KR100878341B1 - Exposure type waterproof construction method and construction structure - Google Patents

Exposure type waterproof construction method and construction structure Download PDF

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Publication number
KR100878341B1
KR100878341B1 KR1020080024169A KR20080024169A KR100878341B1 KR 100878341 B1 KR100878341 B1 KR 100878341B1 KR 1020080024169 A KR1020080024169 A KR 1020080024169A KR 20080024169 A KR20080024169 A KR 20080024169A KR 100878341 B1 KR100878341 B1 KR 100878341B1
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South Korea
Prior art keywords
urethane
tape
reinforcing sheet
glass fiber
primer
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KR1020080024169A
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Korean (ko)
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장성덕
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장성덕
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D11/00Roof covering, as far as not restricted to features covered by only one of groups E04D1/00 - E04D9/00; Roof covering in ways not provided for by groups E04D1/00 - E04D9/00, e.g. built-up roofs, elevated load-supporting roof coverings
    • E04D11/02Build-up roofs, i.e. consisting of two or more layers bonded together in situ, at least one of the layers being of watertight composition
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B17/00Layered products essentially comprising sheet glass, or glass, slag, or like fibres
    • B32B17/02Layered products essentially comprising sheet glass, or glass, slag, or like fibres in the form of fibres or filaments
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B27/00Layered products comprising a layer of synthetic resin
    • B32B27/12Layered products comprising a layer of synthetic resin next to a fibrous or filamentary layer
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage; Sky-lights
    • E04D13/17Ventilation of roof coverings not otherwise provided for
    • E04D13/172Roof insulating material with provisions for or being arranged for permitting ventilation of the roof covering
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B2307/00Properties of the layers or laminate
    • B32B2307/70Other properties
    • B32B2307/726Permeability to liquids, absorption
    • B32B2307/7265Non-permeable

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)

Abstract

An exposure type waterproof construction method and an exposure type waterproof construction structure of a building are provided to obtain a waterproof structure with improved service life and strength, and to have an excellent waterproof effect on a connection by connecting reinforcing sheets strongly and closely using glass fiber. An exposure type waterproof construction structure of a building is formed by applying tar urethane on the whole upper part where primer(10) is applied on a bottom(1) except a part on which a de-aeration pipe to form a first urethane layer(11) and forming a reinforcing sheet(20) formed on the first urethane layer to make urethane penetrated and hardened to non-woven fabrics of the reinforcing sheet, joining glass fiber(30) to a connection of the reinforcing sheets and applying polyurethane on the upper part to form a second urethane layer(12), permeating urethane to latticed woven fabrics on the top of the glass fiber and the reinforcing sheet to be integrated strongly, spreading a tape(2) of PVC material right above the bottom in the latticed type, and applying primer on the tape and the whole bottom and removing the overlapped surface of the tape, and then installing a de-aeration pipe.

Description

건축물의 노출식 방수 시공방법 및 시공구조{Exposure type waterproof construction method and construction structure}Exposure type waterproof construction method and construction structure

도 1은 본 발명의 시공방법 중 테이프를 배열하는 과정을 도시한 사시도1 is a perspective view showing a process of arranging the tape of the construction method of the present invention

도 2는 본 발명의 시공방법 중 탈기관이 설치된 상태의 단면도Figure 2 is a cross-sectional view of the degassing state is installed in the construction method of the present invention

도 3은 본 발명의 시공방법에 의해 시공된 구조를 나타내는 단면도3 is a cross-sectional view showing a structure constructed by the construction method of the present invention

도 4는 본 발명의 보강시트를 도시한 부분 사시도Figure 4 is a partial perspective view of the reinforcing sheet of the present invention

도 5는 본 발명의 보강시트에 대한 연결 예를 도시한 단면도Figure 5 is a cross-sectional view showing an example of the connection to the reinforcing sheet of the present invention

도 6은 본 발명의 보강시트에 대한 다른 연결 예를 도시한 단면도Figure 6 is a cross-sectional view showing another connection example for the reinforcing sheet of the present invention

***도면의 주요 부분에 대한 부호의 설명****** Description of the symbols for the main parts of the drawings ***

1: 바닥면 2: 테이프1: bottom surface 2: tape

3: 탈기관3: degassing

10: 프라이머 11: 1차 우레탄층10: primer 11: primary urethane layer

12: 2차 우레탄층 13: 규사 12: secondary urethane layer 13: silica sand

14: 탑코트14: top coat

20: 보강시트 21: PVC판재20: reinforcing sheet 21: PVC sheet

22: 부직포 23: 직포22: nonwoven fabric 23: woven fabric

24: 연결부 30: 유리섬유24: connecting portion 30: glass fiber

본 발명은 건축물의 천정이나 지붕 등에 대한 방수시공 방법 및 구조에 관한 것으로, 좀 더 구체적으로는 슬라브 내부의 습기 배출과 통기가 효율적으로 이루어지며, 시공에 대한 견고성이 향상된 방수시공 방법 및 구조에 관한 것이다. The present invention relates to a waterproof construction method and structure for a ceiling or a roof of a building, and more specifically, to a moisture discharge and aeration inside the slab efficiently, and to a waterproof construction method and structure with improved robustness to construction. will be.

주지된 바와 같이 건축물의 천장 슬라브는 누수되는 수가 많아서 최초 건축시에는 물론 건축물의 수명이 오래되면 재차 방수시공이 필요한 것이다. As is well known, ceiling slabs of buildings are often leaked, so the waterproof construction is necessary again at the time of initial construction and when the life of the building is long.

종래 천장 콘크리트 슬라브에 대한 방수시공과정에서는 여러 가지 재료를 사용하여 방수기능을 갖는 층을 만들어 주는 것으로서, 방수기능은 종래보다 상당히 향상된 것이 사실이다. In the waterproof construction process for the conventional concrete ceiling slab to create a layer having a waterproof function using a variety of materials, it is true that the waterproof function is significantly improved than the conventional.

그런데 문제는 방수시공을 하기 전에 콘크리트 슬라브에 스며들어 있거나 시공 후에도 시공된 면이 아닌 다른 부분으로부터 유입되는 습기에 관한 것인데, 방수시공이 완료되면 이러한 습기의 배출이 원활하지 못하므로 수증기가 방수시공된 구조층을 밀어 올리면서 바닥과 이격되고 돌출되는 문제가 발생하는 것이다.However, the problem is related to moisture entering into the concrete slab before waterproofing or coming from other parts than the surface after construction. When the waterproofing is completed, the moisture is not discharged smoothly. As the structure layer is pushed up, the spaced out and protrudes from the floor.

이러한 문제에 의해 방수시공 층이 약해짐은 물론 파손이 발생하고 다시 방수시공을 해야하는 악순환이 발생하였던 것이다. Due to this problem, the waterproofing layer was weakened, a breakage occurred, and a vicious cycle in which waterproofing had to be performed again occurred.

이에 따라서 종래에는 방수시공시에는 탈기관을 설치하고 있기는 하지만, 이는 탈기관이 설치된 해당 위치의 콘크리트 슬라브에서 발생하는 습기만 어느 정도 배출될 뿐이고, 그 나머지 부분의 콘크리트 중의 습기는 우레탄 등의 방수재가 콘 크리트와 완전히 밀착되어 있으므로 배출될 공간을 찾지 못하여 그 효과가 만족할 만하다 할 수 없는 것이었다.Accordingly, although a degassing pipe is conventionally installed during waterproof construction, it only discharges a certain amount of moisture generated from the concrete slab at the location where the degassing pipe is installed, and the moisture in the rest of the concrete is waterproofing material such as urethane. Was so close to the concrete that it could not find a space to be discharged and the effect was not satisfactory.

그리고 방수를 위하여 시공되는 보강시트가 기타의 방수재와 견고히 결합되지 못하여 방수 구조상 견고성이 저하되었으며, 일부의 보강시트는 불필요하게 두꺼운 구성으로 인하여 하중이 발생하면 방수층의 파손으로 이어지는 문제도 있었다. In addition, the reinforcement sheet constructed for waterproofing was not firmly combined with other waterproofing materials, and thus the durability of the waterproofing structure was lowered. Some of the reinforcing sheets had a problem that led to breakage of the waterproofing layer when a load was generated due to an unnecessary thick configuration.

본 발명은 상기한 문제점을 감안하여 안출한 것으로, 천장 콘크리트 슬라브의 상면에 탈기 효과를 최대화할 수 있는 시공방법 및 시공구조를 제공하여 콘크리트 슬라브에서 발생하는 습기를 매우 효율적으로 배출할 수 있게 하며, 보강시트는 그 연결부위에 대한 방수기능을 강화하고 기타 방수재와의 결합력을 극대화하여 견고하고 효과적인 방수를 가능하게 함을 목적으로 하는 것이다. The present invention has been made in view of the above problems, by providing a construction method and a construction structure that can maximize the degassing effect on the upper surface of the ceiling concrete slab to be able to discharge the moisture generated in the concrete slab very efficiently, The reinforcement sheet is intended to enhance the waterproof function of the connection portion and to maximize the bonding force with other waterproofing material to enable a strong and effective waterproof.

본 발명은 천장 콘크리트 슬라브의 상면에 탈기관을 설치하기 전에 습기의 통로 역할을 할 수 있는 에어라인을 구성하고 이러한 에어라인 상에 일정 간격으로 탈기관을 설치하며, 보강시트는 컴팩트한 구성이면서 서로 간의 연결과 방수재와의 결합이 효과적으로 이루어지도록 구성된 것을 특징으로 하는바, 이하 첨부된 도면에 의거 본 발명의 바람직한 구성 실시 예를 상세히 살펴보면 다음과 같다.The present invention constitutes an air line that can act as a passage for moisture before installing the degassing pipe on the upper surface of the ceiling concrete slab and installs the degassing pipes at a predetermined interval on the air lines, and the reinforcing sheet is a compact configuration and mutually It is characterized in that the coupling between the connection and the waterproof material is made effectively, look at in detail the preferred embodiment of the present invention according to the accompanying drawings as follows.

도 1은 본 발명의 시공방법 중 테이프를 배열하는 과정을 도시한 사시도,1 is a perspective view showing a process of arranging the tape of the construction method of the present invention,

도 2는 본 발명의 시공방법 중 탈기관이 설치된 상태의 단면도,2 is a cross-sectional view of a degassing pipe installed state of the construction method of the present invention;

도 3은 본 발명의 시공방법에 의해 시공된 구조를 나타내는 단면도,3 is a cross-sectional view showing a structure constructed by the construction method of the present invention,

도 4는 본 발명의 보강시트를 도시한 부분 사시도,Figure 4 is a partial perspective view of the reinforcing sheet of the present invention,

도 5, 도 6은 본 발명의 보강시트에 대한 연결 예를 도시한 단면도이다.5 and 6 are cross-sectional views showing examples of the connection to the reinforcing sheet of the present invention.

본 발명의 시공방법을 순서대로 살펴보면, 우선 시공할 바닥면(1)을 깨끗하게 청소하는 공정을 필요로 하며, 과하게 돌출되거나 요철이 발생한 부분은 수정을 하여 준다. Looking at the construction method of the present invention in order, first requires a step of cleaning the floor (1) to be cleaned, and over-protrusion or irregularities are made to correct the portion.

그리고 시공이 실시되기 전에 도 1과 같이 긴 띠 형태의 얇은 PVC시트 재질로 된 테이프(2)를 바닥면(1)에 격자형으로 배치한다. And before the construction is carried out as shown in Figure 1, the tape 2 made of a long strip-shaped thin PVC sheet material is arranged in a grid form on the bottom surface (1).

상기 바닥면에 배치한 테이프(2)의 중첩되는 부분 중에서 일정한 간격으로 중첩된 부분을 제거한 후, 도 2와 같이 제거한 부분에 탈기관(3)을 설치하여 탈기관(3)이 그 아래의 바닥면(1)과 통기되도록 한다. After removing the overlapping portions at regular intervals among the overlapping portions of the tape 2 disposed on the bottom surface, the degassing tube 3 is installed in the removed portion as shown in FIG. Ventilate with face (1).

이러한 상태에서 바닥면(1)과 테이프(2) 위에 프라이머(10)를 도포하여 다음에 도포할 방수재와 접착력이 강화되도록 한다.In this state, the primer 10 is applied on the bottom surface 1 and the tape 2 so that the waterproofing material and the adhesive force to be applied next are strengthened.

프라이머(10)가 도포된 테이프(2)의 상면과 바닥면(1) 전체 부분에 타르우레탄을 도포하여 1차 우레탄층(11)을 구성한다.Tar urethane is applied to the entire upper surface and the bottom surface 1 of the tape 2 to which the primer 10 is applied to form a primary urethane layer 11.

상기 1차 우레탄 층의 상부에 본 발명의 보강시트(20)를 부착하는데, 상기 보강시트(20)는 유연한 PVC판재(21)의 저면에 부직포(22)가 접합된 상태이고 상면에는 격자형의 직포(23)를 부착하여 일체화된 것이다.The reinforcing sheet 20 of the present invention is attached to the upper portion of the primary urethane layer, the reinforcing sheet 20 is a non-woven fabric 22 is bonded to the bottom of the flexible PVC plate 21, and the upper surface of the lattice type The woven fabric 23 is attached and integrated.

이러한 보강시트(20)의 일측면 끝단에는 부직포 없이 PVC판재(21)와 격자형 직포(23) 만이 구성된 연결부(24)를 구성하게 되면, 보강시트(20)를 연결하여 시공할 때 인근한 보강시트(20)의 끈단을 연결부(24)로 덮어 중첩한 상태에서 연결할 수 있어서 방수와 견고성을 더욱 향상시기게 된다. When one side end of the reinforcing sheet 20 constitutes a connecting portion 24 including only the PVC plate 21 and the lattice type woven fabric 23 without a nonwoven fabric, adjacent reinforcement when connecting and reinforcing the sheet 20 is constructed. The strap 20 of the sheet 20 can be connected in the overlapped state by covering the connection part 24 to further improve waterproofness and robustness.

연결부(24)를 구성하지 않을 시에는 맞대기로 연결한다. When not configuring the connection portion 24 is connected to the butt.

이러한 보강시트(20)를 깔 때 탈기관(3)이 설치된 부분은 오려내어 제거한다. When the reinforcing sheet 20 is laid, the portion where the degassing tube 3 is installed is cut out and removed.

이와 같이 보강시트(20)의 중첩된 연결부(24) 끝단 부분 또는 보강시트(20)의 끝단이 맞닿아 연결되는 부분의 위에는 접착테이프 형식의 유리섬유(30)를 부착하여 연결부분이 보강되도록 한다. In this way, the connection portion is reinforced by attaching an adhesive tape type glass fiber 30 on the overlapped connecting portion 24 of the reinforcing sheet 20 or the end portion of the reinforcing sheet 20 which is in contact with the end of the reinforcing sheet 20. .

유리섬유(30)와 보강시트(20)의 위에 다시 폴리우레탄을 도포하여 2차 우레탄층(12)을 만들어 준다.Polyurethane is again applied on the glass fibers 30 and the reinforcing sheet 20 to make the secondary urethane layer 12.

2차 우레탄층(12)의 위에는 규사(13)를 도포한 다음 탑코트층(14)을 만들어 줌으로서 방수 시공이 완료된다.On the secondary urethane layer 12, the silica sand 13 is applied, and then the top coat layer 14 is made to complete the waterproof construction.

더욱 강력한 방수층을 형성하기 위하여 상기 탑코트층(14)을 시공하기 전에 폴리우레탄을 한번 더 도포할 수도 있다.In order to form a stronger waterproof layer, the polyurethane may be applied once more before the top coat layer 14 is constructed.

이와 같은 시공에 의한 방수구조를 살펴보면, 바닥면(1) 위에 격자형으로 PVC 재질로 된 테이프(2)가 깔려 있고 그러한 테이프(2) 위와 바닥면(1) 전체에 프라이머(10)가 도포됨과 동시에 테이프(2)의 중첩된 면을 제거한 다음 제거된 부분에 탈기관(3)을 설치한 구성이다.Looking at the waterproof structure by such a construction, a lattice-shaped tape (2) of PVC material is laid on the bottom surface (1) and the primer (10) is applied on the tape (2) and the entire bottom surface (1) and At the same time, the overlapping surface of the tape 2 is removed, and then the degassing tube 3 is installed in the removed portion.

또한 탈기관(3)이 설치된 부분을 제외한 프라이머(10)가 도포된 전체의 상부에 타르우레탄을 도포하여 1차 우레탄층(11)이 구성되어 있으면서 그 위에는 보강시트(20)를 구성하여 보강시트(20)의 부직포(22)에 우레탄이 스며들어 굳은 상태가 되며, 보강시트(20)의 연결되는 부분에는 유리섬유(30)가 접합되어 있으며, 그 위에 다시 폴리우레탄을 도포하여 2차 우레탄층(12)이 구성되는데, 유리섬유(30)와 보강시트(20)의 상면의 격자형 직포(23)에 우레탄이 스며들어 견고하게 일체화된 구성이다. In addition, by applying a tar urethane to the entire upper portion of the primer 10, except for the portion where the degassing tube 3 is installed, the primary urethane layer 11 is formed, while the reinforcement sheet 20 is formed thereon. Urethane is infiltrated into the nonwoven fabric 22 of 20 and becomes a hard state, and the glass fiber 30 is bonded to the part of the reinforcing sheet 20 connected thereto, and the polyurethane is applied again on the secondary urethane layer. (12) is configured, urethane is permeated into the lattice-like woven fabric 23 of the upper surface of the glass fiber 30 and the reinforcing sheet 20 is a rigidly integrated configuration.

이러한 구성으로 된 본 발명의 시공방법 및 구조에 의하면 기본적으로 프라이머에 의해 폴리우레탄이 견고하게 바닥면에 접착되는 효과가 있어서 폴리우레탄이 바닥면으로부터 들뜨거나 벗겨지는 경우를 방지하게 되고 전반적으로 견고한 방수구조가 유지되도록 한다,According to the construction method and structure of the present invention having such a configuration, there is basically an effect that the polyurethane is firmly adhered to the bottom surface by a primer to prevent the polyurethane from being lifted or peeled off from the bottom surface, and the overall solid waterproof To keep the structure

1차 우레탄층(11) 및 2차 우레탄층(12)은 실질적인 방수기능을 하게 되며, 그 사이에 보강시트(20)를 구성함에 의해 더욱 강한 방수기능을 하게 되면서 우레탄이 부직포(22)와 직포(23) 및 유리섬유(30)에 스며들어 일체화되면서 뼈대와 같은 역할을 하여 내구성과 균열을 방지하는데 큰 도움을 주게 된다. 직포(20)는 PVC시트(20)의 변형을 방지하는 기능도 하게 된다.The primary urethane layer 11 and the secondary urethane layer 12 has a substantial waterproof function, and by forming a reinforcing sheet 20 therebetween, the urethane is made of a nonwoven fabric 22 and a woven fabric. (23) and the glass fiber 30 is soaked into a single body that acts like a skeleton and helps to prevent durability and cracks. The woven fabric 20 also serves to prevent deformation of the PVC sheet 20.

특히 본 발명에 의하면 격자형으로 배치된 테이프(2)가 우레탄이 바닥면에 완전히 고착되는 것을 방지하므로 그 아래와 인근 부분의 콘크리트에서 습기가 발생하면 테이프(2)와 바닥면(1)의 사이에 미세한 공간이 생기게 되고, 이러한 공간 이 통로역할을 하여 습기를 탈기관(3)까지 유도하여 배출이 이루어지도록 하는 것이다.In particular, according to the present invention, since the tape 2 disposed in a lattice shape prevents urethane from completely sticking to the bottom surface, when moisture is generated in the concrete below and adjacent to the bottom surface, the tape 2 and the bottom surface 1 are separated from each other. A fine space is created, and this space serves as a passage to induce moisture to the degassing pipe 3 so that the discharge is made.

따라서 콘크리트 슬라브로 된 바닥면 전체에 매우 효과적인 탈기가 이루어 지는 것이다. Therefore, very effective degassing is performed on the entire floor of the concrete slab.

마지막으로 구성되는 탑코트층(14)은 우레탄층(11)(12)이 태양열이나 빛 또는 바람 등에 의해 노화 또는 변질되는 것을 방지하여 수명을 유지하는 작용을 하게 되는 것이다. Lastly, the top coat layer 14 is configured to prevent the urethane layers 11 and 12 from aging or deterioration due to solar heat, light, or wind.

이상 설명한 바와 같은 본 발명에 의하면, 방수재 간의 결합 및 보강시트와의 결합이 견고하고 강도 높게 이루어지므로 수명과 강도가 크게 향상되는 방수 구조를 얻을 수 있다. According to the present invention as described above, since the bonding between the waterproofing material and the bonding with the reinforcing sheet is made to be strong and high in strength, it is possible to obtain a waterproof structure that greatly improves the life and strength.

또한 보강시트 간의 연결도 유리섬유에 의해 견고하고 치밀하게 이루어지므로 연결부에도 방수효과가 높고 견고하게 된다.In addition, the connection between the reinforcing sheet is also made of glass fiber tight and dense, so that the connection is high and waterproof effect.

특히 콘크리트 슬라브 내의 습기가 테이프에 의해 만들어지는 통로에 의해 유용하게 배출이 이루어지므로 자체의 습기 문제도 효과적으로 해결하게 되는 유용한 발명이라 할 수 있다. In particular, since the moisture in the concrete slab is usefully discharged by the passage made by the tape can be said to be a useful invention that effectively solves its own moisture problem.

Claims (2)

시공할 바닥면(1)을 깨끗하게 청소하는 공정과, 과하게 돌출되거나 요철이 발생한 부분은 수정하는 공정을 갖고 제일 마지막으로 시공면의 상부에 규사(13)를 도포한 다음 탑코트층(14)을 만들어 주는 공정으로 이루어지는 건축물의 방수 시공방법에 있어서, The process of cleaning the floor 1 to be constructed cleanly, and the process of correcting excessively protruding or irregularities, and the last step is to apply the silica sand 13 to the upper part of the construction surface, and then the top coat layer 14 In the waterproof construction method of the building which consists of a process to make, 요철부분을 수정한 바닥면(1)의 상면에 긴 띠 형태의 얇은 PVC시트 재질로 된 테이프(2)를 격자형으로 배치하는 공정과; Arranging the tape 2 made of a thin PVC sheet material in the form of a long strip on the upper surface of the bottom surface 1 on which the uneven portion is corrected in a lattice shape; 상기 바닥면에 배치한 테이프(2)의 중첩되는 부분 중에서 일정한 간격으로 중첩된 부분을 제거한 후, 제거한 부분에 탈기관(3)을 설치하는 공정과; Removing the overlapping portions at regular intervals from the overlapping portions of the tapes 2 disposed on the bottom surface, and then installing a degassing tube 3 in the removed portions; 바닥면(1)과 테이프(2) 위에 전체적으로 프라이머(10)를 도포하는 공정과;Applying a primer 10 on the bottom surface 1 and the tape 2 as a whole; 프라이머(10)가 도포된 테이프(2)의 상면과 바닥면(1) 전체 부분에 타르우레탄을 도포하여 1차 우레탄층(11)을 구성하는 공정과; Forming a primary urethane layer 11 by applying tar urethane to the entire upper surface and the bottom surface 1 of the tape 2 to which the primer 10 is applied; 상기 1차 우레탄 층의 상부에, 유연한 PVC판재(21)의 저면에 부직포(22)가 접합된 상태이고 상면에는 격자형의 직포(23)를 부착하여 일체화된 보강시트(20)를 부착하는 공정과;A process of attaching the integrated reinforcing sheet 20 by attaching a lattice type woven fabric 23 to the upper surface of the primary urethane layer, the nonwoven fabric 22 is bonded to the bottom of the flexible PVC plate 21 and the upper surface and; 보강시트(20)가 연결되는 부분의 위에는 접착테이프 형식의 유리섬유(30)를 부착하여 연결부분이 보강되도록 하는 공정과; A step of attaching the glass fiber 30 of an adhesive tape type on the portion to which the reinforcing sheet 20 is connected so that the connecting portion is reinforced; 유리섬유(30)와 보강시트(20)의 위에 다시 폴리우레탄을 도포하여 2차 우레탄층(12)을 만드는 공정;Applying a polyurethane on the glass fiber 30 and the reinforcing sheet 20 again to make a secondary urethane layer 12; 으로 이루어진 다음 최종적으로 규사(13) 도포와 탑코트층(14)을 형성하는 것을 특징으로 하는 건축물의 노출식 방수 시공방법.After the end made of silica sand (13) coating and exposed waterproof construction method of the building, characterized in that to form a top coat layer (14). 바닥면(1)의 위에 탈기관(3)이 설치된 부분을 제외한 프라이머(10)가 도포된 전체의 상부에 타르우레탄을 도포하여 1차 우레탄층(11)이 구성되어 있으면서 그 위에는 보강시트(20)를 구성하여 보강시트(20)의 부직포(22)에 우레탄이 스며들어 굳은 상태가 되며, 보강시트(20)의 연결되는 부분에는 유리섬유(30)가 접합되어 있으며, 그 위에 다시 폴리우레탄을 도포하여 2차 우레탄층(12)이 구성되면서, 유리섬유(30)와 보강시트(20)의 상면의 격자형 직포(23)에 우레탄이 스며들어 견고하게 일체화된 방수 시공구조에 있어서, Tar urethane is applied to the entire upper part of the primer 10, except for the part where the degassing pipe 3 is installed on the bottom surface 1, and thus the primary urethane layer 11 is formed, while the reinforcing sheet 20 is formed thereon. ) And the urethane is infiltrated into the nonwoven fabric 22 of the reinforcing sheet 20 to become a solid state, and the glass fiber 30 is bonded to the portion of the reinforcing sheet 20 to be connected to the polyurethane. In the waterproof construction structure that the urethane is infiltrated firmly by applying the secondary urethane layer 12 is applied to the lattice woven fabric 23 of the upper surface of the glass fiber 30 and the reinforcing sheet 20, 바닥면(1) 바로 위에 격자형으로 PVC 재질로 된 테이프(2)가 깔려 있고 그러한 테이프(2) 위와 바닥면(1) 전체에 프라이머(10)가 도포됨과 동시에 테이프(2)의 중첩된 면을 제거한 다음 제거된 부분에 탈기관(3)을 설치하여 구성된 것을 특징으로 하는 건축물의 노출식 방수 시공구조.A lattice-shaped tape (2) of PVC material is laid directly on the bottom (1), and the overlapping side of the tape (2) at the same time the primer (10) is applied on the tape (2) and the entire bottom (1). Exposed waterproof construction of the building, characterized in that by removing and then installing the degassing pipe (3) in the removed portion.
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KR101283325B1 (en) 2012-10-08 2013-07-09 (주)칠칠공사 Paint is coated with a waterproof sheet exposure using a waterproof construction method
KR101491280B1 (en) * 2013-07-19 2015-02-10 오미자 Water-proofing method of concrete structures
KR101675326B1 (en) * 2016-04-08 2016-11-11 박선연 Fabrication method for waterproof course using ventilator on wall and waterproof course including ventilator on wall
KR101866333B1 (en) 2017-03-10 2018-06-15 주식회사흥신이엔씨 Acrylic based exposure waterproofing sheet and construction method thereof
KR102132957B1 (en) * 2019-11-20 2020-07-10 곽희원 Waterproofing method using Ventilation panel
KR102152763B1 (en) * 2019-12-06 2020-09-07 김미자 Construction method for waterproof material with thermal shield function and structure constructed by same

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JP2005090161A (en) * 2003-09-19 2005-04-07 Chuyou Kim Joint portion connecting structure for waterproof sheets
KR20060043935A (en) * 2004-11-11 2006-05-16 송복헌 Mat type water proof sheet and its making method and carring out method
KR20060037311A (en) * 2006-04-11 2006-05-03 주식회사 한보엔지니어링 The complex joint materials for waterproof construction and waterproof fabric sheet waterproof construction method using complex joint materials of constructure

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101283325B1 (en) 2012-10-08 2013-07-09 (주)칠칠공사 Paint is coated with a waterproof sheet exposure using a waterproof construction method
KR101491280B1 (en) * 2013-07-19 2015-02-10 오미자 Water-proofing method of concrete structures
KR101675326B1 (en) * 2016-04-08 2016-11-11 박선연 Fabrication method for waterproof course using ventilator on wall and waterproof course including ventilator on wall
KR101866333B1 (en) 2017-03-10 2018-06-15 주식회사흥신이엔씨 Acrylic based exposure waterproofing sheet and construction method thereof
KR102132957B1 (en) * 2019-11-20 2020-07-10 곽희원 Waterproofing method using Ventilation panel
KR102152763B1 (en) * 2019-12-06 2020-09-07 김미자 Construction method for waterproof material with thermal shield function and structure constructed by same

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