Insulation panel having droplet-shaped coupling structure

The insulating panel with a water drop-shaped bonding structure addresses the challenge of step formation during installation by enabling easy connection and maximizing bonding strength, making it suitable for both skilled and unskilled installers and enhancing insulation effectiveness.

WO2025110485A1PCT designated stage expired Publication Date: 2025-05-30HYUN YOUNG GUN
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Patent Information

Application Number
PCT/KR2024/015881
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-21
Filing Date
2024-10-18
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

Conventional insulating panels require skilled professionals for installation due to the risk of steps forming between panels, which delays installation, reduces insulation effectiveness, and necessitates additional processing steps.

Method used

An insulating panel with a water drop-shaped bonding structure, featuring a soft insulating member and connecting members with a water drop-shaped cross-section that gradually increases towards the ends, allowing for easy connection without steps and enhanced bonding strength.

Benefits of technology

Enables even beginners to connect insulating panels quickly and efficiently, prevents step formation, maximizes bonding strength and sealing, and enhances long-term stability and insulation performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention comprises: an insulation member (100) made of hard urethane or hard foam; a first connection means (210) which is formed on one end of the insulation member (100), and which includes first fixing protrusions (212) spaced a predetermined distance apart and a first protrusion coupling recess (216) formed between the first fixing protrusions (212); and a second connection means (220) which is formed on the other end of the insulation member (100), and which includes a second protrusion coupling recess (226) into which the first fixing protrusion (212) is inserted so that the first connection means (210) is coupled thereto when the insulation panels are connected, second fixing protrusions (222) for supporting that the first fixing protrusion (212) can be inserted into and fixed to the second protrusion coupling groove (226), and a third fixing protrusion (224) formed between the second fixing protrusions (222) and inserted into the first protrusion coupling recess (216).
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Description

Insulating panel with a water drop-shaped bonding structure

[0001] The present invention relates to an insulating panel having a water droplet-shaped bonding structure, and more specifically, to an insulating panel having a water droplet-shaped bonding structure, which comprises a soft insulating member and a connecting member formed at each end of both sides of the insulating member, and which not only enables a plurality of insulating members to be easily and simply connected by means of a connecting member, but also prevents the occurrence of a step during connection, thereby shortening the time and process required for constructing the insulating panel.

[0002] Generally, the insulation panels used for construction include plywood made of wood, fiberboard made of glass fiber, EPS panels made of expanded polystyrene, urethane panels made of polyurethane foam, and sandwich panels.

[0003] In the case of insulation panels according to this conventional technology, in order to fix them to the exterior wall, urethane foam is injected or filled between the insulation panels, and then the urethane foam exposed to the outside of the insulation panels is removed after waiting for a certain period of time until it hardens. This process is then carried out to install them on the exterior wall.

[0004] However, as shown in Fig. 1, when installing an insulation panel (20) according to the prior art on an exterior wall (10), if the installer is not a skilled professional, a step (22) occurs between the insulation panels (20), and a separate process must be performed to solve the step (22) problem, which not only delays the installation of the insulation panel (20), but also reduces the completion of the installation of the insulation panel (20) due to the step (22), and also significantly reduces the insulation effect.

[0005] In order to solve such a problem, the present invention has been devised by the background technology described above, and its purpose is to provide an insulating panel having a droplet-shaped connecting structure that allows even a beginner to easily and simply connect a plurality of insulating members by means of a soft insulating member and a connecting member formed at each end of the insulating member on both sides and having a droplet-shaped connecting means.

[0006] In addition, the present invention aims to provide an insulation panel having a water drop-shaped bonding structure that can prevent a step from occurring when connecting a plurality of insulation panels, thereby shortening the time and process required for constructing the insulation panel.

[0007] In addition, the present invention aims to provide an insulation panel having a water drop-shaped bonding structure in which water drop-shaped connecting means, whose cross-sectional area gradually increases toward the ends, are connected to each other in a fitting manner, thereby maximizing the bonding force and sealing between the connecting means.

[0008] In addition, the present invention provides an insulating panel having a water drop-shaped bonding structure that is configured so that a foam member such as urethane foam can be filled between connecting means that are fitted together, thereby enabling the connecting means to be more tightly bonded by the foaming means and at the same time stably maintaining the bonded state for a long time, and further maximizing the insulating properties.

[0009]

[0010] According to one embodiment of the present invention for achieving such a task, there is provided a first connecting means (210) comprising: an insulating member (100) made of rigid urethane or rigid foam; a first fixing protrusion (212) formed at one end of the insulating member (100) and spaced apart from each other by a predetermined interval; and a first protrusion engaging groove (216) formed between the first fixing protrusions (212); And it is characterized by including a second connecting means (220) including a second protrusion coupling groove (226) configured at the other end of the insulating member (100) and into which the first fixing protrusion (212) is inserted so that the first connecting means (210) is coupled when the insulating panel is connected, a second fixing protrusion (222) that supports the first fixing protrusion (212) so that it can be inserted and fixed into the second protrusion coupling groove (226), and a third fixing protrusion (224) configured between the second fixing protrusion (222) and inserted into the first protrusion coupling groove (216).

[0011] According to one embodiment of the present invention, the first to third fixing protrusions (212, 222, 224) are characterized in that they are configured in a form in which their cross-sectional areas gradually increase toward the ends.

[0012] According to one embodiment of the present invention, the first connecting means (210) is characterized in that it further comprises a first protrusion mounting portion (214) configured at the upper and lower portions of the outer end portion, respectively, and configured to have a predetermined curvature so that the second fixing protrusion (222) is closely mounted thereon.

[0013] According to one embodiment of the present invention, the first fixing projection (212) is further characterized by having a first groove portion (212a) that forms a filling groove (420) so that filling of a filling member is performed after being coupled with the second connecting means (220).

[0014] According to one embodiment of the present invention, the second fixing protrusion (222) is characterized in that it further includes a second groove portion (222a) that supports the outer surface of one end of the first fixing protrusion (212) so that it can be joined while being in close contact when the first and second connecting means (210, 220) are joined, and forms a filling groove (420) so that the filling member can be filled.

[0015] According to one embodiment of the present invention, the third fixing protrusion (224) is characterized in that it further comprises a third groove (224a) that is coupled while being in close contact with the outer surface of one end of the first fixing protrusion (212).

[0016] According to one embodiment of the present invention, the insulating member (100) is characterized in that it further comprises a panel member (300) including an outer board.

[0017] According to an embodiment of the present invention, there is an effect that even a beginner can easily and simply connect a plurality of insulating members by using a soft insulating member and a connecting member formed at each end of the insulating member and having a water drop-shaped connecting means.

[0018] In addition, according to an embodiment of the present invention, it is possible to prevent a step from occurring when connecting a plurality of insulation panels, thereby reducing the time and process required for constructing the insulation panels.

[0019] In addition, according to an embodiment of the present invention, the connecting means in the shape of a water droplet, the cross-sectional area of ​​which gradually increases toward the end, are configured to be joined to each other in a fitting manner, thereby having the effect of maximizing the bonding force and sealing between the connecting means.

[0020] In addition, according to an embodiment of the present invention, by being configured so that a foam member such as urethane foam can be filled between connecting means that are fitted together, the connecting means can be more tightly joined by the foam means, and at the same time, the joined state can be stably maintained for a long time, and there is an effect of further maximizing the insulation.

[0021] Figure 1 is a drawing schematically showing the construction status of an insulation panel according to the prior art.

[0022] Figures 2 and 3 are cross-sectional views showing an insulating panel having a water drop-shaped bonding structure according to one embodiment of the present invention.

[0023] Figure 4 is an enlarged view showing a connecting member of an insulating panel having a water drop-shaped bonding structure according to one embodiment of the present invention.

[0024] FIG. 5 is a schematic diagram showing a state in which a filling material is filled in the space between insulating panels having a water drop-shaped bonding structure according to one embodiment of the present invention.

[0025] Figures 6 to 8 are other examples showing an insulating panel having a water droplet-shaped bonding structure according to one embodiment of the present invention.

[0026] FIG. 9 is a drawing schematically showing a process of joining an insulating panel having a water drop-shaped joining structure according to one embodiment of the present invention.

[0027]

[0028] Hereinafter, embodiments of the present invention will be described in detail with reference to the attached drawings.

[0029] As illustrated, the insulation panel having a water drop-shaped bonding structure of the present invention comprises an insulation member (100) made of a rigid insulation material, and a connecting member (200) that is bonded to both ends of the insulation member (100) and connects a plurality of insulation members (100) in a fitting manner.

[0030] The insulating material (100) is made of a material such as rigid urethane or rigid foam, and is made of a material that has a certain degree of elasticity but is not easily damaged.

[0031] These insulating members (100) may be configured to have a rectangular shape, but are not limited thereto.

[0032]

[0033] The connecting member (200) is configured to include a first connecting means (210) that is connected to one end of the insulating member (100), and a second connecting means (220) that is connected to the other end of the insulating member (100) at a position opposite to the first connecting means (210), and that is connected to the first connecting means (210) in a fitting manner when connecting the insulating members (100).

[0034] It is preferable that the connecting member (200) be formed long along the vertical length direction of the insulating member (100), but it is not limited thereto.

[0035] In addition, the first and second connecting means (210, 220) connecting the insulating panels to each other are configured so that the shape of their cross-sections has a rough shape of a water droplet.

[0036] Additionally, it is preferable that it be composed of the same material as the insulating member (100), but it is not limited thereto.

[0037] The first connecting means (210) is formed in a water drop shape and is configured to be separated by a predetermined interval and to include a first fixing projection (212) that is detachably coupled to a second protrusion coupling groove (226) of a second connecting means (220) to be described later, and a first protrusion mounting portion (214) formed on the outer surface of the first fixing projection (212) and on which the second fixing projection (222) of the second connecting means (220) is mounted, and a first protrusion coupling groove (216) formed between the first fixing projection (212) and to which the third fixing projection (216) of the second connecting means (220) is detachably coupled.

[0038] Here, the first protrusion mounting portion (214) is configured on the upper and lower portions of the outer end of the first connecting means (210), respectively, and is configured to have a predetermined curvature to support the second fixing protrusion (222) of the second connecting means (220) to be described later so that it can be mounted in close contact.

[0039] That is, the first protrusion mounting portion (214) is configured with a curvature corresponding to the curvature forming the outer surface of the second fixed protrusion (222) having a water drop shape, and supports the first and second connecting means (210, 220) so that a close connection is made when they are connected.

[0040] The first fixing protrusion (212) is configured to be spaced apart in the thickness direction of the connecting member (200), and in the present invention, it may be configured in two pieces.

[0041] The first fixed projection (212) is configured in a form in which its cross-sectional area gradually increases toward one end side, which is configured to be coupled and closely attached to the second projection coupling groove (226), and a first groove portion (212a) is formed on the other end side opposite thereto to form a filling groove (420) so that, after coupling with the second connecting means (220), a filling material such as urethane foam or silicone is filled.

[0042]

[0043] The second connecting means (220) is configured to have the same shape as the first fixing protrusion (212), the first protrusion mounting portion (214), and the first protrusion engaging groove (216) of the first connecting means (210), and is configured to include the second fixing protrusion (222), the third fixing protrusion (224), and the second protrusion engaging groove (226) so that the first connecting means (210) can be detachably engaged.

[0044] Here, the second fixing protrusion (222) is configured on the upper and lower portions of the outer end of the second connecting means (220), respectively, and is supported so that the first fixing protrusion (212) can be inserted and fixed into the second protrusion engaging groove (226) while being secured to the first protrusion securing portion (214) of the first connecting means (210).

[0045] The second fixing protrusion (222) like the first fixing protrusion (212) is formed with a second groove (222a) that allows for a close connection by allowing the outer surface of one end of the first fixing protrusion (212) to be in close contact when the first and second connecting means (210, 220) are connected.

[0046] In addition, the third fixing protrusion (224) is formed between the second fixing protrusions (222) and is formed coaxially with the first protrusion coupling groove (216) of the first connecting means (210).

[0047] This third fixing protrusion (224) is coupled to the first protrusion coupling groove (216) formed in the first connecting means (210), and a third groove portion (224a) is formed by tightly coupling the outer surface of one end of the first fixing protrusion (212) while being in close contact.

[0048] That is, the first and second fixing protrusions (212, 222) are configured so that when the first and second connecting means (210, 220) are coupled, their respective outer surfaces are interlocked with each other through the first and second grooves (212a, 222a), and the first fixing protrusion (212) is coupled to the second protrusion coupling groove (226), and the first and third fixing protrusions (224) are configured so that they are interlocked with each other through the first and third grooves (212a, 224a), and the third fixing protrusion (224) is coupled to the second protrusion coupling groove (226).

[0049] In addition, the second and third grooves (222a, 224a) can also be formed with filling grooves (420) so that filling of the filling member can be achieved, similar to the first groove (212a).

[0050] Here, the filling groove (420) is formed in the first and second projection joining grooves (216, 226) and the first and second projection mounting portions (216, 226), and is configured as a predetermined spaced apart portion formed when the first to third fixing projections (212, 222, 224) are joined, so that a closer joining between the first to third fixing projections (212, 222, 224) can be achieved when the filling member is filled.

[0051] The present invention, configured as described above, forms a perfect air-blocking structure in a water drop-shaped structure by the first to third fixing protrusions (212, 222, 224) that are interlocked, thereby significantly reducing the use of urethane foam or silicone used in the work of existing insulation boards or interior / exterior materials.

[0052] The present invention, configured as described above, is configured so that when the first connecting means (210) is connected to the second connecting means (220), a predetermined compression occurs from the part where they come into contact with each other, as shown in FIG. 9, and when the connection is made by complete insertion, the compressed first and second connecting means (210, 220) are restored to their original state, allowing for a closer connection, thereby maximizing the sealing property.

[0053]

[0054] Meanwhile, as shown in FIG. 6, the insulating member (100) of the present invention may further include a panel member (300) including an outer board on each of its upper and lower surfaces.

[0055] At this time, the panel member (300) may be configured to be combined with the connecting member (200) to be described later, and preferably, the end of the panel member (300) may be configured to be positioned on the same line as the end of the first fixing protrusion (212) on the first connecting means (210) side of the connecting member (200), and the opposite end of the second connecting means (220) side of the connecting member (200) may be formed up to the point where the first groove (212a) of the second fixing protrusion (222) begins, and when the insulating panel is combined, as illustrated in FIG. 8, the panel member (300) configured on the first connecting means (210) side and the panel member (300) configured on the second connecting means (220) side may be combined so as to be in contact with each other.

[0056] In addition, the present invention may further include an insertion groove (230) into which both ends of the insulating member (100) are inserted so that the insulating member (100) can be inserted and fixed to the connecting member (200).

[0057] That is, the present invention may be configured such that the insulating member (100) and the connecting member (200) are integrally formed, but is not limited thereto, and the connecting member (200) may be detachably connected to the insulating member (100).

[0058] Meanwhile, in the present invention, the panel member (300) can be configured to be inserted and fixed into an insertion groove (230) formed in the connecting member (200).

[0059] At this time, it is preferable that the panel member (300) further be provided with a step portion (310) formed on the end side that is in contact with the connecting member (200) and configured so that the outer surface can be positioned on the same line as the connecting member (200).

[0060]

[0061] 100: Insulating member

[0062] 200: Connecting member

[0063] 210: First connecting means

[0064] 212: First fixed projection

[0065] 212a: First groove

[0066] 214: First protrusion anchorage

[0067] 216: First projection joining groove

[0068] 220: Second connecting means

[0069] 222: Second fixed protrusion

[0070] 222a: Second groove

[0071] 224: Third fixed projection

[0072] 224a: Third groove

[0073] 226: Second projection joining groove

[0074] 230: Insertion groove

[0075] 300: Panel member

[0076] 310: Single jaw

[0077] 420: Filling home

Claims

1. Insulating member (100) composed of rigid urethane or rigid foam; A first connecting means (210) configured at one end of the insulating member (100) and including a first fixing projection (212) configured to be spaced apart by a predetermined interval, and a first projection engaging groove (216) formed between the first fixing projections (212); and A second connecting means (220) configured at the other end of the insulating member (100), and including a second protrusion coupling groove (226) into which the first fixing projection (212) is inserted so that the first connecting means (210) is coupled when the insulating panel is connected, a second fixing projection (222) that supports the first fixing projection (212) so that it can be inserted and fixed into the second protrusion coupling groove (226), and a third fixing projection (224) configured between the second fixing projection (222) and inserted into the first protrusion coupling groove (216); An insulating panel having a water drop-shaped bonding structure characterized by including:

2. In paragraph 1, The first to third fixed protrusions (212, 222, 224) above are An insulating panel having a water drop-shaped bonding structure characterized by a cross-sectional area that gradually increases toward the ends.

3. In paragraph 1, In the above first connecting means (210), A first projection mounting portion (214) configured at the upper and lower ends of the outer end and configured to have a predetermined curvature so that the second fixing projection (222) is securely mounted thereon An insulating panel having a water drop-shaped bonding structure characterized by further configuration.

4. In paragraph 1, In the above first fixed projection (212), An insulating panel having a water drop-shaped bonding structure characterized in that a first groove portion (212a) is further formed to form a filling groove (420) so that filling of a filling material is achieved after bonding with the second connecting means (220).

5. In paragraph 1, In the above second fixed projection (222), An insulating panel having a water drop-shaped bonding structure characterized in that a second groove portion (222a) is further configured to support the outer surface of one end of the first fixing projection (212) so that it can be bonded while being in close contact when the first and second connecting means (210, 220) are bonded, and to form a filling groove (420) so that filling material can be filled.

6. In paragraph 1, The above third fixed protrusion (224) is An insulating panel having a water drop-shaped bonding structure characterized in that a third grooved portion (224a) is further formed so that the outer surface of one end of the first fixed projection (212) is joined while being in close contact.

7. In paragraph 1, In the above insulating material (100), An insulating panel having a water drop-shaped bonding structure, characterized in that it further comprises a panel member (300) including an outer board.

Citation Information

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