Heat insulation plate with water-drop-shaped combination structure
By setting teardrop-shaped connecting parts at both ends of the insulation board and filling them with foam material, the problem of steps in the construction of the insulation board is solved, achieving rapid connection and efficient heat insulation effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 玄永根
- Filing Date
- 2024-10-18
- Publication Date
- 2026-05-01
AI Technical Summary
Existing building insulation boards are prone to creating steps during construction, which can lead to delays in construction progress and reduced insulation performance, and is especially inconvenient for beginners.
The insulation board adopts a teardrop-shaped joint structure. By setting connecting parts with teardrop-shaped connecting parts at both ends of the insulation component, the joint is achieved by plugging and connecting. The space between the connecting parts is filled with foaming materials such as polyurethane foam to ensure tight connection and long-term stability.
It simplifies the connection process of the insulation panels, avoids the formation of steps, shortens the construction time and procedures, and improves the bonding strength and sealing of the joints, thereby enhancing the thermal insulation performance.
Smart Images

Figure CN121969809A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a heat insulation board with a teardrop-shaped joint structure, specifically to a heat insulation board including flexible heat insulation components respectively disposed at both ends of the heat insulation components. This not only allows multiple heat insulation components to be easily and conveniently connected through connecting components, but also prevents steps from being generated during connection, thereby shortening the time and procedures required for heat insulation board construction. Background Technology
[0002] Common building insulation boards are plywood made of wood, fiberboard made of glass fiber, EPS board made of expanded polystyrene, polyurethane board or sandwich panel made of polyurethane foam, etc.
[0003] According to the prior art, when the insulation board is fixed to the exterior wall, polyurethane foam needs to be injected or filled between adjacent insulation boards and allowed to harden for a certain period of time. Then, the insulation board is installed on the exterior wall by removing the polyurethane foam exposed to the outside of the insulation board.
[0004] But if Figure 1 As shown, when the insulation board 20 is installed on the exterior wall 10 according to the prior art, if it is not operated by skilled professionals, steps 22 are easily formed between the insulation boards 20. In order to solve the problem of steps 22, additional procedures are required. This not only delays the construction progress of the insulation board 20, but also reduces the completion of the insulation board 20 due to steps 22, and the insulation effect is also significantly reduced. Summary of the Invention
[0005] The problem the invention aims to solve
[0006] To address the aforementioned problems, the present invention aims to overcome the shortcomings of existing technologies by providing a heat insulation board with a teardrop-shaped joint structure. By forming a flexible heat insulation component and connecting components with teardrop-shaped joint structures at both ends of the heat insulation component, even beginners can easily connect multiple heat insulation components.
[0007] Another object of the present invention is a heat insulation board with a teardrop-shaped joint structure, which can prevent the formation of steps when connecting multiple heat insulation boards, thereby shortening the time and procedures required for heat insulation board construction.
[0008] Another object of the present invention is a heat insulation board with a teardrop-shaped joint structure, which is joined by teardrop-shaped connecting parts with a shape whose cross-sectional area gradually increases towards the end, thereby maximizing the joint force and sealing between the connecting parts.
[0009] Another objective of the present invention is to provide a heat insulation board with a teardrop-shaped joint structure, wherein the interlocking joints can be filled with foaming materials such as polyurethane foam, so as to achieve a tighter joint through the foaming material, ensure long-term stability of the joint state, and further maximize the heat insulation performance.
[0010] Problem Solving Methods
[0011] To achieve the above objectives, a heat insulation board with a teardrop-shaped connection structure according to an embodiment of the present invention is characterized in that it comprises: a heat insulation component 100, which is made of rigid polyurethane or rigid foam; a first connecting portion 210, including first fixing protrusions 212 disposed at one end of the heat insulation component 100 and spaced apart at a predetermined interval, and a first protrusion engaging groove 216 formed between the first fixing protrusions 212; and a second connecting portion 220, including a second protrusion engaging groove 226 disposed at the other end of the heat insulation component 100 and used to insert the first fixing protrusions 212 therein to engage the first connecting portion 210 when connecting the heat insulation board, a second fixing protrusion 222 that allows the first fixing protrusions 212 to be inserted into and fixed in the second protrusion engaging groove 226, and a third fixing protrusion 224 disposed between the second fixing protrusions 222 and inserted into the first protrusion engaging groove 216.
[0012] According to one embodiment of the present invention, the first to third fixed protrusions 212, 222, 224 are shaped such that their cross-sectional area gradually increases towards the end portion.
[0013] According to one embodiment of the present invention, the first connecting portion 210 further includes an upper portion and a lower portion respectively disposed at the outer end end and having a predetermined curvature, so that the second fixing protrusion 222 can fit snugly into the first protrusion fitting portion 214.
[0014] According to one embodiment of the present invention, the first fixing protrusion 212 is further provided with a first groove 212a forming a filling groove 420 so that a filling component can be filled after being combined with the second connecting portion 220.
[0015] According to one embodiment of the present invention, the second fixing protrusion 222 further includes a filling groove 420, so that when the first and second connecting portions 210 and 220 are combined, the outer surface of one end of the first fixing protrusion 212 can be tightly fitted together, and a second groove 222a can be filled with a filling component.
[0016] According to one embodiment of the present invention, the third fixing protrusion 224 further includes a third groove 224a that tightly engages with the outer surface of one end of the first fixing protrusion 212.
[0017] According to one embodiment of the present invention, the heat insulation component 100 further includes a panel component 300 including an outer panel.
[0018] Invention Effects
[0019] According to the embodiments of the present invention, by forming a flexible heat insulation component and a connecting part having a teardrop-shaped connection structure at both ends of the heat insulation component, even beginners can easily connect multiple heat insulation components.
[0020] Furthermore, according to embodiments of the present invention, steps can be prevented when connecting multiple insulation boards, thereby shortening the time and procedures required for insulation board construction.
[0021] Furthermore, according to an embodiment of the present invention, by using a teardrop-shaped connector with a gradually increasing cross-sectional area towards the end portion to be joined in a plug-in manner, the bonding force and sealing performance between the connectors are maximized.
[0022] Furthermore, according to embodiments of the present invention, foaming materials such as polyurethane foam can be filled between the interlocking connection parts to ensure a tighter bond between the connection parts through the foaming material, while ensuring long-term stability of the bond and further maximizing the thermal insulation performance.
[0023] Overview of the attached figures
[0024] Figure 1 This is a schematic diagram illustrating the construction process of insulation panels based on existing technology.
[0025] Figure 2 and Figure 3 This is a cross-sectional view of a heat insulation panel with a teardrop-shaped bonding structure according to an embodiment of the present invention;
[0026] Figure 4 This is an enlarged view of the connecting component of a heat insulation plate having a teardrop-shaped joint structure according to an embodiment of the present invention;
[0027] Figure 5 This is a schematic diagram showing the state in which the space between the insulating panels having a teardrop-shaped bonding structure according to an embodiment of the present invention is filled with a filling component.
[0028] Figure 6 and Figure 8 This is a schematic diagram of another embodiment of a heat insulation panel with a teardrop-shaped bonding structure according to an embodiment of the present invention;
[0029] Figure 9 This is a schematic diagram illustrating the bonding process of a heat insulation panel with a teardrop-shaped bonding structure according to an embodiment of the present invention.
[0030] *Attachment Labels*
[0031] 100: Thermal insulation components
[0032] 200: Connecting component
[0033] 210: First connecting part
[0034] 212: First fixed protrusion
[0035] 212a: First groove portion
[0036] 214: First protruding fitting part
[0037] 216: First protrusion mating groove
[0038] 220: Second connecting part
[0039] 222: Second fixed protrusion
[0040] 222a: Second groove portion
[0041] 224: Third fixed protrusion
[0042] 224a: Third groove portion
[0043] 226: Second protrusion joint groove
[0044] 230: Insertion slot
[0045] 300: Panel component
[0046] 310: Step section
[0047] 420: Filling groove Detailed Implementation
[0048] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0049] As shown in the figure, the present invention has a water droplet-shaped combined structure of a heat insulation panel, including a heat insulation component 100 made of rigid heat insulation material, and a connecting component 200 combined with the two ends of the heat insulation component 100 and connecting multiple heat insulation components 100 by a plug-in connection.
[0050] The thermal insulation component 100 is made of rigid polyurethane or rigid foam, which is both elastic and not easily damaged.
[0051] The thermal insulation component 100 may be rectangular, but is not limited to this.
[0052] The connecting portion 200 includes: a first connecting portion 210, which is coupled to one end of the heat insulation component 100; and a second connecting portion 220, which is coupled to the other end of the heat insulation component 100 at a position opposite to the first connecting portion 210, and is coupled to the first connecting portion 210 by insertion when connecting the heat insulation component 100.
[0053] The connection portion 200 preferably extends along the vertical length direction of the heat insulation member 100, but is not limited thereto.
[0054] In addition, the cross-sectional shape of the first and second connecting portions 210 and 220 of the interconnected insulation panels is generally teardrop-shaped.
[0055] In addition, the material should preferably be the same as that of the insulation component 100, but is not limited to this.
[0056] The first connecting portion 210 includes: a first fixing protrusion 212, which is teardrop-shaped and spaced at a certain distance, so as to be separably engaged with the second protrusion engaging groove 226 of the second connecting portion 220 (described later); a first protrusion fitting portion 214, which is disposed on the outer side of the first fixing protrusion 212 and is fitted by the second fixing protrusion 222 of the second connecting portion 220; and a first protrusion engaging groove 216, which is formed between the first fixing protrusions 212 and is separably engaged with the third fixing protrusion 216 of the second connecting portion 220.
[0057] The first protruding fitting portion 214 is respectively provided on the upper and lower parts of the outer end portion of the first connecting portion 210 and has a specified curvature, so that the second fixing protrusion 222 of the second connecting portion 220 described later can fit tightly.
[0058] That is, the first protrusion fitting portion 214 is configured with a curvature corresponding to the curvature of the outer surface of the second fixed protrusion 222 which has a teardrop shape, thereby supporting a tight fit when the first and second connecting portions 210 and 220 are engaged.
[0059] The first fixing protrusion 212 is provided at intervals along the thickness direction of the connecting member 200, and in this invention, two protrusions can be configured.
[0060] The first fixed protrusion 212 has a shape in which the cross-sectional area gradually increases towards the end of the second protrusion joint 226, while a first groove 212a is formed on the opposite end, which has a filling groove 420 for filling polyurethane foam or silicone or other filling materials after being combined with the second connecting part 220.
[0061] The second connecting portion 220 has the same shape as the first fixing protrusion 212, the first protrusion fitting portion 214 and the first protrusion engaging groove 216 of the first connecting portion 210, and includes a second fixing protrusion 222, a third fixing protrusion 224 and a second protrusion engaging groove 226, so that the first connecting portion 210 can be detachably engaged.
[0062] The second fixing protrusion 222 is respectively disposed on the upper and lower parts of the outer end of the second connecting part 220. While engaging with the first protrusion fitting part 214 of the first connecting part 210, it supports the first fixing protrusion 212 to be inserted into and fixed in the second protrusion engaging groove 226.
[0063] Similar to the first fixing protrusion 212, the second fixing protrusion 222 has a second groove 222a, so that when the first and second connecting portions 210 and 220 are joined, the outer surface of one end of the first fixing protrusion 212 can be pressed against it to achieve a tight fit.
[0064] Furthermore, a third fixing protrusion 224 is formed between the second fixing protrusions 222, and it is located on the same axis as the first protrusion engaging groove 216 of the first connecting portion 210.
[0065] The third fixing protrusion 224 is engaged with the first protrusion engaging groove 216 provided in the first connecting portion 210, forming a third groove portion 224a for the outer surface of one end portion of the first fixing protrusion 212 to be tightly engaged.
[0066] That is, when the first and second fixing protrusions 212 and 222 are engaged with the first and second connecting portions 210 and 220, their respective outer surfaces engage with each other through the first and second groove portions 212a and 222a, so that the first fixing protrusion 212 and the second protrusion engaging groove 226 are engaged; while the first and third fixing protrusions 224 engage with each other through the first and third groove portions 212a and 224a, so that the third fixing protrusion 224 and the second protrusion engaging groove 226 are engaged.
[0067] At the same time, similar to the first groove 212a, the second and third grooves 222a and 224a may also be formed with filling grooves 420 to achieve filling of the filling component.
[0068] The filling groove 420 is formed in the first and second protrusion engagement grooves 216, 226 and the first and second protrusion fitting portions 216, 226, and is composed of a predetermined space portion formed when engaged with the first to third fixed protrusions 212, 222, 224, which can achieve a tighter engagement between the first to third fixed protrusions 212, 222, 224 when filling the filling component.
[0069] Through the aforementioned structure, the present invention utilizes the interlocking first to third fixing protrusions 212, 222, and 224 to form a perfect air barrier structure within the teardrop-shaped structure, which can significantly reduce the amount of polyurethane foam or silicone used in the construction of existing heat insulation panels or interior and exterior decoration materials.
[0070] like Figure 9 As shown, in the present invention with the described structure, when the first connecting part 210 and the second connecting part 220 are combined, a fixed compression is generated from the parts that are in contact with each other to achieve the combination; when the combination is completed after full insertion, the first and second connecting parts 210 and 220 in the compressed state return to their original state, thereby achieving a tighter combination and maximizing the sealing performance.
[0071] On the other hand, such as Figure 6 As shown, the heat insulation component 100 of the present invention may also have a panel component 300 including an outer panel on its upper and lower surfaces.
[0072] At this time, the panel component 300 can be combined with the connecting component 200 (described later). Preferably, the end portion of the panel component 300 is on the same straight line as the end portion of the first fixing protrusion 212 on the side of the first connecting portion 210 of the connecting component 200, while on the side of the second connecting portion 220 of the connecting component 200 opposite to it, a first groove portion 212a extending to the starting point of the second fixing protrusion 222 can be formed. When the heat insulation panel is combined, as... Figure 8 As shown, the panel component 300 disposed on one side of the first connecting portion 210 and the panel component 300 disposed on one side of the second connecting portion 220 can contact each other.
[0073] In addition, the present invention provides an insertion groove 230 in the connecting component 200 so that the two ends of the heat insulation component 100 can be inserted to realize the insertion and fixation of the heat insulation component 100.
[0074] That is, the heat insulation component 100 and the connecting part 200 of the present invention are integrally formed, but not limited thereto, the connecting part 200 can also be detachably combined with the heat insulation component 100.
[0075] On the other hand, the present invention allows the panel component 300 to be inserted into and fixed in the insertion groove 230 formed on the connecting portion 200.
[0076] At this time, it is preferable that the panel component 300 also has a stepped portion 310 formed on the end side that contacts the connecting component 200, and the outer surface of the stepped portion 310 is on the same horizontal line as the connecting component 200.
Claims
1. A heat insulation board with a teardrop-shaped connection structure, characterized in that, include: The thermal insulation component (100) is made of rigid polyurethane or rigid foam; The first connecting portion (210) includes a first fixing protrusion (212) disposed on one side end of the heat insulation component (100) and spaced at a predetermined interval, and a first protrusion engaging groove (216) formed between the first fixing protrusions (212). as well as The second connecting portion (220) includes a second protrusion engaging groove (226) disposed at the other end of the heat insulation component (100) for inserting the first fixing protrusion (212) therein to engage the first connecting portion (210) when connecting the heat insulation plate, a second fixing protrusion (222) for inserting and fixing the first fixing protrusion (212) into the second protrusion engaging groove (226), and a third fixing protrusion (224) disposed between the second fixing protrusions (222) and inserted into the first protrusion engaging groove (216).
2. The heat insulation board with a teardrop-shaped connection structure according to claim 1, characterized in that: The first to third fixed protrusions (212), (222), (224) have a shape in which the cross-sectional area gradually increases towards the end portion.
3. The heat insulation board with a teardrop-shaped connection structure according to claim 1, characterized in that: The first connecting portion (210) also has an upper portion and a lower portion respectively provided at the outer end end and having a predetermined curvature, so that the second fixing protrusion (222) can fit tightly into the first protrusion fitting portion (214).
4. The heat insulation board with a teardrop-shaped connection structure according to claim 1, characterized in that: The first fixing protrusion (212) also has a first groove (212a) forming a filling groove (420) so that the filling component can be filled after being combined with the second connecting part (220).
5. The heat insulation board with a teardrop-shaped connection structure according to claim 1, characterized in that: The second fixing protrusion (222) also has a filling groove (420) so that when the first and second connecting portions (210) and (220) are combined, the outer surface of the end end of the supporting first fixing protrusion (212) can be tightly attached and the filling component can be filled.
6. The heat insulation board with a teardrop-shaped connection structure according to claim 1, characterized in that: The third fixing protrusion (224) also has a third groove (224a) that fits tightly against the outer surface of one end of the first fixing protrusion (212).
7. The heat insulation board with a teardrop-shaped connection structure according to claim 1, characterized in that: The heat insulation component (100) also includes a panel component (300) including an outer panel.