KR102210279B1 - Waterproof construction method that can detect leakage by using infrared device - Google Patents

Waterproof construction method that can detect leakage by using infrared device Download PDF

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KR102210279B1
KR102210279B1 KR1020180005116A KR20180005116A KR102210279B1 KR 102210279 B1 KR102210279 B1 KR 102210279B1 KR 1020180005116 A KR1020180005116 A KR 1020180005116A KR 20180005116 A KR20180005116 A KR 20180005116A KR 102210279 B1 KR102210279 B1 KR 102210279B1
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water
construction method
leaked
infrared device
waterproof construction
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KR20190086956A (en
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홍순성
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주식회사 휴먼건설
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G23/00Working measures on existing buildings
    • E04G23/02Repairing, e.g. filling cracks; Restoring; Altering; Enlarging
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M3/00Investigating fluid-tightness of structures
    • G01M3/02Investigating fluid-tightness of structures by using fluid or vacuum
    • G01M3/04Investigating fluid-tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M3/00Investigating fluid-tightness of structures
    • G01M3/38Investigating fluid-tightness of structures by using light

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Abstract

본 발명은 적외선기기를 이용하여 누수탐지가 가능한 방수 시공방법에 관한 것으로서, 건물의 천장 또는 벽체에 발생되는 누수를 탐지 시, 적외선기기를 이용하여 누수탐지하고 방수 처리하는 시공방법에 관한 것으로써, 건물의 천장 또는 벽체에 발생되는 누수를 탐지함에 있어 적외선기기를 이용하여 누수부분과 누수량을 확인하고, 확인된 누수부분을 처리함에 있어 타공작업 후, 파이프를 삽입하여 물이 자연 배출되도록 하고, 자연배출에도 잔존 누수에 대해서는 발포제를 이용하여 방수하는 적외선기기를 이용하여 누수탐지가 가능한 방수 시공방법에 관한 것이다.The present invention relates to a waterproof construction method capable of detecting leaks using an infrared device, and relates to a construction method of detecting and waterproofing leaks using an infrared device when detecting leaks occurring in the ceiling or wall of a building, In detecting leaks generated on the ceiling or wall of a building, use an infrared device to check the leaked part and the amount of water leaking, and in handling the confirmed leaking part, after drilling work, insert a pipe to allow water to be discharged naturally. It relates to a waterproof construction method capable of detecting leaks by using an infrared device that waterproofs with a foaming agent for residual leaks even in discharge.

Description

적외선기기를 이용하여 누수탐지가 가능한 방수 시공방법{Waterproof construction method that can detect leakage by using infrared device}Waterproof construction method that can detect leakage by using infrared device}

본 발명은 적외선기기를 이용하여 누수탐지가 가능한 방수 시공방법에 관한 것으로서, 건물의 천장 또는 벽체에 발생되는 누수를 탐지 시, 적외선기기를 이용하여 누수탐지하고 방수 처리하는 시공방법에 관한 것이다.The present invention relates to a waterproof construction method capable of detecting leaks using an infrared device, and to a construction method of detecting and waterproofing leaks using an infrared device when detecting leaks occurring in the ceiling or wall of a building.

우선 종래의 기술을 살펴보면,First of all, looking at the conventional technology,

일반적으로 황토는 광물인 점토광물의 총칭으로 황색 내지 갈색의 일종의 무기산화물의 혼합물로서 가열시 다량의 원적외선을 방출하는 세라믹의 일종으로 볼 수 있다.In general, loess is a generic term for clay minerals, which are minerals, and can be seen as a kind of ceramic that emits a large amount of far-infrared rays when heated as a mixture of yellow to brown inorganic oxides.

이러한 황토는 특히 원적외선 방출에 의하여 인체의 생체 세포를 활성화하여 신진대사를 촉진하며, 탈취, 제습, 살균 등 정화하는 성분으로도 오래전부터 널리 사용되었음이 알려져있다.It is known that such loess has been widely used for a long time as a cleansing component such as deodorization, dehumidification, sterilization, etc., and promotes metabolism by activating biological cells of the human body by emitting far-infrared rays.

최근에는 이러한 유익한 천연재료인 황토를 이용하여 건축재로서 채용하여 사용하는 경향이 많아지고 있는 실정이고, 이러한 황토를 이용한 방수기술 또는 건축물에 시공되는 최근 출원된 기술을 몇 가지 살펴보도록 한다.In recent years, there is a growing tendency to employ and use as a building material by using this beneficial natural material, ocher, and let's look at some of the recently applied technologies for waterproofing technology or construction using such ocher.

황토를 이용한 시공방법의 일례로서 대한민국특허 공개번호 제2005-101055호에 개시된 내용을 살펴보면, 천연황토를 이용하여 건축구조물의 내 외벽면, 바닥면 또는 천정면을 시공한 후에 황토층의 건조과정에서 균열이 발생하는 문제를 해결하기 위해서 안출된 것으로 건축물의 표면에 초벌매개체가 되는 세멘콘크리트 또는 핸디 코트로 1차 도포 처리한 다음 2-3 ㎝ 두께의 천연황토 수화물을 도포, 처리하여 마감하는 시공방법에 관한 것이다.Looking at the contents disclosed in Korean Patent Publication No. 2005-101055 as an example of a construction method using loess, cracks in the drying process of the loess layer after construction of the inner and outer walls, floors, or ceiling surfaces of a building structure using natural loess It was devised to solve this problem, and it is applied to the surface of the building first with cemented concrete or handy coat, which is an unglazed object, and then applied and treated with 2-3 cm thick natural ocher hydrate to finish it. About.

이러한 시공방법은 종래에 황토층의 균열을 방지하기 위해서 황토에 혼합하는 화학물질이나 무기 또는 유기접착제를 사용하지 않는 것을 장점으로 기재하고 있으나 천연황토를 도포하기 전에 내 외장 바탕에 사용하는 초벌 또는 재벌 도포재를 반드시 사용해야 하므로 건축비가 증대되는 문제가 있다.This construction method is described as an advantage of not using chemical substances or inorganic or organic adhesives mixed with ocher in order to prevent cracking of the loess layer. Since ash must be used, there is a problem that the construction cost increases.

다른 일례의 종래기술을 살펴보면, 대한민국 특허공개공보 제1999-42934호는 바닥면에 방수필름과 단열재를 시공하고 그 상부에 발열체를 부설한 다음 황토를 도포하고 황토에 무기질 또는 유기질 접착제를 혼합하여 이루어진 조성물을 발열체 상부에 도포 시공하는 기술에 관한 것이다.Looking at another example of the prior art, Korean Patent Laid-Open Publication No. 1999-42934 is made by constructing a waterproof film and an insulation material on the floor, laying a heating element on the top, and then applying loess and mixing an inorganic or organic adhesive on the loess. It relates to a technology for applying the composition to the top of the heating element.

이러한 시공방법은 발열체를 부설하고, 방수필름과 단열재를 별도로 시공하고 접착제가 함유된 황토로 시공하는 방법에 관한 것이나, 방수필름을 별도로 사용해야 하는 문제가 있다.Such a construction method relates to a method of laying a heating element, separately constructing a waterproof film and an insulating material, and constructing it with red clay containing an adhesive, but there is a problem in that a waterproof film must be used separately.

또 다른 일례의 황토를 이용한 시공방법으로 대한민국특허 공개공보 제1998-84228호에는 황토 시공후 수분 증발로 인한 수축균열을 방지하기 위해서 황토에 수화알칼리 실리케이트, 카소린, 디아로화나프탈렌, 설폰산 등을 첨가제로서 첨가한 방수제를 이용하여 시공하는 기술에 관한 것이다.As another example of the construction method using loess, Korean Patent Laid-Open Publication No. 1998-84228 discloses hydrated alkali silicate, casoline, diarophanaphthalene, sulfonic acid, etc. on the loess in order to prevent shrinkage cracking due to evaporation of moisture after loess construction. It relates to a technology for construction using a waterproofing agent added as an additive.

이러한 시공방법은 황토에 고가의 실리케이트, 설폰산, 나프탈렌등의 화학제를 혼합 첨가하여 이루어진 것으로 시공 시 건축비가 상승하는 문제점이 있다.This construction method is made by mixing and adding expensive chemicals such as silicate, sulfonic acid, and naphthalene to the loess, and there is a problem that the construction cost increases during construction.

이에 종래에 등록번호 제10-0757929호의 ‘황토 방수 조성물 및 이를 이용하여 시공한 방수시공방법’과 등록번호 제20-0324973호의 ‘방수공사의 근적외선 융착공법 및 그 장치’가 개시되어 있지만, 상기한 문제점에 대해서는 여전히 개선되지 않고 있는 실정이다.Accordingly,'ocher waterproof composition and waterproof construction method constructed using the same' of registration number 10-0757929 and'near-infrared welding method of waterproofing work and its device' of registration number 20-0324973 have been previously disclosed. Problems are still not improved.

본 발명은 상기한 종래 기술의 문제점을 해결하기 위하여 안출해낸 것으로서, 건물의 천장 또는 벽체에 발생되는 누수를 탐지함에 있어 적외선기기를 이용하여 누수부분과 누수량을 확인하고, 확인된 누수부분을 처리함에 있어 타공작업 후, 파이프를 삽입하여 물이 자연 배출되도록 하고, 자연배출에도 잔존 누수에 대해서는 발포제를 이용하여 방수하는 적외선기기를 이용하여 누수탐지가 가능한 방수 시공방법을 제공함에 주안점을 두고 기술적 과제로서 완성해낸 것이다.The present invention was conceived to solve the problems of the prior art, and in detecting a leak occurring in the ceiling or wall of a building, the leaked part and the amount of leaked water were checked using an infrared device, and the identified leaked part was treated. As a technical task, with an emphasis on providing a waterproof construction method capable of detecting leaks using an infrared device that waterproofs the remaining leaks even in natural discharge by using a foaming agent after drilling work, and inserts a pipe to allow water to be discharged naturally. It was completed.

이에 본 발명은, 건물의 천장 또는 벽체에 발생되는 누수를 탐지하여 방수되도록 누수된 부분을 확인하는 누수확인단계와, 누수부분의 이물질을 박리하는 박리단계와, 박리된 부분의 표면을 매끄럽게 하는 그라인딩단계와, 누수부분을 방수 처리하는 누수처리단계와, 누수 처리 후 건조하는 건조단계 및 건조 후 도색하는 도색단계로 이루어지는 방수 시공방법에 있어서, 상기 누수확인단계에서는 적외선기기를 이용하여 누수부분과 누수량을 확인하고, 상기 누수처리단계에서는 누수부분에 타공작업 후 삽입하여 물을 배출하는 파이프가 구성되는 것을 특징으로 하는 적외선기기를 이용하여 누수탐지가 가능한 방수 시공방법을 그 기술적 특징으로 한다.Accordingly, the present invention provides a leak check step of detecting a leak generated in the ceiling or wall of a building to check the leaked part to be waterproof, a peeling step of peeling off foreign substances from the leaked part, and grinding of smoothing the surface of the peeled part. In the waterproof construction method comprising a step, a water leak treatment step of waterproofing the leaked part, a drying step of drying after water leakage, and a painting step of painting after drying, the leaking part and the amount of water leaked by using an infrared device in the leak checking step. In the water leakage treatment step, a waterproof construction method capable of detecting water leakage using an infrared device, characterized in that a pipe for discharging water by inserting after drilling work in the water leakage part, is constituted, is characterized by its technical feature.

본 발명에 따른 적외선기기를 이용하여 누수탐지가 가능한 방수 시공방법에 의하면, 천정 또는 벽체의 누수된 부분에 대한 누수탐지를 적외선기기를 이용하여 누수된 부분과 누수량을 손쉽게 확인할 수 있고, 방수 처리 시에는 누수된 위치 및 누수량에 따라 타공 후 파이프를 삽입하여 자연배출하거나 또는 페카와 발포제를 주입하여 추후 발생되는 누수를 미연에 방지할 수 있는 등 그 효과가 큰 발명이다.According to the waterproof construction method capable of detecting leaks using an infrared device according to the present invention, it is possible to easily check the leaked part and the amount of leakage using an infrared device to detect the leak of the leaked part of the ceiling or wall, and when waterproofing According to the location and amount of leakage, a pipe is inserted to discharge it naturally, or by injecting a peca and a foaming agent to prevent leakage occurring in the future.

도 1은 본 발명인 방수 시공방법에 대한 작업흐름도
도 2는 본 발명인 방수 시공방법에 대한 다른 실시 예를 나타내는 작업흐름도
1 is a work flow diagram for the inventors waterproof construction method
Figure 2 is a work flow diagram showing another embodiment of the inventors waterproof construction method

이하, 첨부되는 도면과 관련하여 상기 목적을 달성하기 위한 본 발명의 바람직한 구성 및 작용에 대하여 도 1, 도 2를 참고로 하여 설명하면 다음과 같다.Hereinafter, a preferred configuration and operation of the present invention for achieving the above object will be described with reference to FIGS. 1 and 2 with reference to the accompanying drawings.

우선 본 발명을 설명하기에 앞서 그 구성을 도 1, 도 2를 참고하여 살펴보면, First, prior to describing the present invention, a configuration thereof will be described with reference to FIGS. 1 and 2,

본 발명인 방수 시공방법은 건물의 천장 또는 벽체에 발생되는 누수를 탐지하여 방수되도록 누수된 부분을 확인하는 누수확인단계와, 누수부분의 이물질을 박리하는 박리단계와, 박리된 부분의 표면을 매끄럽게 하는 그라인딩단계와, 누수부분을 방수 처리하는 누수처리단계와, 누수 처리 후 건조하는 건조단계 및 건조 후 도색하는 도색단계로 이루어지는 방수 시공방법에 있어서, 상기 누수확인단계에서는 적외선기기를 이용하여 누수부분과 누수량을 확인하고, 상기 누수처리단계에서는 누수부분에 타공작업 후 삽입하여 물을 배출하는 파이프가 구성된다.The waterproof construction method of the present invention includes a leak check step of detecting a leak occurring in the ceiling or wall of a building to check the leaked part to be waterproof, a peeling step of peeling off foreign substances in the leaked part, and smoothing the surface of the peeled part. In the waterproof construction method comprising a grinding step, a water leak treatment step of waterproofing a leaked part, a drying step of drying after water leakage, and a painting step of painting after drying, wherein the leak checking step uses an infrared device to The amount of water leakage is checked, and in the water leakage treatment step, a pipe is constructed to discharge water by inserting it into the water leakage part after drilling.

상기 누수처리단계에서 파이프 삽입 후, 누수량에 따라 페카심기, 약액투입 및 발포제주입을 순차적으로 실행한다.After the pipe is inserted in the water leakage treatment step, a pecca planting, chemical injection, and foaming agent injection are sequentially performed according to the amount of leakage.

상기 건조단계 후, 누수확인단계를 진행하여 누수 확인 시, 노출된 페카와 발포제를 제거한다.After the drying step, the leak check step is performed to remove the exposed peca and the foaming agent when the leak is checked.

상기한 바와 같이 구성되는 본 발명을 더욱 상세하게 설명하면,When describing the present invention configured as described above in more detail,

우선, 종래의 방수 시공방법은 누수를 확인하는 누수확인단계와, 누수부분의 이물질을 박리하는 박리단계와, 박리된 부분의 표면을 매끄럽게 하는 그라인딩단계와, 누수부분을 방수 처리하는 누수처리단계와, 누수 처리 후 건조하는 건조단계 및 건조 후 도색하는 도색단계로 이루어진다.First of all, the conventional waterproof construction method includes a leak check step of checking for leaks, a peeling step of peeling off foreign substances from the leaked part, a grinding step of smoothing the surface of the peeled part, and a water leak treatment step of waterproofing the leaked part. , A drying step of drying after water leakage treatment and a painting step of painting after drying.

상기 단계는 천정 또는 벽체의 누수된 부분을 탐사하여 방수하는 시공방법에 대해 일반적으로 사용되고 있는 단계이다.This step is a step generally used for a construction method of waterproofing by detecting a leaked part of a ceiling or wall.

이에, 본 발명인 방수 시공방법에 대해 설명하면,Thus, when describing the waterproof construction method of the present inventor,

누수확인단계에서는 적외선기기를 이용하여 누수부분과 누수량을 확인한다.In the leak check step, the leaked part and the amount of leak are checked using an infrared device.

상기 적외선기기를 이용하게 되면, 누수 되지 않은 부분에는 붉은색으로 표시되고, 누수부분에 대해 파란색으로 표시된다. 이는 적외선기기를 이용하여 누수부분을 확인하기 위함이다.When the infrared device is used, portions that are not leaked are indicated in red, and areas that are not leaked are indicated in blue. This is to check the leaked part using an infrared device.

박리단계에서는 상기 누수확인단계에서 확인된 누수부분 및 그 주변에 대한 이물질을 박리한다.In the peeling step, the leaked portion identified in the leak checking step and foreign matters around the leak are peeled off.

그라인딩단계에서는 박리된 부분 및 누수부분에 대해 표면을 매끄럽게 한다. 이때, 통상적으로는 그라인딩기기를 이용한다.In the grinding step, the surface is smoothed against the peeled portion and the leaking portion. At this time, a grinding machine is usually used.

누수처리단계에서는 누수부분을 확인 후, 상기 누수부분의 벽체에 타공작업을 진행한다. 이때, 타공하는 깊이는 천정 또는 벽체의 두께에 따라 달리 한다.In the water leakage treatment step, after confirming the water leakage part, a drilling work is performed on the wall of the water leakage part. At this time, the perforation depth varies depending on the thickness of the ceiling or wall.

상기 타공작업이 완료되면, 타공부분에 누수된 물을 외부로 배출하는 파이프를 삽입한다.When the perforation work is completed, a pipe for discharging the leaked water to the outside is inserted into the perforated portion.

상기 파이프는 5 ~ 10cm 정도의 깊이로 삽입하는데, 이는 누수된 부분의 위치 또는 누수정도에 따라 가변될 수 있는 깊이이다.The pipe is inserted to a depth of about 5 to 10 cm, which is a depth that can be varied depending on the location or degree of the leak.

상기 누수처리단계에서 타공부분에 파이프 삽입이 완료되면, 누수된 량에 따라 페카를 심고, 상기 페카의 내부로 약액을 투입한 후에 발포제를 주입하는 것을 순차적으로 실행한다.When the insertion of the pipe into the perforated portion in the water leakage treatment step is completed, the peka is planted according to the amount of leakage, and the chemical solution is injected into the peka, and then the foaming agent is sequentially performed.

건조단계에서는 상기 누수처리 후, 12 ~ 48시간 사이에 건조작업을 진행하게 되는데, 이때에는 자연건조를 실행한다.In the drying step, the drying operation is performed between 12 and 48 hours after the water leakage treatment, and in this case, natural drying is performed.

도색단계에서는 상기 건조단계 후, 12 ~ 24시간 사이에 도색작업을 진행하게 된다.In the painting step, after the drying step, the painting operation is performed between 12 and 24 hours.

이때, 방수 시공한 부분의 상태에 따라 박리단계와 그라인딩단계를 진행한 후, 도색단계를 진행할 수도 있다.In this case, after performing the peeling step and the grinding step according to the state of the waterproofed part, the painting step may be performed.

상기한 방수 시공방법의 단계 중에서 상기 건조단계 후, 누수확인단계를 진행한다.Among the steps of the waterproof construction method, after the drying step, a leak check step is performed.

이때, 누수확인은 상기 누수확인단계에서와 동일하게 진행하며, 누수 확인이 되지 않으면 도색단계로 넘어가지만, 잔존 누수가 확인 시에는 노출된 페카와 발포제를 제거한다.At this time, the leak check proceeds in the same manner as in the leak check step, and if the leak is not checked, the process goes to the painting step, but when the residual leak is checked, the exposed peca and the foaming agent are removed.

상기에서 누수가 확인되어 페카와 발포제를 제거한 후에는 잔존누수에 대해 자연건조가 진행되도록 하고, 이후에는 도색단계로 넘어가게 된다.After the leak is confirmed and the pecca and the foaming agent are removed, the residual leak is allowed to naturally dry, and after that, the process proceeds to the painting step.

이는 잔존누수의 양이 많지 않았을 상황이고, 타공된 부분이 페카와 발포제로 막힘 되어 있어 잔존누수가 외부로 표출되지 않을 상황임으로써, 잔존누수에 대해서는 자연건조가 되도록 하기 위함이다.This is a situation in which the amount of residual leakage may not have been large, and the residual leakage is not exposed to the outside because the perforated part is clogged with Peka and foaming agent, so that the residual leakage can be naturally dried.

상기와 같은 본 발명에 따르면, 천정 또는 벽체의 누수된 부분에 대한 누수탐지를 적외선기기를 이용하여 누수된 부분과 누수량을 손쉽게 확인할 수 있고, 방수 처리 시에는 누수된 위치 및 누수량에 따라 타공 후 파이프를 삽입하여 자연배출하거나 또는 페카와 발포제를 주입하여 추후 발생되는 누수를 미연에 방지할 수 있다.According to the present invention as described above, the leak detection for the leaked part of the ceiling or wall can be easily checked using an infrared device, and when waterproofing, the pipe after drilling according to the leaked location and the amount of leaking It can be discharged naturally by inserting or by injecting Peka and a foaming agent to prevent future leakage.

Claims (3)

건물의 천장 또는 벽체에 발생되는 누수를 적외선기기를 이용하여 누수수분, 누수량 및 누수된 부분을 확인하는 누수확인단계와, 누수부분의 이물질을 박리하는 박리단계와, 박리된 부분의 표면을 매끄럽게 하는 그라인딩단계와, 누수부분을 방수 처리하는 누수처리단계와, 누수 처리 후 건조하는 건조단계 및 건조 후 노출된 페카와 발포제를 제거하고 도색하는 도색단계로 이루어지는 방수 시공방법에 있어서,
상기 누수처리단계에서는,
누수 확인된 부분에 타공 작업하고, 타공된 부분에 파이프를 삽입하여 물을 배출하며, 상기 파이프를 통해 물의 배출이 완료되면 페카를 심고, 상기 페카의 내부를 통해 약액을 투입한 후에 발포제주입을 순차적으로 실행하고,
상기 건조단계에서는,
누수된 부분을 처리 후, 12 ~ 48시간동안 자연건조 하는 것을 특징으로 하는 적외선기기를 이용하여 누수탐지가 가능한 방수 시공방법.
Leakage check step of checking the leaked water, amount of water and leaked parts using an infrared device for leaking water generated on the ceiling or wall of the building, a peeling step of peeling off foreign substances in the leaked part, and smoothing the surface of the peeled part. In the waterproof construction method comprising a grinding step, a water leak treatment step of waterproofing the leaked part, a drying step of drying after the leak treatment, and a painting step of removing and painting exposed peca and foaming agent after drying,
In the water leakage treatment step,
Perforation is performed on the part where leakage is confirmed, and water is discharged by inserting a pipe into the perforated part.When the discharge of water through the pipe is completed, a peka is planted, and a chemical solution is injected through the inside of the peka, followed by injection of foaming agent. Run with
In the drying step,
A waterproof construction method capable of detecting leaks by using an infrared device, characterized in that after treating the leaked part, it is naturally dried for 12 to 48 hours.
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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200413585Y1 (en) * 2006-01-24 2006-04-07 주식회사 오카스 Hydrostat system using an infrared sensor
KR100677899B1 (en) * 2006-04-11 2007-02-06 주식회사 위드콘 Method for repairing crack of construction structure
KR101000497B1 (en) * 2010-09-14 2010-12-14 (주)실리칼플로어 The concrete injection repairing agent and method for confirmation structure's inside air gap and waterstops using thereof

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200413585Y1 (en) * 2006-01-24 2006-04-07 주식회사 오카스 Hydrostat system using an infrared sensor
KR100677899B1 (en) * 2006-04-11 2007-02-06 주식회사 위드콘 Method for repairing crack of construction structure
KR101000497B1 (en) * 2010-09-14 2010-12-14 (주)실리칼플로어 The concrete injection repairing agent and method for confirmation structure's inside air gap and waterstops using thereof

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