An external wall thermal insulation integrated board construction and installation device

By designing the construction and installation device of the exterior wall insulation integrated panel, the automatic placement of insulation panels and mortar coating are realized, the problem of low construction efficiency is solved, and the construction efficiency and quality are improved.

CN119956941BActive Publication Date: 2025-07-22SHANXI CONSTR ENG CO LTD
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Patent Information

Application Number
CN202510451583.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2025-07-22
Estimated Expiration
2045-04-11

AI Technical Summary

Technical Problem

During construction of the exterior wall insulation board, staff need to ride in a hanging basket and hang it on the outside of the wall, and the construction materials and construction tools are placed inside the hanging basket together, resulting in low construction efficiency.

Method used

An external wall insulation integrated panel construction and installation device is designed, including a lifting mechanism, a cladding mechanism, a plate material cutting mechanism and a mortar storage mechanism. Through automated equipment, the insulating panel is deployed, the mortar coating and the flip installation of the panel are reduced, and manual operations are reduced.

Benefits of technology

Improve construction efficiency, reduce labor intensity, ensure construction accuracy and quality, and reduce material waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an exterior wall thermal insulation integrated board construction and installation device in the technical field of equipment for installing thermal insulation boards, comprising: The covering board mechanism is movably connected to the hoisting mechanism through a linear moving device, and the covering board mechanism can move inside the hoisting mechanism; The covering board mechanism moves under the drive of the linear moving device to contact the sheet material feeding mechanism and open the discharge port, and the thermal insulation board falls onto the covering board mechanism through the sheet material feeding mechanism; The sheet material feeding mechanism contacts the mortar storage mechanism under the drive of the covering board mechanism and opens the discharge port, and the mortar covers the surface of the thermal insulation board through the mortar storage mechanism. This exterior wall thermal insulation integrated board construction and installation device improves work efficiency by putting the thermal insulation board onto the covering board mechanism through the sheet material feeding mechanism, then putting the mortar onto the thermal insulation board through the mortar storage mechanism, and after the covering board mechanism moves to the designated position, it flips to cover the thermal insulation board with mortar onto the wall.
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Description

Technical Field

[0001] The present invention relates to the technical field of equipment for installing thermal insulation boards, and particularly to a construction and installation device for exterior wall thermal insulation integrated boards. Background Art

[0002] Exterior wall thermal insulation boards, also known as horizon building exterior wall decoration integrated boards, are building materials composed of multiple materials, mainly used to improve the thermal insulation performance of building exterior walls, meet the energy-saving requirements of housing construction, and are also the preferred materials for energy-saving renovation of existing buildings.

[0003] During the construction of exterior wall thermal insulation boards, workers need to be suspended outside the wall in a hanging basket, and construction materials and tools are placed inside the hanging basket. When constructing the exterior wall thermal insulation board, workers need to manually take materials, plaster, and attach the exterior wall thermal insulation board, resulting in relatively low work efficiency. Therefore, how to improve the construction efficiency of exterior wall thermal insulation boards is an urgent problem for technicians in this technical field. Summary of the Invention

[0004] The purpose of the present invention is to provide a construction and installation device for exterior wall thermal insulation integrated boards to solve the problem that during the construction of exterior wall thermal insulation boards, workers need to be suspended outside the wall in a hanging basket, construction materials and tools are placed inside the hanging basket, and when constructing the exterior wall thermal insulation board, workers need to manually take materials, plaster, and attach the exterior wall thermal insulation board, resulting in relatively low work efficiency as mentioned in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A construction and installation device for exterior wall thermal insulation integrated boards, comprising:

[0006] A hoisting mechanism for carrying materials and construction tools;

[0007] A panel covering mechanism, the panel covering mechanism is movably connected to the hoisting mechanism through a linear movement device, and the panel covering mechanism can move inside the hoisting mechanism;

[0008] A board blanking mechanism, the board blanking mechanism is connected to the hoisting mechanism and corresponds to the panel covering mechanism. Thermal insulation boards are placed inside the board blanking mechanism. The panel covering mechanism moves under the drive of the linear movement device to contact the board blanking mechanism and open the discharge port, and the thermal insulation boards fall onto the panel covering mechanism through the board blanking mechanism;

[0009] A mortar storage mechanism, the mortar storage mechanism is connected to the hoisting mechanism and corresponds to the board blanking mechanism. Mortar is placed inside the mortar storage mechanism. The board blanking mechanism contacts the mortar storage mechanism under the drive of the panel covering mechanism and opens the discharge port, and the mortar covers the surface of the thermal insulation board through the mortar storage mechanism.

[0010] Preferably, the hoisting mechanism includes:

[0011] A hanging basket;

[0012] A first mounting frame detachably mounted at the inner cavity end of the hanging basket;

[0013] A second mounting frame detachably mounted at the inner cavity end of the hanging basket adjacent to the first mounting frame;

[0014] A bottom plate assembly detachably mounted at the inner cavity bottom of the hanging basket;

[0015] A mounting seat provided at the end of the hanging basket corresponding to the bottom plate assembly;

[0016] Side plates provided on the outside of the hanging basket.

[0017] Preferably, the covering plate mechanism includes:

[0018] A moving seat assembly;

[0019] A flap assembly movably connected to the moving seat assembly, and the flap assembly is driven by the moving seat assembly to move horizontally;

[0020] A limiting plate detachably connected to the flap assembly, and the heat preservation plate is positioned by the limiting plate;

[0021] A support frame assembly with both ends respectively connected to the moving seat assembly and the flap assembly, and the flap assembly is driven by the support frame assembly to turn and install the heat preservation plate on the moving seat assembly.

[0022] Preferably, the sheet material blanking mechanism includes:

[0023] A storage bin assembly;

[0024] A blanking assembly connected to the storage bin assembly, and the heat preservation plate enters the blanking assembly through the storage bin assembly, and the heat preservation plate is blanked by the blanking assembly.

[0025] Preferably, the storage bin assembly includes:

[0026] A first guiding frame with the inner cavity for placing the heat preservation plate;

[0027] A storage bin connected to the first guiding frame and communicating with the inner cavity of the first guiding frame, and the heat preservation plate enters the inner cavity of the storage bin through the first guiding frame;

[0028] A first spring detachably mounted at the inner cavity end of the first guiding frame;

[0029] The first baffle, and the first baffle is arranged at the bottom of the first guiding frame.

[0030] Preferably, the blanking assembly includes:

[0031] A material taking plate, and a discharging groove is formed through the top of the material taking plate;

[0032] A stop block, and the stop block is arranged at the end of the bottom surface of the material taking plate through a coil spring;

[0033] A fourth mounting block, and the fourth mounting block is arranged at the end of the material taking plate, and a connecting shaft is arranged on the side wall of the fourth mounting block.

[0034] Preferably, the mortar storage mechanism includes:

[0035] A mortar stirring mechanism, and mortar is placed in the inner cavity of the mortar stirring mechanism and stirred;

[0036] A slurry discharging mechanism, and the slurry discharging mechanism is connected with the mortar stirring mechanism, and the mortar enters the slurry discharging mechanism through the mortar stirring mechanism and is discharged to the surface of the heat preservation plate through the slurry discharging mechanism.

[0037] Preferably, a clamping mechanism is installed on the side of the hoisting mechanism, and the clamping mechanism includes:

[0038] An outer clamping plate assembly, and the outer clamping plate assembly is slidably connected with the hoisting mechanism;

[0039] An inner clamping plate assembly, and the inner clamping plate assembly is movably connected with the outer clamping plate assembly.

[0040] Preferably, the outer clamping plate assembly includes:

[0041] A first fixing plate, a fourth sliding groove is formed on the inner side of the first fixing plate, and a first fixing block is arranged on the outer side of the first fixing plate;

[0042] A third slider, and the third slider is connected with the first fixing plate through the fourth sliding groove;

[0043] A first adjusting plate, and the first adjusting plate is movably connected with the first fixing plate, a second fixing block is arranged on the outer side of the first adjusting plate, and a guiding shaft is arranged on the side wall of the first adjusting plate;

[0044] A first lead screw, and the first lead screw is movably connected with the first fixing block through a bearing and is in threaded connection with the second fixing block;

[0045] A second lead screw, and the second lead screw is movably connected with the first fixing block through a bearing.

[0046] Preferably, the inner clamping plate assembly includes:

[0047] A second fixing plate, on the outer side of which a third fixing block is provided, and an adjustment groove is formed in the side wall of the second fixing plate;

[0048] A second adjusting plate, which is movably connected to the second fixing plate, and a connection hole corresponding to the adjustment groove is formed in the side wall of the second adjusting plate.

[0049] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0050] (1) The heat preservation board is placed on the covering board mechanism by the board material blanking mechanism, and then the mortar is placed on the heat preservation board by the mortar storage mechanism. After the covering board mechanism moves to the designated position, it turns over to cover the heat preservation board with mortar on the wall, eliminating the need for manual material handling and mortar coating, thus improving work efficiency;

[0051] (2) When the flap moves to the stop block driven by the frame, one of the longitudinally arranged limiting plates contacts the stop block. The elastic force of the coil spring is greater than the walking force of the flap and the elastic force of the first spring. At this time, the stop block will not turn over, thus driving the material taking plate to move towards the side away from the first spring, causing the heat preservation board falling inside the discharge chute to break away from the restriction of the first baffle, so that the board falls onto the top of the flap. When the material taking plate moves to the mortar storage mechanism and contacts it under the drive of the flap, the material taking plate is restricted by the mortar storage mechanism and cannot move. However, the flap continues to move under the drive of the lead screw, overcoming the elastic force of the coil spring, driving the stop block to turn over and disengage from the limiting plate. After the stop block disengages from the limiting plate, the pulling force on the first spring is released. The first spring drives the material taking plate to reset, making the discharge chute correspond to the bin again. The heat preservation board placed in the inner cavity of the bin falls into the inner cavity of the discharge chute under the action of gravity, preparing for the next material removal, thus eliminating the need for manual material handling and reducing labor intensity;

[0052] (3) A top cover is detachably installed on the top of the mixing chamber. A motor is installed on the top of the top cover, and a mixing blade is installed on the output shaft of the motor. The mixing blade is suspended in the inner cavity of the mixing chamber. The raw materials for generating mortar are placed in the inner cavity of the mixing chamber, and the mixing blade stirs the raw materials to generate mortar. There is no need to frequently transport mortar to the construction site, ensuring construction efficiency. At the same time, the mortar can be intermittently stirred to prevent the phenomenon of mortar solidification due to long-term placement, thus effectively reducing mortar waste;

[0053] (4) Drive the material taking plate to reset through the first spring. The material taking plate drives the sliding plate to move towards the first guide frame through the cooperation of the connecting shaft and the connecting buckle, thereby driving the slurry discharging cylinder to move towards the side away from the second baffle, so that the flip cover is disengaged from the restriction of the second baffle. The flip cover flips downward under the action of gravity, opening the discharge port at the bottom of the slurry discharging cylinder and discharging the mortar onto the surface of the thermal insulation board, eliminating the need for manual plastering and reducing the labor intensity of the staff.

[0054] (5) After the slurry is discharged onto the thermal insulation board through the slurry discharging cylinder, the flap continues to move in the same displacement direction, driving the thermal insulation board into the inner side of the limit frame to contact the scraper. The slurry is leveled on the thermal insulation board by the scraper, and at the same time, indentations are scraped on the surface of the slurry by the scraping teeth on the scraper, eliminating the need for manual leveling of the slurry and further reducing the labor intensity of the staff.

[0055] (6) One end of the first bracket is installed between two second mounting blocks through a pin shaft. The first bracket can rotate between the two second mounting blocks through the pin shaft. A motor is installed on one side of one of the two second mounting blocks away from the first bracket. The output shaft of the motor is connected to the pin shaft. The first bracket is driven to flip by the motor, and the second bracket is connected to one end of the first bracket away from the second mounting block through a pin shaft. The second bracket is driven to flip by the first bracket. One end of the second bracket away from the first bracket is installed between two third mounting blocks through a pin shaft. The flap is driven to flip through the cooperation of the second bracket and the third mounting blocks. While the flap is flipping, the telescopic rod is driven to extend outward on the outer sleeve, raising the flap so that the flap is higher than the top of the hanging basket, covering the thermal insulation board placed on the flap and smeared with mortar onto the wall, eliminating the need for the staff to carry and lift the thermal insulation board and reducing the labor intensity of the staff.

[0056] (7) Clamp the wall through the first adjusting plate and the second adjusting plate to fix the hanging basket, reducing the shaking amplitude of the hanging basket. When constructing the thermal insulation board, the construction accuracy of the thermal insulation board will not be affected by the shaking of the hanging basket, improving the service quality of the thermal insulation board. Description of the Drawings

[0057] Figure 1 It is a schematic structural diagram of the present invention;

[0058] Figure 2 It is a schematic structural diagram of the hoisting mechanism of the present invention;

[0059] Figure 3 It is a schematic structural diagram of Figure A of the present invention;

[0060] Figure 4 It is a partially sectional schematic diagram of the bottom plate assembly of the present invention;

[0061] Figure 5Schematic diagram of the closed state of the covering plate mechanism of the present invention;

[0062] Figure 6 Schematic diagram of the unfolded state of the covering plate mechanism of the present invention;

[0063] Figure 7 Schematic diagram of partial cross-section of the moving seat assembly of the present invention;

[0064] Figure 8 Schematic diagram of the structure of Figure B of the present invention;

[0065] Figure 9 Schematic diagram of the structure of the flap assembly of the present invention;

[0066] Figure 10 Schematic diagram of the structure of Figure C of the present invention;

[0067] Figure 11 Schematic diagram of the structure of the sheet material blanking mechanism of the present invention;

[0068] Figure 12 Schematic diagram of the structure of the storage bin assembly of the present invention;

[0069] Figure 13 Schematic diagram of the structure of Figure D of the present invention;

[0070] Figure 14 Schematic diagram of partial cross-section of the blanking assembly of the present invention;

[0071] Figure 15 Schematic diagram of the structure of Figure E of the present invention;

[0072] Figure 16 Schematic diagram of the structure of the mortar storage mechanism of the present invention;

[0073] Figure 17 Schematic diagram of the structure of the mortar mixing mechanism of the present invention;

[0074] Figure 18 Schematic diagram of the structure of the slurry discharging mechanism of the present invention;

[0075] Figure 19 Schematic diagram of the structure of the clamping mechanism of the present invention;

[0076] Figure 20 Schematic diagram of the structure of the outer clamping plate assembly of the present invention;

[0077] Figure 21 Schematic diagram of the structure of Figure F of the present invention;

[0078] Figure 22 Schematic diagram of the structure of Figure G of the present invention;

[0079] Figure 23 Schematic diagram of partial cross-section of the inner clamping plate assembly of the present invention.

[0080] In the figure: 100 hoisting mechanism, 110 hanging basket, 120 first mounting bracket, 130 second mounting bracket, 140 bottom plate assembly, 140a bottom plate, 140b guide groove, 140c lead screw, 150 mounting seat, 160 side plate, 160a first chute, 200 covering plate mechanism, 210 moving seat assembly, 210a frame, 210a-1 first mounting block, 210b moving plate, 210b-1 second mounting block, 210b-2 threaded hole, 210c connecting plate, 220 flap assembly, 220a flap, 220a-1 third mounting block, 220b outer sleeve, 220b-1 telescopic rod, 230 limiting plate, 240 support frame assembly, 240a first support, 240b second support, 300 sheet material cutting mechanism, 310 material storage bin assembly, 310a first guide frame, 310a-1 second chute, 310b material bin, 310c first spring, 310d first baffle, 320 material cutting assembly, 320a material taking plate, 320a-1 discharge groove, 320a-2 first slider, 320a-3 mounting groove, 320b stop block, 320c fourth mounting block, 320c-1 connecting shaft, 400 mortar storage mechanism, 410 mortar mixing mechanism, 410a mixing chamber, 410a-1 top cover, 410b second guide frame, 410b-1 third chute, 410b-2 second spring, 410b-3 second baffle, 410c limiting frame, 410c-1 scraping plate, 410c-2 scraping teeth, 420 slurry discharging mechanism, 420a sliding plate, 420a-1 second slider, 420a-2 vertical plate, 420a-3 connecting buckle, 420a-4 limiting block, 420b slurry discharging cylinder, 420b-1 fifth mounting block, 420b-2 flip cover, 500 clamping mechanism, 510 outer clamping plate assembly, 510a first fixing plate, 510a-1 fourth chute, 510a-2 first fixing block, 510b third slider, 510c first adjusting plate, 510c-1 second fixing block, 510c-2 guide shaft, 510d first lead screw, 510d-1 first driving block, 510e second lead screw, 510e-1 second driving block, 520 inner clamping plate assembly, 520a second fixing plate, 520a-1 third fixing block, 520a-2 adjusting groove, 520b second adjusting plate, 520b-1 connecting hole. Detailed implementation manner

[0081] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0082] The present invention provides a construction and installation device for an exterior wall thermal insulation integrated panel. The thermal insulation panel is placed on the panel covering mechanism by the panel cutting mechanism, and then the mortar is placed on the thermal insulation panel by the mortar storage mechanism. After the panel covering mechanism moves to the designated position, it flips to cover the thermal insulation panel with mortar on the wall. There is no need for manual material handling and mortar coating, which improves work efficiency. Please refer to Figure 1 , including: a hoisting mechanism 100, a panel covering mechanism 200, a panel cutting mechanism 300, a mortar storage mechanism 400, and a clamping mechanism 500;

[0083] Embodiment 1

[0084] Please refer to Figure 1 , the panel covering mechanism 200 is movably installed at the bottom of the inner cavity of the hoisting mechanism 100 through a linear movement device, and the panel covering mechanism 200 can move along the length direction of the hoisting mechanism 100 in the inner cavity of the hoisting mechanism 100;

[0085] The panel cutting mechanism 300 is detachably installed in the inner cavity of the hoisting mechanism 100. The thermal insulation panel is placed in the inner cavity of the panel cutting mechanism 300. There is a space between the bottom of the panel cutting mechanism 300 and the bottom of the inner cavity of the hoisting mechanism 100 that allows the panel covering mechanism 200 to pass through. The panel covering mechanism 200 moves to the bottom of the panel cutting mechanism 300 under the drive of the linear movement device. The switch for material cutting on the panel cutting mechanism 300 is opened by the panel covering mechanism 200, and the thermal insulation panel falls onto the top of the panel covering mechanism 200 through the panel cutting mechanism 300, and the panel covering mechanism 200 drives the thermal insulation panel to move;

[0086] The mortar storage mechanism 400 is installed and detachably installed in the inner cavity of the hoisting mechanism 100. Mortar is placed in the inner cavity of the mortar storage mechanism 400. There is a space between the bottom of the mortar storage mechanism 400 and the bottom of the inner cavity of the hoisting mechanism 100 that allows the panel covering mechanism 200 and the thermal insulation panel placed on the panel covering mechanism 200 to pass through. The panel covering mechanism 200 moves the thermal insulation panel to the bottom of the mortar storage mechanism 400. The switch for material feeding on the panel cutting mechanism 300 contacts and opens the feeding switch on the mortar storage mechanism 400 under the drive of the panel covering mechanism 200, and the mortar is fed onto the surface of the thermal insulation panel placed on the panel covering mechanism 200 and the mortar is leveled. There is no need for manual material handling and mortar coating, which improves work efficiency;

[0087] The thermal insulation panel after the mortar is leveled is moved to the designated position by the panel covering mechanism 200. The panel covering mechanism 200 flips to cover the thermal insulation panel with mortar on the wall. The staff fine-tunes the thermal insulation panel covering the wall so that the thermal insulation panel is flatly attached to the wall, and the construction work of the exterior wall thermal insulation panel is completed.

[0088] Example 2

[0089] Please refer to Figures 1-4 , the hoisting mechanism 100 and the covering plate mechanism 200 are movably connected, and the sheet material blanking mechanism 300 is detachably installed in the inner cavity of the hoisting mechanism 100;

[0090] The hoisting mechanism 100 includes a hanging basket 110, a first mounting frame 120, a bottom plate assembly 140 and a mounting seat 150;

[0091] The hanging basket 110 is a rectangular frame welded by profiled steel. Both the staff and the materials can be placed inside the hanging basket 110. The hanging basket 110 is hoisted outside the building through a steel wire rope and a hoisting mechanism. Through the hanging basket 110, the exterior wall of the high-rise building can be insulated and the insulation board can be installed on the exterior wall;

[0092] The first mounting frame 120 is also welded by profiled steel. The first mounting frame 120 is detachably installed at the end of the inner cavity of the hanging basket 110 through bolts. The top of the first mounting frame 120 is flush with the top of the hanging basket 110, and the bottom of the first mounting frame 120 does not contact the bottom of the inner cavity of the hanging basket 110;

[0093] The bottom plate assembly 140 is detachably installed at the bottom of the inner cavity of the hanging basket 110. The bottom plate assembly 140 includes a bottom plate 140a, a guide groove 140b and a lead screw 140c;

[0094] The bottom plate 140a is a hollow structure, and the bottom plate 140a is detachably installed at the bottom of the inner cavity of the hanging basket 110 through bolts;

[0095] The guide groove 140b is opened at the top of the bottom plate 140a, and the guide groove 140b communicates with the inner cavity of the bottom plate 140a;

[0096] The lead screw 140c is installed in the inner cavity of the bottom plate 140a through a bearing. The lead screw 140c is arranged along the length direction of the bottom plate 140a, and the lead screw 140c corresponds to the guide groove 140b;

[0097] The mounting seat 150 is welded at the outer end of the hanging basket 110 corresponding to the lead screw 140c. A reduction motor is installed on the side of the mounting seat 150 away from the hanging basket 110 through bolts. The output shaft on the reduction motor is connected to the lead screw 140c, and the lead screw 140c is driven to rotate by the reduction motor;

[0098] The covering plate mechanism 200 includes a moving seat assembly 210, a turning plate assembly 220 and a limiting plate 230;

[0099] The moving seat assembly 210 and the turning plate assembly 220 are movably connected, and the limiting plate 230 and the turning plate assembly 220 are detachably connected;

[0100] The moving seat assembly 210 includes a frame 210a, a moving plate 210b, and a connecting plate 210c;

[0101] The frame 210a is a rectangular frame, and the bottom of the frame 210a contacts the top of the bottom plate 140a;

[0102] The moving plate 210b is a rectangular plate, and the connecting plate 210c is an inclined strip. One end of the connecting plate 210c is welded to the bottom of the frame 210a, and the moving plate 210b is welded to the other end of the connecting plate 210c. The center of the moving plate 210b coincides with the center of the frame 210a. The moving plate 210b is arranged at the lower end of the frame 210a. Threaded holes 210b-2 are formed in the side wall of the moving plate 210b, and the threaded holes 210b-2 vertically penetrate the moving plate 210b. The threaded holes 210b-2 match the lead screw 140c. The moving plate 210b penetrates the guiding groove 140b and is threadedly connected to the lead screw 140c. By rotating the lead screw 140c, the moving plate 210b is driven to move along the length direction of the bottom plate 140a in the inner cavity of the bottom plate 140a. The moving plate 210b drives the frame 210a to move along the length direction of the hanging basket 110 on the top of the bottom plate 140a through the connecting plate 210c;

[0103] The flap assembly 220 includes a flap 220a, and the flap 220a is movably connected to the frame 210a. In the initial state, the bottom of the flap 220a contacts the top of the frame 210a and is horizontally placed in the inner cavity of the hanging basket 110. The flap 220a is driven to move along the length direction of the hanging basket 110 in the inner cavity of the hanging basket 110 through the frame 210a;

[0104] The number of limiting plates 230 is three, and the limiting plates 230 are detachably fixed to the top of the flap 220a by bolts in the discharge manner as shown in Figure 4 The space enclosed by the three limiting plates 230 is consistent with the area of the thermal insulation board to be constructed;

[0105] The sheet material cutting mechanism 300 includes a storage bin assembly 310 and a cutting assembly 320, and the storage bin assembly 310 and the cutting assembly 320 are movably connected;

[0106] The storage bin assembly 310 includes a first guiding frame 310a, a storage bin 310b, a first spring 310c, and a first baffle 310d;

[0107] The first guiding frame 310a is horizontally placed and is hollow. Second sliding grooves 310a-1 are formed on the front and rear side walls of the inner cavity of the first guiding frame 310a, and the second sliding grooves 310a-1 penetrate the ends of the first guiding frame 310a;

[0108] The silo 310b is vertically placed and hollow. The silo 310b is welded to the top of the first guiding frame 310a. The inner cavity of the silo 310b is in communication with the inner cavity of the first guiding frame 310a. The silo 310b is detachably installed in the inner cavity of the hanging basket 110 through the first mounting bracket 120. The first guiding frame 310a is suspended in the inner cavity of the hanging basket 110 through the silo 310b. The thermal insulation board to be constructed is placed in the inner cavity of the silo 310b;

[0109] The first spring 310c is detachably installed at the end of the inner cavity of the first guiding frame 310a;

[0110] The first baffle 310d is detachably installed at the bottom of the first guiding frame 310a through bolts. The first baffle 310d corresponds to the silo 310b. The first baffle 310d is suspended in the inner cavity of the hanging basket 110 through the first guiding frame 310a. A space is reserved between the bottom of the first baffle 310d and the bottom of the inner cavity of the hanging basket 110 for the through plate mechanism 200 to pass through;

[0111] The blanking assembly 320 includes a material taking plate 320a, a stop block 320b and a fourth mounting block 320c;

[0112] The material taking plate 320a is inserted into the inner cavity of the first guiding frame 310a. The end of the material taking plate 320a is detachably connected to the first spring 310c. The bottom of the material taking plate 320a contacts the top of the first baffle 310d;

[0113] A discharge groove 320a-1 is formed at the top of the material taking plate 320a. The discharge groove 320a-1 corresponds to the silo 310b. The thermal insulation board placed in the inner cavity of the silo 310b falls into the inner cavity of the discharge groove 320a-1 under the action of gravity. Only one thermal insulation board can fall at a time;

[0114] First sliders 320a-2 matching the second sliding grooves 310a-1 are integrally formed on the front and rear side walls of the material taking plate 320a. The material taking plate 320a can move along the length direction of the first guiding frame 310a in the inner cavity of the first guiding frame 310a through the cooperation of the first sliders 320a-2 and the second sliding grooves 310a-1. The movement of the material taking plate 320a drives the thermal insulation board falling into the inner cavity of the discharge groove 320a-1 to move. When the discharge groove 320a-1 completely gets out of the range blocked by the first baffle 310d, the thermal insulation board will fall from the discharge groove 320a-1 onto the flap 220a;

[0115] An installation groove 320a-3 is formed at one end of the material taking plate 320a away from the first spring 310c;

[0116] The stopper 320b is installed in the inner cavity of the installation groove 320a-3 through a coil spring. The bottom of the stopper 320b exceeds the bottom of the first baffle 310d. When the flap 220a moves to the position of the stopper 320b driven by the frame 210a, one of the longitudinally arranged limit plates 230 contacts the stopper 320b. The elastic force of the coil spring is greater than the moving force of the flap 220a and the elastic force of the first spring 310c. At this time, the stopper 320b will not flip, thus driving the material taking plate 320a to move towards the side away from the first spring 310c, enabling the thermal insulation board falling inside the discharge chute 320a-1 to break away from the restriction of the first baffle 310d, so that the board falls onto the top of the flap 220a. When the material taking plate 320a moves to the mortar storage mechanism 400 and contacts the mortar storage mechanism 400 under the drive of the flap 220a, the material taking plate 320a is restricted by the mortar storage mechanism 400 and cannot move. However, the flap 220a continues to move under the drive of the lead screw 140c, thus overcoming the elastic force of the coil spring, driving the stopper 320b to flip and disengage from the limit plate 230. After the stopper 320b disengages from the limit plate 230, the pulling force on the first spring 310c is released, and the first spring 310c drives the material taking plate 320a to reset, making the discharge chute 320a-1 correspond to the silo 310b again. The thermal insulation board placed in the inner cavity of the silo 310b falls into the inner cavity of the discharge chute 320a-1 under the action of gravity, preparing for the next material removal. Thus, manual material handling is not required, reducing the labor intensity.

[0117] Embodiment 3

[0118] Please refer to Figures 1-2 、 Figure 4 and Figures 9-13 As shown in, the hoisting mechanism 100 further includes a second mounting frame 130, which is welded by profiled steel. The second mounting frame 130 is detachably installed in the inner cavity of the hanging basket 110 adjacent to the first mounting frame 120 through bolts;

[0119] The blanking assembly 320 further includes two fourth mounting blocks 320c, which are detachably installed on the front and rear sides of the end of the material taking plate 320a away from the first spring 310c through bolts;

[0120] A connecting shaft 320c-1 is detachably installed between the two fourth mounting blocks 320c, and the connecting shaft 320c-1 is parallel to the wide side of the material taking plate 320a;

[0121] The mortar storage mechanism 400 is detachably installed in the inner cavity of the hoisting mechanism 100 and adjacent to the plate blanking mechanism 300. The mortar storage mechanism 400 includes a mortar stirring mechanism 410 and a slurry discharging mechanism 420, and the mortar stirring mechanism 410 and the slurry discharging mechanism 420 are movably connected;

[0122] The mortar mixing mechanism 410 includes a mixing chamber 410a, a second guide frame 410b, and a limiting frame 410c;

[0123] The mixing chamber 410a is detachably installed in the inner cavity of the hanging basket 110 through a second mounting bracket 130;

[0124] A top cover 410a-1 is detachably installed on the top of the mixing chamber 410a. A motor is installed on the top of the top cover 410a-1. A mixing blade is installed on the output shaft of the motor. The mixing blade is suspended in the inner cavity of the mixing chamber 410a. The raw materials for generating mortar are placed in the inner cavity of the mixing chamber 410a. The raw materials are stirred by the mixing blade to generate mortar. There is no need to frequently transport mortar to the construction site, which ensures the construction efficiency. At the same time, the mortar can be intermittently stirred to prevent the phenomenon of mortar solidification due to long-term placement, thereby effectively reducing the waste of mortar;

[0125] The second guide frame 410b is detachably installed at the bottom of the mixing chamber 410a;

[0126] Third sliding grooves 410b-1 are provided on the front and rear side walls of the inner cavity of the second guide frame 410b, and the third sliding grooves 410b-1 penetrate through the ends of the second guide frame 410b;

[0127] A second spring 410b-2 is detachably installed at the end of the inner cavity of the second guide frame 410b;

[0128] A second baffle 410b-3 is integrally formed at the bottom of the second guide frame 410b;

[0129] The limiting frame 410c is detachably installed at the bottom of the second baffle 410b-3 through bolts. A scraping plate 410c-1 is integrally formed at the bottom of the limiting frame 410c, and scraping teeth 410c-2 are provided at the bottom of the scraping plate 410c-1;

[0130] The slurry discharging mechanism 420 includes a sliding plate 420a and a slurry discharging cylinder 420b;

[0131] The sliding plate 420a is inserted into the inner cavity of the second guide frame 410b and is detachably connected to the end of the second spring 410b-2. Second sliders 420a-1 that match the third sliding grooves 410b-1 are integrally formed on the front and rear side walls of the sliding plate 420a. The sliding plate 420a can move along the length direction of the second guide frame 410b in the inner cavity of the second guide frame 410b through the cooperation of the third sliding grooves 410b-1 and the second sliders 420a-1;

[0132] One end of the sliding plate 420a is screwed with a vertical plate 420a-2. On the side of the vertical plate 420a-2 away from the sliding plate 420a, a connecting buckle 420a-3 is integrally formed at the bottom, and the connecting buckle 420a-3 corresponds to the connecting shaft 320c-1;

[0133] One end of the bottom of the sliding plate 420a away from the vertical plate 420a-2 is detachably installed with a limit block 420a-4;

[0134] When the material taking plate 320a moves to near the vertical plate 420a-2 under the cooperation of the stop block 320b and the limit plate 230, the connecting shaft 320c-1 is snapped into the inner side of the connecting buckle 420a-3. The movement of the material taking plate 320a is blocked by the vertical plate 420a-2. The stop block 320b is forced to turn over, and the turning plate 220a continues to move towards the direction of the mixing chamber 410a. The material taking plate 320a is reset under the elastic force of the first spring 310c and moves towards the direction away from the mixing chamber 410a. By the cooperation of the connecting shaft 320c-1 and the connecting buckle 420a-3, the sliding plate 420a is pulled towards the first guide frame 310a;

[0135] The slurry discharge cylinder 420b is detachably installed at the bottom of the sliding plate 420a and penetrates through the top of the sliding plate 420a to correspond to the mixing chamber 410a. The inner cavity of the slurry discharge cylinder 420b is communicated with the inner cavity of the mixing chamber 410a. The sliding plate 420a can drive the slurry discharge cylinder 420b to move at the lower end of the second guide frame 410b;

[0136] On the circumferential outer side wall of the slurry discharge cylinder 420b, a fifth mounting block 420b-1 is integrally formed. At the bottom of the fifth mounting block 420b-1, a flap 420b-2 is movably installed through a pin shaft. The flap 420b-2 can be turned over on the fifth mounting block 420b-1 through the pin shaft. When the slurry discharge cylinder 420b moves through the sliding plate 420a and is placed inside the second baffle 410b-3, the flap 420b-2 contacts the inner bottom of the second baffle 410b-3 and covers the discharge port of the slurry discharge cylinder 420b to prevent the discharge of the slurry. When the slurry discharge cylinder 420b moves away from the second baffle 410b-3 through the sliding plate 420a, the flap 420b-2 turns downwards under the action of gravity, opening the bottom discharge port of the slurry discharge cylinder 420b, and the mortar is discharged from the bottom of the slurry discharge cylinder 420b to the surface of the heat preservation board placed on the turning plate 220a;

[0137] Specifically, the connecting shaft 320c-1 is clamped inside the connecting buckle 420a-3. The material taking plate 320a is driven by the first spring 310c to reset. The material taking plate 320a drives the sliding plate 420a to move towards the first guiding frame 310a through the cooperation of the connecting shaft 320c-1 and the connecting buckle 420a-3, thereby driving the slurry discharging cylinder 420b to move towards the side away from the second baffle 410b-3, so that the flip cover 420b-2 is disengaged from the restriction of the second baffle 410b-3. The flip cover 420b-2 flips downward under the action of gravity, opening the discharge port at the bottom of the slurry discharging cylinder 420b, and discharging the mortar onto the surface of the thermal insulation board. There is no need for manual plastering, reducing the labor intensity of the staff. Before the material taking plate 320a is fully reset, the limiting block 420a-4 will contact the second baffle 410b-3, hindering the movement of the sliding plate 420a. Under the pulling force of the first spring 310c, the material taking plate 320a is continuously driven to reset. Under the cooperation of the limiting block 420a-4 and the second baffle 410b-3, the movement of the sliding plate 420a is hindered, resulting in the connecting shaft 320c-1 falling off the connecting buckle 420a-3. The sliding plate 420a is driven by the second spring 410b-2 to reset and receive the material, so that the slurry in the inner cavity of the stirring chamber 410a enters the inner cavity of the slurry discharging cylinder 420b, preparing for the next slurry discharge;

[0138] After the slurry is discharged onto the thermal insulation board through the slurry discharging cylinder 420b, the flap 220a continues to move in the same displacement direction, driving the thermal insulation board into the inner side of the limiting frame 410c and contacting the scraper 410c-1. The slurry is leveled on the thermal insulation board through the scraper 410c-1. At the same time, the indentations are scraped on the surface of the slurry through the scraping teeth 410c-2 on the scraper 410c-1. There is no need for manual leveling of the slurry, further reducing the labor intensity of the staff.

[0139] Embodiment 4

[0140] In order to further facilitate the control of the telescopic movement of the material taking plate 320a and the sliding plate 420a, the device can also be provided with multiple sets of lead screw drive devices and sensor devices. The lead screw drive devices are used to drive the material taking plate 320a and the sliding plate 420a to perform telescopic movement respectively, and the sensor devices are used to monitor the position of the flap 220a;

[0141] When the flap 220a moves to the lower end of the material taking plate 320a, the lead screw drive device connected to the material taking plate 320a drives the material taking plate 320a to move and place the thermal insulation board on the flap 220a. When the flap 220a moves out of the monitoring range of the sensor, the material taking plate 320a is driven by the lead screw drive device to reset;

[0142] The movement and reset of the sliding plate 420a are operated as described above, so that the telescopic movement of the material taking plate 320a and the sliding plate 420a can be controlled more precisely, enabling the heat preservation plate to be accurately placed on the turning plate 220a and the mortar to be accurately placed on the heat preservation plate, avoiding the phenomenon of material leakage.

[0143] Embodiment 5

[0144] Please refer to Figures 4-7 , two first mounting blocks 210a-1 are integrally formed at the rear edge of the top of the frame 210a, and the two first mounting blocks 210a-1 are symmetrically arranged;

[0145] The top of the moving plate 210b is symmetrically mounted with second mounting blocks 210b-1 by bolts;

[0146] On the side of the turning plate 220a facing the frame 210a, third mounting blocks 220a-1 are symmetrically mounted by bolts;

[0147] The turning plate assembly 220 further includes an outer sleeve 220b;

[0148] The number of the outer sleeves 220b is two, and the two outer sleeves 220b are symmetrically arranged and installed between the two first mounting blocks 210a-1 through a pin shaft. The outer sleeve 220b can be turned between the two first mounting blocks 210a-1 through the pin shaft;

[0149] The top end of the outer sleeve 220b is provided with a telescopic rod 220b-1. One end of the telescopic rod 220b-1 is inserted into the inner cavity of the outer sleeve 220b, and the other end is arranged outside the top of the outer sleeve 220b. One end of the telescopic rod 220b-1 arranged outside the top of the outer sleeve 220b is detachably connected to the side of the turning plate 220a facing the frame 210a through a bolt;

[0150] The covering plate mechanism 200 further includes a support frame assembly 240. The support frame assembly 240 is movably installed between the moving plate 210b and the turning plate 220a. The support frame assembly 240 includes a first support 240a and a second support 240b;

[0151] One end of the first support 240a is installed between the two second mounting blocks 210b-1 through a pin shaft. The first support 240a can rotate between the two second mounting blocks 210b-1 through the pin shaft. A motor is installed on the side of one of the two second mounting blocks 210b-1 away from the first support 240a. The output shaft on the motor is connected to the pin shaft. The first support 240a is driven to turn through the motor drive and the pin shaft;

[0152] One end of the second bracket 240b is connected to one end of the first bracket 240a away from the second mounting block 210b-1 through a pin shaft, and the second bracket 240b is driven to flip by the first bracket 240a;

[0153] One end of the second bracket 240b away from the first bracket 240a is installed between two third mounting blocks 220a-1 through a pin shaft. The second bracket 240b and the third mounting blocks 220a-1 are used in cooperation to drive the flap 220a to flip. While the flap 220a is flipping, the telescopic rod 220b-1 is driven to extend outward on the outer sleeve 220b, raising the flap 220a so that the flap 220a is higher than the top of the hanging basket 110. The heat preservation board placed on the flap 220a and smeared with mortar is covered on the wall. It is not necessary for the staff to carry and lift the heat preservation board, reducing the labor intensity of the staff. When covering the heat preservation board on the wall through the flap 220a, the staff still needs to manually adjust the height and position of the heat preservation board and gently tap the heat preservation board so that the heat preservation board can adhere to the wall flatly.

[0154] Embodiment 6

[0155] Please refer to Figures 1-2 and Figures 14-16 , the hoisting mechanism 100 and the clamping mechanism 500 are movably connected;

[0156] The hoisting mechanism 100 further includes a side plate 160;

[0157] The side plate 160 is detachably installed on the side of the hanging basket 110 facing the wall through bolts. A first chute 160a is provided at the top of the side plate 160 on the side facing the wall;

[0158] The clamping mechanism 500 includes an outer clamping plate assembly 510 and an inner clamping plate assembly 520, and the outer clamping plate assembly 510 and the inner clamping plate assembly 520 are movably connected;

[0159] The outer clamping plate assembly 510 includes a first fixing plate 510a, a third slider 510b, a first adjusting plate 510c, a first lead screw 510d and a second lead screw 510e;

[0160] The third slider 510b is matched with the first chute 160a, the third slider 510b is movably connected to the first chute 160a, and the third slider 510b can move along the length direction of the hanging basket 110 in the first chute 160a;

[0161] On both the left and right sides of the inner side of the first fixing plate 510a, fourth sliding grooves 510a-1 are provided. On both the left and right sides of the outer side of the first fixing plate 510a, first fixing blocks 510a-2 are integrally formed. The first fixing plate 510a is connected to the third slider 510b through the fourth sliding groove 510a-1. The first fixing plate 510a is connected to the side plate 160 through the third slider 510b. The first fixing plate 510a can move along the height direction through the cooperation of the fourth sliding groove 510a-1 and the third slider 510b;

[0162] The number of the first adjusting plates 510c is two, which are movably installed at the upper and lower ends of the first fixing plate 510a up and down. The first adjusting plate 510c can move along the height direction of the first fixing plate 510a;

[0163] On both the left and right sides of the outer side of the first adjusting plate 510c, second fixing blocks 510c-1 are integrally formed. The second fixing blocks 510c-1 correspond to the first fixing blocks 510a-2;

[0164] On the side of both first adjusting plates 510c away from the side plate 160, guide shafts 510c-2 are installed. The guide shafts 510c-2 are detachably connected to the first adjusting plates 510c through splines or flat keys;

[0165] The first lead screw 510d is movably connected to the first fixing block 510a-2 through a bearing. The two ends of the first lead screw 510d extend upward and downward to the second fixing block 510c-1 respectively and are threadedly connected to the second fixing block 510c-1. The end of the first lead screw 510d penetrates through the second fixing block 510c-1. A first driving block 510d-1 is detachably installed on the circumferential outer side wall of the first lead screw 510d through a spline or a flat key. The first driving blocks 510d-1 are distributed on the upper and lower sides of the first fixing block 510a-2. The shape of the first driving block 510d-1 is the same as that of an external hexagonal nut. By using a wrench in cooperation with the first driving block 510d-1, the first lead screw 510d can be driven to rotate, and the distance between the two first adjusting plates 510c can be adjusted by the rotation of the first lead screw 510d;

[0166] The number of the second lead screws 510e is two. Both second lead screws 510e are connected to the two first fixing blocks 510a-2 through bearings respectively. The second lead screws 510e are installed on the side of the first fixing block 510a-2 away from the side plate 160. The second lead screws 510e are perpendicular to the first lead screw 510d but do not contact each other;

[0167] One end of the circumferential outer side wall of the second lead screw 510e adjacent to the first fixing block 510a-2 is detachably installed with a second driving block 510e-1 through a spline or a flat key. The outer shape of the second driving block 510e-1 is the same as that of an external hexagon nut. By using a wrench in cooperation with the second driving block 510e-1, the second lead screw 510e can be driven to rotate;

[0168] The inner clamping plate assembly 520 includes a second fixing plate 520a and a second adjusting plate 520b;

[0169] The second fixing plate 520a corresponds to the first fixing plate 510a and is arranged in parallel with the first fixing plate 510a;

[0170] Third fixing blocks 520a-1 are integrally formed on the outer left and right side walls of the second fixing plate 520a. The third fixing blocks 520a-1 correspond to the first fixing blocks 510a-2 and are threadedly connected to the second lead screw 510e. By rotating the second lead screw 510e, the distance between the second fixing plate 520a and the first fixing plate 510a can be adjusted;

[0171] Adjusting grooves 520a-2 are formed at the upper and lower ends of the side wall of the second fixing plate 520a. The adjusting grooves 520a-2 correspond to the guide shafts 510c-2. One end of the guide shaft 510c-2 far from the first adjusting plate 510c is inserted into the inner side of the adjusting groove 520a-2, and the guide shaft 510c-2 can move along the height direction of the second fixing plate 520a inside the adjusting groove 520a-2;

[0172] The number of the second adjusting plates 520b is two, which are movably installed at the upper and lower ends of the second fixing plate 520a, and the second adjusting plates 520b are correspondingly arranged with the first adjusting plates 510c;

[0173] Connection holes 520b-1 are formed on the side walls of the second adjusting plates 520b, and the connection holes 520b-1 vertically penetrate through the second adjusting plates 520b. The connection holes 520b-1 are matched with the guide shafts 510c-2. One end of the guide shaft 510c-2 far from the first adjusting plate 510c is inserted into the inner side of the connection holes 520b-1, and the second adjusting plates 520b can slide on the guide shafts 510c-2 through the connection holes 520b-1;

[0174] Specifically, when the hanging basket 110 is suspended on one side of the wall with a window, first lower the hanging basket 110 to the window. Adjust the position of the second fixing plate 520a through the third slider 510b so that the second fixing plate 520a corresponds to the window. Rotate the first lead screw 510d to adjust the heights of the first adjusting plate 510c and the second adjusting plate 520b, so that the second adjusting plate 520b and the second fixing plate 520a can enter the room through the window. Then rotate the second lead screw 510e to adjust the distance between the second fixing plate 520a and the first fixing plate 510a so that the second adjusting plate 520b can completely enter the room. Thereafter, rotate the first lead screw 510d to adjust the heights of the first adjusting plate 510c and the second adjusting plate 520b so that the heights of the first adjusting plate 510c and the second adjusting plate 520b exceed the upper and lower window sills of the window. Then rotate the second lead screw 510e to adjust the distance between the second fixing plate 520a and the first fixing plate 510a so that the first adjusting plate 510c is close to the outer wall and the second adjusting plate 520b is close to the inner wall. Clamp the wall through the first adjusting plate 510c and the second adjusting plate 520b to fix the hanging basket 110, reduce the shaking amplitude of the hanging basket 110. When constructing the thermal insulation board, the construction accuracy of the thermal insulation board will not be affected by the shaking of the hanging basket 110, and the use quality of the thermal insulation board is improved.

[0175] Embodiment 7

[0176] In order to ensure the construction quality of the thermal insulation board on the wall without a window, the device is also provided with a high-pressure gas tank. The high-pressure gas tank is installed on the side of the inner cavity of the hanging basket 110 away from the first mounting frame 120. The high-pressure gas tank is filled with air. A valve is installed at the exhaust port of the high-pressure gas tank, and a pipeline is installed at the exhaust port of the valve. The pipeline extends between the side plate 160 and the wall. When the hanging basket 110 is suspended on the wall without a window, when attaching the thermal insulation board, open the valve, and the gas inside the high-pressure gas tank is sprayed into the space between the side plate 160 and the wall through the pipeline, accelerating the air flow between the side plate 160 and the wall. According to Bernoulli's principle and the air pressure difference effect, the side plate 160 is attached to the wall, thereby fixing the hanging basket 110, reducing the shaking amplitude of the hanging basket 110. When constructing the thermal insulation board, the construction accuracy of the thermal insulation board will not be affected by the shaking of the hanging basket 110, and the use quality of the thermal insulation board is improved. After the thermal insulation board is attached, close the valve to save gas.

[0177] Although the present invention has been described above with reference to embodiments, various modifications can be made thereto and components thereof can be replaced with equivalents without departing from the scope of the present invention. In particular, as long as there is no structural conflict, the features of the embodiments disclosed in the present invention can be combined with each other in any way, and the exhaustive description of these combinations is not given in this specification only for the sake of saving space and resources. Therefore, the present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. An external wall thermal insulation integrated board construction and installation device, characterized in that: Including: A hoisting mechanism (100) for carrying materials and construction tools; A cladding mechanism (200), the cladding mechanism (200) is movably connected to the hoisting mechanism (100) through a linear moving device, and the cladding mechanism (200) can move inside the hoisting mechanism (100); A sheet material blanking mechanism (300), the sheet material blanking mechanism (300) is connected to the hoisting mechanism (100) and corresponds to the cladding mechanism (200). Heat preservation sheets are placed inside the sheet material blanking mechanism (300). The cladding mechanism (200) moves under the drive of the linear moving device to contact the sheet material blanking mechanism (300) and open the discharge port, and the heat preservation sheets fall onto the cladding mechanism (200) through the sheet material blanking mechanism (300); A mortar storage mechanism (400), the mortar storage mechanism (400) is connected to the hoisting mechanism (100) and corresponds to the sheet material blanking mechanism (300). Mortar is placed inside the mortar storage mechanism (400). The sheet material blanking mechanism (300) contacts the mortar storage mechanism (400) under the drive of the cladding mechanism (200) and opens the discharge port, and the mortar covers the surface of the heat preservation sheets through the mortar storage mechanism (400); The cladding mechanism (200) includes: A moving seat assembly (210); A flap assembly (220), the flap assembly (220) is movably connected to the moving seat assembly (210), and the moving seat assembly (210) drives the flap assembly (220) to move horizontally; A limiting plate (230), the limiting plate (230) is detachably connected to the flap assembly (220), and the heat preservation sheets are positioned by the limiting plate (230); A support frame assembly (240), both ends of the support frame assembly (240) are respectively connected to the moving seat assembly (210) and the flap assembly (220), and the support frame assembly (240) drives the flap assembly (220) to flip and install the heat preservation sheets on the moving seat assembly (210).

2. The construction and installation device for an integrated external wall thermal insulation board according to claim 1, wherein: The hoisting mechanism (100) includes: A hanging basket (110); A first mounting frame (120), the first mounting frame (120) is detachably mounted at the inner cavity end of the hanging basket (110); A second mounting frame (130), the second mounting frame (130) is detachably mounted at the inner cavity end of the hanging basket (110) near the first mounting frame (120); A bottom plate assembly (140), the bottom plate assembly (140) is detachably mounted at the inner cavity bottom of the hanging basket (110); A mounting seat (150), the mounting seat (150) is arranged at the end of the hanging basket (110) corresponding to the bottom plate assembly (140); Side plates (160), the side plates (160) are arranged outside the hanging basket (110).

3. The construction and installation device for an integrated exterior wall thermal insulation board according to claim 1, characterized in that: The sheet material blanking mechanism (300) includes: A storage bin assembly (310); The blanking component (320), the blanking component (320) is connected to the storage bin component (310), and the thermal insulation board enters the blanking component (320) through the storage bin component (310), and the blanking process of the thermal insulation board is carried out through the blanking component (320).

4. The construction and installation device for an integrated exterior wall thermal insulation board according to claim 3, wherein: The storage bin component (310) includes: The first guiding frame (310a), the inner cavity of the first guiding frame (310a) places the thermal insulation board; The storage bin (310b), the storage bin (310b) is connected to the first guiding frame (310a) and is communicated with the inner cavity of the first guiding frame (310a), and the thermal insulation board enters the inner cavity of the storage bin (310b) through the first guiding frame (310a); The first spring (310c), the first spring (310c) is detachably installed at the end of the inner cavity of the first guiding frame (310a); The first baffle (310d), the first baffle (310d) is arranged at the bottom of the first guiding frame (310a).

5. The construction and installation device for an integrated external wall thermal insulation board according to claim 3, characterized in that: The blanking component (320) includes: The material taking plate (320a), a discharge groove (320a-1) is formed through the top of the material taking plate (320a); The stop block (320b), the stop block (320b) is arranged at the end of the bottom surface of the material taking plate (320a) through a torsion spring; The fourth mounting block (320c), the fourth mounting block (320c) is arranged at the end of the material taking plate (320a), and a connecting shaft (320c-1) is arranged on the side wall of the fourth mounting block (320c).

6. The construction and installation device for an integrated exterior wall thermal insulation board according to claim 1, characterized in that: The mortar storage mechanism (400) includes: The mortar stirring mechanism (410), the inner cavity of the mortar stirring mechanism (410) places the mortar and stirs the mortar; The slurry discharging mechanism (420), the slurry discharging mechanism (420) is connected to the mortar stirring mechanism (410), and the mortar enters the slurry discharging mechanism (420) through the mortar stirring mechanism (410) and is discharged to the surface of the thermal insulation board through the slurry discharging mechanism (420).

7. The construction and installation device for an integrated exterior wall thermal insulation board according to claim 1, characterized in that: The clamping mechanism (500) is installed on the side of the hoisting mechanism (100), and the clamping mechanism (500) includes: The outer clamping plate assembly (510), the outer clamping plate assembly (510) is slidably connected to the hoisting mechanism (100); The inner clamping plate assembly (520), the inner clamping plate assembly (520) is movably connected to the outer clamping plate assembly (510).

8. The construction and installation device for an integrated exterior wall thermal insulation board according to claim 7, characterized in that: The outer clamping plate assembly (510) includes: The first fixing plate (510a), a fourth sliding groove (510a-1) is formed inside the first fixing plate (510a), and a first fixing block (510a-2) is arranged outside the first fixing plate (510a); The third sliding block (510b), the third sliding block (510b) is connected to the first fixing plate (510a) through the fourth sliding groove (510a-1); The first adjusting plate (510c), the first adjusting plate (510c) is movably connected to the first fixing plate (510a), a second fixing block (510c-1) is arranged on the outer side of the first adjusting plate (510c), and a guide shaft (510c-2) is arranged on the side wall of the first adjusting plate (510c); The first lead screw (510d), the first lead screw (510d) is movably connected to the first fixing block (510a-2) through a bearing and is threadedly connected to the second fixing block (510c-1); The second lead screw (510e), the second lead screw (510e) is movably connected to the first fixing block (510a-2) through a bearing.

9. The construction and installation device for an integrated exterior wall thermal insulation board according to claim 7, characterized in that: The inner clamping plate assembly (520) includes: The second fixing plate (520a), a third fixing block (520a-1) is arranged on the outer side of the second fixing plate (520a), and an adjusting groove (520a-2) is formed on the side wall of the second fixing plate (520a); The second adjusting plate (520b), the second adjusting plate (520b) is movably connected to the second fixing plate (520a), and a connecting hole (520b-1) corresponding to the adjusting groove (520a-2) is formed on the side wall of the second adjusting plate (520b).

Citation Information

Patent Citations

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    CN114776040A

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