Detachable fireproof partition structure
By designing a detachable fire-proof partition structure, the combination of double-layer fire-resistant glass module and multiple components is used to solve the contradiction between the fire-proof effect and light-transmitting of the existing partition wall, and the effect of efficient fire-proof, beautiful and convenient disassembly and assembly is achieved.
Patent Information
- Application Number
- CN202510152456.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-02-12
AI Technical Summary
When ensuring fireproofing, existing partition walls lack light transmission, poor ornamentality, and cannot be easily disassembled and assembled.
A detachable fire-resistant partition structure is designed, adopting a double-layer fire-resistant glass module, and a rubber sealing sleeve is installed on the edge. Through the cooperation of the adapter tensioning component and the top sealing component, the partition wall can be stabilized and conveniently disassembled and assembled. At the same time, transportation and cleaning components, water draw components and driving components are set up to create a water curtain landscape, improve ornamentality and fire protection.
It achieves good light transmission effect of partition walls, improves ornamentality, and has the advantages of effective fire protection and convenient assembly, and is suitable for reuse.
Smart Images

Figure CN119981328A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of partition walls, in particular to a detachable fireproof partition structure. Background Art
[0002] Partition walls are also called high partitions, high partition walls, and some people even call them office screens. They are mainly used in office places. It is this feature that distinguishes partition walls from sanitary partitions. Professional high partition walls can not only realize the traditional function of space separation, but also have the characteristics of lighting, sound insulation, fire prevention, environmental protection, and easy installation. The partition wall frames on the market are basically all-aluminum structures or made of wood materials. The glass is fixed on the all-aluminum frame or the wooden frame to form a partition wall, which is used to divide the space area. Due to the low melting points of aluminum and wood, the melting point of aluminum is 600℃-650℃, and the melting point of wood is lower. When a fire occurs, the temperature will quickly rise to above 600℃, so that the aluminum will melt and the wood will directly carbonize. For traditional all-aluminum frame partition walls, once the aluminum frame melts, the panel on the wall will fall down without support, which can easily hurt people, and the entire wall will collapse, which will not prevent the spread of flames.
[0003] A fireproof and soundproof partition wall as described in application number 201922314108.9 can facilitate the disassembly and replacement of steel plate layers and gypsum boards for easy maintenance and has good fireproofing effect.
[0004] Based on the search of the above information, it can be seen that the existing partition walls lack light transmittance and have poor ornamental properties while ensuring fire prevention effects. In addition, the partition walls are assembled by screw fixing and cannot be easily disassembled. For this reason, a detachable fireproof partition structure is proposed to achieve good light transmittance and good ornamental properties while effectively preventing fires. It is also easy to assemble and has good disassembly, providing reliable guarantees for repeated use. Summary of the invention
[0005] 1. Technical issues to be resolved In view of the deficiencies in the prior art, the present invention provides a detachable fireproof partition structure, which solves the problems that the existing partition walls lack light transmittance, have poor ornamental properties, and cannot be easily disassembled and assembled while ensuring fireproof effects.
[0006] (II) Technical solution To achieve the above objectives, the present invention is implemented through the following technical solutions: a detachable fireproof partition structure, comprising a mounting base, a mounting top seat, a mounting bracket, and a plurality of fire-resistant glass modules, the fire-resistant glass modules are made of double-layer fire-resistant glass, and include a rubber sealing sleeve at the edge to ensure the sealing effect of subsequent installation, the mounting bracket is arranged between the mounting base and the mounting top seat, and the plurality of fire-resistant glass modules are embedded in the mounting bracket, the mounting base and the mounting top seat are fixed by a transition tensioning assembly, the top of the mounting top seat is also provided with a top plugging assembly, and the top plugging assembly and the transition tensioning assembly are used in conjunction with each other; The mounting bracket is used to divide a plurality of fire-resistant glass modules into two groups, front and rear, and a conveying and cleaning component is arranged in the mounting bracket. A water-drawing component used in conjunction with the conveying and cleaning component is arranged inside the mounting base. A driving component is arranged on the top of the mounting top seat, and the driving component is used in conjunction with the conveying and cleaning component.
[0007] In order to facilitate the stable assembly of the fire-resistant glass module, the present invention is further configured as follows: the mounting bracket includes two fixing frames and columns, two connecting plates are fixedly connected between the columns and the two fixing frames, the top and bottom of the connecting plates are both provided with a first fixing groove, and the front and rear sides of the opposite side of the fixing frame and the column are both provided with a second fixing groove connected to the first fixing groove; The top and bottom of the two fixing frames and the column are respectively in contact with the side opposite to the mounting base and the mounting top seat, and the front and rear sides of the side opposite to the mounting top seat and the mounting base are both provided with a third fixing groove connected with the two second fixing grooves; A water storage tank connected to the third fixing groove is provided on the top of the mounting base, and the water storage tank is arranged between the two third fixing grooves; The first fixing groove, the second fixing groove and the third fixing groove are all used in conjunction with the fire-resistant glass module.
[0008] In order to ensure the stability of the partition wall, the present invention is further configured as follows: the transition tensioning assembly includes a threaded barrel and two threaded rods, the opposite ends of the two threaded rods respectively penetrate the two ends of the threaded barrel and are threadedly matched with the threaded barrel, and the threads opened on the surfaces of the two threaded rods are arranged oppositely, and the other ends of the two threaded rods are fixedly connected with a I-shaped different block; Both sides of the installation base and the installation top seat are provided with I-shaped assembly grooves, and the I-shaped different blocks are used in conjunction with the I-shaped assembly grooves; The threaded barrel and the two threaded rods are all arranged inside the fixed frame, and an assembly step groove is opened on the front side of the fixed frame. An inspection plate is fixedly installed inside the assembly step groove by bolts, and a filling pipe head is also connected to the interior of one of the fixed frames, and the filling pipe head is a pipe head with a threaded sleeve and a sealing cap at one end.
[0009] In order to ensure the installation stability of the I-shaped block, the present invention is further configured as follows: the I-shaped block includes a docking plate and a fixing plate, the docking plate and the fixing plate are fixed by a docking column, one side of the docking plate is fixedly connected to two embedded blocks, the other side of the docking plate is provided with a threaded embedded groove adapted to the embedded block, and the top of the docking plate is also provided with two assembly threaded holes; The side of the fixing plate away from the docking plate is fixedly connected to the other end of the threaded rod; The top of the mounting base and the bottom of the mounting top seat are both provided with two fixing holes connected to the I-shaped assembly groove, and the insides of the two fixing holes are both inserted with hexagon socket bolts, which are used in conjunction with the threaded embedding groove and the assembly threaded hole.
[0010] In order to achieve stable adjustment of the distance between the top of the partition wall and the top of the inner room of the building, the present invention is further configured as follows: the top blocking assembly includes two cover plates, an assembly plate is fixedly installed between the two cover plates, two first tooth plates are fixedly connected to the bottom of the assembly plate, a pulling gear is rotatably installed inside the I-shaped assembly groove in the mounting top seat through the vertical plate, and the tops of the inner cavities of the two fixed frames are inlaid and fixed with second tooth plates, the first tooth plate and the second tooth plate are both arranged on one side of the pulling gear and are meshed with the pulling gear, and a movable groove adapted to the first tooth plate is provided on the top of the second tooth plate; A through groove is also provided inside the I-shaped assembly groove in the mounting top seat, and the through groove is used in conjunction with the first tooth plate and the second tooth plate; The top of the assembly plate is fixedly connected with a filling plate via a plurality of first springs, and the filling plate is slidably installed between the two cover plates; The two cover plates are respectively slidably mounted on the front and rear sides of the mounting top seat.
[0011] In order to improve the ornamental value and fireproof performance, the present invention is further configured as follows: the conveying and cleaning assembly includes a docking sleeve and a water collecting hood, a blocking gear is rotatably installed on the top of the docking sleeve through a bearing, a reciprocating screw is fixedly connected to the bottom of the blocking gear, a driving ring is matched with the outer periphery of the reciprocating screw, a limiting groove is provided on the top of the docking sleeve, a limiting column is slidably installed inside the limiting groove, a guide groove matched with the limiting column is provided on the outer periphery of the driving ring, a piston plate is fixedly connected to the bottom of the driving ring through a guide rod, a pressure ring is also sleeved and fixedly installed on the outside of the docking sleeve, the bottom end of the docking sleeve passes through the water collecting hood and extends to the bottom of the water collecting hood, and the bottom of the pressure ring contacts the top of the water collecting hood, and a plurality of first water guide holes are provided on the outer periphery of the docking sleeve and inside the water collecting hood; The outer circumference of the docking sleeve is provided with a reciprocating threaded portion, the outer circumference of the reciprocating threaded portion is sleeved with a cross cleaning frame used in conjunction with it, the top of the column is provided with a square blind hole adapted to the water collecting cover, the bottom of the square blind hole is provided with a stepped assembly hole, both sides of the column are provided with a slide groove connected to the square blind hole, the cross cleaning frame is slidably installed in the square blind hole and the two slide grooves, and a wiping sponge strip is fixedly installed on one side of the cross cleaning frame close to the two connecting plates; A docking hole adapted to the docking sleeve extension is provided on the top of the mounting top seat, a reinforcing plate is fixedly installed on the top of the mounting top seat, a fastening screw is threadedly installed through the surface of the reinforcing plate, an insert plate is rotatably installed on one end of the fastening screw through a bearing, and the bottom of the insert plate contacts the top of the docking sleeve extension; A plurality of drainage holes are provided at the bottom of the mounting top seat and between the two third fixing grooves, and a plurality of second water guide holes are provided at the extension portion of the docking sleeve and inside the mounting top seat; A plurality of water holes are provided on the top of the cross cleaning frame, and the water holes are arranged just below the drainage holes.
[0012] The present invention is further configured as follows: the water-drawing assembly includes a piston tube, the piston tube is fixedly installed between the top and the bottom of the inner cavity of the water storage tank, the two sides of the piston tube are respectively connected with a water-drawing pipe and a delivery pipe, the water-drawing pipe and the delivery pipe are both provided with a one-way valve, the one-way valve is used to control the liquid in the water storage tank to pass through the water-drawing pipe, the piston tube and the delivery pipe in one direction, and the top of the mounting base is provided with a mounting hole connected with the piston tube; The mounting hole is connected to the bottom of the stepped assembly hole, the piston plate is slidably mounted inside the piston tube, one side of the water collecting cover is connected to a plug-in tube, one end of the plug-in tube passes through the slide groove and extends to the inside of the delivery pipe.
[0013] In order to ensure that the water-drawing and fire-resistant glass module defogger functions are performed separately, the present invention is further configured as follows: the driving assembly includes a driving motor, the output end of the driving motor is fixedly connected to a rotating shaft through a coupling, the outer periphery of the rotating shaft is sleeved and fixedly installed with a first docking gear, the outer periphery of the rotating shaft is also sleeved with a second docking gear, the second docking gear is arranged below the first docking gear, the outer periphery of the rotating shaft is sleeved and fixedly installed with a first limiting ring and a second limiting ring, the first limiting ring and the second limiting ring are respectively in contact with the top and bottom of the second docking gear, an installation groove is provided at the bottom of the second docking gear, a check block is slidably installed inside the installation groove, an arc-shaped slope is provided on one side of the check block, a second spring is fixedly connected between the check block and the installation groove, and a cooperative plate used in conjunction with the check block is fixedly installed on the outer periphery of the second limiting ring; The driving motor is fixedly mounted on the top of the mounting top seat, the first docking gear is meshed with the blocking gear, the outer periphery of the docking sleeve is sleeved with a gear ring, and the gear ring is meshed with the second docking gear.
[0014] (III) Beneficial effects The present invention provides a detachable fireproof partition structure, which has the following beneficial effects: (1) The present invention provides convenient installation and adjustment for fixing the mounting base, the mounting top seat, the mounting bracket and a plurality of fire-resistant glass modules by setting a transfer tensioning component, and cooperates with the setting of the top blocking component to realize the fixation of the partition wall. While convenient for assembly and disassembly, the stability of the partition wall structure is ensured. Through the cooperation of the conveying and cleaning component, the water-drawing component and the driving component, not only can a water curtain landscape be created between the front and rear groups of fire-resistant glass modules to improve the ornamental value, but also the fireproof effect of the partition wall is improved. In addition, when water mist appears between the front and rear groups of fire-resistant glass modules, the water mist can be wiped off to ensure the light transmission effect of the partition wall.
[0015] (2) The present invention realizes the card slot limitation of the fire-resistant glass module through the cooperation of the first fixing groove, the second fixing groove and the third fixing groove, thereby ensuring the installation stability of the fire-resistant glass module and preventing the fire-resistant glass module from tipping over in a fire situation.
[0016] (3) The present invention provides convenient assembly conditions for the I-shaped blocks through the I-shaped assembly grooves, and ensures the installation stability of the I-shaped blocks through the arrangement of assembly threaded holes, fixing holes and hexagon socket bolts. With the cooperation of the embedded blocks and the threaded embedded grooves, convenient assembly of two adjacent I-shaped blocks can be achieved, providing convenient conditions for the splicing of partition walls. At the same time, with the cooperation of the embedded threaded grooves, fixing holes and hexagon socket bolts, reinforcement of the assembled I-shaped blocks is achieved, providing convenient stability guarantee for the splicing of partition walls. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the external structure of the present invention; Figure 2 It is a structural schematic diagram of the mounting base, mounting top seat and mounting bracket of the present invention; Figure 3 It is a structural schematic diagram of the transfer tensioning assembly of the present invention; Figure 4 It is a schematic diagram of the connection between the mounting base, the mounting top, the fire-resistant glass module, the conveying and cleaning assembly, the driving assembly and the column structure of the present invention; Figure 5 It is a schematic diagram of the connection between the fire-resistant glass module and the connecting plate structure of the present invention; Figure 6 It is a structural schematic diagram of the I-shaped different block and the I-shaped assembly groove of the present invention; Figure 7 It is a structural schematic diagram of the top plugging assembly of the present invention; Figure 8 It is a schematic diagram of the connection between the fixing frame, the assembly step groove, the filling pipe head and the second tooth plate structure of the present invention; Fig. 9 It is a structural schematic diagram of the first tooth plate, the pulling gear, the second tooth plate and the movable groove of the present invention; Fig.10 A schematic diagram of the connection between the top seat and the fixed frame structure of the present invention; Fig.11 For the present invention Fig.10 A magnified schematic diagram of the structure at center A; Fig.12 It is a structural schematic diagram of the conveying and cleaning assembly of the present invention; Fig.13 It is a schematic diagram of the connection of the installation base, the column, the conveying and cleaning component and the water drawing component structure of the present invention; Fig.14 It is a schematic diagram of the connection between the mounting base and the water-drawing assembly structure of the present invention; Fig.15 It is a schematic structural diagram of the water-drawing assembly, the water-collecting cover and the plug-in pipe of the present invention; Fig.16 It is a schematic diagram of the connection of the blocking gear, the reciprocating screw, the driving ring, the limiting column, the guide groove, the guide rod and the piston plate structure of the present invention; Fig.17 It is a schematic diagram of the connection of the docking sleeve, the reciprocating screw, the driving ring, the limit groove, the limit column and the guide groove structure of the present invention; Fig.18 A schematic diagram of the connection of the top seat, docking sleeve, plugging gear, gear ring, reinforcing plate, fastening screw, plug plate and drive assembly structure of the present invention; Fig.19 It is a schematic diagram of the structure of the driving assembly of the present invention; Fig. 20 It is a connection diagram of the rotating shaft, the second docking tooth, the first limiting ring, the second limiting ring, the mounting groove, the check block, the arc slope, the second spring and the cooperation plate structure of the present invention; Fig.21 A schematic diagram of the connection of the top base, fire-resistant glass module, fixed frame, column and connecting plate structure for installing the present invention; Fig. 22 A schematic diagram of the splicing of two partition wall structures in an embodiment of the present invention; Fig.23 It is a schematic diagram of the structure of two transition tensioning assemblies spliced together in an embodiment of the present invention.
[0018] In the figure, 1, installation base; 2, installation top seat; 3, installation bracket; 4, fire-resistant glass module; 5, transfer tensioning assembly; 6, top blocking assembly; 7, conveying and cleaning assembly; 8, water drawing assembly; 9, driving assembly; 10, fixing frame; 11, column; 12, connecting plate; 13, first fixing groove; 14, second fixing groove; 15, third fixing groove; 16, water storage tank; 17, threaded cylinder; 18, threaded rod; 19, I-shaped block; 20, I-shaped assembly groove; 21. Assembly step groove; 22. Inspection plate; 23. Filling pipe head; 24. Docking plate; 25. Fixing plate; 26. Docking column; 27. Embedded block; 28. Threaded embedded groove; 29. Assembly threaded hole; 30. Fixing hole; 31. Hexagon socket bolt; 32. Cover plate; 33. Assembly plate; 34. First tooth plate; 35. Pulling gear; 36. Second tooth plate; 37. Movable groove; 38. Through groove; 39. First spring; 40. Filling plate; 41. Docking sleeve ; 42, water collecting cover; 43, blocking gear; 44, reciprocating screw; 45, driving ring; 46, limiting groove; 47, limiting column; 48, guide groove; 49, guide rod; 50, piston plate; 51, pressure ring; 52, first water guide hole; 53, reciprocating threaded part; 54, cross cleaning frame; 55, square blind hole; 56, gear ring; 57, stepped assembly hole; 58, slide groove; 59, collaborative plate; 60, wiping sponge strip; 61, docking hole; 62, reinforcement plate; 63 , fastening screw; 64, plug plate; 65, drain hole; 66, second water guide hole; 67, water flow hole; 68, piston tube; 69, water drawing pipe; 70, delivery pipe; 71, one-way valve; 72, mounting hole; 73, plug-in tube; 74, drive motor; 75, rotating shaft; 76, first docking gear; 77, second docking gear; 78, first limit ring; 79, second limit ring; 80, mounting groove; 81, check block; 82, arc slope; 83, second spring. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the accompanying drawings in the embodiments of the present invention.
[0020] See also Figure 1-23 , the embodiment of the present invention provides the following technical solutions: Example
[0021] A detachable fireproof partition structure includes a mounting base 1, a mounting top seat 2, a mounting bracket 3, and a plurality of fire-resistant glass modules 4, wherein a plurality of adhesive strips are bonded and fixed to the bottom of the mounting base 1 to improve the sealing effect, the mounting bracket 3 is arranged between the mounting base 1 and the mounting top seat 2, and the plurality of fire-resistant glass modules 4 are embedded in the mounting bracket 3, the mounting base 1 and the mounting top seat 2 are fixed by a transition tensioning assembly 5, and a top blocking assembly 6 is also arranged on the top of the mounting top seat 2, and the top blocking assembly 6 and the transition tensioning assembly 5 are used in combination.
[0022] As a preferred solution, the mounting bracket 3 is used to divide a plurality of fire-resistant glass modules 4 into two front and rear groups. Specifically, the mounting bracket 3 includes two fixed frames 10 and columns 11. Two connecting plates 12 are fixedly connected between the columns 11 and the two fixed frames 10. The top and bottom of the connecting plate 12 are provided with a first fixing groove 13. The front and rear sides of the opposite side of the fixed frame 10 and the column 11 are provided with a second fixing groove 14 connected to the first fixing groove 13. The top and bottom of the two fixed frames 10 and the column 11 are respectively in contact with the opposite side of the mounting base 1 and the mounting top seat 2. The front and rear sides of the opposite side of the mounting top seat 2 and the mounting base 1 are provided with a third fixing groove 15 connected to the two second fixing grooves 14. The first fixing groove 13, the second fixing groove 14 and the third fixing groove 15 are all used in conjunction with the fire-resistant glass module 4 to perform a card slot-type limitation on the fire-resistant glass module 4 to avoid the fire-resistant glass module 4 from tipping over and falling in the event of a fire.
[0023] Further explanation: in order to ensure the installation sealing effect of the fire-resistant glass module 4, the fire-resistant glass module 4 is made of double-layer fire-resistant glass and wrapped with a rubber sealing sleeve at the edge to ensure the sealing effect of subsequent installation. As a conventional design, it will not be repeated here.
[0024] As a preferred solution, in order to ensure that the fire-resistant glass module 4 can stably contact the first fixing groove 13, the second fixing groove 14 and the third fixing groove 15, the adapter tensioning assembly 5 includes a threaded barrel 17 and two threaded rods 18, and the threaded barrel 17 and the two threaded rods 18 are both arranged inside the fixed frame 10. In order to facilitate the rotation and adjustment of the threaded barrel 17, an assembly step groove 21 is opened on the front of the fixed frame 10, and an inspection plate 22 is fixedly installed inside the assembly step groove 21 by bolts. The opposite ends of the two threaded rods 18 respectively pass through the two ends of the threaded barrel 17 and are threadedly matched with the threaded barrel 17, and the threads opened on the surfaces of the two threaded rods 18 are arranged in opposite directions. The other ends of the two threaded rods 18 are fixedly connected with an I-shaped block 19, and I-shaped assembly grooves 20 are opened on both sides of the mounting base 1 and the mounting top seat 2, and the I-shaped block 19 is used in conjunction with the I-shaped assembly groove 20.
[0025] As a preferred solution, in order to ensure the stability of the connection between the I-shaped block 19 and the I-shaped assembly groove 20, the I-shaped block 19 includes a docking plate 24 and a fixing plate 25, the docking plate 24 and the fixing plate 25 are fixed by a docking column 26, the fixing plate 25 is fixedly connected to the other end of the threaded rod 18 on one side away from the docking plate 24, and two embedded blocks 27 are fixedly connected to one side of the docking plate 24, and a threaded embedded groove 28 adapted to the embedded block 27 is provided on the other side of the docking plate 24, and two assembly threaded holes 29 are also provided on the top of the docking plate 24, and the top and The bottom of the mounting top seat 2 is provided with two fixing holes 30 connected with the I-shaped assembly groove 20, and the inside of the two fixing holes 30 is inserted with hexagon socket bolts 31, and the hexagon socket bolts 31 are used in conjunction with the threaded embedding groove 28 and the assembly threaded hole 29. Specifically, when the I-shaped block 19 is completely in the I-shaped assembly groove 20, the hexagon socket bolts 31 are used in conjunction with the assembly threaded hole 29, and when the I-shaped block 19 is not completely in the I-shaped assembly groove 20, the hexagon socket bolts 31 are used in conjunction with the threaded embedding groove 28, which provides convenient and stable guarantee for the splicing of the partition wall.
[0026] As a preferred solution, in order to achieve stable adjustment of the distance between the top of the partition wall and the top of the building's interior room, the top blocking assembly 6 includes two cover plates 32, which are slidably mounted on the front and rear sides of the mounting top seat 2, respectively, and an assembly plate 33 is fixedly mounted between the two cover plates 32. The top of the assembly plate 33 is fixedly connected to a filling plate 40 through a plurality of first springs 39. A rubber portion is provided on the top of the filling plate 40 to prevent the filling plate 40 from directly contacting the top of the building's interior room and causing damage to the building decoration. The filling plate 40 is slidably mounted between the two cover plates 32, and the bottom of the assembly plate 33 is fixedly mounted on the top of the building's interior room. There are two first tooth plates 34 fixedly connected, and a pulling gear 35 is rotatably installed inside the I-shaped assembly groove 20 in the mounting top seat 2. Second tooth plates 36 are inlaid and fixed on the top of the inner cavity of the two fixed frames 10. The first tooth plates 34 and the second tooth plates 36 are both arranged on one side of the pulling gear 35, and are both meshed with the pulling gear 35. A movable groove 37 adapted to the first tooth plate 34 is provided on the top of the second tooth plate 36, and a through groove 38 is also provided inside the I-shaped assembly groove 20 in the mounting top seat 2, and the through groove 38 is used in conjunction with the first tooth plate 34 and the second tooth plate 36.
[0027] In this embodiment, a partition structure composed of double-layer fire-resistant glass modules is constructed, which has excellent fire-proof performance while ensuring the lighting effect, and also has the advantage of convenient disassembly and assembly and can be reused. Example
[0028] This embodiment is an improvement on the previous embodiment. It is a detachable fireproof partition structure, which also includes a conveying and cleaning component 7 arranged in the mounting bracket 3, a water-drawing component 8 used in conjunction with the conveying and cleaning component 7 is arranged inside the mounting base 1, and a driving component 9 is arranged on the top of the mounting top seat 2, and the driving component 9 is used in conjunction with the conveying and cleaning component 7.
[0029] As a preferred solution, in order to improve the ornamental effect of the partition wall while improving the fire resistance, a water storage tank 16 connected to the third fixed groove 15 is opened on the top of the mounting base 1, and the water storage tank 16 is arranged between the two third fixed grooves 15. The interior of a fixed frame 10 is also connected to a filling pipe head 23, which is a pipe head with a threaded sleeve on one end and a sealing cover. The filling pipe head 23 is arranged between the two second fixed grooves 14, and is used to add liquid to the water storage tank 16. The liquid includes but is not limited to water and glass liquid.
[0030] As a preferred solution, in order to facilitate the upward transportation of the liquid in the water storage tank 16 to create a water curtain landscape, the transport and cleaning assembly 7 includes a docking sleeve 41 and a water collecting cover 42. The top of the docking sleeve 41 is rotatably mounted with a blocking gear 43 through a bearing, and the bottom of the blocking gear 43 is fixedly connected with a reciprocating screw 44. The outer periphery of the reciprocating screw 44 is sleeved with a driving ring 45. A limiting groove 46 is provided on the top of the docking sleeve 41, and a limiting column 47 is slidably mounted inside the limiting groove 46. The outer periphery of the driving ring 45 is provided with a guide groove 48 adapted to the limit column 47. The bottom of the driving ring 45 is fixedly connected to the piston plate 50 through the guide rod 49. The outer part of the docking sleeve 41 is also sleeved and fixedly installed with a pressure ring 51. The bottom end of the docking sleeve 41 passes through the water collecting cover 42 and extends to the bottom of the water collecting cover 42. The bottom of the pressure ring 51 contacts the top of the water collecting cover 42. The outer periphery of the docking sleeve 41 and the inside of the water collecting cover 42 are provided with a plurality of first water guide holes. 52, a square blind hole 55 matched with the water collecting cover 42 is provided on the top of the column 11, and a stepped assembly hole 57 is provided at the bottom of the square blind hole 55. The water-drawing component 8 includes a piston tube 68, which is fixedly installed between the top and the bottom of the inner cavity of the water storage tank 16. The two sides of the piston tube 68 are respectively connected with a water-drawing pipe 69 and a delivery pipe 70. Both the water-drawing pipe 69 and the delivery pipe 70 are provided with a one-way valve 71. The one-way valve 71 is used to control the liquid in the water storage tank 16 to pass through the water-drawing pipe 69, the piston tube 68 and the delivery pipe 70 in one direction. A mounting hole 72 connected with the piston tube 68 is provided on the top of the mounting base 1, and the mounting hole 72 is connected with the bottom of the stepped assembly hole 57. The piston plate 50 is slidably installed inside the piston tube 68. A plug-in pipe 73 is connected to one side of the water collecting cover 42, and one end of the plug-in pipe 73 passes through the slide groove 58 and extends to the inside of the delivery pipe 70. In this way, the effect of conveying liquid upward can be achieved by controlling the up and down movement of the piston plate 50.
[0031] As a preferred solution, a docking hole 61 compatible with the extended part of the docking sleeve 41 is opened at the top of the mounting top seat 2. In order to ensure the installation stability of the docking sleeve 41, a reinforcing plate 62 is fixedly installed on the top of the mounting top seat 2. A fastening screw 63 is penetrated and threadedly installed on the surface of the reinforcing plate 62. One end of the fastening screw 63 is rotatably installed with an insert plate 64 through a bearing. The bottom of the insert plate 64 is in contact with the top of the extended part of the docking sleeve 41. A plurality of second water guide holes 66 are opened in the extended part of the docking sleeve 41 and located inside the mounting top seat 2. A plurality of drainage holes 65 are opened at the bottom of the mounting top seat 2 and located between the two third fixed grooves 15. In this way, when the liquid is transported to the second water guide hole 66, it can flow to the inside of the mounting top seat 2 and flow out from the drainage hole 65 to create a water curtain landscape.
[0032] As a preferred solution, in order to realize the reciprocating lifting and lowering of the piston plate 50, the driving assembly 9 includes a driving motor 74. The driving motor 74 is a servo motor, which can be reversed, electrically connected to an external power supply, and controlled by a control switch. The output end of the driving motor 74 is fixedly connected to a rotating shaft 75 through a coupling, and a first docking gear 76 is sleeved and fixedly installed on the outer periphery of the rotating shaft 75. The driving motor 74 is fixedly installed on the top of the mounting base 2, and the first docking gear 76 is meshed with the sealing gear 43.
[0033] Further explanation: in order to facilitate installation, a movable cavity is reserved in the middle of the assembly plate 33 to avoid being affected by the limiting effect of the driving assembly 9 during assembly.
[0034] As a preferred solution, in order to prevent the water mist generated by the water curtain landscape from affecting the lighting of the partition wall, a second docking gear 77 is also sleeved on the outer periphery of the rotating shaft 75, and a gear ring 56 is sleeved on the outer periphery of the docking sleeve 41, which meshes with the second docking gear 77. The second docking gear 77 is arranged below the first docking gear 76, and a first limiting ring 78 and a second limiting ring 79 are sleeved and fixedly installed on the outer periphery of the rotating shaft 75. The first limiting ring 78 and the second limiting ring 79 are in contact with the top and bottom of the second docking gear 77 respectively, and a mounting groove 80 is provided at the bottom of the second docking gear 77. A check block 81 is slidably installed inside the mounting groove 80, and an arc-shaped slope 82 is provided on one side of the check block 81. A second spring 83 is fixedly connected between the check block 81 and the mounting groove 80, and a cooperative spring 83 used in conjunction with the check block 81 is fixedly installed on the outer periphery of the second limiting ring 79 Working plate 59, the outer periphery of the docking sleeve 41 is provided with a reciprocating threaded portion 53, and the outer periphery of the reciprocating threaded portion 53 is sleeved with a cross cleaning frame 54 used in conjunction with it, wherein the reciprocating threaded portion 53 is a texture, which is the same as the texture on the surface of the reciprocating screw structure, and is used to drive the cross cleaning frame 54 to reciprocate and move up and down when the docking sleeve 41 rotates. A plurality of water holes 67 are provided on the top of the cross cleaning frame 54, and the water holes 67 are arranged directly below the drain hole 65. Both sides of the column 11 are provided with slide grooves 58 connected to the square blind hole 55. The cross cleaning frame 54 is slidably installed in the square blind hole 55 and the two slide grooves 58. A wiping sponge strip 60 is fixedly installed on one side of the cross cleaning frame 54 close to the two connecting plates 12, so that when the drive motor 74 rotates clockwise, the wiping sponge strip 60 can be driven to reciprocate and move up and down to wipe the water mist.
[0035] The advantage of the second embodiment over the first embodiment is that it can not only create a water curtain landscape to improve the viewing experience, but also improve the fire prevention effect, and by controlling the clockwise and counterclockwise rotation of the drive motor 74, the water curtain landscape creation and the water mist cleaning function on the surface of the fire-resistant glass module 4 can be switched.
[0036] A method for using a detachable fireproof partition structure comprises the following steps: Step 1: After the two first tooth plates 34 are meshed with the pulling gears 35 and inserted into the through grooves 38, they are placed together with the mounting base 1 on a horizontal ground, and a plurality of fire-resistant glass modules 4 are inserted into the first fixing grooves 13 and the second fixing grooves 14 of the mounting bracket 3, so that the fire-resistant glass modules 4 are aligned with the mounting base 1 and the third fixing grooves 15 of the mounting top seat 2; Step 2: When assembling a separate partition wall, insert the embedded block 27 of the I-shaped block 19 into the I-shaped assembly groove 20 first, and then insert the two I-shaped blocks 19 into the two I-shaped assembly grooves 20 on the same side of the mounting base 1 and the mounting top seat 2. Rotate the threaded cylinder 17, and the threaded cylinder 17 brings the two I-shaped blocks 19 closer to each other through the two threaded rods 18. The two I-shaped blocks 19 respectively pull the mounting top seat 2 and the mounting base 1 closer to the mounting bracket 3, and pre-fix the mounting top seat 2, the mounting bracket 3 and the mounting base 1. Step 3, erect the pre-fixed mounting top seat 2, mounting bracket 3 and mounting base 1 at the mounting point, continue to rotate the threaded cylinder 17, as the two I-shaped blocks 19 continue to approach each other, the mounting top seat 2 drives the pulling gear 35 to move downward, the pulling gear 35 rotates through the second tooth plate 36, the rotating pulling gear 35 drives the first tooth plate 34 to move upward, the first tooth plate 34 drives the assembly plate 33 to move upward, the assembly plate 33 drives the two cover plates 32 to move upward, during the process, the assembly plate 33 drives the first spring 39 to move the filling plate 40 upward, adjust the distance between the filling plate 40 and the top of the building's inner room, the first spring 39 is subjected to a certain pressure, and when the top of the cover plate 32 is close to and about to contact the top of the building's inner room, the installation stability of the partition wall can be guaranteed; Step 4: During the upward movement of the filling plate 40 in step 3, the top seat 2 is installed close to and in contact with the top of the fixing frame 10 and the column 11, so that each fire-resistant glass module 4 can be in close contact with the first fixing groove 13, the two second fixing grooves 14 and the third fixing groove 15, and the hexagon socket bolt 31 is inserted into the fixing hole 30 and tightened in the assembly threaded hole 29 to complete the fixed assembly of the partition structure; Step 5, after the liquid is injected into the water storage tank 16 through the filling pipe head 23, the drive motor 74 is started and controlled to rotate counterclockwise. The drive motor 74 drives the rotating shaft 75 to rotate the first docking gear 76. The first docking gear 76 drives the blocking gear 43 to rotate the reciprocating screw 44. The reciprocating screw 44 drives the drive ring 45 to move up and down along the limit column 47. During the process, the drive ring 45 drives the piston plate 50 to move through the guide rod 49. Under the flow limit of the one-way valve 71, when the piston plate 50 moves downward, the piston plate 50 moves downward. When the piston plate 50 moves, the air in the piston tube 68 is squeezed into the delivery pipe 70. When the piston plate 50 moves upward, the liquid in the water storage tank 16 is pumped into the piston tube 68 through the water drawing pipe 69. As the piston plate 50 reciprocates, the liquid passes through the delivery pipe 70, the plug pipe 73, the water collecting cover 42 and the first water guide hole 52 in sequence and enters the docking sleeve 41. The liquid then passes through the second water guide hole 66 and enters the interior of the mounting top seat 2. The liquid then flows out through the drain hole 65. The liquid flows out through the water hole 67 and drips into the water storage tank 16. When the driving motor 74 rotates counterclockwise, the second limiting ring 79 driven by the rotating shaft 75 causes the cooperation plate 59 to rotate. With the cooperation of the gear ring 56, the docking sleeve 41, the reciprocating threaded portion 53 and the cross cleaning frame 54, the second docking gear 77 is temporarily limited. At this time, the second docking gear 77 does not rotate. When the cooperation plate 59 rotates to the arc slope 82 of the check block 81, the cooperation plate 59 presses the check block 81, so that the check block 81 presses the second spring 83 and sinks into the installation groove 80. At this time, the second docking gear 77 still does not rotate. Step 6: When water mist appears on the surface of the fire-resistant glass module 4 close to the liquid, the driving motor 74 is controlled to rotate clockwise, and the second limit ring 79 driven by the rotating shaft 75 rotates the cooperation plate 59, and the cooperation plate 59 rotates to the check block 81, pushing the check block 81 to rotate the second docking gear 77, and the second docking gear 77 drives the gear ring 56 to rotate the docking sleeve 41, and the docking sleeve 41 drives the reciprocating threaded portion 53 to rotate, so that the cross cleaning frame 54 reciprocates up and down. During the process, the cross cleaning frame 54 drives the wiping sponge bar 60 to wipe the water mist on the surface of the fire-resistant glass module 4, and when the wiping sponge bar 60 passes the connecting plate 12, the connecting plate 12 squeezes the water from the wiping sponge bar 60; During the rotation of the docking sleeve 41, the docking sleeve 41 drives the limit column 47 to rotate. At the same time, the rotating shaft 75 also drives the blocking gear 43 to rotate through the first docking gear 76. The blocking gear 43 drives the reciprocating screw 44 to rotate synchronously with the docking sleeve 41. At this time, the driving ring 45 no longer reciprocates up and down. Step 7. When a fire occurs, a group of fire-resistant glass modules 4 on the side corresponding to the fire is first subjected to high temperature. After the fire-resistant glass modules 4 of this group are damaged, the liquid flowing out in step 5 can partially cool the flame, and then the fire-resistant glass modules 4 of the other group continue to be subjected to high temperature until the fire-resistant glass modules 4 of this group are damaged.
[0037] It should be noted that when splicing multiple partition walls, it is necessary to splice two adjacent and contacting I-shaped blocks 19 in advance until they are as shown in the attached figure. Fig.23 In the state shown, the embedded block 27 of the I-shaped different block 19 set on the left is placed in the threaded embedded groove 28 of the I-shaped different block 19 set on the right, so that after the I-shaped different block 19 set on the left is inserted into the corresponding I-shaped assembly groove 20, the hexagon socket bolt 31 inserted through the fixing hole 30 will be threadedly matched with the threaded embedded groove 28 on it to limit it. The state after the two partition walls are spliced is as shown in the attached figure. Fig. 22 shown.
[0038] It should also be noted that the mounting base 1, the mounting top seat 2, the mounting bracket 3, the transition tensioning assembly 5 and the top plugging assembly 6 of the present invention are all made of steel material.
Claims
1. A detachable fireproof partition structure, comprising a mounting base (1), a mounting top base (2), a mounting bracket (3), and a plurality of fire-resistant glass modules (4), wherein the mounting bracket (3) is arranged between the mounting base (1) and the mounting top base (2), and the plurality of fire-resistant glass modules (4) are embedded in the mounting bracket (3), characterized in that: The mounting base (1) and the mounting top seat (2) are fixed via a transition tensioning assembly (5), and a top sealing assembly (6) is also provided on the top of the mounting top seat (2), and the top sealing assembly (6) and the transition tensioning assembly (5) are used in coordination; The mounting bracket (3) is used to divide a plurality of fire-resistant glass modules (4) into two groups, front and rear, and a conveying and cleaning component (7) is arranged in the mounting bracket (3); a water-drawing component (8) used in conjunction with the conveying and cleaning component (7) is arranged inside the mounting base (1); a driving component (9) is arranged on the top of the mounting top seat (2); and the driving component (9) is used in conjunction with the conveying and cleaning component (7).
2. A detachable fireproof partition structure according to claim 1, characterized in that: The mounting bracket (3) comprises two fixing frames (10) and a column (11), two connecting plates (12) are fixedly connected between the column (11) and the two fixing frames (10), the top and bottom of the connecting plates (12) are both provided with a first fixing groove (13), and the front and rear sides of the opposite side of the fixing frame (10) and the column (11) are both provided with a second fixing groove (14) connected to the first fixing groove (13); The top and bottom of the two fixing frames (10) and the column (11) are respectively in contact with the side opposite to the mounting base (1) and the mounting top seat (2), and the front and rear sides of the side opposite to the mounting top seat (2) and the mounting base (1) are provided with a third fixing groove (15) connected to the two second fixing grooves (14); A water storage tank (16) communicating with the third fixing tank (15) is provided on the top of the mounting base (1), and the water storage tank (16) is arranged between the two third fixing tanks (15); The first fixing groove (13), the second fixing groove (14) and the third fixing groove (15) are all used in conjunction with the fire-resistant glass module (4).
3. A detachable fireproof partition structure according to claim 2, characterized in that: The transition tensioning assembly (5) comprises a threaded barrel (17) and two threaded rods (18), the opposite ends of the two threaded rods (18) respectively pass through the two ends of the threaded barrel (17) and are threadedly matched with the threaded barrel (17), and the threads provided on the surfaces of the two threaded rods (18) are arranged opposite to each other, and the other ends of the two threaded rods (18) are fixedly connected to a work-shaped different block (19); Both sides of the installation base (1) and the installation top seat (2) are provided with an I-shaped assembly groove (20), and the I-shaped different block (19) is used in conjunction with the I-shaped assembly groove (20); The threaded barrel (17) and the two threaded rods (18) are both arranged inside the fixed frame (10), and a mounting step groove (21) is provided on the front side of the fixed frame (10), an inspection plate (22) is fixedly installed inside the mounting step groove (21) by means of bolts, and a filling pipe head (23) is also connected to the inside of one of the fixed frames (10).
4. A detachable fireproof partition structure according to claim 3, characterized in that: The I-shaped block (19) comprises a docking plate (24) and a fixing plate (25), wherein the docking plate (24) and the fixing plate (25) are fixed via a docking column (26), one side of the docking plate (24) is fixedly connected to two embedding blocks (27), the other side of the docking plate (24) is provided with a threaded embedding groove (28) adapted to the embedding block (27), and the top of the docking plate (24) is also provided with two assembly threaded holes (29); The side of the fixing plate (25) away from the docking plate (24) is fixedly connected to the other end of the threaded rod (18); The top of the mounting base (1) and the bottom of the mounting top seat (2) are both provided with two fixing holes (30) connected to the I-shaped assembly groove (20), and the insides of the two fixing holes (30) are both inserted with hexagon socket bolts (31), and the hexagon socket bolts (31) are used in conjunction with the threaded embedding groove (28) and the assembly threaded hole (29).
5. A detachable fireproof partition structure according to claim 4, characterized in that: The top blocking assembly (6) comprises two cover plates (32), an assembly plate (33) is fixedly installed between the two cover plates (32), two first tooth plates (34) are fixedly connected to the bottom of the assembly plate (33), a pulling gear (35) is rotatably installed inside the I-shaped assembly groove (20) in the mounting top seat (2) through a vertical plate, and second tooth plates (36) are embedded and fixed at the top of the inner cavity of the two fixed frames (10), the first tooth plate (34) and the second tooth plate (36) are both arranged on one side of the pulling gear (35) and are meshed with the pulling gear (35), and a movable groove (37) adapted to the first tooth plate (34) is opened on the top of the second tooth plate (36); A through groove (38) is also provided inside the I-shaped assembly groove (20) in the mounting top seat (2), and the through groove (38) is used in conjunction with the first tooth plate (34) and the second tooth plate (36); The top of the assembly plate (33) is fixedly connected to a filling plate (40) via a plurality of first springs (39), and the filling plate (40) is slidably mounted between the two cover plates (32); The two cover plates (32) are respectively slidably mounted on the front and rear sides of the mounting top seat (2).
6. A detachable fireproof partition structure according to claim 5, characterized in that: The conveying and cleaning assembly (7) comprises a docking sleeve (41) and a water collecting cover (42); a blocking gear (43) is rotatably mounted on the top of the docking sleeve (41) via a bearing; a reciprocating screw (44) is fixedly connected to the bottom of the blocking gear (43); a driving ring (45) is mounted on the outer periphery of the reciprocating screw (44); a limiting groove (46) is provided on the top of the docking sleeve (41); a limiting column (47) is slidably mounted inside the limiting groove (46); and a limiting column (47) is provided on the outer periphery of the driving ring (45) for engagement with the limiting column. (47) a guide groove (48) adapted thereto, the bottom of the driving ring (45) is fixedly connected to a piston plate (50) via a guide rod (49), a pressure ring (51) is sleeved and fixedly mounted on the outside of the docking sleeve (41), the bottom end of the docking sleeve (41) penetrates the water collecting cover (42) and extends to the bottom of the water collecting cover (42), and the bottom of the pressure ring (51) contacts the top of the water collecting cover (42), and a plurality of first water guide holes (52) are opened on the outer periphery of the docking sleeve (41) and located inside the water collecting cover (42); The outer circumference of the docking sleeve (41) is provided with a reciprocating threaded portion (53), and the outer circumference of the reciprocating threaded portion (53) is sleeved with a cross cleaning frame (54) for use with the docking sleeve (41). The top of the column (11) is provided with a square blind hole (55) adapted to the water collecting cover (42), and the bottom of the square blind hole (55) is provided with a stepped assembly hole (57). Both sides of the column (11) are provided with a slide groove (58) connected to the square blind hole (55), and the cross cleaning frame (54) is slidably installed in the square blind hole (55) and the two slide grooves (58). A wiping sponge strip (60) is fixedly installed on one side of the cross cleaning frame (54) close to the two connecting plates (12); The top of the mounting top seat (2) is provided with a docking hole (61) adapted to the extended portion of the docking sleeve (41); a reinforcing plate (62) is fixedly mounted on the top of the mounting top seat (2); a fastening screw (63) is threadedly mounted through the surface of the reinforcing plate (62); an insert plate (64) is rotatably mounted on one end of the fastening screw (63) via a bearing; the bottom of the insert plate (64) is in contact with the top of the extended portion of the docking sleeve (41); A plurality of drainage holes (65) are provided at the bottom of the mounting top seat (2) and located between the two third fixing grooves (15); a plurality of second water guide holes (66) are provided at the extension portion of the docking sleeve (41) and located inside the mounting top seat (2); A plurality of water holes (67) are provided on the top of the cross cleaning frame (54), and the water holes (67) are arranged directly below the drainage holes (65).
7. A detachable fireproof partition structure according to claim 6, characterized in that: The water-drawing assembly (8) comprises a piston tube (68), wherein the piston tube (68) is fixedly mounted between the top and the bottom of the inner cavity of the water storage tank (16), and the two sides of the piston tube (68) are respectively connected to a water-drawing pipe (69) and a delivery pipe (70), and both the water-drawing pipe (69) and the delivery pipe (70) are provided with a one-way valve (71), and the one-way valve (71) is used to control the liquid in the water storage tank (16) to pass through the water-drawing pipe (69), the piston tube (68) and the delivery pipe (70) in one direction, and the top of the mounting base (1) is provided with a mounting hole (72) connected to the piston tube (68); The mounting hole (72) is connected to the bottom of the stepped assembly hole (57); the piston plate (50) is slidably mounted inside the piston tube (68); one side of the water collecting cover (42) is connected to a plug-in tube (73); one end of the plug-in tube (73) passes through the slide groove (58) and extends to the inside of the delivery tube (70).
8. A detachable fireproof partition structure according to claim 7, characterized in that: The drive assembly (9) comprises a drive motor (74), the output end of the drive motor (74) being fixedly connected to a rotating shaft (75) via a coupling, a first docking gear (76) being sleeved and fixedly mounted on the outer circumference of the rotating shaft (75), a second docking gear (77) being sleeved on the outer circumference of the rotating shaft (75), the second docking gear (77) being arranged below the first docking gear (76), a first limiting ring (78) and a second limiting ring (79) being sleeved and fixedly mounted on the outer circumference of the rotating shaft (75), the first limiting ring (78) and the ... 78) and a second limiting ring (79) are in contact with the top and bottom of the second docking gear (77) respectively; a mounting groove (80) is provided at the bottom of the second docking gear (77); a check block (81) is slidably mounted inside the mounting groove (80); a curved slope (82) is provided on one side of the check block (81); a second spring (83) is fixedly connected between the check block (81) and the mounting groove (80); and a cooperation plate (59) used in conjunction with the check block (81) is fixedly mounted on the outer periphery of the second limiting ring (79); The driving motor (74) is fixedly mounted on the top of the mounting top seat (2); the first docking gear (76) is meshed with the blocking gear (43); a gear ring (56) is sleeved on the outer periphery of the docking sleeve (41); and the gear ring (56) is meshed with the second docking gear (77).
9. A detachable fireproof partition structure according to claim 8, characterized in that: The method for using the fireproof partition structure specifically comprises the following steps: Step 1: After the two first tooth plates (34) are meshed with the pulling gears (35) and inserted into the through grooves (38), they are placed together with the mounting base (1) on a horizontal ground, and a plurality of fire-resistant glass modules (4) are inserted into the first fixing grooves (13) and the second fixing grooves (14) of the mounting bracket (3), so that the fire-resistant glass modules (4) are aligned with the third fixing grooves (15) of the mounting base (1) and the mounting top seat (2); Step 2: insert the two I-shaped blocks (19) into the two I-shaped assembly grooves (20) on the same side of the mounting base (1) and the mounting top seat (2), respectively, rotate the threaded cylinder (17), and the threaded cylinder (17) brings the two I-shaped blocks (19) closer to each other through the two threaded rods (18), and the two I-shaped blocks (19) respectively pull the mounting top seat (2) and the mounting base (1) closer to the mounting bracket (3), so as to pre-fix the mounting top seat (2), the mounting bracket (3) and the mounting base (1); Step 3, erect the pre-fixed mounting top seat (2), mounting bracket (3) and mounting base (1) at the mounting point, continue to rotate the threaded cylinder (17), as the two work-shaped blocks (19) continue to approach each other, the mounting top seat (2) drives the pulling gear (35) to move downward, the pulling gear (35) rotates through the second tooth plate (36), the rotating pulling gear (35) drives the first tooth plate (34) to move upward, the first tooth plate (34) drives the assembly plate (33) to move upward, the assembly plate (33) drives the two cover plates (32) to move upward, during the process, the assembly plate (33) drives the first spring (39) to move the filling plate (40) upward, and the distance between the filling plate (40) and the top of the building interior is adjusted; Step 4: During the upward movement of the filling plate (40) in step 3, the top seat (2) is installed close to and in contact with the top of the fixing frame (10) and the column (11), so that each fire-resistant glass module (4) can be in close contact with the first fixing groove (13), the two second fixing grooves (14) and the third fixing groove (15), thereby completing the fixed assembly of the partition structure; Step 5: After the liquid is injected into the water storage tank (16) through the filling pipe head (23), the driving motor (74) is started and controlled to rotate counterclockwise. The driving motor (74) drives the rotating shaft (75) to rotate the first docking gear (76). The first docking gear (76) drives the blocking gear (43) to rotate the reciprocating screw (44). The reciprocating screw (44) drives the driving ring (45) to move up and down along the limiting column (47). During the process, the driving ring (45) drives the piston plate (50) to move through the guide rod (49). Under the flow direction limit of the one-way valve (71), when the piston plate (50) moves downward, the piston plate (50) moves downward. When the piston plate (50) moves, the air in the piston tube (68) is squeezed into the delivery tube (70). When the piston plate (50) moves upward, the liquid in the water storage tank (16) is pumped into the piston tube (68) through the water drawing tube (69). As the piston plate (50) reciprocates and rises, the liquid passes through the delivery tube (70), the plug tube (73), the water collecting cover (42) and the first water guide hole (52) in sequence and enters the docking sleeve (41). The liquid then passes through the second water guide hole (66) and enters the interior of the mounting top seat (2). The liquid then flows out through the drainage hole (65). The liquid flows out through the water passing hole (67) and drips into the water storage tank (16). When the driving motor (74) rotates counterclockwise, the second limiting ring (79) driven by the rotating shaft (75) causes the cooperation plate (59) to rotate. When the cooperation plate (59) rotates to the arc slope (82) of the check block (81), the cooperation plate (59) presses the check block (81), causing the check block (81) to press the second spring (83) and sink into the installation groove (80). Step 6: When water mist appears on the surface of the fire-resistant glass module (4) close to the liquid, the driving motor (74) is controlled to rotate clockwise, and the second limit ring (79) driven by the rotating shaft (75) causes the cooperation plate (59) to rotate. The cooperation plate (59) rotates to the check block (81), and the check block (81) is pushed to cause the second docking gear (77) to rotate. The second docking gear (77) drives the gear ring (56) to rotate the docking sleeve (41), and the docking sleeve (41) drives the reciprocating threaded portion (53) to rotate, so that the cross cleaning frame (54) moves up and down reciprocatingly. During the process, the cross cleaning frame (54) drives the wiping sponge bar (60) to wipe the water mist on the surface of the fire-resistant glass module (4), and when the wiping sponge bar (60) passes the connecting plate (12), the connecting plate (12) squeezes the water from the wiping sponge bar (60); During the rotation of the docking sleeve (41), the docking sleeve (41) drives the limiting column (47) to rotate. At the same time, the rotating shaft (75) also drives the blocking gear (43) to rotate via the first docking gear (76). The blocking gear (43) drives the reciprocating screw (44) to rotate synchronously with the docking sleeve (41). At this time, the driving ring (45) no longer reciprocates up and down. Step 7: When a fire occurs, a group of fire-resistant glass modules (4) on the side corresponding to the fire is first subjected to high temperature. After the fire-resistant glass modules (4) of this group are damaged, the liquid flowing out in step 5 can partially cool the flame, and then the fire-resistant glass modules (4) of the other group continue to be subjected to high temperature until the fire-resistant glass modules (4) of this group are damaged.
10. A detachable fireproof partition structure according to claim 9, characterized in that: In the step 2, when the two I-shaped blocks (19) are respectively inserted into the two I-shaped assembly grooves (20) on the same side of the mounting base (1) and the mounting top seat (2), the embedded block (27) of the I-shaped block (19) is first inserted into the I-shaped assembly groove (20); When the partition structure is fixedly assembled in step 4, the hexagon socket bolt (31) is inserted into the fixing hole (30) and tightened in the assembly threaded hole (29).
Citation Information
Patent Citations
Fireproof sound insulation partition wall
CN212104679U
Assembly type indoor glass partition wall facilitating water mist wiping
CN112411809A
Non-heat-insulation fireproof glass wall
CN116201267A
Fabricated indoor glass partition wall fixing device with protection mechanism
CN213682677U
Fireproof aluminum alloy building external window
CN217813208U