JP5775750B2 - Steel pipe concrete composite pile - Google Patents

Steel pipe concrete composite pile Download PDF

Info

Publication number
JP5775750B2
JP5775750B2 JP2011131219A JP2011131219A JP5775750B2 JP 5775750 B2 JP5775750 B2 JP 5775750B2 JP 2011131219 A JP2011131219 A JP 2011131219A JP 2011131219 A JP2011131219 A JP 2011131219A JP 5775750 B2 JP5775750 B2 JP 5775750B2
Authority
JP
Japan
Prior art keywords
pile
steel pipe
end plate
reinforcing
concrete composite
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.)
Active
Application number
JP2011131219A
Other languages
Japanese (ja)
Other versions
JP2013002047A (en
Inventor
宣昭 山中
宣昭 山中
佐藤 啓
啓 佐藤
Original Assignee
前田製品販売株式会社
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 前田製品販売株式会社 filed Critical 前田製品販売株式会社
Priority to JP2011131219A priority Critical patent/JP5775750B2/en
Publication of JP2013002047A publication Critical patent/JP2013002047A/en
Application granted granted Critical
Publication of JP5775750B2 publication Critical patent/JP5775750B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Description

本発明はフーチング結合用の補強鉄筋を内部空間内に配設した雇い杭部を、鋼管コンクリート複合杭部の頭部側に備えた鋼管コンクリート複合杭に関し、特に施工後の周辺地盤の掘削が容易であり、ハツリ出しが不要であるとともに製造が容易な鋼管コンクリート複合杭に関する。   The present invention relates to a steel-pipe concrete composite pile provided with a hiring pile part with reinforcing bars for coupling footing in the internal space on the head side of the steel-pipe concrete composite pile part, and in particular, excavation of the surrounding ground after construction is easy The present invention relates to a steel-pipe concrete composite pile that does not require chipping and is easy to manufacture.

鋼管を外殻とし、該鋼管内にコンクリートを打設して遠心力成形により一体化した鋼管コンクリート複合杭は建築及び土木の分野で広く用いられている。この鋼管コンクリート複合杭を基礎杭として使用した場合、杭とフーチングとを結合する関係上、杭の頭部近傍の鋼管をカットオフした後にコンクリート部分をハツリ取り、杭体内にあって前記鋼管の内側面に予め溶着したフーチング結合用の補強鉄筋を露出せしめるか、或いは鋼管の外周にフーチング結合用補強鉄筋を溶接することで、杭とフーチングとを前記フーチング結合用補強鉄筋を介して結合している。   Steel pipe-concrete composite piles, in which a steel pipe is used as an outer shell, concrete is cast into the steel pipe and integrated by centrifugal force forming, are widely used in the fields of construction and civil engineering. When this steel-pipe concrete composite pile is used as a foundation pile, due to the connection between the pile and the footing, the steel pipe near the head of the pile is cut off and then the concrete portion is removed, and the steel pipe is placed inside the pile and inside the steel pipe. The pile and the footing are connected via the reinforcing reinforcement for footing connection by exposing the reinforcing reinforcement for the footing connection previously welded to the side surface or by welding the reinforcing reinforcement for the footing connection to the outer periphery of the steel pipe. .

しかし、杭とフーチングとの結合作業時において、従来の鋼管コンクリート複合杭にあっては、カットオフ部位の鋼管を切断するための鋼管切断作業、ならびにカットオフした鋼管の外周にフーチング結合用の補強鉄筋を溶着するための作業にそれぞれ多大な時間と労力を必要とするといった問題がある。   However, in the conventional steel pipe concrete composite pile, the steel pipe cutting work for cutting the steel pipe at the cut-off site and the reinforcement for the footing connection on the outer periphery of the cut-off steel pipe at the time of the work of connecting the pile and the footing There is a problem that a great amount of time and labor are required for the work for welding the reinforcing bars.

発明者らは、こうした問題点を鑑み、一端側にコンクリート製の杭頭接合部を、他端側に鋼管コンクリート複合部をそれぞれ形成するとゝもに、前記杭頭接合部から鋼管コンクリート複合部にまたがって配設した複数本のフーチング結合用補強鉄筋を介して、前記コンクリート製の杭頭接合部と鋼管コンクリート複合部とを一体に形成した構成の杭を提案している(例えば、特許文献1)。   In view of these problems, the inventors formed a concrete pile head joint on one end side and a steel pipe concrete composite part on the other end side, from the pile head joint part to the steel pipe concrete composite part. A pile having a configuration in which the concrete pile head joint portion and the steel pipe concrete composite portion are integrally formed through a plurality of reinforcing bars for connecting the footing disposed across the steel is proposed (for example, Patent Document 1). ).

また発明者らは、基礎杭の施工後にフーチングとの接合作業が容易な既成コンクリート杭の杭頭部構造として、頭部端板にスリーブ圧着ネジ継手を装着し、一端を前記スリーブ圧着ネジ継手に固定した補強鉄筋がコンクリート部に埋設された構造であって、施工後に前記スリーブ圧着ネジ継手のスリーブネジ部にフーチング結合用の補強鉄筋を接続する側のスリーブ圧着ネジ継手を介して連結することを提案している(例えば、特許文献2)。また、フーチング結合用補強鉄筋を収納する杭施工治具の提案もみられる(例えば、特許文献3)。   In addition, as a pile head structure of a prefabricated concrete pile that can be easily joined to the footing after construction of the foundation pile, the inventors attach a sleeve crimp screw joint to the head end plate, and attach one end to the sleeve crimp screw joint. It is a structure in which the fixed reinforcing bar is embedded in the concrete part, and after the construction, it is connected to the sleeve screw part of the sleeve crimping screw joint via the sleeve crimping screw joint on the side where the reinforcing bar for connecting the footing is connected. It has been proposed (for example, Patent Document 2). Moreover, the proposal of the pile construction jig which accommodates the reinforcing steel for footing coupling | bonding is also seen (for example, patent document 3).

これらの提案によれば、施工後にハツリ出し作業が不要となる他、異なる径や長さの補強鉄筋を容易に連結できるなどの効果が期待できるが、施工時にフーチング結合用の補強鉄筋が露出しているため、通常地盤表面下方に埋設される杭を露出させるために掘削する作業によって、補強鉄筋が損傷する可能がある。   According to these proposals, it is possible to expect the effect that it is possible to easily connect reinforcing reinforcing bars of different diameters and lengths, etc. Therefore, the reinforcing bar may be damaged by the excavation work to expose the pile buried under the surface of the ground.

このため、一端部に鋼管で被覆されない除去予定コンクリート部を連続的に形成した鋼
管コンクリート複合杭を形成し、製造後に容易に除去予定コンクリート部を取り外すことができるようにした提案もあるが、除去予定コンクリート部を繰り返して使用することは耐久性の観点から疑問がある(例えば、特許文献4)。
For this reason, there is also a proposal to form a steel pipe concrete composite pile in which a concrete part to be removed that is not covered with a steel pipe is formed continuously at one end, so that the concrete part to be removed can be easily removed after production. It is questionable to use the planned concrete part repeatedly from the viewpoint of durability (for example, Patent Document 4).

特開2009−161996号公報JP 2009-161996 A 特開2010−144391号公報JP 2010-144391 A 特開2010−043471号公報JP 2010-043471 A 特開2010−196251号公報JP 2010-196251 A

本発明は、杭とフーチングとの結合作業時において、カットオフ部位の鋼管を切断するための鋼管切断作業、ならびにカットオフした鋼管の外周にフーチング結合用の補強鉄筋を溶着するための補強鉄筋溶接作業をなくし、更に、施工時にフーチング結合用の補強鉄筋が露出せず、かつ繰り返し使用できる雇い杭部を備えた鋼管コンクリート複合杭を提供することを目的としている。   The present invention relates to a steel pipe cutting work for cutting a steel pipe at a cut-off site during a joining work between a pile and a footing, and a reinforcing steel bar welding for welding a reinforcing steel for joining a footing to the outer periphery of the cut-off steel pipe. Another object of the present invention is to provide a steel-pipe-concrete composite pile having a hired pile portion that can be used repeatedly without losing work and exposing a reinforcing bar for footing connection during construction.

上記の目的を達成するため、本願の請求項1に記載の発明は、鋼管コンクリート複合杭部の頭部端板に、外筒管と内筒管からなる二重管構造の雇い杭部をその下部端板を面接せしめて配設するとゝもに、前記鋼管コンクリート複合杭部の内部から前記頭部端板および前記下部端板を貫通し、前記雇い杭部の外筒管と内筒管との間の鞘部空間を延伸するフーチング結合用補強鉄筋の、前記雇い杭部の上部端板から突出する先端ボルト部をナット締めにより前記上部端板に定着せしめるとゝもに、前記雇い杭部の回転力を前記鋼管コンクリート複合杭部に伝達するため、前記鋼管コンクリート複合杭部の頭部端板に設けたピン孔又はピンと、前記雇い杭部の下部端板に設けた前記ピン孔又はピンと嵌合によって係合するピン又はピン孔とからなる係合部材を介して、前記雇い杭部の下部端板と前記鋼管コンクリート複合杭部の頭部端板とを連結する構成としたことを特徴とする鋼管コンクリート複合杭としている。  In order to achieve the above-mentioned object, the invention according to claim 1 of the present application is configured such that a hired pile portion having a double tube structure including an outer tube and an inner tube is provided on a head end plate of a steel tube concrete composite pile. When the lower end plate is arranged in face-to-face arrangement, the head end plate and the lower end plate are penetrated from the inside of the steel pipe concrete composite pile portion, and the outer tube and the inner tube of the hired pile portion are When the reinforcing bolt for reinforcing the footing that extends the sheath space between the top end plate protruding from the upper end plate of the hiring pile portion is fixed to the upper end plate by tightening the nut, the hiring pile portion In order to transmit the rotational force of the steel pipe concrete composite pile part, the pin hole or pin provided in the head end plate of the steel pipe concrete composite pile part, and the pin hole or pin provided in the lower end plate of the hiring pile part Consists of pins or pin holes that engage by fitting Via the coupling member, and the steel concrete composite piles, characterized in that a configuration connecting the head end plate of the employment and lower end plate of the pile section the steel concrete composite pile unit.

また、本願の請求項2に記載の発明は、前記雇い杭部の鞘部空間内を延伸する前記フーチング結合用補強鉄筋を連結部材を介して継ぎ足すことで、前記フーチング結合用補強鉄筋の径に応じて定められる所定長さの補強鉄筋とする構成とした鋼管コンクリート複合杭としている。   In the invention according to claim 2 of the present application, the diameter of the reinforcing bar for the footing coupling is obtained by adding the reinforcing bar for the footing coupling extending through the sheath space of the hired pile part via a connecting member. It is a steel pipe concrete composite pile with a configuration that makes a reinforcing bar of a predetermined length determined according to.

さらに、本願の請求項3に記載の発明は、前記鋼管コンクリート複合杭部の頭部端板に固定したスリーブ圧着ネジ継手の下端に、前記鋼管コンクリート複合杭部に埋設したフーチング結合用補強鉄筋の上端部をネジ結合によって固定するとゝもに、前記雇い杭部の下部端板から内部に突出する前記スリーブ圧着ネジ継手の上端に、前記雇い杭部の鞘部空間を延伸するフーチング結合用補強鉄筋の下端部をネジ結合により固定し連結する構成とした鋼管コンクリート複合杭としている。   Furthermore, in the invention according to claim 3 of the present application, the reinforcing reinforcing bar for footing connection embedded in the steel pipe concrete composite pile portion is embedded at the lower end of the sleeve crimp screw joint fixed to the head end plate of the steel pipe concrete composite pile portion. When the upper end portion is fixed by screw connection, the reinforcing reinforcing bar for footing connection that extends the sheath space of the employed pile portion at the upper end of the sleeve crimp screw joint projecting inward from the lower end plate of the employed pile portion. This is a steel-pipe concrete composite pile that has a structure in which the lower end of each is fixed and connected by screw connection.

請求項1に記載した構成の発明とすることで、外筒管と内筒管からなる二重管構造の雇い杭部とフーチング結合用補強鉄筋を介して一体となった鋼管コンクリート複合杭部を所定の杭頭位置となるように沈設する際、前記フーチング結合用補強鉄筋は前記二重管構造の雇い杭部内にあって外筒管と内筒管との間の鞘部空間に位置するので、前記内筒管の内部空間を上下動し左右方向に回転するオーガスクリューが当たって傷付けられることはないし、更には、オーガスクリューによって杭部内を上動し排出される土砂によって変形されることもない。また周囲地盤を重機によって掘削する場合でも、フーチング結合用補強鉄筋は外筒管によって被覆されているので、傷付けるられることもない。   By adopting the invention having the configuration described in claim 1, a steel pipe-concrete composite pile part integrated with an employment pile part of a double pipe structure comprising an outer cylinder pipe and an inner cylinder pipe and a reinforcing bar for footing connection is provided. When laying down to a predetermined pile head position, the reinforcing reinforcement for the footing connection is in the hiring pile portion of the double pipe structure and is located in the sheath space between the outer tube and the inner tube. The auger screw that moves up and down in the inner space of the inner tube and rotates in the left-right direction is not hit by the auger screw and is not damaged by the auger screw. Absent. Even when the surrounding ground is excavated with heavy machinery, the reinforcing reinforcing bars for coupling the footing are covered with the outer tube so that they are not damaged.

また、掘削が終了したらフーチング結合用補強鉄筋の上端部におけるボルト定着を解除し、雇い杭部を杭施工治具によって上方へ引き上げて鋼管コンクリート複合杭部から分離すことで、雇い杭部内のフーチング結合用補強鉄筋を露出させることができ、コンクリートのハツリ作業が不要となる。そして、上記の雇い杭部はこれを同径のフーチング結合用補強鉄筋用に再利用できる。   Also, after excavation is completed, the bolt fixing at the upper end of the reinforcing bar for footing connection is released, and the hiring pile is lifted upward by a pile construction jig and separated from the steel pipe concrete composite pile. The reinforcing reinforcing bars for bonding can be exposed, and the concrete demolition work becomes unnecessary. And the above-mentioned hire pile part can be reused for reinforcing bars for footing connection of the same diameter.

さらに、前記雇い杭部に上方から杭施工治具を被せて回転することで、該杭施工治具の側壁に形成した横L字形の嵌合溝部の下端開口部を前記雇い杭部の側面に設けた突起部と合致させ、更に回転することで前記突起部を前記嵌合溝部の深部で係合させ、その後に前記杭施工治具により前記雇い杭部を吊り上げるが、前記施工治具を回転させる際に前記雇い杭部に掛かる同方向の回転力は前記係合部材の部分で解消され、フーチング結合用補強鉄筋に悪影響を与えることはない。   Furthermore, the lower pile opening of the horizontal L-shaped fitting groove formed on the side wall of the pile construction jig is rotated on the side of the employment pile section by rotating the pile construction jig from above with the pile construction jig. Align with the provided projection and rotate further to engage the projection at the deep part of the fitting groove, then lift the hiring pile with the pile construction jig, but rotate the construction jig In this case, the rotational force in the same direction applied to the hired pile portion is eliminated at the portion of the engaging member, and there is no adverse effect on the reinforcing reinforcement for footing connection.

また、請求項2に記載した構成の発明とすることで、連結部材を介して所望長さの補強鉄筋を繋ぎ足すことにより、補強鉄筋の径により定められている所定長のフーチング結合用補強鉄筋を容易に且つ自在に形成することができる。更に、請求項3に記載した構成の発明とすることで、所定長のフーチング結合用補強鉄筋を端板部に設置したスリーブ圧着ネジ継手を介して接続できるため、接続が容易である。   According to the second aspect of the present invention, a reinforcing bar for a footing connection having a predetermined length determined by the diameter of the reinforcing bar is obtained by adding a reinforcing bar having a desired length via a connecting member. Can be easily and freely formed. Furthermore, by setting it as the invention of the structure described in Claim 3, since it can connect via the sleeve crimped screw joint installed in the end-plate part, the reinforcing bar for footing coupling | bonding of predetermined length can be connected easily.

本発明に係る鋼管コンクリート複合杭の第1実施例の断面図である。It is sectional drawing of the 1st Example of the steel pipe concrete composite pile concerning this invention. 図1の平面図である。It is a top view of FIG. 図2のIII ーIII 線断面拡大部分図である。FIG. 3 is an enlarged partial sectional view taken along line III-III in FIG. 2. 同上鋼管コンクリート複合杭の第2実施例の断面図である。It is sectional drawing of 2nd Example of a steel pipe concrete composite pile same as the above. 同上鋼管コンクリート複合杭の第3実施例の断面図である。It is sectional drawing of 3rd Example of a steel pipe concrete composite pile same as the above. 同上鋼管コンクリート複合杭の施工状態を示す正面図である。It is a front view which shows the construction state of a steel pipe concrete composite pile same as the above.

以下、本願発明を図面に示す実施例を参照しながら説明する。図1乃至図3において、1は本考案に係る鋼管コンクリート複合杭で、この鋼管コンクリート複合杭1は鋼管コンクリート複合杭部Aと、該鋼管コンクリート複合杭部Aの上部に連結した雇い杭部Bとから主に構成されている。   Hereinafter, the present invention will be described with reference to embodiments shown in the drawings. 1 to 3, reference numeral 1 denotes a steel pipe concrete composite pile according to the present invention. This steel pipe concrete composite pile 1 includes a steel pipe concrete composite pile part A and an employment pile part B connected to the upper part of the steel pipe concrete composite pile part A. And is composed mainly of.

上記鋼管コンクリート複合杭部Aは、外殻を鋼管2とし、この鋼管2の内側にコンクリートを打設して遠心成形によって形成されたコンクリート層3から構成さており、前記鋼管2と一体化したこのコンクリート層3には、前記複合杭部Aの頭部端板4から下方の深部へ向け所望の長さだけ埋設されたフーチング結合用補強鉄筋5ー1が配設されている。6は前記フーチング結合用補強鉄筋5の遠心成形時に有効な位置決め金具である。   The steel pipe concrete composite pile part A is composed of a concrete layer 3 formed by centrifugal molding by placing concrete inside the steel pipe 2 as an outer shell, and this steel pipe 2 is integrated with the steel pipe 2. In the concrete layer 3, a reinforcing reinforcing bar 5-1 for footing connection is disposed in which a desired length is embedded from the head end plate 4 of the composite pile portion A toward the deeper portion below. Reference numeral 6 denotes a positioning fitting effective at the time of centrifugal molding of the reinforcing reinforcement 5 for footing connection.

また、上記の雇い杭部Bは、外筒管7と内筒管8からなる二重管構造のもので、前記鋼管コンクリート複合杭部Aの頭部端板4の上に前記雇い杭部Bをその下部端板9を乗せて設置したものである。10は前記雇い杭部Bの外筒管7と内筒管8との間の鞘部空間で、前記鋼管コンクリート複合杭部Aに埋設されている前記フーチング結合用補強鉄筋5ー1の上方部は、前記複合杭部Aの頭部端板4および雇い杭部Bの前記下部端板9をそれぞれ貫通して、雇い杭部Bの前記鞘部空間10内を上方へ延伸している。   Moreover, said hiring pile part B is the thing of the double pipe structure which consists of the outer cylinder pipe 7 and the inner cylinder pipe 8, and the said hiring pile part B on the head end plate 4 of the said steel pipe concrete composite pile part A. Is installed with its lower end plate 9 placed thereon. 10 is a sheath space between the outer cylinder pipe 7 and the inner cylinder pipe 8 of the employed pile part B, and is an upper part of the reinforcing reinforcing bar 5-1 for the footing connection embedded in the steel pipe concrete composite pile part A. Passes through the head end plate 4 of the composite pile portion A and the lower end plate 9 of the hired pile portion B, respectively, and extends upward in the sheath space 10 of the hired pile portion B.

11は前記雇い杭部Bの上部端板で、鞘部空間10内を上方へ延伸する前記補強鉄筋5ー2の上端が、前記上部端板11に形成した補強鉄筋を取り付けるための取り付け孔12から突出しており、前記上部端板11の上面から突出した前記補強鉄筋5ー2の上端のボルト部5Aにナット13を螺合させ、これを締め付けることで前記フーチング結合用補強鉄筋5ー2の上端部5Aを前記雇い杭部Bの上部端板11に定着せしめている。この定着により、上記鋼管コンクリート複合杭部Aとその上部に重ねて設置した前記雇い杭部Bとは、前記フーチング結合用補強鉄筋5(5ー1,5ー2)を介して一体構造となった鋼管コンクリート複合杭1となる。   Reference numeral 11 denotes an upper end plate of the hiring pile portion B, and an upper end of the reinforcing reinforcing bar 5-2 extending upward in the sheath space 10 is attached to a mounting hole 12 for attaching a reinforcing reinforcing bar formed on the upper end plate 11. The nut 13 is screwed to the bolt portion 5A at the upper end of the reinforcing reinforcing bar 5-2 protruding from the upper surface of the upper end plate 11, and the nut 13 is tightened to tighten the nut 13a. The upper end 5A is fixed to the upper end plate 11 of the hiring pile B. By this fixing, the steel pipe concrete composite pile portion A and the hiring pile portion B installed on top of the steel pile concrete pile portion have an integrated structure through the reinforcing reinforcing bars 5 (5-1, 5-2) for the footing connection. It becomes the steel pipe concrete composite pile 1.

14は前記鋼管コンクリート複合杭部Aにあってその頭部端板4に形成した係合用のピン孔で、図3に示すような貫通孔或いは図示しない凹孔で構成されており、鋼管コンクリート複合杭部Aにあってその頭部端板4の上面側に開口するこれらの貫通孔14或いは凹孔はプレス加工或いは切削加工により形成されている。   14 is a pin hole for engagement formed in the head end plate 4 in the steel pipe concrete composite pile portion A, and is constituted by a through hole as shown in FIG. 3 or a concave hole (not shown). These through holes 14 or concave holes in the pile portion A that open to the upper surface side of the head end plate 4 are formed by pressing or cutting.

15は前記雇い杭部Bにあって、その下部端板9に取り付けた係合用のピンで、図3に示すように、ピン15の基部15Aを前記下部端板9に形成した取り付け孔9A内に押し込んで取り付けられており、前記下部端板9の下面から下方へ突出した前記ピン15の先端部15Bは前記複合杭部Aの頭部端板4に形成した前記係合用のピン孔14と緩く嵌合することで、複合杭部Aと雇い杭部Bの周方向への一体移動が可能な構成としている。   15 is an engagement pin attached to the lower end plate 9 in the hire pile portion B. As shown in FIG. 3, the base 15A of the pin 15 is in the attachment hole 9A formed in the lower end plate 9. The tip 15B of the pin 15 projecting downward from the lower surface of the lower end plate 9 is connected to the pin hole 14 for engagement formed in the head end plate 4 of the composite pile portion A. It is set as the structure which can integrally move to the circumferential direction of the composite pile part A and the hire pile part B by loosely fitting.

上記のように、前記雇い杭部Bの下部端板9と前記鋼管コンクリート複合杭部Aの頭部端板4とを、係合用のピン孔14とピン15からなる係合部材16を介して連結することで、杭の施工時において前記雇い杭部Bに付与される回転力の全ては前記係合部材16の部分で前記鋼管コンクリート複合杭部Aに伝達される。したがって、前記雇い杭部Bと前記鋼管コンクリート複合杭部Aとに跨がって配設されている前記フーチング結合用補強鉄筋5(5ー1,5ー2)には雇い杭部Bの回転力は何ら作用せず、影響を与えない構成としている。   As described above, the lower end plate 9 of the employed pile portion B and the head end plate 4 of the steel pipe concrete composite pile portion A are connected via the engaging member 16 including the engaging pin hole 14 and the pin 15. By connecting, all of the rotational force applied to the hired pile part B at the time of construction of the pile is transmitted to the steel pipe concrete composite pile part A at the part of the engaging member 16. Accordingly, the reinforcement pile 5 (5-1, 5-2) for the footing connection disposed across the hiring pile portion B and the steel pipe concrete composite pile portion A rotates the hiring pile portion B. The force does not act at all, and it does not have an influence.

17は連結部材で、図4に示すように、前記複合杭部Aの頭部端板4および前記雇い杭部Bの下部端板9をそれぞれ貫通し、雇い杭部Bの前記鞘部空間10内を上方へ延伸しているフーチング結合用補強鉄筋25Aの上端に補足用鉄筋25Bを前記連結部材17を介して連結したものである。このように、所望長さの補足用鉄筋25Bを繋ぎ足すことで、補強鉄筋の径により定められている所定長のフーチング結合用補強鉄筋5ー2を容易に且つ自在に形成することができる。   Reference numeral 17 denotes a connecting member, which passes through the head end plate 4 of the composite pile portion A and the lower end plate 9 of the employed pile portion B, as shown in FIG. A supplementary reinforcing bar 25B is connected via the connecting member 17 to the upper end of a reinforcing reinforcing bar 25A for a footing connection extending inward. As described above, by adding the supplementary reinforcing bars 25B having a desired length, the reinforcing reinforcing bars 5-2 for a footing connection having a predetermined length determined by the diameter of the reinforcing reinforcing bars can be easily and freely formed.

18は前記鋼管コンクリート複合杭部Aにあってその頭部端板4に固定したスリーブ圧着ネジ継手で、図5に示すように、該スリーブ圧着ネジ継手18の下端に、前記鋼管コンクリート複合杭部Aに埋設したフーチング結合用補強鉄筋5ー1の上端部をネジ結合によって固定するとゝもに、下部端板9を貫通して前記雇い杭部Bの内部に突出する前記スリーブ圧着ネジ継手18の上端に、前記雇い杭部Bの鞘部空間10を延伸するフーチング結合用補強鉄筋5ー2の下端部をネジ結合により固定し連結したものである。このように、所定長のフーチング結合用補強鉄筋5ー2を両端板4,9部のスリーブ圧着ネジ継手18を介して接続できるため、接続が容易となる。   18 is a sleeve crimp screw joint fixed to the head end plate 4 in the steel pipe concrete composite pile portion A. As shown in FIG. 5, at the lower end of the sleeve crimp screw joint 18, the steel pipe concrete composite pile portion is provided. When the upper end portion of the reinforcing reinforcing bar 5-1 for footing connection embedded in A is fixed by screw connection, the sleeve crimp screw joint 18 that penetrates the lower end plate 9 and protrudes into the hiring pile portion B is used. The lower end portion of the reinforcing reinforcing bar 5-2 for footing connection that extends the sheath space 10 of the hired pile portion B is fixed and connected to the upper end by screw connection. As described above, the reinforcing reinforcing bar 5-2 for footing coupling having a predetermined length can be connected via the sleeve crimping screw joint 18 of the end plates 4 and 9, so that the connection is facilitated.

19は前記鋼管コンクリート複合杭1の施工治具で、前記雇い杭部B上に被嵌して使用するものであり、この施工治具19の上方には、前記雇い杭部Bを介して前記鋼管コンクリート複合杭1を昇降操作させる昇降操作体および回転操作させる回転操作体をそれぞれ備えている(図示せず)。   Reference numeral 19 denotes a construction jig for the steel pipe concrete composite pile 1, which is used by being fitted on the hiring pile part B, and above the construction jig 19, the hiring pile part B via the hiring pile part B. The steel pipe concrete composite pile 1 is each provided with the raising / lowering operation body which carries out raising / lowering operation, and the rotation operation body which carries out rotation operation (not shown).

20は嵌合溝で、前記施工治具19の下端縁から上方へ延びる縦溝部21Aと、該縦溝部21Aの上端から周方向に延びる横溝部21Bとから構成されており、前記雇い杭部Bの外周面に設けた突起部7Aと嵌合せしめることで施工治具19と一体構造となし、嵌合を外すことで、施工治具19を雇い杭部Bから分離できる構造としたものである。   Reference numeral 20 denotes a fitting groove, which includes a vertical groove portion 21A extending upward from the lower end edge of the construction jig 19 and a horizontal groove portion 21B extending in the circumferential direction from the upper end of the vertical groove portion 21A. The construction jig 19 is integrated with the projecting portion 7A provided on the outer peripheral surface, and the construction jig 19 is separated from the pile part B by removing the fitting. .

つぎに、本発明に係る鋼管コンクリート複合杭の作用について説明する。図1乃至図5に示すような構成の鋼管コンクリート複合杭1を施工するにあっては、その雇い杭部Bの頭部に前記施工治具19を上から被せ、嵌合溝20の縦溝部21Aを雇い杭部Bの外周面に設けた突起部7Aと位置合わせをする。つぎに、図示しない昇降操作体により施工治具19を下げることで相対的に縦溝部21A内に突起部7Aを挿入し、更に図示しない回転操作体により施工治具19を回転することで、相対的に前記横溝部21B内に突起部7Aを挿入する。   Next, the operation of the steel pipe concrete composite pile according to the present invention will be described. When constructing the steel pipe concrete composite pile 1 having the structure as shown in FIGS. 1 to 5, the construction jig 19 is placed on the head of the employed pile part B from above, and the longitudinal groove part of the fitting groove 20 21A is hired and aligned with the protruding portion 7A provided on the outer peripheral surface of the pile portion B. Next, the projection jig 7A is relatively inserted into the longitudinal groove portion 21A by lowering the construction jig 19 with a lifting operation body (not shown), and the construction jig 19 is rotated with a rotation operation body (not shown). Thus, the protruding portion 7A is inserted into the lateral groove portion 21B.

ここで、施工治具19を前記と反対方向に回動し上昇することで、前記突起部7Aを嵌合溝20内から外すことができるが、前記鋼管コンクリート複合杭1にあってその鋼管コンクリート複合杭部Aは、前記雇い杭部Bを介して前記施工治具19の回転力を受けることになり、両杭部AおよびBに跨がって配設されているフーチング結合用補強鉄筋5(5ー1,5ー2)にも前記の回転力を受けることになる。しかし、前記施工治具19を回転させた際に、前記雇い杭部Bに作用する同方向の回転力は前記係合部材16の係合部分で解消され、前記フーチング結合用補強鉄筋5には雇い杭部Bに作用する回転力は何ら伝達されず、フーチング結合用補強鉄筋5に悪影響を与えることはない。   Here, the projecting part 7A can be removed from the fitting groove 20 by rotating and raising the construction jig 19 in the opposite direction, but in the steel pipe concrete composite pile 1, the steel pipe concrete is provided. The composite pile part A will receive the rotational force of the construction jig 19 through the hired pile part B, and the reinforcing reinforcing bar 5 for the footing connection disposed across the pile parts A and B. (5-1, 5-2) also receives the rotational force. However, when the construction jig 19 is rotated, the rotational force in the same direction acting on the hired pile portion B is eliminated at the engaging portion of the engaging member 16, and the reinforcing reinforcing bar 5 for the footing connection No rotational force acting on the hired pile portion B is transmitted, and there is no adverse effect on the reinforcing reinforcement 5 for footing connection.

つぎに、外筒管7と内筒管8からなる二重管構造の雇い杭部Bと、フーチング結合用補強鉄筋5を介して一体となった鋼管コンクリート複合杭部Aからなる鋼管コンクリート複合杭1を所定の杭頭位置となるように沈設する際、前記フーチング結合用補強鉄筋5(5ー2)は前記二重管構造の雇い杭部B内にあって、前記外筒管7と内筒管8との間の鞘部空間10に位置するので、回転操作体で前記内筒管8の内部空間8Aを上下動し左右方向に回転するオーガスクリュー(図示しない)と衝突することがなく、傷付けられることがない。   Next, the steel pipe concrete composite pile which consists of the hiring pile part B of the double pipe structure which consists of the outer cylinder pipe 7 and the inner cylinder pipe 8, and the steel pipe concrete composite pile part A integrated through the reinforcing bar 5 for a footing connection. When laying 1 so as to be at a predetermined pile head position, the reinforcing reinforcing bar 5 (5-2) for the footing connection is in the hiring pile portion B of the double pipe structure, Since it is located in the sheath space 10 between the tubular tube 8, it does not collide with an auger screw (not shown) that moves up and down in the internal space 8A of the inner tubular tube 8 by the rotary operation body and rotates in the left-right direction. , Will not be hurt.

更には、オーガスクリューによって鋼管コンクリート複合杭1内を上動し排出される土砂によって変形されることもない。また、鋼管コンクリート複合杭1の周囲地盤を重機によって掘削する場合でも、フーチング結合用補強鉄筋5は外筒管7によって被覆されているので傷付けるられることもない。   Further, it is not deformed by the earth and sand that is moved up and discharged in the steel pipe concrete composite pile 1 by the auger screw. Moreover, even when excavating the surrounding ground of the steel pipe concrete composite pile 1 with a heavy machine, since the reinforcing reinforcement 5 for footing coupling | bonding is coat | covered with the outer cylinder pipe 7, it will not be damaged.

上記のようにして、前記鋼管コンクリート複合杭1を所定位置まで沈設し、掘削が終了したらフーチング結合用補強鉄筋5(5ー2)にあってその上端部のボルト部5Aに螺合せしめたナット13による定着を解除する。次に、前記雇い杭部Bを前記杭施工治具19を介して昇降操作内によって上方へ引き上げ、雇い杭部Bを鋼管コンクリート複合杭部Aおよび雇い杭部B内のフーチング結合用補強鉄筋5からそれぞれ分離する。これにより、雇い杭部B内のフーチング結合用補強鉄筋5(5ー2)を露出させることができ、コンクリートのハツリ作業が不要となる。そして、この雇い杭部Bはこれを同径のフーチング結合用補強鉄筋用に再利用できる。   As described above, the steel pipe-concrete composite pile 1 is sunk to a predetermined position, and when excavation is completed, the nut is located in the reinforcing bar 5 (5-2) for footing connection and screwed to the bolt part 5A at the upper end. 13 to cancel the fixing. Next, the hiring pile part B is pulled upward by the lifting operation through the pile construction jig 19, and the hiring pile part B is reinforced with reinforcing steel bars for footing connection in the steel pipe concrete composite pile part A and the hiring pile part B. Separate from each. As a result, the reinforcing reinforcing bar 5 (5-2) for the footing connection in the hired pile portion B can be exposed, and the concrete demolition work becomes unnecessary. And this hire pile part B can reuse this for the reinforcing reinforcement for a footing coupling | bonding of the same diameter.

1 鋼管コンクリート複合杭
2 鋼管
3 コンクリート層
4 頭部端板
5 補強鉄筋
5A 同ボルト部
7 外筒管
7A 突起部
8 内筒管
9 下部端板
9A 取り付け孔
10 鞘部空間
11 上部端板
12 取り付け孔
13 ナット
14 ピン孔
14A 貫通孔
15 ピン
15A 基部
15B 先端部
16 係合部材
17 連結部材
18 スリーブ圧着ネジ継手
19 施工治具
20 嵌合溝
21A 縦溝部
21B 横溝部
DESCRIPTION OF SYMBOLS 1 Steel pipe concrete composite pile 2 Steel pipe 3 Concrete layer 4 Head end plate 5 Reinforcement reinforcing bar 5A Same bolt part 7 Outer cylinder pipe 7A Protrusion part 8 Inner cylinder pipe 9 Lower end plate 9A Mounting hole 10 Sheath space 11 Upper end plate 12 Installation Hole 13 Nut 14 Pin hole 14A Through hole 15 Pin 15A Base 15B Tip 16 Engaging member 17 Connecting member 18 Sleeve crimp screw joint 19 Construction jig 20 Fitting groove 21A Vertical groove 21B Horizontal groove

Claims (3)

鋼管コンクリート複合杭部の頭部端板に、外筒管と内筒管からなる二重管構造の雇い杭部をその下部端板を面接せしめて配設するとゝもに、前記鋼管コンクリート複合杭部の内部から前記頭部端板および前記下部端板を貫通し、前記雇い杭部の外筒管と内筒管との間の鞘部空間を延伸するフーチング結合用補強鉄筋の、前記雇い杭部の上部端板から突出する先端ボルト部をナット締めにより前記上部端板に定着せしめるとゝもに、前記雇い杭部の回転力を前記鋼管コンクリート複合杭部に伝達するため、前記鋼管コンクリート複合杭部の頭部端板に設けたピン孔又はピンと、前記雇い杭部の下部端板に設けた前記ピン孔又はピンと嵌合によって係合するピン又はピン孔とからなる係合部材を介して、前記雇い杭部の下部端板と前記鋼管コンクリート複合杭部の頭部端板とを連結する構成としたことを特徴とする鋼管コンクリート複合杭。When the steel pile concrete composite pile pile is placed on the head end plate of the double pipe structure consisting of an outer tube and an inner tube with its lower end plate in contact, the steel pipe concrete composite pile The employment pile of the reinforcing steel bar for reinforcing the footing that penetrates the head end plate and the lower end plate from the inside of the part and extends the sheath space between the outer cylinder pipe and the inner cylinder pipe of the employment pile part. When the distal bolt portion protruding from the upper end plate parts allowed to fixing on the upper end plate by a nut tighteningゝmonitor, for transmitting a rotational force of the hired pile portion on the steel concrete composite pile portion, the steel pipe concrete composite Via an engaging member consisting of a pin hole or pin provided in the head end plate of the pile portion and a pin or pin hole engaged by fitting with the pin hole or pin provided in the lower end plate of the hire pile portion the steel pipe conc and the lower end plate of the employment pile portion Steel concrete composite piles, characterized in that a configuration connecting the head end plate over preparative composite pile unit. 前記雇い杭部の鞘部空間内を延伸する前記フーチング結合用補強鉄筋を連結部材を介して継ぎ足すことで、前記フーチング結合用補強鉄筋の径に応じて定められる所定長さの補強鉄筋とする構成としたことを特徴とする請求項記載の鋼管コンクリート複合杭。 By reinforcing the reinforcing reinforcement for footing connection extending in the sheath space of the hiring pile part via a connecting member, the reinforcing reinforcing bar has a predetermined length determined according to the diameter of the reinforcing reinforcing rod for the footing connection. The steel pipe concrete composite pile according to claim 1 , wherein the steel pipe concrete composite pile is configured. 前記鋼管コンクリート複合杭部の頭部端板に固定したスリーブ圧着ネジ継手の下端に、前記鋼管コンクリート複合杭部に埋設したフーチング結合用補強鉄筋の上端部をネジ結合によって固定するとゝもに、前記雇い杭部の下部端板から内部に突出する前記スリーブ圧着ネジ継手の上端に、前記雇い杭部の鞘部空間を延伸するフーチング結合用補強鉄筋の下端部をネジ結合により固定し連結する構成としたことを特徴とする請求項1又は2記載の鋼管コンクリート複合杭。 When the upper end of the reinforcing reinforcement for footing connection embedded in the steel pipe concrete composite pile part is fixed to the lower end of the sleeve crimp screw joint fixed to the head end plate of the steel pipe concrete composite pile part by screw connection, A structure in which a lower end portion of a reinforcing bar for a footing connection extending the sheath space of the employment pile portion is fixed and connected to an upper end of the sleeve crimp screw joint protruding inward from a lower end plate of the employment pile portion by screw connection. The steel pipe concrete compound pile according to claim 1 or 2 characterized by things.
JP2011131219A 2011-06-13 2011-06-13 Steel pipe concrete composite pile Active JP5775750B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2011131219A JP5775750B2 (en) 2011-06-13 2011-06-13 Steel pipe concrete composite pile

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2011131219A JP5775750B2 (en) 2011-06-13 2011-06-13 Steel pipe concrete composite pile

Publications (2)

Publication Number Publication Date
JP2013002047A JP2013002047A (en) 2013-01-07
JP5775750B2 true JP5775750B2 (en) 2015-09-09

Family

ID=47670922

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2011131219A Active JP5775750B2 (en) 2011-06-13 2011-06-13 Steel pipe concrete composite pile

Country Status (1)

Country Link
JP (1) JP5775750B2 (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104264659B (en) * 2014-10-15 2016-04-13 金陵科技学院 A kind of precast hollow uplift pile and preparation method thereof
KR101662695B1 (en) * 2016-04-04 2016-10-05 케이피이엔씨 주식회사 Construction Method for PHC Pile by Inner Excavation with Extending Auger
CN113322943B (en) * 2021-06-11 2023-02-21 广西路桥工程集团有限公司 Occlusive pile and construction method thereof

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS53117206A (en) * 1977-03-23 1978-10-13 Hasegawa Komuten Kk Method of treating top of pile to be driven on spot
JPS6217228A (en) * 1985-07-16 1987-01-26 Nippon Concrete Ind Co Ltd Suspending tongs for prc-like pile
JPH0718278B2 (en) * 1991-09-18 1995-03-01 東海コンクリート工業株式会社 Concrete cylinder and its connection method
JPH05306527A (en) * 1992-04-30 1993-11-19 Nippon Concrete Ind Co Ltd Concrete pile
JPH1072827A (en) * 1996-08-30 1998-03-17 Toshio Enoki Joint construction between pile head and pliers
JP3051124U (en) * 1998-02-03 1998-08-11 敏男 榎 Connection structure between pile head and Yatsuko
JP5111291B2 (en) * 2008-08-13 2013-01-09 日本コンクリート工業株式会社 Pile construction equipment
JP2010196251A (en) * 2009-02-23 2010-09-09 Nippon Concrete Ind Co Ltd Existing concrete pile

Also Published As

Publication number Publication date
JP2013002047A (en) 2013-01-07

Similar Documents

Publication Publication Date Title
JP5199166B2 (en) Foundation pile structure by site construction and construction method of foundation pile
KR101242476B1 (en) Base construct method of building and base construct member of building
JP4375733B2 (en) Steel pipe placing method
JP5986429B2 (en) Caisson and manufacturing method thereof
JP5775750B2 (en) Steel pipe concrete composite pile
KR101491746B1 (en) pile foundation and the installation method
JP4863120B2 (en) Foundation pile
JP5480744B2 (en) Foundation for structure and its construction method
JP4536615B2 (en) Construction method of steel pillars to steel pipe piles, buried pipe body and pile construction method
JP2013040447A (en) Combined footing pile and structuring method for combined footing pile
JP4373824B2 (en) Joining method of cast-in-place pile and steel pipe column
JP5456627B2 (en) Connection structure and method of connection between pile and steel column
JP3192516U (en) Steel pipe concrete composite pile
KR101124203B1 (en) Pile structure
JP4798203B2 (en) Reinforcement structure and reinforcement method for existing foundation
JP4882492B2 (en) Steel pipe pile structure and its construction method
JP7304248B2 (en) Pile head connection structure and construction method of pile head connection structure
JP2013036269A (en) Sc pile
JP2007107276A (en) Repair reinforcement method of existing quaywall and its repair reinforcement structure
KR102070912B1 (en) Phc pile for soil retaining wall, mold assembly and manufacturing method thereof
KR20130002797A (en) Reinforced concrete pile construction method for which steel pipe casing structure for steel pipe casing recovery this were used
JP2009270403A (en) Clutch body for use in burial device for hollow pile
JP3963326B2 (en) Seismic reinforcement structure for bridge pier and its construction method
JP6616180B2 (en) Construction method of foundation pile with reinforced pile head
JP6667277B2 (en) Construction method of foundation pile reinforced with pile head

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20130729

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20140219

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20140408

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20141111

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20141215

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20150526

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20150706

R150 Certificate of patent or registration of utility model

Ref document number: 5775750

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250