Ultraviolet (UV) coating floating bead fire-resistant heat insulation plate
By using UV-coated drift beads and refractory heat insulation board on the decorative board, the decorative board has been solved, and the decorative board has insufficient refractory heat insulation, environmental protection and scratch resistance are achieved, achieving efficient heat insulation and air purification effects.
Patent Information
- Application Number
- CN202422642682.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-10-31
AI Technical Summary
The existing decorative panels have shortcomings in refractory insulation, environmental protection, wear resistance and scratch resistance, and cannot meet the high efficiency and environmental protection requirements of modern buildings.
UV-coated floating bead refractory insulation board is used, combined with the design of activated carbon board, by setting a UV coating on the surface of the floating bead refractory insulation board to enhance wear resistance and scratch resistance, and incorporating activated carbon boards into the board to absorb odors and harmful substances, the activated carbon board is fixed with four-wing conical mating parts to ensure its stable use.
It improves the refractory and heat insulation effect of decorative panels, enhances wear resistance and scratch resistance, and purifies the air and reduces environmental impact, and meets the requirements of modern sustainable development.
Smart Images

Figure CN223281599U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of building materials, in particular to a UV-coated floating bead fire-resistant heat-insulating board. Background Art
[0002] In modern building applications, thermal insulation and fire resistance are increasingly valued; with the continuous advancement of building materials technology, traditional insulation materials can no longer meet the requirements of high efficiency and environmental protection; there are currently no suitable decorative panels in the existing technology, targeting decorative panels with poor fire resistance, thermal insulation, environmental protection, wear resistance and scratch resistance; for this reason, a UV coated floating bead fire-resistant insulation board is proposed to solve the above-mentioned problems. Utility Model Content
[0003] The utility model aims to solve the above-mentioned problems that current equipment or existing technologies do not have decorative panels suitable for use in the present invention, and that the fire resistance, heat insulation, environmental protection, wear resistance and scratch resistance are poor during use. The utility model provides a UV-coated floating bead fire-resistant and heat-insulating board to enhance the fire resistance and heat insulation effects, and further purify the air, thereby effectively solving the problems mentioned in the above-mentioned background technology.
[0004] In order to solve the above problems, the technical solution adopted by the utility model is:
[0005] A UV coated floating bead fire-resistant insulation board includes a floating bead fire-resistant insulation board, the outer surface of the floating bead fire-resistant insulation board is provided with a UV coating, the floating bead fire-resistant insulation board is provided with a storage space for placing an activated carbon board, fixing holes that cooperate with blocking plates are provided on both sides of the floating bead fire-resistant insulation board, the blocking plate is provided with a connecting hole that cooperates with a screw part, the screw part passes through the connecting hole and is connected and fixed with the fixing hole, and the blocking plate is also provided with a vent hole.
[0006] A first matching component is fixedly arranged on the outer wall surface of one side of the activated carbon plate, and a second matching component is fixedly arranged on the outer wall surface of the other side of the activated carbon plate.
[0007] The first matching component is a four-wing conical groove, and the second matching component is a four-wing conical protrusion. The four-wing conical protrusion can be embedded in the four-wing conical groove to match each other.
[0008] A plurality of adsorption through holes are evenly arranged in the activated carbon plate.
[0009] The adsorption through-holes are of a honeycomb structure.
[0010] Compared with the prior art, the present invention has the following advantages:
[0011] The overall structure of the utility model uses floating bead fire-resistant insulation boards, which effectively enhance the fire-resistant and heat-insulating effects to prevent the spread of flames, and also adds a UV coating on the outer surface to enhance wear resistance and scratch resistance; activated carbon boards are placed inside the floating bead fire-resistant insulation boards to absorb odors and harmful substances and improve air quality; environmentally friendly raw materials and processes are used, which can reduce the impact on the environment and meet the requirements of modern sustainable development. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a main body view of a UV-coated floating bead fire-resistant insulation board of the utility model;
[0013] Figure 2 This is a view of a UV coating floating bead fire-resistant heat insulation board barrier sheet and a floating bead fire-resistant heat insulation board of the utility model;
[0014] Figure 3 This is a schematic diagram of the structure of a UV-coated floating bead fire-resistant insulation board activated carbon board of the utility model;
[0015] Explanation of the numbers in the figure: floating bead refractory insulation board 1, activated carbon board 2, blocking piece 3, screw part 4, receiving space 5, fixing hole 6, vent hole 7, connecting hole 8, four-wing conical groove 9, four-wing conical protrusion 10, adsorption hole 11. DETAILED DESCRIPTION
[0016] The following are specific embodiments of the present invention, and the technical solutions of the present invention are further described in conjunction with the accompanying drawings, but the present invention is not limited to these embodiments.
[0017] A UV coated floating bead fire-resistant insulation board includes a floating bead fire-resistant insulation board 1, the outer surface of the floating bead fire-resistant insulation board 1 is provided with a UV coating, the floating bead fire-resistant insulation board 1 is provided with a storage space 5 for placing an activated carbon board 2, fixing holes 6 that cooperate with a blocking piece 3 are provided on both sides of the floating bead fire-resistant insulation board 1, the blocking piece 3 is provided with a connecting hole 8 that cooperates with a screw part 4, the screw part 4 passes through the connecting hole 8 and is connected and fixed with the fixing hole 6, and the blocking piece 3 is also provided with a vent hole 7.
[0018] like Figure 1-2 As shown, the overall structure of a UV coated floating bead fire-resistant insulation board is composed of a floating bead fire-resistant insulation board 1, which can withstand high temperatures, has excellent fire resistance, can effectively prevent the spread of flames, and protect the safety of buildings; the outer surface of the floating bead fire-resistant insulation board 1 is provided with a UV coating, which has excellent wear resistance and scratch resistance, and the smooth surface of the UV coating makes it easy to clean, reducing maintenance costs; in order to make the utility model have a purification function, a storage space 5 is opened in the floating bead fire-resistant insulation board 1 to place an activated carbon board 2. In the indoor environment, the use of activated carbon can effectively remove odors and harmful substances, improve air quality, and create a healthy living and working environment.
[0019] Since the present invention needs to be produced, transported, and used, and installed in various usage environments such as ceilings and walls, in order to prevent the activated carbon board 2 placed in the receiving space 5 from falling out, fixing holes 6 that cooperate with the blocking sheet 3 are opened on both sides of the floating bead refractory insulation board 1, and the blocking sheet 3 is provided with a connecting hole 8 that cooperates with the screw member 4. The screw member 4 is passed through the connecting hole 8 and connected and fixed with the fixing hole 6, so as to achieve the function of blocking the activated carbon board 2; the function of the blocking sheet 3 is to prevent the activated carbon board 2 from falling off from the receiving space 5 but cannot seal the receiving space 5, and the blocking sheet 3 is provided with a vent 7 to enable the activated carbon board 2 in the receiving space 5 to play a role in purifying the air.
[0020] A first matching component is fixedly provided on the outer wall surface of one side of the activated carbon plate 2, and a second matching component is fixedly provided on the outer wall surface of the other side of the activated carbon plate 2.
[0021] On the one hand, in order to make the floating bead fire-resistant insulation board 1 and the activated carbon board 2 better matched for use, on the other hand, since the floating beads and activated carbon have certain recycling value, matching components are set on the activated carbon board 2 to better match them when used and better separate them when recycled. Figure 3 As shown, a first mating component is provided on the outer wall surface of one side of the activated carbon plate 2, and a second mating component is provided on the outer wall surface of the other side. The first mating component and the second mating component can be locked with each other to prevent the activated carbon plate 2 from shaking relative to the receiving space 5, thereby improving product quality.
[0022] The first matching component is a four-wing conical groove 9, and the second matching component is a four-wing conical protrusion 10. The four-wing conical protrusion 10 can be embedded in the four-wing conical groove 9 to match each other.
[0023] The first matching component is a four-winged conical groove 9, and the second matching component is a four-winged conical protrusion 10. The four-winged conical protrusion 10 of the activated carbon plate 2 can be embedded in the four-winged conical groove 9 to match each other; in addition to the four-winged cone, the shapes of the first matching component and the second matching component can also be other shapes, such as rectangle, triangle, etc., as long as the matching effect can be achieved.
[0024] A plurality of adsorption through holes 11 are evenly formed in the activated carbon plate 2 , and the adsorption through holes 11 are of a honeycomb structure.
[0025] In order to allow air to enter the activated carbon plate 2 better, several adsorption holes 11 are evenly opened in the activated carbon plate 2. The adsorption holes 11 are a honeycomb structure. The honeycomb structure provides a large number of pores and surfaces, which enhances the adsorption capacity of the activated carbon, can effectively capture harmful substances and gases, and greatly improves the purification ability.
[0026] The usage process of a UV coated floating bead fire-resistant insulation board of the utility model is as follows: the overall structure uses the floating bead fire-resistant insulation board to enhance the fire-resistant and heat-insulating effect of the utility model and effectively prevent the spread of flames. A UV coating is provided on the outer surface of the floating bead fire-resistant insulation board to enhance the wear resistance and scratch resistance. In order to make the utility model have a purification function, a storage space is opened in the floating bead fire-resistant insulation board for placing an activated carbon board to absorb odors and harmful substances and improve air quality.
[0027] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Those skilled in the art may make various modifications, additions, or substitute similar methods to the described specific embodiments without departing from the spirit of the present invention or exceeding the scope defined by the appended claims.
Claims
1. A UV-coated floating bead fire-resistant insulation board, comprising a floating bead fire-resistant insulation board (1), characterized in that: The outer surface of the floating bead fire-resistant heat insulation board (1) is provided with a UV coating, the floating bead fire-resistant heat insulation board (1) is provided with a receiving space (5) for placing the activated carbon board (2), fixing holes (6) that match the blocking sheet (3) are provided on both sides of the floating bead fire-resistant heat insulation board (1), the blocking sheet (3) is provided with a connecting hole (8) that matches the screw member (4), the screw member (4) passes through the connecting hole (8) and is connected and fixed with the fixing hole (6), and the blocking sheet (3) is also provided with a ventilation hole (7).
2. The UV-coated floating bead fire-resistant insulation board according to claim 1, characterized in that: A first matching component is fixedly provided on the outer wall surface of one side of the activated carbon plate (2), and a second matching component is fixedly provided on the outer wall surface of the other side of the activated carbon plate (2).
3. The UV-coated floating bead fire-resistant insulation board according to claim 2, characterized in that: The first matching component is a four-wing conical groove (9), and the second matching component is a four-wing conical protrusion (10). The four-wing conical protrusion (10) can be embedded in the four-wing conical groove (9) and matched with each other.
4. The UV-coated floating bead fire-resistant insulation board according to claim 2, characterized in that: Several adsorption through holes (11) are evenly arranged in the activated carbon plate (2).
5. The UV-coated floating bead fire-resistant insulation board according to claim 4, characterized in that: The adsorption through hole (11) is a honeycomb structure.