WO2016028069A1 - Isolation de guidage de type ensemble utilisée dans un procédé d'isolation thermique externe - Google Patents

Isolation de guidage de type ensemble utilisée dans un procédé d'isolation thermique externe Download PDF

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Publication number
WO2016028069A1
WO2016028069A1 PCT/KR2015/008629 KR2015008629W WO2016028069A1 WO 2016028069 A1 WO2016028069 A1 WO 2016028069A1 KR 2015008629 W KR2015008629 W KR 2015008629W WO 2016028069 A1 WO2016028069 A1 WO 2016028069A1
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WO
WIPO (PCT)
Prior art keywords
heat insulating
insulation
insulating material
anchor
protrusion
Prior art date
Application number
PCT/KR2015/008629
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English (en)
Korean (ko)
Inventor
정용주
Original Assignee
정용주
정윤진
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Filing date
Publication date
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Publication of WO2016028069A1 publication Critical patent/WO2016028069A1/fr

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    • 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
    • E04F13/072Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of specially adapted, structured or shaped covering or lining elements
    • E04F13/075Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of specially adapted, structured or shaped covering or lining elements for insulation or surface protection, e.g. against noise or impact
    • 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
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • E04B1/76Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only
    • E04B1/78Heat insulating elements
    • E04B1/80Heat insulating elements slab-shaped
    • 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
    • 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
    • E04F13/21Fastening means specially adapted for covering or lining elements
    • 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
    • E04F13/21Fastening means specially adapted for covering or lining elements
    • E04F13/22Anchors, support angles or consoles

Definitions

  • the present invention relates to a heat insulator used for external insulation, and more particularly, a plurality of heat insulators are fitted up, down, left and right, adjacent insulation is fixed by the anchor at the same time, and a plurality of adhesive induction parts that can comply with the relevant regulations on the back
  • a plurality of adhesive induction parts that can comply with the relevant regulations on the back
  • it is related to the assembled guiding insulation material used for the outer insulation, characterized in that the printed on the surface of the construction guide contents are protruded.
  • the insulation method used to improve the insulation performance of the building is divided into insulation, interruption and external insulation depending on the location of the insulation.
  • the insulation method attaches insulation to the exterior of the building and provides low durability and It is a method of finishing the exterior of the insulation with an external finishing material that can supplement the impact resistance.
  • This method is able to completely cover the exterior of the building with insulation, so that it is possible not only to remove the insulation discontinuity, but also to be installed on the exterior of an already built building.
  • the easiest and inexpensive method of the external insulation method is to install the bead method insulation material using the styrofoam on the outer surface of the building frame, and to finish the outer surface with plaster mortar.
  • the present invention has been made to solve the conventional problems as described above, the object is as follows.
  • the present invention is a heat insulating material used in the outer heat insulation method of the building, the heat insulating material is the front side, the rear side of the opposite side of the front side, the first side, the second side of the side opposite to the first side And a hexahedron comprising a third side surface adjacent to the twelfth side and a fourth side surface opposite to the third side surface, wherein the first protrusions protruding in a predetermined cross-sectional shape are spaced apart from each other at predetermined intervals.
  • a third protrusion protruding in the shape of a predetermined cross section is provided, and the fourth side face is provided so as to correspond to the shape of the third protrusion part at a position corresponding to the third protrusion part provided on the third side face.
  • Fourth binding groove is provided, the insulation is laminated is characterized in that each of the first and third protrusions and the second and fourth binding grooves are connected to each other up and down, left and right.
  • the heat insulating material of the present invention is configured to include a plurality of anchor inserts perforated to penetrate the front and the rear in a predetermined cross section and an adhesive guide portion protruding a predetermined height in a predetermined shape from the recessed portion of the rear surface,
  • the physical properties and the construction range of the heat insulator are printed in letters, and the method of applying an adhesive is printed in letters on the surface of the back of the heat insulator.
  • the heat insulating material of the present invention can be easily and simply laminated without a plurality of heat insulating materials by being coupled in a vertical and left and right fitting manner in response to the male and female protrusions and binding grooves.
  • the first protrusion of the upper portion and the second binding groove of the lower portion are arranged in a form in which a pair of different forms cross each other diagonally, thereby forming a stable structure by laminating the insulation in a closed joint manner.
  • the adjacent insulation is fixed in the form of a shared anchor at the same time to improve the bonding force, by providing an anchor cover covering the head of the anchor can prevent thermal bridges and the like.
  • Figure 2 is an exploded perspective view looking at the front of the assembled guiding insulation used in the outer insulation method according to the invention.
  • Figure 3 is a perspective view of the rear side of the assembled guiding insulation used in the outer heat insulating method according to the present invention.
  • Figure 4 is a cross-sectional view showing that the assembled guiding insulation used in the outer insulation method according to the invention is coupled to the structure of the building.
  • FIG. 5 shows various embodiments in which the assembled guiding insulation material used in the outer insulation method according to the present invention can be applied to each construction layer.
  • FIG. 6 shows an embodiment in which the assembled guiding insulation used in the outer insulation method according to the present invention is laminated in a blocked joint manner.
  • FIG. 2 is an exploded perspective view of the front surface 110 of the assembled guiding insulation 100 used in the outer insulation method according to the present invention
  • Figure 3 is an assembled guiding insulation used in the outer insulation method according to the invention
  • 4 is a perspective view of the rear surface 120 of FIG. 4
  • FIG. 4 is a cross-sectional view showing that the assembled guiding insulation material 100 used in the outer insulation method according to the present invention is coupled to a structure of a building.
  • the heat insulating material 100 is the front surface 110, the rear surface 120, the first side surface 130, the first side surface 130, the first side 130, the first side To the second side surface 140 opposite to the first side surface 130, the third side surface 150 adjacent to the first and second side surfaces 130 and 140, and the fourth side surface 160 opposite to the third side surface 150.
  • first side surface 130 is provided with a plurality of first protrusions 132 protruding in the shape of a predetermined cross section spaced apart a predetermined interval
  • second side surface 140 is the first side surface
  • a plurality of recessed second binding grooves 142 are provided at a position corresponding to the shape of the first protrusion 132 at the position corresponding to the first protrusion 132 provided in the 130
  • the third side surface 150 Is provided with a third protrusion 152 protruding in the shape of a predetermined cross section
  • fourth side surface 160 corresponds to the third protrusion 152 provided on the third side surface 150.
  • a fourth binding groove 162 is provided in the position so as to correspond to the shape of the third protrusion 152, and the heat insulating material 100 to be laminated is provided with the first and third protrusions 132 and 152 and the second and fourth, respectively.
  • the binding grooves (142, 162) is characterized in that connected to each other up and down, left and right corresponding to the male and female.
  • the heat insulating material 100 of the present invention is formed of a hexahedron consisting of six surfaces of the front surface 110, the rear surface 120, and the first, second, third, and fourth sides 130, 140, 150, and 160 as an integrally molded member.
  • the insulation 100 may be made of a variety of materials, such as mineral wool, phenolic foam, and may be molded by a material of EPS (Expanded Poly-Styrene) to reduce the construction cost.
  • EPS Expandanded Poly-Styrene
  • the front surface 110 refers to a surface facing the front when the insulation 100 is fixed to the structure of the building, the rear surface 120 is located on the opposite side of the front surface 110 and abuts the structure of the building. it means.
  • first side surface 130 means a face facing up when the heat insulating material 100 is fixed to the structure of the building
  • second side surface 140 is located on the opposite side of the first side surface 130 and faces downward Means cotton
  • third and fourth side surfaces 150 and 160 refer to surfaces in which the heat insulating materials 100 connected to the left and right sides contact each other.
  • a plurality of first protrusions 132 are formed on the first side surface 130, and a second binding groove 142 corresponding thereto is formed on the second side surface 140 so that the heat insulating material 100 is connected vertically up and down. .
  • the first protrusion 132 is integrally formed to protrude a predetermined cross section from the first side surface 130, and a plurality of first protrusions 132 are spaced apart from each other by a predetermined interval.
  • a plurality of second binding grooves 142 corresponding thereto are spaced apart from each other at predetermined intervals in a form in which they are recessed inwardly from the second side surface 140 opposite to the first side surface 130.
  • the first protrusion 132 and the second binding groove 142 is formed at a position corresponding to each other in a form corresponding to each other, as shown in Figure 2 is composed of a tapered (Taper) shaped cross section is made a stable binding It is preferable.
  • the heat insulating material 100 positioned below is installed in a form in which the first side 130 faces upward, and the heat insulating material 100 positioned above is installed so that the second side 140 faces downward.
  • First and second protrusions 132 formed on the first side surface 130 of the upper portion 100 of the second coupling groove 142 formed on the second side surface 140 of the heat insulating material 100 is installed on the upper and lower side by The insulation 100 is to be connected to each other prefabricated.
  • first protrusions 132 and the second binding grooves 142 formed on the first and second side surfaces 130 and 140 of the heat insulating material 100 may be configured in various ways.
  • a third protrusion 152 is formed on the third side surface 150, and a fourth binding groove 162 corresponding thereto is formed on the fourth side surface 160, so that the heat insulating material 100 is prefabricated left and right.
  • the third protrusion 152 is integrally formed to protrude a predetermined cross section from the third side surface 150, and may have the same shape as the first protrusion 132.
  • the fourth binding groove 162 corresponding thereto is formed at a position corresponding to the third protrusion 152 in a form in which the fourth binding groove 162 is recessed inward from the fourth side surface 160 opposite to the third side surface 150. .
  • the third protrusion 152 and the fourth binding groove 162 is preferably formed in a tapered cross section, for the same reason as the first protrusion 132 and the second binding groove 142, and the left and right sides It serves to connect the thermal insulation material 100 is disposed with each other.
  • the third protrusion 152 and the fourth binding groove 162 formed on the third and fourth side surfaces 150 and 160 of the heat insulating material 100 may be configured in various forms.
  • the heat insulating material 100 of the present invention is configured to further include a plurality of anchor insertion portion 170 perforated to penetrate the front 110 and the rear surface 120 in a predetermined cross section
  • the anchor (A) is the anchor insertion portion Passing the 170 and one end is embedded in the structure of the building, the heat insulating material 100 is fixed, the lower surface abuts the head portion of the fastened anchor (A), the upper surface of the heat insulating material 100
  • a plurality of anchor covers 180 are provided to be fitted to the anchor inserting portion 170 so as to be flat with the front surface 110, and the anchor inserting portion 170 is caught by the head of the anchor A.
  • the body portion of the anchor (A) may be configured in a cross-sectional shape that is inserted in close contact.
  • the anchor insertion unit 170 is configured to penetrate the front surface 110 and the rear surface 120 of the heat insulating material 100, and used as a space in which the anchor A for fixing the heat insulating material 100 to the structure of the building is inserted. do.
  • Anchor (A) may be composed of a head portion and a body portion forming a T-shaped cross section, wherein the anchor insertion portion 170 is caught in the middle of the head portion of the anchor (A) as shown in FIG. It is preferable that it is comprised by the cross section which can penetrate closely.
  • the anchor insertion portion 170 is made of a circular cross-section on the inner surface of the front 110 and the rear 120, each side is made of a semi-circular cross-section, each corner is made of a fan-shaped cross-section, on each side or each corner
  • the anchor A inserted into the formed anchor insertion unit 170 may serve to simultaneously fix two or more insulating materials 100 connected vertically or horizontally.
  • the shape of the anchor insertion portion 170 formed on each side and corner of the heat insulating material 100 is configured to be fixed at the same time when the adjacent heat insulating material 100 is connected to each other, thereby a plurality of heat insulating material 100 coupled to the outer surface of the structure of the building Can be combined stably with each other.
  • the anchor cover 180 is installed to be tightly inserted into the space of the anchor insertion unit 170 emptied above the head of the anchor A.
  • the anchor cover 180 is configured to be installed flat so that the bottom surface is in contact with the head of the anchor (A) and the upper surface is not stepped with the front surface 110 of the heat insulating material 100, the same material as the material of the heat insulating material (100) Particularly, the anchor cover 180 may be installed in close contact with the anchor insertion unit 170 without any error when the anchor cover 180 is manufactured together when molding the heat insulating material 100.
  • Such anchor cover 180 exerts a heat cross-blocking effect that prevents heat from being transferred to the interior through the anchor A, and later performs a role of providing a flat base surface when performing a plastering or the like. It can provide an appearance.
  • the heat insulating material 100, the rear surface 120 of the present invention is configured in a predetermined area indented inward, the heat insulator 100, the recessed portion of the adhesive portion 122 protrudes a predetermined height in a constant shape. Is formed a plurality of, the protruding area of the rear surface 120 including the plurality of adhesive guide portion 122 may be composed of more than 40% of the total area of the rear surface (120).
  • Insulating material 100 of the present invention is a relatively low stepped space is formed on the inner surface of the rear surface 120, a plurality of adhesive guide portion 122 is formed in this space.
  • the adhesive induction part 122 is formed to protrude in plural in a cross-sectional shape in a low stepped space of the rear surface 120.
  • An adhesive for fixing the insulation 100 to the structure of the building is applied. It is a losing part.
  • an adhesive mortar called a rice cake may be used.
  • the adhesive guide portion 122 is composed of more than 40% of the total area of the rear surface 120 combined with the other parts of the relatively protruding rear surface 120 other than the stepped space, it is preferable to induce to comply with the relevant regulations. Do. At this time, the height of the adhesive guide portion 122 is configured so that the other point and the peak of the relatively protruding rear surface 120 is matched, it is preferable that the heat insulating material 100 is fixed to be in close contact with the structure of the building.
  • the shape of the adhesive induction part 122 is illustrated in FIG. 3, it may be configured in various shapes such as a polygon including a quadrangle.
  • FIG. 5 illustrates various embodiments in which the assembled guiding insulation material 100 used in the outer insulation method according to the present invention may be applied to each construction layer
  • FIG. 6 is an assembled type used in the outer insulation method according to the present invention. Jointing method in which the guiding insulation material 100 is blocked
  • the building is composed of a multi-layer, and is divided into a plurality of sections in units of a plurality of floors from the lowest floor to the top floor, and the insulation 100 may have a different number of anchor insertion portions 170 in each section.
  • the present invention is a physical property and the construction range of the heat insulating material 100 is printed on the surface of the heat insulating material 100, the front 110, the method of applying an adhesive on the surface of the heat insulating material 100, the back (120) It may be printed as a protruding character 200.
  • the front surface 110 of the heat insulating material 100 may be printed with the letters 200 protruding from the layer to be constructed and the number of anchor inserting portions 170 formed for each corresponding construction layer. It may be formed differently. This is to apply the number of anchors (A) to satisfy the structural consideration in consideration of the fact that the wind load conditions vary depending on the height and the installation portion of the insulating material 100 is installed. Furthermore, according to the height of the floor and the installation position of the insulation 100 is installed, the skilled worker can easily know the binding position and the number of anchors (A) in accordance with the statutory standards.
  • the letter 200 formed on the surface of the heat insulating material 100 may be printed in the form of 1 to 2 mm protruding, it serves to guide the thickness of the first base mortar when plastering finish. Furthermore, the reinforcing mesh performs the function of forcing the intermediate part of the batter mortar to be accurately impregnated.
  • a pair of first protrusions 132 having different shapes are formed on the first side surface 130 of the heat insulating material 100, and the same shape as that of the first protrusions 132 is diagonally formed on the second side surface 140.
  • a pair of second binding grooves 142 are provided so as to be positioned at an intersection portion, and the upper and lower heat insulating materials 100 are fitted with the first protrusions 132 and the second binding grooves 142 corresponding to each other.
  • a plurality of heat insulating materials 100 may be laminated and bonded in a staggered manner in a staggered manner.
  • the plurality of heat insulating material 100 is stacked with a joint blocked like a brick stack. Because in the case of thong,
  • the insulation material 100 may be ragged outwardly as shown in [1], and the crack of the waterproof plaster finish may be torn due to repeated expansion and contraction. This can happen.
  • the anchor (A) is inserted into the anchor insertion portion 170 formed on each side or each corner can be fixed at the same time two or more heat insulating material 100 is connected up and down or left and right. That is, as shown in Figure 6 anchor insertion portion 170 formed on each side or corner of the insulating material 100 is composed of a single cross-section coupled to the anchor inserting portion 170 of the adjacent thermal insulation material 100, one anchor (A) provides a space that can be tightly inserted, the two or more insulating materials 100 are fixed together by the anchor (A) inserted in such a space.
  • the present invention is intended to obtain the effect of guiding the standard technology for installing insulation for external insulation of buildings as a letter on the surface along with the shape of the insulation so that anyone can follow it intuitively to obtain the correct insulation effect.

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

Abstract

La présente invention concerne un matériau d'isolation thermique utilisé dans un procédé d'isolation thermique externe de bâtiments. Le matériau d'isolation thermique est constitué d'un hexaèdre comportant : une surface avant ; une surface arrière qui est le côté opposé à la surface avant ; une première surface latérale ; une deuxième surface latérale qui est le côté opposé à la première surface latérale ; une troisième surface latérale qui est adjacente aux première et deuxième surfaces latérales ; une quatrième surface latérale qui est le côté opposé à la troisième surface latérale, la première surface latérale comprenant une pluralité de premières saillies qui font saillie sous une forme transversale constante et qui sont espacées les unes des autres à un intervalle prédéterminé ; la deuxième surface latérale comprend, à des emplacements correspondant aux premières saillies de la première surface latérale, une pluralité de deuxièmes rainures de couplage qui sont en renfoncement pour correspondre à la forme des premières saillies ; la troisième surface latérale comprend des troisièmes saillies qui font saillie sous une forme transversale constante ; la quatrième surface latérale comprend, à des emplacements correspondant aux troisièmes saillies de la troisième surface latérale, une pluralité de quatrièmes rainures de couplage qui sont en renfoncement pour correspondre à la forme des troisièmes saillies ; dans des matériaux d'isolation stratifiés, les premières et troisièmes saillies et les deuxièmes et quatrièmes renfoncements de couplage mâle-femelle correspondent, l'un à l'autre de façon à être reliés verticalement ou horizontalement.
PCT/KR2015/008629 2014-08-19 2015-08-19 Isolation de guidage de type ensemble utilisée dans un procédé d'isolation thermique externe WO2016028069A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR10-2014-0108059 2014-08-19
KR1020140108059A KR20140108512A (ko) 2014-08-19 2014-08-19 Eps를 이용하는 외단열미장방식의 전수 가이딩 조립식공법

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WO2016028069A1 true WO2016028069A1 (fr) 2016-02-25

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WO (1) WO2016028069A1 (fr)

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Publication number Priority date Publication date Assignee Title
KR102001515B1 (ko) * 2019-03-05 2019-07-17 주식회사 길종합건축사사무소이엔지 건축공사용 조립식 스티로폼 단열재

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200182691Y1 (ko) * 1999-12-24 2000-05-15 김경일 조립식 단열패널
KR200200301Y1 (ko) * 2000-03-15 2000-10-16 주식회사삼성판넬플랜트 개량된 조립식 단열판넬 구조
JP2001214548A (ja) * 2000-02-01 2001-08-10 Inaba Yoshie 屋根、天井、床、壁等の断熱装置とその断熱施工方法
KR100326393B1 (ko) * 1998-11-07 2002-06-28 조일환 벽체마감용패널
KR101239383B1 (ko) * 2012-08-07 2013-04-05 대보페인트 주식회사 외단열 패널 어셈블리 및 이를 이용한 건축물의 외단열 시공방법

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100326393B1 (ko) * 1998-11-07 2002-06-28 조일환 벽체마감용패널
KR200182691Y1 (ko) * 1999-12-24 2000-05-15 김경일 조립식 단열패널
JP2001214548A (ja) * 2000-02-01 2001-08-10 Inaba Yoshie 屋根、天井、床、壁等の断熱装置とその断熱施工方法
KR200200301Y1 (ko) * 2000-03-15 2000-10-16 주식회사삼성판넬플랜트 개량된 조립식 단열판넬 구조
KR101239383B1 (ko) * 2012-08-07 2013-04-05 대보페인트 주식회사 외단열 패널 어셈블리 및 이를 이용한 건축물의 외단열 시공방법

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KR20140108512A (ko) 2014-09-11

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