[go: up one dir, main page]

KR100711054B1 - Self-supporting order wall retaining method using anchor body and connecting socket for it - Google Patents

Self-supporting order wall retaining method using anchor body and connecting socket for it Download PDF

Info

Publication number
KR100711054B1
KR100711054B1 KR1020050039549A KR20050039549A KR100711054B1 KR 100711054 B1 KR100711054 B1 KR 100711054B1 KR 1020050039549 A KR1020050039549 A KR 1020050039549A KR 20050039549 A KR20050039549 A KR 20050039549A KR 100711054 B1 KR100711054 B1 KR 100711054B1
Authority
KR
South Korea
Prior art keywords
anchor body
wall
order wall
order
steel pipe
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
KR1020050039549A
Other languages
Korean (ko)
Other versions
KR20060116933A (en
Inventor
김창근
Original Assignee
김창근
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 김창근 filed Critical 김창근
Priority to KR1020050039549A priority Critical patent/KR100711054B1/en
Publication of KR20060116933A publication Critical patent/KR20060116933A/en
Application granted granted Critical
Publication of KR100711054B1 publication Critical patent/KR100711054B1/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Classifications

    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D17/00Excavations; Bordering of excavations; Making embankments
    • E02D17/02Foundation pits
    • E02D17/04Bordering surfacing or stiffening the sides of foundation pits
    • 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
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D2250/00Production methods
    • E02D2250/0046Production methods using prestressing techniques
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D2300/00Materials
    • E02D2300/0004Synthetics
    • E02D2300/0006Plastics
    • E02D2300/0009PE

Landscapes

  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Mining & Mineral Resources (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Paleontology (AREA)
  • Civil Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Piles And Underground Anchors (AREA)

Abstract

본 발명은 별도로 구비된 앵커체를 사용해 차수벽의 지지력을 향상시키고, 차수벽을 보강해 외부에서 가해지는 토압 등을 막기 위한 앵커체를 이용한 자립식 차수벽 흙막이 공법에 대한 것으로, 건설 현장에 타설되는 강관 말뚝 내에 앵커체를 설치함으로써, 차수벽의 지지력을 향상시키고, 지반 굴토시 차수벽 벽면에 별도로 구비된 앵커체로 차수벽을 보강해 굴착지반에서는 확실한 지지보 역할을 하며, 차수벽인 강관과 강관 사이에 토립자 등의 유출에 따른 지반의 보강 및 차수와 기존에 버팀용 띠장을 제거할 수 있는 앵커체를 이용한 자립식 차수벽 흙막이 공법과 이를 위한 연결소켓에 관한 것이다.The present invention relates to a self-supporting barrier wall retaining method using an anchor body for improving the bearing capacity of the barrier wall using an anchor body provided separately and preventing earth pressure applied from the outside by reinforcing the barrier wall. By installing anchors inside, it improves the supporting force of the order wall and reinforces the order wall with anchor body provided on the order wall wall at the time of ground excavation, acting as a reliable support in the excavation ground, and spilling of the granules between the steel pipe and the steel pipe which is the order wall The present invention relates to a self-supporting order wall retaining method using an anchor body capable of removing the reinforcing and order of the ground and the existing band for the support, and a connection socket for the same.

차수벽, 자립형 차수벽, 앵커체, 흙막이 공법 Order wall, freestanding wall, anchor body, earth block construction

Description

앵커체를 이용한 자립식 차수벽 흙막이 공법과 이를 위한 연결소켓{A construction method of concrete retaining wall using anchor}A construction method of concrete retaining wall using anchor}

도 1은 본 발명의 앵커체를 이용한 자립식 차수벽의 시공을 도시한 순서도.1 is a flow chart showing the construction of the self-supporting order wall using the anchor body of the present invention.

도 2a는 앵커체 삽입을 위해 지반의 천공을 도시한 일측면도.Figure 2a is a side view showing the perforation of the ground for the anchor body insertion.

도 2b는 천공된 공내에 삽입되는 흙막이용 강관을 도시한 일측면도.Figure 2b is one side view showing a steel pipe for the earth inserted into the perforated ball.

도 2c는 강관 내에 앵카체를 삽입한 후, 그라우팅으로 정착체 형성을 도시한 일측면도.Figure 2c is one side view showing the formation of the fixture by grouting after inserting the anchor body into the steel pipe.

도 2d는 앵커체 상부에 설치되는 하중계를 도시한 일측면도.Figure 2d is a side view showing a load meter installed on the top of the anchor body.

도 2e는 강관내부에 그라우팅의 실시를 도시한 일측면도.Figure 2e is a side view showing the implementation of grouting in the steel pipe.

도 2f는 앵커체 두부에 캡콘크리트를 실시를 도시한 일측면도.Figure 2f is a side view showing the cap concrete to the anchor head.

도 2g는 차수벽 형성 후, 건축물 공사를 위해 지반의 굴토를 도시한 일측면도.Figure 2g is a side view showing the excavation of the ground for building construction, after the order wall is formed.

도 2h는 차수벽에 설치된 앵커체를 도시한 일측면도.Figure 2h is a side view showing an anchor body installed on the order wall.

도 3은 교차된 앵커체를 연결하는 연결 소켓을 도시한 사시도.3 is a perspective view showing a connecting socket for connecting crossed anchors;

도 4는 차수벽 지지용 앵커체를 부착을 도시한 평면도.4 is a plan view illustrating attachment of the anchor wall support body.

도 5는 차수벽 외측에 이물질의 침투를 막기 위한 보강용 PE의 주입을 도시 한 평면도.Figure 5 is a plan view showing the injection of the reinforcing PE to prevent the ingress of foreign matter on the outer side of the order wall.

도 6은 차수벽의 지지력 강화를 위해 강봉과 강선을 이용한 지지대 설치를 도시한 평면도.Figure 6 is a plan view showing the installation of the support using a steel bar and steel wire to strengthen the bearing capacity of the order wall.

<도면의 주요 부분에 대한 부호의 설명><Explanation of symbols for the main parts of the drawings>

10. 차수벽 설치단계 20. 차수벽 보강단계 30. 보강용 PE주입10. Order wall installation step 20. Order wall reinforcement step 30. PE injection for reinforcement

40. 차수벽 41. 앵커체 41a.강선40. Order wall 41. Anchor body 41a. Steel wire

43. 강관 44. 정착부43. Steel pipe 44. Fusing unit

45. 캡콘크리트 46. 강봉 47. 하중계45. Cap concrete 46. Steel bar 47. Load gauge

50. 연결소켓 51. 강선삽입공 52. 외측50. Connecting socket 51. Steel wire insertion hole 52. Outside

53. 내측케이스 54. PE(폴리에틸렌) 55. 강봉53. Inner Case 54. PE (Polyethylene) 55. Steel Bar

56. 강선56. Liner

본 발명은 각종 건축공사 현장에서 지반 굴토시 차수와 흙막이를 위해 시공하는 공법에 대한 것으로, 더욱 상세하게는 별도로 구비된 앵커체를 사용해 차수벽의 지지력을 향상시키고, 차수벽을 보강해 외부에서 가해지는 토압 등을 막기위한 앵커체를 이용한 자립식 차수벽 흙막이 공법과 이를 위한 연결소켓에 관한 것이다.The present invention relates to a method for constructing the ground piles and soil barriers at various construction sites, and more specifically, to improve the bearing capacity of the barrier wall using an anchor body provided separately, and to reinforce the barrier wall to be applied from the outside. The present invention relates to a self-supporting order wall retaining method using an anchor to prevent a back and a connecting socket for the same.

건축물의 시공을 위해 한정된 토지를 효율적으로 활용하기 위하여 건축물 축 조시 대부분 굴토작업을 실시하고 있으며, 지하를 굴착하는 과정에서 인접 건물이나, 도로 등의 기존 시설물을 파손하지 않고 공사가 가능하도록 하기 위하여 일반적으로 흙막이용 차수벽이 설치된다.In order to efficiently use the limited land for the construction of buildings, most of the construction work is carried out by digging the building.In the process of excavating underground, the construction is possible without damaging existing facilities such as adjacent buildings or roads. As for the barrier wall, it is installed.

상기 흙막이용 차수벽을 설치하기 위한 방법은 매우 다양한 공법들이 적용되고 있으며, 그 방법으로는 일정간격으로 H파일을 항타한 후, H파일 사이에 토류판을 끼우는 방법, 소일 시멘트 월공법, 현장타설 콘크리트 말뚝공법, 그리고 소일 네일링 공법 등이 사용되고 있다.The method for installing the barrier wall for earthquake is being applied to a variety of methods, such as the method of hitting the H pile at a predetermined interval, the method of sandwiching the earth plate between the H pile, Soil cement construction method, cast-in-place concrete pile The method, and the Soil Nailing method are used.

그러나 상기 흙막이 공법들은 H-pile 천공, CIP 공법의 천공, SCW공법의 천공시 천공홀 규격이 최소 Φ350mm 이상이므로 인접 대지 경계선에서의 이격거리가 최소 700mm이상 확보되어야 하는 단점이 있으며, 이로 인한 주택가 밀집지역에서 대지 경계선 침범이 빈번해지고, 장비의 규격이 커서 협소한 공간에서의 작업이 용이하지 못할 뿐만 아니라 주변 구조물에 대한 영향이 크고, 소음과 진동이 매우 커서 민원의 소지가 높다는 문제점이 있다.However, the earthen block method has a disadvantage in that the separation distance from the adjacent land boundary should be secured at least 700 mm since the hole hole specification is at least Φ350 mm or more when H-pile drilling, CIP drilling, and SCW drilling are performed. Site border invasion is frequent in the area, the equipment size is not easy to work in a narrow space, as well as the impact on the surrounding structure is large, the noise and vibration is very large, there is a problem of high complaints.

특히, 토류벽 공사의 경우 토류벽의 뒷채움 작업으로 인하여 주변 지반의 이완 현상으로 침하 작용을 초래하여 주변 구조체에 대해 영향이 매우 크다는 단점을 가지고 있다. 또한, CIP 공법의 경우 침하의 우려는 없으나, 겹공을 연속 시공할 수 없어 공사기간이 지연되고, 공사비용이 토류벽 공사의 300% 이상 증가되며, 천공시 소음 진동으로 인하여 민원의 발생소지가 높을 뿐만 아니라 기둥간의 연결성이 좋지 못하여 차수성이 떨어지고, 토사 유실의 가능성이 커서 별도의 누수에 대한 보조방법이 필요하다는 문제점을 안고 있다. 또, SCW공법의 경우 연속적인 공사 가 가능하다는 이점은 있으나 장비의 대형화로 인한 소음 진동이 매우 커서 민원이 자주 야기되고, 공사비용 또한 토류벽 공사의 300% 이상 증가되는 단점이 있으며, 지반 구조상 사토질, 풍화토가 50%이상 포함되어야 하므로 공사시 현장 지반 여건상의 제약이 매우 심하다는 단점을 가지고 있다.Particularly, in the case of earth wall construction, the backfilling of the earth wall causes the settlement phenomenon due to the relaxation of the surrounding ground, which has a disadvantage that the influence on the surrounding structure is very large. In addition, in case of CIP method, there is no fear of sinking, but the construction period is delayed because the double hole can not be constructed continuously, and the construction cost is increased by more than 300% of the earth wall construction, and the occurrence of civil complaints is high due to noise vibration during drilling. However, due to poor connectivity between the pillars, the degree of water quality is lowered, and there is a problem of needing a separate method of leaking due to the high possibility of soil loss. In addition, the SCW method has the advantage that continuous construction is possible, but the noise and vibration caused by the large size of the equipment is very large, causing civil complaints, and the construction cost is also increased by more than 300% of the earth wall construction. Since weathering soil should be included more than 50%, it has the disadvantage that the limitation of site ground condition is very severe during construction.

본 발명은 건설 현장에 타설되는 강관 말뚝 내에 앵커체를 설치함으로써, 차수벽의 지지력을 향상시키고, 지반 굴토시 차수벽을 별도로 구비된 앵커체로 차수벽을 보강해 건축현장에서 굴착지반의 확실한 지지보의 역할을 하며, 차수벽인 강관과 강관 사이에 토립자 등의 유출에 따른 지반의 보강 및 차수에 목적이있다.The present invention by installing the anchor body in the steel pipe piles to be placed on the construction site, to improve the support force of the order wall, reinforce the order wall with an anchor body provided separately to the order wall when the ground pit to serve as a reliable support of the excavation ground in the construction site It is aimed at reinforcing and ordering the ground due to the outflow of granules between the steel pipe and the steel pipe.

앵커체를 이용한 차수벽에 있어서, 지반천공 후, 강관을 삽입하고, 강선이 부착된 앵커체 삽입 후, 앵커체에 콘크리트를 타설하여 정착체를 형성시키고, 상기 강선에 강성을 부여하고, 상기 강선 상단부에는 하중계를 설치하고, 강관내부에 크라우팅을 실시한 후, 앵커체의 두부에 캡콘크리트를 타설하는 차수벽 설치단계(10)와, 상기 앵커체의 강선이 교차되는 곳에 고정용 연결소켓(50)을 부착한 후, 강선에 강성을 부여하여, 연결소켓 내부에서 교차된 강선을 고정한 후, 차수벽 외측에 강봉(55)을 항타한 후 강관(43)과 연결하는 차수벽 보강단계(20)와, 상기 차수벽 외측부에 보강용 PE(54)을 주입하여서 차수벽를 형성하는 앵커체를 이용한 자립식 차수벽 흙막이 공법에 관한 것으로In the order wall using the anchor body, after the ground drilling, the steel pipe is inserted, and after the anchor body with the steel wire is inserted, concrete is placed on the anchor body to form a fixture, to give rigidity to the steel wire, and to the upper end of the steel wire The load gauge is installed, and after the crowding in the steel pipe, the order wall installation step (10) for placing cap concrete on the head of the anchor body, and the connecting socket (50) for fixing at the intersection of the steel wire of the anchor body After attaching, the rigidity is given to the steel wire, the steel wire intersected in the connection socket is fixed, and the order wall reinforcement step 20 for driving the steel bar 55 on the outside of the order wall and connecting with the steel pipe 43, and the order wall It relates to a self-supporting order wall retaining method using an anchor body to form a order wall by injecting a reinforcing PE (54) to the outside portion

이하, 본 발명에 따른 "앵커체를 이용한 자립식 차수벽 흙막이 공법"을 첨부된 도면을 참조하여 상세하게 설명하면 다음과 같다.Hereinafter, with reference to the accompanying drawings, the "self-supporting order wall retaining method using an anchor body" according to the present invention will be described in detail as follows.

도 1은 본 발명으로 이루어지는 앵커체를 이용한 자립식 차수벽 흙막이 공법의 시공을 도시한 순서도로, 건축현장의 지반굴토를 위한 차수벽 설치 단계(10)와, 상기 설치된 차수벽의 토압에 대한 지지력을 향상시키기 위한 차수벽 보강 단계(20)와, 차수벽을 형성시킨 강관과 강관사이의 틈을 막기 위한 보강용 PE(폴리에틸렌;polyethylene)주입(30)으로 앵커체를 이용한 자립식 차수벽 흙막이 공법이 이루어 진다.1 is a flow chart illustrating the construction of a self-supporting order wall retaining method using the anchor body made of the present invention, to improve the bearing capacity against the earth pressure of the order wall installation step (10) and the installed order wall for the construction site Reinforcement wall reinforcing step 20 using the anchor body is made of a reinforcement PE reinforcement step 20, and a reinforcement PE (polyethylene) injection (30) for preventing the gap between the steel pipe and the steel pipe forming the order wall.

먼저, 차수벽(40)의 설치를 위해 지반을 천공하고, 천공된 지반에 차수벽(40) 형성을 위한 강관(43)의 삽입과, 강관(43) 내부에 앵커체(41)를 삽입한 후 그라우팅으로 정착체(44')를 형성하고, 그 상부에 강성을 부여한 후, 하중계(47)를 설치하며, 공내에 그라우팅을 실시하여 공내부를 채우고, 두부에 캡콘크리트(45)로 마무리 한다.First, the ground is drilled for the installation of the order wall 40, the steel pipe 43 is inserted into the ordered wall 40 to form the order wall 40, and the anchor body 41 is inserted into the steel pipe 43, followed by grouting. After the fixing body 44 'is formed, and rigidity is given to the upper portion thereof, a load gauge 47 is installed, grouting is performed in the ball to fill the inside of the ball, and the head is finished with cap concrete 45.

차수벽(40) 형성이 완료되면, 앵커체(41)를 인장시켜 강성을 부여한 후, 앵커체(41)를 고정하여 그 설치를 완료하고, 강관(43)으로 형성된 차수벽(40) 외측에 PE(폴리에틸렌)(54)를 주입하여 외부로부터의 토립자 등의 유입을 방지한다.When the order wall 40 is formed, the anchor body 41 is tensioned to give rigidity, the anchor body 41 is fixed to complete the installation thereof, and PE (outside the order wall 40 formed of the steel pipe 43) Polyethylene) 54 to prevent entry of granules and the like from the outside.

도 2a는 앵커체 삽입을 위한 지반의 천공을 도시한 일측면도로, 차수벽(40) 을 형성하는 강관(43)을 삽입하기 위해 굴토계획선을 일정한 간격으로 지반을 천공한다.Figure 2a is a side view showing the perforation of the ground for the insertion of the anchor body, to drill the ground at regular intervals to the burial plan line to insert the steel pipe 43 forming the order wall 40.

도 2b는 천공된 공내에 흙막이용 강관(43)의 삽입을 도시한 일측면도이다.FIG. 2B is a side view illustrating the insertion of the retaining steel pipe 43 into the perforated hole.

도 2c는 강관(43) 내에 앵커체(41)를 삽입한 후, 그라우팅으로 정착체(44')를 도시한 일측면도로 그라우팅은 앵커체의 정착부(44)에만 실시하여 준다.FIG. 2C is a view illustrating the fixing body 44 'as a grout after inserting the anchor body 41 into the steel pipe 43, and grouting is performed only on the fixing unit 44 of the anchor body.

정착부(44)에 실시된 그라우팅으로 강관(43) 하부에 같이 정착체(44')를 형성하여, 강관(43) 파이프의 자립성을 향상시킨다.The fixing unit 44 'is formed in the lower portion of the steel pipe 43 by grouting applied to the fixing unit 44, thereby improving the independence of the steel pipe 43 pipe.

정착부(44)에 실시된 그라우팅의 양생이 완료되면, 앵커체(41)에 강성을 부여하기 위해 강선에 인장력을 부여한 후, 상부에 하중계(Load Cell)(47)의 설치하여 하중의 변위를 측정한다.When curing of the grouting performed on the fixing unit 44 is completed, a tensile force is applied to the steel wire in order to give rigidity to the anchor body 41, and then a load cell 47 is installed on the upper portion to increase the displacement of the load. Measure

상기 하중계(47)는 프리스트레스(Free-stress)를 통한 강선(41a)에 대한 하중을 측정하여 강성 벽체로의 역할을 올바르게 하고 있는지 여부를 체크하여 정보화 시공을 할 수 있도록 한다.The load gauge 47 measures the load on the steel wire 41a through pre-stress and checks whether it is functioning as a rigid wall so that the information construction can be performed.

도 2e는 강관내부에 그라우팅의 실시를 도시한 일측면도로 강관(43)의 빈 공간에 그라우팅을 실시해 차수벽(40)을 형성시킨다.FIG. 2E is a side view illustrating the grouting in the steel pipe to grind the empty space of the steel pipe 43 to form the order wall 40.

차수벽(40) 내부에 그라우팅을 완료한 후, 앵커체(41) 두부에 캡콘크리트(45)를 실시해 차수벽의 시공을 완료한다.After the grouting is completed in the order wall 40, the cap concrete 45 is applied to the head of the anchor body 41 to complete the construction of the order wall.

도 2g는 차수벽(40) 형성 후, 건축물 공사를 위해 지반의 굴토를 도시한 일측면도이다.Figure 2g is a side view showing the excavation of the ground for building construction, after the order wall 40 is formed.

도 2h는 차수벽(40)에 설치된 앵커체(41)를 도시한 일측면도로, 상기 차수벽에 설치되는 앵커체(41)는 수직방향과 수평방향으로 설치된다.FIG. 2H is a side view showing the anchor body 41 provided in the order wall 40. The anchor body 41 provided in the order wall is installed in the vertical direction and the horizontal direction.

상기 앵커체(41)는 끝단에 정착부(44)가 형성되고, 강선(41a)으로 연결되어 있고, 각각의 앵커체(41)는 연결소켓(50)을 이용하여 앵커체(41)를 연결하여 준다.The anchor body 41 has a fixing portion 44 is formed at the end, it is connected by a steel wire (41a), each anchor body 41 is connected to the anchor body 41 by using a connecting socket (50) Give it.

도 3은 교차된 앵커체(41)를 연결하는 연결 소켓(50)을 도시한 사시도로 차수벽(40)에 상, 하, 좌, 우로 설치된 앵커체(41)의 강선은 각 방향으로 인장력을 부여한 후, 강선을 서로 꼬임하여 풀어지지 않게 용접 또는 고정용 철사를 이용해 고정시킨다.3 is a perspective view illustrating a connecting socket 50 connecting the crossed anchor bodies 41. The steel wires of the anchor bodies 41 installed on the order walls 40 in the up, down, left, and right directions are given tension in each direction. After that, the wires are twisted with each other and fixed using welding or fixing wires so as not to be released.

따라서, 상, 하, 좌, 우에 부착된 앵커체(41)의 강선을 연결하기 위해 상기 연결소켓(50)은 상, 하, 좌, 우에 강선 삽입공(51)이 형성되고, 차수벽(40)에 부착되는 외측 케이스(52)와 내측 케이스(53)로 분리되며, 먼저 차수벽(40)에 앵커체(41)가 교차하는 지점에 외측케이스(52)를 용접 등으로 부착하고, 상, 하, 좌, 우에 삽입된 강선(41a)에 강성을 부여한 후, 각각의 앵커체를 고정하기 위해 서로 꼬임 또는 용접 등으로 풀리지 않게 한다.Therefore, in order to connect the steel wires of the anchor body 41 attached to the upper, lower, left and right, the connection socket 50 has steel wire insertion holes 51 formed at the upper, lower, left and right sides, and the order wall 40 It is separated into an outer case 52 and an inner case 53 attached to the outer case 52, first attaching the outer case 52 to the point where the anchor body 41 intersects the order wall 40 by welding, After the rigidity is given to the steel wires 41a inserted into the left and right sides, it is prevented from being twisted or welded with each other to fix each anchor body.

앵커체(41) 강선의 꼬임 또는 용접 후에는 내측케이스(53)를 부착하여서 연결소켓(50)의 부착을 완료한다.After twisting or welding the steel wire of the anchor body 41, the inner case 53 is attached to complete the attachment of the connecting socket 50.

도 4는 차수벽 지지용 앵커체(41)의 부착을 도시한 평면도로 소정의 크기로 형성된 앵커체(41)를 연결소켓(50)을 이용해 연속적으로 부착하면서, 지반 굴토 작업을 실시한다. 4 is a plan view illustrating the attachment of the anchor wall support body 41 to the ground, while continuously attaching the anchor body 41 formed to a predetermined size using the connection socket 50, and performs the ground excavation work.

차수벽(40)에 설치되는 앵커체(41)로 인해 차수벽의 자립성과 횡압에 의한 전단 저항력을 증가시킨다.Due to the anchor body 41 installed on the order wall 40, the independence of the order wall and the shear resistance due to the lateral pressure are increased.

도 5는 차수벽 외측에 이물질의 침투를 막기 위한 보강용 PE(54)의 주입을 도시한 평면도로, 차수벽의 외측, 즉 굴토가 이루어지지 않는 강관 파이프의 틈새로 굴토현장에 토사물 또는 지하수의 유입을 방지하기 위해 보강용 PE를 주입하여 강관파이프의 틈새를 메워 기밀성을 향상시킨다.5 is a plan view showing the injection of reinforcing PE (54) to prevent the infiltration of foreign matter to the outside of the order wall, the outside of the order wall, that is, the inflow of soil or groundwater into the pit site by the gap of the steel pipe pipe is not made Reinforcement PE is injected to prevent filling the gap of steel pipe and improve airtightness.

도 6은 상기 형성된 차수벽의 횡압에 대한 저항력을 증대시키기 위해 착수벽(40) 외부에 강봉(55)을 항타한 후, 항타된 강봉(55)과 강관(43)에 삽입 설치된 강선(41a)을 또 다른 강선(56)으로 연결하여 차수벽 외측에서 가해지는 토압에 대한 강관(43)의 저항력을 크게 하여 차수벽의 안전성을 일층 향상시킬 수 있다.FIG. 6 shows a steel wire 41a inserted into the driven steel bar 55 and the steel pipe 43 after driving the steel bar 55 outside the impingement wall 40 to increase the resistance to the lateral pressure of the formed order wall. By connecting with another steel wire 56 it is possible to increase the resistance of the steel pipe 43 against earth pressure applied from the outside of the order wall to further improve the safety of the order wall.

삭제delete

본 발명은 각종 건축공사 현장에서 지반 굴토시 차수와 흙막이를 위해 별도로 구비된 앵커체를 사용해 차수벽의 지지력을 향상시키고, 차수벽을 보강해 외부에서 가해지는 토압 등을 막기 위한 앵커체를 이용한 자립식 차수벽 흙막이 공법으로, 건설 현장에 타설되는 강관 말뚝 내에 앵커체를 설치함으로써, 차수벽의 지지력을 향상시키고, 지반 굴토시 차수벽을 별도로 구비된 앵커체로 차수벽을 보강해 건축현장에서 굴착지반의 확실한 지지보의 역할을 하며, 차수벽인 강관과 강관 사이에 토립자 등의 유출에 따른 지반의 보강 및 차수와 기존에 버팀용 띠장을 제거하는 효과가 있다.The present invention improves the bearing capacity of the wall by using the anchor body provided separately for the order and soil barrier in the ground construction of various construction sites, and the self-supporting barrier wall using the anchor body to prevent earth pressure applied from the outside by reinforcing the barrier wall By using the anchoring method, the anchor body is installed in the steel pipe pile that is placed on the construction site to improve the bearing capacity of the barrier wall, and the barrier wall is reinforced by the anchor body provided with the barrier wall when the ground is piled up. It has the effect of reinforcing and ordering the ground due to the outflow of the granules between the steel pipe and the steel pipe, which is the order wall, and removing the belt for the support.

Claims (2)

지반천공 후 강관(43)을 삽입하고, 강선(41a)이 부착된 앵커체(41)를 상기 강관(43)에 삽입한 다음, 상기 앵커체(41)에 콘크리트를 타설하여 정착체(44')를 형성시키고, 상기 강선(41a) 상단부에는 하중계(47)를 설치하며, 상기 강관(43) 내부에는 크라우팅을 실시하고, 상기 하중계(47)가 설치된 앵커체(41)의 두부에 캡콘크리트(45)를 타설하는 차수벽 설치단계(10)와;After the ground drilling, the steel pipe 43 is inserted, the anchor body 41 with the steel wire 41a is inserted into the steel pipe 43, and then concrete is poured into the anchor body 41 to fix the fixing body 44 '. ), A load gauge 47 is installed at an upper end of the steel wire 41a, a crowding is performed inside the steel pipe 43, and cap concrete is formed on the head of the anchor body 41 in which the load gauge 47 is installed. An order wall installation step 10 of pouring 45; 상기 앵커체(41)의 강선(41a)이 교차되는 곳에 고정용 연결소켓(50)을 부착한 후, 강선(41a)에 강성을 부여하여, 연결소켓(50) 내부에서 교차된 강선(41a)을 고정한 후, 차수벽(40) 외측에 강봉(55)을 항타한 후 이 강봉(55)과 상기 강관(43)을 강선(56)으로 연결하는 차수벽 보강단계(20)와;After attaching the fixing connecting socket 50 where the steel wire 41a of the anchor body 41 intersects, the rigid wire 41a is provided with rigidity, and the steel wire 41a crossed inside the connecting socket 50. After fixing the, the order wall reinforcing step 20 for connecting the steel bar 55 and the steel pipe 43 to the steel wire 56 after driving the steel bar (55) on the outer side of the order wall (40); 상기 차수벽 외측부에 보강용 PE(54)을 주입하여서 차수벽(40)를 형성하는 앵커체를 이용한 자립식 차수벽 흙막이 공법.Self-supporting barrier wall construction method using an anchor body to form a barrier wall 40 by injecting a reinforcement PE (54) to the outer side of the barrier wall. 외측케이스(52)와 내측케이스(53)로 이루어지고, 이 외측케이스(52)와 내측케이스(53)는 각각 사각박스 형태로서 일측면이 개방되며 상,하,좌,우 면에는 강선삽입공(51)이 형성되는 것을 특징으로 하는 앵커체를 이용한 자립식 차수벽 흙막이 공법을 위한 연결소켓.It consists of an outer case 52 and the inner case 53, the outer case 52 and the inner case 53 is a rectangular box form, one side is open and the wire insertion hole on the upper, lower, left, right sides A connection socket for a self-supporting order wall retaining method using an anchor body characterized in that the 51 is formed.
KR1020050039549A 2005-05-12 2005-05-12 Self-supporting order wall retaining method using anchor body and connecting socket for it Expired - Fee Related KR100711054B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020050039549A KR100711054B1 (en) 2005-05-12 2005-05-12 Self-supporting order wall retaining method using anchor body and connecting socket for it

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020050039549A KR100711054B1 (en) 2005-05-12 2005-05-12 Self-supporting order wall retaining method using anchor body and connecting socket for it

Publications (2)

Publication Number Publication Date
KR20060116933A KR20060116933A (en) 2006-11-16
KR100711054B1 true KR100711054B1 (en) 2007-04-24

Family

ID=37704613

Family Applications (1)

Application Number Title Priority Date Filing Date
KR1020050039549A Expired - Fee Related KR100711054B1 (en) 2005-05-12 2005-05-12 Self-supporting order wall retaining method using anchor body and connecting socket for it

Country Status (1)

Country Link
KR (1) KR100711054B1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102587411A (en) * 2012-02-13 2012-07-18 中天建设集团有限公司 Method for blocking soil by casting concrete through hanging nets among fender piles in soft soil

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103879918B (en) * 2014-03-12 2016-04-13 庄筱凤 The two self-locking intelligent information bracing members of a kind of integral type and loading thereof, method for dismounting
CN114059523B (en) * 2021-12-03 2022-06-03 中国矿业大学 Anchor-casting integrated structure and construction method of plastic concrete underground diaphragm wall

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102587411A (en) * 2012-02-13 2012-07-18 中天建设集团有限公司 Method for blocking soil by casting concrete through hanging nets among fender piles in soft soil

Also Published As

Publication number Publication date
KR20060116933A (en) 2006-11-16

Similar Documents

Publication Publication Date Title
KR100964796B1 (en) Method for constructing the steel pipe-concrete composite pile structurized of burying and unifying into the bedrock, and a pile construction
KR101302743B1 (en) Phc pile and its using the same soil cement wall construction methode
KR101973565B1 (en) Sheathing method for constructing both sheathing wall and cutoff collar by welding cutoff plate to phc pile with longitudinal plate
CN104452784B (en) Composite bolt pile used for slope strengthening and construction technique of composite bolt pile
KR101011169B1 (en) Earthwall and Construction Method Using Ready-made Concrete Piles
KR100910576B1 (en) Embedded anchor and composite retaining wall construction method
US7600948B2 (en) Micropile retaining wall
CN110924433A (en) Design method of subway foundation pit foot-hanging pile enclosure structure in upper-soft lower-hard rock stratum
CN110685286A (en) A deep foundation pit support construction technology adjacent to the road under complex geological conditions
KR101253678B1 (en) Pile foundation and method for constucting the same
KR20200124949A (en) Anchor Tension way sheathing structure and sheathing method of construction
KR100914158B1 (en) Plain wall-mounted wall blocking method
KR101078080B1 (en) Earth retaining wall and it&#39;s construction method using the precast pile and ground reinforcement
KR20140013497A (en) Method for constructing block type reinforced retaining wall in cut site
JP4663541B2 (en) Seismic reinforcement method for existing concrete pier
KR100313721B1 (en) Method for designing synthetic underground retaining wall by temporary soil protection structure and working process of underground retaining wall of structure
KR101210368B1 (en) Uniting Method of Temporary earth wall with basement exterior Wall using Couplers and Bolts.
KR100984040B1 (en) Method of reinforced earth retaining wall for cutting face through double reinforcing execution
KR100711054B1 (en) Self-supporting order wall retaining method using anchor body and connecting socket for it
KR200362565Y1 (en) Earth Retaining Wall Structure Using Precast Concrete Pile and Construction Method Thereof
JP2007239440A (en) Seismic reinforcement method for existing concrete pier
CN215562664U (en) Leakage plugging structure of external reinforcement planting between piles
CN212225231U (en) Protective structure for bias tunnel portal
KR20080086254A (en) Free-standing and non-removable order wall clogging using stranded wire
KR101020217B1 (en) Rock construction using anchor and construction method

Legal Events

Date Code Title Description
A201 Request for examination
PA0109 Patent application

St.27 status event code: A-0-1-A10-A12-nap-PA0109

PA0201 Request for examination

St.27 status event code: A-1-2-D10-D11-exm-PA0201

E902 Notification of reason for refusal
PE0902 Notice of grounds for rejection

St.27 status event code: A-1-2-D10-D21-exm-PE0902

P11-X000 Amendment of application requested

St.27 status event code: A-2-2-P10-P11-nap-X000

P13-X000 Application amended

St.27 status event code: A-2-2-P10-P13-nap-X000

PG1501 Laying open of application

St.27 status event code: A-1-1-Q10-Q12-nap-PG1501

E701 Decision to grant or registration of patent right
PE0701 Decision of registration

St.27 status event code: A-1-2-D10-D22-exm-PE0701

GRNT Written decision to grant
PR0701 Registration of establishment

St.27 status event code: A-2-4-F10-F11-exm-PR0701

PR1002 Payment of registration fee

St.27 status event code: A-2-2-U10-U11-oth-PR1002

Fee payment year number: 1

PG1601 Publication of registration

St.27 status event code: A-4-4-Q10-Q13-nap-PG1601

R18-X000 Changes to party contact information recorded

St.27 status event code: A-5-5-R10-R18-oth-X000

PN2301 Change of applicant

St.27 status event code: A-5-5-R10-R11-asn-PN2301

PN2301 Change of applicant

St.27 status event code: A-5-5-R10-R14-asn-PN2301

P14-X000 Amendment of ip right document requested

St.27 status event code: A-5-5-P10-P14-nap-X000

P16-X000 Ip right document amended

St.27 status event code: A-5-5-P10-P16-nap-X000

Q16-X000 A copy of ip right certificate issued

St.27 status event code: A-4-4-Q10-Q16-nap-X000

FPAY Annual fee payment

Payment date: 20100913

Year of fee payment: 4

PR1001 Payment of annual fee

St.27 status event code: A-4-4-U10-U11-oth-PR1001

Fee payment year number: 4

PN2301 Change of applicant

St.27 status event code: A-5-5-R10-R11-asn-PN2301

LAPS Lapse due to unpaid annual fee
PC1903 Unpaid annual fee

St.27 status event code: A-4-4-U10-U13-oth-PC1903

Not in force date: 20110419

Payment event data comment text: Termination Category : DEFAULT_OF_REGISTRATION_FEE

PC1903 Unpaid annual fee

St.27 status event code: N-4-6-H10-H13-oth-PC1903

Ip right cessation event data comment text: Termination Category : DEFAULT_OF_REGISTRATION_FEE

Not in force date: 20110419

P22-X000 Classification modified

St.27 status event code: A-4-4-P10-P22-nap-X000

P22-X000 Classification modified

St.27 status event code: A-4-4-P10-P22-nap-X000

R18-X000 Changes to party contact information recorded

St.27 status event code: A-5-5-R10-R18-oth-X000