Thermal insulation material plate with splicing structure
By designing the thermal insulation material plate of the spliced structure, the rapid installation is achieved by using the spliced plate and the slot to clamp the joint, solving the problems of complex installation and intimate connection in the prior art, improving the installation efficiency and insulation effect, and extending the service life.
Patent Information
- Application Number
- CN202422260079.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The existing insulation material plates lack splicing structure, resulting in complex installation, waste of materials, poor connection, affecting aesthetics and insulation effects, and high requirements for construction technology.
Design of thermal insulation material plates with spliced structures, including thermal insulation plates, protective plates and splicing components, and can be quickly installed through splicing plates and slots, equipped with protective plates and fixing plates to provide additional protection.
It realizes a fast and simple installation process, reduces material waste, improves installation efficiency, enhances connection tightness and aesthetics, and extends service life.
Smart Images

Figure CN223202520U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of thermal insulation board equipment, in particular to a thermal insulation material board with a splicing structure. Background Art
[0002] Thermal insulation panels are thermally insulating panels commonly used in construction, industrial equipment, and other fields to reduce heat transfer, achieving energy savings and thermal insulation. One of the main drawbacks of current thermal insulation panels is the lack of a joint structure, making installation inconvenient. This lack of a joint structure makes it difficult to achieve a tight connection during installation, making the process complex and time-consuming. This drawback stems primarily from design flaws that fail to fully consider actual installation requirements. Conventional solutions typically involve cutting and piecing the panels together on-site to maximize their fit within the installation area. However, this approach has numerous drawbacks. First, the cutting process can lead to material waste and increased costs. Second, the edges of the panels may be irregular, affecting aesthetics and potentially reducing insulation performance. Furthermore, on-site piecing together panels makes it difficult to ensure a tight connection, resulting in gaps that can compromise overall insulation performance. Furthermore, this method requires high technical skills from the installation personnel, and improper operation can lead to unstable installation quality. Therefore, a new structure is needed to address these technical issues. Utility Model Content
[0003] In view of the deficiencies in the prior art, the present invention aims to provide a thermal insulation material board with a splicing structure to solve the problems raised in the above-mentioned background technology.
[0004] The utility model is achieved through the following technical solutions: a thermal insulation material board with a splicing structure, comprising: an insulation component, a protective component and a splicing component, the insulation component comprising: insulation board 1 and insulation board 2, the insulation component is provided with multiple groups, the left surface and the right surface of the insulation board 2 are respectively installed with an insulation board 1 through the splicing component, the front side surfaces of the insulation board 1 and the insulation board 2 are installed with a protective component, the protective component comprises: a protective plate and a fixed plate, the front side surfaces of the insulation board 1 and the insulation board 2 are installed with a protective plate, the splicing of the insulation board 1 and the insulation board 2 is installed with a fixed plate, the splicing component comprises: splicing board 1, splicing board 2, a card block and a sealing gasket, the right side surface of the insulation board 1 is integrally formed with splicing board 1, and the left surface and the right side surface of the insulation board 2 are respectively integrally formed with a splicing board 2.
[0005] As a preferred embodiment, the length, width and thickness of the insulation board one match the length, width and thickness of the insulation board two, and an insulation core is installed inside the insulation board one and the insulation board two. The insulation core includes polyurethane foam and rock wool, and the polyurethane foam wrapped rock wool is arranged inside the insulation board one and the insulation board two.
[0006] As a preferred embodiment, the splicing plate 1 and the splicing plate 2 have the same structure, the cross-section of the splicing plate 1 and the splicing plate 2 is an L-shaped structure, the front edge of the right side surface of the insulation plate 1 is integrally formed with the splicing plate 1, and the left side surface of the insulation plate 1 is evenly provided with multiple slots.
[0007] As a preferred embodiment, a splicing plate 2 is symmetrically installed on the rear edge of the left surface and the right surface of the insulation board 1, and a plurality of card blocks are evenly installed on the surface of the splicing plate 2 away from the insulation board 2, and the position, quantity and structure of the card blocks match the position, quantity and structure of the card slots.
[0008] As a preferred embodiment, a sealing gasket is respectively installed on the left surface and the right surface of the insulation board 2, and the side surface of the sealing gasket away from the insulation board 2 abuts against the side surface of the splicing board 1 away from the insulation board 1. The insulation board 1 and the insulation board 2 are clamped to each other through the splicing board 1, the splicing board 2, the clamping block and the clamping slot. When in use, the design of the splicing board 1 and the splicing board 2 enables the insulation material boards to be quickly aligned and spliced together during installation. Without the need for complicated tools and tedious operations, the construction workers can quickly complete the splicing of the boards, greatly improving the installation efficiency.
[0009] As a preferred embodiment, each group of the insulation components is provided with two insulation plates 1 and one insulation plate 2, and a protective plate is installed on the front surface of each insulation plate 1 and insulation plate 2 by screws, and a fixing plate is installed between each two protective plates, and the fixing plate is set on the front surface of the connection between the insulation plate 1 and the insulation plate 2 by screws. When in use, the protective plate provides additional protection for the insulation component to prevent the insulation component from being damaged by external force impact, wear or scratches during use, plays a role of buffering and protection, and extends the service life of the insulation component.
[0010] After adopting the above technical solution, the beneficial effect of the utility model is: by setting up a protective component, the protective component includes: a protective plate and a fixed plate, the front surfaces of the insulation board 1 and the insulation board 2 are installed with a protective plate, and the joint of the insulation board 1 and the insulation board 2 is installed with a fixed plate. When in use, the protective plate provides additional protection for the insulation component to prevent the insulation component from being damaged by external force impact, wear or scratches during use, plays a buffering and protective role, and extends the service life of the insulation component.
[0011] By setting up a splicing assembly, the splicing assembly includes: splicing plate 1, splicing plate 2, a card block and a sealing gasket. The right side surface of the insulation plate 1 is integrally formed with splicing plate 1, and the left side surface and the right side surface of the insulation plate 2 are respectively integrally formed with a splicing plate 2. When in use, the design of splicing plate 1 and splicing plate 2 enables the insulation material plates to be quickly aligned and spliced together during installation. Without the need for complicated tools and tedious operations, the construction workers can quickly complete the splicing of the plates, greatly improving the installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0013] Figure 1 This is a schematic diagram of the overall structure of a thermal insulation material board with a splicing structure according to the present invention.
[0014] Figure 2 This is a schematic diagram of an insulation board 1 of the utility model, which is an insulation material board with a splicing structure.
[0015] Figure 3 This is a schematic diagram of an insulation board 2 of the utility model, which is an insulation material board with a splicing structure.
[0016] Figure 4 This is a schematic diagram of a protective component of a thermal insulation material plate with a splicing structure according to the present invention.
[0017] In the figure, 100-insulation board 1, 110-splicing board 1;
[0018] 200-insulation board 2, 210-insulation core, 220-joining board 2, 230-block, 240-sealing gasket;
[0019] 300-protective plate, 310-fixed plate. DETAILED DESCRIPTION
[0020] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0021] See also Figures 1 to 4 The utility model provides a technical solution: a thermal insulation material board with a splicing structure, comprising: a thermal insulation component, a protective component and a splicing component, the thermal insulation component comprising: a thermal insulation board 100 and a thermal insulation board 200, the thermal insulation component is provided with multiple groups, the left surface and the right surface of the thermal insulation board 200 are respectively installed with a thermal insulation board 100 through the splicing component, the front side surface of the thermal insulation board 100 and the thermal insulation board 200 is installed with a protective component, the protective component comprising: a protective plate 300 and a thermal insulation board 300. And a fixing plate 310, a protective plate 300 is installed on the front surface of the insulation board 100 and the insulation board 2 200, a fixing plate 310 is installed at the joint of the insulation board 100 and the insulation board 2 200, and the splicing assembly includes: splicing plate 110, splicing plate 220, a clamping block 230 and a sealing gasket 240, the right side surface of the insulation board 100 is integrally formed with the splicing plate 110, and the left surface and the right side surface of the insulation board 200 are respectively integrally formed with a splicing plate 2 220.
[0022] See also Figures 1 to 4 As a first embodiment of the present invention, the length, width, and thickness of the first insulation board 100 match those of the second insulation board 200. Both the first insulation board 100 and the second insulation board 200 are internally installed with an insulation core 210. The insulation core 210 comprises polyurethane foam and rock wool. The rock wool is wrapped with polyurethane foam and is disposed inside the first insulation board 100 and the second insulation board 200.
[0023] The splicing plate 1 110 and the splicing plate 2 220 have the same structure. The cross-section of the splicing plate 1 110 and the splicing plate 2 220 is L-shaped. The splicing plate 1 110 is integrally formed on the front edge of the right surface of the insulation board 100. The left surface of the insulation board 100 is evenly provided with a plurality of slots.
[0024] A second splicing plate 220 is symmetrically mounted on the rear edge of the left and right surfaces of the first insulation board 100. A plurality of clamping blocks 230 are evenly mounted on the surface of the second splicing plate 220 away from the second insulation board 200. The position, number, and structure of the clamping blocks 230 match the position, number, and structure of the clamping slots.
[0025] A sealing gasket 240 is installed on the left and right surfaces of the second insulation board 200, respectively. The side of the sealing gasket 240 away from the second insulation board 200 abuts against the side of the splicing board 110 away from the first insulation board 100. The first insulation board 100 and the second insulation board 200 are connected to each other through the splicing board 110, the second splicing board 220, the clamping block 230 and the clamping slot.
[0026] When in use, the user first fixes the insulation board 200 to the position where it needs to be installed with bolts. After the insulation board 200 is fixed, the user can take the two insulation boards 100 and install the insulation board 100 on the left and right surfaces of the insulation board 200. When splicing the insulation board 100, first align the splicing board 110 of the insulation board 100 with the splicing board 220 of the insulation board 200. After alignment, the splicing board 110 of the insulation board 100 is inserted into the interior of the splicing board 220 of the insulation board 200. At this time, the card block 23 on the outer surface of the splicing board 220 is 0 will be engaged with the card slot on the left surface of the insulation board 100, and the installation of one insulation board 100 is completed at this time. The user can complete the installation of an insulation component by splicing and installing another insulation board 100 according to the same principle. When installing, the user can choose different numbers of insulation components to install according to actual conditions. During use, the design of splicing board 110 and splicing board 220 enables the insulation material boards to be quickly aligned and spliced together during installation. Without the need for complicated tools and tedious operations, the construction workers can quickly complete the splicing of the boards, greatly improving the installation efficiency.
[0027] See also Figures 1 to 4 As a second embodiment of the present utility model: each group of insulation components is provided with two insulation boards 100 and one insulation board 200, a protective plate 300 is fixed to the front surface of each insulation board 100 and insulation board 200 by screws, a fixing plate 310 is installed between each two protective plates 300, and the fixing plate 310 is fixed to the front surface of the connection between the insulation board 100 and the insulation board 200 by screws;
[0028] During use, when an insulation component is installed, the two insulation plates 100 will form two splicing positions with an insulation plate 200. At this time, the user can fix the protective plate 300 to the center position of the front surface of the insulation plate 100 and the insulation plate 2 200 through multiple rivets. After the protective plate 300 is installed, there is a gap between the two protective plates 300. The specifications of this gap match the specifications of the fixed plate 310. Then the user can install the fixed plate 310 according to the same principle of installing the protective plate 300, thereby completing the installation of the protective component of an insulation component. During use, the protective plate 300 provides additional protection for the insulation component, preventing the insulation component from being damaged by external force impact, wear or scratches during use, playing a role of buffering and protection, and extending the service life of the insulation component.
[0029] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A thermal insulation material board with a splicing structure, comprising: The thermal insulation component, the protective component and the splicing component are characterized in that the thermal insulation component comprises: a thermal insulation board 1 (100) and a thermal insulation board 2 (200), and the thermal insulation component is provided with multiple groups; The left side surface and the right side surface of the insulation board 2 (200) are respectively installed with an insulation board 1 (100) through a splicing assembly, and the front side surfaces of the insulation board 1 (100) and the insulation board 2 (200) are installed with a protective assembly, and the protective assembly includes: a protective plate (300) and a fixed plate (310), and the front side surfaces of the insulation board 1 (100) and the insulation board 2 (200) are installed with a protective plate (300), and the splicing portion of the insulation board 1 (100) and the insulation board 2 (200) is installed with a fixed plate (310); The splicing assembly includes: splicing plate one (110), splicing plate two (220), a block (230) and a sealing gasket (240). The right side surface of the insulation plate one (100) is integrally formed with the splicing plate one (110), and the left side surface and the right side surface of the insulation plate two (200) are respectively integrally formed with a splicing plate two (220).
2. The thermal insulation material board with a splicing structure according to claim 1, characterized in that: The length, width and thickness of the insulation board 1 (100) match the length, width and thickness of the insulation board 2 (200). An insulation core (210) is installed inside the insulation board 1 (100) and the insulation board 2 (200). The insulation core (210) includes polyurethane foam and rock wool. The polyurethane foam wraps the rock wool and is arranged inside the insulation board 1 (100) and the insulation board 2 (200).
3. The thermal insulation material board with a splicing structure according to claim 2, characterized in that: The splicing plate 1 (110) and the splicing plate 2 (220) have the same structure. The cross-sections of the splicing plate 1 (110) and the splicing plate 2 (220) are L-shaped. The front edge of the right side surface of the insulation plate 1 (100) is integrally formed with the splicing plate 1 (110), and the left side surface of the insulation plate 1 (100) is evenly provided with a plurality of slots.
4. The thermal insulation material board with a splicing structure according to claim 3, characterized in that: A splicing plate 2 (220) is symmetrically installed on the rear edge of the left surface and the right surface of the insulation board 1 (100), and a plurality of card blocks (230) are evenly installed on the surface of the splicing plate 2 (220) away from the insulation board 2 (200). The position, number and structure of the card blocks (230) match the position, number and structure of the card slots.
5. The thermal insulation material board with a splicing structure according to claim 4, characterized in that: A sealing gasket (240) is respectively installed on the left surface and the right surface of the insulation board 2 (200), and the side surface of the sealing gasket (240) away from the insulation board 2 (200) is in contact with the side surface of the splicing board 1 (110) away from the insulation board 1 (100), and the insulation board 1 (100) and the insulation board 2 (200) are connected to each other through the splicing board 1 (110), the splicing board 2 (220), the block (230) and the slot.
6. The thermal insulation material board with a splicing structure according to claim 5, characterized in that: Each group of the insulation components is provided with two insulation plates 1 (100) and one insulation plate 2 (200), and a protective plate (300) is installed on the front side surface of each insulation plate 1 (100) and insulation plate 2 (200) by screws, and a fixing plate (310) is installed between each two protection plates (300), and the fixing plate (310) is set on the front side surface of the connection between the insulation plate 1 (100) and the insulation plate 2 (200) by screws.