WO2015137701A1 - Device for blocking rain and preventing falling of snow and icicle for rooftop of building - Google Patents

Device for blocking rain and preventing falling of snow and icicle for rooftop of building Download PDF

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Publication number
WO2015137701A1
WO2015137701A1 PCT/KR2015/002300 KR2015002300W WO2015137701A1 WO 2015137701 A1 WO2015137701 A1 WO 2015137701A1 KR 2015002300 W KR2015002300 W KR 2015002300W WO 2015137701 A1 WO2015137701 A1 WO 2015137701A1
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WO
WIPO (PCT)
Prior art keywords
building
snow
dimensional structure
column
roof
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PCT/KR2015/002300
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French (fr)
Korean (ko)
Inventor
이성원
Original Assignee
유지씨 주식회사
이성원
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Application filed by 유지씨 주식회사, 이성원 filed Critical 유지씨 주식회사
Publication of WO2015137701A1 publication Critical patent/WO2015137701A1/en

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    • 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
    • E04D13/10Snow traps ; Removing snow from roofs; Snow melters
    • 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
    • E04D13/15Trimming strips; Edge strips; Fascias; Expansion joints for roofs
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D3/00Roof covering by making use of flat or curved slabs or stiff sheets
    • E04D3/40Slabs or sheets locally modified for auxiliary purposes, e.g. for resting on walls, for serving as guttering; Elements for particular purposes, e.g. ridge elements, specially designed for use in conjunction with slabs or sheets
    • E04D3/405Wall copings

Definitions

  • the present invention relates to rainwater blocking and snow and icicle fall prevention device for building roofs, and more particularly to prevent the leakage of rainwater that can occur on the roof of the building and falling accidents caused by accumulated snow.
  • rainwater blocking and snow and icicle fall prevention devices for rooftop buildings are particularly to prevent the leakage of rainwater that can occur on the roof of the building and falling accidents caused by accumulated snow.
  • buildings such as single and town houses, villas, apartments, schools, officetels, and public institutions have roofed buildings, such as gable roof types, and buildings without roofs.
  • FIG. 1 is a side view schematically showing a rooftop wall of a typical high-rise building, and (b) briefly shows a rooftop wall of a building in which a rooftop wall of a typical high-rise building is bent inward.
  • FIG. 2A is a side view briefly illustrating a rooftop wall of a building constructed in the form of a gable roof, in which all rooftop rails 10 of the building are made of concrete walls 11.
  • (B) is a side view that briefly shows the handrail of a building in which the rooftop railing 10 of the building is constructed of metal rods 12. Each common point is that rainwater is not blocked by the roof but is permeated into the inner wall of the building as it is. It was constructed as a rooftop railing structure.
  • the plate for blocking rainwater may be fixed to the wall surface 11 of the roof railing, but in this case, there was inconvenience and difficulty in carrying out the repair work (cleaning, painting) of the building.
  • most of the high-rise building cleaning and painting work is carried out manually by the worker to the moon scaffolding, the rope that holds the moon scaffolding can not be sent down normally due to the plate, the plate is crushed by the rope, etc. A problem has occurred.
  • the object of the present invention is to provide a rainwater blocking device for the rooftop of a building that can prevent human accidents caused by falling snow or icicles, and vehicle damage in advance, and to prevent falling snow and icicles.
  • Another object of the present invention is to be able to easily install a photovoltaic power plant on the roof of a building to use the energy in the building.
  • a fastening groove 110 is formed in the upper side so that the upper support 200 can be inserted into and fixed. At the same time, the upper support 200 and the lower support 100 may be screwed to the inner top of the fastening groove 110.
  • the female screw 120 is formed so that the lower column 100 is integrally formed with a base plate 130 having a plurality of long holes 131 formed thereon so that the lower column 100 can be firmly fixed on the roof.
  • the male thread portion 210 corresponding to the female screw portion 120 of the lower column 100 is formed on the lower side to facilitate height adjustment
  • the upper surface 200 is integrally formed with a flat plate 220 having one or more fastening holes 221 formed thereon, and the left and right ends of the flat plate 220 may be inserted at predetermined intervals.
  • Leave and banding process to form a step portion 310 A mounting groove 320 is formed at one side thereof so that the upper column 200 can be coupled to the center, and at one side of the mounting groove 320, a coupling hole corresponding to the fastening hole 221 of the flat plate 220 is formed.
  • At least one mounting plate 300 having at least 330 formed therein, and the entire structure is made of a three-dimensional structure, the bottom surface 410 of the three-dimensional structure is formed in a horizontal shape, the top surface 420 is the inner direction of the building While formed to be inclined at a predetermined angle, the side portion 430 connecting the upper surface 420 and the lower surface 410 is formed of any one of a rectangular or inclined curved shape to block the rain water and building snow. It characterized in that it comprises a three-dimensional structure 400 to guide to fall in the outward direction.
  • the three-dimensional structure 400 is composed of a straight structure 401 or a corner structure 402, the straight structure 401 is made of a structure in which the front, the rear is open, the corner structure 402 is a right angle direction At the same time it is opened in any one direction can be connected in a line in a state in which the extended expansion portion 450 is formed in close contact with the front, rear direction, it can be installed in any structure selected when connected in series do.
  • the three-dimensional structure 400 is characterized in that at least one or more reinforcement 460 may be configured to prevent the drooping in the downward direction.
  • the bottom surface 410 of the three-dimensional structure 400 is the end of the guide piece 440 for preventing water from flowing into the surface of the bottom surface and guide the water to fall in the inner direction of the building at the bottom direction It is characterized in that it is formed to protrude.
  • the mold 600 is airtight Rubber or rubber is applied so that it can be maintained.
  • the mounting plate 300 and the three-dimensional structure 400 is characterized in that the solid integrally fixed.
  • Rainwater blocking device for the roof of the building provided by the present invention and the fall prevention device of snow and icicles can prevent the water leakage by blocking the rainwater is penetrated into the interior of the building, in particular, accidents caused by snow and icicles in winter There is an effect that can prevent the vehicle damage accident in advance.
  • the solar cell can be easily mounted on the upper surface, so that the residents of the building can use the electric energy generated from the solar cell facilities to provide convenience of using the electricity.
  • 1 and 2 is a side view briefly showing a rooftop railing structure of a conventional building
  • FIG. 3 is a perspective view showing a preferred embodiment of the present invention
  • Figure 4 is an exploded perspective view showing a preferred embodiment of the present invention
  • FIG. 5 is a front view showing a state of use showing an embodiment of the present invention
  • FIG. 6 is a plan view showing a state of use of the preferred embodiment of the present invention.
  • FIG. 7 is a plan view showing a state where the solar cell is installed
  • FIG. 8 is a perspective view showing another embodiment of the present invention.
  • the rainwater blocking device for the rooftop of the present invention and the fall prevention device S of snow and icicles are largely mounted on the bottom of the roof and the lower column 100, and the lower column 100.
  • Is connected to the upper column 200 easy to adjust the height and the three-dimensional structure 400 and the three-dimensional structure to flow down to the inner direction of the building not only rainwater but also water generated by melting the snow at the same time firmly It consists of a mounting plate 300 to be fixed.
  • the lower support 100 has a fastening groove 110 is formed so that the upper support 200 is inserted and fixed inside the upper side, and at the same time, the upper support 200 and the lower end at the inner upper end of the fastening groove 110.
  • the female threaded portion 120 is formed so that the support 100 may be screwed, while the base plate 130 having a plurality of long holes 131 is formed at the bottom thereof so that the lower column 100 may be firmly fixed on the roof. It is formed integrally.
  • the lower column 100 may be configured in the form of a circle or polygon, but in consideration of the height adjustment with the upper column 200, the circular shape having a pipe shape is efficient.
  • the upper support 200 is inserted into the fastening groove 110 of the lower support 100, the male screw portion 210 corresponding to the female screw portion 120 of the lower support 100 is formed on the lower side to adjust the height While facilitating this, the flat plate 220 having one or more fastening holes 221 is formed on the top surface thereof.
  • the female threaded portion 120 of the lower column 100 and the male threaded portion 210 of the upper column 200 may be changed in position.
  • the mounting plate 300 is a part of the left and right ends are bent at a predetermined interval so that the flat plate 220 can be inserted to form a stepped portion 310, and the upper support 200 is coupled to the center thereof.
  • At one side of the mounting groove 320 is formed to be open at one side of the mounting groove 320 and at least one coupling long hole 330 corresponding to the fastening hole 221 of the flat plate 220 is formed.
  • the step height of the step portion 310 is satisfactory if the level of the plate plate 220 does not interfere with the entry and retraction on the basis of the thickness of the plate plate 220, but need not be loose.
  • the three-dimensional structure 400 is the front, the rear is open is made of a three-dimensional structure as a whole, the bottom surface 410 of the three-dimensional structure is formed in a horizontal type, the top surface 420 is the inner direction of the building It is formed to be inclined at an angle.
  • the side surface portion 430 connecting the upper surface 420 and the lower surface 410 is either a rectangular shape as shown in FIG. 8 or a curved shape inclined as shown in FIGS. 3 and 5. Consists of one shape and is configured to block rainwater and fall snow in the outward direction of the building.
  • the horizontal shape of the bottom surface 410 and the side portion 430 is formed in a curved shape to minimize the effect of the wind, when rain is rained by the top surface 420 is formed obliquely the building It will flow in the direction of the rainwater is the final drainage through the rain pipe installed inside the building.
  • the bottom surface 410 of the three-dimensional structure 400 is the end of the guide piece 440 for preventing water from flowing into the surface of the bottom surface and guide the water to fall in the inner direction of the building at the bottom direction As it is formed to protrude into the water is naturally introduced into the interior of the building.
  • the three-dimensional structure 400 may be divided into a straight structure 401 that can be disposed in a straight section and a corner structure 402 that can be disposed in a corner portion, as shown in FIG.
  • Corner structure 402 is made of a structure that is opened in a right angle direction
  • the straight structure 401 is made of a structure in which the front, the rear is opened, while in any one direction is formed an expanded extension 450 is formed, It may be connected in a line in a state of being in close contact in the rear direction.
  • connection fixing when connected in a line installation may be installed in any structure selected according to the structure of the building, in the inside of the expansion portion 450 to maintain the airtight for each three-dimensional structure unit during the installation of the rubber packing 451 While this is fixed, it is desirable to minimize the flow and distortion by the connection fixing to be in the form of interference fit.
  • At least one reinforcing bar 460 may be configured inside the three-dimensional structure 400 so as to prevent a drooping phenomenon in a downward direction.
  • the upper surface 420 of the three-dimensional structure, as shown in Figures 6 to 7 to prevent the three-dimensional structure is distorted and at the same time the mold 600 in at least two places so that the solar cell 500 can be selectively mounted in the future Is fixed, the mold 600 is rubber or rubber is applied so that it can be kept airtight.
  • the mold 600 may be utilized as a fixing bracket for fixing the solar cell when installing the solar cell 500 according to the user.
  • the mounting plate 300 and the three-dimensional structure 400 can be easily and quickly assembly and installation process in the field by being firmly fixed to the integral.
  • the lower column 100 is fixed by using an anchor bolt.
  • the plate plate 220 fixed to the upper end of the upper column 200 is fixed to the bottom surface of the three-dimensional structure 400 After matching the mounting groove 320 of the mounting plate 300, and pushed in the horizontal direction so that the three-dimensional structure 400 is seated on the top of the flat plate 220.
  • the height can be adjusted by rotating the upper column 200, and when the height adjustment is completed, one unit work is completed by firmly fixing the flat plate and the three-dimensional structure using a bolt.
  • This work can be continuously installed on the entire rooftop, and by installing a three-dimensional structure, by rotating the upper circumference of the circle, the height can be adjusted and the direction can be easily adjusted. You can do it.
  • connection portion of the three-dimensional structure can be provided with an improved sealing state by using a finish such as silicon.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Roof Covering Using Slabs Or Stiff Sheets (AREA)
  • Buildings Adapted To Withstand Abnormal External Influences (AREA)

Abstract

The present invention relates to a device for blocking rain and preventing the falling of snow and icicles for a rooftop of a building, which can prevent a leakage occurring due to the rain on the rooftop of the building, an accident occurring due to the falling of the accumulated snow and the like, the device comprising: a lower column (100) having a fastening groove (110) formed at an upper inner side thereof such that an upper column (200) can be inserted, fastened, and fixed therein, a female screw part (120) formed at an inner upper end of the fastening groove (110) so as to allow the upper column (200) and the lower column (100) to be screw-coupled to each other, and a base plate (130) integrally formed at the bottom thereof and having a plurality of elongated holes (131) so as to enable the lower column (100) to be firmly secured on the rooftop; the upper column (200) formed to be inserted into the fastening groove (110) of the lower column (100), and having a male screw part (210) formed at the lower side thereof to correspond to the female screw part (120) of the lower column (100) so as to facilitate the adjustment of the height, and a flat plate (220) integrally formed at the upper end surface thereof and having at least one fastening hole (221); a mounting plate (300) of which a part of the left and right ends is bent at predetermined intervals so as to form a stepped part (310) such that the flat plate (220) can be inserted therein and the center has a mounting groove (320) of which one side is open such that the upper column (220) can be coupled therein, and which has one or more elongated coupling holes (330) corresponding to the fastening hole (221) of the flat plate (220) and formed at one side of the mounting groove (320); and a three-dimensional structure (400) which has an overall solid shape and of which a lower end surface (410) is horizontally formed, an upper end surface (420) is formed to be inclined at a predetermined angle toward the inner side of the building, and lateral side parts (430) connecting the upper end surface (420) and the lower end surface (410) are formed in the shape of a rectangle or a curved line having a slope so as to block the rain and to guide the snow to fall toward the outside of the building.

Description

건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치Rainwater blocking on rooftops of buildings and prevention of falling snow and icicles
본 발명은 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치에 관한 것으로서 더욱 상세히는 건물 옥상에서 발생 될 수 있는 빗물에 의한 누수현상 및 쌓인 눈에 의해 발생할 수 있는 낙하사고 등을 미연에 방지할 수 있는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치에 관한 것이다.The present invention relates to rainwater blocking and snow and icicle fall prevention device for building roofs, and more particularly to prevent the leakage of rainwater that can occur on the roof of the building and falling accidents caused by accumulated snow. To rainwater blocking and snow and icicle fall prevention devices for rooftop buildings.
일반적으로 단독 및 연립 주택, 빌라, 아파트, 학교, 오피스텔, 공공기관 등의 건물은 박공 지붕형식과 같이 지붕이 설치된 건물도 있고, 지붕이 설치되지 않은 건물도 있다.In general, buildings such as single and town houses, villas, apartments, schools, officetels, and public institutions have roofed buildings, such as gable roof types, and buildings without roofs.
또한 박공 지붕형식으로 지붕(20)이 설치된 경우에도 지붕의 끝단이 건물의 외측 끝단을 덮을 정도로 전면 방향으로 돌출되지 않아 신축 된지 약 2 내지 3년만 경과하면 지붕 및 난간의 끝단을 통해 누수 현상이 발생하기 시작한다.In addition, even when the roof 20 is installed in the form of a gable roof, leakage occurs through the ends of the roof and railings after about 2 to 3 years since the roof end does not protrude in the front direction to cover the outer end of the building. To start.
구체적으로 살펴보면 도 1의 (가)는 일반적인 고층 건물의 옥상 벽면을 간략하게 도시한 측면도이며, (나)는 일반적인 고층 건물 중 옥상 벽면이 내측 방향으로 꺾여지게 시공된 건물의 옥상 벽면을 간략하게 도시한 측면도이고, 도 2의 (가)는 박공 지붕 형식으로 시공된 건물의 옥상 벽면을 간략하게 도시한 측면도로써 모두 건물의 옥상 난간(10)이 콘크리트 벽면(11)으로 이루어진 경우이며, 도 2의 (나)는 건물의 옥상 난간(10)이 금속 봉(12)으로 시공된 건물의 난간을 간략하게 도시한 측면도로써 각각의 공통점은 빗물이 지붕에 의해 차단되지 못하고 그대로 건물의 내측 벽면으로 스며들 수밖에 없는 옥상 난간 구조로 시공되었다는 것이다.Specifically, (a) of FIG. 1 is a side view schematically showing a rooftop wall of a typical high-rise building, and (b) briefly shows a rooftop wall of a building in which a rooftop wall of a typical high-rise building is bent inward. FIG. 2A is a side view briefly illustrating a rooftop wall of a building constructed in the form of a gable roof, in which all rooftop rails 10 of the building are made of concrete walls 11. (B) is a side view that briefly shows the handrail of a building in which the rooftop railing 10 of the building is constructed of metal rods 12. Each common point is that rainwater is not blocked by the roof but is permeated into the inner wall of the building as it is. It was constructed as a rooftop railing structure.
실제 상기와 같은 종래 건축물의 난간 대부분은 신축 된지 2 내지 3년이 경과 하면, 대부분 벽면을 통해 누수현상이 발생하고 있었으며, 그 원인은 빗물을 충분히 차단하지 못하는 기존 건축물의 구조 때문임을 확인할 수 있었다.In fact, most of the railings of the conventional buildings as described above, when two or three years have been newly constructed, most of the railings were leaking through the walls, and it was confirmed that the cause was due to the structure of the existing building that could not sufficiently block rainwater.
이를 해결하고자 빗물을 차단하기 위한 판재를 옥상 난간의 벽면(11)에 고정시킬 수도 있겠으나, 이 경우 건물의 보수공사(청소, 도색)를 실시함에 불편함과 어려움이 있었다. 즉, 현재 대부분의 고층건물 청소 및 도색작업은 작업자가 달비계를 타고 수작업으로 진행하고 있는데 달비계를 견고하게 잡아주는 로프가 판재로 인해 정상적으로 내려보내지 못할 뿐만 아니라, 로프에 의해 판재가 찌그러지는 등의 문제점이 발생 되었다.In order to solve this problem, the plate for blocking rainwater may be fixed to the wall surface 11 of the roof railing, but in this case, there was inconvenience and difficulty in carrying out the repair work (cleaning, painting) of the building. In other words, most of the high-rise building cleaning and painting work is carried out manually by the worker to the moon scaffolding, the rope that holds the moon scaffolding can not be sent down normally due to the plate, the plate is crushed by the rope, etc. A problem has occurred.
그리고 상기 도 1 내지 2에서 도시된 난간 및 지붕구조에서는 많은 눈이 쌓일 경우 쌓인 눈의 낙하로 인한 차량파손 및 인명 안전사고와, 고드름의 낙하로 인한 차량파손 및 인명 안전사고가 발생 되는 등의 문제점이 있었다.And in the railing and roof structure shown in Figures 1 to 2 problems such as vehicle damage and life safety accidents due to falling snow piled up a lot of snow, vehicle damage and life safety accidents caused by falling icicles There was this.
이에 본 발명에서는 상기와 같은 문제점을 일소키 위해 안출한 것으로, 빗물에 의한 건물의 누수를 사전에 차단함으로써 기본적인 방수기능을 수행함과 동시에 향후 건물의 도색 및 청소 등의 보수 공사시 유연하게 대처할 수 있음은 물론, 쌓인 눈이나 고드름의 낙하에 의한 인명사고와, 차량파손을 미연에 방지할 수 있는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치를 제공함에 그 목적이 있다.Therefore, in the present invention, to solve the problems as described above, by preventing the water leakage of the building by rain in advance to perform a basic waterproof function and at the same time can flexibly cope with the maintenance work such as painting and cleaning of the building in the future. Of course, the object of the present invention is to provide a rainwater blocking device for the rooftop of a building that can prevent human accidents caused by falling snow or icicles, and vehicle damage in advance, and to prevent falling snow and icicles.
본 발명의 또 다른 목적은 건물의 옥상에 태양광 발전시설을 용이하게 설치할 수 있도록 함으로써 해당건물에서 그 에너지를 사용할 수 있도록 함에 있다.Another object of the present invention is to be able to easily install a photovoltaic power plant on the roof of a building to use the energy in the building.
상기와 같은 목적을 실현하기 위한 본원 발명의 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치(S)는,Rainwater interception for the roof of the building and snow and icicle fall prevention device (S) of the present invention for achieving the above object,
상측 내부에는 상부지주(200)가 삽입되어 체결 고정될 수 있도록 체결홈(110)이 형성됨과 동시에 그 체결홈(110)의 내측 상단에는 상부지주(200)와 하부지주(100)가 나사결합될 수 있도록 암 나사부(120)가 형성되는 한편, 저면에는 하부지주(100)가 옥상에 견고하게 고정될 수 있도록 다수개의 장공(131)이 형성된 베이스플레이트(130)가 일체형으로 형성된 하부지주(100)와, 상기 하부지주(100)의 체결홈(110)에 삽입 구성되며, 하부지주(100)의 암나사부(120)에 대응하는 수나사부(210)가 하측에 형성되어 높낮이 조절이 용이하도록 하는 한편, 상단 면에는 하나 이상의 체결공(221)이 형성된 평판플레이트(220)가 일체형으로 형성된 상부지주(200)와, 상기 평판플레이트(220)가 삽입될 수 있도록 좌, 우측 끝단 일부는 소정의 간격을 두고 밴딩 처리되어 단차부(310)가 형성되며, 중심에는 상부지주(200)가 결합될 수 있도록 일측이 개구된 장착홈(320)이 형성됨과 동시에 그 장착홈(320)의 일측에는 평판플레이트(220)의 체결공(221)에 대응하는 결합 장공(330)이 하나 이상 형성된 장착플레이트(300)와, 전체가 입체형의 구조물로 이루어지되, 입체형을 이루는 구조물의 하단 면(410)은 수평형으로 형성되고, 상단 면(420)은 건물의 내측 방향으로 일정각도 경사지게 형성되는 한편, 상기 상단 면(420)과 하단 면(410)을 연결하는 측면부(430)는 직각형 또는 경사가 형성된 곡선형 중 어느 하나의 형상으로 이루어져 빗물의 차단 및 눈을 건물의 외측 방향으로 낙하 되도록 안내하는 입체형 구조물(400)을 포함하여 구성되는 것을 특징으로 한다.A fastening groove 110 is formed in the upper side so that the upper support 200 can be inserted into and fixed. At the same time, the upper support 200 and the lower support 100 may be screwed to the inner top of the fastening groove 110. The female screw 120 is formed so that the lower column 100 is integrally formed with a base plate 130 having a plurality of long holes 131 formed thereon so that the lower column 100 can be firmly fixed on the roof. And, it is inserted into the fastening groove 110 of the lower column 100, the male thread portion 210 corresponding to the female screw portion 120 of the lower column 100 is formed on the lower side to facilitate height adjustment, The upper surface 200 is integrally formed with a flat plate 220 having one or more fastening holes 221 formed thereon, and the left and right ends of the flat plate 220 may be inserted at predetermined intervals. Leave and banding process to form a step portion 310, A mounting groove 320 is formed at one side thereof so that the upper column 200 can be coupled to the center, and at one side of the mounting groove 320, a coupling hole corresponding to the fastening hole 221 of the flat plate 220 is formed. At least one mounting plate 300 having at least 330 formed therein, and the entire structure is made of a three-dimensional structure, the bottom surface 410 of the three-dimensional structure is formed in a horizontal shape, the top surface 420 is the inner direction of the building While formed to be inclined at a predetermined angle, the side portion 430 connecting the upper surface 420 and the lower surface 410 is formed of any one of a rectangular or inclined curved shape to block the rain water and building snow. It characterized in that it comprises a three-dimensional structure 400 to guide to fall in the outward direction.
또한 상기 입체형 구조물(400)은 직선형 구조물(401) 또는 코너형 구조물(402)로 구성되되, 직선형 구조물(401)은 전, 후면이 개방되는 구조로 이루어지며, 코너형 구조물(402)은 직각 방향으로 개방됨과 동시에 어느 한 방향은 확장된 확개부(450)가 형성되어 전, 후 방향으로 밀착된 상태로 일렬로 연결될 수 있으며, 일렬로 연결설치할 경우 선택된 임의의 구조로 설치될 수 있는 것을 특징으로 한다.In addition, the three-dimensional structure 400 is composed of a straight structure 401 or a corner structure 402, the straight structure 401 is made of a structure in which the front, the rear is open, the corner structure 402 is a right angle direction At the same time it is opened in any one direction can be connected in a line in a state in which the extended expansion portion 450 is formed in close contact with the front, rear direction, it can be installed in any structure selected when connected in series do.
또한 상기 입체형 구조물(400) 내측에는 하측 방향으로 쳐짐 현상을 방지할 수 있도록 적어도 하나 이상의 보강대(460)가 구성될 수 있는 것을 특징으로 한다.In addition, the three-dimensional structure 400 is characterized in that at least one or more reinforcement 460 may be configured to prevent the drooping in the downward direction.
또한 상기 입체형 구조물(400)의 하단 면(410) 끝단은 물이 하단 면의 표면으로 유입되는 것을 방지함과 동시에 물이 건물의 내측 방향으로 낙하 될 수 있도록 안내하는 유도편(440)이 하측 방향으로 돌출되게 형성되는 것을 특징으로 한다.In addition, the bottom surface 410 of the three-dimensional structure 400 is the end of the guide piece 440 for preventing water from flowing into the surface of the bottom surface and guide the water to fall in the inner direction of the building at the bottom direction It is characterized in that it is formed to protrude.
또한 상기 입체형 구조물의 상단 면(420)에는 입체형 구조물이 뒤틀리는 것을 방지함과 동시에 태양전지(500)가 장착될 수 있도록 하는 적어도 2개소에서 몰드(600)가 고정되되, 그 몰드(600)는 기밀유지가 될 수 있도록 고무 또는 고무가 도포 된 것을 특징으로 한다.In addition, at the top surface 420 of the three-dimensional structure to prevent the three-dimensional structure is twisted at the same time the mold 600 is fixed to at least two places that the solar cell 500 can be mounted, the mold 600 is airtight Rubber or rubber is applied so that it can be maintained.
또한 상기 장착플레이트(300)와 입체형의 구조물(400)은 일체형으로 견고하게 고정되는 것을 특징으로 한다.In addition, the mounting plate 300 and the three-dimensional structure 400 is characterized in that the solid integrally fixed.
본 발명에서 제공하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치는 빗물이 건물의 내부로 침투되는 것을 원천적으로 차단하여 누수현상을 방지할 수 있으며, 특히 겨울철 눈과 고드름에 의한 인명사고 및 차량파손 사고를 미연에 방지할 수 있는 효과가 있다.Rainwater blocking device for the roof of the building provided by the present invention and the fall prevention device of snow and icicles can prevent the water leakage by blocking the rainwater is penetrated into the interior of the building, in particular, accidents caused by snow and icicles in winter There is an effect that can prevent the vehicle damage accident in advance.
또한 상단 면으로 태양전지를 간편하게 장착할 수 있어 그 태양전지 시설물에서 발생 되는 전기에너지를 해당 건물의 입주민이 사용함으로써 전기 사용의 편익을 제공할 수 있는 효과가 있다.In addition, the solar cell can be easily mounted on the upper surface, so that the residents of the building can use the electric energy generated from the solar cell facilities to provide convenience of using the electricity.
도 1, 2는 종래 건물의 옥상 난간 구조를 간략하게 도시한 측면도1 and 2 is a side view briefly showing a rooftop railing structure of a conventional building
도 3은 본 발명의 바람직한 일실시 예를 보인 사시도3 is a perspective view showing a preferred embodiment of the present invention
도 4는 본 발명의 바람직한 일실시 예를 보인 분해사시도Figure 4 is an exploded perspective view showing a preferred embodiment of the present invention
도 5는 본 발명의 바람직한 일실시 예를 보인 사용상태 정면도5 is a front view showing a state of use showing an embodiment of the present invention
도 6은 본 발명의 바람직한 일실시 예를 보인 사용상태 평면도6 is a plan view showing a state of use of the preferred embodiment of the present invention
도 7은 태양전지가 설치된 상태를 도시한 사용상태 평면도7 is a plan view showing a state where the solar cell is installed
도 8은 본 발명의 또 다른 일실시 예를 보인 사시도8 is a perspective view showing another embodiment of the present invention
이하, 첨부된 도면 및 바람직한 실시 예에 따라 본 발명에서 제공하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치(S)를 설명하면 하기와 같다.Hereinafter, according to the accompanying drawings and preferred embodiments of the present invention will be described for the rain roof blocking and the fall prevention device (S) for snow and icicles provided by the present invention.
먼저 도 3 및 4에서 도시된 바와 같이 본원 발명의 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치(S)는 크게 옥상의 바닥에 장착고정되는 하부지주(100)와, 그 하부지주(100)와 연결되어 높낮이 조절이 용이한 상부지주(200) 및 빗물의 차단과 동시에 빗물뿐만 아니라 눈이 녹아서 생성되는 물까지 건물의 내측방향으로 흘러내리도록 하는 입체형 구조물(400) 및 그 입체형 구조물이 견고하게 고정되도록 해주는 장착플레이트(300)로 구성된다.First, as shown in FIGS. 3 and 4, the rainwater blocking device for the rooftop of the present invention and the fall prevention device S of snow and icicles are largely mounted on the bottom of the roof and the lower column 100, and the lower column 100. ) Is connected to the upper column 200 easy to adjust the height and the three-dimensional structure 400 and the three-dimensional structure to flow down to the inner direction of the building not only rainwater but also water generated by melting the snow at the same time firmly It consists of a mounting plate 300 to be fixed.
이때 상기 하부지주(100)는 상측 내부에 상부지주(200)가 삽입되어 체결 고정될 수 있도록 체결홈(110)이 형성됨과 동시에 그 체결홈(110)의 내측 상단에는 상부지주(200)와 하부지주(100)가 나사결합될 수 있도록 암 나사부(120)가 형성되는 한편, 저면에는 하부지주(100)가 옥상에 견고하게 고정될 수 있도록 다수개의 장공(131)이 형성된 베이스플레이트(130)가 일체형으로 형성된다.At this time, the lower support 100 has a fastening groove 110 is formed so that the upper support 200 is inserted and fixed inside the upper side, and at the same time, the upper support 200 and the lower end at the inner upper end of the fastening groove 110. The female threaded portion 120 is formed so that the support 100 may be screwed, while the base plate 130 having a plurality of long holes 131 is formed at the bottom thereof so that the lower column 100 may be firmly fixed on the roof. It is formed integrally.
또한 하부지주(100)는 원형 또는 다각형의 형태로 구성시킬 수 있으나, 상부지주(200)와의 높낮이 조절을 고려하여 파이프의 형상을 갖는 원형이 효율적이다.In addition, the lower column 100 may be configured in the form of a circle or polygon, but in consideration of the height adjustment with the upper column 200, the circular shape having a pipe shape is efficient.
또한 상기 상부지주(200)는 하부지주(100)의 체결홈(110)에 삽입 구성되며, 하부지주(100)의 암나사부(120)에 대응하는 수나사부(210)가 하측에 형성되어 높낮이 조절이 용이하도록 하는 한편, 상단 면에는 하나 이상의 체결공(221)이 형성된 평판플레이트(220)가 일체형으로 형성된다.In addition, the upper support 200 is inserted into the fastening groove 110 of the lower support 100, the male screw portion 210 corresponding to the female screw portion 120 of the lower support 100 is formed on the lower side to adjust the height While facilitating this, the flat plate 220 having one or more fastening holes 221 is formed on the top surface thereof.
상기 하부지주(100)의 암나사부(120)와, 상부지주(200)의 수나사부(210)는 서로 위치가 변경되어도 무방하다.The female threaded portion 120 of the lower column 100 and the male threaded portion 210 of the upper column 200 may be changed in position.
또한 상기 장착플레이트(300)는 평판플레이트(220)가 삽입될 수 있도록 좌, 우측 끝단 일부는 소정의 간격을 두고 밴딩 처리되어 단차부(310)가 형성되며, 중심에는 상부지주(200)가 결합 될 수 있도록 일측이 개구 된 장착홈(320)이 형성됨과 동시에 그 장착홈(320)의 일측에는 평판플레이트(220)의 체결공(221)에 대응하는 결합 장공(330)이 하나 이상 형성된다.In addition, the mounting plate 300 is a part of the left and right ends are bent at a predetermined interval so that the flat plate 220 can be inserted to form a stepped portion 310, and the upper support 200 is coupled to the center thereof. At one side of the mounting groove 320 is formed to be open at one side of the mounting groove 320 and at least one coupling long hole 330 corresponding to the fastening hole 221 of the flat plate 220 is formed.
상기 단차부(310)의 단차 높이는 평판플레이트(220)의 두께를 기준으로 평판플레이트(220)가 진입 및 후퇴함에 있어 간섭을 받지 않을 정도이면 만족하나, 굳이 헐거울 필요는 없다.The step height of the step portion 310 is satisfactory if the level of the plate plate 220 does not interfere with the entry and retraction on the basis of the thickness of the plate plate 220, but need not be loose.
또한 상기 입체형 구조물(400)은 전, 후면이 개방되어 전체가 입체형의 구조물로 이루어지며, 입체형을 이루는 구조물의 하단 면(410)은 수평형으로 형성되고, 상단 면(420)은 건물의 내측 방향으로 일정각도 경사지게 형성된다.In addition, the three-dimensional structure 400 is the front, the rear is open is made of a three-dimensional structure as a whole, the bottom surface 410 of the three-dimensional structure is formed in a horizontal type, the top surface 420 is the inner direction of the building It is formed to be inclined at an angle.
뿐만 아니라, 상기 상단 면(420)과 하단 면(410)을 연결하는 측면부(430)는 도 8에서 도시된 바와 같은 직각형 또는 도 3 및 도 5에서 도시된 바와 같이 경사가 형성된 곡선형 중 어느 하나의 형상으로 이루어져 빗물의 차단 및 눈을 건물의 외측 방향으로 낙하 되도록 구성된다.In addition, the side surface portion 430 connecting the upper surface 420 and the lower surface 410 is either a rectangular shape as shown in FIG. 8 or a curved shape inclined as shown in FIGS. 3 and 5. Consists of one shape and is configured to block rainwater and fall snow in the outward direction of the building.
특히, 상기 수평형으로 형성되는 하단 면(410)과 측면부(430)를 곡선형으로 형성시키는 것은 바람의 영향을 최소화하기 위한 것이며, 경사지게 형성되는 상단면(420)에 의해 비가 올 경우 빗물은 건물의 내측 방향으로 흘러가게 되고, 그 빗물은 건물 내부에 설치된 우수관을 통해 최종 배수처리되는 것이다.In particular, the horizontal shape of the bottom surface 410 and the side portion 430 is formed in a curved shape to minimize the effect of the wind, when rain is rained by the top surface 420 is formed obliquely the building It will flow in the direction of the rainwater is the final drainage through the rain pipe installed inside the building.
또한 겨울철 눈이 올 경우 눈은 그대로 상단 면(420)에 쌓이게 되고 눈인 녹을 때에도 물이 건물의 내측으로 흐르기 때문에 고드름이 생성되지 않음과 동시에 눈에 의한 하중을 신속히 감소시킬 수 있다.In addition, when snow comes in winter, snow is accumulated on the upper surface 420 as it is, and even when the snow melts, since water flows into the inside of the building, icicles are not generated and at the same time, the load due to snow can be reduced quickly.
또한 상기 입체형 구조물(400)의 하단 면(410) 끝단은 물이 하단 면의 표면으로 유입되는 것을 방지함과 동시에 물이 건물의 내측 방향으로 낙하 될 수 있도록 안내하는 유도편(440)이 하측 방향으로 돌출되게 형성됨에 따라 물은 자연스럽게 건물의 내측으로 유입되게 된다.In addition, the bottom surface 410 of the three-dimensional structure 400 is the end of the guide piece 440 for preventing water from flowing into the surface of the bottom surface and guide the water to fall in the inner direction of the building at the bottom direction As it is formed to protrude into the water is naturally introduced into the interior of the building.
또한 상기 입체형 구조물(400)은 도 6에서 도시된 바와 같이 직선구간에 배치될 수 있는 직선형 구조물(401)과, 코너부에 배치될 수 있는 코너형 구조물(402)로 구분될 수 있으며, 그 중 코너형 구조물(402)은 직각 방향으로 개방되는 구조로 이루어지며, 직선형 구조물(401)은 전, 후면이 개방되는 구조로 이루어지는 한편, 어느 한 방향은 확장된 확개부(450)가 형성되어 전, 후 방향으로 밀착된 상태로 일렬로 연결될 수 있다.In addition, the three-dimensional structure 400 may be divided into a straight structure 401 that can be disposed in a straight section and a corner structure 402 that can be disposed in a corner portion, as shown in FIG. Corner structure 402 is made of a structure that is opened in a right angle direction, the straight structure 401 is made of a structure in which the front, the rear is opened, while in any one direction is formed an expanded extension 450 is formed, It may be connected in a line in a state of being in close contact in the rear direction.
또한 일렬로 연결설치할 경우 건물의 구조에 따라 선택된 임의의 구조로 설치될 수 있으며, 연결설치시 각각의 입체형 구조물 단위별로 기밀유지를 하기 위해 확개부(450)의 내측에는 고무재질의 패킹(451)이 고정되는 한편, 연결고정은 억지끼움의 형태가 되도록 함으로써 유동 및 뒤틀림을 최소화함이 바람직하다.In addition, when connected in a line installation may be installed in any structure selected according to the structure of the building, in the inside of the expansion portion 450 to maintain the airtight for each three-dimensional structure unit during the installation of the rubber packing 451 While this is fixed, it is desirable to minimize the flow and distortion by the connection fixing to be in the form of interference fit.
또한 상기 입체형 구조물(400) 내측에는 하측 방향으로 쳐짐 현상을 방지할 수 있도록 적어도 하나 이상의 보강대(460)가 구성될 수 있다.In addition, at least one reinforcing bar 460 may be configured inside the three-dimensional structure 400 so as to prevent a drooping phenomenon in a downward direction.
또한 상기 입체형 구조물의 상단 면(420)에는 도 6 내지 7에서 도시된 바와 같이 입체형 구조물이 뒤틀리는 것을 방지함과 동시에 향후 선택적으로 태양전지(500)가 장착될 수 있도록 적어도 2개소에서 몰드(600)가 고정되되, 그 몰드(600)는 기밀유지가 될 수 있도록 고무 또는 고무가 도포 된다.In addition, the upper surface 420 of the three-dimensional structure, as shown in Figures 6 to 7 to prevent the three-dimensional structure is distorted and at the same time the mold 600 in at least two places so that the solar cell 500 can be selectively mounted in the future Is fixed, the mold 600 is rubber or rubber is applied so that it can be kept airtight.
특히, 몰드(600)는 사용자에 따라 태양전지(500)를 설치할 때 태양전지를 고정시킬 수 있는 고정 브라켓으로 활용할 수 있다.In particular, the mold 600 may be utilized as a fixing bracket for fixing the solar cell when installing the solar cell 500 according to the user.
또한 상기 장착플레이트(300)와 입체형의 구조물(400)은 일체형으로 견고하게 고정되도록 함으로써 현장에서 조립 및 설치과정을 간편하고 신속하게 할 수 있다.In addition, the mounting plate 300 and the three-dimensional structure 400 can be easily and quickly assembly and installation process in the field by being firmly fixed to the integral.
상기와 같은 특징을 갖는 본원 발명의 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치(S)를 건물의 옥상 바닥에 설치할 때는 먼저, 앵커볼트를 이용하여 하부지주(100)를 고정시킨다.When installing the rainwater blocking for the rooftop of the building having the features as described above and the fall prevention device (S) of snow and icicles on the rooftop of the building, first, the lower column 100 is fixed by using an anchor bolt.
상기와 같이 고정된 하부지주(100)에 상부지주(200)를 나사 결합시켜 고정시킨 다음, 상부지주(200)의 상단에 고정된 평판플레이트(220)가 입체형 구조물(400)의 저면에 고정된 장착플레이트(300)의 장착홈(320)에 일치되도록 한 후, 수평방향으로 밀어서 입체형 구조물(400)이 평판플레이트(220)의 상단에 안착 되도록 한다.After fixing the upper column 200 to the lower column 100 fixed as described above, the plate plate 220 fixed to the upper end of the upper column 200 is fixed to the bottom surface of the three-dimensional structure 400 After matching the mounting groove 320 of the mounting plate 300, and pushed in the horizontal direction so that the three-dimensional structure 400 is seated on the top of the flat plate 220.
상기와 같이 안착 되면, 상부지주(200)를 회전시켜 높낮이를 조절할 수 있으며, 높낮이 조절이 완료되면, 볼트를 이용하여 평판플레이트와 입체형 구조물을 견고하게 고정하여 하나의 단위작업이 완료된다. When seated as described above, the height can be adjusted by rotating the upper column 200, and when the height adjustment is completed, one unit work is completed by firmly fixing the flat plate and the three-dimensional structure using a bolt.
이와 같은 작업을 연속적으로 진행함으로써 옥상의 전체에 설치할 수 있으며, 하나의 입체형 구조물을 설치할 때마다 원형의 상부지주를 회전시킴으로써 높낮이 조절은 물론, 방향조절이 용이하기 때문에 작업자가 확개부에 억지 끼움을 할 수 있는 것이다.This work can be continuously installed on the entire rooftop, and by installing a three-dimensional structure, by rotating the upper circumference of the circle, the height can be adjusted and the direction can be easily adjusted. You can do it.
뿐만 아니라, 억지 끼움에 의해 기본적인 기밀유지 및 견고한 고정상태는 제공받을 수 있으며, 전체를 연결한 후 고정되는 몰드(600)에 의해 한번 더 견고한 고정상태를 제공받을 수 있음은 물론, 입체형 구조물(400) 마다 상, 하부 지주(200,100)가 받쳐주기 때문에 하향 쳐짐 현상까지 미연에 방지할 수 있다. 또한 입체형구조물의 연결부위에는 실리콘 등을 이용하여 마감처리를 함으로써 향상된 밀봉상태를 제공받을 수 있다.In addition, the basic airtightness and a firm fixed state can be provided by the interference fit, and can be provided once more solid fixed state by the mold 600 is fixed after connecting the whole, three-dimensional structure 400 Since the upper and lower struts 200 and 100 are supported by each), the downfalling phenomenon can be prevented in advance. In addition, the connection portion of the three-dimensional structure can be provided with an improved sealing state by using a finish such as silicon.

Claims (7)

  1. 상측 내부에는 상부지주(200)가 삽입되어 체결 고정될 수 있도록 체결홈(110)이 형성됨과 동시에 그 체결홈(110)의 내측 상단에는 상부지주(200)와 하부지주(100)가 나사결합될 수 있도록 암 나사부(120)가 형성되는 한편, 저면에는 하부지주(100)가 옥상에 견고하게 고정될 수 있도록 다수개의 장공(131)이 형성된 베이스플레이트(130)가 일체형으로 형성된 하부지주(100);A fastening groove 110 is formed in the upper side so that the upper support 200 can be inserted into and fixed. At the same time, the upper support 200 and the lower support 100 may be screwed to the inner top of the fastening groove 110. The female screw 120 is formed so that the lower column 100 is integrally formed with a base plate 130 having a plurality of long holes 131 formed thereon so that the lower column 100 can be firmly fixed on the roof. ;
    상기 하부지주(100)의 체결홈(110)에 삽입 구성되며, 하부지주(100)의 암나사부(120)에 대응하는 수나사부(210)가 하측에 형성되어 높낮이 조절이 용이하도록 하는 한편, 상단 면에는 하나 이상의 체결공(221)이 형성된 평판플레이트(220)가 일체형으로 형성된 상부지주(200);Inserted into the fastening groove 110 of the lower column 100, the male thread portion 210 corresponding to the female screw portion 120 of the lower column 100 is formed on the lower side to facilitate height adjustment, while the top An upper column 200 having a flat plate 220 having one or more fastening holes 221 formed thereon in one surface;
    상기 평판플레이트(220)가 삽입될 수 있도록 좌, 우측 끝단 일부는 소정의 간격을 두고 밴딩 처리되어 단차부(310)가 형성되며, 중심에는 상부지주(200)가 결합될 수 있도록 일측이 개구된 장착홈(320)이 형성됨과 동시에 그 장착홈(320)의 일측에는 평판플레이트(220)의 체결공(221)에 대응하는 결합 장공(330)이 하나 이상 형성된 장착플레이트(300);Some of the left and right ends are bent at predetermined intervals so that the flat plate 220 can be inserted, and a stepped portion 310 is formed, and one side of the flat plate 220 is opened to allow the upper column 200 to be coupled thereto. A mounting plate 300 having one or more coupling holes 330 corresponding to the fastening holes 221 of the flat plate 220 formed at one side of the mounting groove 320 at the same time as the mounting groove 320 is formed;
    전체가 입체형의 구조물로 이루어지되, 입체형을 이루는 구조물의 하단 면(410)은 수평형으로 형성되고, 상단 면(420)은 건물의 내측 방향으로 일정각도 경사지게 형성되는 한편, 상기 상단 면(420)과 하단 면(410)을 연결하는 측면부(430)는 직각형 또는 경사가 형성된 곡선형 중 어느 하나의 형상으로 이루어져 빗물의 차단 및 눈을 건물의 외측 방향으로 낙하 되도록 안내하는 입체형 구조물(400); 을 포함하여 구성되는 것을 특징으로 하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치.The entire surface is made of a three-dimensional structure, the bottom surface 410 of the three-dimensional structure is formed in a horizontal shape, the top surface 420 is formed to be inclined at an angle in the inward direction of the building, the top surface 420 Side portion 430 connecting the lower surface 410 is formed of any one of a rectangular or inclined curved shape formed of a three-dimensional structure (400) for guiding the rain and the fall of the building to the outside direction of the building; Rainwater blocking and snow and icicle fall prevention device for the roof of the building, characterized in that the configuration.
  2. 제 1항에 있어서,The method of claim 1,
    상기 입체형 구조물(400)은 직선형 구조물(401) 또는 코너형 구조물(402)로 구성되되, 직선형 구조물(401)은 전, 후면이 개방되는 구조로 이루어지며, 코너형 구조물(402)은 직각 방향으로 개방됨과 동시에 어느 한 방향은 확장된 확개부(450)가 형성되어 전, 후 방향으로 밀착된 상태로 일렬로 연결될 수 있으며, 일렬로 연결설치할 경우 건물의 구조에 따라 선택된 임의의 구조로 설치될 수 있는 것을 특징으로 하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치.The three-dimensional structure 400 is composed of a straight structure 401 or a corner structure 402, the straight structure 401 is made of a structure in which the front, the back is open, the corner structure 402 is in a right angle direction Simultaneously with the opening, an extended extension portion 450 is formed, which can be connected in a line in a state of being in close contact with the front and rear directions, and can be installed in any structure selected according to the structure of the building. Rainwater blocking and snow and icicle fall prevention device for the roof of the building.
  3. 제 1항에 있어서,The method of claim 1,
    상기 입체형 구조물(400) 내측에는 하측 방향으로 쳐짐 현상을 방지할 수 있도록 적어도 하나 이상의 보강대(460)가 구성될 수 있는 것을 특징으로 하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치.At least one reinforcing bar 460 can be configured to prevent falling down in the three-dimensional structure 400 inside the building roof, characterized in that rain water blocking and snow and icicle fall prevention device.
  4. 제 1항에 있어서,The method of claim 1,
    상기 입체형 구조물(400)의 하단 면(410) 끝단은 물이 하단 면의 표면으로 유입되는 것을 방지함과 동시에 물이 건물의 내측 방향으로 낙하 될 수 있도록 안내하는 유도편(440)이 하측 방향으로 돌출되게 형성되는 것을 특징으로 하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치.The lower surface 410 end of the three-dimensional structure 400 is a guide piece 440 for preventing water from flowing into the surface of the lower surface and at the same time to guide the water to fall in the inner direction of the building downwards Rainwater blocking and snow and icicle fall prevention device for the roof of the building, characterized in that formed to protrude.
  5. 제 1항에 있어서,The method of claim 1,
    상기 입체형 구조물의 상단 면(420)에는 입체형 구조물이 뒤틀리는 것을 방지함과 동시에 태양전지(500)가 장착될 수 있도록 하는 적어도 2개소에서 몰드(600)가 고정되되, 그 몰드(600)는 기밀유지가 될 수 있도록 고무 또는 고무가 도포 된 것을 특징으로 하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치.The top surface 420 of the three-dimensional structure prevents the three-dimensional structure from twisting and at the same time the mold 600 is fixed at at least two places to be mounted to the solar cell 500, the mold 600 is kept airtight Rainwater blocking and snow and icicle fall prevention device for the roof of the building, characterized in that the rubber or rubber is applied so that it can be.
  6. 제 1항에 있어서,The method of claim 1,
    상기 장착플레이트(300)와 입체형의 구조물(400)은 일체형으로 견고하게 고정되는 것을 특징으로 하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치.The mounting plate 300 and the three-dimensional structure 400 is a monolithic building roof rainwater blocking and snow and icicles fall prevention device, characterized in that is firmly fixed integrally.
  7. 제 2항에 있어서,The method of claim 2,
    상기 확개부(450)의 내측에는 기밀 유지를 위한 고무재질의 패킹(451)이 고정되는 것을 특징으로 하는 건물 옥상용 빗물 차단 및 눈과 고드름의 낙하 방지 장치.Rainproof blocking and snow and icicle fall prevention device for a building roof, characterized in that the packing 451 of a rubber material for fixing the airtight inside the expansion portion 450 is fixed.
PCT/KR2015/002300 2014-03-12 2015-03-10 Device for blocking rain and preventing falling of snow and icicle for rooftop of building WO2015137701A1 (en)

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KR20140039250A (en) 2014-04-01

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