Adjustable graphite polystyrene board outer wall thermal insulation efficient construction device
By designing an adjustable graphite polystyrene board exterior wall insulation construction device, the main body of the suspended platform and various adjustment mechanisms are used to ensure that the graphite polystyrene board is installed vertically to the building exterior wall, and hot gas is used to accelerate solidification, thus solving the problem of insulation board tilting and improving construction quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-03-24
AI Technical Summary
The existing external wall insulation board installation equipment cannot adjust the angle of the insulation board, which makes it easy for it to tilt during installation and affects the construction effect.
An adjustable graphite polystyrene board exterior wall insulation construction device was designed, including a suspended platform body, a preliminary detection mechanism, a moving plate, a construction angle adjustment mechanism, an adsorption angle adjustment mechanism, and an air blowing solidification mechanism. By detecting the angle between the graphite polystyrene board and the suspended platform body, the perpendicularity of the board to the building exterior wall is adjusted, and hot gas is used to accelerate the solidification speed.
Ensuring that the graphite polystyrene board is installed vertically and avoiding tilting improves construction efficiency and installation effect, and guarantees the bonding quality of the insulation board.
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Figure CN224032214U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building construction technical field, specifically, relate to a kind of adjustable graphite polystyrene board outer wall heat preservation efficient construction device. BACKGROUND
[0002] Graphite polystyrene board is a kind of high-performance thermal insulation material, by adding graphite particles modification in polystyrene, with excellent thermal insulation, fireproof and economy, widely used in building energy-saving field, and graphite polystyrene board is installed in building outer wall, need to use outer wall heat preservation construction device.
[0003] The utility model with the publication number CN218952724U discloses a kind of outer wall heat preservation board installation construction device, including support plate, the surface of the support plate is provided with lifting mechanism, the surface of lifting mechanism is provided with rotating motor, the output shaft of rotating motor is provided with Z type plate, the surface of Z type plate is respectively provided with cleaning mechanism, dust collection mechanism and installation box, dust collection mechanism includes dust collection box, the inner wall of dust collection box is respectively provided with first air blower and filter screen, the input end of first air blower is provided with dust collection pipe, the inner wall of filter screen is rotatably connected with rotating rod.
[0004] Using the above technical scheme, the solidification speed of the material on the heat preservation plate can be accelerated, but the device does not have the function of adjusting the angle of the heat preservation plate when in use, so that the worker often needs to use tools to keep it horizontal during the construction process of the heat preservation plate, and the tools often affected by the construction platform, so that the heat preservation plate is easy to tilt during installation, which reduces the installation effect of the graphite polystyrene heat preservation plate, and reduces the practicability of the device. UTILITY MODEL CONTENTS
[0005] Therefore, the utility model provides a kind of adjustable graphite polystyrene board outer wall heat preservation efficient construction device, to solve the problem that existing heat preservation plate is easy to tilt during installation and affect its installation effect.
[0006] The utility model provides a kind of adjustable graphite polystyrene board outer wall heat preservation efficient construction device, the device includes: basket main body, for suspending to the outside of building outer wall;Preliminary detection mechanism is arranged in the basket main body inside, for detecting the included angle between graphite polystyrene board and basket main body, so that graphite polystyrene board and basket main body are vertically placed;Moving plate, in the depth direction of the basket main body with the positional adjustment of being able to be arranged in the basket main body;Construction angle adjusting mechanism, in the way of being able to rotate, is arranged on the moving plate;Suction angle adjusting mechanism, in the way of being able to rotate in multiple directions, is arranged on the construction angle adjusting mechanism, and, plate suction mechanism is further equipped on the suction angle adjusting mechanism, for adsorbing the front of graphite polystyrene board, and make the graphite polystyrene board with the suction angle adjusting mechanism, the construction angle adjusting mechanism multidirectional rotation, to adjust the graphite polystyrene board to vertical arrangement direction, and with the moving plate moves towards building outer wall, to make the construction surface of the graphite polystyrene board is bonded on building outer wall;Blowing solidification mechanism, arranged on the basket main body, for blowing heated gas to the graphite polystyrene board pasted on building outer wall, to accelerate its solidification speed.
[0007] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device described above, the suction angle adjusting mechanism is connected with second rotation driving mechanism, for driving the suction angle adjusting mechanism to rotate.
[0008] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device described above, the second rotation driving mechanism includes: mounting bracket, in the way of being able to rotate, is arranged on the construction angle adjusting mechanism;At least two depth telescopic rods, are arranged perpendicular to the thickness direction of the mounting bracket, and, each depth telescopic rod is arranged at intervals, and the fixed end of each depth telescopic rod is mounted on the construction angle adjusting mechanism, and the telescopic end is hinged with the mounting bracket, to adjust the arrangement angle of the plane where the mounting bracket is by the coordinated telescopic adjustment of multiple depth telescopic rods;At least two lateral telescopic rods, are arranged along the width direction of the mounting bracket, and, the lateral telescopic rods are arranged at intervals, and the fixed end of each lateral telescopic rod is mounted on the mounting bracket, and the telescopic end is hinged with the suction angle adjusting mechanism, to adjust the in-plane arrangement angle of the suction angle adjusting mechanism by the coordinated telescopic adjustment of multiple lateral telescopic rods.
[0009] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device, the blowing solidification mechanism includes: a drying box; a heater arranged in the drying box, used for heating the gas in the drying box; a first gas pump, the gas inlet end is communicated with the drying box, the gas outlet end is provided with a universal bamboo joint pipe, used for pumping the heated gas in the drying box to the universal bamboo joint pipe and spraying to the graphite polystyrene board pasted on the building outer wall.
[0010] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device, the preliminary detection mechanism includes: a connecting plate movably arranged in the inside of the basket body along the transverse direction of the basket body; at least two detection plates, two groups of elastic expansion connecting pieces are arranged between each detection plate and the connecting plate, the two ends of the elastic expansion connecting pieces are connected with the detection plate and the connecting plate respectively, and the connecting plate is provided with a pressure sensor corresponding to each detection plate on the wall surface of the detection plate, which is used for detecting the extrusion force of each detection plate on the corresponding pressure sensor to determine the inclination angle of the graphite polystyrene board when each detection plate is pressed and contacted on the graphite polystyrene board.
[0011] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device, the connecting plate and the basket body are provided with a detection expansion rod arranged along the transverse direction of the basket body, which is used for driving the connecting plate to move transversely.
[0012] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device, the construction angle adjusting mechanism is connected with a first rotation driving mechanism, which is used for driving the construction angle adjusting mechanism to rotate.
[0013] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device, the first rotation driving mechanism is a rotation motor.
[0014] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device, the moving plate is connected with a depth moving mechanism, which is used for driving the moving plate to move along the depth direction of the basket body.
[0015] Further, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device, the depth moving mechanism is a telescopic rod arranged along the depth direction of the basket body.
[0016] The adjustable graphite polystyrene board outer wall heat preservation efficient construction device provided by the utility model, through the hanging basket main body suspending outside the building outer wall, spare parts are supported, the angle between the graphite polystyrene board and the hanging basket main body is detected through the preliminary detection mechanism, so that the graphite polystyrene board and the hanging basket main body are vertically placed, the angle of the graphite polystyrene board is adjusted through the angle of the construction angle adjusting mechanism and the adsorption angle adjusting mechanism, so that the installation angle of the graphite polystyrene board is kept consistent and parallel to the building outer wall every time, the depth position of the moving plate is adjusted, so that the side of the graphite polystyrene board with the adhesive contacts one side of the building outer wall and presses the graphite polystyrene board, hot gas is blown out to the graphite polystyrene board pasted on the building outer wall through the blowing and solidifying mechanism, so that the solidification speed is accelerated, the inclination of the graphite polystyrene board in the solidification process is avoided, the problem that the inclination phenomenon is prone to occur when the existing heat preservation plate is installed and affects the installation effect is solved, the phenomenon of position deflection during construction is avoided, the good installation effect of the graphite polystyrene board is ensured, and the graphite polystyrene board is affected by the angle of the hanging basket main body. BRIEF DESCRIPTION OF DRAWINGS
[0017] Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments with reference made to the accompanying drawings. The drawings are for purposes of illustration only and are not intended to be limiting in any respect. In the drawings, like reference numerals refer to like structures throughout the several views, and in which:
[0018] Figure 1 A structural schematic view of the adjustable graphite polystyrene board outer wall heat preservation efficient construction device provided by the utility model embodiment is provided.
[0019] Figure 2 An internal structure schematic view of the adjustable graphite polystyrene board outer wall heat preservation efficient construction device provided by the utility model embodiment is provided.
[0020] Figure 3 A structural schematic view of the moving plate, construction angle adjusting mechanism, adsorption angle adjusting mechanism, plate adsorption mechanism, first rotary drive mechanism, second rotary drive mechanism and depth moving mechanism provided by the utility model embodiment is provided.
[0021] Figure 4 A structural schematic view of the preliminary detection mechanism provided by the utility model embodiment is provided.
[0022] Figure 5 A rear view section of the hanging basket main body provided by the utility model embodiment is provided. DETAILED DESCRIPTION
[0023] Exemplary embodiments of the present disclosure will be described in greater detail below with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it is understood that the present disclosure can be embodied in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the present disclosure to those skilled in the art. It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.
[0024] Referring to Figures 1 to 5 , it shows the preferred structure of the adjustable graphite polystyrene board outer wall heat preservation efficient construction device provided by the embodiment of the present application. As shown in the figure, the device comprises: a hanging basket body 1, a preliminary detection mechanism 2, a moving plate 3, a construction angle adjusting mechanism 4, an adsorption angle adjusting mechanism 5, a plate adsorption mechanism 6, a blowing solidification mechanism 7, a first rotating driving mechanism 8, a second rotating driving mechanism 9, a depth moving mechanism 10 and a controller 100; wherein,
[0025] The hanging basket body 1 is used for hanging to the outside of the building outer wall. Specifically, the hanging basket body 1 can be hung outside the building outer wall through a structure such as a hanging rope. In the present embodiment, a rack 11 can be provided in the hanging basket body 1, which can support other parts. The outer surface of the rack 11 can be fixedly connected with the inside of the hanging basket body 1.
[0026] The preliminary detection mechanism 2 is arranged inside the hanging basket body 1 and is used for detecting the included angle between the graphite polystyrene board (not shown in the figure) and the hanging basket body 1, so that the graphite polystyrene board is placed vertically with the hanging basket body 1. Specifically, the preliminary detection mechanism 2 is arranged inside the hanging basket body 1 and can be arranged close to the front side (such as Figure 1 shown, close to the side of the paper surface), which can preliminarily detect the graphite polystyrene board before the graphite polystyrene board is placed at the hanging basket body 1 and before construction, to detect the included angle between the graphite polystyrene board and the hanging basket body 1 or the rack 11, so as to manually adjust the graphite polystyrene board based on this, so that the installation position of the graphite polystyrene board is perpendicular to the rack 11, to realize the adjustment of the position of the graphite polystyrene board before construction and installation.
[0027] The moving plate 3 is arranged along the depth direction of the hanging basket body 1 (such as Figure 1The depth moving mechanism 10 is arranged in the depth direction of the basket body 1 in a position-adjustable manner in the basket body 1, is used to drive the movement plate 3 to move in the depth direction of the basket body 1, and further drives the graphite polystyrene board to move in the depth direction. In the embodiment, the depth moving mechanism 10 can be fixedly installed on the basket body 1 or the rack 11, and the power output end is connected with the movement plate 3 and can be fixedly connected, so as to drive the movement plate 3 to move reciprocatingly and linearly; the depth moving mechanism 10 can be multiple, so as to ensure the stability of the movement of the movement plate 3. The depth moving mechanism 10 can be a telescopic rod arranged in the depth direction of the basket body 1, so as to adjust the front and back positions of the movement plate 3 through telescopic adjustment, and further push the graphite polystyrene board to move towards the building outer wall, so as to be bonded to the building outer wall. The telescopic end of the depth moving mechanism 10 is fixedly connected with the movement plate 3.
[0028] The construction angle adjusting mechanism 4 is arranged on the movement plate 3 in a rotatable manner, so as to drive the adsorption angle adjusting mechanism 5, the plate adsorption mechanism 6, the blowing solidification mechanism 7 and the second rotating driving mechanism 9 arranged on the construction angle adjusting mechanism 4 to rotate synchronously, and further realize the adjustment of the construction installation angle. Specifically, the first rotating driving mechanism 8 can be fixedly installed on the front surface (for example, the right surface shown in the figure) of the movement plate 3, the output end of the rotating motor is fixedly installed with the construction angle adjusting mechanism 4, the front surface of the movement plate 3 is fixedly installed with the connecting bearing 31, the front surface of the outer ring of the connecting bearing 31 is fixedly connected with the back surface of the construction angle adjusting mechanism 4, and the connecting bearing 1 is installed, so as to stabilize the construction angle adjusting mechanism 4, avoid the phenomenon that the construction angle adjusting mechanism 4 deviates from the movement track during movement, and further ensure the stability of the movement of the construction angle adjusting mechanism 4. In the embodiment, the construction angle adjusting mechanism 4 can be an L-shaped connecting frame, or can be other structures, and the embodiment does not limit it. Figure 3
[0029] The adsorption angle adjusting mechanism 5 is arranged on the construction angle adjusting mechanism 4 in a manner capable of rotating in multiple directions, and a plate adsorption mechanism 6 is further arranged on the adsorption angle adjusting mechanism 5, which is used to adsorb the front surface of the graphite polystyrene board and enable the graphite polystyrene board to rotate with the adsorption angle adjusting mechanism 5 and the construction angle adjusting mechanism 4 in multiple directions, so as to adjust the graphite polystyrene board to the vertical arrangement direction and move towards the building outer wall with the moving plate 3 to enable the construction surface of the graphite polystyrene board to be bonded on the building outer wall. Specifically, the adsorption angle adjusting mechanism 5 is arranged on the construction angle adjusting mechanism 4 in a manner capable of in-plane rotation in the plane where the adsorption angle adjusting mechanism 5 is located and capable of rotation in the plane at an angle with the plane where the adsorption angle adjusting mechanism 5 is located, and the plane where the adsorption angle adjusting mechanism 5 is located can be the main plane of the L-shaped connecting frame, i.e. the plane perpendicular to the rotation axis of the rotation motor, so as to realize the adjustment of the front and rear inclination angles and the left and right inclination angles, and further enable the adsorption angle adjusting mechanism 5 to be adjusted to the top wall level, i.e. the top wall is arranged horizontally, and further realize the adjustment of the inclination angle of the graphite polystyrene board relative to the world coordinate system, so as to keep the installation angle of each graphite polystyrene board consistent and parallel to the building outer wall, and ensure the installation effect of the graphite polystyrene board. In the embodiment, the adsorption angle adjusting mechanism 5 is connected with a second rotation driving mechanism 9 for driving the adsorption angle adjusting mechanism 5 to rotate in multiple directions. The adsorption angle adjusting mechanism 5 can be a box structure or other structure, which is not limited in the embodiment. In the embodiment, a level 200 can be arranged on the adsorption angle adjusting mechanism 5, and the level 200 is not affected by the construction platform, so that whether the angle of the graphite polystyrene board is deflected or not is detected based on the level 200, and the adsorption angle adjusting mechanism 5 is driven to rotate by the power provided by the construction angle adjusting mechanism 4, so that the graphite polystyrene board is kept vertical.
[0030] The blowing and solidifying mechanism 7 is arranged on the basket main body 1 and is used to blow heated gas to the graphite polystyrene board bonded on the building outer wall to accelerate the solidification speed of the graphite polystyrene board. Specifically, the blowing and solidifying mechanism 7 can be fixedly installed on the basket main body 1 and can blow heated gas to the graphite polystyrene board bonded on the building outer wall, so as to accelerate the solidification speed of the graphite polystyrene board and avoid the inclination of the graphite polystyrene board during the solidification process.
[0031] Continuing to refer to Figure 5 A side opening door 12 can be arranged on the basket main body 1 and is connected with the main body of the basket main body 1 through a lock block 13 and a lock frame 14. The lock block 13 is clamped in the inside of the lock frame 14, and the installation of the lock block 13 and the lock frame 14 plays a role of locking the basket main body 1, so as to avoid the self-opening phenomenon of the basket main body 1 and further avoid the phenomenon of accidental falling of the worker.
[0032] Continuing to refer to Figure 2 and Figure 4 , the preliminary detection mechanism 2 comprises a connecting plate 21, at least two detection plates 22, two groups of elastic telescopic connecting pieces 23, pressure sensors 24 and detection telescopic rods 25; wherein the connecting plate 21 is movably arranged inside the basket body 1 along the transverse direction (such as the horizontal direction shown in Figure 2 ) of the basket body 1; the two groups of elastic telescopic connecting pieces 23 are arranged between each detection plate 22 and the connecting plate 21, and the two ends thereof are respectively connected with the detection plate 22 and the connecting plate 21, and the connecting plate 21 is provided with a pressure sensor 24 corresponding to each detection plate 22 on the wall surface (such as the left wall shown in Figure 4 ) of the downward detection plate 22, which is used to detect the extrusion force of each detection plate 22 on its corresponding pressure sensor 24 when each detection plate 22 is pressed and contacted on the graphite polystyrene board, so as to determine the inclination angle of the graphite polystyrene board.
[0033] Specifically, the elastic telescopic connecting piece 23 can comprise a telescopic column 231 and a connecting spring 232 sleeved outside the telescopic column 231. The detection telescopic rod 25 arranged along the transverse direction of the basket body 1 is arranged between the connecting plate 21 and the basket body 1, which is used to drive the connecting plate 21 to move transversely. Wherein, the detection telescopic rod 25 can be two, both of which are electric push rods, and the two electric push rods are fixedly installed on the inner wall of the basket body 1, as shown in Figure 4 , the telescopic ends (such as the left end shown in Figure 4 ) of the two electric push rods are fixedly installed with the connecting plate 21, the left side of the connecting plate 21 is fixedly installed with two groups of elastic telescopic connecting pieces 23 and two pressure sensors 24, the right end of each group of elastic telescopic connecting pieces 23 is fixedly installed with a detection plate 25, and each group of elastic telescopic connecting pieces 23 is two. Wherein, the model of the pressure sensor 24 is WH136, when the worker installs the graphite polystyrene board with inclination, the time of the two detection plates 22 contacting the graphite polystyrene board will be deviated, thereby causing the pressure of the two pressure sensors 24 and the time of receiving the signal to be inconsistent, and thereby achieving the purpose of detecting the inclination of the graphite polystyrene board, the right side of the connecting plate 21 is fixedly installed with two groups of telescopic columns 231, the telescopic end (such as the left end shown in Figure 4 ) of each telescopic column 231 is fixedly connected with the right side of the detection plate 22, and the installation of the telescopic column 231 plays a role in limiting the moving track of the detection plate 22, thereby avoiding the phenomenon that the detection plate 22 deviates from the moving track when moving, and thereby ensuring the stability of the movement of the detection plate 22.
[0034] Continuing to refer to Figure 3 and Figure 5, the plate adsorption mechanism 6 can be a vacuum adsorption mechanism, comprising: a second air pump 61, a conveying pipe 62 and a plurality of suction cups 63; wherein the second air pump 61 is connected with the suction cups 63 through the conveying pipe 62, for pumping out the gas between the suction cups 63 and the graphite polystyrene board, so as to adsorb the graphite polystyrene board to the suction cups 63. Specifically, the suction cups 63 are a plurality of, which can be uniformly arranged on the adsorption angle adjusting mechanism 5, and the adsorption end of which protrudes outside the adsorption angle adjusting mechanism 5. The second air pump 61 can be fixedly installed on the adsorption angle adjusting mechanism 5, especially on the left side as shown in Figure 3 , the air inlet end of the second air pump 61 is fixedly communicated with the conveying pipe 62, and the end of the conveying pipe 62 away from the second air pump 61 penetrates into the interior of the suction cup 63. By using the suction force provided by the second air pump 61, the worker places the graphite polystyrene board at the position of the suction cup 63, so as to pump out the gas between the suction cup 63 and the graphite polystyrene board, thereby adsorbing the graphite polystyrene board on the suction cup 63, and further driving the graphite polystyrene board to move.
[0035] Continuing to refer to Figure 2 , the blowing and solidifying mechanism 7 comprises: a drying box 71, a heater 72 and a first air pump 73; wherein the heater 72 is arranged in the interior of the drying box 71, for heating the gas in the drying box 71; the air inlet end of the first air pump 73 is communicated with the drying box 71, and the air outlet end is provided with a universal bamboo joint pipe 74, for pumping the heated gas in the drying box 71 into the universal bamboo joint pipe 74 and spraying it to the graphite polystyrene board pasted on the building outer wall.
[0036] Specifically, the inner wall of the hanging basket body 1 is fixedly installed with the drying box 71 and the first air pump 73 respectively, the air inlet end of the first air pump 73 penetrates into the interior of the drying box 71, the air outlet end of the first air pump 73 is fixedly communicated with the universal bamboo joint pipe 74, the inner wall of the drying box 71 is fixedly installed with the heater 72, the bottom surface of the drying box 71 is provided with an air inlet, the universal bamboo joint pipe 74 has a certain hardness, and the worker can adjust its angle at will according to the demand, and by using the power provided by the first air pump 73, the air outside is heated by the heater 72 and blown on the graphite polystyrene board pasted on the building outer wall, thereby increasing the solidification speed.
[0037] Continuing to refer to Figure 3The second rotation drive mechanism 9 includes: a mounting frame 91, at least two depth telescopic rods 92, and a lateral telescopic rod 93; wherein, the mounting frame 91 is rotatably mounted on the construction angle adjustment mechanism 4; the at least two depth telescopic rods 92 are arranged perpendicular to the thickness direction of the mounting frame 91, and the depth telescopic rods 92 are spaced apart, the fixed ends of each depth telescopic rod 92 are mounted on the construction angle adjustment mechanism 4, and the telescopic ends are hinged to the mounting frame 91, so as to adjust the arrangement angle of the plane where the mounting frame 91 is located by the coordinated telescopic extension and retraction of the multiple depth telescopic rods 92; the at least two lateral telescopic rods 93 are all along the width direction of the mounting frame 91 (e.g., ...). Figure 3 The horizontal telescopic rods 93 are arranged in a horizontal direction as shown, and the fixed ends of each horizontal telescopic rod 93 are mounted on the mounting frame 91, and the telescopic ends are hinged to the adsorption angle adjustment mechanism 5 so as to adjust the in-plane angle of the adsorption angle adjustment mechanism 5 by the coordinated telescopic extension and retraction of multiple horizontal telescopic rods 93.
[0038] Specifically, the mounting frame 91 can be arranged parallel to the construction angle adjustment mechanism 4 and the adsorption angle adjustment mechanism 5. The mounting frame 91 is movably hinged to the construction angle adjustment mechanism 4, and the adsorption angle adjustment mechanism 5 is movably hinged to the mounting frame 91. At least two depth telescopic rods 92 are provided between the mounting frame 91 and the construction angle adjustment mechanism 4, arranged perpendicular to the mounting frame 91 and the construction angle adjustment mechanism 4. These rods can extend or retract to different lengths, driving the mounting frame 91 to adjust its angle relative to the construction angle adjustment mechanism 4. The telescopic ends of the depth telescopic rods 92 and the transverse telescopic rods 93 are movably hinged to connecting seats 94. The connecting seats 94 on the depth telescopic rods 92 can be slidably connected to the mounting frame 91, and the connecting seats 94 on the transverse telescopic rods 93 can be slidably connected to the adsorption angle adjustment mechanism 5. Alternatively, they can be fixedly connected; the connection method is not limited in this embodiment. By using the depth telescopic rods 92 and the transverse telescopic rods 93 in conjunction with the connecting seats 94, the angles of the mounting frame 91 and the adsorption angle adjustment mechanism 5 can be adjusted respectively, thereby achieving the adjustment of the graphite polystyrene board.
[0039] In this embodiment,
[0040] The working principle of the device is: in use, the worker suspends the hanging basket body 1 outside the building outer wall through the lifting rope, then the worker places the graphite polystyrene board coated with adhesive in front of the suction cup 63, and then uses the controller 100 to open the detection telescopic rod 25, uses the power provided by the detection telescopic rod 25 to drive the connecting plate 21 to move to the side close to the graphite polystyrene board, so that the detection plate 22 is in contact with the graphite polystyrene board, according to the pressure difference between the two pressure sensors 24, the worker adjusts the angle of the graphite polystyrene board, so that the two pressure sensors 24 are consistent with the pressure value of the graphite polystyrene board, and then the installation position of the graphite polystyrene board is perpendicular to the rack 11, then the worker contacts the side of the graphite polystyrene board without adhesive with the suction cup 63, and controls the second air pump 61 to open through the controller 100, so that the gas between the graphite polystyrene board and the suction cup 63 is discharged after passing through the conveying pipe 62, so that the graphite polystyrene board is adsorbed on the suction cup 63, and the level meter 200 is not affected by the construction platform, so that the level meter 200 detects whether the angle of the graphite polystyrene board is deflected, and the power provided by the rotating motor, that is, the first rotating drive mechanism 8, drives the construction angle adjusting mechanism 4 to rotate, so that the graphite polystyrene board remains vertical, then the power provided by the depth telescopic rod 92 and the transverse telescopic rod 93 drives the connecting seat 94 to move, so that the connecting seat 94 drives the mounting bracket 91 and the adsorption angle adjusting mechanism 5 to rotate respectively, so that the mounting bracket 91 and the adsorption angle adjusting mechanism 5 are adjusted in angle, so that the level meter 200 detects that the installation angle of the graphite polystyrene board remains consistent and parallel to the building outer wall each time, then the power provided by the depth moving mechanism 10 drives the moving plate 3 to move to the side close to the building outer wall, so that the side of the graphite polystyrene board with adhesive contacts one side of the building outer wall and presses the graphite polystyrene board, then the power provided by the first air pump 73 extracts the air outside to the inside of the drying box 71, and the heater 72 heats the gas, so that the heated gas enters the inside of the universal bamboo joint pipe 74, then the worker makes the universal bamboo joint pipe 74 face the graphite polystyrene board, so that the hot air blows on it, so that the adhesive quickly solidifies, increasing the construction speed of the graphite polystyrene board.
[0041] In conclusion, the adjustable graphite polystyrene board outer wall heat preservation efficient construction device provided by the embodiment can support the parts by suspending the hanging basket body 1 outside the building outer wall, detect the included angle between the graphite polystyrene board and the hanging basket body 1 by the preliminary detection mechanism 2, so that the graphite polystyrene board is placed vertically with the hanging basket body 1, adsorb and fix the graphite polystyrene board by the board adsorption mechanism 6, adjust the angle of the graphite polystyrene board by adjusting the angle of the construction angle adjusting mechanism 4 and the adsorption angle adjusting mechanism 5, so that the installation angle of the graphite polystyrene board is consistent and parallel to the building outer wall each time, adjust the depth position of the moving plate 3, so that the side of the graphite polystyrene board with the adhesive contacts one side of the building outer wall and presses the graphite polystyrene board, and blow hot gas to the graphite polystyrene board pasted on the building outer wall by the blowing and solidifying mechanism 7, thereby accelerating the solidification speed of the graphite polystyrene board and avoiding the inclination of the graphite polystyrene board in the solidification process, solving the problem that the existing insulation board is prone to inclination during installation and affecting the installation effect, thereby avoiding the position deviation during construction, and further ensuring the good installation effect of the graphite polystyrene board and avoiding the influence of the angle of the hanging basket body on the graphite polystyrene board.
[0042] It should be noted that in the description of the present application, the terms "upper", "lower", "left", "right", "inner", "outer" and the like indicate the direction or positional relationship of the terms based on the direction or positional relationship shown in the drawings, which is only for the convenience of description, and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, therefore cannot be understood as a limitation on the present application.
[0043] In addition, it should be noted that in the description of the present application, unless otherwise specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integrally connected, it can be directly connected, or indirectly connected through an intermediate medium, it can be the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0044] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalent technologies, the present application also intends to include these modifications and variations.
Claims
1. An adjustable graphite polystyrene board outer wall thermal insulation efficient construction device, characterized in that, The device comprises: a hanging basket body for hanging to the outside of a building outer wall; a preliminary detection mechanism arranged inside the hanging basket body for detecting the angle between the graphite polystyrene board and the hanging basket body so as to make the graphite polystyrene board and the hanging basket body vertically placed; a moving plate arranged in the depth direction of the hanging basket body in a position-adjustable manner inside the hanging basket body; a construction angle adjusting mechanism arranged on the moving plate in a rotatable manner; an adsorption angle adjusting mechanism arranged on the construction angle adjusting mechanism in a rotatable manner, and a plate adsorption mechanism is further arranged on the adsorption angle adjusting mechanism for adsorbing the front surface of the graphite polystyrene board, and making the graphite polystyrene board rotate with the adsorption angle adjusting mechanism and the construction angle adjusting mechanism in multiple directions, so as to adjust the graphite polystyrene board to the vertical arrangement direction, and move the graphite polystyrene board to the building outer wall with the moving plate, so as to make the construction surface of the graphite polystyrene board bonded on the building outer wall; a blowing and solidifying mechanism arranged on the hanging basket body for blowing heated gas to the graphite polystyrene board bonded on the building outer wall, so as to accelerate the solidification speed thereof.
2. The adjustable graphite polystyrene board outer wall thermal insulation efficient construction device according to claim 1, characterized in that: the adsorption angle adjusting mechanism is connected with a second rotation driving mechanism for driving the adsorption angle adjusting mechanism to rotate.
3. The adjustable graphite polystyrene board outer wall insulation efficient construction device according to claim 2, characterized in that, The second rotation driving mechanism comprises: a mounting frame arranged on the construction angle adjusting mechanism in a rotatable manner; at least two depth telescopic rods arranged perpendicularly to the thickness direction of the mounting frame, and the depth telescopic rods are arranged in intervals, the fixed ends of the depth telescopic rods are all mounted on the construction angle adjusting mechanism, and the telescopic ends are all hinged with the mounting frame, so as to adjust the arrangement angle of the plane where the mounting frame is arranged through the coordinated telescopic adjustment of the multiple depth telescopic rods; at least two lateral telescopic rods arranged along the width direction of the mounting frame, and the lateral telescopic rods are arranged in intervals, the fixed ends of the lateral telescopic rods are all mounted on the mounting frame, and the telescopic ends are all hinged with the adsorption angle adjusting mechanism, so as to adjust the in-plane arrangement angle of the adsorption angle adjusting mechanism through the coordinated telescopic adjustment of the multiple lateral telescopic rods.
4. The adjustable graphite polystyrene board outer wall heat preservation efficient construction device according to any one of claims 1-3, characterized in that, The blowing and solidifying mechanism comprises: a drying box; a heater arranged inside the drying box for heating the gas in the drying box; a first gas pump with the gas inlet end communicated with the drying box, and the gas outlet end provided with a universal bamboo joint pipe for pumping the heated gas in the drying box to the universal bamboo joint pipe to be sprayed to the graphite polystyrene board bonded on the building outer wall.
5. The adjustable graphite polystyrene board outer wall heat preservation efficient construction device according to any one of claims 1-3, characterized in that, The preliminary detection mechanism comprises: a connecting plate arranged in the transverse direction of the hanging basket body in a movable manner inside the hanging basket body; At least two detection plates, two groups of elastic expansion connecting pieces are arranged between each detection plate and the connecting plate, two ends of the elastic expansion connecting pieces are connected with the detection plate and the connecting plate respectively, and the connecting plate is provided with a pressure sensor corresponding to the detection plate on the wall surface of the detection plate facing downward, which is used for detecting the extrusion force of each detection plate on the corresponding pressure sensor when each detection plate is pressed and contacted on the graphite polystyrene board, so as to determine the inclination angle of the graphite polystyrene board.
6. The adjustable graphite polystyrene board outer wall heat preservation efficient construction device according to claim 5, characterized in that, The connecting plate and the hanging basket body are provided with a detection expansion rod arranged along the transverse direction of the hanging basket body, which is used for driving the connecting plate to move transversely.
7. The adjustable graphite polystyrene board outer wall heat preservation efficient construction device according to any one of claims 1 to 3, characterized in that, The construction angle adjusting mechanism is connected with a first rotation driving mechanism, which is used for driving the construction angle adjusting mechanism to rotate.
8. The adjustable graphite polystyrene board outer wall heat preservation efficient construction device according to claim 7, characterized in that, The first rotation driving mechanism is a rotation motor.
9. The adjustable graphite polystyrene board outer wall heat preservation efficient construction device according to any one of claims 1 to 3, characterized in that, The moving plate is connected with a depth moving mechanism, which is used for driving the moving plate to move along the depth direction of the hanging basket body.
10. The adjustable graphite polystyrene board outer wall heat preservation efficient construction device according to claim 9, characterized in that, The depth moving mechanism is an expansion rod arranged along the depth direction of the hanging basket body.
Citation Information
Patent Citations
External wall insulation board installation construction device
CN218952724U