WO2017014465A1 - Dispositif pour fixer des matériaux en pierre pour l'extérieur d'un bâtiment - Google Patents

Dispositif pour fixer des matériaux en pierre pour l'extérieur d'un bâtiment Download PDF

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Publication number
WO2017014465A1
WO2017014465A1 PCT/KR2016/007486 KR2016007486W WO2017014465A1 WO 2017014465 A1 WO2017014465 A1 WO 2017014465A1 KR 2016007486 W KR2016007486 W KR 2016007486W WO 2017014465 A1 WO2017014465 A1 WO 2017014465A1
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WO
WIPO (PCT)
Prior art keywords
building
support bar
rear end
wall
anchor
Prior art date
Application number
PCT/KR2016/007486
Other languages
English (en)
Korean (ko)
Inventor
김종우
김종열
Original Assignee
김종우
김종열
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 김종우, 김종열 filed Critical 김종우
Publication of WO2017014465A1 publication Critical patent/WO2017014465A1/fr

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/38Connections for building structures in general
    • E04B1/41Connecting devices specially adapted for embedding in concrete or masonry
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/07Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
    • E04F13/08Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements

Definitions

  • the present invention relates to a stone fixing device for building exterior, and more particularly, to a stone fixing device for constructing a stone for finishing, decoration, etc. in front of the building.
  • a building stone of artificial or natural stone for the purpose of finishing, decoration, etc. are being constructed on the walls of buildings and the like. Building stone is arranged in a horizontal and vertical direction through the stone fixing device in front of the wall.
  • the conventional stone fixing device is fixed to the anchor bolt fixed to the wall of the L-type angle, after the installation of the adjustment plate to the L-type angle, the stone was constructed using a coupling pin in the front end of the adjustment plate.
  • Patent No. 10-1532703 discloses a stone anchoring device composed of a strong anchor type fixing unit and a supporting unit screwed to the fixing unit.
  • Patent No. 10-1532703 discloses that the support unit is rotated or fixed so that the anchor sleeve of the fixing unit is expanded while the supporting unit is screwed to the fixing unit in order to install the stone position fixing device in the hole of the wall.
  • the anchor sleeve is extended by hitting the anchor sleeve of the unit, so that the fixing unit is first fixed in the perforation hole, and then the supporting unit is screwed into the fixing unit or the supporting unit is screwed into the fixing unit. Had to work to hit.
  • the method of screwing the supporting unit may require a special anchor punch tool for hitting the anchor sleeve, in particular, anchor sleeve Since the screw thread formed in the anchor sleeve is damaged by hitting the support unit, the support unit cannot be screwed into the anchor sleeve, so it has to be replaced with a new product.
  • the supporting unit is screwed to the fixing unit, the supporting unit is crushed to form a deformation by hitting the rear end of the supporting unit, that is, the supporting member with a hammer (hammer) to fix the fixing unit in the perforation hole.
  • a hammer hammer
  • the present invention was devised to solve the conventional problems as described above, and can be installed more easily than before, and provide a building exterior stone fixing device having an improved shape to be more robust and stable construction.
  • the purpose is to.
  • the building exterior stone fixing device of the present invention relates to a building exterior stone fixing device for constructing a stone in front of a building wall, and an anchor head formed in an inclined shape extending in diameter toward the front; A wedge which is formed integrally extending from the rear end of the anchor head and a "C" shaped curve surrounding the anchor body and is inserted into a drilling hole formed in the building wall to fix the anchor body to the building wall.
  • a fixing unit composed of a type anchor sleeve and fixed to a wall of the building; And an extension support bar integrally formed at the rear end of the anchor body and inserted into a heat insulating material installed in front of the wall, and having a step diameter formed at a front end thereof, having a diameter larger than that of the anchor body. It is formed integrally extending at the rear end of the extension support bar, and formed in a plate shape thinner than the diameter of the extension support bar, and has a pin insertion hole on one side to insert a coupling pin into the pin insertion hole, respectively, in the upper and lower stones.
  • the support piece is fixedly installed; And a striking assist member for hitting the rear end of the extension support bar in the state where the supporting piece is inserted so that the fixing unit is inserted into the perforation hole formed in the wall of the building.
  • the striking assist member includes a striking body having an insertion groove into which the support piece is inserted; And a bit portion formed at the rear of the striking body and fixed to the bite chuck of the power tool.
  • the striking body may be configured to strike the rear end of the extension support bar according to the driving of the power tool.
  • the striking body and the bit part may be configured to be detachably coupled by a screwing method.
  • a female screw thread is formed at the rear of the striking body, and a male screw thread is formed at the front of the bit portion to be fastened to the female screw thread.
  • the thickness of the insertion groove is the same or larger than the thickness of the support piece, is configured to be smaller than the diameter of the extension support bar, the front and rear length of the insertion groove is configured to be larger than the front and rear length of the support piece, When inserted into the insertion groove, the insertion groove is caught on the rear end of the extension support bar, the rear end of the support piece may be configured to be spaced apart from the inner end of the insertion groove.
  • the rear end of the extended support bar is formed with an inclined surface on the upper and lower portions so as to become thinner toward the rear, the striking body can be configured to strike the inclined surface.
  • the wedge-shaped anchor sleeve has a plurality of incision grooves are formed at equal intervals along the outer periphery in the front end portion, a fixing protrusion is formed between the plurality of incision grooves on the outer periphery of the wedge-shaped anchor sleeve, the wedge-shaped anchor sleeve An auxiliary fixing protrusion is formed between the plurality of cutting grooves in front of the outer circumferential surface, and the fixing protrusion protrudes outward from the outer circumferential surface of the extension support bar while the wedge-shaped anchor sleeve is wrapped in the anchor body.
  • the fixing protrusion may be fixed to the drilling hole so that the fixing unit is fixed to the drilling hole.
  • the construction is easy, and thus the construction time can be shortened, thereby shortening the construction period, thereby reducing the overall construction cost.
  • the present invention does not need to greatly cut out or puncture the insulating material during construction, and there is no gap between the insulating material and the stone fixing device after construction, and thus, there is no need to fill a separate insulating material as before, thereby reducing the work time. It can reduce the cost of insulation materials.
  • the present invention is in the state of being fixed to the wall of the building, the rear part does not shake or rattle as in the existing, since the structure is formed in the extension support bar integrally in the rear of the fixing unit, by supporting the stone more stably It is less likely to occur and costs less maintenance later.
  • the present invention is provided with a striking aid member, the bit portion of the striking aid member is connected to the bite chuck of the power tool, by driving the power tool in the state that the support piece is inserted into the insertion groove formed in front of the striking aid member, The auxiliary member hits the rear end of the extension support bar without hitting the bit part, so that the fixing unit is inserted and fixed in the perforation hole of the wall, so that the support piece is not deformed, so that the stone can be easily installed in the construction position.
  • the striking auxiliary member of the present invention is a structure in which the striking body and the bit part are formed in a modular form and fastened to each other, and can be used only by replacing damaged parts in case of damage, thereby reducing the cost of replacing parts. There is an effect that can be reduced.
  • FIG. 1 is a perspective view showing a building exterior stone fixing device according to a first embodiment of the present invention
  • FIG. 1 is a side view of FIG. 1,
  • FIG 3 is an enlarged perspective view of the wedge-shaped anchor sleeve of Figure 1
  • FIG. 4 is a cross-sectional view showing a construction state of the building stone fixing device for a building according to the first embodiment of the present invention
  • FIG. 5 is a perspective view showing a building exterior stone fixing device according to a second embodiment of the present invention.
  • FIG. 6 is an exploded perspective view showing the impact assisting member of FIG. 5 separately;
  • FIG. 7 is a view illustrating a state in which a supporting piece is inserted into the hit assisting member in FIG.
  • FIG. 8 is a perspective view showing a state in which a power tool is connected to a building exterior stone fixing device according to a second embodiment of the present invention
  • FIG. 9 is a view showing a state in which the building stone fixing device for the exterior of the building according to the second embodiment of the present invention is inserted into the drilling hole of the building wall using the power tool.
  • FIGS. 1 to 4 a building exterior stone fixing device 10 according to a first embodiment of the present invention will be described.
  • the building exterior stone fixing device of the present invention includes a fixing unit (A), an extension support bar 140, the support piece 150.
  • Building exterior stone fixing device of the present invention may be composed of a metal material.
  • the fixing unit A includes an anchor head 110, an anchor body 120, and a wedge anchor type anchor sleeve 130.
  • the anchor head 110 is formed in an inclined shape in which the diameter expands toward the front end.
  • the anchor body 120 extends integrally in a straight line form from the rear end of the anchor head 110 to the rear, and is formed in a circular bar shape with a uniform diameter.
  • Wedge-shaped anchor sleeve 130 is formed in a pipe shape to surround the anchor body 120, is formed in the form of a "C" curve that is cut on one side in the longitudinal direction, when the external force is applied, the diameter can be reduced It is formed to.
  • the wedge-shaped anchor sleeve 130 has three incision grooves 132 formed at equal intervals along the outer circumferential surface at the front end portion, and fixed to a position between the three incision grooves 132 on the outer circumference of the wedge-shaped anchor sleeve 130. Projections 134 are formed respectively. When the fixing unit A is inserted into the drilling hole h of the wall 1 by hitting, the fixing protrusion 134 is fixed to the drilling hole h of the wall 1 so that the fixing unit A is fixed. Allow it to settle.
  • the wedge-shaped anchor sleeve 130 has an auxiliary fixing protrusion 136 formed between the three incision grooves 132 at the front end of the outer circumferential surface thereof, so that the fixing unit A is more stably drilled in the wall 1. To settle in.
  • three second incision grooves 138 are formed in the three incision grooves 132 so as to correspond to the positions in the front-back direction.
  • the anchor sleeve 130 may be curved in a "C" shape.
  • Extended support bar 140 is formed in the shape of a circular bar, it is formed integrally extended from the rear end of the anchor body (120).
  • the anchor body 120 and the extension support bar 140 is configured to have the same central axis.
  • the extension support bar 140 is configured to be somewhat larger than the diameter of the anchor body 120, the step portion 143 is formed at the front end of the extension support bar 140.
  • the outer diameter of the extension support bar 140 may be of the same size as the outer diameter of the front end portion of the anchor head (110).
  • the present invention is made so that the wedge-shaped anchor sleeve 130 has the same outer diameter without being stepped with the extension support bar 140 in the state wrapped around the anchor body (120).
  • the fixing protrusion 134 is configured to protrude outward from the outer circumferential surface of the extension support bar 140
  • the auxiliary fixing protrusion 136 is also supported It is configured to protrude outward from the outer circumferential surface of the bar 140.
  • the extended support bar 140 is inserted through the heat insulating material 2 in a constructed state, as shown in FIG.
  • the support piece 150 is formed in a plate shape having a thickness smaller than the diameter of the extended support bar 140 and integrally extended to the rear end of the extended support plate 140.
  • the thickness of the support piece 150 is thinner than the diameter of the extended support bar 140, and the rear end of the extended support bar 140 is formed of a structure in which the support piece 150 and the extended support bar 140 are integrally formed.
  • the inclined surface 145 is formed on the upper and lower portions so that the thickness becomes thinner toward the rear side.
  • One side of the support piece 150 is formed so that the pin insertion hole 153 is vertically penetrated, and also, a plurality of friction protrusions 152 are formed on the upper and lower surfaces of the support piece 150, stone (3, 4) As the frictional force with the top or bottom of the) is increased, the stone (3, 4) can be more stably fixed.
  • FIGS. 1 to 4 the stone 3, in front of the wall 1 in which the heat insulator 2 is constructed on the front surface using the stone fixing device 10 for building exterior according to the first embodiment of the present invention, will be described. We explain how to construct 4).
  • the extended support bar 140 is a form inserted through the heat insulating material 2
  • the support piece 150 is a shape protruding to the outside of the heat insulating material (2).
  • the size of the drilling hole is formed to be the same or slightly smaller than the thickness of the extension support bar 140.
  • the fixing unit A is fixed to the perforation hole of the wall 1 in detail.
  • the wedge-shaped anchor is inserted.
  • the sleeve 130 is inserted into the perforated hole (h) of the wall (1), the wedge-shaped anchor sleeve 130 is reduced in diameter and tightened while pressing the anchor body 120 tightly, the anchor sleeve (
  • the fixing protrusion 134 and the auxiliary fixing protrusion 136 of 130 are fixed to the perforation hole of the wall 1, so that the fixing unit A is fixed to the perforation hole h of the wall 1 and stably fixed. Will remain intact.
  • the anchor body 120, the extension support bar 140, and the support piece 150 are integrally formed, so that the fixing unit A has a perforation hole h of the wall 1.
  • the extension support bar 140 and the support piece 150 are not shaken or rattled with respect to the fixing unit A, thereby enabling stable installation of the stones 3 and 4.
  • the present invention since the present invention has a structure in which the fixing unit A is stably settled in the perforation hole h of the wall 1 by hitting the rear end of the support piece 150, it is difficult for the worker to hold it by hand as in the past. You can do it easily without having to turn around.
  • the construction of the stone (3, 4), the support piece 150 should be maintained in a horizontal state, after fixing the fixing unit (A), the support piece 150 is not horizontal and slightly inclined In this case, by gently tapping one side of the support piece 150, the anchor body 120 is easily rotated by a predetermined angle with respect to the wedge-shaped anchor sleeve 130, thereby easily adjusting the horizontality of the support piece 150 Stone (3, 4) can be constructed.
  • the present invention is drilled into the heat insulating material (2) and the wall (1) in the same or somewhat smaller size than the diameter of the extension support bar 140, and inserted into the drilled hole (h) formed, and extends from the constructed structure Since a space does not occur between the support bar 140 and the heat insulator 2, it is possible to secure the overall heat insulation without the need to fill a separate heat insulator.
  • the present invention has been described in the fixing the slab (3, 4) by fixing the fixing unit (A) to the wall (1) in which the heat insulating material (2) is installed on the front, the present invention is the heat insulating material (2) the front It is also possible to fix the wall in the same manner as described above to construct a slab.
  • FIGS. 5 to 9 a building exterior stone fixing device 10 ′ according to a second embodiment of the present invention will be described.
  • the rear end of the support piece 150 is hit, and the fixing unit A is inserted into the perforation hole h of the wall 1 to fix the rear end of the support piece 150 too strongly.
  • the support piece 150 is crushed and deformed, it may be somewhat difficult to properly install the stone (3, 4) on the support piece 150 in accordance with the horizontal design to fit the construction design position.
  • the second embodiment of the present invention is configured to further include a striking auxiliary member 160 to strike the rear end of the extended support bar 140, without directly hitting the support piece 150.
  • the second embodiment differs only in that it further includes the hitting aid member 160 compared to the first embodiment, and the rest of the configuration is the same as that of the first embodiment, so only the differences will be described.
  • the striking assisting member 160 includes a striking body 162 and a bit 166 detachably screwed to the rear end of the striking body 162.
  • An insertion groove 163 into which the support piece 150 is inserted is formed at the front of the hitting body 162, and the female threaded portion 164 is integrally formed at the rear end thereof.
  • the thickness of the insertion groove 163 may be configured to be slightly larger than or slightly the same as the thickness of the support piece 150. However, even when the thickness of the insertion groove 163 is configured to be larger than the thickness of the support piece 150 is configured to be smaller than the diameter of the extended support bar 140.
  • the length of the insertion groove 163 of the present invention is configured to be larger than the front and rear length of the support piece 150.
  • Bit portion 166 is formed in a bar shape that can be fixed to the bite chuck (c, Fig. 8) of the power tool (e, see Fig. 8), such as a hammer drill.
  • the front end of the bit portion 166 is integrally formed with a male threaded portion 167 for screwing into the female threaded portion 164, so that the bited portion 166 may be screwed into the rear end of the striking body 162.
  • the worker drills the heat insulating material 2 and the wall 1 in the same manner as in the first embodiment to form a hole for drilling.
  • the operator inserts the support piece 150 into the insertion groove 163 of the striking assist member 160, and moves the bit part 166 of the striking assist member 160 to the power tool e.
  • the fixing unit (A) of the stone fixing device (10) and the extension support bar (140) are inserted into the drilling holes of the heat insulating material (2), and the power tool (e) is driven.
  • the front surface of the striking body 162 of the striking assist member 160 does not strike the support piece 150, but rather hits the rear end of the extended support bar 140, that is, the inclined surface 145, thereby fixing unit (A).
  • the fixing unit A is fixed to the perforation hole h of the wall 1 while being inserted into the perforation hole h of the wall 1.
  • the extended support bar 140 is a form inserted through the heat insulating material 2
  • the support piece 150 is a shape protruding to the outside of the heat insulating material (2).
  • the plywood pin (p) may be inserted into the pin insertion hole 153 and installed to support the upper stone 3 and the lower stone 4 on the support piece.
  • the present invention does not hit the support piece 150 in a state in which the support member 150 is mounted on the power tool e, and the support piece 150 is inserted into the blow aid member 160.
  • the fixing unit A is fixed to the wall 1
  • no deformation of the support piece 150 is crushed, and the flat original state of the support piece 150 is not generated. It can be maintained as it is, makes it easy to install the installation spacing of the slabs uniformly according to the construction position.
  • the striking assistance member 160 of the present invention has a structure in which the striking body 162 and the bit part 166 can be detachably fastened to each other, the striking body 162 of the support bar 140 is extended.
  • the striking assist member 160 of the present invention is a structure in which the striking body 162 and the bit portion 166 are formed in a modular form, respectively, used to be fastened to each other. In case of damage, only damaged parts can be replaced with new ones, which reduces the cost of construction.
  • the present invention has been described as having a female threaded portion 162 formed on the striking body 162 and a male threaded portion 167 integrally formed on the bit portion 166, the present invention is not limited thereto.
  • the male threaded portion may be formed at ()
  • the female threaded portion may be formed at the bit portion (166).
  • bit portion 166 of the present invention may be made of the same material as the bit used to be inserted into a conventional power tool, the striking body 162 may be made of a stainless material or other metal material.
  • the present invention relates to a stone fixing device, can be applied to the building industry.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Finishing Walls (AREA)

Abstract

L'invention concerne un dispositif pour fixer des matériaux en pierre pour l'extérieur d'un bâtiment. Le dispositif selon l'invention de fixation de matériaux de pierre pour l'extérieur du bâtiment érige les matériaux en pierre sur l'avant d'un mur de bâtiment et comprend : une unité d'ancrage montée à demeure sur le mur du bâtiment et comprenant une tête d'ancrage réalisée dans une forme inclinée dont le diamètre s'agrandit progressivement vers l'avant de celle-ci, un corps d'ancrage formé d'un seul tenant de manière à s'étendre depuis l'extrémité arrière de la tête d'ancrage, et un manchon d'ancrage en forme de clavette qui est réalisé en forme de courbe en « C » qui englobe le corps d'ancrage, et qui est inséré dans un trou foré qui est formé sur le mur du bâtiment, de manière à fixer le corps d'ancrage au mur du bâtiment ; une barre de support allongée formée d'un seul tenant de manière à s'étendre vers l'extrémité arrière du corps d'ancrage, insérée par pénétration dans un matériau isolant monté sur l'avant du mur et pourvue d'une partie étagée formée à l'extrémité avant de celle-ci et ayant un diamètre plus grand que celui du corps d'ancrage ; une pièce de support formée d'un seul tenant de manière à s'étendre vers l'extrémité arrière de la barre de support allongée, réalisée en forme de plaque plus mince que le diamètre de la barre de support allongée et pourvue d'un trou d'insertion de broche sur un côté de celle-ci, de telle sorte qu'une broche de couplage est enfoncée dans le trou d'insertion de broche afin de fixer et de poser respectivement les matériaux en pierre sur les parties supérieure et inférieure de celle-ci ; et un élément d'assistance à la frappe qui frappe l'extrémité arrière de la barre de support allongée dans un état dans lequel la pièce support est insérée, de manière à permettre à l'unité d'ancrage d'être insérée dans le trou foré formé sur le mur du bâtiment.
PCT/KR2016/007486 2015-07-21 2016-07-11 Dispositif pour fixer des matériaux en pierre pour l'extérieur d'un bâtiment WO2017014465A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR20-2015-0004916 2015-07-21
KR20150004916 2015-07-21
KR2020150007634U KR200480436Y1 (ko) 2015-07-21 2015-11-24 건축물 외장용 석재 고정장치
KR20-2015-0007634 2015-11-24

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WO2017014465A1 true WO2017014465A1 (fr) 2017-01-26

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KR102352255B1 (ko) * 2020-12-24 2022-01-17 정철웅 외벽치장벽돌 고정용 앵커의 시공방법

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200250946Y1 (ko) * 2001-06-30 2001-11-16 김광배 앵커볼트
KR20100086726A (ko) * 2009-01-23 2010-08-02 김종성 건축외장재 설치용 고정구
KR101318299B1 (ko) * 2012-05-21 2013-10-18 조아산업개발 주식회사 건축용 석재 받침앵글의 지지장치
KR101492594B1 (ko) * 2014-05-02 2015-02-23 (주)신일앙카 마감재 지지앵커 시공장치, 마감재 지지앵커 시공방법 및 마감재 지지앵커
KR101532703B1 (ko) * 2015-03-12 2015-07-01 유성용 건축용 석재 위치고정장치

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200250946Y1 (ko) * 2001-06-30 2001-11-16 김광배 앵커볼트
KR20100086726A (ko) * 2009-01-23 2010-08-02 김종성 건축외장재 설치용 고정구
KR101318299B1 (ko) * 2012-05-21 2013-10-18 조아산업개발 주식회사 건축용 석재 받침앵글의 지지장치
KR101492594B1 (ko) * 2014-05-02 2015-02-23 (주)신일앙카 마감재 지지앵커 시공장치, 마감재 지지앵커 시공방법 및 마감재 지지앵커
KR101532703B1 (ko) * 2015-03-12 2015-07-01 유성용 건축용 석재 위치고정장치

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