WO2010052921A1 - 建物躯体に外装板を取り付けるためのアンカー金物 - Google Patents

建物躯体に外装板を取り付けるためのアンカー金物 Download PDF

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Publication number
WO2010052921A1
WO2010052921A1 PCT/JP2009/005916 JP2009005916W WO2010052921A1 WO 2010052921 A1 WO2010052921 A1 WO 2010052921A1 JP 2009005916 W JP2009005916 W JP 2009005916W WO 2010052921 A1 WO2010052921 A1 WO 2010052921A1
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WO
WIPO (PCT)
Prior art keywords
piece
vertical wall
center piece
plate
anchor
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PCT/JP2009/005916
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English (en)
French (fr)
Japanese (ja)
Inventor
原裕之
Original Assignee
株式会社アクト
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Publication date
Application filed by 株式会社アクト filed Critical 株式会社アクト
Priority to JP2010506738A priority Critical patent/JP4709941B2/ja
Priority to CN200980144677.XA priority patent/CN102203360B/zh
Publication of WO2010052921A1 publication Critical patent/WO2010052921A1/ja

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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
    • E04F13/08Coverings 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
    • E04F13/0801Separate fastening elements
    • E04F13/0832Separate fastening elements without load-supporting elongated furring elements between wall and covering elements
    • E04F13/0833Separate fastening elements without load-supporting elongated furring elements between wall and covering elements not adjustable
    • E04F13/0846Separate fastening elements without load-supporting elongated furring elements between wall and covering elements not adjustable the fastening elements engaging holes or grooves in the side faces of the covering 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
    • E04F13/08Coverings 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
    • E04F13/0801Separate fastening elements
    • E04F13/0803Separate fastening elements with load-supporting elongated furring elements between wall and covering elements
    • E04F13/081Separate fastening elements with load-supporting elongated furring elements between wall and covering elements with additional fastening elements between furring elements and covering elements
    • E04F13/0814Separate fastening elements with load-supporting elongated furring elements between wall and covering elements with additional fastening elements between furring elements and covering elements fixed by means of clamping action

Definitions

  • the present invention relates to an anchor hardware for attaching an exterior plate such as a ceramic plate (tile) to the surface of a building frame. More specifically, the present invention relates to an anchor hardware suitable for mounting a dry-formed tile particularly on a building wall.
  • a ceramic plate as an exterior plate As a method of attaching a ceramic plate as an exterior plate to the outer wall of the building frame, there is a dry method of mounting on the building frame using dedicated hardware. In this dry method, two parallel fixing grooves are formed on the back of the porcelain plate, anchor metal fittings with claws hooked into the fixing groove are attached to the porcelain plate side, and a part of the anchor metal fittings is attached to the trunk on the building frame side.
  • the ceramic plate is fixed to the building frame by attaching it to the edge or base.
  • This method was developed to fix large wet-molded tiles as exterior panels on the building frame, centerpieces attached to the building frame side, and placed on both sides of the centerpiece to fix the back side of the ceramic plate.
  • a pair of left and right side pieces each having a claw that is hooked in the groove and an anchor hardware (Patent Document 1) configured to connect and integrate these three independent parts with bolts are used.
  • the anchor hardware is attached to the ceramic plate by tightening the bolts and pulling the side pieces together while the nails of the side piece are hooked on the two fixing grooves on the back surface of the ceramic plate. Then, the ceramic plate is fixed to the building frame by attaching the center piece to the trunk edge or the base of the attachment part of the center piece.
  • the anchor hardware is bent outward from the lower end edges of the vertical walls of the left and right side pieces, and is bent into a V shape so that the horizontal wall parallel to the ceramic plate and the tip thereof are turned downward and folded back to the vertical wall side.
  • the nail is in close contact with the back surface of the porcelain plate, and the hook between the nail and the fixing groove is maintained at a desired depth. Therefore, when applied to a wet-molded tile having a flat porcelain plate back surface, the mounting strength of the anchor hardware to the porcelain plate is less problematic. Further, since the center piece is supported by both side pieces with almost no gap between the center piece and the back of the ceramic plate or with a certain gap, it is less likely to cause large rattling.
  • the anchor metal is lifted from the ceramic plate and the portion attached to the ceramic plate.
  • the sticking and the gap increase, and as a result, the degree to which the nail is applied to the fixing groove varies depending on whether it is shallow or deep, and becomes unstable.
  • the degree of metal fitting becomes unstable, and in some cases, the overhanging portion of the fixing groove is lost, which may cause the ceramic plate to fall.
  • the mounting height of the side piece varies as a whole, or if it is tilted due to different heights in the left and right front-rear direction, the backlash on the support of the center piece will increase or decrease, or the ceramic plate will tilt For this reason, the finish of the exterior surface is likely to be affected.
  • the present invention includes a center piece attached to the building frame side, and a claw disposed on both sides so as to sandwich the center piece and hooked in a fixing groove on the back surface of the ceramic plate. It is composed of a pair of left and right side pieces that are attached to the ceramic plate side by hooking into the fixing groove, and a bolt that connects and integrates the side pieces, and each piece has a pair of perpendicular to the ceramic plate.
  • an anchor hardware having a groove-shaped skeleton having a vertical wall, a ceramic plate connecting the vertical walls, and a horizontal wall parallel to the vertical wall, from the lower edge of the vertical wall of one of the adjacent center piece and side piece
  • a seating plate that projects parallel to the horizontal wall toward the vertical wall of the other piece and that sinks under the lower edge of the vertical wall and supports the vertical wall That.
  • the seat plate is provided in the entire region from the front end to the rear end of the side piece or the center piece, in order to reduce flatness of the nail to the fixing groove and to obtain flatness.
  • the seat plate In order to reduce the variation in the degree of claw application to the groove, even if it exists in a part, it will function sufficiently, so forming it in the minimum necessary range is desirable for weight reduction and cost reduction, It is preferable to partially provide in the front-back direction of each piece.
  • the force which is pushed or pulled acts on a ceramic board, if a seat board is arrange
  • the seat plate is preferably provided in the entire region from the front end to the rear end, or at least on the left and right sides of the front and rear ends. More preferably, the center piece or the side piece is arranged symmetrically with a good balance near the front end or the rear end. In addition, the presence of the seat plate disperses and relaxes the force applied to the ceramic plate side by the vertical wall inside the side piece or both vertical walls of the center piece, so that the breaking strength of the ceramic plate can be increased.
  • the seat plate is arranged on at least one of the vertical wall inside the side piece or the front side or the rear side of the vertical wall of the center piece.
  • the seat plate is disposed near each end on both the front side and the rear side of the vertical wall inside the side piece or the vertical wall of the center piece.
  • the seat plate is asymmetrical by being alternately arranged on the front side and the rear side of the vertical wall inside the side piece or the vertical wall of the center piece.
  • the seat plate is located near the end of one of the vertical wall inside the side piece or the front side or the rear side of the vertical wall of the center piece and inside the side piece facing each other. It is preferable that the seat plates are arranged alternately between the vertical wall and the vertical wall of the center piece.
  • the seat plate is disposed symmetrically about the center piece.
  • the seat plate is integrally formed by folding the lower end of the vertical wall inside the side piece or the vertical wall of the center piece outward, and inside the vertical wall or side piece of the opposing center piece. It is preferable that the vertical wall is placed on the seat plate.
  • the invention according to claim 8 is the anchor metal object according to claim 1, wherein the horizontal wall between the screw holes opened in the inner and outer vertical walls of the skeleton part of any one of the side pieces, It is preferable that a through hole that is opened in advance before the bending of the skeleton portion and that divides between both vertical walls around the screw hole is provided.
  • the seat plate is disposed near the rear side end of the vertical wall of the side piece so that the rear length of the center piece protrudes further rearward than the seat plate of the side piece. Protrusion that abuts the porcelain plate at the lower edge of the vertical wall near the rear end that protrudes rearward from the seat plate, and the distance from the bolt to the mounting portion is the same as the distance from the bolt to the rear end. Is preferably provided.
  • the horizontal wall of the center piece or the side piece is provided with an elastic deformation part for unevenness adjustment.
  • the vertical wall of the side piece or center piece is supported via the seat plate, so that the variation in the degree of claw application to the fixing groove is reduced and the height is made uniform. Therefore, the flatness will be remarkably increased.
  • both side pieces are stably fixed at the same height by hooking the nail into the fixing groove on the back surface of the ceramic plate, so that the nail can be applied with a stable depth as a whole. Therefore, it is possible to prevent the falling of the ceramic plate after the construction by making the hooking state of the nail stable.
  • a seat plate when a seat plate is provided with a well-balanced front and back in the whole area or locally from the front end to the rear end of the side piece or center piece, it is preferable not only for reducing variation in the degree of claw application to the fixing groove. Disperses and relaxes the force applied to the porcelain plate side through the vertical wall inside the center piece or both vertical walls of the centerpiece, so that the breaking strength of the porcelain plate is increased and the strength is stable and variation in the gripping force of the nail is reduced .
  • the force is applied to the porcelain plate side through the seat plate at the vertical wall inside the side piece or both the vertical walls of the center piece.
  • the breaking strength of the ceramic plate can be increased. For example, because the force of the ceramic plate being lifted or pressed is received not only by the claw but also by the seat plate, it is destroyed especially when the side plate is provided with a seat plate. It works more effectively in increasing strength.
  • the anchor metal object of claim 2 even with the minimum necessary seat plate, it is possible to reduce the variation in the degree of the nail applied to the fixing groove, to make the height uniform and to greatly increase the flatness. It is preferable for reducing the weight and cost of the anchor hardware.
  • the seat plate receives the force applied to the ceramic plate even at the part away from the overhang part, the force applied to the ceramic plate can be dispersed, and the tiles can be prevented from lacking the width of the overhang part of the fixing groove of the ceramic plate where the nail is hooked. As a result, it seems to increase the force to cause destruction. Further, the force applied by the lower edge of the vertical wall of the center piece is also dispersed. According to the inventors' experiments, it has been confirmed that in the absence of a seat plate, the tile breaks at an earlier point (with less force) than in some cases.
  • the anchor hardware of claim 3 since it is arranged near both ends of the front side and the rear side, not only the variation in the degree of claw application to the fixing groove is reduced, but also the side Disperses and relaxes the force applied to the ceramic plate side through the vertical wall inside the piece or both vertical walls of the center piece, thereby increasing the breaking strength of the ceramic plate and increasing the strength of the ceramic plate with the nails. Variation can be reduced. In addition, it can function sufficiently if it exists in a part to reduce the variation in the degree of nail application to the fixing groove, so forming it in the minimum necessary range will reduce weight and reduce costs. Can do.
  • the anchor hardware since the seat plates are alternately arranged on the front side and the rear side to be asymmetrical, the ceramic plate is pushed or pulled by the minimum necessary seat plate. Can act on both forces.
  • the anchor hardware can be further reduced in weight and cost.
  • the ceramic plate is effectively pressed and pulled by the seat plates arranged alternately on the front side and the rear side, Not only does it reduce the variation in the amount of claw applied to the fixing groove, but also disperses and relaxes the force applied to the ceramic plate, increasing the breaking strength of the ceramic plate, and is stable in strength and has less variation in the gripping force of the nail. can do.
  • the seat plate since the seat plate is arranged symmetrically with respect to the center piece, it is effective for both the force that the ceramic plate is pushed and pulled between the left and right sand pieces.
  • the seat plate acts on the fixing plate, which not only provides a sense of stability, but also disperses and relaxes the force applied to the ceramic plate, thereby reducing the breaking strength of the ceramic plate. While increasing the strength, it is possible to reduce the variation in the gripping force of the nail and the strength.
  • the seat plate on the side of the center piece is formed in a hat-shaped cross section, the sectional moment can be further increased and the strength of the center piece against bending can be increased, so that it can be formed thinner.
  • the lower end of the vertical wall is bent outward and is integrally formed, and the vertical wall of the opposing center piece or the inner side vertical wall of the side piece is placed on the seat plate.
  • the anchor metal object of claim 8 since the inner vertical wall and the outer vertical wall around the screw hole are separated by the presence of the through-hole and are not pulled or compressed together, thus, when the skeleton is formed, the periphery of the screw hole is not pulled, and the screw hole does not have to be distorted. Therefore, not only a dedicated jig is not required for the tap stand but also the screw can be accurately set. Moreover, since no distortion occurs in the screw hole during bending, according to the currently established press bending technique, the screw hole of the inner vertical wall and the screw hole of the outer vertical wall are arranged coaxially. The state can be easily secured.
  • the anchor hardware of claim 9 when a force that relatively lifts the center piece acts on the side of the center piece mounting portion, the protrusion on the rear end side of the opposite center piece hits the ceramic plate. Since almost the same force acts between the mounting part and the ceramic plate so that the reaction force is received by the ceramic plate, combined with the dispersion by the seat plate, the effect of reducing the force applied to the ceramic plate is increased, and overhang It is possible to prevent the strength until the claw of the side plate comes off, that is, the breaking strength, from being raised.
  • the anchor metal object of claim 10 when fixing the ceramic plate by attaching the anchor metal object directly to the ground, even if the ground is uneven, the elastic deformation for unevenness adjustment The unevenness of the base is adjusted by the deformation of the part, and the finish of the ceramic board is less affected by the precision of the base. Therefore, even when ceramic plates are fixed by fixing the anchor hardware directly to the groundwork, it is not necessary to adjust the unevenness such as inserting a liner between the groundwork and the anchor hardware, enabling rapid construction. Work becomes easy.
  • FIG. 1st Embodiment of the anchor metal object is a front view of the anchor metal object which has arrange
  • the axial direction of the bolts of the anchor hardware in the assembled state is the width direction
  • the longitudinal direction of each piece perpendicular to the axial direction of the bolts is the front-rear direction
  • the center piece is positioned more than the position where the bolt penetrates.
  • the side where the mounting part is formed is called the front part
  • the end part is the front end
  • the side opposite to the side where the mounting part is formed rather than the position where the bolt penetrates is called the rear part
  • the end part is called the rear end.
  • the anchor hardware 1 is generally made of stainless steel, and is attached to the ceramic plate 21 side by hooking the nails 6 into the center piece 2 attached to the building housing 20 side and the fixing groove 22 on the back surface 21a of the ceramic plate 21.
  • a pair of side pieces 3 and 4 and a bolt 5 for connecting the side pieces 3 and 4 to each other are configured.
  • the center piece 2 and the side pieces 3 and 4 are formed as separate members independent of each other.
  • a ring-shaped or cylindrical cushion 19 made of an elastic material such as sponge is disposed between the center piece 2 and one side piece, for example, the side piece 4, while suppressing the rattling of the center piece 2. Also, a space S enabling relative movement of the center piece 2 is secured between the center piece 2 and the side piece 4.
  • Each of the pair of left and right side pieces 3 and 4 includes a groove-shaped skeleton portion 7 having a pair of vertical walls 8 orthogonal to the ceramic plate 21 and a horizontal wall 9 parallel to the ceramic plate 21 connecting the vertical walls 8.
  • the lower end edge of the vertical wall 8 on the outside of the skeleton 7 (on the side opposite to the center piece 2) is bent outward, the horizontal wall 13 parallel to the porcelain plate 21, and the tip is turned downward and folded back to the vertical wall 8 side.
  • the claws 6 that are bent in a V shape and inclined inwardly have a symmetrical shape.
  • the side pieces 3, 4 are arranged so as to sandwich the center piece 2, and are integrated by connecting the side pieces 3, 4 to each other via a ceramic plate 21 with bolts 5 while sandwiching the center piece 2.
  • the One side piece 3 has a through hole 18 having a diameter larger than the outer diameter of the bolt 5 that passes through substantially the center of the vertical wall 8, and the other side piece 4 has a screw hole that passes through the substantially center of the vertical wall 8. 17 are provided. Further, a through hole 18 is also provided at substantially the center of the vertical wall 8 of the center piece 2. Then, the side pieces 3 and 4 are connected to each other by passing the bolt 5 in a state where the through hole 18 and the screw hole 17 are coaxially arranged and screwing the screw portion 16 at the tip into the screw hole 17. Is done.
  • the screw holes 17 of the side piece 4 are formed in both the inner and outer vertical walls 8 respectively.
  • the screw holes 17 are formed in the side pieces 4 as compared with the case where the screw holes 17 are formed only in one of the vertical walls 8. The effect of preventing the piece 4 from being lifted is enhanced.
  • the center piece 2 also has a groove shape having a pair of vertical walls 8 orthogonal to the ceramic plate 21 and a horizontal wall 9 parallel to the ceramic plate 21 connecting the vertical walls 8.
  • an attachment portion 12 fixed to the building housing side is formed at one end portion, for example, the front end side of the center piece 2 so as to protrude further forward than the front ends of the side pieces 3 and 4 as shown in FIG.
  • the rear end 15 as the opposite end is also protruded rearward from the rear end of the side pieces 3 and 4, and the length from the position where the bolt 5 penetrates is set to be substantially the same, and the force applied to the mounting portion 12 And the force applied to the end 15 on the opposite side is equal.
  • the force is applied equally to the mounting portion 12 and the ceramic plate 21 to reduce the external force acting on the ceramic plate.
  • the mounting portion 12 has an L-shaped cross-sectional shape by extending at least one vertical wall 8 to increase the secondary moment of section.
  • the thickness is thinner than the side pieces 3 and 4, for example, about half the thickness of the side pieces 3 and 4.
  • the height is almost the same as a conventional anchor hardware.
  • the floating amount and the bulky amount when the seat plate rides on the rib on the back surface of the ceramic plate and sinks under the vertical wall of the side pieces 3 and 4 can be suppressed.
  • the center piece 2 thin, the material cost can be reduced, the bending process can be facilitated, and the cutout of the overlapping portion can be reduced, so that the cross section of the center piece or both side pieces 3 and 4 can be reduced. Can be reduced.
  • the structural strength of the mounting portion 12 is reinforced, even if the wall thickness of the center piece 2 is made thinner than the left and right side pieces 3 and 4, the strength of the center piece 2 is not inferior and works from the building frame side. The bending deformation of the center piece 2 can be prevented by force or displacement.
  • the present invention is not limited to this embodiment, and as shown in FIGS. 26 to 30, the thickness of the center piece 2 and the thickness of the side pieces 3 and 4 are the same or necessary as in the case of conventional anchor hardware. Accordingly, the center piece 2 may be formed thicker than the side pieces 3 and 4.
  • the vertical wall 8 protrudes in parallel with the horizontal wall 9 toward the vertical wall 8 of the other piece at the lower end edge of the vertical wall 8 of one of the center piece 2 and the side pieces 3, 4 adjacent to each other.
  • the base plate 10 is provided with a seat plate 10 that sinks under the lower edge of the base plate and supports the vertical wall 8.
  • the seat plate 10 is formed on the center piece 2. Specifically, the lower end edges of both vertical walls 8 of the center piece 2 are folded outward and formed into a hat-shaped cross section, so that the seat that sinks under the vertical wall 8 of the skeleton 7 of the side pieces 3 and 4 is formed. A plate 10 is formed.
  • both vertical walls 8 of the center piece 2 is formed by folding the seat plate 10 part outward, at least the thickness of the seat plate 10 in the region where the seat plate 10 is not formed, The length as the leg (vertical wall 8) is formed short.
  • the portion where the seat plate 10 is formed only the portion of the seat plate 10 protrudes toward the porcelain plate back surface 21 a side from the lower end edges of the two vertical walls 8 of the center piece 2.
  • the notches 11 deeper than the thickness of the seat plate 10 are formed on the side pieces 3 and 4 at positions corresponding to the seat plate 10 of the center piece 2 and attached to the flat ceramic plate rear surface 21a.
  • the lower edge of the vertical wall 8 in the region where the notch 11 is not provided is provided, and on the center piece 2 side, the back surface of the seat plate 10 is provided so as to abut against the ceramic plate back surface 21a. . That is, only the part of the notch 11 is dented in the direction away from the porcelain plate back surface 21a rather than the lower end edges of both vertical walls 8 of the side pieces 3, 4. Therefore, when the anchor hardware 1 is placed on the flat ceramic plate back surface 21a, the side pieces 3 and 4 side contact the ceramic plate back surface 21a only with the lower edge of the vertical wall 8 in the region where the notch 11 is not provided.
  • the center piece 2 side is in contact with only the back surface of the seat plate 10, and the lower end edge of the vertical wall 8 at the notch portion is provided so as to float at the notch 11 portion.
  • the vertical wall 8 of the notch 11 portion of the side pieces 3 and 4 comes into contact with the seat plate 10 and the notch 11 It is provided so that the lower end edge of the vertical wall 8 in a region where no is provided is supported so as to float from the ceramic back surface 21a. For this reason, the side pieces 3 and 4 are supported so as to ride on the seat plate 10 of the center piece 2 and are fixed to the ceramic plate 21.
  • the seat plate 10 may be formed over the entire area of the center piece 2 in the front-rear direction. However, in order to reduce variations in the degree of application of the claw 6 to the fixing groove 22, the seat plate 10 functions sufficiently if it exists only in part. Therefore, it is desirable to form in the necessary minimum range in order to reduce the weight and reduce the cost. Therefore, in the present embodiment, as shown in FIGS. 2 and 3, the seat plate 10 is formed on the rear side of the center piece 2. In this case, the strength against bending can be increased by making the cross-sectional shape of the center piece 2 in the rear portion of the center piece 2, that is, the region on the rear end 15 side of the bolt 5 into a hat shape, and further increasing the second moment of section. .
  • the structural strength can be made comparable to the strength of the side pieces 3 and 4. According to experiments by the present inventors, it was confirmed that there is no problem in strength even if the thickness of the center piece 2 is about half of the thickness required from the strength required for the side pieces 3 and 4. Furthermore, since the floating of the center piece 2 is suppressed by the side pieces 3 and 4 that ride on the seat plates 10 on both sides of the center piece 2, it is possible to make it difficult to climb by the rotational moment that acts from the building housing 20 side.
  • the width of the seat plate 10 may be the same on the left and right as shown in FIG. 10, for example, but the width of one seat plate 10 is minimized as shown in FIG.
  • a space S is provided between the center piece 2 and the side piece 4 that allows the relative movement of the center piece 2 while suppressing the rattling of the center piece 2 by disposing the cushion 19 with the width 10 wide. It is preferable that it is sufficient to ensure. In this case, it is possible to cope with a case where the interval of the fixing groove 22 is changed to be wider, and the variation in the degree of application of the claw 6 to the fixing groove 22 can be further reduced.
  • an elastic deformation portion 14 for unevenness adjustment is formed on the horizontal wall 9 of one or both of the center piece 2 and the side pieces 3 and 4.
  • the elastic deformation portion 14 is formed by cutting and raising the U-shaped cut in the horizontal wall 9 by cutting and raising bending and tilting the horizontal wall 9 at an angle of less than 90 °. It is formed to function as a spring.
  • the elastically deforming portion (hereinafter simply referred to as a spring) 14 formed of a leaf spring is provided with an inclination of, for example, 10 to 45 °, preferably 15 to 30 °, more preferably 20 ° with respect to the horizontal wall 9. .
  • the spring 14 can be elastically deformed freely in the uneven direction of the foundation by receiving the force with the free end abutting against the foundation or the like when the anchor hardware 1 is attached to the building housing 20. By deforming in accordance with the degree, the backlash between the base and the anchor hardware 1 is suppressed, and the gap between them can be adjusted to be constant.
  • the spring 14 is formed on the horizontal wall 9 of the center piece 2 that is formed with the widest width.
  • the spring 14 is not particularly limited to this, and the width of the side pieces 3 and 4 is not limited to this.
  • the spring 14 may be formed on the horizontal wall 9 of the side pieces 3 and 4 so that the spring 14 is wide enough to form the spring 14.
  • the spring 14 may be formed. If the springs 14 are provided symmetrically before and after the side pieces 3 and 4, the unevenness can be adjusted without the center piece 2 having the spring 14.
  • the spring 14 may be cut and raised in either direction, but is preferably formed so as to protrude toward the rear end 15 or the front end side so as to come into contact with the base at a distance from the bolt 5. Further, as shown in FIG.
  • the spring 14 in the center piece 2 may be in any direction as long as it is on the rear side, but preferably on the rear end 15 side so as to come into contact with the substrate away from the mounting portion 12. It is forming so that it may protrude toward.
  • the width W1 of the skeleton part 7 of the center piece 2 is narrow, yawing and / or rolling is likely to occur around the bolt 5, and the rattling is not directly related to the absorption of movement during an earthquake. Therefore, the width W1 of the skeleton part 7 of the center piece 2 is, for example, 2 to 5 times, preferably 2 to 4 times, more preferably about 2.5 to 3.5 times the width W2 of the skeleton part 7 of the side pieces 3 and 4.
  • the cushion 19 is interposed between the skeleton part 7 of the center piece 2 and the skeleton part 7 of at least one of the side pieces 3 or 4 to reduce backlash during normal times.
  • the centerpiece 2 move relatively freely when the trunk edge or the base moves, so that the vibration is absorbed and the force is not easily transmitted directly to the ceramic plate 21 side.
  • the width W1 of the skeleton part 7 of the center piece 2 and the width W2 of the skeleton part 7 of the side pieces 3 and 4 are almost the same from the viewpoint of eliminating the rattling of the anchor hardware due to the unevenness of the back surface of the ceramic plate. There is no effect.
  • the fixing grooves 22 on the back surface 21a of the porcelain plate 21 are grooved on the upper and lower rib surfaces of the porcelain plate 21, and are cut obliquely with respect to the porcelain plate back surface 21a so as to nail the side pieces 3 and 4.
  • An overhang portion 22a to which 6 is caught is formed.
  • the shape of the porcelain plate enclosed between the pair of grooves 22 forms an ant shape, and the overhang portion 22a is formed by the slope of the groove 22 that divides both ends thereof.
  • the angle of the claw 6 and the angle of the overhang portion 22a of the fixing groove 22 are depicted as the same angle, but the angle of the claw 6 is smaller than the angle of the overhang portion 22a ( It is preferable that the claw 6 is brought into contact with the overhang portion 22a near the tip or the tip side. In this case, the base portion of the overhang portion 22a to which the claw 6 hits is thicker and stronger against the chip, so that the overhang portion 22a is less chipped.
  • the anchor hardware 1 of this embodiment is asymmetrical by alternately arranging the left and right seat plates 10 in the first embodiment in the front-rear direction.
  • the displacement around the mounting hole 12 a of the mounting portion 12 can be suppressed.
  • the vertical wall 8 of the side piece 4 rides on the seat plate 10 of the center piece 2 on the front side of the center piece, a displacement that presses the ceramic plate 21 against the building housing 20 is given.
  • force is applied to the ceramic plate 21 through the seat plate 10 in a distributed manner, so that it is resistant to destruction.
  • the seat plate 10 provided on each of the vertical walls 8 facing the center piece 2 of the left and right side pieces 3 and 4 is formed in the entire region from the front end to the rear end. However, it may be provided partially and symmetrically as shown in FIG. 10, FIG. 13, FIG. 26, FIG. 29, etc., or may be provided asymmetrically as shown in FIG. good.
  • the seat plate 10 includes the center of the center piece 2 (passage position of the bolt 5) or not, even on the front side (region closer to the mounting portion 12 than the pass position of the bolt 5), on the rear side, It can be formed anywhere as required. Since the shape of the rib formed on the back surface of the dry-formed ceramic plate is various, it is desired that the seat plate 10 is appropriately arranged accordingly.
  • the center piece 2 has a hook portion 25 so that the hook portion 25 is hooked on a base metal hardware (hereinafter referred to as a trunk edge) 29 installed on the building housing 20 side. It is what you use.
  • the trunk edge 29 in this case has a flange that is accommodated in the recess 26 surrounded by the hook portion 25, and is provided so as to be hooked without rattling in a direction orthogonal to the ceramic plate 21.
  • the anchor hardware 1 is attached to the lower end edge side of the ceramic plate 21, and the hook portion 25 is hooked on the trunk edge 29 to support the ceramic plate.
  • the left and right seat plates 10 formed at the rear part of the center piece 2 have the same width and are formed symmetrically.
  • a hook-type anchor hardware as shown in FIG. 23, it is a structure that is not directly fixed to the building frame 20 but is hooked on the trunk edge 29 or the like, so that it interferes with the anchor metal 1 on the ceramic plate 21 directly below. Otherwise, there is no need to set a gap S for absorbing the displacement in the width direction between the side pieces 3 and 4 and the center piece 2, so that the center piece 2 needs to be biased and arranged. Because there is no.
  • seat plates 10 are provided near the front ends and the rear ends of the side pieces 3 and 4, respectively.
  • the lower edge of the vertical wall 8 on the inner side of the side pieces 3 and 4 is bent toward the outer side, that is, the center piece 2 side, and is provided so as to sink under the lower edge of the vertical wall 8 of the center piece 2.
  • a notch 11 deeper than the thickness of the seat plate 10 is formed at the lower end edge portion of the vertical wall 8 of the center piece 2 that overlaps the seat plate 10 protruding from the side pieces 3 and 4, and wet molding is performed.
  • the lower edge of the vertical wall 8 in the region where the notch 11 is not provided is on the center piece 2 side, and the back surface of the seat plate 10 is on the side pieces 3 and 4 side. Are provided in contact with the ceramic plate back surface 21a.
  • the seat plate 10 is provided on the side pieces 3 and 4 and the vertical wall 8 of the center piece 2 is placed thereon, the effect of increasing the strength until the ceramic plate 21 is broken is particularly effective. is there. Since the force applied to the porcelain plate 21 is dispersed by the lower edge of the vertical wall 8 of the center piece 2, the porcelain plate 21 is not broken even if a larger force is applied than when the seat plate 10 is not provided.
  • the seat plate 10 when the seat plate 10 is disposed symmetrically at the front and rear ends of the side pieces 3 and 4, the seat plate 10 effectively acts on both the force that the porcelain plate 21 is pushed or pulled.
  • the seat board 10 in this embodiment as shown in FIG. 2, it is also possible to vary the width of the seat board 10 on the side where the cushion 19 is not interposed and on the side where the cushion 19 is not interposed.
  • FIGS. 17 to 20 show a fifth embodiment.
  • a hook-type anchor hardware is provided, and a seat plate 10 is provided near the front and rear ends of the side pieces 3 and 4.
  • the lower end edge of the vertical wall 8 on the side of the center piece 2 of the side pieces 3 and 4 is bent toward the center piece 2 side so as to enter the notch 11 below the lower end edge of the vertical wall 8 of the center piece 2.
  • the thickness of the center piece 2 is thin, for example, thinner than that required for the side pieces 3 and 4.
  • the bending strength is improved and the vertical wall 8 of the center piece 2 is provided with reinforcing ribs 24 to compensate for the decrease in strength caused by reducing the thickness.
  • the center piece By forming the center piece thin, the material cost can be reduced, the bending process can be facilitated, and the cutout of the overlapping portion can be reduced, so that the cross section of the center piece 2 or both side pieces 3 and 4 can be obtained. There are fewer defects.
  • the anchor metal object of this embodiment has an inner vertical wall in a state in which a screw hole 17 is provided in advance in a portion corresponding to the inner vertical wall 8 and a portion corresponding to the outer vertical wall 8 before bending.
  • the frame portion 7 can be bent so that two screw holes 17 of the outer vertical wall 8 and the outer vertical wall 8 are concentrically arranged.
  • the screw hole 17 for tightening the bolt 5 is generally cut by tapping.
  • Two processing methods are conceivable, in which the skeletal portion 7 is bent after the standing or the skeletal portion 7 is formed by bending and then the inner vertical wall 8 and the outer vertical wall 8 are tapped.
  • the skeleton 7 is formed into a channel shape by bending and then tapping is performed to cut the screw hole 17, the force at the time of tapping is applied to the vertical wall 8. The axis will tilt.
  • a special jig is disposed between the inner vertical wall 8 and the outer vertical wall 8, that is, in the space inside the skeleton part 7 so as to prevent the two vertical walls 8 from being bent. It is necessary to prevent the axis of the instrument from tilting. For this reason, there is a problem that a dedicated jig is required and work is troublesome.
  • a dedicated jig is required and work is troublesome.
  • the screw holes 17 of the inner vertical wall 8 and the screw holes 17 of the outer vertical wall 8 are inclined in opposite directions to each other, so that it is difficult to pass the bolt. There is a problem that the circumference of the bolt 5 becomes worse.
  • a through hole 33 is opened in advance in a region / portion where the force affects the periphery of the screw hole 17 before bending.
  • the inner vertical wall 8 and the outer vertical wall 8 around the screw hole 17 are separated by the presence of the through-hole 33 and are not pulled or compressed with each other.
  • the presence of the through hole 33 can be determined at a glance by the presence or absence of the through hole 33 that the screw hole 17 is cut between the side pieces 3 and 4 having the same shape. For this reason, the assembly work of the anchor hardware 1 can also be made quicker.
  • a seat plate 10 is provided at least in the vicinity of the rear ends of the side pieces 3 and 4, the center piece 2 is placed on the seat plate 10, and the bolt 5 is centered.
  • the rear length of the center piece 2 is made larger than the rear seat plate 10 of the side pieces 3 and 4 so that the distance from the center of the mounting hole 12a of the mounting portion 12 to the distance from the bolt 5 to the rear end 15 is substantially the same.
  • Reference numeral 35 in the figure is a protrusion 35 provided at the lower end of the center of the vertical wall 8 of the center piece 2 to prevent breakage due to insufficient strength around the hole 18 through which the bolt 5 passes. I try to get enough margins. The same applies to the embodiments of FIGS. 13 to 20 and FIG.
  • FIG. 29 to FIG. 30 show a seventh embodiment.
  • the length of the hook portion 25 of the center piece 2 is generally long enough to reach the front end edges of the side pieces 3 and 4 as illustrated in FIGS.
  • the hook portion 25 is easily hooked and is not easily detached, thereby providing more stable support.
  • part of the ceramic plate is replaced after the construction of the ceramic plate 21, for example, when replacing a defective ceramic plate, the hook portion 25 is removed from the trunk edge 29 by rotating the ceramic plate 21 to the front side while lifting it.
  • the hook-type anchor hardware of this embodiment is longer than the hook-type anchor hardware according to the embodiment shown in FIG. 10 to FIG. 12 or FIG.
  • the rear length of 2 is shortened. That is, the center piece 2 is shorter than the side pieces 3 and 4 by 20% to 50%, preferably 25% to 40%, respectively.
  • the rotation balance and cost of the center piece 2 can be reduced and the joint width can be narrowed. That is, the lifting amount of the ceramic plate 21 required for removing the hook portion 25 from the trunk edge 29 is small.
  • the swing angle of the center piece 2 with respect to the ceramic plate 21 is increased, so that the amount of lifting of the ceramic plate is reduced accordingly. That's it.
  • the amount of insertion of the ceramic plate 21 required when the new ceramic plate 21 is fitted at the position of the removed ceramic plate 21 can be reduced. Therefore, the width of the joint 32 can be reduced.
  • the seat plate 10 is preferably the front end or the center piece 2 or the side pieces 3 and 4 as shown in the eighth embodiment or the ninth embodiment shown in FIG. 31 or FIG. It is to provide a good balance (symmetrical arrangement) near the rear end.
  • the force applied to the ceramic plate 21 side through the vertical wall 8 inside the side pieces 3 and 4 or both the vertical walls 8 of the center piece 2 is performed through the seat plate 10.
  • the force can be dispersed and relaxed, which is effective in increasing the breaking strength of the ceramic board.
  • the seat plate 10 is provided at the front portion of the center piece 2 and the rear portions of the side pieces 3 and 4, not only the portion of the claw 6 but also the seat against the force of lifting the ceramic plate 21.
  • the plate 10 receives the force, it is more effective.
  • the vertical wall of the side piece serves as the seat plate of the center piece. Since it becomes a form to get on, when the displacement which presses the ceramic board 21 against a housing
  • the force that is pushed or pulled acts on the ceramic plate 21, even if it is the center piece 2 or the side pieces 3 and 4, if the seat plate 10 is arranged at the front and back, it is effective for both forces. Act on.
  • the dry construction method using the anchor hardware 1 is, for example, a direct fixing type as shown in FIG. 24 or 25 (fixed to the base itself or the body edge 29 attached to the base), as shown in FIG. There are two methods with the combined use of the hook type.
  • a pair of fixing grooves 22 is processed at appropriate positions over the upper and lower rib surfaces of the back surface of the ceramic plate 21.
  • the fixing groove 22 is formed on the upper and lower rib surfaces of the porcelain plate 21, and is cut obliquely with respect to the porcelain plate rear surface 21 a so as to catch the claws 6 of the side pieces 3 and 4. Is formed.
  • the claws 6 of the pair of side pieces 3 and 4 of the anchor hardware 1 in the temporarily assembled state are fitted into the fixing grooves 22 respectively.
  • the side pieces 3, 4 are pulled together to integrate the side pieces 3, 4 via the ceramic plate 21.
  • the center piece 2 is assembled between the side pieces 3 and 4 so as to be supported with a certain amount of play.
  • the ants formed between the fixing grooves 22 of the ceramic plate 21 are horizontally aligned with the pair of claw 6.
  • the ceramic plate 21 can be sandwiched between the wall 13 and the seat plate 10 and can be prevented from dropping after construction by fixing at a stable depth.
  • there is no bias in the degree of engagement between the claw 6 of the left and right side pieces 3 and 4 and the fixing groove 22 there is a defect caused by force concentration on the overhang portion 22 a of one fixing groove 22. Can be prevented.
  • the center piece 2 is placed on the seat plate 10 of the side pieces 3 and 4 and the center piece 2 and the side pieces 3 and 4 are kept at a constant height, the building is formed via the center piece 2.
  • the height of the ceramic plate 21 attached to the housing 20 is uniform, and the finish of the wall surface made of the ceramic plate 21 can be improved.
  • the presence of the seat plate 10 receives force even at a portion away from the overhang portion 22a, the force applied to the ceramic plate 21 can be dispersed, so that the nail 6 that results in the force until the ceramic plate is broken hits.
  • the overhang portion 22a is prevented from being missing.
  • a plurality of anchor hardware 1 is attached to appropriate portions of one exterior body.
  • the anchor hardware 1 is attached evenly at four places.
  • the anchor hardware 1 uses the fixing groove 22 on both side pieces 3 and 4 so that the attachment portion 12 of the center piece 2 protrudes outside the edge of the ceramic plate 21. And fixed to the ceramic plate 21.
  • the fixing means such as the screw 31 passes through the attachment hole 12a without interfering with the porcelain plate 21 and is screwed directly into the building frame 20 or into the body edge 29 on the building frame 20 side. Thereby, the attachment work to the building frame 20 of a ceramic board shall be easy.
  • Fig. 23 shows an example of attaching a ceramic plate to a reinforced concrete via a base metal fitting.
  • Angles 28 are fixed to the reinforced concrete building frame 20 by using anchor bolts 27 at predetermined intervals, and the body edges 29 are fixed to the angles 28 by fastening bolts 30 while performing unevenness adjustment.
  • the attaching part 12 of the anchor metal object 1 fixed to the upper end side of the porcelain plate 21 is fixedly coupled to the trunk edge 29 with a screw or the like (not shown).
  • the hook-type anchor 1 is fixed to the lower end side of the porcelain plate 21, and the lower end of the porcelain plate is fixed to the trunk edge 29 so that the hook portion 25 of the center piece 2 is hooked on the trunk edge 29.
  • the trunk edge 29 is provided so that the front end side thereof is folded and fitted into the recess 26 of the hook-type anchor fitting 1, and is provided so as to engage with the hook part 25 without rattling.
  • FIG. 24 shows an example in which the ceramic plate 21 is attached to the rim 29 of the reinforced concrete using only the anchor hardware 1 of FIG.
  • the anchor hardware 1 is fixed to the upper end side and the lower end side of the porcelain plate 21, respectively, and the mounting portion 12 of the anchor hardware 1 is shown on the trunk edge 29 of the concrete outer wall (not shown) that has been adjusted to the unevenness. Bonded with screws not shown.
  • the anchor metal 1 at the lower end of the upper porcelain plate and the anchor metal 1 at the upper end of the lower porcelain plate are arranged point-symmetrically so that the attachment portions 12 are combined with each other.
  • the space between the ceramic board 21 and the ceramic board 21, ie, the joint 32 is filled with joint material.
  • FIG. 25 is an example in which the ceramic plate is fixed by attaching the anchor hardware 1 directly to the foundation of the building housing 20.
  • the ceramic plate 21 is fixed to the building frame 20 by attaching the attachment portion 12 of the center piece 2 to the trunk edge 29 or the base, it is not illustrated, but the base is not flat (uneven and uneven) If there is, there is a need to adjust the unevenness such as placing a liner between the base and the anchor metal and floating the anchor metal about 1 to 3 mm. However, it is troublesome to carry out uneven adjustment such as inserting a liner for each location where the center piece is located locally.
  • the above-described embodiment is an example of a preferred embodiment of the present invention, but is not limited thereto, and various modifications can be made without departing from the gist of the present invention.
  • the spring 14 may not be required depending on the construction method. That is, as shown in FIG. 23, when the ceramic plate 21 is fixed to the building frame 20 using the trunk edge 29, the position adjustment is performed when the trunk edge 29 is attached to the angle 28 fixed directly to the building cabinet 20 side. Since the unevenness adjustment can be performed, the spring 14 is not necessary.
  • the center piece 2 is fixed directly to the base with screws or the like even if it is a conventional anchor metal fitting used for a porcelain plate that does not have ribs and has no irregularities on the back side, such as a wet-formed porcelain plate,
  • the presence of 14 is useful. Even in this case, since the unevenness adjustment is performed by the deformation caused by the contact of the spring 14 with the lower ground, it is not necessary to perform the unevenness adjustment before attaching the anchor hardware 1 directly to the ground. Construction becomes simpler. That is, forming the spring 14 on either the center piece 2 or the side pieces 3 and 4 is beneficial and effective in all cases in which the anchor hardware is attached directly to the base.
  • the seat plate 10 is formed so as to protrude in the opposite direction to either one or both of the center piece 2 and the side pieces 3 and 4, but is not particularly limited thereto.
  • the seat plate 10 may be protruded in the same direction.
  • the seat plate 10 protrudes from the vertical wall 8 inside the side piece 4, while the seat plate 10 protrudes from the vertical wall facing the other side piece 3 of the center piece 2.
  • One vertical wall 8 of the center piece 2 is placed on the seat plate 10 of the side piece 4 and the vertical wall 8 of the side piece 3 projects from the vertical wall on the opposite side of the center piece 2. May be placed. Even in this case, although it is structurally complicated, the initial purpose of stabilizing the state of the anchor metal claws in the fixing groove of the exterior material such as a ceramic plate having ribs is achieved.
  • the left and right seat plates 10 are alternately arranged in the front-rear direction of the center piece 2 so as to be left-right asymmetric, but with respect to the left and right side pieces 3, 4. It may be arranged alternately in the front-rear direction so as to be asymmetrical. In this case as well, the same effect as when the seat plate 10 is provided before and after the side pieces 3 and 4 can be obtained.
  • the seat plate has a vertical wall on the inner side of the side piece that is close to and faces one of the front side or the rear side of the vertical wall inside the side piece or the vertical wall of the center piece.
  • the seat plates may be arranged alternately with the vertical wall of the center piece.
  • the lower end of the vertical wall 8 inside each side piece 3, 4 is further bent to the center piece 2 side at the rear part of the side piece 4 and the front part of the side piece 3 to protrude the seat plate. You may make it let it.
  • the effects in this case are the same as those in FIGS. 31 and 32.
PCT/JP2009/005916 2008-11-06 2009-11-06 建物躯体に外装板を取り付けるためのアンカー金物 WO2010052921A1 (ja)

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JP2010506738A JP4709941B2 (ja) 2008-11-06 2009-11-06 建物躯体に外装板を取り付けるためのアンカー金物
CN200980144677.XA CN102203360B (zh) 2008-11-06 2009-11-06 用于将外饰板安装于建筑物本体的锚固件

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103938830A (zh) * 2014-04-28 2014-07-23 赵希誉 一种石材非幕墙挂件、非幕墙单元及免龙骨非幕墙体系
IT201600116373A1 (it) * 2016-11-17 2018-05-17 Angelo Beretta Sistema di ancoraggio e fissaggio di materiali di rivestimento ad una superficie esterna di edifici
US10900238B2 (en) 2018-11-05 2021-01-26 Hunter Douglas Inc. Coupling system for mounting tiles to a building
DE202021001801U1 (de) 2021-05-20 2022-08-25 Steffen Weiser Fassadenbefestigungsanordnung

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6431876B2 (ja) * 2016-07-14 2018-11-28 株式会社日本陶業 外壁パネルを固定するための固定金物
JP6744617B2 (ja) * 2016-09-14 2020-08-19 株式会社アクト 建物躯体に外装板を取り付けるためのアンカー金物

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH061971Y2 (ja) * 1986-03-28 1994-01-19 大塚オ−ミ陶業株式会社 外装板のアンカ−金物

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0532569Y2 (zh) * 1986-11-29 1993-08-20
JP3383041B2 (ja) * 1993-11-25 2003-03-04 大塚オーミ陶業株式会社 外装板乾式直張り工法
JP3598393B2 (ja) * 1996-12-24 2004-12-08 大塚オーミ陶業株式会社 化粧パネルの取付金物及び取付け工法
DE60041662D1 (de) * 2000-05-01 2009-04-09 Masao Suzuki Gebäude mit fassadenverkleidung
US7621100B2 (en) * 2005-02-22 2009-11-24 Davinci Italia/Usa Group, Llc Tile alignment and leveling device and method for using the same
CN101191376A (zh) * 2006-11-24 2008-06-04 周述文 石材或瓷砖的干挂装置及其装配方法
CN100462515C (zh) * 2006-11-30 2009-02-18 深圳市建筑科学研究院 具有隔热功能的外墙瓷砖墙面以及施工方法
CN101294441A (zh) * 2007-04-27 2008-10-29 上海成洋建筑工程有限公司 硅瓷板施工工艺

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH061971Y2 (ja) * 1986-03-28 1994-01-19 大塚オ−ミ陶業株式会社 外装板のアンカ−金物

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103938830A (zh) * 2014-04-28 2014-07-23 赵希誉 一种石材非幕墙挂件、非幕墙单元及免龙骨非幕墙体系
CN103938830B (zh) * 2014-04-28 2016-04-20 赵希誉 一种石材非幕墙挂件、非幕墙单元及免龙骨非幕墙体系
IT201600116373A1 (it) * 2016-11-17 2018-05-17 Angelo Beretta Sistema di ancoraggio e fissaggio di materiali di rivestimento ad una superficie esterna di edifici
EP3323959A1 (en) * 2016-11-17 2018-05-23 Beretta, Angelo System for anchoring and fixing covering materials to an external surface of buildings
US10900238B2 (en) 2018-11-05 2021-01-26 Hunter Douglas Inc. Coupling system for mounting tiles to a building
US11286675B2 (en) 2018-11-05 2022-03-29 Hunter Douglas Inc. Coupling system for mounting tiles to a building
US11686103B2 (en) 2018-11-05 2023-06-27 Hunter Douglas Inc. Coupling system for mounting tiles to a building
DE202021001801U1 (de) 2021-05-20 2022-08-25 Steffen Weiser Fassadenbefestigungsanordnung

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JPWO2010052921A1 (ja) 2012-04-05

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