Construction and installation device for external wall thermal insulation integrated board
By designing an external wall insulation integrated panel construction and installation device that includes a lifting mechanism, a cladding mechanism, a plate cutting mechanism and a mortar storage mechanism, the problem of low construction efficiency of the external wall insulation panel is solved, automated construction is realized, and efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202510451583.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2045-04-11
AI Technical Summary
During the construction of exterior wall insulation boards, staff need to manually retrieve materials, plaster and attach the boards, resulting in low construction efficiency.
A construction and installation device for the exterior wall insulation integrated panel is designed, including a lifting mechanism, a cladding mechanism, a plate material cutting mechanism and a mortar storage mechanism. The device automatically performs the cutting of insulation boards, the delivery of mortar and the covering of the boards, reducing manual operation.
It improves the construction efficiency of exterior wall insulation boards, reduces labor intensity, reduces material waste, and improves construction accuracy.
Smart Images

Figure CN119956941A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of equipment for installing thermal insulation boards, and in particular to a construction and installation device for an external wall thermal insulation integrated board. Background Art
[0002] Exterior wall insulation board, also known as Horizon building exterior wall decoration integrated board, is a building material composed of a variety of materials. It is mainly used to improve the insulation performance of the exterior wall of the building and meet the energy-saving needs of housing construction. It is also the preferred material for energy-saving transformation of existing buildings.
[0003] During the construction of exterior wall insulation boards, workers are required to ride in a hanging basket suspended on the outside of the wall, and construction materials and construction tools are placed inside the hanging basket. When constructing the exterior wall insulation boards, workers need to manually take materials, plaster and attach the exterior wall insulation boards, and the work efficiency is relatively low. Therefore, how to improve the construction efficiency of exterior wall insulation boards is a problem that needs to be urgently solved by 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 an integrated exterior wall insulation panel to solve the problem in the above-mentioned background technology that during the construction of the exterior wall insulation panel, workers need to ride in a hanging basket suspended on the outside of the wall, and construction materials and construction tools are placed inside the hanging basket. When constructing the exterior wall insulation panel, workers need to manually take materials, plaster and attach the exterior wall insulation panel, resulting in low work efficiency.
[0005] To achieve the above object, the present invention provides the following technical solution: a construction and installation device for an exterior wall thermal insulation integrated panel, comprising:
[0006] Lifting mechanism, used to carry materials and construction tools;
[0007] A plate covering mechanism, wherein the plate covering mechanism is movably connected to the hoisting mechanism via a linear moving device, and the plate covering mechanism can move in the inner cavity of the hoisting mechanism;
[0008] A plate unloading mechanism, the plate unloading mechanism is connected to the hoisting mechanism and corresponds to the plate covering mechanism, a heat-insulating plate is placed in the inner cavity of the plate unloading mechanism, the plate covering mechanism moves under the drive of the linear moving device to contact the plate unloading mechanism and open the discharge port, and the heat-insulating plate falls onto the plate covering mechanism through the plate unloading mechanism;
[0009] A mortar storage mechanism is connected to the lifting mechanism and corresponds to the plate unloading mechanism. Mortar is placed in the inner cavity of the mortar storage mechanism. The plate unloading mechanism contacts the mortar storage mechanism and opens the discharge port under the drive of the covering mechanism. The mortar is covered on the surface of the insulation plate through the mortar storage mechanism.
[0010] Preferably, the hoisting mechanism comprises:
[0011] hanging basket;
[0012] A first mounting frame, the first mounting frame being detachably mounted on an inner cavity end of the hanging basket;
[0013] A second mounting frame, the second mounting frame is detachably mounted on the inner cavity end of the hanging basket and is disposed adjacent to the first mounting frame;
[0014] A bottom plate assembly, the bottom plate assembly is detachably mounted on the bottom of the inner cavity of the hanging basket;
[0015] A mounting seat, the mounting seat being arranged at an end of the hanging basket and corresponding to the bottom plate assembly;
[0016] A side panel is arranged on the outside of the hanging basket.
[0017] Preferably, the cover plate mechanism comprises:
[0018] Mobile seat assembly;
[0019] A flap assembly, wherein the flap assembly is movably connected to the movable seat assembly and the movable seat assembly drives the flap assembly to move horizontally;
[0020] A limiting plate, the limiting plate is detachably connected to the flap assembly, and the thermal insulation plate is positioned by the limiting plate;
[0021] The support frame assembly has two ends connected to the movable seat assembly and the flap assembly respectively, and the flap assembly is driven by the support frame assembly to flip and install the thermal insulation board on the movable seat assembly.
[0022] Preferably, the sheet material unloading mechanism comprises:
[0023] Storage silo components;
[0024] A material unloading component is connected to the material storage bin component, and the thermal insulation board enters the material unloading component through the material storage bin component, and the thermal insulation board is unloaded through the material unloading component.
[0025] Preferably, the storage bin assembly comprises:
[0026] a first guide frame, wherein a heat-insulating plate is placed in an inner cavity of the first guide frame;
[0027] A material bin, wherein the material bin is connected to the first guide frame and communicates with the inner cavity of the first guide frame, and the thermal insulation board enters the inner cavity of the material bin through the first guide frame;
[0028] a first spring, wherein the first spring is detachably mounted on an inner cavity end of the first guide frame;
[0029] A first baffle is arranged at the bottom of the first guide frame.
[0030] Preferably, the blanking assembly comprises:
[0031] A feeding plate, wherein a discharge groove is provided on the top of the feeding plate;
[0032] A stopper, the stopper being arranged at the bottom end of the picking plate through a coil spring;
[0033] A 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 comprises:
[0035] A mortar stirring mechanism, wherein the mortar is placed in an inner cavity of the mortar stirring mechanism and the mortar is stirred;
[0036] The slurry discharge mechanism is connected to the mortar stirring mechanism, and the mortar enters the slurry discharge mechanism through the mortar stirring mechanism and is discharged to the surface of the thermal insulation board through the slurry discharge 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, the outer clamping plate assembly is slidably connected to the hoisting mechanism;
[0039] An inner clamping plate assembly is movably connected to the outer clamping plate assembly.
[0040] Preferably, the outer clamping plate assembly comprises:
[0041] A first fixing plate, wherein a fourth sliding groove is provided on an inner side of the first fixing plate, and a first fixing block is provided on an outer side of the first fixing plate;
[0042] a third sliding block, the third sliding block being connected to the first fixing plate through a fourth sliding groove;
[0043] a first adjusting plate, wherein the first adjusting plate is movably connected to the first fixing plate, a second fixing block is disposed on the outer side of the first adjusting plate, and a guide shaft is disposed on the side wall of the first adjusting plate;
[0044] A first screw rod, the first screw rod is movably connected to the first fixing block through a bearing and is threadedly connected to the second fixing block;
[0045] A second screw rod, wherein the second screw rod is movably connected to the first fixing block via a bearing.
[0046] Preferably, the inner clamping plate assembly comprises:
[0047] A second fixing plate, a third fixing block is arranged on the outer side of the second fixing plate, and an adjustment slot is opened on the side wall of the second fixing plate;
[0048] The second adjusting plate is movably connected to the second fixing plate, and a connecting hole corresponding to the adjusting groove is formed on the side wall of the second adjusting plate.
[0049] Compared with the prior art, the present invention has the following beneficial effects:
[0050] (1) The insulation board is placed on the covering board mechanism through the board unloading mechanism, and then the mortar is placed on the insulation board through the mortar storage mechanism. After the covering board mechanism moves to the designated position, it is flipped over to cover the insulation board with mortar on the wall. There is no need to manually move materials and apply mortar, which improves work efficiency.
[0051] When the loader moves to the stopper under the drive of the frame, one of the longitudinally arranged limit plates contacts the stopper, and the elastic force of the coil spring is greater than the force of the loader moving and the elastic force of the first spring. At this time, the stopper will not flip over, thereby driving the material picking plate to move toward the side away from the first spring, so that the insulation board fallen on the inner side of the discharge trough is free from the restriction of the first baffle plate, so that the board falls to the top of the flip plate. When the material picking plate moves to the mortar storage mechanism under the drive of the flip plate and contacts the mortar storage mechanism, the material picking plate is restricted by the mortar storage mechanism and cannot move, and the flap continues to move under the drive of the lead screw to overcome the elastic force of the coil spring, driving the stopper to flip and disengage from the limit plate. After the stopper is separated from the limit plate, the pulling force on the first spring is released, and the material picking plate is reset by the first spring, so that the discharge trough corresponds to the silo again, and the insulation board placed in the inner cavity of the silo falls into the inner cavity of the discharge trough under the action of gravity, preparing for the next material removal, thereby 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, a stirring blade is installed on the output shaft of the motor, the stirring blade is suspended in the inner cavity of the mixing chamber, raw materials for generating mortar are placed in the inner cavity of the mixing chamber, and the raw materials are stirred by the stirring blade to generate mortar. There is no need to frequently transport mortar to the construction site, thus ensuring construction efficiency. At the same time, the mortar can be stirred intermittently to prevent the mortar from solidifying due to long-term placement, thereby effectively reducing the waste of mortar;
[0053] (4) The first spring drives the material taking plate to reset, and the material taking plate pulls the sliding plate toward the first guide frame through the cooperation of the connecting shaft and the connecting buckle, thereby driving the slurry discharge tube to move toward the side away from the second baffle plate so that the flap is free from the restriction of the second baffle plate. The flap flips downward under the action of gravity, opens the discharge port at the bottom of the slurry discharge tube, and discharges the mortar onto the surface of the insulation board, without the need for manual slurry spreading, thereby reducing the labor intensity of the staff;
[0054] (5) After the slurry is discharged onto the insulation board through the slurry discharge tube, the flap keeps moving in the same direction, driving the insulation board to enter the inner side of the limit frame and contact the scraper. The slurry is smoothed on the insulation board by the scraper. At the same time, the scraping teeth on the scraper scrape off the dents on the surface of the slurry. There is no need for manual smoothing of the slurry, which further reduces the labor intensity of the staff.
[0055] (6) One end of the first bracket is installed between the two second mounting blocks through a pin shaft, and the first bracket can rotate between the two second mounting blocks through the pin shaft. A motor is installed on the side of one of the two second mounting blocks away from the first bracket, and the output shaft on the motor is connected to the pin shaft. The motor is driven to rotate and the first bracket is driven to flip through the pin shaft. One end of the second bracket is connected to the end of the first bracket away from the second mounting block through the pin shaft, and the second bracket is driven to flip through the first bracket. The end of the second bracket away from the first bracket is installed between the two third mounting blocks through the pin shaft. The flap is flipped by the cooperation of the second bracket and the third mounting block. When the flap flips, the telescopic rod is extended outward on the outer sleeve to lift the flap so that the flap is higher than the top of the hanging basket, and the insulation board placed on the flap and coated with mortar is covered on the wall. There is no need for workers to carry and lift the insulation board, thereby reducing the labor intensity of workers.
[0056] (7) The wall is clamped and fixed by the first adjustment plate and the second adjustment plate, so as to reduce the swing amplitude of the hanging basket. When the insulation board is constructed, the construction accuracy of the insulation board will not be affected by the swing of the hanging basket, thereby improving the use quality of the insulation board. BRIEF DESCRIPTION OF THE DRAWINGS
[0057] Figure 1 It is a schematic diagram of the structure of the present invention;
[0058] Figure 2 It is a structural schematic diagram of the hoisting mechanism of the present invention;
[0059] Figure 3 A is a schematic diagram of the structure of the present invention;
[0060] Figure 4 It is a partial cross-sectional schematic diagram of the base plate assembly of the present invention;
[0061] Figure 5This is a schematic diagram of the closed state of the cover plate mechanism of the present invention;
[0062] Figure 6 It is a schematic diagram of the unfolded state of the cover plate mechanism of the present invention;
[0063] Figure 7 It is a partial cross-sectional schematic diagram of the movable seat assembly of the present invention;
[0064] Figure 8 It is a schematic diagram of the structure of Figure B of the present invention;
[0065] Fig. 9 This is a schematic diagram of the structure of the flap assembly of the present invention;
[0066] Fig.10 It is a schematic diagram of the structure of Figure C of the present invention;
[0067] Fig.11 This is a schematic diagram of the structure of the plate blanking mechanism of the present invention;
[0068] Fig.12 This is a schematic diagram of the structure of the storage bin assembly of the present invention;
[0069] Fig.13 It is a structural schematic diagram of Figure D of the present invention;
[0070] Fig.14 It is a partial cross-sectional schematic diagram of the blanking assembly of the present invention;
[0071] Fig.15 It is a schematic diagram of the structure of Figure E of the present invention;
[0072] Fig.16 This is a schematic diagram of the structure of the mortar storage mechanism of the present invention;
[0073] Fig.17 This is a schematic diagram of the structure of the mortar mixing mechanism of the present invention;
[0074] Fig.18 It is a schematic diagram of the structure of the pulp discharge mechanism of the present invention;
[0075] Fig.19 It is a schematic diagram of the structure of the clamping mechanism of the present invention;
[0076] Fig. 20 It is a schematic diagram of the structure of the outer splint assembly of the present invention;
[0077] Fig.21 It is a structural schematic diagram of Figure F of the present invention;
[0078] Fig. 22 It is a schematic diagram of the structure of G diagram of the present invention;
[0079] Fig.23 It is a partial cross-sectional schematic diagram of the inner splint assembly of the present invention.
[0080] In the figure: 100 hoisting mechanism, 110 hanging basket, 120 first mounting frame, 130 second mounting frame, 140 bottom plate assembly, 140a bottom plate, 140b guide groove, 140c lead screw, 150 mounting seat, 160 side plate, 160a first slide groove, 200 cover 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, 220 b outer sleeve, 220b-1 telescopic rod, 230 limit plate, 240 support frame assembly, 240a first bracket, 240b second bracket, 300 plate unloading mechanism, 310 storage bin assembly, 310a first guide frame, 310a-1 second slide groove, 310b bin, 310c first spring, 310d first baffle, 320 unloading assembly, 320a material taking plate, 320a-1 discharge groove, 320a-2 first slider, 320a-3 installation groove, 320b block, 320c fourth installation 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 slide groove, 410b-2 second spring, 410b-3 second baffle, 410c limit frame, 410c-1 scraper, 410c-2 scraper teeth, 420 pulping mechanism, 420a sliding plate, 420a-1 second slider, 420a-2 vertical plate, 420a-3 connecting buckle, 420a-4 limit block, 420b pulping tube, 420b-1 fifth mounting block, 420b-2 flip cover, 50 0 clamping mechanism, 510 outer clamping plate assembly, 510a first fixed plate, 510a-1 fourth slide groove, 510a-2 first fixed block, 510b third slider, 510c first adjustment plate, 510c-1 second fixed block, 510c-2 guide shaft, 510d first screw rod, 510d-1 first driving block, 510e second screw rod, 510e-1 second driving block, 520 inner clamping plate assembly, 520a second fixed plate, 520a-1 third fixed block, 520a-2 adjustment groove, 520b second adjustment plate, 520b-1 connecting hole. DETAILED DESCRIPTION
[0081] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0082] The present invention provides an external wall thermal insulation integrated panel construction and installation device, wherein the thermal insulation panel is placed on the covering panel mechanism through the panel feeding mechanism, and then the mortar is placed on the thermal insulation panel through the mortar storage mechanism. After the covering panel mechanism moves to a specified position, it is turned over to cover the thermal insulation panel with mortar on the wall, and manual material handling and mortar coating are not required, thereby improving work efficiency. Figure 1 , including: a hoisting mechanism 100, a plate covering mechanism 200, a plate unloading mechanism 300, a mortar storage mechanism 400 and a clamping mechanism 500;
[0083] Example 1
[0084] See also Figure 1 The cover plate mechanism 200 is movably installed at the bottom of the inner cavity of the hoisting mechanism 100 through a linear moving device, and the cover plate mechanism 200 can move in the inner cavity of the hoisting mechanism 100 along the length direction of the hoisting mechanism 100;
[0085] The plate unloading mechanism 300 can be detachably installed in the inner cavity of the hoisting mechanism 100, and the insulation plate is placed in the inner cavity of the plate unloading mechanism 300. A space is left between the bottom of the plate unloading mechanism 300 and the bottom of the inner cavity of the hoisting mechanism 100 so that the cover plate mechanism 200 can pass through. The cover plate mechanism 200 moves to the bottom of the plate unloading mechanism 300 under the drive of the linear moving device, and the switch for unloading on the plate unloading mechanism 300 is opened through the cover plate mechanism 200. The insulation plate falls to the top of the cover plate mechanism 200 through the plate unloading mechanism 300, and the insulation plate is driven to move by the cover plate mechanism 200.
[0086] The mortar storage mechanism 400 is installed in the inner cavity of the lifting mechanism 100 which can be detachably installed. Mortar is placed in the inner cavity of the mortar storage mechanism 400. A space is reserved between the bottom of the mortar storage mechanism 400 and the bottom of the inner cavity of the lifting mechanism 100 so that the covering plate mechanism 200 and the insulation plate placed on the covering plate mechanism 200 can pass through. The insulation plate is moved to the bottom of the mortar storage mechanism 400 through the covering plate mechanism 200. The switch for feeding on the plate unloading mechanism 300 contacts the feeding switch on the mortar storage mechanism 400 under the drive of the covering plate mechanism 200 and turns on the feeding switch on the mortar storage mechanism 400. The mortar is fed to the surface of the insulation plate placed on the covering plate mechanism 200 through the mortar storage mechanism 400 and the mortar is smoothed. There is no need to manually move materials and apply mortar, which improves work efficiency.
[0087] After the mortar is smoothed, the insulation board is moved to the designated position driven by the covering mechanism 200, and the insulation board coated with mortar is flipped over by the covering mechanism 200 to cover the wall. The staff makes fine adjustments to the insulation board covered on the wall so that the insulation board is evenly attached to the wall, completing the construction of the exterior wall insulation board.
[0088] Example 2
[0089] See also Figure 1-4 The hoisting mechanism 100 and the plate covering mechanism 200 are movably connected, and the plate unloading mechanism 300 is detachably installed in the inner cavity of the hoisting mechanism 100;
[0090] The hanging 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 steel sections. Workers and materials can be placed inside the hanging basket 110. The hanging basket 110 is hoisted on the outside of the building through a steel wire rope and a hoisting mechanism. The hanging basket 110 can be used to perform insulation construction on the exterior walls of high-rise buildings and install insulation panels on the exterior walls.
[0092] The first mounting frame 120 is also welded by section steel. The first mounting frame 120 is detachably mounted on the inner cavity end of the hanging basket 110 by 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 inner cavity bottom of the hanging basket 110.
[0093] The bottom plate assembly 140 is detachably mounted on the bottom of the inner cavity of the hanging basket 110, and 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 mounted on the bottom of the inner cavity of the hanging basket 110 by bolts;
[0095] The guide groove 140b is formed on the top of the bottom plate 140a, and the guide groove 140b is connected 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 to 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 of 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 cover plate mechanism 200 includes a moving seat assembly 210, a flap assembly 220 and a limit plate 230;
[0099] The movable seat assembly 210 and the flap assembly 220 are movably connected, and the limit plate 230 and the flap 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 movable plate 210b is a rectangular plate, and the connecting plate 210c is an inclined slat. One end of the connecting plate 210c is welded to the bottom of the frame 210a, and the movable plate 210b is welded to the other end of the connecting plate 210c. The center of the movable plate 210b coincides with the center of the frame 210a. The movable plate 210b is arranged at the lower end of the frame 210a. A threaded hole 210b-2 is provided on the side wall of the movable plate 210b. The threaded hole 210b-2 vertically penetrates the movable plate 210b. The threaded hole 210b-2 matches the lead screw 140c. The movable plate 210b penetrates the guide groove 140b and is threadedly connected with the lead screw 140c. The movable plate 210b is driven to move in the inner cavity of the bottom plate 140a along the length direction of the bottom plate 140a by the rotation of the lead screw 140c. The movable plate 210b drives the frame 210a to move along the length direction of the hanging basket 110 at the top of the bottom plate 140a through the connecting plate 210c.
[0103] The flap assembly 220 includes a flap 220a, which 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 by the frame 210a to move in the inner cavity of the hanging basket 110 along the length direction of the hanging basket 110.
[0104] The number of the limiting plates 230 is three. Figure 4 The discharge method shown in the figure is detachably fixed to the top of the flap 220a by bolts, and the space enclosed by the three limit plates 230 is consistent with the area of the insulation board to be constructed;
[0105] The plate material unloading mechanism 300 includes a storage bin assembly 310 and a unloading assembly 320, and the storage bin assembly 310 and the unloading assembly 320 are movably connected;
[0106] The material storage bin assembly 310 includes a first guide frame 310a, a material bin 310b, a first spring 310c and a first baffle 310d;
[0107] The first guide frame 310a is placed horizontally and is hollow. The front and rear side walls of the inner cavity of the first guide frame 310a are both provided with second slide grooves 310a-1, and the second slide grooves 310a-1 pass through the end of the first guide frame 310a;
[0108] The silo 310b is placed vertically and is hollow. The silo 310b is welded to the top of the first guide frame 310a. The inner cavity of the silo 310b is connected with the inner cavity of the first guide frame 310a. The silo 310b is detachably mounted in the inner cavity of the hanging basket 110 through the first mounting frame 120. The first guide frame 310a is suspended in the inner cavity of the hanging basket 110 through the silo 310b. The insulation board to be constructed is placed in the inner cavity of the silo 310b.
[0109] The first spring 310c is detachably mounted on the inner cavity end of the first guide frame 310a;
[0110] The first baffle 310d is detachably mounted on the bottom of the first guide frame 310a by 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 guide 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 so that the covering mechanism 200 can pass through.
[0111] The material removal assembly 320 includes a material removal plate 320a, a stopper 320b and a fourth mounting block 320c;
[0112] The material taking plate 320a is inserted into the inner cavity of the first guide frame 310a, the end of the material taking plate 320a is detachably connected to the first spring 310c, and the bottom of the material taking plate 320a is in contact with the top of the first baffle 310d;
[0113] A discharge groove 320a-1 is provided on the top of the material taking plate 320a, and the discharge groove 320a-1 corresponds to the material bin 310b. The insulation board placed in the inner cavity of the material bin 310b falls into the inner cavity of the discharge groove 320a-1 under the action of gravity, and only one insulation board can fall at a time;
[0114] The first slider 320a-2 matching the second slide groove 310a-1 is integrally formed on the front and rear side walls of the feeding plate 320a. The feeding plate 320a can move in the inner cavity of the first guide frame 310a along the length direction of the first guide frame 310a through the cooperation of the first slider 320a-2 and the second slide groove 310a-1. The movement of the feeding plate 320a drives the insulation board that falls into the inner cavity of the discharge groove 320a-1 to move. When the discharge groove 320a-1 completely leaves the range blocked by the first baffle 310d, the insulation board will fall from the discharge groove 320a-1 onto the flap 220a.
[0115] An installation groove 320a-3 is formed on 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, and the bottom of the stopper 320b exceeds the bottom of the first baffle 310d. When the flap 220a moves to the stopper 320b under the drive of the frame 210a, one of the longitudinally arranged limit plates 230 contacts the stopper 320b, and the elastic force of the coil spring is greater than the force of the flap 220a moving and the elastic force of the first spring 310c. At this time, the stopper 320b will not flip, thereby driving the feeding plate 320a to move toward the side away from the first spring 310c, so that the insulation board falling on the inner side of the discharge groove 320a-1 breaks away from the restriction of the first baffle 310d, so that the board falls to the top of the flap 220a. When the feeding plate 320a is driven by the flap 220a After moving to the mortar storage mechanism 400 and contacting the mortar storage mechanism 400, the material picking plate 320a is restricted by the mortar storage mechanism 400 and cannot move, while the flap 220a continues to move under the drive of the lead screw 140c to overcome the elastic force of the coil spring, driving the stop block 320b to flip and disengage from the limit plate 230. After the stop block 320b is separated from the limit plate 230, the pulling force on the first spring 310c is released, and the material picking plate 320a is driven to reset by the first spring 310c, so that the discharge trough 320a-1 corresponds to the silo 310b again, and the insulation board placed in the inner cavity of the silo 310b falls into the inner cavity of the discharge trough 320a-1 under the action of gravity, preparing for the next material removal, thereby eliminating the need for manual material handling and reducing labor intensity.
[0117] Example 3
[0118] See also Figure 1-2 , Figure 4 and Figure 9-13 The hoisting mechanism 100 further includes a second mounting frame 130, which is welded from section steel. The second mounting frame 130 is detachably mounted in the inner cavity of the hanging basket 110 by bolts and is disposed adjacent to the first mounting frame 120;
[0119] The unloading assembly 320 further includes a fourth mounting block 320c, the number of which is two, and the fourth mounting block 320c is detachably mounted on the front and rear sides of one end of the unloading plate 320a away from the first spring 310c by bolts;
[0120] A connecting shaft 320c-1 is detachably mounted 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 is arranged close to the plate unloading mechanism 300. The mortar storage mechanism 400 includes a mortar stirring mechanism 410 and a mortar discharge mechanism 420. The mortar stirring mechanism 410 and the mortar discharge mechanism 420 are movably connected.
[0122] The mortar mixing mechanism 410 includes a mixing chamber 410a, a second guide frame 410b and a limit frame 410c;
[0123] The mixing chamber 410a is detachably mounted in the inner cavity of the hanging basket 110 through the second mounting frame 130;
[0124] A top cover 410a-1 is detachably mounted on the top of the mixing chamber 410a, a motor is mounted on the top of the top cover 410a-1, a stirring blade is mounted on the output shaft of the motor, the stirring blade is suspended in the inner cavity of the mixing chamber 410a, raw materials for generating mortar are placed in the inner cavity of the mixing chamber 410a, and the raw materials are stirred by the stirring blade to generate mortar, so that the mortar does not need to be frequently transported to the construction site, thereby ensuring the construction efficiency. At the same time, the mortar can be stirred intermittently to prevent the mortar from being solidified due to long-term placement, thereby effectively reducing the waste of mortar;
[0125] The second guide frame 410b is detachably mounted on the bottom of the mixing chamber 410a;
[0126] A third slide groove 410b-1 is provided on both the front and rear side walls of the inner cavity of the second guide frame 410b, and the third slide groove 410b-1 passes through the end of the second guide frame 410b;
[0127] A second spring 410b-2 is detachably mounted on the inner end 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 mounted on the bottom of the second baffle 410b-3 by bolts, and a scraper 410c-1 is integrally formed at the bottom of the limiting frame 410c, and scraper teeth 410c-2 are provided at the bottom of the scraper 410c-1;
[0130] The pulp discharge mechanism 420 includes a sliding plate 420a and a pulp discharge 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. The front and rear side walls of the sliding plate 420a are integrally formed with a second slider 420a-1 that matches the third slide groove 410b-1. The sliding plate 420a can move in the inner cavity of the second guide frame 410b along the length direction of the second guide frame 410b through the cooperation of the third slide groove 410b-1 and the second slider 420a-1.
[0132] The end of the sliding plate 420a is screwed with a vertical plate 420a-2, and a connecting buckle 420a-3 is integrally formed at the bottom of the vertical plate 420a-2 away from the sliding plate 420a, and the connecting buckle 420a-3 corresponds to the connecting shaft 320c-1;
[0133] A limit block 420a-4 can be detachably mounted on one end of the bottom of the sliding plate 420a away from the vertical plate 420a-2;
[0134] When the picking plate 320a moves to the position adjacent to the vertical plate 420a-2 under the cooperation of the stopper 320b and the limit plate 230, the connecting shaft 320c-1 is clamped to the inner side of the connecting buckle 420a-3, the movement of the picking plate 320a is blocked by the vertical plate 420a-2, the stopper 320b is flipped by force, the flap 220a continues to move toward the mixing chamber 410a, and the picking plate 320a is reset under the elastic force of the first spring 310c and moves in the direction away from the mixing chamber 410a. The sliding plate 420a is pulled toward the first guide frame 310a by the cooperation of the connecting shaft 320c-1 and the connecting buckle 420a-3.
[0135] The pulp discharge cylinder 420b is detachably mounted on the bottom of the sliding plate 420a and penetrates the top of the sliding plate 420a to correspond to the mixing chamber 410a. The inner cavity of the pulp discharge cylinder 420b is connected with the inner cavity of the mixing chamber 410a. The pulp discharge cylinder 420b can be driven to move at the lower end of the second guide frame 410b through the sliding plate 420a.
[0136] A fifth mounting block 420b-1 is integrally formed on the circumferential outer wall of the pulp discharge cylinder 420b, and a flap 420b-2 is movably installed on the bottom of the fifth mounting block 420b-1 through a pin shaft. The flap 420b-2 can be flipped on the fifth mounting block 420b-1 through the pin shaft. When the pulp discharge cylinder 420b is moved to the inner side of the second baffle 410b-3 through the sliding plate 420a, the flap 420b-2 contacts the inner bottom of the second baffle 410b-3 and covers the discharge port of the pulp discharge cylinder 420b to prevent the discharge of slurry. When the pulp discharge cylinder 420b is moved away from the second baffle 410b-3 through the sliding plate 420a, the flap 420b-2 flips downward under the action of gravity to open the bottom discharge port of the pulp discharge cylinder 420b, and the mortar is discharged from the bottom of the pulp discharge cylinder 420b onto the surface of the insulation board placed on the flap 220a.
[0137] Specifically, the connecting shaft 320c-1 is clamped on the inner side of the connecting buckle 420a-3, and the first spring 310c drives the material picking plate 320a to reset. The material picking plate 320a pulls the sliding plate 420a toward the first guide frame 310a through the coordinated use of the connecting shaft 320c-1 and the connecting buckle 420a-3, thereby driving the slurry discharge tube 420b to move toward the side away from the second baffle 410b-3 so that the flap 420b-2 is free from the restriction of the second baffle 410b-3. The flap 420b-2 flips downward under the action of gravity, opens the discharge port at the bottom of the slurry discharge tube 420b, and discharges the mortar onto the surface of the insulation board without manual slurrying, reducing The labor intensity of the staff is reduced. Before the material taking plate 320a is completely reset, the limit block 420a-4 will contact the second baffle plate 410b-3 to hinder 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 limit block 420a-4 and the second baffle plate 410b-3, the movement of the sliding plate 420a is hindered, thereby causing the connecting shaft 320c-1 to fall off from the connecting buckle 420a-3. The sliding plate 420a is reset and connected to the material under the drive of the second spring 410b-2, so that the slurry in the inner cavity of the mixing chamber 410a enters the inner cavity of the slurry discharge cylinder 420b, preparing for the next slurry discharge.
[0138] After the slurry is discharged onto the insulation board through the slurry discharge tube 420b, the flap 220a continues to move while maintaining the displacement direction unchanged, driving the insulation board to enter the inner side of the limit frame 410c and contact the scraper 410c-1. The slurry is smoothed on the insulation board by the scraper 410c-1, and at the same time, the scraping teeth 410c-2 on the scraper 410c-1 scrape off the dents on the surface of the slurry. There is no need for manual smoothing of the slurry, which further reduces the labor intensity of the staff.
[0139] Example 4
[0140] In order to further facilitate the control of the telescopic movement of the material-collecting plate 320a and the sliding plate 420a, the device can also be provided with multiple sets of screw transmission devices and sensor devices, the screw transmission devices are used to drive the telescopic movement of the material-collecting plate 320a and the sliding plate 420a 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 picking plate 320a, the screw transmission device connected to the picking plate 320a drives the picking plate 320a to move and put the insulation board onto the flap 220a. When the flap 220a moves out of the monitoring range of the sensor, the picking plate 320a is driven to reset by the screw transmission device.
[0142] The movement and resetting of the sliding plate 420a are performed as described above, so that the telescopic movement of the material taking plate 320a and the sliding plate 420a can be more accurately controlled, so that the insulation board can be accurately placed on the flap 220a and the mortar can be accurately placed on the insulation board to avoid leakage.
[0143] Example 5
[0144] See also Figure 4-7 Two first mounting blocks 210a-1 are integrally formed at the top rear edge of the frame 210a, and the two first mounting blocks 210a-1 are symmetrically arranged;
[0145] A second mounting block 210b-1 is symmetrically mounted on the top of the moving plate 210b by bolts;
[0146] A third mounting block 220a-1 is symmetrically mounted on the flap 220a on one side facing the frame 210a by bolts;
[0147] The flap assembly 220 further includes an outer sleeve 220b;
[0148] There are two outer sleeves 220b, which are symmetrically arranged and installed between the two first mounting blocks 210a-1 through a pin shaft. The outer sleeve 220b can be turned over between the two first mounting blocks 210a-1 through the pin shaft.
[0149] A telescopic rod 220b-1 is provided at the top of the outer sleeve 220b, 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 on the outside of the top of the outer sleeve 220b. The end of the telescopic rod 220b-1 arranged on the outside of the top of the outer sleeve 220b is detachably connected to the side of the flap 220a facing the frame 210a through bolts;
[0150] The cover plate mechanism 200 further includes a support frame assembly 240, which is movably installed between the moving plate 210b and the flap 220a, and the support frame assembly 240 includes a first bracket 240a and a second bracket 240b;
[0151] One end of the first bracket 240a is installed between the two second mounting blocks 210b-1 through a pin shaft, and the first bracket 240a can rotate between the two second mounting blocks 210b-1 through the pin shaft. A motor is installed on one side of the two second mounting blocks 210b-1 away from the first bracket 240a, and the output shaft of the motor is connected to the pin shaft. The motor drives the motor to rotate, and the pin shaft drives the first bracket 240a to flip;
[0152] One end of the second bracket 240b is connected to an end of the first bracket 240a away from the second mounting block 210b-1 through a pin shaft, and the second bracket 240b is turned over by the first bracket 240a;
[0153] One end of the second bracket 240b away from the first bracket 240a is installed between the two third mounting blocks 220a-1 through a pin shaft, and the flap 220a is driven to flip through the cooperation of the second bracket 240b and the third mounting block 220a-1. When the flap 220a flips, 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, and the insulation board placed on the flap 220a and coated with mortar is covered on the wall. There is no need for staff to carry and lift the insulation board, thereby reducing the labor intensity of staff. When covering the insulation board on the wall through the flap 220a, the staff also needs to manually adjust the height and position of the insulation board, and tap the insulation board so that the insulation board can be evenly adhered to the wall.
[0154] Example 6
[0155] See also Figure 1-2 and Figure 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 mounted on the side of the hanging basket 110 facing the wall by bolts, and a first slide groove 160a is provided on the top of the side of the side plate 160 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 screw rod 510d and a second screw rod 510e;
[0160] The third slider 510b matches the first slide groove 160a, and the third slider 510b is movably connected to the first slide groove 160a. The third slider 510b can move in the first slide groove 160a along the length direction of the hanging basket 110;
[0161] Fourth slide grooves 510a-1 are provided on both the left and right sides of the inner side of the first fixed plate 510a, and first fixed blocks 510a-2 are integrally formed on both the left and right sides of the outer side of the first fixed plate 510a. The first fixed plate 510a is connected to the third slider 510b through the fourth slide groove 510a-1, and the first fixed plate 510a is connected to the side plate 160 through the third slider 510b. The first fixed plate 510a can move along the height direction through the cooperation of the fourth slide groove 510a-1 and the third slider 510b.
[0162] There are two first adjustment plates 510c, one above and one below, movably mounted at the upper and lower ends of the first fixed plate 510a, and the first adjustment plates 510c can move along the height direction of the first fixed plate 510a;
[0163] Second fixing blocks 510c-1 are integrally formed on both left and right sides of the outer side of the first adjustment plate 510c, and the second fixing blocks 510c-1 correspond to the first fixing blocks 510a-2;
[0164] A guide shaft 510c-2 is installed on the two first adjustment plates 510c on one side away from the side plate 160, and the guide shaft 510c-2 is detachably connected to the first adjustment plate 510c via a spline or a flat key;
[0165] The first screw rod 510d is movably connected to the first fixed block 510a-2 through a bearing, and both ends of the first screw rod 510d extend upward and downward to the second fixed block 510c-1 respectively and are threadedly connected to the second fixed block 510c-1, and the end of the first screw rod 510d passes through the second fixed block 510c-1, and the first driving block 510d-1 is detachably installed on the outer circumferential wall of the first screw rod 510d through a spline or a flat key, and the first driving block 510d-1 is distributed on the upper and lower sides of the first fixed block 510a-2. The shape of the first driving block 510d-1 is the same as that of the outer hexagonal nut, and the first screw rod 510d can be driven to rotate by the cooperation of the wrench and the first driving block 510d-1, and the distance between the two first adjustment plates 510c is adjusted by the rotation of the first screw rod 510d;
[0166] There are two second screw rods 510e, and the two second screw rods 510e are connected to the two first fixed blocks 510a-2 through bearings respectively. The second screw rod 510e is installed on the side of the first fixed block 510a-2 away from the side plate 160, and the second screw rod 510e is perpendicular to the first screw rod 510d but does not contact each other.
[0167] A second driving block 510e-1 is detachably mounted on one end of the circumferential outer wall of the second screw rod 510e, which is adjacent to the first fixing block 510a-2, through a spline or a flat key. The shape of the second driving block 510e-1 is the same as that of an outer hexagonal nut. The second screw rod 510e can be driven to rotate by using a wrench in conjunction with the second driving block 510e-1.
[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 parallel to the first fixing plate 510a;
[0170] The left and right side walls of the outer side of the second fixing plate 520a are integrally formed with third fixing blocks 520a-1, the third fixing blocks 520a-1 correspond to the first fixing blocks 510a-2 and are threadedly connected to the second screw rod 510e, and the distance between the second fixing plate 520a and the first fixing plate 510a can be adjusted by rotating the second screw rod 510e;
[0171] The second fixing plate 520a has an adjusting groove 520a-2 at both upper and lower ends of the side wall. The adjusting groove 520a-2 corresponds to the guide shaft 510c-2. One end of the guide shaft 510c-2 away from the first adjusting plate 510c is inserted into the inner side of the adjusting groove 520a-2. The guide shaft 510c-2 can move along the height direction of the second fixing plate 520a on the inner side of the adjusting groove 520a-2.
[0172] There are two second adjustment plates 520b, one above and one below, movably mounted at the upper and lower ends of the second fixed plate 520a, and the second adjustment plates 520b are arranged correspondingly to the first adjustment plates 510c;
[0173] A connecting hole 520b-1 is provided on the side wall of the second adjusting plate 520b. The connecting hole 520b-1 vertically penetrates the second adjusting plate 520b. The connecting hole 520b-1 matches the guide shaft 510c-2. An end of the guide shaft 510c-2 away from the first adjusting plate 510c is inserted into the inner side of the connecting hole 520b-1. The second adjusting plate 520b can slide on the guide shaft 510c-2 through the connecting hole 520b-1.
[0174] Specifically, when the hanging basket 110 is suspended on the side of the wall with a window, the hanging basket 110 is first lowered to the window, and the position of the second fixing plate 520a is adjusted by the third slider 510b so that the second fixing plate 520a corresponds to the window, and the height of the first adjustment plate 510c and the second adjustment plate 520b is adjusted by rotating the first screw rod 510d so that the second adjustment plate 520b and the second fixing plate 520a can enter the room through the window, and then the distance between the second fixing plate 520a and the first fixing plate 510a is adjusted by rotating the second screw rod 510e so that the second adjustment plate 520b can completely enter the room, and then the first screw rod 510d is used to adjust the height of the first adjustment plate 510c and the second adjustment plate 520b. The heights of an adjustment plate 510c and a second adjustment plate 520b are adjusted so that the heights of the first adjustment plate 510c and the second adjustment plate 520b exceed the upper and lower window edges of the window, and then the distance between the second fixing plate 520a and the first fixing plate 510a is adjusted by the second screw rod 510e so that the first adjustment plate 510c is close to the outer wall, and the second adjustment plate 520b is close to the inner wall. The wall is clamped by the first adjustment plate 510c and the second adjustment plate 520b to fix the hanging basket 110, thereby reducing the shaking amplitude of the hanging basket 110. When the insulation board is constructed, the construction accuracy of the insulation board will not be affected by the shaking of the hanging basket 110, thereby improving the use quality of the insulation board.
[0175] Example 7
[0176] In order to ensure the construction quality of the thermal insulation board on the wall without windows, the device is further provided with a high-pressure gas tank, which 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, and a valve is installed on the exhaust port of the high-pressure gas tank. A pipe is installed on the exhaust port of the valve, and the pipe extends between the side plate 160 and the wall. When the hanging basket 110 is suspended on the wall on the side without windows, when attaching the thermal insulation board, the valve is opened and the high-pressure gas tank is filled with air. The gas in the part is sprayed into the space between the side plate 160 and the wall through the pipe, which accelerates the air flow between the side plate 160 and the wall. According to the Bernoulli principle and the pressure difference effect, the side plate 160 is attached to the wall, so as to fix the hanging basket 110 and reduce the swing amplitude of the hanging basket 110. When the insulation board is constructed, the construction accuracy of the insulation board will not be affected by the swing of the hanging basket 110, thereby improving the use quality of the insulation board. After the insulation board is attached, the valve is closed to save gas.
[0177] Although the present invention has been described above with reference to the embodiments, various modifications may be made thereto and parts thereof may be replaced with equivalents without departing from the scope of the present invention. In particular, as long as there is no structural conflict, the various features in the embodiments disclosed by the present invention may be used in combination with each other in any manner, and the fact that these combinations are not exhaustively described in this specification is only for the sake of omitting space and saving 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. A construction and installation device for an external wall thermal insulation integrated panel, characterized in that: include: A hoisting mechanism (100) for carrying materials and construction tools; A plate covering mechanism (200), wherein the plate covering mechanism (200) is movably connected to the hoisting mechanism (100) via a linear moving device, and the plate covering mechanism (200) is capable of moving within the inner cavity of the hoisting mechanism (100); a plate material discharging mechanism (300), the plate material discharging mechanism (300) being connected to the hoisting mechanism (100) and corresponding to the plate covering mechanism (200); a heat-insulating plate material is placed in the inner cavity of the plate material discharging mechanism (300); the plate covering mechanism (200) is driven by a linear moving device to move into contact with the plate material discharging mechanism (300) and open a material discharge port; the heat-insulating plate material falls onto the plate covering mechanism (200) through the plate material discharging mechanism (300); A mortar storage mechanism (400) is connected to the hoisting mechanism (100) and corresponds to the board unloading mechanism (300); mortar is placed in the inner cavity of the mortar storage mechanism (400); the board unloading mechanism (300) contacts the mortar storage mechanism (400) and opens a discharge port under the drive of the board covering mechanism (200); and the mortar is covered on the surface of the thermal insulation board through the mortar storage mechanism (400).
2. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 1, characterized in that: The hoisting mechanism (100) comprises: Basket (110); a first mounting frame (120), the first mounting frame (120) being detachably mounted on an inner cavity end of the hanging basket (110); A second mounting frame (130), the second mounting frame (130) being detachably mounted at an inner cavity end of the hanging basket (110) and disposed adjacent to the first mounting frame (120); A bottom plate assembly (140), the bottom plate assembly (140) being detachably mounted on the bottom of the inner cavity of the hanging basket (110); A mounting seat (150), the mounting seat (150) being arranged at an end of the hanging basket (110) and corresponding to the bottom plate assembly (140); A side plate (160), wherein the side plate (160) is arranged outside the hanging basket (110).
3. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 1, characterized in that: The cover plate mechanism (200) comprises: A mobile seat assembly (210); A flap assembly (220), wherein the flap assembly (220) is movably connected to the movable seat assembly (210), and the movable seat assembly (210) drives the flap assembly (220) to move horizontally; a limiting plate (230), the limiting plate (230) being detachably connected to the flap assembly (220), and the thermal insulation plate being positioned via the limiting plate (230); A support frame assembly (240), wherein two ends of the support frame assembly (240) are respectively connected to the movable seat assembly (210) and the flap assembly (220), and the support frame assembly (240) drives the flap assembly (220) to flip and install the thermal insulation board on the movable seat assembly (210).
4. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 1, characterized in that: The plate material unloading mechanism (300) comprises: Storage bin assembly (310); A material unloading component (320) is connected to the material storage bin component (310); the thermal insulation board enters the material unloading component (320) through the material storage bin component (310); and the thermal insulation board is unloaded through the material unloading component (320).
5. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 4, characterized in that: The storage bin assembly (310) comprises: A first guide frame (310a), wherein a heat-insulating plate is placed in an inner cavity of the first guide frame (310a); A material bin (310b), the material bin (310b) being connected to the first guide frame (310a) and communicating with the inner cavity of the first guide frame (310a), and the thermal insulation board enters the inner cavity of the material bin (310b) through the first guide frame (310a); A first spring (310c), the first spring (310c) being detachably mounted on an inner cavity end portion of the first guide frame (310a); A first baffle (310d), wherein the first baffle (310d) is arranged at the bottom of the first guide frame (310a).
6. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 4, characterized in that: The blanking assembly (320) comprises: A material taking plate (320a), wherein a material discharge groove (320a-1) is provided through the top of the material taking plate (320a); A stopper (320b), the stopper (320b) being arranged at the end of the bottom surface of the material taking plate (320a) via a coil spring; A fourth mounting block (320c), the fourth mounting block (320c) being arranged at the end of the material taking plate (320a), and a connecting shaft (320c-1) being arranged on the side wall of the fourth mounting block (320c).
7. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 1, characterized in that: The mortar storage mechanism (400) comprises: A mortar stirring mechanism (410), wherein the mortar is placed in an inner cavity of the mortar stirring mechanism (410) and the mortar is stirred; A slurry discharge mechanism (420), wherein the slurry discharge mechanism (420) is connected to the mortar stirring mechanism (410), and the mortar enters the slurry discharge mechanism (420) through the mortar stirring mechanism (410) and is discharged onto the surface of the thermal insulation board through the slurry discharge mechanism (420).
8. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 1, characterized in that: A clamping mechanism (500) is installed on the side of the hoisting mechanism (100), and the clamping mechanism (500) comprises: An outer clamping plate assembly (510), the outer clamping plate assembly (510) being slidably connected to the hoisting mechanism (100); An inner clamping plate assembly (520), wherein the inner clamping plate assembly (520) is movably connected to the outer clamping plate assembly (510).
9. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 8, characterized in that: The outer clamping plate assembly (510) comprises: A first fixing plate (510a), wherein a fourth sliding groove (510a-1) is provided on the inner side of the first fixing plate (510a), and a first fixing block (510a-2) is provided on the outer side of the first fixing plate (510a); A third sliding block (510b), the third sliding block (510b) being connected to the first fixing plate (510a) via a fourth sliding groove (510a-1); a first adjustment plate (510c), the first adjustment plate (510c) being movably connected to the first fixing plate (510a), a second fixing block (510c-1) being arranged on the outer side of the first adjustment plate (510c), and a guide shaft (510c-2) being arranged on the side wall of the first adjustment plate (510c); a first screw rod (510d), the first screw rod (510d) being movably connected to the first fixing block (510a-2) via a bearing and being threadedly connected to the second fixing block (510c-1); A second screw rod (510e), wherein the second screw rod (510e) is movably connected to the first fixing block (510a-2) via a bearing.
10. The construction and installation device of the exterior wall thermal insulation integrated panel according to claim 8, characterized in that: The inner clamping plate assembly (520) comprises: A second fixing plate (520a), a third fixing block (520a-1) being arranged on the outer side of the second fixing plate (520a), and an adjustment groove (520a-2) being provided on the side wall of the second fixing plate (520a); A second adjustment plate (520b), the second adjustment plate (520b) is movably connected to the second fixing plate (520a), and a connection hole (520b-1) corresponding to the adjustment groove (520a-2) is provided on a side wall of the second adjustment plate (520b).
Citation Information
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