Construction Masonry Brick Walls Coupling Apparatus
Patent Information
- Application Number
- KR1020250031030
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2045-03-11
Smart Images

Figure 112025027257352-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a masonry wall connection device for construction, and more specifically, to a masonry wall connection device for construction in which a position adjustment member is simply assembled to an assembly projection formed at regular intervals on a reinforcing plate formed on a wall support member formed in a grid shape on an outer wall, and a second magnet formed to be embedded on one side of a masonry brick is attached to a first magnet formed on the brick support plate of the position adjustment member, thereby enabling brick masonry construction to be performed more easily and accurately while minimizing breakage or damage from external impacts such as earthquakes. Background Technology
[0003] Generally, a building refers to something constructed for people to lead a life or to utilize indoor space.
[0004] While it is common for buildings to be constructed according to drawings designed during the construction process to maximize the utilization of indoor space, parts of the building may be opened up after construction is completed, or structures forming separate walls may be installed on the building's walls for use.
[0005] The walls of a building are typically formed by masonry walls constructed by stacking bricks, concrete blocks, etc., and recently, various connecting devices are being used to maintain a solid connection between the building walls and the masonry walls.
[0006] In Registered Patent No. 0343227 (June 22, 2002), a connecting device is used that is positioned between the mortar connecting the wall forming the building axis and the masonry wall.
[0007] Such connecting devices have the problem that the connection between the wall and the masonry wall can be easily damaged if the impact transmitted to the wall is transferred to the connecting device, and there is also the problem that it is difficult to use them while maintaining a firm bond between the wall and the masonry wall through a connecting device installed on the inside of the mortar.
[0008] To this end, Registered Patent No. 2747433 (December 23, 2024) describes a wall mounting plate fixedly installed on a wall, in which a plurality of connecting members are connected at different heights to form a supporting member, and in which one end of a rotating bar is rotatably connected to each supporting member, and in which each rotating bar is rotated at a different angle, a connecting device is provided in which an auxiliary connecting plate is connected to the tip of each rotating bar so as to be embedded inside the mortar filled between the wall and the masonry wall.
[0009] In other words, before pouring mortar to fix the masonry wall to the wall, a connecting device is fixed to the wall at a certain height in advance. Then, while pouring the mortar, the masonry wall is attached to the upper and lower parts of the rotating bar of the connecting device, and an auxiliary connecting plate is embedded along with the rotating bar in the mortar filled between the upper and lower masonry walls, thereby ensuring a secure fixation.
[0010] However, conventional connecting devices present not only the operational difficulty of having to be fixed to the wall in advance so as to be positioned between the masonry walls to be attached, but also the problem that they cannot prevent damage to the masonry walls caused by earthquakes or external impacts, as they are embedded in the mortar between the upper and lower walls rather than actually fixing the masonry walls, resulting in the masonry walls being fixed to the mortar. Prior art literature
[0012] (Reference 1) Registered Patent No. 0343227 (June 22, 2002) (Reference 2) Registered Patent No. 2747433 (December 23, 2024) The problem to be solved
[0013] Accordingly, the present invention aims to solve the above-mentioned problems and provides a masonry wall connection device for construction that allows a position adjustment member to be simply connected to a wall support member formed with uniform height and width on an outer wall, and attaches a magnet embedded on one side of a masonry brick to a magnet provided on the front of the position adjustment member, thereby enabling accurate and robust brickwork between masonry bricks while simultaneously minimizing damage to the masonry wall caused by earthquakes, etc. means of solving the problem
[0015] A masonry wall connection device for construction according to the present invention for achieving the above-mentioned purpose comprises: a wall support member in which a reinforcing plate is formed integrally with a fixed plate having a predetermined thickness and spaced apart from the length and height of a masonry brick by a predetermined width from a fixed plate formed in a grid shape while being in close contact with an outer wall, and a circular assembly projection having a side cross-section of a predetermined diameter is formed on the reinforcing plate at an intermediate height, and the reinforcing plate at the upper and lower portions of the assembly projection is fixed to the outer wall by an anchor bolt; A position adjustment member comprising: a projection receiving cap portion formed on one side facing the assembly projection on the front of the wall support member, so as to receive the assembly projection inserted from one side and surround an outer surface exceeding the diameter; a brick support plate formed integrally from the projection receiving cap portion on the side opposite to the surface into which the assembly projection is inserted, and formed to be in close contact with the masonry brick; a lower portion of the brick support plate formed by horizontally bending a predetermined width to form a brick placement plate; and a first magnet embedded and fixed on the front of the brick support plate so as to adjust the position of the masonry brick by attachment to a second magnet embedded on one side of the masonry brick; and a side cap member fixedly coupled to the projection receiving cap portion to cover both ends of the projection receiving cap portion into which the assembly projection is inserted, thereby preventing the assembly projection from deviating laterally. The upper and lower portions of the position adjustment member are fixedly assembled to the upper and lower surfaces of the protrusion receiving cap portion, and the upper and lower surfaces are aligned horizontally with the upper and lower surfaces of the masonry brick, covering the space between the fixing plate and the brick support plate, and are formed as a finishing member made of the same material as the masonry brick or a ceramic material.
[0016] A locking groove is formed on the upper and lower surfaces of the protrusion receiving cap portion, and a latch is formed on the upper and lower surfaces of the side cap member connected to the side end of the protrusion receiving cap portion, on the same vertical line as the locking groove.
[0017] The above-mentioned finishing member is provided on both sides along with the upper and lower parts of the position adjustment member, so that a protrusion on the outer cross-section of the side cap member is fitted into a groove to cover both sides. Effects of the invention
[0019] In the construction masonry wall connecting device according to the present invention as described above, a position adjustment member is connected to an assembly projection formed on a reinforcing plate of a wall support member that is fixedly installed along an outer wall, and masonry bricks are attached to the position adjustment member so as to be adjustable at various angles by magnetic force, and the masonry bricks are fixedly connected by cement concrete, thereby enabling easier and more robust masonry wall formation and accurate masonry wall construction at an optimal angle. Brief explanation of the drawing
[0021] FIG. 1 is an exploded perspective view of a masonry wall connecting device for construction according to the present invention. FIG. 2 is a side cross-sectional exploded view illustrating a masonry wall connection device for construction according to the present invention. FIG. 3 is a front view partially illustrating a wall support member of a masonry wall connecting device for construction according to the present invention. FIG. 4 is a half-sectional exploded perspective view illustrating a position adjustment member and a side cap member of a masonry wall connecting device for construction according to the present invention. FIG. 5 is a partial plan view illustrating the combined state of a masonry wall connecting device for construction according to the present invention. FIG. 6 is a side cross-sectional view illustrating the connection structure of a finishing member in a masonry wall connection device for construction according to the present invention. FIG. 7 is a plan view illustrating the assembly structure of a masonry wall connecting device for construction according to the present invention. FIG. 8 is a structural diagram of a masonry wall construction using a masonry wall connecting device according to the present invention. Specific details for implementing the invention
[0022] Below, with reference to the attached drawings, embodiments of the present invention are described in detail so that those skilled in the art can easily implement the invention.
[0023] The scope of the present invention shall not be interpreted as being limited by the embodiments described in the text.
[0024] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. In the description of the embodiments, the same reference numerals are assigned to identical components, and in some cases, the description of the same reference numerals is omitted.
[0025] FIG. 1 is an exploded perspective view of a masonry wall connecting device for construction according to the present invention, and FIG. 2 is a side cross-sectional exploded view illustrating a masonry wall connecting device for construction according to the present invention.
[0026] As illustrated, the construction masonry wall connecting device of the present invention is largely composed of a wall support member (10), a position adjustment member (20), a side cap member (30), a finishing member (40), and a masonry brick (50).
[0027] The wall support member (10) of the present invention is configured to be fixedly installed on the outer wall of a building, and is formed in a grid shape as shown in FIG. 3, and is made of a fixing plate (11) that is fixed in close contact with the outer wall of the building, a reinforcing plate (12) formed to protrude forward with a predetermined thickness from the fixing plate (11), and an assembly projection (13) formed to protrude forward with a circular side cross-section from the reinforcing plate (12), and the wall support member (10) is fixed using an anchor bolt (14) from the reinforcing plate (12).
[0028] That is, a reinforcing plate (12) is formed by being spaced apart from the fixing plate (11) by a length longer than the length of the masonry brick and a predetermined height, while simultaneously protruding forward from the fixing plate (11) by a predetermined thickness. On this reinforcing plate (12), an assembly protrusion (13) is formed at an intermediate height with a circular cross-section in the horizontal direction, and an anchor bolt (14) is fastened to the outer wall through the reinforcing plate (12) at the upper and lower parts of the assembly protrusion (13) so that it can be firmly fixed to the outer wall.
[0029] A position adjustment member (20) is connected to the assembly projection (13) formed on the reinforcing plate (12) so that the angle can be adjusted up and down.
[0030] As shown in FIG. 4, the position adjustment member (20) is configured such that a protrusion receiving cap portion (21) is formed on one side facing the assembly protrusion (13) on the front of the wall support member (10), and a vertical brick support plate (22) is integrally formed from the protrusion receiving cap portion (21) so as to be in close contact with one side of the brickwork, and the lower part of the brick support plate (22) is horizontally bent forward by a predetermined width to form a brick placement plate (23), and a first magnet (24) is embedded and fixed in the center of the vertical brick support plate (23).
[0031] At this time, the brick support plate (22) is formed to have a size corresponding to one side of the brickwork, and the protrusion receiving cap portion (21) formed integrally with the brick support plate (22) is formed to have the same length as the assembly protrusion (13) formed in the horizontal direction on the reinforcing plate (12) of the wall support member (10), and the protrusion receiving cap portion (21) is formed with a protrusion insertion hole (210) that is horizontally penetrating with a diameter not smaller than the outer diameter of the assembly protrusion (13) so that the assembly protrusion (13) is inserted, and is open to a predetermined height toward the assembly protrusion (13).
[0032] The protrusion insertion hole (210) is formed such that the height of the open end on one side, which is open toward the assembly protrusion (13), is smaller than the outer diameter of the assembly protrusion (13), so that the assembly protrusion (13) can be inserted from one side of the protrusion insertion hole (210) but is prevented from coming off toward the assembly protrusion (13).
[0033] However, it is preferable that the protrusion receiving cap portion (21) on the assembly protrusion (13) be coupled so that the angle can be adjusted in the up and down direction with respect to the assembly protrusion (13) as an axis, but that they be coupled in a mutually forced manner.
[0034] Meanwhile, it is more preferable that the first magnet (24) embedded in the brick support plate (23) be embedded in such a way that it is not detached from the brick support plate (23), so that the plate surface exposed to the front forms a flat surface identical to the front plate surface of the brick support plate (23) which is provided to support the outer side of the first magnet (24).
[0035] Side cap members (30) are connected to both ends of the protrusion receiving cap (21) into which the assembly protrusion (13) is inserted in the position adjustment member (20).
[0036] The side cap member (30) is configured to cover the open end of the protrusion receiving cap part (21) into which the assembly protrusion (13) is inserted so that the assembly protrusion (13) does not detach laterally. In order to combine and fix with the protrusion receiving cap part (21), as in the present invention, a fixing bolt (31) may be used to pass through the side cap member (30) and screw-couple it to the protrusion receiving cap part (21). However, as shown in FIG. 5, a locking groove (211) is formed on the upper and lower surfaces of the protrusion receiving cap part (21), and a latch (32) is formed on the upper and lower surfaces of the side cap member (30) connected to the side end of the protrusion receiving cap part (21), so that the side cap member (30) is simply pushed to fix it, thereby blocking the side end of the protrusion receiving cap part (21) and preventing the assembly protrusion (13) from detaching.
[0037] Meanwhile, in the present invention, the upper and lower surfaces between the fixing plate (11) of the wall support member (10) and the brick support plate (11) of the position adjustment member (20) are covered by a finishing member (40).
[0038] The finishing member (40) is configured to cover the upper and lower surfaces between the fixing plate (11) and the brick support plate (11), but may also cover both sides.
[0039] The finishing member (40) is configured to be fixed so as to be in close contact with the upper and lower surfaces of the protrusion receiving cap part (21) as shown in FIG. 6 at the upper and lower parts of the position adjustment member (20), and to cover the space between the fixing plate (11) and the brick support plate (22) by positioning the upper and lower surfaces of the brick on the same horizontal line as the upper and lower surfaces of the brick.
[0040] The finishing member (40) is formed from a material such as masonry brick or ceramic material, and when the finishing member (40) is joined from the top and bottom, the upper and lower surfaces of the protrusion receiving cap (21) are formed with an upward and downward protruding fitting projection (25) as shown in the drawing, and each finishing member (40) has a fitting groove (41) formed so that each fitting projection (25) is fitted into the press fit, but is not necessarily limited thereto.
[0041] The operation and effects of the construction masonry wall connecting device according to the present invention, as described above, are explained in more detail as follows.
[0042] In the present invention, the masonry wall connection device for construction is fixedly connected to the outer wall using anchor bolts (14) with reinforcing plates (12) formed at regular intervals on the fixing plate (11) in a grid-shaped wall support member (10) provided along the outer wall.
[0043] In the wall support member (10), reinforcing plates (12) are formed at regular intervals, and on each reinforcing plate (12), assembly protrusions (13) are formed forward in a horizontal direction at an intermediate height.
[0044] In this state, to stack bricks (50) as shown in Fig. 7, the assembly protrusion (13) of the reinforcing plate (12) located at the bottom is connected by sliding insertion of the protrusion receiving cap (21) of the position adjustment member (20) from one side, and the assembly protrusion (13) received in the protrusion insertion hole (210) at both ends of the protrusion receiving cap (21) is prevented from coming out.
[0045] After the assembly protrusion (13) is inserted into the protrusion receiving cap (21) so that the position adjustment member (20) is connected, the space between the fixing plate (11) and the brick support plate (22) is covered by the finishing member (40) at least up to the upper and lower parts or both sides.
[0046] When the finishing member (40) is connected, the outer plate surface of the finishing member (40) becomes level with the cross-section of the brick support plate (22), thereby protecting the interior from the outside.
[0047] With the exterior covered by the finishing member (40), the front side of the brick support plate (22) is fixed so that the second magnet (51) of the brick (50) is embedded therein and is firmly attached by the magnetic force between the first magnet (24) and the second magnet (51).
[0048] However, before connecting the bricks (50), concrete mortar is first poured to a height from the floor to the brick mounting plate (23) as shown in FIG. 8, and then the lower part of one side on which the second magnet (51) of the brick (50) is formed is placed on the brick mounting plate (23), and the first magnet (24) of the brick support plate (22) and the second magnet (51) of the brick (50) are firmly attached by strong magnetic force.
[0049] In this way, concrete mortar is poured so that the masonry bricks (50) are stacked sequentially, and concrete mortar is poured into the spaced-apart spaces between the finishing members (40) and the masonry bricks (50) so that the finishing members (40) and the masonry bricks (50) are firmly joined.
[0050] Meanwhile, according to the present invention, when a brick (50) is attached to a brick support plate (22), even if the building's outer wall is not uniform, the position adjustment member (20) can be finely adjusted in the up and down direction with the assembly protrusion (13) as an axis, and the position of the second magnet (51) attached to the first magnet (24) can be angle-changed and moved along the plate surface at various angles, thereby significantly improving the stacking completion of the brick (50).
[0051] In particular, since most of the assembly protrusions (13) of the reinforcing plate (12) and the position adjustment member (20) are covered by the finishing member (40), they have cushioning power against external shocks such as earthquakes, thereby minimizing damage or breakage caused by such shocks, and at the same time, providing an effect that is very easy to repair or maintain.
[0052] As such, it is obvious to those skilled in the art that the present invention is not limited to the described embodiments and can be modified and varied in various ways without departing from the spirit and scope of the invention. Accordingly, such modifications or variations should be deemed to fall within the scope of the claims of the present invention. Explanation of the symbols
[0054] 10 : Wall support member 11 : Fixing plate 12 : Reinforcement plate 13 : Assembly protrusion 14 : Anchor bolt 20 : Position adjustment member 21: Protrusion receiving cap part 22: Brick support plate 23: Brick mounting plate 24: First magnet 25 : Custom protrusion 30 : Side cap member 31 : Fixing bolt 40 : Finishing member 41 : Custom Home 50 : Masonry bricks 51 : Second magnet
Claims
Claim 1 A wall support member (10) that forms a reinforcing plate (12) by protruding forward by a predetermined thickness from the fixing plate (11) while being spaced apart by a length greater than the length of the masonry brick (50) and spaced apart by a predetermined height, and forms a circular assembly projection (13) with a side cross-section having a predetermined diameter at an intermediate height on the reinforcing plate (12), and the reinforcing plate (12) at the upper and lower parts of the assembly projection (13) is fixed to the outer wall by an anchor bolt (14); A position adjustment member (20) is formed such that, on one side facing the assembly protrusion (13) on the front of the wall support member (10), a protrusion receiving cap portion (21) is formed to receive the assembly protrusion (13) from one side and surround an outer surface with a diameter greater than or equal to the diameter, and a brick support plate (22) is formed to be in close contact with the masonry brick (50) by being integrally formed from the protrusion receiving cap portion (21) on the side opposite to the side where the assembly protrusion (13) is inserted, and the lower part of the brick support plate (22) is horizontally bent to form a brick placement plate (23) with a predetermined width, and a first magnet (24) is embedded and fixed on the front of the brick support plate (22) so that the position of the masonry brick (50) can be adjusted by attachment with a second magnet (51) embedded on one side of the masonry brick (50); A masonry wall connecting device for construction comprising: a side cap member (30) that is fixedly coupled to the protrusion receiving cap part (21) to cover both ends of the protrusion receiving cap part (21) into which the assembly protrusion (13) is inserted, thereby preventing the assembly protrusion (13) from deviating laterally; and a finishing member (40) that is fixedly assembled to the upper and lower surfaces of the protrusion receiving cap part (21) at the upper and lower ends of the position adjustment member (20), and covers the space between the fixing plate (11) and the brick support plate (22) while ensuring that the upper and lower surfaces are on the same horizontal line as the upper and lower surfaces of the masonry brick (50), and is made of the same material as the masonry brick (50) or a ceramic material. Claim 2 A masonry wall connecting device for construction according to claim 1, wherein a locking groove (25) is formed on the upper and lower surfaces of the projection receiving cap portion (21), and a latch (32) is formed on the upper and lower surfaces of the side cap member (30) connected to the side end of the projection receiving cap portion (21) in the same vertical line as the locking groove (25). Claim 3 A masonry wall connecting device for construction according to claim 1, wherein the finishing member (40) is provided on both sides together with the upper and lower parts of the position adjustment member (20), so that a projection on the outer cross-section of the side cap member (30) is fitted into a groove to cover both sides.
Citation Information
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