Thermal insulation fireproof wall construction device and construction method
By using construction devices containing cleaning units and bonding units in the insulation firewall construction, the problems of low construction efficiency, easy insulation layer falls off and major safety hazards are solved, and more efficient, safer and more fire-resistant construction results are achieved.
Patent Information
- Application Number
- CN202510385842.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-29
- Publication Date
- 2025-05-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The prior art has problems such as low construction efficiency, easy insulation layer falls off, insufficient fire resistance and major safety hazards for staff in the construction of insulation firewalls.
A thermally insulated firewall construction device including a main body box, a cleaning unit and a bonding unit is provided. The device uses a cleaning set to clean up wall dust, evenly apply adhesive to the components and quickly paste the insulation board to ensure adhesion effect and safety.
It improves construction efficiency, enhances the adhesion strength between the insulation board and the wall, reduces the risk of the insulation board falling off, reduces the safety hazards of the staff, and improves the fire resistance.
Smart Images

Figure CN120006971A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of building construction, and in particular to a thermal insulation fire-resistant wall construction device and a construction method. Background Art
[0002] Thermal insulation fire-resistant wall is a building wall structure that combines thermal insulation and fire resistance, and is widely used in buildings that require good thermal insulation and fire resistance. With the continuous improvement of building energy conservation and fire safety requirements, thermal insulation fire-resistant walls are used more and more widely in modern buildings. Traditional thermal insulation wall construction methods have problems such as low construction efficiency, easy shedding of the insulation layer, and insufficient fire resistance. In addition, workers are required to carry out construction on the outside of the building wall during construction, which greatly increases the safety risks of workers.
[0003] In the prior art, a large number of construction devices for insulation boards are also disclosed. Among them, a Chinese patent with publication number CN110094047A discloses an automatic insulation board pasting device and a construction method, including an automatic gluing mechanism for the insulation board, an automatic wall pasting mechanism, and a track. The automatic gluing mechanism for the insulation board and the automatic wall pasting mechanism are arranged adjacent to each other, and pulleys are provided at the bottom of the automatic gluing mechanism for the insulation board and the automatic wall pasting mechanism, and the insulation board moves on the track through the pulleys. The insulation board outlet I at the bottom of the automatic gluing mechanism for the insulation board is connected to the automatic wall pasting mechanism, and the other end of the automatic wall pasting mechanism is provided with an insulation board outlet II.
[0004] When in use, before pasting the insulation board, the track is overlapped along the wall, and the insulation board is glued by the automatic gluing mechanism. Then the insulation board is transported to the flipping mechanism of the automatic wall-pasting mechanism by the transport roller. When the insulation board is flipped to 90° by the flipping mechanism, the thrust plate is pushed by the electric push rod along the slide on the thrust plate to make the insulation board reach the insulation board outlet II, and finally pasted to the wall.
[0005] However, in the process of pasting the insulation board using the above-mentioned prior art, there are still the following shortcomings: 1. The above-mentioned prior art requires the pre-setting of tracks before the insulation boards are pasted. After the insulation boards on the walls near the tracks are pasted, the tracks need to be disassembled, and the tracks need to be moved to the unconstructed area and then set up again. This not only greatly reduces the construction efficiency and increases the cost, but also increases the workload.
[0006] 2. Usually there is dust residue on the wall, which can easily have a negative impact on the pasting process and final effect of the insulation board, and affect the adhesion strength between the insulation board and the wall. The above-mentioned prior art cannot clean the wall before pasting the insulation board, which can easily reduce the pasting effect of the insulation board and cause the insulation board to fall off easily.
[0007] Therefore, based on the above-stated viewpoints, there is still room for improvement in the existing thermal insulation fire-resistant wall construction methods. Summary of the invention
[0008] In order to solve the above problems, the present invention provides a thermal insulation fireproof wall construction device, comprising a main body box, the inner wall of which is sequentially installed with isolation plates and partition plates for dividing the main body box into a glue box, an operation box and a power box from top to bottom, a cable is arranged at the upper end of the main body box, the end of the cable away from the main body box is wound around the outer wall of a winch, the winch is arranged at the top of the building to be constructed, a feeding valve for adding adhesive is arranged at the upper end of the main body box, and a feeding valve for adding insulation board is arranged at the side of the main body box away from the wall, characterized in that: a cleaning unit is arranged at the side of the main body box close to the wall, and a bonding unit is arranged between the isolation plate and the partition plate; The cleaning unit comprises a dust cleaning group installed on one side of the main box close to the wall; the laminating unit comprises a propulsion assembly installed between the isolation plate and the partition plate.
[0009] As a preferred technical solution of the present invention, the cleaning unit also includes a baffle installed on the upper end of the main box, a protective plate perpendicular to the baffle is provided on the upper end of the baffle close to the wall, two cleaning groups symmetrically distributed along the length direction of the protective plate are installed below the protective plate, the cleaning group includes a plurality of brush rods rotatably installed on the lower end of the protective plate and equidistantly distributed along the length direction of the protective plate, a support plate is installed on the side of the main box close to the wall, and the brush rod is rotatably connected to the support plate at one end away from the protective plate.
[0010] As a preferred technical solution of the present invention, a cleaning motor is arranged at the upper end of the support plate through the motor seat, and the output shaft of the cleaning motor is equipped with a matching shaft rotatably passed through the upper end of the support plate, the outer wall of the matching shaft and the outer wall of any one of the brush rods in one of the cleaning groups are jointly sleeved with a connecting belt, and the outer wall of any one of the brush rods in the other cleaning group is sleeved with a matching gear, and an auxiliary gear meshing with the matching gear is rotatably installed at the upper end of the support plate through the positioning shaft, and the outer wall of the positioning shaft and the outer wall of the matching shaft are jointly sleeved with a linkage belt, and the outer walls of the multiple brush rods in each cleaning group are jointly sleeved with a toothed belt, and the outer walls of the multiple brush rods are opened with matching grooves meshing with the toothed belt; a hair dryer is installed at one end of the motor seat away from the matching shaft, and a connecting pipe located between the two cleaning groups is installed between the baffle and the support plate, and the connecting pipe and the hair dryer are connected by a pipeline.
[0011] As a preferred technical solution of the present invention, the propulsion assembly includes a square plate installed on the side of the main box close to the wall and located below the support plate, and the square plate is parallel to the support plate, and a smear plate is provided on the side of the square plate away from the main box, and the end of the smear plate away from the square plate is an arc-shaped structure / surface close to the side of the main box, and a plurality of adhesive pipes located between the support plate and the square plate are installed on the side of the main box close to the wall, and the plurality of adhesive pipes are equidistantly distributed along the length direction of the square plate, and the end of the adhesive pipe away from the main box passes through the smear plate, and the end of the adhesive pipe away from the smear plate is connected to the main box.
[0012] As a preferred technical solution of the present invention, a square hole is opened on the side of the main body box close to the wall, and the bottom wall and the top wall of the square hole are respectively flush with the opposite sides of the isolation plate and the partition plate, and a power motor is installed on the side of the partition plate away from the square hole through a motor frame, and the output shaft of the power motor is provided with a transmission shaft rotatably connected to the partition plate, and two connecting shafts symmetrically distributed along the width direction are rotatably penetrated between the isolation plate and the partition plate, and each connecting shaft is sleeved with two spur gears on the outer wall, and the two spur gears are respectively located on the opposite sides of the isolation plate and the partition plate, and a conversion gear meshing with one of the spur gears is installed on the side of the partition plate away from the power motor, and a circular shaft is penetrated on the inner wall of the conversion gear, and the circular shaft rotates through the partition plate, and the circular shaft and the transmission shaft are connected by a power belt, and the transmission shaft and the connecting shaft on the side away from the circular shaft are connected by a transmission belt.
[0013] As a preferred technical solution of the present invention, an extension plate parallel to the partition plate is installed on the side of the main box close to the wall, and a working groove and a reset groove are respectively opened between the isolation plate and the square plate and between the partition plate and the extension plate. Both ends of the working groove are connected with the reset groove. The part where the working groove is connected with the reset groove close to the wall is an arc structure and a limit block is set by a torsion spring.
[0014] As a preferred technical solution of the present invention, two racks meshing with spur gears are respectively slidably arranged between the isolation plate and the square plate, and between the partition plate and the extension plate, a connecting block is installed at the end of the rack away from the wall, and ejector bars are installed on the opposite sides of the two racks corresponding to the horizontal direction, and the ejector bars are connected to the connecting block at the end away from the wall by a hinge, a spring rod is installed between the ejector bar and the corresponding rack, a square rod is commonly arranged between the two ejector bars corresponding to the vertical direction, and insertion rods are installed on the opposite sides of the two square rods, and a circular rod located in the reset groove is installed at the end of the ejector bar close to the wall, and the circular rod is in sliding contact with the reset groove.
[0015] As a preferred technical solution of the present invention, a loading trough is provided on the side of the partition plate away from the isolation plate, and four contact plates are installed on the side of the partition plate away from the isolation plate. The four contact plates are respectively located at the four corners of the loading trough, and a conveying shaft is rotatably installed between the two contact plates close to the power motor and between the two contact plates away from the power motor. The outer wall of the conveying shaft is sleeved with a conveying sleeve located between the two contact plates, and the outer walls of the two conveying sleeves are jointly sleeved with a conveyor belt, and the outer wall of the conveyor belt is installed with multiple equidistantly distributed friction strips.
[0016] As a preferred technical solution of the present invention, a support block parallel to the contact plate is arranged on the side of the partition plate away from the isolation plate, a transmission shaft parallel to the axis of the conveying shaft is rotatably penetrated through the support block, the transmission shaft is connected to the conveying shaft close to the power motor through a transmission belt, an inclined gear is sleeved on the end of the transmission shaft away from the contact plate, an extension shaft is installed on one end of the connecting shaft close to the power motor, and a linkage gear meshing with the inclined gear is sleeved on the outer wall of the end of the extension shaft away from the connecting shaft.
[0017] In addition, the present invention also provides a thermal insulation fireproof wall construction method, comprising the following steps: S1: Work preparation: Add adhesive and insulation board into the main box through the loading valve and the feeding valve respectively, and then control the main box to move to the construction site through the cooperation of the winch and the cable; S2: Clean the wall: clean the dust on the wall surface through the dust cleaning group; S3: Pasting the insulation board: Apply the adhesive to the wall surface by pushing the assembly and quickly paste the insulation board to the wall surface.
[0018] In summary, this application includes the following beneficial technical effects: 1. The present invention controls the intermittent movement of the insulation board through a conveyor belt to ensure that each insulation board can be accurately positioned, and the reciprocating movement of the reciprocating rod realizes uninterrupted hammering of the pasted insulation board, further improving the pasting quality. The movement of the main box and the coordination of the moving wheels realize the smooth rise and continuous operation of the entire device, which not only improves the construction efficiency, but also reduces the errors and safety risks of manual operation.
[0019] 2. The present invention can effectively remove dust on the wall surface by rotating the brush rod. At the same time, the hair dryer blows gas to both sides of the wall, thereby taking the dust away from the construction area, avoiding the dust falling downwards and affecting the subsequent bonding work of the insulation board, ensuring the cleanliness of the construction wall and improving the bonding effect of the insulation board.
[0020] 3. The present invention can evenly apply the adhesive to the wall surface through the cooperation between the smear plate and the adhesive pipe, ensuring the flatness of the adhesive surface and avoiding the formation of cavities between the insulation board and the wall. Subsequently, the insertion strip and the ejection strip are pushed to fit tightly with the wall, and the bubbles in the adhesive are effectively eliminated through the uninterrupted hammering of the back and forth block, ensuring the bonding effect between the insulation board and the wall. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The present invention is further described below in conjunction with the accompanying drawings and embodiments.
[0022] Figure 1 It is a first structural schematic diagram of the present invention.
[0023] Figure 2 It is a second structural schematic diagram of the present invention.
[0024] Figure 3 It is a structural schematic diagram of the cleaning unit of the present invention.
[0025] Figure 4 It is a schematic structural diagram of the dust cleaning group of the present invention.
[0026] Figure 5 It is a structural schematic diagram of the laminating unit of the present invention.
[0027] Figure 6 The present invention Figure 5 A partial enlarged view of point A.
[0028] Figure 7 The present invention Figure 5 A partial enlarged view of point B.
[0029] Figure 8 It is a schematic diagram of the structure between the power motor and the connecting shaft of the present invention.
[0030] Fig. 9 It is a structural schematic diagram of the conveyor belt of the present invention.
[0031] Fig.10 It is a structural schematic diagram of the vibration component of the present invention.
[0032] In the figure, 1, main box; 2, isolation plate; 3, partition plate; 4, cable; 5, loading valve; 6, feeding valve; 7, cleaning unit; 71, dust cleaning group; 711, brush rod; 712, support plate; 713, cleaning motor; 714, matching shaft; 715, connecting belt; 716, matching gear; 717, positioning shaft; 718, auxiliary gear; 719, linkage belt; 720, toothed belt; 721, matching groove; 722, air blowing machine; 723, connecting pipe; 72, baffle; 73, protection plate; 8, laminating unit; 81, pushing assembly; 811, square plate; 812, wiping plate; 813, bonding pipe; 814, square hole; 815, power motor; 816, transmission shaft; 817, connecting shaft; 818, spur gear; 819, conversion gear; 820, circular shaft; 821, power belt; 822, transmission belt; 823, extension plate; 824, work slot; 825, reset slot; 826, limit block; 827, rack; 828, connecting block; 829, ejector bar; 830, spring rod; 831, square rod; 832, insert bar; 833, round rod; 834, contact plate; 835, conveyor shaft; 836, feed chute; 837, conveyor belt; 838, contact bar; 839, support block; 840, transmission shaft; 841, transmission belt; 842, tilt gear; 843, extension Shaft; 844, linkage gear; 85, vibration assembly; 851, sliding plate; 852, sliding hole; 853, sliding ring; 854, parallel block; 855, rotating shaft; 856, moving wheel; 857, anti-slip strip; 858, corresponding shaft; 859, mounting plate; 860, reciprocating shaft; 861, reciprocating group; 862, circular plate; 863, connecting rod; 864, collar; 865, linkage shaft; 866, back and forth block; 867, reciprocating rod. DETAILED DESCRIPTION
[0033] The following is combined with Figure 1-Figure 10 Embodiments of the present invention are described in detail.
[0034] The embodiment of the present application discloses a thermal insulation and fire-resistant wall construction device, which explains that the thermal insulation and fire-resistant wall construction device of the present application is mainly used in the process of thermal insulation and fire-resistant construction on the exterior walls of buildings. In terms of technical effect, it can replace the workers in the construction on the exterior walls of buildings, avoid accidents during the construction of the exterior walls of buildings, and reduce the safety hazards of the workers. In particular, before the insulation board is pasted, the dust on the surface of the wall can be cleaned to increase the pasting effect of the insulation board. Furthermore, the thermal insulation and fire-resistant wall construction device of the present application can hammer the insulation board after pasting the insulation board to the wall, thereby reducing the bubbles inside the adhesive between the insulation board and the wall and the gap between the insulation board and the wall, and further increasing the pasting effect of the insulation board.
[0035] Embodiment 1: Reference Figure 1 and Figure 2 As shown, in order to make the insulation board fit on the wall surface and increase the safety of the staff in this process, specifically, this embodiment provides an insulation fire-resistant wall construction device, including a main body box 1, the inner wall of the main body box 1 is installed with isolation plates 2 and partition plates 3 from top to bottom for dividing it into a glue box, an operation box and a power box, a cable 4 is arranged at the upper end of the main body box 1, and the end of the cable 4 away from the main body box 1 is wound around the outer wall of the winch, and the winch is arranged on the top of the building to be constructed, a loading valve 5 for adding adhesive is installed at the upper end of the main body box 1, a feeding valve 6 for adding insulation board is arranged on the side of the main body box 1 away from the wall, a cleaning unit 7 is arranged on the side of the main body box 1 close to the wall, and a fitting unit 8 is installed between the isolation plate 2 and the partition plate 3; the cleaning unit 7 includes a dust cleaning group 71 installed on the side of the main body box 1 close to the wall; the fitting unit 8 includes a propulsion assembly 81 installed between the isolation plate 2 and the partition plate 3.
[0036] It should be noted that a winch is provided above the working wall through a mounting frame, and the rise and fall of the main box 1 can be controlled by the winch; in addition, the winch used in this embodiment (not shown in the figure) is an intermittent winch in the prior art, and the working principle of the winch will not be described here.
[0037] In actual application, first, the adhesive is added into the glue box through the feeding valve 5 and the insulation board is placed in the working box through the feeding valve 6, and then the winch is used to unwind and control the main box 1 to move downward to the ground, and then the winch and the cable 4 cooperate with each other to control the main box 1 to move intermittently upward. In the process of the main box 1 moving upward, the dust on the wall surface can be cleaned by the cleaning group 71 and the dust can be diffused to both sides to prevent dust from falling downward and affecting the subsequent fitting of the insulation board, thereby increasing the fitting effect of the insulation board; while the cleaning group 71 is cleaning the wall, the propulsion assembly 81 can control the insulation board to move toward the side close to the wall and fit it to the wall surface, thereby completing the fitting work of the insulation board and increasing the fitting efficiency of the insulation board.
[0038] In addition, while the winch controls the main box 1 to move upward, the propulsion assembly 81 can control the adhesive to be applied to the wall surface and smooth the adhesive, thereby avoiding the generation of excess gaps when the insulation board is attached to the wall surface and affecting the attachment effect.
[0039] Reference Figure 2 , Figure 3 and Figure 4As shown, in order to clean the dust on the wall surface and prevent the dust on the wall surface from affecting the fitting of the subsequent insulation board, based on this, in the present embodiment, the cleaning unit 7 also includes a baffle 72 installed on the upper end of the main box 1, and a protective plate 73 perpendicular to the baffle 72 is provided on the upper end of the baffle 72 close to the wall, and two cleaning groups 71 symmetrically distributed along the length direction of the protective plate 73 are installed below the protective plate 73, and the cleaning group 71 includes a plurality of brush rods 711 rotatably installed on the lower end of the protective plate 73 and equidistantly distributed along the length direction of the protective plate 73, and a support plate 712 is installed on the side of the main box 1 close to the wall, and the brush rod 711 is rotatably connected to the support plate 712 at one end away from the protective plate 73.
[0040] Furthermore, in this embodiment, a cleaning motor 713 is provided at the upper end of the support plate 712 through a motor seat, and the output shaft of the cleaning motor 713 is installed with a matching shaft 714 that is rotatably arranged on the upper end of the support plate 712, and the outer wall of the matching shaft 714 and the outer wall of any one of the brush rods 711 in one of the cleaning groups 71 are jointly sleeved with a connecting belt 715, and the outer wall of any one of the brush rods 711 in the other cleaning group 71 is sleeved with a matching gear 716, and the upper end of the support plate 712 is rotatably installed with an auxiliary gear meshing with the matching gear 716 through a positioning shaft 717. Auxiliary gear 718, the outer wall of the positioning shaft 717 and the outer wall of the matching shaft 714 are jointly sleeved with a linkage belt 719, the outer walls of the multiple brush rods 711 in each cleaning group 71 are jointly sleeved with a toothed belt 720, and the outer walls of the multiple brush rods 711 are provided with matching grooves 721 meshing with the toothed belt 720; a blower 722 is installed at one end of the motor base away from the matching shaft 714, and a connecting pipe 723 located between the two cleaning groups 71 is installed between the baffle 72 and the support plate 712, and the connecting pipe 723 and the blower 722 are connected by a pipeline.
[0041] It should be noted that the toothed belt 720 in the same cleaning group 71 can enable one of the brush rods 711 to drive multiple brush rods 711 to rotate at the same time, and the rotation direction and speed are kept consistent, thereby increasing the cleaning effect of wall dust. By cooperating with the gear 716 and the auxiliary gear 718, the rotation directions of the brush rods 711 in the two cleaning groups 71 can be opposite, both rotating outward, and sweeping the floating dust on the wall to both sides of the main box 1, thereby ensuring that the dust will not fall down onto the pasted insulation board and affect the adhesion strength.
[0042] In actual application, the cleaning motor 713 is first started, and the output shaft of the cleaning motor 713 drives the matching shaft 714 to rotate. The matching shaft 714 controls the positioning shaft 717 and the auxiliary gear 718 to rotate through the linkage belt 719. The auxiliary gear 718 drives any brush rod 711 in one of the cleaning groups 71 to rotate through the matching gear 716 meshing therewith. At the same time, the matching shaft 714 drives any brush rod 711 in the cleaning group 71 away from the positioning shaft 717 to rotate through the connecting belt 715. The rotating brush rod 711 can The dust on the wall surface is cleaned to prevent the dust on the wall from affecting the subsequent fitting effect of the insulation board; during this period, the cleaning motor 713 is started and the hair dryer 722 is started simultaneously, the hair dryer 722 transports the gas to the connecting pipe 723 through the pipeline, and then the gas is blown to the wall through the connecting pipe 723 and the air flow diffuses to both sides in the width direction of the main box 1, and the brushed dust and floating dust on the wall surface can be effectively blown to both sides by the air flow, so as to prevent the dust brushed off the wall surface by the brush rod 711 from falling down and affecting the subsequent fitting of the insulation board, thereby increasing the fitting effect of the insulation board.
[0043] Reference Figure 5 As shown, in order to ensure that the insulation board can be smoothly attached to the wall and reduce the cavity between the wall and the insulation board, and increase the fitting effect between the insulation board and the wall, based on this, in the present embodiment, the propulsion assembly 81 includes a square plate 811 installed on the side of the main box 1 close to the wall and located below the support plate 712, and the square plate 811 is parallel to the support plate 712, and a plastering plate 812 is provided on the side of the square plate 811 away from the main box 1, and the plastering plate 812 is an arc-shaped structure / surface close to the side of the main box 1 at one end away from the square plate 811, and a plurality of adhesive pipes 813 located between the support plate 712 and the square plate 811 are installed on the side of the main box 1 close to the wall, and the plurality of adhesive pipes 813 are equidistantly distributed along the length direction of the square plate 811, and the adhesive pipe 813 passes through the plastering plate 812 at one end away from the main box 1, and the adhesive pipe 813 is connected to the glue box inside the main box 1 at one end away from the plastering plate 812.
[0044] In actual application, when the winch controls the main box 1 to move upward, the adhesive in the glue box is squeezed out through the adhesive pipe 813 through the smear plate 812, so that the adhesive can be applied to the wall surface after dust removal. When the main box 1 moves upward, the adhesive can be smoothed by the smear plate 812 to ensure the flatness of the adhesive surface, thereby facilitating the subsequent rapid pasting of the insulation board and avoiding the formation of cavities between the insulation board and the wall that affect the fitting effect of the insulation board.
[0045] Reference Figure 5 , Figure 6 , Figure 7 and Figure 8As shown, in order to achieve the bonding work of the insulation board and ensure that the insulation board can be smoothly bonded to the wall surface, based on this, in this embodiment, a square hole 814 is opened on the side of the main body box 1 close to the wall, and the inner bottom wall and the inner top wall of the square hole 814 are respectively flush with the opposite sides of the isolation plate 2 and the partition plate 3. A power motor 815 is installed on the side of the partition plate 3 away from the square hole 814 through a motor frame. The output shaft of the power motor 815 is provided with a transmission shaft 816 rotatably connected to the partition plate 3. Two connecting shafts 816 symmetrically distributed along the width direction are rotatably penetrated between the isolation plate 2 and the partition plate 3. 7. Two spur gears 818 are sleeved on the outer wall of each connecting shaft 817. The two spur gears 818 are respectively located on the opposite sides of the isolation plate 2 and the partition plate 3. A conversion gear 819 meshing with one of the spur gears 818 is installed on the side of the partition plate 3 away from the power motor 815. A circular shaft 820 is passed through the inner wall of the conversion gear 819. The circular shaft 820 rotates through the partition plate 3. The circular shaft 820 is connected to the transmission shaft 816 through a power belt 821. The transmission shaft 816 is connected to the connecting shaft 817 away from the circular shaft 820 through a transmission belt 822.
[0046] Furthermore, in this embodiment, an extension plate 823 parallel to the partition plate 3 is installed on the side of the main box 1 close to the wall, and a working groove 824 and a reset groove 825 are respectively provided between the isolation plate 2 and the square plate 811 and between the isolation plate 3 and the extension plate 823. Both ends of the working groove 824 are connected to the reset groove 825. The connection between the working groove 824 and the reset groove 825 at one end close to the wall is an arc structure and a limit block 826 is provided by a torsion spring; two racks 827 meshing with the spur gear 818 are respectively slidably provided between the isolation plate 2 and the square plate 811 and between the isolation plate 3 and the extension plate 823. A connecting block 828 is installed at the end of the bar 827 away from the wall, and ejector bars 829 are installed on the opposite sides of the two corresponding racks 827 in the horizontal direction. The ejector bar 829 is connected to the connecting block 828 at the end away from the wall by a hinge, and a spring rod 830 is installed between the ejector bar 829 and the corresponding rack 827. A square rod 831 is commonly arranged between the two corresponding ejector bars 829 in the vertical direction, and insertion bars 832 are installed on the opposite sides of the two square rods 831. A circular rod 833 located in the reset groove 825 is installed at the end of the ejector bar 829 close to the wall, and the circular rod 833 is in sliding contact with the reset groove 825.
[0047] It should be noted that by placing multiple insulation boards into the square hole 814, the insulation board on the side close to the wall can be pushed out to the side of the square hole 814 close to the wall. The circular shaft 820 and the conversion gear 819 can make the two connecting shafts 817 rotate in opposite directions, so as to cooperate with the insertion strip 832 to push the insulation board in the square hole 814 to the side close to the wall, ensuring that the subsequent insulation board can be smoothly moved to the side close to the wall; the rack 827 is initially at the end of the reset groove 825 away from the wall, and the insertion strip 832 is in the gap between the two insulation boards close to the wall so that the insertion strip 832 can quickly control the insulation board to move to the side close to the wall; the torsion spring always limits the position Block 826 applies a torsional force toward the working groove 824 to ensure that the limit block 826 always closes the connection between the working groove 824 and the reset groove 825 near the wall end, preventing the circular rod 833 from entering the working groove 824 prematurely when it moves to the side away from the wall in the reset groove 825 for reset, thereby affecting the operation of the insertion strip 832 on the subsequent insulation board; the spring rod 830 always applies an ejection force to the ejection strip 829 away from the rack 827 to ensure that the circular rod 833 can smoothly enter the working groove 824 under the cooperation between the ejection strip 829 and the spring rod 830 when it moves to the end of the reset groove 825 away from the wall, thereby avoiding affecting the bonding work of the next insulation board.
[0048] It should be further explained that the circular rod 833 first moves along the working groove 824 toward the side close to the wall. When the circular rod 833 reaches the end of the working groove 824 close to the wall, it will gradually approach the reset groove 825 under the thrust of the rack 827 and enter the reset groove 825. During this period, the circular rod 833 contacts the limit block 826 and pushes the limit block 826 open. After the circular rod 833 enters the reset groove 825, the limit block 826 closes the connection between the working groove 824 and the reset groove 825 close to the wall again under the action of the torsion spring, thereby ensuring that the circular rod 833 will not enter the working groove 824 in advance during the process of moving and resetting to the side away from the wall, so that the insertion strip 832 can be smoothly inserted between the two insulation boards to be pasted.
[0049] In actual application, the power motor 815 is started, and the output shaft of the power motor 815 drives the transmission shaft 816 to rotate back and forth. The rotating shaft drives one of the connecting shafts 817 to rotate through the transmission belt 822. At the same time, the transmission shaft 816 drives the circular shaft 820 to rotate through the power belt 821. The circular shaft 820 drives the connecting shaft 817 to rotate through the mutual cooperation between the conversion gear 819 and the spur gear 818. The connecting shaft 817 drives the rack 827 to reciprocate through the spur gear 818, and the rack 827 drives the ejection bar 829 to move synchronously; when the rack 827 moves toward the side close to the wall, the insertion bar 832 drives the insulation board to move synchronously. When the rack 827 drives the ejection bar 829 to extend to the side close to the wall to the longest distance, the insulation board can be pressed against the wall. The insulation board contacts the wall and is adhered to the wall surface under the action of the adhesive, thereby completing the pasting of the insulation board, replacing the staff to paste the insulation board on the outside of the building wall, thereby increasing the safety of the staff.
[0050] When the insulation board is pasted to the wall, the power motor 815 rotates in the opposite direction, and the spur gear 818 drives the rack 827 and the ejector bar 829 to move away from the wall. The ejector bar 829 drives the circular rod 833 and the insertion bar 832 to move synchronously. When the insertion bar 832 and the circular rod 833 move to the initial position, the circular rod 833 enters the working groove 824 again under the action of the spring rod 830. During this period, the insertion bar 832 moves toward the side close to the insulation board and enters between the two insulation boards to be pasted, ensuring that the next insulation board can move smoothly toward the side close to the wall, thereby increasing the pasting effect of the insulation board.
[0051] Reference Figure 8 and Fig. 9 As shown, in order to ensure that the main box 1 can smoothly and continuously bond the insulation board, based on this, in the present embodiment, a loading trough 836 is provided on the side of the partition plate 3 away from the isolation plate 2, and four contact plates 834 are installed on the side of the partition plate 3 away from the isolation plate 2. The four contact plates 834 are respectively located at the four corners of the loading trough 836, and a conveying shaft 835 is rotatably installed between the two contact plates 834 close to the power motor 815 and between the two contact plates 834 away from the power motor 815. The outer walls of the two conveying shafts 835 are jointly sleeved with a conveyor belt 837, and the outer wall of the conveyor belt 837 is installed with a plurality of equidistantly distributed interference strips 838.
[0052] Furthermore, in this embodiment, a support block 839 parallel to the contact plate 834 is provided on the side of the partition plate 3 away from the isolation plate 2, and a transmission shaft 840 parallel to the axis of the conveying shaft 835 is rotatably penetrated on the support block 839. The transmission shaft 840 is connected to the conveying shaft 835 on the side close to the power motor 815 through a transmission belt 841. An inclined gear 842 is sleeved on the end of the transmission shaft 840 away from the contact plate 834, and an extension shaft 843 is installed on one end of one of the connecting shafts 817 close to the power motor 815, and a linkage gear 844 meshing with the inclined gear 842 is sleeved on the outer wall of the end of the extension shaft 843 away from the connecting shaft 817.
[0053] It should be noted that a ratchet tooth is arranged between the linkage gear 844 and the extension shaft 843. Under the action of the ratchet tooth, the inclined gear 842 rotates synchronously when the extension shaft 843 reverses, so that the inclined gear 842 drives the conveyor belt 837 to operate through the transmission shaft 840, the conveyor belt 841 and the conveying shaft 835. When the extension shaft 843 rotates forward, the inclined gear 842 will not rotate, and the conveyor belt 837 is in a stationary state to ensure that the rotation direction of the conveyor belt 837 will not affect the loading of the insulation board.
[0054] In actual application, after the insulation board is placed in the square hole 814, the insulation board is placed on the upper end of the conveyor belt 837, and the plurality of insulation boards can be separated by the abutment strip 838 to ensure that there is enough space between two adjacent insulation boards for the insertion strip 832 to be inserted, and the conveyor belt 837 can convey the plurality of insulation boards to the side close to the wall through the abutment strip 838; the connecting shaft 817 drives the linkage gear 844 to rotate through the extension shaft 843, and the inclined gear 842 drives the inclined gear 842 meshing with it. The transmission shaft 840 is driven to rotate, and the transmission shaft 840 controls the conveying shaft 835 to rotate through the transmission belt 841. The conveying shaft 835 drives the conveyor belt 837 to rotate intermittently, and the conveyor belt 837 controls the insulation board to move intermittently toward the side close to the wall. After the first insulation board close to the wall is controlled by the insertion strip 832 and the ejection strip 829 to move toward the side close to the wall, the next insulation board can be smoothly filled in by the action of the conveyor belt 837, thereby ensuring the continuity of the insulation board operation and increasing the pasting efficiency of the insulation board.
[0055] Embodiment 2: Reference Fig.10As shown, on the basis of the first embodiment, in order to increase the adhesion effect of the insulation board, make the wall and the insulation board fit closely, and reduce the bubbles in the adhesive between the wall and the insulation board, based on this, in this embodiment, a sliding plate 851 perpendicular to the extension plate 823 is provided at one end away from the main box 1, and a plurality of sliding holes 852 equidistantly distributed along its length direction are opened on the side of the sliding plate 851 away from the main box 1, and a plurality of sliding rings 853 corresponding to the sliding holes 852 are installed on the side of the sliding plate 851 close to the main box 1, and two mutually parallel sliding rings 853 are installed at the four corners of the main box 1 close to the wall. There are parallel blocks 854 in a row, a rotating shaft 855 is rotatably passed through the two parallel blocks 854, a moving wheel 856 is sleeved on the outer wall of the rotating shaft 855, and a plurality of anti-slip strips 857 distributed in a circle are installed on the outer wall of the moving wheel 856, a corresponding shaft 858 is installed between the two rotating shafts 855 on the outer wall of the moving wheel 856 close to the power motor 815, and two mounting plates 859 symmetrically distributed along the width direction of the extension plate 823 are arranged on the side close to the corresponding shaft 858, and a reciprocating shaft 860 is rotatably passed through the two mounting plates 859, and the outer walls of the two reciprocating shafts 860 are connected to the outer walls of the corresponding shaft 858 by belt transmission.
[0056] Furthermore, in the present embodiment, a plurality of reciprocating groups 861 are arranged between the two reciprocating shafts 860, and the reciprocating group 861 includes two circular plates 862 and a connecting rod 863 installed between the two circular plates 862, a sleeve 864 is rotatably provided on the outer wall of the connecting rod 863, a reciprocating block 866 is slidably provided on the inner wall of the sliding hole 852, a reciprocating rod 867 is installed between the reciprocating block 866 and the sleeve 864, the reciprocating rod 867 and the reciprocating block 866 are connected by a hinge, and a linkage shaft 865 is installed between the circular plates 862 of two adjacent reciprocating groups 861; the connecting rods 863 of the plurality of reciprocating groups 861 are distributed in a clockwise direction from one side of the mounting plate 859 to the other side of the mounting plate 859, and two adjacent connecting rods 863 are distributed at 90 degrees.
[0057] It should be noted that the moving wheel 856 is always in contact with the wall and rotates with the movement of the main box 1, so as to reduce the friction between the main box 1 and the wall; through the 90-degree distribution of the connecting rod 863 between the two circular plates 862 in the two adjacent reciprocating groups 861, multiple reciprocating blocks 866 can hammer the insulation plate alternately.
[0058] In actual application, during the upward movement of the main box 1, the upward movement force of the main box 1 controls the intermittent rotation of the moving wheel 856, and the moving wheel 856 drives the corresponding shaft 858 to rotate through the rotating shaft 855. The corresponding shaft 858 controls the rotation of the two reciprocating shafts 860 through the reciprocating belt. The reciprocating shaft 860 drives the circular plate 862, the connecting rod 863 and the linkage shaft 865 to rotate. The connecting rod 863 drives the reciprocating rod 867 to reciprocate toward the side close to the wall and away from the wall. The reciprocating rod 867 drives the back and forth block 866 to continuously hammer the pasted insulation board, so that the bubbles in the adhesive between the wall and the insulation board can be cleaned out, avoiding the bonding effect between the wall and the insulation board due to bubbles, and increasing the effect between the wall and the insulation board.
[0059] It should be noted that the spacing between the two moving wheels 856 in the horizontal direction is greater than the width of the insulation board, so as to prevent the moving wheel 856 from contacting the insulation board pasted under the main box 1 and causing it to fall off easily, and the distance between the parallel block 854 and the wall can be adaptively adjusted. When the main box 1 moves upward between the pasted insulation board and the wall, the parallel block 854 in contact with the insulation board can be adjusted to the side close to the main box 1, and the parallel block 854 in contact with the wall can be adjusted to the side close to the wall, thereby ensuring that the main box 1 always remains parallel to the wall, thereby ensuring the pasting effect and overall flatness of the insulation board.
[0060] In addition, the present invention also provides a thermal insulation fireproof wall construction method, comprising the following steps: S1: Work preparation: The adhesive and the insulation board are added into the main box 1 through the loading valve 5 and the feeding valve 6 respectively, and then the main box 1 is controlled to move to the construction site through the cooperation of the winch and the cable 4.
[0061] S2: Cleaning the wall: First, start the cleaning motor 713. The output shaft of the cleaning motor 713 drives the matching shaft 714 to rotate. The matching shaft 714 controls the positioning shaft 717 and the auxiliary gear 718 to rotate through the linkage belt 719. The auxiliary gear 718 drives any brush rod 711 in one of the cleaning groups 71 to rotate through the matching gear 716 meshing therewith. At the same time, the matching shaft 714 drives any brush rod 711 in the cleaning group 71 away from the positioning shaft 717 through the connecting belt 715. The brush rod 711 rotates, and the dust on the wall surface can be cleaned by the rotating brush rod 711; during this period, the cleaning motor 713 is started and the hair dryer 722 is started synchronously, and the hair dryer 722 transports the gas to the connecting pipe 723 through the pipeline, and then the gas is blown to the wall through the connecting pipe 723 and the air flow diffuses to both sides in the width direction of the main body box 1, and the brushed dust and floating dust on the wall surface can be effectively blown to both sides by the air flow, so as to prevent the dust brushed off the wall surface by the brush rod 711 from falling down and affecting the subsequent bonding of the insulation board.
[0062] S3: Pasting the insulation board: When the winch controls the main box 1 to move upward, the adhesive in the glue box is squeezed out through the adhesive pipe 813 through the smear plate 812, so that the adhesive can be applied to the wall surface after dust removal. When the main box 1 moves upward, the smear plate 812 can smooth the adhesive to ensure the flatness of the adhesive surface, thereby facilitating the subsequent rapid pasting of the insulation board.
[0063] Start the power motor 815, the output shaft of the power motor 815 drives the transmission shaft 816 to rotate back and forth, and the rotating shaft drives one of the connecting shafts 817 to rotate through the transmission belt 822. At the same time, the transmission shaft 816 drives the circular shaft 820 to rotate through the power belt 821, and the circular shaft 820 drives the connecting shaft 817 to rotate through the mutual cooperation between the conversion gear 819 and the spur gear 818. The connecting shaft 817 drives the rack 827 to reciprocate through the spur gear 818, and the rack 827 drives the ejection bar 829 to move synchronously; when the rack 827 moves toward the side close to the wall, the insertion bar 832 drives the insulation board to move synchronously, and when the rack 827 drives the ejection bar 829 to extend to the side close to the wall to the longest distance, the insulation board can be pressed against the wall, and the insulation board contacts the wall and is adhered to the wall surface under the action of the adhesive, thereby completing the pasting of the insulation board.
[0064] When the insulation board is pasted to the wall, the power motor 815 rotates in the opposite direction, and the spur gear 818 drives the rack 827 and the ejection bar 829 to move away from the wall. The ejection bar 829 drives the circular rod 833 and the insertion bar 832 to move synchronously. When the insertion bar 832 and the circular rod 833 move to the initial position, the circular rod 833 enters the working groove 824 again under the action of the spring rod 830. During this period, the insertion bar 832 moves toward the side close to the insulation board and enters between the two insulation boards to be pasted, ensuring that the next insulation board can move smoothly toward the side close to the wall.
[0065] After the insulation board is placed in the square hole 814, the insulation board is placed on the upper end of the conveyor belt 837, and the multiple insulation boards can be separated by the interference strip 838 to ensure that there is enough space between two adjacent insulation boards to facilitate the insertion of the insertion strip 832, and the conveyor belt 837 can convey the multiple insulation boards to the side close to the wall through the interference strip 838; the connecting shaft 817 drives the linkage gear 844 to rotate through the extension shaft 843, and the inclined gear 842 drives the transmission shaft 840 to rotate through the inclined gear 842 meshing therewith, and the transmission shaft 840 controls the conveying shaft 835 to rotate through the transmission belt 841, and the conveying shaft 835 drives the conveyor belt 837 to rotate intermittently, and the conveyor belt 837 controls the insulation board to move intermittently to the side close to the wall. After the first insulation board close to the wall is controlled by the insertion strip 832 and the ejection strip 829 to move to the side close to the wall, the next insulation board can be smoothly filled in under the action of the conveyor belt 837, ensuring the continuity of the insulation board operation.
[0066] During the upward movement of the main box 1, the upward force of the main box 1 controls the intermittent rotation of the moving wheel 856, and the moving wheel 856 drives the corresponding shaft 858 to rotate through the rotating shaft 855. The corresponding shaft 858 controls the rotation of the two reciprocating shafts 860 through the reciprocating belt. The reciprocating shaft 860 drives the circular plate 862, the connecting rod 863 and the linkage shaft 865 to rotate. The connecting rod 863 drives the reciprocating rod 867 to reciprocate toward the side close to the wall and away from the wall. The reciprocating rod 867 drives the back and forth block 866 to continuously hammer the pasted insulation board, so that the bubbles in the adhesive between the wall and the insulation board can be cleaned out.
[0067] It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention.
[0068] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.
Claims
1. A thermal insulation fireproof wall construction device, comprising a main body box (1), the inner wall of the main body box (1) is sequentially installed with an isolation plate (2) and a partition plate (3) for dividing the main body box into a glue box, an operation box and a power box from top to bottom, a cable (4) is arranged at the upper end of the main body box (1), the end of the cable (4) away from the main body box (1) is wound around the outer wall of a winch, the winch is arranged on the top of a building to be constructed, a feeding valve (5) for adding adhesive is installed at the upper end of the main body box (1), and a feeding valve (6) for adding insulation board is arranged on the side of the main body box (1) away from the wall, characterized in that: A cleaning unit (7) is provided on one side of the main body box (1) close to the wall, and a fitting unit (8) is installed between the isolation plate (2) and the partition plate (3); The cleaning unit (7) comprises a dust cleaning group (71) installed on a side of the main box (1) close to the wall; the laminating unit (8) comprises a propulsion assembly (81) installed between the isolation plate (2) and the partition plate (3).
2. A thermal insulation fireproof wall construction device according to claim 1, characterized in that: The cleaning unit (7) further comprises a baffle (72) mounted on the upper end of the main box (1); a protective plate (73) perpendicular to the baffle (72) is arranged on the upper end of the baffle (72) close to the wall; two cleaning groups (71) symmetrically distributed along the length direction of the protective plate (73) are mounted below the protective plate (73); the cleaning groups (71) comprise a plurality of brush rods (711) rotatably mounted on the lower end of the protective plate (73) and equidistantly distributed along the length direction of the protective plate (73); a support plate (712) is mounted on the side of the main box (1) close to the wall; and an end of the brush rod (711) away from the protective plate (73) is rotatably connected to the support plate (712).
3. A thermal insulation fireproof wall construction device according to claim 2, characterized in that: A cleaning motor (713) is provided at the upper end of the support plate (712) through a motor seat, and a matching shaft (714) rotatably penetrates the upper end of the support plate (712) is installed on the output shaft of the cleaning motor (713); a connecting belt (715) is sleeved on the outer wall of the matching shaft (714) and the outer wall of any one of the brush rods (711) in one of the cleaning groups (71); a matching gear (716) is sleeved on the outer wall of any one of the brush rods (711) in the other cleaning group (71); an auxiliary gear (718) meshing with the matching gear (716) is rotatably installed on the upper end of the support plate (712) through a positioning shaft (717). The outer wall of the positioning shaft (717) and the outer wall of the matching shaft (714) are jointly sleeved with a linkage belt (719); the outer wall of the plurality of brush rods (711) in each cleaning group (71) are jointly sleeved with a toothed belt (720); the outer walls of the plurality of brush rods (711) are each provided with a matching groove (721) meshing with the toothed belt (720); a blower (722) is installed at one end of the motor base away from the matching shaft (714); a connecting pipe (723) located between the two cleaning groups (71) is installed between the baffle plate (72) and the support plate (712); the connecting pipe (723) and the blower (722) are connected via a pipeline.
4. A thermal insulation fireproof wall construction device according to claim 2, characterized in that: The propulsion assembly (81) comprises a square plate (811) installed on a side of the main box (1) close to the wall and located below the support plate (712), and the square plate (811) is parallel to the support plate (712). A smearing plate (812) is provided on a side of the square plate (811) away from the main box (1), and an end of the smearing plate (812) away from the square plate (811) is an arc-shaped structure / surface close to the side of the main box (1). A plurality of adhesive pipes (813) located between the support plate (712) and the square plate (811) are installed on a side of the main box (1) close to the wall, and the plurality of adhesive pipes (813) are equidistantly distributed along the length direction of the square plate (811). An end of the adhesive pipe (813) away from the main box (1) passes through the smearing plate (812), and an end of the adhesive pipe (813) away from the smearing plate (812) is connected to the main box (1).
5. The thermal insulation fireproof wall construction device according to claim 1, characterized in that: A square hole (814) is provided on one side of the main body box (1) close to the wall. The inner bottom wall and the inner top wall of the square hole (814) are respectively flush with the opposite sides of the isolation plate (2) and the partition plate (3). A power motor (815) is installed on the side of the partition plate (3) away from the square hole (814) through a motor frame. The output shaft of the power motor (815) is provided with a transmission shaft (816) rotatably connected to the partition plate (3). Two connecting shafts (817) symmetrically distributed along the width direction of the isolation plate (2) and the partition plate (3) are rotatably penetrated between the isolation plate (2) and the partition plate (3). Two spur gears (818) are sleeved on the outer wall of each connecting shaft (817). The two spur gears (818) are respectively located on opposite sides of the isolation plate (2) and the partition plate (3); a conversion gear (819) meshing with one of the spur gears (818) is installed on the side of the partition plate (3) away from the power motor (815); a circular shaft (820) is passed through the inner wall of the conversion gear (819); the circular shaft (820) rotates through the partition plate (3); the circular shaft (820) is connected to the transmission shaft (816) via a power belt (821); and the transmission shaft (816) is connected to a connecting shaft (817) on the side away from the circular shaft (820) via a transmission belt (822).
6. A thermal insulation fireproof wall construction device according to claim 4, characterized in that: An extension plate (823) parallel to the partition plate (3) is installed on the side of the main box (1) close to the wall; a working groove (824) and a reset groove (825) are respectively provided between the isolation plate (2) and the square plate (811) and between the partition plate (3) and the extension plate (823); both ends of the working groove (824) are connected to the reset groove (825); the end of the working groove (824) close to the wall where it is connected to the reset groove (825) is an arc-shaped structure and a limit block (826) is provided via a torsion spring.
7. A thermal insulation fireproof wall construction device according to claim 6, characterized in that: Two racks (827) meshing with the spur gear (818) are slidably disposed between the isolation plate (2) and the square plate (811) and between the partition plate (3) and the extension plate (823), respectively; a connecting block (828) is mounted on one end of the rack (827) away from the wall; ejector bars (829) are mounted on opposite sides of the two racks (827) corresponding to the horizontal direction; the ejector bars (829) are connected to the connecting block (828) at one end away from the wall by a hinge; a spring rod (830) is mounted between the ejector bars (829) and the corresponding racks (827); a square rod (831) is mounted between the two ejector bars (829) corresponding to the vertical direction; an insertion rod (832) is mounted on opposite sides of the two square rods (831); a round rod (833) located in the reset groove (825) is mounted on one end of the ejector bars (829) close to the wall; the round rod (833) is in sliding contact with the reset groove (825).
8. The thermal insulation fireproof wall construction device according to claim 5, characterized in that: A feeding trough (836) is provided on the side of the partition plate (3) away from the isolation plate (2), and four contact plates (834) are installed on the side of the partition plate (3) away from the isolation plate (2). The four contact plates (834) are respectively located at four corners of the feeding trough (836), and a conveying shaft (835) is rotatably installed between two contact plates (834) close to the power motor (815) and between two contact plates (834) away from the power motor (815). The outer wall of the conveying shaft (835) is sleeved with a conveying sleeve located between the two contact plates (834), and the outer walls of the two conveying sleeves are jointly sleeved with a conveying belt (837), and the outer wall of the conveying belt (837) is installed with a plurality of equidistantly distributed friction strips (838).
9. A thermal insulation fireproof wall construction device according to claim 8, characterized in that: A support block (839) parallel to the contact plate (834) is provided on the side of the partition plate (3) away from the isolation plate (2); a transmission shaft (840) parallel to the axis of the transmission shaft (835) is rotatably penetrated through the support block (839); the transmission shaft (840) is connected to the transmission shaft (835) on the side close to the power motor (815) via a transmission belt (841); an inclined gear (842) is sleeved on one end of the transmission shaft (840) away from the contact plate (834); an extension shaft (843) is installed on one end of one of the connecting shafts (817) close to the power motor (815); and a linkage gear (844) meshing with the inclined gear (842) is sleeved on the outer wall of one end of the extension shaft (843) away from the connecting shaft (817).
10. A method for constructing a thermal insulation fireproof wall, comprising a thermal insulation fireproof wall construction device as claimed in any one of claims 1 to 9, characterized in that: The construction method includes the following steps: S1: Work preparation: The adhesive and the insulation board are added into the main box (1) through the loading valve (5) and the feeding valve (6), and then the main box (1) is moved to the construction site by the cooperation of the winch and the cable (4); S2: Cleaning the wall: Cleaning the dust on the wall surface by using the dust cleaning group (71); S3: Pasting the insulation board: Apply the adhesive to the wall surface through the pushing component (81) and quickly paste the insulation board to the wall surface.
Citation Information
Patent Citations
Insulation board automatic pasting device and construction method thereof
CN110094047A