPS59158864A true JPS59158864A (en) 1984-09-08

Family

ID=12306569

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3053883A Pending JPS59158864A (en) 1983-02-25 1983-02-25 Building apparatus of cylindrical tower body structure

Country Status (1)

Country Link
JP (1) JPS59158864A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103104090A (en) * 2012-10-09 2013-05-15 中国葛洲坝集团股份有限公司 Silo house concrete whole sliding and ascending module

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103104090A (en) * 2012-10-09 2013-05-15 中国葛洲坝集团股份有限公司 Silo house concrete whole sliding and ascending module
CN103104090B (en) * 2012-10-09 2016-05-11 中国葛洲坝集团股份有限公司 Silo concrete whole slip template

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