JPS58110717A - Drawing of earth anchor - Google Patents

Drawing of earth anchor

Info

Publication number
JPS58110717A
JPS58110717A JP20809281A JP20809281A JPS58110717A JP S58110717 A JPS58110717 A JP S58110717A JP 20809281 A JP20809281 A JP 20809281A JP 20809281 A JP20809281 A JP 20809281A JP S58110717 A JPS58110717 A JP S58110717A
Authority
JP
Japan
Prior art keywords
anchor
core material
earth
mortar
sleeve
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
JP20809281A
Other languages
Japanese (ja)
Inventor
Masami Yoda
依田 政美
Masaaki Tawara
田原 政明
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.)
CHEM KURAUTO KK
Chemical Grouting Co Ltd
Original Assignee
CHEM KURAUTO KK
Chemical Grouting Co Ltd
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 CHEM KURAUTO KK, Chemical Grouting Co Ltd filed Critical CHEM KURAUTO KK
Priority to JP20809281A priority Critical patent/JPS58110717A/en
Publication of JPS58110717A publication Critical patent/JPS58110717A/en
Pending legal-status Critical Current

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D5/00Bulkheads, piles, or other structural elements specially adapted to foundation engineering
    • E02D5/74Means for anchoring structural elements or bulkheads
    • E02D5/80Ground anchors
    • E02D5/808Ground anchors anchored by using exclusively a bonding material

Abstract

PURPOSE:To draw out a tension steel member with small loads by packing a static breaking agent is into a sleeve at the fixed portion of an anchor through an aperature formed when pulling out a core material. CONSTITUTION:A core material 11 is pulled out of sleeves 13 and 14, and a slurried static breaking agent 16 is packed into the sleeve 13 at the fixed portion A of an anchor through the aperture formed when pulling out the core material 11. The static breaking agent 16 used is composed of a lime-based inorganic compound as a main component and an organic and inorganic compound and exerts an expansion pressure as a breaking force from its hydration reaction. The cement mortar 4 of the fixed portion A of the anchor is broken by the expansion pressure of the static breaking agent 16 and thereby the adhesion between a tension steel member 12 and the cement mortar 4 is weakened. The tension steel member 12 thus separated is drawn out with small loads, e.g., man power, etc.

Description

【発明の詳細な説明】 本発明は、土砂の掘削等が行われる土留壁な支持するア
ースアンカーの引抜き方法に関する。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a method for pulling out an earth anchor that supports an earth retaining wall in which earth and sand are excavated.

土留壁なアースアンカーで支持した場合、工事終了彼地
下権などの問題でアースアンカーを撤去したけわばなら
ないことがし、ばしはある。
If a retaining wall is supported with an earth anchor, it may be necessary to remove the earth anchor after the construction is completed due to issues such as underground rights.

ところで、このアースアンカーな撤去するKは、従来は
アースアンカーをアンカー強度以上の引抜き力で引抜く
か、あるいはモルタル等で被〜されていない引張り鋼材
部分にあらかじめ瞬間発熱部な般けておき、その部分で
切断(7引抜く方法が一般に採られていた。
By the way, conventional methods for removing the earth anchor include pulling out the earth anchor with a pulling force greater than the strength of the anchor, or placing an instantaneous heat generating part in advance in the tensile steel part that is not covered with mortar, etc. The method of cutting (7) pulling out at that part was generally adopted.

しかしながら、前者の方法では、強力な引抜きジヤツキ
な必要とし、作業が容易でない欠点があり、また彼者の
方法では、全部の引張り鋼材を引抜くことができない欠
講があった。
However, the former method has the disadvantage that it requires a powerful drawing jack and is not easy to work with, and their method has the disadvantage that it is not possible to pull out all the tensile steel material.

そこで近年、引張り鋼材圧電熱線なMeするようにして
接着性を有する熱溶融性合成悼I脂な塗布し、アースア
ンカー?撤去する際に電熱線に通電して発熱させ、樹脂
を溶融して引張り鋼材とモルタル等との付着力を低下さ
せ、引張り鋼材を引抜くことが提案された。
Therefore, in recent years, tensile steel piezoelectric hot wires have been coated with adhesive heat-melting synthetic materials and ground anchors. It has been proposed that during removal, electricity is applied to heating wires to generate heat, melting the resin and reducing the adhesion between the tensile steel and mortar, and then pulling out the tensile steel.

この方法によれば、従−来の引抜き方法の前記欠めは解
消されるが、多数使用される引張り鋼材ごとに%熱線を
装着しなければならないという手間な費し、また電熱線
の導線が多数本となってその扱いが煩雑となる等の欠漬
かある。
According to this method, the above-mentioned deficiencies of the conventional drawing method can be solved, but it is time-consuming because a heating wire must be attached to each tensile steel material that is used in large numbers, and the conductor of the heating wire is There are some issues, such as the large number of books, making handling them complicated.

したがって、本発明の目的とするところは、従来の方法
の前記の久々な解消し、煩雑な作業を要ケることなく、
かつ引張り鋼材の一部な残すこと/、c < 、に部の
引張り鋼材を引抜くことができるアースアンカーの引抜
き方法な提供するにある。
Therefore, the purpose of the present invention is to solve the above-mentioned problem of the conventional method, and to solve the problem without requiring complicated work.
The object of the present invention is to provide a method for pulling out an earth anchor by which a portion of the tensile steel material can be pulled out while leaving only a portion of the tensile steel material.

以1、図面を参照し本発明のアースアンカー引抜き方法
を実施した実施例な説明する。
DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, an embodiment of the earth anchor pulling method of the present invention will be described with reference to the drawings.

m1図はアースアンカー5に上り土留112を押し付け
ている状態を示し、アンカーはジヤツキで引張り鋼材1
↓を引張り、アンカー自由部Bの引張り鋼材が引伸ばさ
れた状態のまま、ナツト又はグリップ6で固定する。こ
うすると伸ばされた引とになり、掘削工率における土留
めの役割を果すことになる。このとき、アンカ一定着部
ムも逆に引張られているが、この部分す(は引張り鋼材
l↓とモルタル4との付着力と、モルタル4と±1との
付着力とが働いて引張る力に抵抗している。
Figure m1 shows the state in which the earth anchor 5 is pressed against the earth retaining member 112, and the anchor is jacked up to the tensile steel member 1.
↓, and fix it with a nut or grip 6 while keeping the tensile steel material of the free part B of the anchor stretched. This will result in an extended pull, which will serve as earth retaining during the excavation process. At this time, the anchor fixed part M is also pulled in the opposite direction, but this part is pulled by the adhesion force between the tensile steel l↓ and the mortar 4, and the adhesion force between the mortar 4 and ±1. is resisting.

なお、第1図について、7はグレート%8は台片、9は
復起し、lOはブラケットを示す。
In addition, regarding FIG. 1, 7 indicates a grade, 8 indicates a stand piece, 9 indicates a return, and IO indicates a bracket.

したがって、上述した付着力のうちどちらかでも低下す
ればアンカーは力の均衡を失い抜けてしまうことになる
。この原理なオ]1用して、アースアンカーとしての用
途な済ませた績、引張り鋼材とモルタルとの付虐力を低
下させ、小さな荷重で引張り鋼材な引抜くことができる
ようにしたのが本発明である。
Therefore, if either of the above-mentioned adhesion forces decreases, the anchor will lose the balance of forces and fall through. By using this principle, it has been used as an earth anchor, reducing the force of force between the tensile steel and mortar, and making it possible to pull out the tensile steel with a small load. It is an invention.

アンカ一体の造成は従来のアースアンカー工法と同様K
、削孔機にて所定深度まで削孔する。削孔された孔に第
2図イ1口、ハに示す構成の引張り材を挿入する。
The construction of the anchor is the same as the conventional earth anchor construction method.
, the hole is drilled to a predetermined depth using a hole drilling machine. A tensile material having the configuration shown in Figure 2 A1 and C is inserted into the drilled hole.

引張り材は、芯材11と芯材11な取り巻く・多数の引
張り鋼材12とからなり、少なくともモルタルで定着さ
れるアンカ一定着部Aの芯材11はスリーブ13で被覆
されており、またモルタルで定着されないアンカー自由
部Bは芯材11および引張り鋼材12が一緒に大径のス
リーブ14で被覆されている。大径のスリーブ14の端
には栓15か施されてスリーブ14内にモルタル等が流
入しないようKされている。なお、芯材11および引張
り鋼材12は鋼棒であっても鋼線をワイヤ状にしたもの
であってもよい。
The tensile material consists of a core material 11 and a large number of tensile steel materials 12 surrounding the core material 11, and at least the core material 11 of the anchor fixed part A fixed with mortar is covered with a sleeve 13, and the core material 11 is covered with a sleeve 13 and The anchor free portion B, which is not anchored, is covered with a large-diameter sleeve 14 together with the core material 11 and the tensile steel material 12. A plug 15 is provided at the end of the large diameter sleeve 14 to prevent mortar etc. from flowing into the sleeve 14. Note that the core material 11 and the tensile steel material 12 may be a steel rod or a steel wire shaped into a wire.

このような構成の引張り材5を第3図に示すよ5に、^
11召3内に挿入し、モルタルあるいはセメントミルク
4にて孔内を育填する。充填されたモルタルあるいはセ
メントミルク4の硬化によって引張り材5と地盤lとの
一体化によってアンカーの使命な行う。
A tensile member 5 having such a structure is shown in Fig. 3.
11 Insert into the hole 3 and fill the inside of the hole with mortar or cement milk 4. The mission of the anchor is accomplished by the hardening of the filled mortar or cement milk 4, which integrates the tensile material 5 with the ground l.

アンカーの使命は緊俵ジヤツキにて行い前記の第1図の
ようVCatする。アンカーの使命を完了し、fこら、
緊張ジヤツキにて荷重を解放して引張り鋼材12f除去
する。
The anchor's mission is to perform the VCat as shown in Figure 1 above. Complete the anchor mission,
The load is released using a tension jack and the tension steel 12f is removed.

除去の手順は次の要領で行う。The removal procedure is as follows.

まず、芯材11をスリーブ13およびスリーブ14から
引抜く。芯材を引抜いた隙間を通して鎮3図に示すよう
にアンカ一定着部Aのスリーブ13内にスラリー状の静
的破砕剤16な光損する。静的破砂剤は、石灰系無機化
合物を主成分とし、これに有機、無機化合物を添加した
もので、水和反応により生ずる膨張圧力な破砕にオII
用するもので、それ自身は従来公知のものである。介填
後、10〜20時間以内に破砕効果があられれ、第4図
に示すようにアンカ一定着部Aのモルタルが破壊されて
(モルタルが破壊された状態を4′で示す。)引張り鋼
材12とモルタル4′とが分離する。分離した引張り鋼
材12をジヤツキ17あるいは人力で引抜く。
First, the core material 11 is pulled out from the sleeves 13 and 14. As shown in Figure 3, a slurry-like static crushing agent 16 enters the sleeve 13 of the anchor fixed portion A through the gap where the core material is pulled out. Static sand crushing agents are mainly composed of lime-based inorganic compounds, to which organic and inorganic compounds are added.
This is a conventionally known device. After interposition, the crushing effect is achieved within 10 to 20 hours, and as shown in Fig. 4, the mortar in the anchor fixed part A is destroyed (the state in which the mortar is destroyed is indicated by 4'), and the tensile steel material is 12 and mortar 4' are separated. The separated tensile steel material 12 is pulled out using a jack 17 or by hand.

以上説明したように本発明に係るアースアンカーの引抜
き方法によれば、従来の方法のように4/#力な引抜き
ジヤツキを必要とせず、また全部の引張り鋼材な引抜く
ことができる。また静的破砕剤な用−いているので無振
動、無騒音であり、さらに電熱at用いて引張り鋼材に
塗布した樹脂を容融させる方法のように、引張り鋼材へ
の樹脂の塗布、電熱線の装着などの煩緘な手間を要しな
い。
As explained above, according to the method for pulling out an earth anchor according to the present invention, there is no need for a pulling jack with a force of 4/# as in the conventional method, and the entire tensile steel material can be pulled out. In addition, since it is used as a static crushing agent, there is no vibration or noise.Furthermore, it can be used to melt resin applied to tensile steel materials using electric heating at, and to melt the resin applied to tensile steel materials. It does not require any troublesome work such as installation.

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

第1図はアースアンカーにより土留な押付けている状態
を示す断面図である。第2図イ2口、ハは本発明で使用
する引張り材を示し、イは縦断面図、口はアンカ一定着
部の横断面図、ハはアンカー自由部の横断面図である。 第3図は芯材を引抜と静的破砕剤な前項した状態を示す
縦断面図である。 第4図はモルタルを破壊し引張り鋼材とモルタルとが分
離した状態を示す縦断面図である。 l・・・地盤  2・・・土留  3・・・削孔4・・
・モルタル  5・・・引張’)材  6・・・ナツト
  7・・・プレート  8・・・台座  9・・・・
復起し  10・・・ブラケット  】1・・・芯44
 12・・・引張り鋼材  13・・・スリーブ   
14・・・スリーブ  15・・・i&16・・・静的
破砕剤  17・・・ジヤツキ特許出1人  ケミカル
グラウト株式会社、43\ 代坤人 弁理士  高 慟 敏 忠・′\゛ツ)〜、 
 ′
FIG. 1 is a sectional view showing a state in which the earth anchor is pressed against the ground. 2A and 2C show the tensile material used in the present invention, A is a longitudinal cross-sectional view, C is a cross-sectional view of the fixed portion of the anchor, and C is a cross-sectional view of the free portion of the anchor. FIG. 3 is a longitudinal cross-sectional view showing the state in which the core material is drawn out and subjected to static crushing. FIG. 4 is a longitudinal sectional view showing a state in which the mortar is destroyed and the tensile steel material and the mortar are separated. l...Ground 2...Earth retaining 3...Drilling 4...
・Mortar 5...Tension material 6...Nut 7...Plate 8...Pedestal 9...
Restored 10... Bracket ] 1... Core 44
12...Tensile steel material 13...Sleeve
14... Sleeve 15... i & 16... Static crushing agent 17... Jatsuki Patented by 1 person Chemical Grout Co., Ltd., 43\ Representative Patent Attorney Takashi Takayoshi ``\゛tsu)~,

Claims (1)

【特許請求の範囲】[Claims] 土砂の掘削等が行われる土留壁が崩壊するのを防止する
ためK、地盤内Kfi設されて土留壁な押付けるアース
アンカーを引抜く方法において、アースアンカーとして
芯材とそれを取り巻く多数の引張り鋼材とからなり、少
なくともモルタル等で定着されるアンカ一定着部の芯−
材はスリーブで被横されており、モルタル等で定着され
ないアンカー自由部の芯材および引張り鋼材は一緒にス
リーブで被慢されているものを用い、アースアンカーな
撤去する際、まず芯材を引抜き、次いで芯材を引抜くこ
とにより形成される隙間な通してアンカ一定着部のスリ
ーブ内に静的破砕剤ケ充填し、その静的破砕剤が膨張す
ることによる膨張圧力でアンカ一定着部のモルタル等を
破壊して引張り鋼材とモルタル等との付着力を低下させ
、もって引張り鋼材を地盤から引抜くことを特徴とする
アースアンカーの引抜き方法。
In order to prevent earth retaining walls from collapsing when excavating earth and sand, etc., a method of pulling out earth anchors that are installed in the ground and pressed against earth retaining walls uses a core material as an earth anchor and a large number of tensile forces surrounding it. The core of the fixed part of the anchor, which is made of steel and is fixed with at least mortar, etc.
The material is covered with a sleeve, and the core material and tensile steel material in the free part of the anchor that is not fixed with mortar etc. are covered with a sleeve. When removing the earth anchor, first pull out the core material. Next, a static crushing agent is filled into the sleeve of the anchor fixed part through the gap formed by pulling out the core material, and the static crushing agent expands and the expansion pressure causes the anchor fixed part to break. A method for pulling out an earth anchor, which is characterized by destroying mortar, etc. to reduce the adhesion between the tensile steel and the mortar, and thereby pulling the tensile steel from the ground.
JP20809281A 1981-12-24 1981-12-24 Drawing of earth anchor Pending JPS58110717A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP20809281A JPS58110717A (en) 1981-12-24 1981-12-24 Drawing of earth anchor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP20809281A JPS58110717A (en) 1981-12-24 1981-12-24 Drawing of earth anchor

Publications (1)

Publication Number Publication Date
JPS58110717A true JPS58110717A (en) 1983-07-01

Family

ID=16550501

Family Applications (1)

Application Number Title Priority Date Filing Date
JP20809281A Pending JPS58110717A (en) 1981-12-24 1981-12-24 Drawing of earth anchor

Country Status (1)

Country Link
JP (1) JPS58110717A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2536447A1 (en) * 1982-11-18 1984-05-25 Sumitomo Cement Co METHOD FOR PRODUCING A CONCRETE CAST CONCRETE PILLAR
JPS62133213A (en) * 1985-12-04 1987-06-16 Taisei Corp Construction of removable type anchor

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS518714A (en) * 1974-06-19 1976-01-23 Rooshingaa Ag

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS518714A (en) * 1974-06-19 1976-01-23 Rooshingaa Ag

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2536447A1 (en) * 1982-11-18 1984-05-25 Sumitomo Cement Co METHOD FOR PRODUCING A CONCRETE CAST CONCRETE PILLAR
JPS62133213A (en) * 1985-12-04 1987-06-16 Taisei Corp Construction of removable type anchor
JPH042137B2 (en) * 1985-12-04 1992-01-16

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