JP4154487B2 - Foundation pile construction method, foundation pile - Google Patents

Foundation pile construction method, foundation pile Download PDF

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Publication number
JP4154487B2
JP4154487B2 JP02080898A JP2080898A JP4154487B2 JP 4154487 B2 JP4154487 B2 JP 4154487B2 JP 02080898 A JP02080898 A JP 02080898A JP 2080898 A JP2080898 A JP 2080898A JP 4154487 B2 JP4154487 B2 JP 4154487B2
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Japan
Prior art keywords
pile
ready
concrete
reinforcing bar
stirring
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JP02080898A
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Japanese (ja)
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JPH11217829A (en
Inventor
好伸 木谷
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Mitani Sekisan Co Ltd
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Mitani Sekisan Co Ltd
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Description

【0001】
【発明の属する技術分野】
この発明は、建造物の基礎を構成する基礎杭、この基礎杭の構築方法に関する。
【0002】
【従来の技術】
従来、基礎杭は現場で、杭穴を掘削し、杭穴内に鉄筋篭を沈設すると共に杭穴内にコンクリートを充填するいわゆる場所打ち杭工法が取られていた。
【0003】
【発明が解決しようとする課題】
前記場所打ち杭工法では、構築現場での杭穴の掘削・鉄筋篭の埋設作業等の現場作業が大となり、また打設するコンクリートの品質管理等が煩雑となる問題点があった。
【0004】
そこで、鉄筋コンクリート製その他の既製杭を使用した各種工法も提案されているが、杭穴との既製杭との一体性が保てず、耐力は埋設する既製杭の外径分しか考慮されず、杭穴の穴径に応じた大きな耐力が期待できない問題点があった。
【0005】
【課題を解決するための手段】
然るにこの発明は、鉄筋篭を一体に連設した既製中空杭を、杭穴内のコンクリートに埋設して、基礎杭を構成するので、前記問題点を解決した。
【0006】
即ちこの発明は、
(1) 掘削ロッドで拡底球根部を有する杭穴を掘削した後、該掘削ロッドを引き上げ、
(2) 続いて中空部に撹拌ロッドを入れ、下端に鉄筋篭を一体に連設した既製コンクリート杭を、前記杭穴内に下降し、前記既製コンクリート杭の下方に前記撹拌ロッドの撹拌ヘッドを突出させ、該撹拌ヘッドで、前記拡底球根内を撹拌するとともに、前記撹拌ヘッドの吐出口から前記球根部内にセメントミルクを注入して、前記拡底球根部内の泥土をセメントミルクに置換し、
(3) 次ぎに、前記既製コンクリート杭を所定位置に沈設した後、または沈設しながら、前記杭穴の底から地上まで前記撹拌ヘッドの吐出口からコンクリートを吐出しながら、前記既製コンクリート杭の中空部を通って前記撹拌ロッドを引き上げ、前記セメントミルクをコンクリートと置換して前記杭穴内にコンクリートを充填することを特徴とした基礎杭の構築方法である。
【0007】
また、前記において、既製コンクリート杭を、下端に鉄筋篭を一体に連設し、該鉄筋篭の下端に、該鉄筋篭を保護する短鋼管又は円板状のリングを溶着して構成した基礎杭の構築方法である。
【0008】
また、他の発明は、拡底球根部を有する杭穴内に、下端部に鉄筋篭を連設した既製コンクリート杭を沈設し、杭穴の拡底球根部及び既製中空杭の中空部にコンクリートを充填した基礎杭であって、前記既製コンクリート杭は、中空部を有する既製コンクリート杭の下端に鉄筋篭を一体に連設し、該鉄筋篭の下端に、該鉄筋篭を保護する短鋼管又は円板状のリングを溶着して構成し、前記コンクリートは、前記既製コンクリート杭の中空部を通って下方に突出した撹拌ロッドの撹拌ヘッドで、前記拡底球根内の泥土を撹拌して、前記撹拌ヘッドの吐出口から吐出したセメントミルクで前記泥土を置換し、続いて前記撹拌ヘッドの吐出口から吐出したコンクリートで、前記セメントミルクを置換して構成したことを特徴とする基礎杭である。更に、前記において、既製杭の軸鉄筋を下方に突出させて突出部を構成し、該突出部に、らせん鉄筋を連設して鉄筋篭構成した基礎杭である。
【0009】
前記において、既製中空杭は、中掘工法に使用される各種コンクリート杭(鉄筋コンクリート杭、PC杭等)が望ましいが、中空部を有すれば、鋼管とコンクリートとの複合杭などを使用することもできる。
【0010】
【発明の実施の形態】
中空部を有する既製コンクリート杭の軸鉄筋を下方に突出させて突出部を構成し、該突出部に、らせん鉄筋を連設して一体の鉄筋篭を構成して、既製中空杭とする。
【0011】
掘削ロッドで拡底球根部を有する杭穴を掘削した後、掘削ロッドを引き上げる。続いて、中空部に撹拌ロッドを入れた既製中空杭を、杭穴内に下降して杭の先端を拡底球根部付近に位置させ、ここで既製中空杭を保持する。既製杭の下方に撹拌ロッドの撹拌ヘッドを突出させて、拡底球根部内にセメントミルクを注入して球根部内を撹拌し、既製中空杭を所定位置に沈設する。杭穴の底から地上まで撹拌ロッドの撹拌ヘッドの吐出口からコンクリートを吐出しながら、既製中空杭の中空部を通って撹拌ロッドを引き上げる。セメントミルクがコンクリートに置換され、杭穴内にコンクリートが充填される。コンクリート固化後に既製中空杭が杭穴内のコンクリートと一体の基礎杭を構築する。
【0012】
【作用】
既製中空杭の下端部に鉄筋篭を形成したので、既製中空杭の下端部は、杭穴の下端部で充填されたコンクリートと一体となる。また、杭穴軸部では既製中空杭の中空部内にコンクリートが充填される。従って、杭穴内のコンクリートと中空既製杭とで、杭穴の穴径に応じた現場造成杭と同等の強度を有する現場造成杭を構築できる。
【0013】
【実施例1】
図2、3に基づきこの発明の既製中空杭の構成について説明する。
【0014】
既製コンクリート杭本体1の軸鉄筋2、2を下方に突出させて、該軸鉄筋2、2の突出部3、3を螺旋鉄筋4で連結して、この発明の既製中空杭6を構成する。
【0015】
前記において、軸鉄筋2、2の突出部3、3と螺旋鉄筋4とで、鉄筋篭5とする。また前記既製中空杭6で、既製コンクリート杭本体1の下端1aから鉄筋篭5の下端5aまでの距離Lは、地盤条件、杭が負担すべき荷重にもよるが、既製中空杭6の外径をDとすると、通常は1D〜1m程度であり、既製コンクリート杭本体1の下端1aが、鉄筋篭5の下端5aが掘削した杭穴20の底23に位置した際に、掘削した杭穴20の拡底球根部22内に位置するような高さとしてある。
【0016】
前記実施例において、鉄筋篭5の下端5aに、鉄筋篭5を保護する短鋼管8を溶着することもできる(図3(a))。また、短鋼管8に変えて、円板状のリングとすることもできる(図示していない)。
【0017】
また、前記実施例において、既製コンクリート杭本体1の軸鉄筋3を下方に突出させて鉄筋篭5を構成したが、鉄筋篭5と既製コンクリート杭本体1とを別部材で構成することもできる。即ち、端板10の下面に、軸鉄筋11、11を突設させると共に、該軸鉄筋11、11の周囲に螺旋鉄筋4を周設して鉄筋篭12を構成する(図3(b))。鉄筋篭12の端板10を既製コンクリート杭本体1の下端板9に連結して、既製中空杭6を構成する。この場合には、一般の既製コンクリート杭1の下端板10に鉄筋篭12を取付ければ、本発明の既製中空杭を構成することもできる。
【0018】
また、前記実施例において、既製コンクリート杭本体1をストレート杭としたが、下端部あるいは全長に亘って環状リブ13、13を設けた節杭とすることもできる(図3(c))。
【0019】
【実施例2】
図1に基づきこの発明の基礎杭及びその構築方法の実施例を説明する。
【0020】
(1) 下端部に掘削ヘッド16を有する掘削ロッド15を正転させて、杭穴20の軸部21を掘削する(図1(a))。前記掘削ヘッド16は、下端部に掘削刃を有するヘッド本体17に揺動自在で、下端部に掘削刃を有する揺動腕18、18を取付けて構成してある。また、掘削ロッド15には、掘削土を地上に揚げる搬送手段(螺旋はね、スクリュー等)や、杭穴壁を整えて倒壊を防止する為に掘削泥土を練り付けるドラム類を取付けてある(図示していない)。
【0021】
(2) 続いて、掘削ロッド15を反転させて、逆に振れた揺動腕18、18で杭穴20の拡底球根部22を掘削する(図1(b))。杭穴20の掘削が完了したならば、前記掘削ロッド15を、杭周固定液(セメントミルク等)を杭穴22内に吐出しながら、地上に引き上げる。
【0022】
(3) 次に、既製中空杭6の中空部7内に撹拌ロッド24を収納して、杭穴20内に、該既製中空杭6及び撹拌ロッド24を下降させる。前記撹拌ロッド24はその下端部に、揺動する撹拌腕26、26を有すると共に、コンクリートの吐出口27を有する撹拌ヘッド25を取付けてある。また、撹拌ロッド24は吐出口27に対応した搬送用のパイプを内蔵するが、コンクリート用とセメントミルク用の共用のパイプを設け、あるいは夫々専用のパイプを別途設けることもできる。
【0023】
(4) 既製中空杭6の下端(鉄筋篭の下端)5aが杭穴20の拡底球根部22の上部に位置した状態で、既製中空杭6の下降を停止してこの位置に保持する。既製中空杭6から撹拌ロッド24の撹拌ヘッド25を下方に突出させ、杭穴20の拡底球根部22内を撹拌するとともに拡底球根部22内にセメントミルクを注入する(図1(c))。ここで、拡底球根部22内の泥土はセメントミルクに置換される。
【0024】
(5) 次に、既製中空杭6を杭穴20の底23に沈設した後に、撹拌ヘッド25の吐出口27からコンクリート28を吐出しながら、撹拌ロッド24を既製中空杭6の中空部7を通って、地面29上に引き上げる(図1(d))。コンクリート28の注入により、拡底球根部22内のセメントミルクは、コンクリート28に置換される。
【0025】
(6) コンクリート28が固化した後に、杭穴20の拡底球根部22内、既製中空杭6の中空部7内にコンクリート28が充填され、杭穴20の軸部21と既製中空杭6の外周との間には杭周固定液30が充填された基礎杭31が構築される(図1(e))。
【0026】
前記実施例において、既製中空杭6は、前記実施例1の各種既製中空杭(図3他)を使用することもできる(図示していない)。
【0027】
また、前記実施例において、既製中空杭6を杭穴20の底23に沈設した後に、撹拌ヘッド25からコンクリート28を吐出したが、撹拌ヘッド25からコンクリートを吐出しながら既製中空杭6の中空部7内に通って撹拌ヘッド25を引き上げながら、既製中空杭6を沈設することもできる(図示していない)。
【0028】
また、前記実施例で、撹拌ロッド24からセメントミルクを吐出して、一旦泥土をセメントミルクに置換した後に更にセメントミルクをコンクリートに置換したので、コンクリートの質を高めることができる。
【0029】
【発明の効果】
この発明は、杭穴内に下端部に鉄筋篭を有する既製中空杭を沈設すると共に杭穴内にコンクリートを充填するので、杭穴内に構造的に一体となったコンクリート杭を構築できるので、杭穴径に応じた耐力を期待できる効果がある。
【0030】
また、杭穴内に既製中空杭を沈設するので、鉄筋篭の沈設に比して、沈設作業が容易であり、また構築現場でのコンクリート打設量を大幅に削減できるので、基礎杭の構築作業を簡略化・効率化できる効果がある。
【図面の簡単な説明】
【図1】(a)乃至(e)はこの発明の実施例を説明する概略した縦断面図である。
【図2】この発明の実施例の既製中空杭で、(a)は縦断面図、(b)は底面図を夫々表す。
【図3】(a)乃至(c)は、この発明の既製中空杭の他の実施例の縦断面図である。
【符号の説明】
1 既製コンクリート杭本体
2 軸鉄筋
3 軸鉄筋の突出部
4 螺旋鉄筋
5 鉄筋篭
5a 鉄筋篭の下端
6 既製中空杭
7 中空部(既製中空杭)
9 下端板(既製コンクリート杭本体)
10 端板(鉄筋篭)
11 軸鉄筋(鉄筋篭)
12 鉄筋篭
15 掘削ロッド
16 掘削ヘッド
20 杭穴
21 杭穴の軸部
22 杭穴の拡底球根部
23 杭穴の底
24 撹拌ロッド
25 撹拌ヘッド
27 吐出口(撹拌ヘッド)
28 コンクリート
29 地上
31 基礎杭
[0001]
BACKGROUND OF THE INVENTION
The present invention, foundation piles constituting the foundation of the building relates to the construction how the foundation pile.
[0002]
[Prior art]
Conventionally, the so-called cast-in-place pile method has been adopted in which foundation piles are excavated at the site, piles are sunk in the hole, and concrete is filled in the pile hole.
[0003]
[Problems to be solved by the invention]
In the cast-in-place pile method, there are problems such as excavation of pile holes at the construction site and embedding work of reinforcing bars, and the quality control of the concrete to be placed becomes complicated.
[0004]
Therefore, various methods using reinforced concrete and other ready-made piles have also been proposed, but the integrity of the pile holes and ready-made piles cannot be maintained, and the proof stress is considered only for the outer diameter of the ready-made piles to be buried, There was a problem that a large yield strength according to the hole diameter of the pile hole could not be expected.
[0005]
[Means for Solving the Problems]
However, the present invention solves the above-mentioned problems because the ready-made hollow pile in which the reinforcing bar is integrally connected is buried in the concrete in the pile hole to constitute the foundation pile.
[0006]
That is, this invention
(1) After excavating a pile hole having an expanded bulb with a drilling rod, the drilling rod is pulled up,
(2) Subsequently, a stirring rod is inserted into the hollow portion, and a ready-made concrete pile integrally connected with a reinforcing bar at the lower end is lowered into the pile hole, and the stirring head of the stirring rod protrudes below the ready-made concrete pile. And stirring the inside of the expanded bulb with the stirring head, injecting cement milk into the bulb portion from the discharge port of the stirring head, replacing the mud soil in the expanded bulb portion with cement milk ,
(3) Next, after the ready-made concrete pile is sunk at a predetermined position or while being laid , the concrete is discharged from the bottom of the pile hole to the ground while discharging the concrete from the discharge port of the stirring head. It is the construction method of the foundation pile characterized by pulling up the stirring rod through the part, replacing the cement milk with concrete, and filling the pile hole with concrete.
[0007]
In addition, in the above, a foundation pile in which a ready-made concrete pile is integrally connected to a lower end of a reinforcing bar and a short steel pipe or a disk-shaped ring is attached to the lower end of the reinforcing bar to protect the reinforcing bar. This is the construction method.
[0008]
In another invention, in a pile hole having a bottomed bulb part, a ready-made concrete pile having a reinforcing bar is continuously provided at the lower end , and the bottomed bulb part of the pile hole and the hollow part of the ready-made hollow pile are filled with concrete. It is a foundation pile, and the ready-made concrete pile is a short steel pipe or a disk shape that continuously connects a reinforcing bar to the lower end of the ready-made concrete pile having a hollow portion, and protects the reinforcing bar at the lower end of the reinforcing bar. The concrete is composed of a ring with a stirring rod protruding downward through the hollow portion of the ready-made concrete pile, and the mud in the bottom expansion bulb is stirred to discharge the stirring head. A foundation pile characterized in that the mud soil is replaced with cement milk discharged from an outlet, and then the cement milk is replaced with concrete discharged from a discharge port of the stirring head . Furthermore, in the above, it is a foundation pile in which the shaft reinforcing bar of the ready-made pile is protruded downward to form a protruding part, and a helical reinforcing bar is connected to the protruding part to constitute a reinforcing bar.
[0009]
In the above, the ready-made hollow piles are preferably various concrete piles (reinforced concrete piles, PC piles, etc.) used in the medium excavation method, but if they have hollow parts, composite piles of steel pipe and concrete may be used. it can.
[0010]
DETAILED DESCRIPTION OF THE INVENTION
A shaft rebar of a ready-made concrete pile having a hollow portion is protruded downward to form a protrusion, and a helical rebar is connected to the protrusion to form an integrated rebar rod to obtain a ready-made hollow pile.
[0011]
After excavating the pile hole having the expanded bulb portion with the excavation rod, the excavation rod is pulled up. Then, the ready-made hollow pile which put the stirring rod in the hollow part descend | falls in a pile hole, the front-end | tip of a pile is located in the vicinity of a bottomed bulb part, and a ready-made hollow pile is hold | maintained here. The stirring head of the stirring rod is projected below the ready-made pile, cement milk is injected into the expanded bulb part, the inside of the bulb part is stirred, and the ready-made hollow pile is set in place. While discharging concrete from the bottom of the pile hole to the ground from the discharge port of the stirring head of the stirring rod, the stirring rod is pulled up through the hollow portion of the ready-made hollow pile. Cement milk is replaced with concrete, and concrete is filled into the pile holes. After the concrete is solidified, the ready-made hollow pile will be built with the concrete in the pile hole.
[0012]
[Action]
Since the reinforcing bar was formed in the lower end part of a ready-made hollow pile, the lower end part of a ready-made hollow pile becomes integral with the concrete with which the lower end part of the pile hole was filled. Moreover, concrete is filled in the hollow part of a ready-made hollow pile in a pile hole axial part. Therefore, it is possible to construct a field-built pile having the same strength as the field-built pile according to the hole diameter of the pile hole with the concrete in the pile hole and the hollow ready-made pile.
[0013]
[Example 1]
The structure of the ready-made hollow pile of this invention is demonstrated based on FIG.
[0014]
The shaft rebars 2 and 2 of the ready-made concrete pile main body 1 are protruded downward, and the protrusions 3 and 3 of the shaft rebars 2 and 2 are connected by the spiral rebar 4 to constitute the ready-made hollow pile 6 of the present invention.
[0015]
In the above description, the protrusions 3 and 3 of the shaft rebars 2 and 2 and the helical rebar 4 are used as the rebar rod 5. Further, in the ready-made hollow pile 6, the distance L from the lower end 1a of the ready-made concrete pile body 1 to the lower end 5a of the reinforcing bar 5 depends on the ground conditions and the load that the pile should bear, but the outer diameter of the ready-made hollow pile 6 D is usually about 1D to 1 m, and when the lower end 1a of the ready-made concrete pile body 1 is positioned at the bottom 23 of the pile hole 20 excavated by the lower end 5a of the reinforcing bar 5, the excavated pile hole 20 The height is such that it is located within the expanded bottom bulb portion 22.
[0016]
In the said Example, the short steel pipe 8 which protects the reinforcing bar 5 can also be welded to the lower end 5a of the reinforcing bar 5 (FIG. 3 (a)). Moreover, it can change to the short steel pipe 8 and can also be set as a disk-shaped ring (not shown).
[0017]
Moreover, in the said Example, although the axial reinforcement 3 of the ready-made concrete pile main body 1 was protruded below and the reinforcing bar rod 5 was comprised, the reinforcing bar rod 5 and the ready-made concrete pile main body 1 can also be comprised by another member. That is, the shaft reinforcing bars 11 are projected on the lower surface of the end plate 10, and the spiral reinforcing bars 4 are provided around the shaft reinforcing bars 11, 11 to constitute the reinforcing bar rod 12 (FIG. 3B). . The end plate 10 of the reinforcing bar 12 is connected to the lower end plate 9 of the ready-made concrete pile body 1 to constitute the ready-made hollow pile 6. In this case, if the reinforcing bar 12 is attached to the lower end plate 10 of a general ready-made concrete pile 1, the ready-made hollow pile of the present invention can be configured.
[0018]
Moreover, in the said Example, although the ready-made concrete pile main body 1 was made into the straight pile, it can also be set as the node pile which provided the annular ribs 13 and 13 over the lower end part or the full length (FIG.3 (c)).
[0019]
[Example 2]
Based on FIG. 1, the Example of the foundation pile of this invention and its construction method is described.
[0020]
(1) The excavation rod 15 having the excavation head 16 at the lower end is rotated forward to excavate the shaft portion 21 of the pile hole 20 (FIG. 1A). The excavation head 16 is configured to be swingable on a head body 17 having an excavation blade at a lower end portion, and attached with swinging arms 18 and 18 having an excavation blade at a lower end portion. Further, the excavating rod 15 is provided with conveying means (spiral splash, screw, etc.) for lifting excavated soil to the ground, and drums for kneading excavated mud to prepare pile hole walls and prevent collapse ( Not shown).
[0021]
(2) Subsequently, the excavation rod 15 is inverted, and the bottomed bulb portion 22 of the pile hole 20 is excavated with the swinging arms 18 and 18 that are swung in reverse (FIG. 1 (b)). When the excavation of the pile hole 20 is completed, the excavation rod 15 is pulled up to the ground while discharging a pile periphery fixing liquid (cement milk or the like) into the pile hole 22.
[0022]
(3) Next, the stirring rod 24 is accommodated in the hollow portion 7 of the ready-made hollow pile 6, and the ready-made hollow pile 6 and the stirring rod 24 are lowered into the pile hole 20. The stirring rod 24 has, at its lower end, an agitating head 25 having swinging stirring arms 26 and 26 and a concrete discharge port 27. The stirring rod 24 incorporates a conveyance pipe corresponding to the discharge port 27, but a common pipe for concrete and cement milk can be provided, or a dedicated pipe can be provided separately.
[0023]
(4) In the state where the lower end 5a of the ready-made hollow pile 6 (the lower end of the reinforcing bar) is located on the upper portion of the bottomed bulb portion 22 of the pile hole 20, the descent of the ready-made hollow pile 6 is stopped and held at this position. The stirring head 25 of the stirring rod 24 is protruded downward from the ready-made hollow pile 6 to stir the inside of the bottomed bulb portion 22 of the pile hole 20 and to inject cement milk into the bottomed bulb portion 22 (FIG. 1C). Here, the mud in the expanded bulb portion 22 is replaced with cement milk.
[0024]
(5) Next, after the ready-made hollow pile 6 is sunk in the bottom 23 of the pile hole 20, the concrete rod 28 is discharged from the discharge port 27 of the stirring head 25, and the hollow portion 7 of the ready-made hollow pile 6 is attached to the stirring rod 24. Then, it is pulled up on the ground 29 (FIG. 1 (d)). By injecting the concrete 28, the cement milk in the expanded bulb portion 22 is replaced with the concrete 28.
[0025]
(6) After the concrete 28 is solidified, the concrete 28 is filled in the bottomed bulb portion 22 of the pile hole 20 and the hollow portion 7 of the ready-made hollow pile 6, and the outer periphery of the shaft portion 21 of the pile hole 20 and the ready-made hollow pile 6. A foundation pile 31 filled with a pile periphery fixing liquid 30 is constructed between the two (FIG. 1 (e)).
[0026]
In the said Example, the various ready-made hollow piles (FIG. 3 others) of the said Example 1 can also be used for the ready-made hollow pile 6 (not shown).
[0027]
Further, in the above embodiment, after sinking the prefabricated hollow pile 6 to the bottom 23 of Kuiana 20, but from the stirring head 25 discharging the concrete 28, the hollow portion of the prefabricated hollow pile 6 while discharging the concrete from the stirring head 25 The ready-made hollow pile 6 can also be laid down while pulling up the stirring head 25 through 7 (not shown).
[0028]
Moreover, in the said Example, since cement milk was discharged from the stirring rod 24, mud was replaced with cement milk once, and cement milk was further replaced with concrete, the quality of concrete can be improved.
[0029]
【The invention's effect】
Since this invention sinks a ready-made hollow pile having a reinforcing bar at the lower end in the pile hole and fills the pile hole with concrete, it is possible to construct a concrete pile that is structurally integrated in the pile hole. There is an effect that can be expected to withstand strength according to.
[0030]
In addition, since a ready-made hollow pile is set in the pile hole, the set-up work is easier than the set-up of reinforcing steel rods, and the amount of concrete placed on the construction site can be greatly reduced. Has the effect of simplifying and improving efficiency.
[Brief description of the drawings]
1A to 1E are schematic longitudinal sectional views for explaining an embodiment of the present invention.
FIG. 2 is a ready-made hollow pile according to an embodiment of the present invention, in which (a) represents a longitudinal sectional view and (b) represents a bottom view.
FIGS. 3A to 3C are longitudinal sectional views of another embodiment of the ready-made hollow pile of the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Ready-made concrete pile main body 2 Shaft rebar 3 Shaft rebar protrusion 4 Spiral rebar 5 Reinforcing bar 5a Lower end of reinforcing bar 6 Ready-made hollow pile 7 Hollow part (Pre-made hollow pile)
9 Bottom plate (Precast concrete pile body)
10 End plate (rebar bar)
11 shaft rebar (rebar rod)
12 Reinforcing rod 15 Excavation rod 16 Excavation head 20 Pile hole 21 Pile hole shaft 22 Expanded bulb part 23 Pile hole bottom 24 Agitation rod 25 Agitation head 27 Discharge port (agitation head)
28 Concrete 29 Ground 31 Foundation pile

Claims (4)

(1) 掘削ロッドで拡底球根部を有する杭穴を掘削した後、該掘削ロッドを引き上げ、
(2) 続いて中空部に撹拌ロッドを入れ、下端に鉄筋篭を一体に連設した既製コンクリート杭を、前記杭穴内に下降し、前記既製コンクリート杭の下方に前記撹拌ロッドの撹拌ヘッドを突出させ、該撹拌ヘッドで、前記拡底球根内を撹拌するとともに、前記撹拌ヘッドの吐出口から前記球根部内にセメントミルクを注入して、前記拡底球根部内の泥土をセメントミルクに置換し、
(3) 次ぎに、前記既製コンクリート杭を所定位置に沈設した後、または沈設しながら、前記杭穴の底から地上まで前記撹拌ヘッドの吐出口からコンクリートを吐出しながら、前記既製コンクリート杭の中空部を通って前記撹拌ロッドを引き上げ、前記セメントミルクをコンクリートと置換して前記杭穴内にコンクリートを充填することを特徴とした基礎杭の構築方法。
(1) After excavating a pile hole having an expanded bulb with a drilling rod, the drilling rod is pulled up,
(2) Subsequently, a stirring rod is inserted into the hollow portion, and a ready-made concrete pile integrally connected with a reinforcing bar at the lower end is lowered into the pile hole, and the stirring head of the stirring rod protrudes below the ready-made concrete pile. And stirring the inside of the expanded bulb with the stirring head, injecting cement milk into the bulb portion from the discharge port of the stirring head, replacing the mud in the expanded bulb portion with cement milk ,
(3) Next, after the ready-made concrete pile is sunk at a predetermined position or while being laid , the concrete is discharged from the bottom of the pile hole to the ground while discharging the concrete from the discharge port of the stirring head. A construction method of a foundation pile characterized by pulling up the stirring rod through a section, replacing the cement milk with concrete, and filling the pile hole with concrete.
既製コンクリート杭を、下端に鉄筋篭を一体に連設し、該鉄筋篭の下端に、該鉄筋篭を保護する短鋼管又は円板状のリングを溶着して構成した請求項1記載の基礎杭の構築方法。The foundation pile according to claim 1, wherein the ready-made concrete pile is formed by continuously connecting a reinforcing bar to the lower end, and welding a short steel pipe or a disk-shaped ring to protect the reinforcing bar to the lower end of the reinforcing bar. How to build. 拡底球根部を有する杭穴内に、下端部に鉄筋篭を連設した既製コンクリート杭を沈設し、杭穴の拡底球根部及び既製中空杭の中空部にコンクリートを充填した基礎杭であって、
前記既製コンクリート杭は、中空部を有する既製コンクリート杭の下端に鉄筋篭を一体に連設し、該鉄筋篭の下端に、該鉄筋篭を保護する短鋼管又は円板状のリングを溶着して構成し、
前記コンクリートは、前記既製コンクリート杭の中空部を通って下方に突出した撹拌ロッドの撹拌ヘッドで、前記拡底球根内の泥土を撹拌して、前記撹拌ヘッドの吐出口から吐出したセメントミルクで前記泥土を置換し、続いて前記撹拌ヘッドの吐出口から吐出したコンクリートで、前記セメントミルクを置換して構成したことを特徴とする基礎杭。
In a pile hole having an expanded bulb part, a foundation pile in which a ready-made concrete pile with a reinforcing bar is continuously installed at the lower end is filled with concrete in the expanded bulb part of the pile hole and the hollow part of the ready-made hollow pile,
The ready-made concrete pile is formed by continuously connecting a reinforcing bar to the lower end of the ready-made concrete pile having a hollow portion, and welding a short steel pipe or a disk-shaped ring to protect the reinforcing bar to the lower end of the reinforcing bar. Configure
The concrete is agitating head of a stirring rod protruding downward through a hollow portion of the ready-made concrete pile, stirring the mud in the bottomed bulb, and the mud with cement milk discharged from the discharge port of the stirring head A foundation pile characterized in that the cement milk is replaced with concrete discharged from the discharge port of the stirring head.
既製杭の軸鉄筋を下方に突出させて突出部を構成し、該突出部に、らせん鉄筋を連設して鉄筋篭構成した請求項記載の基礎杭。The foundation pile according to claim 3, wherein a shaft reinforcing bar of the ready-made pile is protruded downward to form a protruding portion, and a helical reinforcing bar is connected to the protruding portion to form a reinforcing bar rod.
JP02080898A 1998-02-02 1998-02-02 Foundation pile construction method, foundation pile Expired - Lifetime JP4154487B2 (en)

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CN100334304C (en) * 2004-12-06 2007-08-29 雷玉华 Construction method for making hollow pile with large end at bottom by casting concrete in situ
JP5546000B2 (en) * 2010-09-27 2014-07-09 旭化成建材株式会社 Ground excavation method
JP5545999B2 (en) * 2010-09-27 2014-07-09 旭化成建材株式会社 Ground excavation method
CN108266131A (en) * 2018-03-13 2018-07-10 刘守进 Rotate soil compaction bottom expanding drill and method for constructing foundation pile
CN108547284A (en) * 2018-04-16 2018-09-18 中交第二航务工程勘察设计院有限公司 A kind of bottom-expanding sinking-pipe pilework and construction method
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JP2021050569A (en) * 2019-09-26 2021-04-01 株式会社熊谷組 Reinforcement tool, precast pile, and improved ground

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