Double-layer heat insulation wall energy-saving building structure
The connection efficiency between the curtain wall and the wall is improved by connecting components and locking components, solving the problem of inconvenience in the prior art, and quickly extinguishing fire through fire extinguishing components, reducing the construction strength and the service life of the water absorbent.
Patent Information
- Application Number
- CN202510771458.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2025-08-01
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The connection efficiency of the existing double-layer wall curtain wall and the outer wall is low, which increases the working strength of construction workers, and the connection method is not convenient for the separate replacement of the curtain wall.
The connecting components and locking components are adopted, including card slots, card blocks, limit telescopic rods, rotating gears and other structures, to achieve a stable connection between the curtain wall main body and the wall; the fire extinguishing components achieve rapid fire extinguishing through the liquid storage tank, pump body and atomizing nozzle; the mobile components control the water volume through the floating plate and rack plate structure.
It improves the connection efficiency between the curtain wall and the wall, reduces the installation strength of construction workers, facilitates the replacement of curtain walls, and can quickly extinguish the fire in the event of a fire, reducing the service life of the water absorbent.
Smart Images

Figure CN120401646A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building wall structures, and particularly to a double-layer heat-insulating wall energy-saving building structure. Background Technique
[0002] A double-layer heat-insulating wall energy-saving building refers to a building with a double-layer wall structure design, which aims to improve the heat-insulating performance and energy-saving effect of the building through the double-layer structure. Specifically, the double-layer wall consists of an inner layer and an outer layer with a certain air gap in the middle. This design can effectively isolate the influence of external temperature changes on the indoor environment, thereby achieving the purpose of energy conservation.
[0003] The existing double-layer wall design can achieve the purpose of energy conservation. Usually, a curtain wall is set on the outer wall to improve the aesthetics of the wall. However, the connection between the curtain wall and the outer wall is usually carried out using multiple fasteners, which reduces the connection efficiency between the curtain wall and the outer wall during installation and increases the working intensity of the staff.
[0004] In view of the above problems, a double-layer heat-insulating wall energy-saving building structure is proposed. Summary of the Invention
[0005] The purpose of the present invention is to provide a double-layer heat-insulating wall energy-saving building structure, which uses the present device to work, thereby solving the problems in the above background.
[0006] To achieve the above purpose, the present invention provides the following technical solution: A double-layer heat-insulating wall energy-saving building structure includes Wall A and a heat-insulating layer on one side of Wall A. There are two Walls B on one side of the heat-insulating layer, and a curtain wall main body is provided on one side of each Wall B. A locking component and a connecting component are respectively provided between the curtain wall main body and the adjacent Wall B. Grooves are opened on one side of each Wall B, cavities are opened on the curtain wall main body, a moving component is arranged in the inner cavity of the groove, a fire extinguishing component is arranged at the bottom of the inner cavity of the cavity, baffles are fixedly installed near the periphery of the inner cavity of the groove, and a cover plate is jointly arranged on one side of the baffles;
[0007] The connection component includes a connection block B fixedly installed at the middle position on the other side of the curtain wall main body and a card slot A formed in the connection block B. The inner cavities of the card slot A are all movably inserted with card blocks B. On the opposite sides of the card blocks B, limit telescopic rods are fixedly installed, and the opposite ends of the limit telescopic rods are respectively fixedly connected to the front and rear sides of the inner cavity of the groove. On the other side of the inner cavity of the groove, a connection shaft is rotatably connected. One end of the connection shaft is fixedly installed with a rotating gear, and moving rack plates are engaged with the top and bottom of the rotating gear. On one side of each moving rack plate, a bent rod is fixedly installed, and one side of the bent rod is respectively fixedly connected to the adjacent card block B. On one side of the moving rack plate at the top, a straight rod is fixedly installed, and one end of the straight rod movably penetrates through the side wall of the inner cavity of the groove and is fixedly installed with a handle.
[0008] Further, a reset telescopic rod is fixedly installed at the rear side of the handle, and the rear end of the reset telescopic rod is fixedly connected to the rear side of the inner cavity of the groove. A reset spring is movably sleeved on the outer periphery of the reset telescopic rod, and the two ends of the reset spring are respectively fixedly connected to the groove and the handle.
[0009] Further, guide rods are fixedly installed near the four sides on the other side of the curtain wall main body. A plurality of guide holes are formed in one side of the wall body B, and the guide rods are respectively movably inserted into the inner cavities of the adjacent guide holes.
[0010] Further, the fire extinguishing component includes a liquid storage tank fixedly installed at the bottom of the inner cavity of the groove and an installation groove fixedly installed at the top of the liquid storage tank. A partition is fixedly installed near the middle position in the inner cavity of the installation groove. A conduit is jointly inserted into the opposite sides of the installation groove and the liquid storage tank. A pump body is fixedly installed at the bottom of the inner cavity of the cavity. A delivery pipe is fixedly installed at the water inlet end of the pump body, and the top end of the delivery pipe is inserted into the bottom of the inner cavity of the liquid storage tank. A pump body is fixedly installed at the water outlet end of the pump body, and the pump body is fixedly connected to the curtain wall main body. A motor is fixedly installed near the middle position at the rear side of the inner cavity of the curtain wall main body.
[0011] Further, the moving component includes a floating plate near the bottom of the inner cavity of the liquid storage tank and a connecting column fixedly installed near one side at the top of the floating plate. The bottom end of the connecting column movably penetrates through the top of the inner cavity of the liquid storage tank and is fixedly installed with a movable rack plate. A transmission gear is engaged with one side of the movable rack plate. A threaded rod B is arranged on one side of the transmission gear. The front and rear ends of the threaded rod B are respectively rotatably connected to the side walls of the inner cavity of the cavity. A threaded sleeve B is threadedly connected near the middle position on the outer periphery of the threaded rod B. An L-shaped connecting plate is fixedly installed at the top of the threaded sleeve B. A shielding block is fixedly installed on one side of the L-shaped connecting plate, and the shielding block is arranged in mutual fit with the curtain wall main body.
[0012] Further, a support rod is fixedly installed at the rear side of the transmission gear, and the rear end of the support rod is rotatably connected to the rear side of the inner cavity of the cavity; round rods movably penetrate through near the four sides at the top of the floating plate.
[0013] Furthermore, a limiting block B is fixedly installed at the bottom of the threaded sleeve B, and a limiting rod B movably penetrates through the front side of the limiting block B, and the front and rear ends of the limiting rod B are respectively fixedly connected to the inner cavity side walls of the cavity.
[0014] Furthermore, synchronous wheels are fixedly sleeved on the outer circumferences of the threaded rod B and the support rod near the rear ends, and a synchronous belt is commonly sleeved between the synchronous wheels.
[0015] Furthermore, the locking assembly includes a connecting block A fixedly installed on the other side of the adjacent wall B and a clamping groove B opened on the front and rear sides of the connecting block A. A worm is rotatably connected to the other side of the inner cavity of the cavity near the bottom. One end of the worm movably penetrates through the inner cavity of the curtain wall main body and is fixedly installed with a knob. A worm gear is meshed with the bottom of the worm near the other side. A threaded rod A penetrates through the rear side of the worm gear. The front and rear ends of the threaded rod A are respectively rotatably connected to the front and rear sides of the inner cavity of the groove. Threaded rods A are respectively threadedly connected to the outer circumferences of the threaded rod A near the front and rear ends. An L-shaped connecting rod is fixedly installed on one side of each of the threaded rods A. Clamping blocks A are fixedly installed at the opposite ends of the L-shaped connecting rods. The opposite sides of the clamping blocks A are respectively movably inserted into the inner cavities of the adjacent clamping grooves B.
[0016] Furthermore, limiting blocks A are fixedly installed at the bottoms of the threaded sleeves A, and a limiting rod A movably penetrates through the bottoms of the limiting blocks A together, and the front and rear ends of the limiting rod A are respectively fixedly connected to the front and rear sides of the inner cavity of the cavity.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0018] 1. When connecting the curtain wall main body to the wall B, with the combined use of the connecting assembly, when the curtain wall main body is attached to the wall B, the two clamping blocks B can be respectively movably inserted into the inner cavities of the adjacent clamping grooves A, which is convenient for connecting the curtain wall main body and the wall B, reduces the installation intensity of construction workers, improves the installation efficiency, is conducive to the subsequent replacement of the separately damaged curtain wall main body, and improves the use effect of the device.
[0019] 2. When the curtain wall main body is in use, through the water absorbent placed on the top of the installation groove, water is stored in the inner cavity of the liquid storage tank. When a fire needs to be extinguished, the operator can start the pump body through an external controller to pump out the water in the inner cavity of the liquid storage tank and spray it out through the atomizing nozzle, which can relieve the fire situation.
[0020] 3. During the water storage process, with the cooperation of the moving components, the movable rack plate can move upward as the floating plate moves upward, which can then cause the support rod to rotate, and further cause the threaded rod B to rotate. The threaded sleeve B threaded on the threaded rod B can make the L-shaped connecting plate move forward. The shielding block fixed on the L-shaped connecting plate can shield the through hole on the cover plate to avoid excessive water absorption and reduce the service life of the water absorbent. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a schematic three-dimensional structure diagram of the whole of the present invention;
[0022] Figure 2 is a schematic sectional three-dimensional structure diagram of the present invention;
[0023] Figure 3 is an exploded view of Wall A and the curtain wall main body of the present invention;
[0024] Figure 4 is a schematic sectional three-dimensional structure diagram of the connection component of the present invention;
[0025] Figure 5 is a schematic sectional three-dimensional structure diagram of the fire extinguishing component of the present invention;
[0026] Figure 6 of the present invention Figure 2 is an enlarged view of part A in;
[0027] Figure 7 of the present invention Figure 5 is an enlarged view of part B in;
[0028] Figure 8 of the present invention Figure 5 is an enlarged view of part C in;
[0029] Figure 9 of the present invention Figure 5 is an enlarged view of part D in.
[0030] In the figure: 1, Wall A; 2, Wall B; 21, Guide hole; 3, Heat insulation layer; 4, Curtain wall main body; 41, Guide rod; 5, Cover plate; 6, Locking component; 61, Connecting block A; 62, Worm; 63, Worm gear; 64, Threaded rod A; 65, Threaded sleeve A; 651, Limiting block A; 652, Limiting rod A; 66, L-shaped connecting rod; 67, Clamping block A; 7, Connecting component; 71, Connecting block B; 72, Clamping block B; 73, Limiting telescopic rod; 74, Connecting shaft; 75, Rotating gear; 76, Moving rack plate; 77, Bent rod; 78, Straight rod; 79, Handle; 791, Reset telescopic rod; 792, Reset spring; 8, Fire extinguishing component; 81, Installation groove; 82, Liquid storage tank; 83, Partition board; 84, Conduit; 85, Pump body; 86, Delivery pipe; 87, Atomizing nozzle; 88, Motor; 9, Moving component; 91, Floating plate; 911, Round rod; 92, Moving rack plate; 93, Driving gear; 931, Support rod; 94, Threaded rod B; 941, Synchronous pulley; 942, Synchronous belt; 95, Threaded sleeve B; 951, Limiting block B; 952, Limiting rod B; 96, L-shaped connecting plate; 97, Blocking block; 98, Connecting column; 10, Cavity; 20, Groove. Specific implementation mode
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work belong to the protection scope of the present invention.
[0032] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0033] The purpose of this embodiment is to provide a double-layer heat-insulating wall energy-saving building structure, as Figures 1-9As shown in the figure, it includes wall A1 and a heat insulation layer 3 located on one side of wall A1. On one side of the heat insulation layer 3, there are two walls B2, and on one side of each wall B2, there is a curtain wall main body 4. (On one side of wall B2, there are several curtain wall main bodies 4, which can form a structure adapted to wall B2.) Between the curtain wall main body 4 and the adjacent wall B2, there are respectively a locking component 6 and a connecting component 7. On one side of each wall B2, there is a groove 20. In the cavity of the curtain wall main body 4, there is a cavity 10. Inside the cavity of the groove 20, there is a moving component 9. At the bottom of the cavity of the cavity 10, there is a fire extinguishing component 8. Near the periphery of the inner cavity of the groove 20, there are baffles fixed, and on one side of the baffles, there is a common cover plate 5 (the baffles and the cover plate 5 can be connected by subsequent structural adhesives, and there are several through holes on the cover plate 5);
[0034] The connecting component 7 includes a connecting block B71 fixedly installed at the middle position on the other side of the curtain wall main body 4 and a slot A opened on the connecting block B71. In the inner cavity of the slot A, there are respectively movable inserted blocks B72. On the opposite sides of the blocks B72, there are respectively fixedly installed limit telescopic rods 73, and the opposite ends of the limit telescopic rods 73 are respectively fixedly connected to the front and rear sides of the inner cavity of the groove 20. On the other side of the inner cavity of the groove 20, there is a rotatably connected connecting shaft 74. At one end of the connecting shaft 74, there is a fixedly installed rotating gear 75. At the top and bottom of the rotating gear 75, there are respectively engaged moving rack plates 76. On one side of each moving rack plate 76, there is a fixedly installed bent rod 77. One side of the bent rod 77 is respectively fixedly connected to the adjacent block B72. On one side of the moving rack plate 76 at the top, there is a fixedly installed straight rod 78. One end of the straight rod 78 movably penetrates through the side wall of the inner cavity of the groove 20 and is fixedly installed with a handle 79.
[0035] Specifically, when connecting the curtain wall main body 4 to the wall B2, with the cooperation of the connecting component 7, when the curtain wall main body 4 is attached to the wall B2, the two blocks B72 can be respectively movably inserted into the inner cavities of the adjacent slots A, which is convenient for connecting the curtain wall main body 4 and the wall B2, reducing the installation intensity of construction workers, improving the installation efficiency, facilitating the subsequent replacement of the separately damaged curtain wall main body 4, and improving the use effect of the device.
[0036] At the rear side of the handle 79, there is a fixedly installed reset telescopic rod 791, and the rear end of the reset telescopic rod 791 is fixedly connected to the rear side of the inner cavity of the groove 20. The outer periphery of the reset telescopic rod 791 is movably sleeved with a reset spring 792, and the two ends of the reset spring 792 are respectively fixedly connected to the groove 20 and the handle 79.
[0037] Specifically, by setting the reset telescopic rod 791 and the reset spring 792, the block B72 can be stably inserted into the inner cavity of the adjacent slot B.
[0038] The locking assembly 6 includes a connecting block A61 fixedly installed on the other side of the adjacent wall B2 and clamping grooves B opened on the front and rear sides of the connecting block A61. On the other side near the bottom of the inner cavity of the cavity 10, a worm 62 is rotatably connected. One end of the worm 62 movably penetrates through the inner cavity of the curtain wall main body 4 and is fixedly installed with a knob. Near the other side at the bottom of the worm 62, a worm gear 63 is engaged. And a threaded rod A64 is arranged through the rear side of the worm gear 63. The front and rear ends of the threaded rod A64 are respectively rotatably connected to the front and rear sides of the inner cavity of the groove 20. Near the front and rear ends of the outer circumference of the threaded rod A64, threaded sleeves A65 are threadedly connected (opposite external threads are provided on the outer circumference of the threaded rod A64 near the front and rear ends, and the thread precision is the same). On one side of the threaded rod A64, L-shaped connecting rods 66 are fixedly installed, and on the opposite ends of the L-shaped connecting rods 66, clamping blocks A67 are fixedly installed. The opposite sides of the clamping blocks A67 are respectively movably inserted into the inner cavities of the adjacent clamping grooves B.
[0039] Specifically, the locking assembly 6 is an alternative to the connecting assembly 7. When the curtain wall main body 4 is attached to the wall B2, the knob can be rotated, which can cause the worm 62 fixed on the knob to rotate. Through the worm gear 63 engaged with the worm 62, the threaded rod A64 can be rotated. Opposite external threads are provided on the outer circumference of the threaded rod A64 near the front and rear ends. Furthermore, the two threaded sleeves A65 threadedly connected to the outer circumference of the threaded rod A64 can move toward the opposite sides under the limitation of the limiting block A651 and the limiting rod A652. Under the connection of the adjacent L-shaped connecting rods 66, the clamping blocks A67 can be respectively movably inserted into the inner cavities of the adjacent clamping grooves B, and the curtain wall main body 4 and the wall B2 can be connected.
[0040] On the bottom of the threaded sleeves A65, limiting blocks A651 are fixedly installed, and a limiting rod A652 movably penetrates through the bottoms of the limiting blocks A651 together. The front and rear ends of the limiting rod A652 are respectively fixedly connected to the front and rear sides of the inner cavity of the cavity 10.
[0041] Specifically, by providing the lower limiting block A651 and the limiting rod A652, the movement of the threaded sleeve A65 can be limited.
[0042] On the other side near the periphery of the curtain wall main body 4, guide rods 41 are fixedly installed. A number of guide holes 21 are opened on one side of the wall B2, and the guide rods 41 are respectively movably inserted into the inner cavities of the adjacent guide holes 21.
[0043] Specifically, by providing the guide rods 41 and the guide holes 21, it is convenient for the curtain wall main body 4 to be connected and attached to the wall B2.
[0044] The fire extinguishing assembly 8 includes a liquid storage tank 82 fixedly installed at the bottom of the inner cavity of the groove 20 and an installation groove 81 fixedly installed on the top of the liquid storage tank 82. A partition plate 83 is fixedly installed near the middle position in the inner cavity of the installation groove 81. (A water absorbent is placed on the top of the partition plate 83, and the water absorbent can be calcium chloride) A conduit 84 is commonly inserted on the opposite sides of the installation groove 81 and the liquid storage tank 82. (A check valve is arranged on the outer periphery of the conduit 84) A pump body 85 is fixedly installed at the bottom of the inner cavity of the cavity 10. A delivery pipe 86 is fixedly installed at the water inlet end of the pump body 85, and the top end of the delivery pipe 86 is inserted into the bottom of the inner cavity of the liquid storage tank 82. A pump body 85 is fixedly installed at the water outlet end of the pump body 85, and the pump body 85 is fixedly connected to the curtain wall main body 4. A motor 88 is fixedly installed near the middle position at the rear side of the inner cavity of the curtain wall main body 4.
[0045] Specifically, during the use of the curtain wall main body 4, the through holes on the cover plate 5 are in an open state in the initial state. By arranging a water absorbent on the top of the partition plate 83, moisture from the outside can be inhaled into the inner cavity of the installation groove 81 through the water absorbent and introduced into the inner cavity of the liquid storage tank 82 through the conduit 84 for storage. When fire extinguishing is required, the pump body 85 can be started through an external controller, and water can be pumped into the inner cavity of the pump body 85 through the delivery pipe 86 and sprayed out to relieve the fire situation.
[0046] The moving assembly 9 includes a floating plate 91 located near the bottom of the inner cavity of the liquid storage tank 82 and a connecting column 98 fixedly installed near one side of the top of the floating plate 91. The bottom end of the connecting column 98 movably penetrates the top of the inner cavity of the liquid storage tank 82 and is fixedly installed with a movable rack plate 92. A transmission gear 93 is engaged with one side of the movable rack plate 92. A threaded rod B94 is arranged on one side of the transmission gear 93. The front and rear ends of the threaded rod B94 are respectively rotatably connected to the inner cavity side walls of the cavity 10. A threaded sleeve B95 is threadedly connected near the middle position of the outer periphery of the threaded rod B94. An L-shaped connecting plate 96 is fixedly installed on the top of the threaded sleeve B95. A shielding block 97 is fixedly installed on one side of the L-shaped connecting plate 96, and the shielding block 97 is arranged in mutual fit with the curtain wall main body 4.
[0047] Specifically, during the water storage process, the water level continuously rises, which can cause the floating plate 91 to move upward. Under the connection of the connecting column 98, the movable rack plate 92 can move upward, and then the engaged transmission gear 93 can rotate, so that the support rod 931 can rotate. Under the transmission of the synchronous pulley 941 and the synchronous belt 942, the threaded rod B94 can rotate. The threaded sleeve B95 threadedly connected to the threaded rod B94 can move forward on the front side under the limitation of the limiting block B951 and the limiting rod B952, and then the shielding block 97 fixed on the L-shaped connecting plate 96 can move forward to block the through holes on the cover plate 5, which can avoid excessive water absorption and reduce the service life of the water absorbent.
[0048] A support rod 931 is fixedly installed at the rear side of the transmission gear 93, and the rear end of the support rod 931 is rotatably connected to the rear side of the inner cavity of the cavity 10; round rods 911 are movably penetrated through the top of the floating plate 91 near the periphery.
[0049] Specifically, by setting the support rod 931, the transmission gear 93 can be supported, and by setting the round rods 911, the floating plate 91 can be limited when it moves.
[0050] A limit block B951 is fixedly installed at the bottom of the threaded sleeve B95, and a limit rod B952 is movably penetrated through the front side of the limit block B951, and the front and rear ends of the limit rod B952 are respectively fixedly connected to the inner cavity side wall of the cavity 10.
[0051] Specifically, by setting the limit block B951 and the limit rod B952, the movement of the threaded sleeve B95 can be limited.
[0052] Synchronous wheels 941 are fixedly sleeved on the outer peripheries of the threaded rod B94 and the support rod 931 near the rear ends, and a synchronous belt 942 is commonly sleeved between the synchronous wheels 941.
[0053] Specifically, by setting the synchronous wheels 941 and the synchronous belt 942, the threaded rod B94 and the support rod 931 can rotate synchronously.
[0054] In summary, the working principle of the present invention is as follows: When connecting the curtain wall main body 4 to the wall body B2, the curtain wall main body 4 can be attached to the wall body B2. Since the opposite sides of the connecting block B71 and the clamping block B72 are both arc-shaped, when the curtain wall main body 4 is attached to the wall body B2, the clamping block B72 can be movably inserted into the inner cavity of the adjacent card slot A. Under the elastic force of the reset telescopic rod 791 and the reset spring 792, the clamping block B72 can be stably inserted into the inner cavity of the adjacent card slot A. When it is necessary to disconnect the connection between the two, the handle 79 can be pushed backward, and the adjacent moving rack plate 76 can be moved backward under the connection of the straight rod 78. Under the transmission of the rotating gear 75, the moving rack plate 76 at the bottom can be moved forward, and then, under the connection of the adjacent bent rod 77, the adjacent clamping block B72 can be moved away from the inner cavity of the adjacent card slot A. The locking assembly 6 is an alternative to the connecting assembly 7, and the operation steps of the locking assembly 6 are as follows: When the curtain wall main body 4 is attached to the wall body B2, the knob can be rotated, which can cause the worm 62 fixed on the knob to rotate. Through the worm gear 63 meshing with the worm 62, the threaded rod A64 can be rotated. Opposite external threads are provided near the front and rear ends of the outer periphery of the threaded rod A64. Thus, the two thread sleeves A65 threadedly connected to the outer periphery of the threaded rod A64 can move toward the opposite sides under the limitation of the limiting block A651 and the limiting rod A652. Under the connection of the adjacent L-shaped connecting rods 66, the clamping blocks A67 can be respectively movably inserted into the inner cavities of the adjacent card slots B, and the curtain wall main body 4 can be connected to the wall body B2. When disassembly is required, the knob can be rotated in the reverse direction. During the use of the curtain wall main body 4, the through hole on the cover plate 5 is in an open state in the initial state. By arranging a water absorbent on the top of the partition plate 83, the external moisture can be inhaled into the inner cavity of the installation groove 81 through the water absorbent and introduced into the inner cavity of the liquid storage tank 82 through the conduit 84 for storage. When fire extinguishing is required, the pump body 85 can be started through an external controller, and water can be pumped into the inner cavity of the pump body 85 through the delivery pipe 86 and sprayed out to relieve the fire situation. During the water storage process, the water level continuously rises, which can cause the floating plate 91 to move upward. Under the connection of the connecting column 98, the moving rack plate 92 can be moved upward, and then the driving gear 93 meshing with it can be rotated, so that the support rod 931 can be rotated. Under the transmission of the synchronous pulley 941 and the synchronous belt 942, the threaded rod B94 can be rotated. The thread sleeve B95 threadedly connected to the threaded rod B94 can move the L-shaped connecting plate 96 forward under the limitation of the limiting block B951 and the limiting rod B952, and then the shielding block 97 fixed on the L-shaped connecting plate 96 can be moved forward to block the through hole on the cover plate 5, which can avoid excessive water absorption and reduce the service life of the water absorbent.
[0055] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and the above embodiments and the descriptions in the specification are only preferred examples of the present invention, and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. A double-layer heat-insulating wall energy-saving building structure, comprising a wall A (1) and a heat-insulating layer (3) located on one side of the wall A (1). Two walls B (2) are arranged on one side of the heat-insulating layer (3), and a curtain wall main body (4) is arranged on one side of each wall B (2), characterized in that: A locking component (6) and a connecting component (7) are respectively arranged between the curtain wall main body (4) and the adjacent wall B (2). Grooves (20) are formed on one side of the wall B (2), cavities (10) are formed on the curtain wall main body (4), a moving component (9) is arranged in the inner cavity of the groove (20), a fire extinguishing component (8) is arranged at the bottom of the inner cavity of the cavity (10), baffles are fixedly installed near the periphery of the inner cavity of the groove (20), and a cover plate (5) is jointly arranged on one side of the baffles; The connecting component (7) includes a connecting block B (71) fixedly installed at the middle position on the other side of the curtain wall main body (4) and a clamping groove A formed on the connecting block B (71). Clamping blocks B (72) are movably inserted into the inner cavities of the clamping groove A. Limiting telescopic rods (73) are fixedly installed on the opposite sides of the clamping blocks B (72), and the opposite ends of the limiting telescopic rods (73) are respectively fixedly connected to the front and rear sides of the inner cavity of the groove (20). A connecting shaft (74) is rotatably connected to the other side of the inner cavity of the groove (20). A rotating gear (75) is fixedly installed at one end of the connecting shaft (74). Moving rack plates (76) are engaged with the top and bottom of the rotating gear (75). Bent rods (77) are fixedly installed on one side of the moving rack plates (76). The bent rods (77) are respectively fixedly connected to the adjacent clamping blocks B (72). A straight rod (78) is fixedly installed on one side of the moving rack plate (76) at the top. One end of the straight rod (78) movably penetrates through the side wall of the inner cavity of the groove (20) and is fixedly installed with a handle (79).
2. The energy-saving building structure of a double-layer heat-insulating wall according to claim 1, characterized in that: A reset telescopic rod (791) is fixedly installed at the rear side of the handle (79), and the rear end of the reset telescopic rod (791) is fixedly connected to the rear side of the inner cavity of the groove (20). A reset spring (792) is movably sleeved on the outer periphery of the reset telescopic rod (791), and the two ends of the reset spring (792) are respectively fixedly connected to the groove (20) and the handle (79).
3. A double-layer heat-insulating wall energy-saving building structure according to claim 1, characterized in that: Guide rods (41) are fixedly installed near the periphery of the other side of the curtain wall main body (4). A plurality of guide holes (21) are formed on one side of the wall B (2), and the guide rods (41) are respectively movably inserted into the inner cavities of the adjacent guide holes (21).
4. A double-layer heat-insulating wall energy-saving building structure according to claim 1, characterized in that: The fire extinguishing component (8) includes a liquid storage tank (82) fixedly installed at the bottom of the inner cavity of the groove (20) and an installation groove (81) fixedly installed at the top of the liquid storage tank (82). A partition plate (83) is fixedly installed near the middle position of the inner cavity of the installation groove (81). A conduit (84) is jointly inserted into the opposite sides of the installation groove (81) and the liquid storage tank (82). A pump body (85) is fixedly installed at the bottom of the inner cavity of the cavity (10). A delivery pipe (86) is fixedly installed at the water inlet end of the pump body (85), and the top end of the delivery pipe (86) is inserted into the bottom of the inner cavity of the liquid storage tank (82). A pump body (85) is fixedly installed at the water outlet end of the pump body (85), and the pump body (85) is fixedly connected to the curtain wall main body (4). A motor (88) is fixedly installed near the middle position of the rear side of the inner cavity of the curtain wall main body (4).
5. A double-layer heat-insulating wall energy-saving building structure according to claim 1, characterized in that: The moving component (9) includes a floating plate (91) located near the bottom inside the liquid storage tank (82) and a connecting column (98) fixedly installed near one side of the top of the floating plate (91). The bottom end of the connecting column (98) movably penetrates through the top inside the liquid storage tank (82) and is fixedly installed with a movable rack plate (92). One side of the movable rack plate (92) meshes with a transmission gear (93). One side of the transmission gear (93) is provided with a threaded rod B (94). The front and rear ends of the threaded rod B (94) are respectively rotatably connected to the inner side walls of the cavity (10). A threaded sleeve B (95) is threadedly connected to the outer periphery of the threaded rod B (94) near the middle position. The top of the threaded sleeve B (95) is fixedly installed with an L-shaped connecting plate (96). One side of the L-shaped connecting plate (96) is fixedly installed with a shielding block (97), and the shielding block (97) is arranged in mutual contact with the curtain wall main body (4).
6. A double-layer heat-insulating wall energy-saving building structure according to claim 5, characterized in that: A support rod (931) is fixedly installed at the rear side of the transmission gear (93), and the rear end of the support rod (931) is rotatably connected to the rear side inside the cavity (10); round rods (911) movably penetrate through the top of the floating plate (91) near the periphery thereof.
7. The energy-saving building structure of a double-layer heat-insulating wall according to claim 5, characterized in that: A limiting block B (951) is fixedly installed at the bottom of the threaded sleeve B (95), and a limiting rod B (952) movably penetrates through the front side of the limiting block B (951). The front and rear ends of the limiting rod B (952) are respectively fixedly connected to the inner side walls of the cavity (10).
8. A double-layer heat-insulating wall energy-saving building structure according to claim 5, characterized in that: Synchronous wheels (941) are fixedly sleeved on the outer peripheries of the threaded rod B (94) and the support rod (931) near the rear ends thereof, and a synchronous belt (942) is commonly sleeved between the synchronous wheels (941).
9. A double-layer heat-insulating wall energy-saving building structure according to claim 1, characterized in that: The locking component (6) includes a connecting block A (61) fixedly installed on the other side of the adjacent wall B (2) and clamping grooves B opened on the front and rear sides of the connecting block A (61). A worm (62) is rotatably connected to the other side near the bottom inside the cavity (10). One end of the worm (62) movably penetrates through the inside of the curtain wall main body (4) and is fixedly installed with a knob. A worm gear (63) is meshed with the bottom of the worm (62) near the other side. A threaded rod A (64) penetrates through the rear side of the worm gear (63). The front and rear ends of the threaded rod A (64) are respectively rotatably connected to the front and rear sides inside the groove (20). Threaded sleeves A (65) are threadedly connected to the outer peripheries of the threaded rod A (64) near the front and rear ends thereof. An L-shaped connecting rod (66) is fixedly installed on one side of each of the threaded sleeves A (65), and a clamping block A (67) is fixedly installed on the opposite ends of the L-shaped connecting rods (66). The opposite sides of the clamping blocks A (67) are respectively movably inserted into the inner cavities of the adjacent clamping grooves B.
10. A double-layer heat-insulating wall energy-saving building structure according to claim 9, characterized in that: Limiting blocks A (651) are fixedly installed at the bottoms of the threaded sleeves A (65), and a limiting rod A (652) commonly movably penetrates through the bottoms of the limiting blocks A (651). The front and rear ends of the limiting rod A (652) are respectively fixedly connected to the front and rear sides inside the cavity (10).