A fireproof and energy-saving fire-resistant insulation board for buildings
Patent Information
- Application Number
- CN202410113976.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-27
- Publication Date
- 2026-08-11
- Estimated Expiration
- 2044-01-27
AI Technical Summary
[0005]本发明的目的在于提供一种建筑用防火节能消防保温板,以解决上述背景技术提出的现有技术操作时保温板由于结构设计简单,且采用混凝土浇筑粘附安装,在保温板使用的过程中,保温板容易受到外力作用发生破损的情况,进而导致保温板的保温性能下降,并且不便于进行快速的更换处理,以至于造成使用不便的问题
[0018]1. In this invention, the quick-installation frame provides stable support for the insulation board, facilitating the installation of the insulation material. The embedded groove provides space for the insertion of the limiting block, allowing it to connect with the connecting rod and connecting piece. The elasticity of the limiting spring further enhances the quick-installation limiting effect, ensuring stable installation of the insulation board. The support ring provides elastic support for the limiting spring, facilitating the insertion of the limiting block into the inner side of the limiting groove for limiting. When disassembly is required, the connecting rod can be pulled out to separate the limiting block, achieving effective and quick disassembly. The positioning block and the positioning groove at the bottom of the insulation board provide further limiting and fixing, ensuring stable installation and quick disassembly. The sliding block and the sliding groove on the fixing frame are inserted and slidably connected, effectively fixing the quick-installation frame to the side of the fixing frame, achieving rapid installation and disassembly. The mating holes and mating blocks connect effectively, facilitating large-area installation and providing comprehensive insulation.
Smart Images

Figure CN117868325B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building fire protection and insulation technology, specifically to a fireproof and energy-saving fire protection insulation board for buildings. Background Technology
[0002] Currently used building insulation materials, such as extruded polystyrene boards, polystyrene boards, polystyrene granules, and highly expanded polyethylene foam, are lightweight and offer acceptable thermal insulation. As is well known, the vast majority of urban residential buildings in my country have brick-concrete structures and precast reinforced concrete components as their building envelopes. Due to insufficient consideration of insulation in the past, urban residential buildings suffer from poor insulation, resulting in correspondingly high coal consumption for heating in winter. Fire-resistant building insulation boards are a type of fire-resistant building material, mainly divided into cement foam insulation boards and rock wool insulation boards. These boards consist of a fiber mesh and a rock wool fiber isolation layer, offering multiple advantages such as fire resistance and thermal insulation.
[0003] In existing technologies, such as the "Building Insulation Wall Panel" with Chinese Patent No. CN110725467A, a basic outer shell includes an open insulation cavity at the front end of the basic outer shell, which is filled with insulation material. The outer opening of the insulation cavity is sealed by a decorative panel. The decorative panels on each basic outer shell are spliced together to form a seamless decorative wall surface. The inner end of the basic outer shell has protruding mounting parts on its upper and lower surfaces, and the outer end of the basic outer shell extends to the outside. One or more heat-absorbing strips are embedded on the upper and lower surfaces of the basic outer shell. The heat-absorbing strips absorb external heat and transfer the heat to the insulation material for insulation. The building wall panel of this invention is mainly used in temporary buildings, and is particularly suitable for use in environments with large day-night temperature differences. It can effectively absorb external heat during the day and transfer the heat at night to insulate the interior, thus saving energy.
[0004] Existing fire-resistant insulation boards have a simple structural design and are installed by concrete pouring. During use, the insulation boards are easily damaged by external forces, which leads to a decrease in their insulation performance and makes them difficult to replace quickly, causing inconvenience in use. To address these issues, a fire-resistant and energy-saving fire-resistant insulation board for buildings is proposed. Summary of the Invention
[0005] The purpose of this invention is to provide a fireproof and energy-saving fire-fighting insulation board for buildings, in order to solve the problems mentioned in the background art. Due to the simple structural design and the use of concrete pouring and adhesion installation, the insulation board is easily damaged by external forces during use, which leads to a decrease in the insulation performance of the insulation board and makes it inconvenient to replace it quickly, thus causing inconvenience in use.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a fireproof and energy-saving fire-resistant insulation board for buildings, comprising an installation and dismantling assembly. A fireproof component and an energy-saving component are installed on the side of the installation and dismantling assembly. The energy-saving component is positioned above the fireproof component. The installation and dismantling assembly includes a quick-installation frame. An insulation board is embedded in the inner side of the quick-installation frame. Multiple embedding slots are formed on the top inner side of the quick-installation frame. Limiting blocks are provided inside the embedding slots. A connecting rod is installed on the top of the limiting block. A connecting piece is provided on the outer wall of the connecting rod. A limiting spring is connected to the top of the connecting piece. A support ring is provided on the top of the limiting spring. A limiting groove is formed on the top of the insulation board. The limiting block is embedded in the inner side of the limiting groove. The support ring is movably sleeved on the outer side of the connecting rod. A positioning block is provided at the bottom inner wall of the quick-installation frame. The bottom of the insulation board has a positioning groove, and the positioning block is installed inside the positioning groove. The quick-installation frame provides stable frame support for the insulation board, which facilitates the installation of the insulation material. The embedding groove provides space for the embedding of the limiting block, which is convenient for the limiting block to connect with the connecting rod and the connecting piece. At the same time, the elasticity of the limiting spring helps to provide a quick installation and limiting effect, thus ensuring the stable installation of the insulation board. The support ring provides elastic support for the limiting spring, which facilitates the embedding of the limiting block inside the limiting groove to achieve the limiting. When disassembly is required, the connecting rod can be pulled out to separate the limiting block and achieve an effective and quick disassembly. The positioning block and the positioning groove at the bottom of the insulation board achieve a further limiting and fixing effect, thus providing a stable installation limiting effect and ensuring the function of quick installation and disassembly.
[0007] The quick-installation frame has multiple sliding blocks symmetrically and evenly distributed on its sides. Fixing frames are provided on both sides of the quick-installation frame, and multiple sliding grooves are symmetrically opened on the sides of the fixing frames. The fixing frames are movably installed inside the sliding grooves. A docking hole is provided at one end of the fixing frame, and a docking block is installed at the other end. The sliding blocks are slidably connected to the sliding grooves on the fixing frames through insertion, effectively fixing the quick-installation frame to the side of the fixing frames, achieving rapid installation and disassembly. The docking holes and docking blocks facilitate effective splicing, enabling large-area installation and providing comprehensive insulation.
[0008] Preferably, the fireproof component includes a fire extinguishing agent storage tank located on one side of the installation and removal component. A connecting elbow is connected through the top of the fire extinguishing agent storage tank. One end of the connecting elbow is connected to a delivery pump. A delivery hose is fixedly connected to the top of the delivery pump. One end of the delivery hose is connected to a fire sprinkler pipe. The fire extinguishing agent can be stored in the fire extinguishing agent storage tank, and the connecting elbow provides connectivity. The delivery pump extracts the fire extinguishing agent from the fire extinguishing agent storage tank and then delivers it through the delivery hose to the rotating connecting joint for spraying. This facilitates fire extinguishing of the insulation board, improves the fire safety of the insulation board, and effectively prevents fires from occurring.
[0009] Preferably, the energy-saving component includes a photovoltaic solar panel located on the other side of the mounting component. An electrical connector is installed on one side of the photovoltaic solar panel, and a connecting wire is fixedly connected to the top of the electrical connector. Placing the photovoltaic solar panel on the outermost side facilitates photovoltaic absorption. The photovoltaic connector and connecting wire are used to connect to a photoelectric conversion connector to convert light energy into electrical energy.
[0010] Preferably, a rotating connector is provided at the connection point between one end of the delivery hose and one end of the fire sprinkler pipe. Multiple sprinkler heads are evenly distributed on the side of the fire sprinkler pipe. The rotating connector can connect the delivery hose and the fire sprinkler pipe and has a rotating effect, which effectively improves the convenience of operation. The fire extinguishing agent can be effectively sprayed out through the sprinkler heads to achieve the fire extinguishing effect.
[0011] Preferably, a threaded lifting block is provided in the middle of the sprinkler head, and a lifting threaded rod is threadedly connected to the inner side of the threaded lifting block. A lifting motor is provided at one end of the lifting threaded rod. The lifting motor drives the lifting threaded rod to achieve effective driving force. Through the transmission of the lifting block and the lifting threaded rod, it is convenient to adjust the height during the fire extinguishing process, which improves the fire extinguishing range and helps to ensure the fire extinguishing effect.
[0012] Preferably, the fire sprinkler pipe is provided with lifting sliding blocks at both ends, and a lifting guide plate is slidably connected to the outer side of the lifting sliding block. A lifting guide groove is opened on the inner side of the lifting guide plate, and the lifting sliding block is slidably installed on the inner side of the lifting guide groove. The lifting sliding block and the lifting guide groove on the inner side of the lifting guide plate can effectively adjust the lifting and lowering, ensuring stable guidance during the lifting and lowering process and improving the smoothness of the lifting and lowering.
[0013] Preferably, a tilting transmission gear is installed at one end of the fire sprinkler pipe, and a tilting drive gear is meshed with the outer wall of the tilting transmission gear. A tilting motor is installed on the top of each lifting sliding block, and one end of the tilting motor is connected to the side of the tilting drive gear. The tilting motor drives the tilting drive gear, which in turn drives the tilting transmission gear to rotate, effectively providing angle adjustment during fire extinguishing, further increasing the fire extinguishing range and improving the fire extinguishing effect.
[0014] Preferably, one end of the connecting wire is connected to a photoelectric conversion connector, and a storage battery is installed at the bottom of the photoelectric conversion connector. The storage battery is installed on the side of the quick-installation frame. The connecting wire is connected to the storage battery through the photoelectric conversion connector to achieve effective energy storage, thereby effectively improving energy efficiency.
[0015] Preferably, the battery is fixedly mounted with bottom support plates at both ends. The bottom support plates are installed on the side of the fixing frame, which can provide effective support for the battery and ensure stability.
[0016] Preferably, the quick-installation frame has multiple side support plates evenly distributed on its sides, which are set on the sides of the insulation board. The mounting frame is installed on the side of the fixing frame, and multiple reinforcing ribs are evenly distributed on the side of the mounting frame. A bottom support strip is fixedly installed at the bottom of the fixing frame. The side support plates can improve strength, prevent deformation, and improve durability. The mounting frame and reinforcing ribs are embedded in the concrete to facilitate fixation and ensure support. The insulation board provides support, ensuring stable use.
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] 1. In this invention, the quick-installation frame provides stable support for the insulation board, facilitating the installation of the insulation material. The embedded groove provides space for the insertion of the limiting block, allowing it to connect with the connecting rod and connecting piece. The elasticity of the limiting spring further enhances the quick-installation limiting effect, ensuring stable installation of the insulation board. The support ring provides elastic support for the limiting spring, facilitating the insertion of the limiting block into the inner side of the limiting groove for limiting. When disassembly is required, the connecting rod can be pulled out to separate the limiting block, achieving effective and quick disassembly. The positioning block and the positioning groove at the bottom of the insulation board provide further limiting and fixing, ensuring stable installation and quick disassembly. The sliding block and the sliding groove on the fixing frame are inserted and slidably connected, effectively fixing the quick-installation frame to the side of the fixing frame, achieving rapid installation and disassembly. The mating holes and mating blocks connect effectively, facilitating large-area installation and providing comprehensive insulation.
[0019] 2. In this invention, the extinguishing agent storage tank stores the extinguishing agent, and the connecting bend provides connectivity. A pump extracts the extinguishing agent from the storage tank and delivers it via a flexible hose to the rotating connector for spraying. This facilitates fire extinguishing of the insulation board, improving its safety. The rotating connector connects the flexible hose to the fire sprinkler pipe, enhancing operational convenience. The sprinkler head effectively sprays the extinguishing agent, achieving fire extinguishing. The lifting block, in conjunction with the lifting threaded rod, allows for easy adjustment during fire extinguishing, increasing the extinguishing range and ensuring effectiveness. The lifting sliding block, combined with the lifting guide groove on the inner side of the lifting guide plate, provides effective adjustment, ensuring stable guidance and smooth lifting. The rotating motor drives the rotating drive gear, which in turn rotates the rotating transmission gear, effectively providing angle adjustment during fire extinguishing, further increasing the extinguishing range and effectiveness, effectively preventing fires, and improving the fire safety of the insulation board.
[0020] 3. In this invention, placing the photovoltaic solar panel on the outermost side facilitates photovoltaic absorption. The photoelectric conversion connector is connected to the photovoltaic converter via an electrical connector and connecting wire, thereby converting light energy into electrical energy. The connecting wire is then connected to the battery via the photoelectric conversion connector to achieve effective energy storage, thus effectively improving energy efficiency. The bottom support plate provides effective support for the battery, ensuring stability. Attached Figure Description
[0021] Figure 1This is a perspective view of a fireproof and energy-saving fire-resistant insulation board for building according to the present invention;
[0022] Figure 2 This is a schematic diagram of the structure of a fireproof and energy-saving fire insulation board for building according to the present invention from another angle;
[0023] Figure 3 This is an exploded structural diagram of a fireproof and energy-saving fire-resistant insulation board for building according to the present invention;
[0024] Figure 4 This is an enlarged structural diagram of point A of a fireproof and energy-saving fire-resistant insulation board for building according to the present invention;
[0025] Figure 5 This is an enlarged structural diagram of section B of a fireproof and energy-saving fire-resistant insulation board for building according to the present invention;
[0026] Figure 6 This is a partial anatomical view of a fireproof and energy-saving fire-resistant insulation board for building according to the present invention;
[0027] Figure 7 This is an enlarged structural diagram of point C of a fireproof and energy-saving fire-resistant insulation board for building according to the present invention;
[0028] Figure 8 This is a partially exploded structural diagram of a fireproof and energy-saving fire-resistant insulation board for buildings according to the present invention.
[0029] Figure 9 This is a schematic diagram of the fireproof component structure of a fireproof and energy-saving fire-resistant insulation board for building according to the present invention;
[0030] Figure 10 This is an enlarged structural diagram of point D of a fireproof and energy-saving fire-resistant insulation board for building according to the present invention;
[0031] Figure 11 This is a schematic diagram of the energy-saving component structure of a fireproof and energy-saving fire insulation board for buildings according to the present invention.
[0032] In the picture:
[0033] 1. Installation and Removal Components; 101. Quick Installation Frame; 102. Insulation Board; 103. Embedded Groove; 104. Limiting Block; 105. Connecting Rod; 106. Connecting Plate; 107. Limiting Spring; 108. Support Ring; 109. Limiting Groove; 110. Positioning Block; 111. Positioning Groove; 112. Side Support Strip; 113. Sliding Block; 114. Fixing Frame; 115. Sliding Groove; 116. Mounting Frame; 117. Connecting Hole; 118. Connecting Block; 119. Reinforcing Rib; 120. Bottom Support Strip; 2. Fireproof Components; 201. Extinguishing Agent Storage Tank; 202. Connecting... 203. Connecting pipe; 204. Delivery pump; 205. Delivery hose; 206. Rotary connecting joint; 207. Fire sprinkler pipe; 208. Sprinkler head; 209. Lifting threaded rod; 210. Lifting motor; 211. Lifting sliding block; 212. Lifting guide plate; 213. Lifting guide groove; 214. Tilting motor; 215. Tilting drive gear; 216. Tilting transmission gear; 307. Energy-saving component; 301. Photovoltaic solar panel; 302. Electrical connector; 303. Connecting wire; 304. Photovoltaic conversion connector; 305. Storage battery; 306. Base support clamp. Detailed Implementation
[0034] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] Example 1: Refer to Figures 1-11As shown: A fireproof and energy-saving fire-resistant insulation board for buildings includes an installation and dismantling assembly 1. A fireproof component 2 and an energy-saving component 3 are installed on the side of the installation and dismantling assembly 1. The energy-saving component 3 is positioned above the fireproof component 2. The installation and dismantling assembly 1 includes a quick-installation frame 101. An insulation board 102 is embedded in the inner side of the quick-installation frame 101. Multiple embedding slots 103 are formed on the top inner side of the quick-installation frame 101. Limiting blocks 104 are provided inside the embedding slots 103, and connecting rods are installed on the top of the limiting blocks 104. 105. A connecting piece 106 is provided on the outer wall of the connecting rod 105. A limit spring 107 is connected to the top of the connecting piece 106. A support ring 108 is provided on the top of the limit spring 107. A limit groove 109 is opened on the top of the insulation board 102. A limit block 104 is embedded in the inner side of the limit groove 109. The support ring 108 is movably sleeved on the outer side of the connecting rod 105. A positioning block 110 is provided at the bottom of the inner wall of the quick-installation frame 101. A positioning groove 11 is opened at the bottom of the insulation board 102. 1. The positioning block 110 is installed inside the positioning groove 111. The quick-installation frame 101 provides stable frame support for the insulation board 102, facilitating the installation of the insulation material. The embedding groove 103 provides space for the embedding of the limiting block 104, facilitating the connection of the limiting block 104 with the connecting rod 105 to the connecting piece 106. The elasticity of the limiting spring 107 further facilitates the quick installation and limiting effect, ensuring stable installation of the insulation board. The support ring 108 provides elastic support for the limiting spring 107, facilitating the embedding of the limiting block 104 inside the limiting groove 109 for limiting. When disassembly is required, the connecting rod 105 is pulled out to separate the limiting block 104, achieving effective and quick disassembly. The positioning block 110 and the positioning groove 111 at the bottom of the insulation board 102 further limit and fix the insulation board, providing a stable installation and limiting function while ensuring quick installation and disassembly.
[0036] The quick-installation frame 101 has multiple sliding blocks 113 symmetrically and evenly distributed on its sides. Fixing frames 114 are provided on both sides of the quick-installation frame 101. Multiple sliding grooves 115 are symmetrically opened on the sides of the fixing frames 114. The fixing frames 114 are movably installed inside the sliding grooves 115. A docking hole 117 is opened at one end of the fixing frame 114, and a docking block 118 is installed at the other end. The sliding blocks 113 are inserted and slidably connected to the sliding grooves 115 on the fixing frames 114, effectively fixing the quick-installation frame 101 to the side of the fixing frames 114, achieving rapid installation and disassembly. The docking holes 117 and docking blocks 118 are connected, achieving effective splicing, which is beneficial for large-area installation and provides comprehensive insulation.
[0037] like Figure 9 and Figure 10As shown, the fireproof component 2 includes a fire extinguishing agent storage tank 201 located on one side of the installation and removal component 1. A connecting elbow 202 is connected through the top of the fire extinguishing agent storage tank 201. One end of the connecting elbow 202 is connected to a delivery pump 203. A delivery hose 204 is fixedly connected to the top of the delivery pump 203. One end of the delivery hose 204 is connected to a fire sprinkler pipe 206. The fire extinguishing agent can be stored in the fire extinguishing agent storage tank 201. The connecting elbow 202 provides a connection. In conjunction with the delivery pump 203, the fire extinguishing agent inside the fire extinguishing agent storage tank 201 is extracted and then delivered through the delivery hose 204 to the rotating connecting joint 205 for spraying. This is beneficial for extinguishing fires on the insulation board, improving the fire safety of the insulation board and effectively preventing fires from occurring.
[0038] like Figure 11 As shown, the energy-saving component 3 includes a photovoltaic solar panel 301 located on the other side of the mounting and dismantling component 1. An electrical connector 302 is installed on one side of the photovoltaic solar panel 301, and a connecting wire 303 is fixedly connected to the top of the electrical connector 302. Placing the photovoltaic solar panel 301 on the outermost side facilitates photovoltaic absorption. The photovoltaic connector 302 and the connecting wire 303 are connected to a photoelectric conversion connector 304 to convert light energy into electrical energy.
[0039] like Figure 9 and Figure 10 As shown, a rotating connector 205 is provided at the connection point between one end of the delivery hose 204 and one end of the fire sprinkler pipe 206. Multiple sprinkler heads 207 are evenly distributed on the side of the fire sprinkler pipe 206. The delivery hose 204 and the fire sprinkler pipe 206 can be connected by rotating the connector 205, which also has a rotating effect, effectively improving the convenience of operation. The fire extinguishing agent can be effectively sprayed out through the sprinkler heads 207 to achieve the fire extinguishing effect.
[0040] like Figure 9 and Figure 10 As shown, a threaded lifting block is provided in the middle of the sprinkler head 207. A lifting threaded rod 208 is connected to the inner thread of the threaded lifting block. A lifting motor 209 is provided at one end of the lifting threaded rod 208. The lifting motor 209 drives the lifting threaded rod 208 to achieve effective driving force. Through the transmission of the lifting block and the lifting threaded rod 208, it is convenient to adjust the height during the fire extinguishing process, which improves the fire extinguishing range and helps to ensure the fire extinguishing effect.
[0041] like Figure 9 and Figure 10As shown, lifting sliding blocks 210 are provided at both ends of the fire sprinkler pipe 206. Lifting guide plates 211 are slidably connected to the outer side of the lifting sliding blocks 210. Lifting guide grooves 212 are provided on the inner side of the lifting guide plates 211. The lifting sliding blocks 210 are slidably installed on the inner side of the lifting guide grooves 212. The lifting sliding blocks 210, in conjunction with the lifting guide grooves 212 on the inner side of the lifting guide plates 211, effectively achieve the function of lifting and adjusting, ensuring stable guidance during the lifting process and improving the smoothness of the lifting.
[0042] like Figure 9 and Figure 10 As shown, a flip transmission gear 215 is installed at one end of the fire sprinkler pipe 206. A flip drive gear 214 is meshed with the outer wall of the flip transmission gear 215. A flip motor 213 is installed on the top of a single lifting sliding block 210. One end of the flip motor 213 is connected to the side of the flip drive gear 214. The flip motor 213 drives the flip drive gear 214, which in turn drives the flip transmission gear 215 to rotate. This effectively provides angle adjustment during fire extinguishing, further increasing the fire extinguishing range and improving the fire extinguishing effect.
[0043] like Figure 11 As shown, one end of the connecting wire 303 is connected to a photoelectric conversion connector 304, and a storage battery 305 is installed at the bottom of the photoelectric conversion connector 304. The storage battery 305 is installed on the side of the quick-installation frame 101. The connecting wire 303 is connected to the storage battery 305 through the photoelectric conversion connector 304 to achieve effective energy storage, thereby effectively improving energy efficiency.
[0044] like Figure 11 As shown, the battery 305 is fixedly installed with bottom support plates 306 at both ends. The bottom support plates 306 are installed on the side of the fixing frame 114. The bottom support plates 306 can provide effective support for the battery 305 and ensure stability.
[0045] like Figures 3-8 As shown, multiple side support plates 112 are evenly distributed on the side of the quick-installation frame 101. The side support plates 112 are set on the side of the insulation board 102. The mounting frame 114 is mounted on the side of the mounting bracket 116. Multiple reinforcing ribs 119 are evenly distributed on the side of the mounting bracket 116. The bottom support strip 120 is fixedly installed at the bottom of the mounting bracket 114. The side support plates 112 can improve strength, prevent deformation, and improve durability. The mounting bracket 116 and the reinforcing ribs 119 are embedded in the concrete to facilitate fixation and ensure support. The insulation board 102 provides support and ensures stable use.
[0046] In this invention, the fireproof and energy-saving insulation board for buildings, when in use, firstly, the quick-installation frame 101 provides stable frame support for the insulation board 102, facilitating the installation of the insulation material. The embedding groove 103 provides space for the embedding of the limiting block 104, facilitating the connection of the limiting block 104 with the connecting rod 105 to the connecting piece 106. Simultaneously, the elasticity of the limiting spring 107 further facilitates quick installation and limiting, ensuring stable installation of the insulation board. The support ring 108 provides elastic support for the limiting spring 107, facilitating the embedding of the limiting block 104 into the inner side of the limiting groove 109 for limiting. When disassembly is required, the connecting rod 105 can be pulled out. The separation of the limiting block 104 enables effective and rapid disassembly. The positioning block 110, connected to the positioning groove 111 at the bottom of the insulation board 102, further limits and fixes the installation, providing stable installation and ensuring rapid installation and disassembly. The sliding block 113 is inserted and slidably connected to the sliding groove 115 on the fixing frame 114, effectively fixing the quick-installation frame 101 to the side of the fixing frame 114, achieving rapid installation and disassembly. The mating hole 117 connects with the mating block 118, achieving effective splicing and facilitating large-area installation and providing comprehensive insulation. The side support plate 112 enhances strength, prevents deformation, and improves durability. The frame 116, with reinforcing ribs 119 embedded in the concrete, facilitates fixation and ensures support. The insulation board 102 provides support, guaranteeing stable use. The extinguishing agent storage tank 201 stores the extinguishing agent, and the connecting bend 202 provides connectivity. The pump 203 extracts the extinguishing agent from the storage tank 201, then delivers it via the delivery hose 204 to the rotating connector 205 for spraying, effectively extinguishing the fire on the insulation board and improving its safety. The rotating connector 205 connects the delivery hose 204 to the fire sprinkler pipe 206, and its rotational design enhances ease of operation. The sprinkler head 207 allows for... The system effectively sprays the extinguishing agent to achieve fire suppression. The lifting motor 209 drives the lifting threaded rod 208, providing effective driving force. The lifting block, in conjunction with the lifting threaded rod 208, facilitates lifting and adjusting during the fire suppression process, increasing the extinguishing range and ensuring effectiveness. The lifting sliding block 210, in conjunction with the lifting guide groove 212 inside the lifting guide plate 211, effectively adjusts the lifting height, ensuring stable guidance and smooth operation. The tilting motor 213 drives the tilting drive gear 214, which in turn drives the tilting transmission gear 215, effectively providing angle adjustment during fire suppression, further increasing the extinguishing range and enhancing the fire suppression effect.Placing the photovoltaic solar panel 301 on the outermost side facilitates photovoltaic absorption. The electrical connector 302, along with the connecting wire 303, connects to the photoelectric conversion connector 304, converting solar energy into electrical energy. The photoelectric conversion connector 304 then connects the connecting wire 303 to the battery 305, achieving effective energy storage and thus significantly improving energy efficiency. The base support plate 306 provides effective support for the battery 305, ensuring stability.
[0047] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A fireproof energy-saving fireproof insulation board for construction, comprising an installation and dismounting assembly (1), characterized in that: The installation and dismantling assembly (1) is equipped with a fireproof component (2) and an energy-saving component (3) on its side. The energy-saving component (3) is located above the fireproof component (2). The installation and dismantling assembly (1) includes a quick-installation frame (101). An insulation board (102) is embedded in the inner side of the quick-installation frame (101). Multiple embedding slots (103) are opened on the top inner side of the quick-installation frame (101). A limiting block (104) is provided on the inner side of the embedding slot (103). A connecting rod (105) is installed on the top of the limiting block (104). A connecting piece (106) is provided on the outer wall of the connecting rod (105). The top of the connecting piece (106) is connected to a limiting spring (107), the top of the limiting spring (107) is provided with a support ring (108), the top of the insulation board (102) is provided with a limiting groove (109), the limiting block (104) is embedded in the inner side of the limiting groove (109), the support ring (108) is movably sleeved on the outer side of the connecting rod (105), the bottom of the inner wall of the quick installation frame (101) is provided with a positioning block (110), the bottom of the insulation board (102) is provided with a positioning groove (111), and the positioning block (110) is installed inside the positioning groove (111). The quick-installation frame (101) has a plurality of sliding blocks (113) symmetrically and evenly distributed on its side. The quick-installation frame (101) has a fixing frame (114) on both sides. The fixing frame (114) has a plurality of sliding grooves (115) symmetrically opened on its side. The fixing frame (114) is movably installed inside the sliding groove (115). One end of the fixing frame (114) has a docking hole (117) and a docking block (118) is installed at one end of the fixing frame (114). The fire protection component (2) includes a fire extinguishing agent storage tank (201) located on one side of the installation and removal component (1). A connecting elbow (202) is connected through the top of the fire extinguishing agent storage tank (201). A delivery pump (203) is connected to one end of the connecting elbow (202). A delivery hose (204) is fixedly connected to the top of the delivery pump (203). A fire sprinkler pipe (206) is connected to one end of the delivery hose (204). A rotating connector (205) is provided at the connection between one end of the delivery hose (204) and one end of the fire sprinkler pipe (206), and multiple sprinkler heads (207) are evenly distributed on the side of the fire sprinkler pipe (206). A threaded lifting block is provided in the middle of the spray head (207), and a lifting threaded rod (208) is threadedly connected to the inner side of the threaded lifting block. A lifting motor (209) is provided at one end of the lifting threaded rod (208). The fire sprinkler pipe (206) is provided with lifting sliding blocks (210) at both ends. The lifting sliding blocks (210) are slidably connected to the outer side of the lifting guide plate (211). The lifting guide plate (211) is provided with a lifting guide groove (212) on the inner side. The lifting sliding blocks (210) are slidably installed on the inner side of the lifting guide groove (212).
2. The fireproof and energy-saving fireproof insulation board for building according to claim 1, characterized in that: The energy-saving component (3) includes a photovoltaic solar panel (301) located on the other side of the mounting component (1). An electrical connector (302) is installed on one side of the photovoltaic solar panel (301), and a connecting wire (303) is fixedly connected to the top of the electrical connector (302).
3. The fireproof and energy-saving fireproof insulation board for building according to claim 2, characterized in that: One end of the fire sprinkler pipe (206) is equipped with a flip transmission gear (215), and the outer wall of the flip transmission gear (215) is meshed with a flip drive gear (214). A flip motor (213) is installed on the top of a single lifting sliding block (210), and one end of the flip motor (213) is connected to the side of the flip drive gear (214).
4. The fireproofing and energy-saving fireproofing insulation board for building according to claim 3, characterized in that: One end of the connecting line (303) is connected to a photoelectric conversion connector (304), and a storage battery (305) is installed at the bottom of the photoelectric conversion connector (304). The storage battery (305) is installed on the side of the quick-installation frame (101).
5. The fireproof and energy-saving thermal insulation board for buildings according to claim 4, characterized in that: The battery (305) is fixedly installed with bottom support plates (306) at both ends, and the bottom support plates (306) are installed on the side of the fixing frame (114).
6. The fireproof and energy-saving fire-resistant insulation board for buildings according to claim 5, characterized in that: The quick-installation frame (101) has multiple side support plates (112) evenly distributed on its side. The side support plates (112) are set on the side of the insulation board (102). The mounting frame (114) has a mounting bracket (116) installed on its side. The mounting bracket (116) has multiple reinforcing ribs (119) evenly distributed on its side. The bottom support strip (120) is fixedly installed on the bottom of the mounting bracket (114).
Citation Information
Patent Citations
Building thermal-insulation wallboard
CN110725467A
Environment-friendly building insulation board
CN114033054A
Adjustable green energy-saving building curtain wall
CN216041992U
Fireproof wall body structure
CN217645721U