An auxiliary installation device for thermal insulation boards used in construction projects
By designing the building insulation board auxiliary installation device for protective shells, adsorption modules and cutting modules, the separation of insulation board cutting and installation in high altitude operations is solved, and an efficient and safe insulation board installation process is achieved.
Patent Information
- Application Number
- CN202510374577.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2045-03-27
AI Technical Summary
The existing building insulation board auxiliary installation device cannot be directly installed at the edge of the installation surface or the splicing connection structure. It needs to be cut and installed separately, which increases the difficulty and safety risks of high-altitude operations, and requires additional tools and personnel assistance.
An auxiliary installation device including a protective shell, an adsorption module, a telescopic module and a cutting module are designed. The insulation board is fixed through the adsorption module, and the telescopic module adjusts the position. The cutting module achieves precise cutting and installation in high-altitude operations, and is precisely controlled by combining the displacement sensor and the angle sensor.
The precise cutting and installation of insulation boards in high-altitude operations is achieved, which reduces the complexity of high-altitude operations, improves safety and efficiency, simplifies the operation process, and reduces the dependence on additional tools and personnel.
Smart Images

Figure CN119871588B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of thermal insulation board installation, and more particularly to an auxiliary installation device for thermal insulation boards used in construction projects. Background Art
[0002] Building thermal insulation boards are used in building construction due to their high fire resistance and high thermal insulation properties, providing thermal insulation functions for the exterior walls of buildings. They not only have good thermal insulation effects but also can reduce the outer thickness of the building and increase the indoor usable area, optimizing the building structure.
[0003] After retrieval, the existing publication number CN116290834B discloses an auxiliary installation device for building thermal insulation boards, including a base, traveling wheels, a hollow support cylinder, etc. Four traveling wheels are rotatably connected to the base, and the hollow support cylinder is arranged at the center of the top of the base. This invention drives the building thermal insulation board to move through a support plate. The lower part of the building thermal insulation board will first contact the wall surface, and the support plate swings upward so that the building thermal insulation board fits the wall surface from bottom to top, squeezing out the air bubbles between the building thermal insulation board and the wall surface, and also reducing the gap between the building thermal insulation board and the wall surface, thereby quickly installing the building thermal insulation board.
[0004] Considering the actual installation requirements of building thermal insulation boards, the above-disclosed auxiliary installation device for building thermal insulation boards still has the following defects: at the position of the building surface edge or the splicing connection structure, due to the size or shape of the installation surface, the thermal insulation board cannot be directly installed. Therefore, it is necessary to adaptively cut the thermal insulation board according to the size or shape of the installation surface. Although the cutting technology of thermal insulation boards has been relatively mature, it is still impossible to integrate the cutting and installation of thermal insulation boards into one. During the installation operation, the thermal insulation board can only be cut separately using other tools, and then the thermal insulation board is installed using auxiliary equipment. The installation of building thermal insulation boards is an aerial operation, and the number of thermal insulation boards that need to be cut is relatively limited. On the one hand, a single worker cannot simultaneously take into account the cutting and installation of thermal insulation boards. On the other hand, other workers and cutting equipment often need to be additionally equipped for auxiliary operations, which will not only increase the difficulty and cost of the mobilization or transportation process of auxiliary equipment but also add additional safety hazards during the cutting and back-and-forth transfer process of thermal insulation boards. Summary of the Invention
[0005] The purpose of the present invention is to provide an auxiliary installation device for thermal insulation boards used in construction projects, aiming to solve the problems existing in the existing auxiliary installation devices for building thermal insulation boards.
[0006] To achieve the above object, the present invention provides the following technical solution: an auxiliary installation device for thermal insulation boards used in construction projects, including a protective housing and a framework, the protective housing is connected to the framework, and further includes:
[0007] Adsorption module, the adsorption module includes a second transmission member and an adsorbing member, the second transmission member is connected to the protective housing, the adsorbing member includes a central tube and a suction cup, the central tube is coaxially connected to the second transmission member, and the suction cup is fixedly connected to the central tube;
[0008] A drive module drivingly connected to the second transmission member, the drive module is connected within the protective housing;
[0009] A telescopic module, the telescopic module includes a telescopic member, a moving frame and a pressing plate, the telescopic member is fixedly connected to the protective housing, the moving frame is fixedly connected to the telescopic member, a pressing plate is provided on the surface of the moving frame, and the moving frame is connected to the surface of the central tube;
[0010] A cutting module, the cutting module includes a moving seat, a cutting member, a threaded rod and a second drive motor, the second drive motor is connected to the threaded rod, the moving seat is threadedly connected to the threaded rod, the cutting member is fixedly connected to the moving seat, and the threaded rod and the second drive motor are both connected to the protective housing.
[0011] As a further aspect of the present invention, the protective housing includes a fixed cover, a first transmission member and a rotating shaft, the rotating shaft is fixedly connected to the side wall of the protective housing, the first transmission member includes a transmission rod, a first driven gear and a transmission gear, the first driven gear and the transmission gear are both fixedly connected to the transmission rod, the fixed cover is fixedly connected to the protective housing, the transmission rod, the drive module, the telescopic member and the second transmission member are all connected to the fixed cover, and the first driven gear is drivingly connected to the drive module.
[0012] As a further aspect of the present invention, the skeleton includes a fixed frame, a handle, a fixed pipe sleeve and a fixed tooth disc, the handle and the fixed pipe sleeve are both fixedly connected to the fixed frame, the fixed tooth disc is fixedly connected to the fixed pipe sleeve, the rotating shaft is rotatably connected within the fixed pipe sleeve, and the transmission gear is fixedly connected to the fixed tooth disc.
[0013] As a further aspect of the present invention, the second transmission member includes a transmission pipe, a worm gear, a worm and a second driven gear, the worm and the transmission pipe are both connected to the fixed cover, the worm gear and the second driven gear are respectively fixedly connected to the transmission pipe and the worm, the worm gear is drivingly connected to the worm, and the second driven gear is drivingly connected to the drive module.
[0014] As a further solution of the present invention, the driving module includes a first driving motor, a driving shaft, a driving gear ring and a limiting end. The first driving motor is fixedly connected with the driving shaft. The limiting end is arranged at the end of the driving shaft. The driving gear ring is movably sleeved on the surface of the driving shaft. Both the first driven gear and the second driven gear are in transmission connection with the driving gear ring. The central tube is movably connected in the transmission tube. Limiting ribs are arranged on the surfaces of both the central tube and the driving shaft. Limiting grooves are arranged on the inner walls of both the transmission tube and the driving gear ring. The limiting ribs are slidably connected with the limiting grooves.
[0015] As a further solution of the present invention, the driving module further includes an electromagnet, a return spring and a bracket. Both the first driving motor and the bracket are connected with the fixed cover. The electromagnet is embedded on the surface of the bracket. The return spring is connected between the driving gear ring and the bracket.
[0016] As a further solution of the present invention, the adsorbing member further includes a vacuum pump, a flexible tube and an annular groove. The vacuum pump is connected with the fixed cover. The flexible tube is connected between the central tube and the vacuum pump. An annular groove is arranged on the surface of the central tube. The moving frame is connected in the annular groove. All four suction cups are fixedly connected with the central tube. Two pressure plates are symmetrically distributed on both sides of the suction cups.
[0017] As a further solution of the present invention, the protective housing further includes positioning clamping blocks, a protective sleeve and a guide rail. All four positioning clamping blocks are fixedly connected to the surface of the protective housing. The end of the protective sleeve is arranged at the end of the protective housing. A guide rail is arranged on the surface of the protective housing. The moving seat is slidably connected in the guide rail.
[0018] As a further solution of the present invention, it further includes a displacement sensor and an angle sensor. Displacement sensors are fixedly connected to the surfaces of both the moving seat and the moving frame. Angle sensors are fixedly connected to the surfaces of both the transmission tube and the rotating shaft.
[0019] As a further solution of the present invention, it further includes a control and display module. The control and display module is fixedly connected to the surface of the fixed frame. Both the displacement sensor and the angle sensor are communicatively connected with the control and display module.
[0020] The beneficial effects of the present invention are as follows: It can not only accurately cut along the length direction, width direction or inclined direction of the insulation board before installation, but also adjust the installation angle of the insulation board on the installation surface according to the installation requirements, solving the problem that it is inconvenient to cut the insulation board during high-altitude installation operations, and having the characteristics of being convenient for cutting the insulation board during high-altitude operations and convenient for installing the insulation board. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a three-dimensional view of the present invention.
[0022] Figure 2Explosion diagram of the present invention.
[0023] Figure 3 Stereogram of the protective housing in the embodiment of the present invention.
[0024] Figure 4 Stereogram of the adsorption module in the embodiment of the present invention.
[0025] Figure 5 Assembly diagram of the adsorption module and the telescopic module in the embodiment of the present invention.
[0026] Figure 6 Stereogram of the cutting module in the embodiment of the present invention.
[0027] Figure 7 First plane sectional view of the embodiment of the present invention.
[0028] Figure 8 Second plane sectional view of the embodiment of the present invention.
[0029] Figure 9 For the present invention Figure 8 Partial enlarged view at position a in the present invention.
[0030] Figure 10 Planar schematic diagram of cutting the insulation board along the width direction of the present invention.
[0031] Figure 11 Planar schematic diagram of cutting the insulation board along the length direction of the present invention.
[0032] Figure 12 Planar schematic diagram of cutting the insulation board along the inclined direction of the present invention.
[0033] Figure 13 Side view of the present invention for installing the insulation board.
[0034] Reference numerals: 1 - protective housing, 11 - fixed cover, 12 - first transmission member, 121 - transmission rod, 122 - first driven gear, 123 - transmission gear, 13 - positioning clamp block, 14 - protective sleeve, 15 - rotating shaft, 16 - guide rail;
[0035] 2 - skeleton, 21 - fixing frame, 22 - handle, 23 - fixed pipe sleeve, 24 - fixed gear disk;
[0036] 3 - adsorption module, 31 - second transmission member, 311 - transmission pipe, 312 - worm gear, 313 - worm, 314 - second driven gear, 32 - adsorbing member, 321 - central pipe, 322 - suction cup, 323 - vacuum pump, 324 - flexible pipe, 325 - limiting rib, 326 - annular groove;
[0037] 4 - telescopic module, 41 - telescopic member, 42 - moving frame, 43 - pressing disk;
[0038] 5 - driving module, 51 - first driving motor, 52 - drive shaft, 53 - driving gear ring, 54 - electromagnet, 55 - return spring, 56 - limit end, 57 - bracket;
[0039] 6 - cutting module, 61 - moving seat, 62 - cutting piece, 63 - threaded rod, 64 - second driving motor, 65 - bolt;
[0040] 7 - displacement sensor, 8 - angle sensor, 9 - control and display module, 10 - heat preservation board. Specific embodiments
[0041] In order to make the objectives, technical solutions and advantages of the present invention clearer, the following further describes the present invention in detail with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0042] The following describes the specific implementation of the present invention in detail with reference to specific embodiments.
[0043] Please refer to Figures 1 to 13 , in an embodiment of the present invention, an auxiliary installation device for a heat preservation board in construction engineering includes a protective housing 1 and a framework 2, the protective housing 1 is connected to the framework 2, and further includes:
[0044] An adsorption module 3, the adsorption module 3 includes a second transmission member 31 and an adsorbent 32, the second transmission member 31 is connected to the protective housing 1, the adsorbent 32 includes a central tube 321 and a suction cup 322, the central tube 321 is coaxially connected to the second transmission member 31, and the suction cup 322 is fixedly connected to the central tube 321;
[0045] A driving module 5 drivingly connected to the second transmission member 31, the driving module 5 is connected inside the protective housing 1;
[0046] A telescopic module 4, the telescopic module 4 includes a telescopic member 41, a moving frame 42 and a pressing disc 43, the telescopic member 41 is fixedly connected to the protective housing 1, the moving frame 42 is fixedly connected to the telescopic member 41, a pressing disc 43 is arranged on the surface of the moving frame 42, the moving frame 42 is connected to the surface of the central tube 321, and the telescopic member 41 is an electric telescopic rod;
[0047] A cutting module 6, the cutting module 6 includes a moving seat 61, a cutting member 62, a threaded rod 63 and a second driving motor 64. The second driving motor 64 is connected to the threaded rod 63. The moving seat 61 is threadedly connected to the threaded rod 63. The cutting member 62 is fixedly connected to the moving seat 61. Both the threaded rod 63 and the second driving motor 64 are connected to the protective housing 1. The cutting member 62 can be designed as a blade or an electric band saw, and is specifically selected according to the material and thickness of the insulation board 10. The cutting member 62 is fixedly connected to the moving seat 61 through a bolt 65.
[0048] Please refer to Figure 4 Further, the second transmission member 31 includes a transmission pipe 311, a worm gear 312, a worm 313 and a second driven gear 314. The worm 313 and the transmission pipe 311 are both connected to the fixed cover 11. The worm gear 312 and the second driven gear 314 are respectively fixedly connected to the transmission pipe 311 and the worm 313. The worm gear 312 is in transmission connection with the worm 313. The second driven gear 314 is in transmission connection with the driving module 5.
[0049] Please refer to Figure 4 and Figure 5 Further, the adsorbing member 32 further includes a vacuum pump 323, a flexible pipe 324 and an annular groove 326. The vacuum pump 323 is connected to the fixed cover 11. The flexible pipe 324 is connected between the central pipe 321 and the vacuum pump 323. An annular groove 326 is provided on the surface of the central pipe 321. The moving frame 42 is connected in the annular groove 326. The four suction cups 322 are all fixedly connected to the central pipe 321. The two pressure plates 43 are symmetrically distributed on both sides of the suction cups 322. The vacuum pump 323 controls the suction cups 322 to adsorb or release the insulation board 10 through the flexible pipe 324 and the central pipe 321.
[0050] Please refer to Figure 3 、 Figure 7 and Figure 8 Further, the protective housing 1 further includes positioning clamping blocks 13, a protective sleeve 14 and guide rails 16. The four positioning clamping blocks 13 are fixedly connected to the surface of the protective housing 1. The end of the protective sleeve 14 is arranged at the end of the protective housing 1. Guide rails 16 are provided on the surface of the protective housing 1. The moving seat 61 is slidably connected in the guide rails 16.
[0051] In the embodiment of the present invention, the positioning clamping blocks 13 are made of elastic rubber. The protective sleeve 14 is used to protect the internal cutting member 62. The cutting edge of the cutting member 62 faces the inside of the protective sleeve 14 or is perpendicular to the surface of the insulation board 10, which is not only used to prevent the cutting member 62 from breaking, but also used to prevent the cutting member 62 from accidentally injuring the user.
[0052] It should be noted that since the adsorption area of the suction cup 322 is mainly concentrated at the geometric center of the insulation board 10, the cutting position of the cutting piece 62 has the following effects on the insulation board 10: when the cutting position of the cutting piece 62 is not within the adsorption area of the suction cup 322, the cut pieces of the insulation board 10 will directly fall due to gravity; when the cutting position of the cutting piece 62 is within the adsorption area of the suction cup 322, at this time, it is not necessary to separately remove the cut pieces of the insulation board 10, and the insulation board 10 can be directly installed on the installation surface. When the suction cup 322 is released, since the cut pieces of the insulation board 10 that are not in contact with the installation surface lose the bonding force of the mortar, they will also automatically fall, and the remaining insulation board 10 is bonded to the installation surface by the mortar, further improving the convenience during the installation of the insulation board 10.
[0053] Please refer to Figure 1 、 Figure 3 、 Figure 7 and Figure 8 In one embodiment of the present invention, the protective housing 1 includes a fixed cover 11, a first transmission member 12 and a rotating shaft 15. The rotating shaft 15 is fixedly connected to the side wall of the protective housing 1. The first transmission member 12 includes a transmission rod 121, a first driven gear 122 and a transmission gear 123. Both the first driven gear 122 and the transmission gear 123 are fixedly connected to the transmission rod 121. The fixed cover 11 is fixedly connected to the protective housing 1. The transmission rod 121, the drive module 5, the telescopic member 41 and the second transmission member 31 are all connected to the fixed cover 11. The first driven gear 122 is in transmission connection with the drive module 5.
[0054] Please refer to Figure 1 、 Figure 3 、 Figure 7 and Figure 8 Furthermore, the framework 2 includes a fixed frame 21, a handle 22, a fixed pipe sleeve 23 and a fixed gear disk 24. The handle 22 and the fixed pipe sleeve 23 are both fixedly connected to the fixed frame 21. The fixed gear disk 24 is fixedly connected to the fixed pipe sleeve 23. The rotating shaft 15 is rotatably connected within the fixed pipe sleeve 23. The transmission gear 123 is fixedly connected to the fixed gear disk 24.
[0055] In an embodiment of the present invention, a control display module 9 is fixedly connected to the surface of the fixed frame 21. The displacement sensor 7 and the angle sensor 8 are both communicatively connected to the control display module 9. Displacement sensors 7 are fixedly connected to the surfaces of the moving seat 61 and the moving frame 42. Angle sensors 8 are fixedly connected to the surfaces of the transmission pipe 311 and the rotating shaft 15. The control display module 9 includes operation buttons and a display screen. The cutting and installation of the insulation board 10 are controlled through different buttons, and specific parameters are viewed through the display screen.
[0056] Please refer to Figure 4 、 Figure 5 and Figure 9, in an embodiment of the present invention, the driving module 5 includes a first driving motor 51, a driving shaft 52, a driving gear ring 53, and a limiting end 56. The first driving motor 51 is fixedly connected to the driving shaft 52. A limiting end 56 is provided at the end of the driving shaft 52. The driving gear ring 53 is movably sleeved on the surface of the driving shaft 52. Both the first driven gear 122 and the second driven gear 314 are in transmission connection with the driving gear ring 53. The central tube 321 is movably connected in the transmission tube 311. Limiting ribs 325 are provided on the surfaces of both the central tube 321 and the driving shaft 52. Limiting grooves are provided on the inner walls of both the transmission tube 311 and the driving gear ring 53. The limiting ribs 325 are slidably connected to the limiting grooves.
[0057] Please refer to Figure 9 , further, the driving module 5 further includes an electromagnet 54, a return spring 55, and a bracket 57. Both the first driving motor 51 and the bracket 57 are connected to the fixed cover 11. The electromagnet 54 is embedded on the surface of the bracket 57. The return spring 55 is connected between the driving gear ring 53 and the bracket 57.
[0058] In an embodiment of the present invention, when the electromagnet 54 is powered off, since the electromagnet 54 after power-off loses the magnetic attraction force on the driving gear ring 53, the elastic force of the return spring 55 drives the driving gear ring 53 to move along the driving shaft 52 to a position where it fits against the limiting end 56. At this time, the driving gear ring 53 is in transmission connection with the second driven gear 314. When the electromagnet 54 is powered on, since the electromagnet 54 after power-on adsorbs and fits against the driving gear ring 53, the driving gear ring 53 moves along the driving shaft 52 to a position where it is in transmission connection with the first driven gear 122.
[0059] Working principle: Refer to the appendix Figure 7 , in the initial state, both the suction cup 322 and the pressure plate 43 are distributed inside the positioning clamping block 13. When it is necessary to pick up the insulation board 10, hold the handle 22 and buckle the four groups of positioning clamping blocks 13 outside the insulation board 10 or embed or clamp the insulation board 10 inside the four groups of positioning clamping blocks 13, and use the suction cup 322 to adsorb and fix the insulation board 10, which has the function of positioning and grasping the insulation board 10, so as to ensure the accuracy of cutting and installation in the subsequent process.
[0060] Refer to the appendix Figure 8 to the appendix Figure 12, when the insulation board 10 needs to be cut, first, the telescopic member 41 is used to control the movement of the moving frame 42, the pressing plate 43, the central tube 321, the suction cup 322 and the insulation board 10, so that the pressing plate 43 and the insulation board 10 are disengaged from the positioning clamping block 13. Then, the electromagnet 54 is controlled to cut off the power. Since the electromagnet 54 loses the magnetic suction force on the driving gear ring 53 after power-off, the elastic force of the return spring 55 drives the driving gear ring 53 to move along the driving shaft 52 to a position where it fits with the limit end 56. At this time, the driving gear ring 53 is in transmission connection with the second driven gear 314. Then, the first driving motor 51 controls the rotation of the driving gear ring 53 through the driving shaft 52. The rotating driving gear ring 53 controls the worm 313, the worm gear 312, the transmission tube 311, the central tube 321, the suction cup 322 and the insulation board 10 to rotate by a certain angle through the second driven gear 314. The angle sensor 8 is used to accurately control the rotation angle, which is not only convenient for cutting along the length direction, width direction or inclined direction of the insulation board 10, but also can adjust the installation angle of the insulation board 10 on the installation surface during installation. Immediately afterwards, the first driving motor 51 and the threaded rod 63 are used to control the movement of the moving seat 61 and the cutting member 62. The displacement sensor 7 is used to accurately control the moving distance of the cutting member 62. Then, the telescopic member 41 is used to control the movement of the moving frame 42, the pressing plate 43, the central tube 321, the suction cup 322 and the insulation board 10. The energized cutting member 62 precisely cuts the moving insulation board 10. Immediately afterwards, the cutting member 62 after cutting is controlled to cut off the power, and the cutting member 62 is controlled to reset into the protective sleeve 14. The protective sleeve 14 plays a role in protecting the cutting member 62. During the entire cutting and installation process, only by holding the handle to control the display module can the cutting, angle adjustment and installation work of the insulation board 10 be completed, without the need for any other tools and personnel for assistance, having the characteristics of convenient use, simple operation and easy installation for high-altitude operations.
[0061] Reference appendix Figure 9 and appendix Figure 13 , when the installation surface is inclined to the building surface, first, the electromagnet 54 is controlled to be energized. Since the energized electromagnet 54 adsorbs and fits the driving gear ring 53, the driving gear ring 53 moves along the driving shaft 52 to a position where it is in transmission connection with the first driven gear 122. Then, the driving module 5 is used to control the rotation of the first driven gear 122, the transmission rod 121 and the transmission gear 123. The rotating transmission gear 123 controls the protective housing 1 and the insulation board 10 to rotate around the rotating shaft 15 by being in transmission connection with the fixed tooth disc 24. The angle sensor 8 is used to accurately monitor the rotation angle of the protective housing 1. Then, the telescopic member 41 is used to control the movement of the moving frame 42, the pressing plate 43, the central tube 321, the suction cup 322 and the insulation board 10, so as to fit the insulation board 10 to the installation surface. The pressing plate 43 is used to expand the contact area for extruding the insulation board 10, which is beneficial to discharging the air bubbles between the insulation board 10 and the installation surface, thereby improving the tightness and firmness of the fit. Finally, the suction cup 322 releases the insulation board 10.
[0062] In summary, by controlling the rotation and movement of the insulation board 10, the present application can not only accurately cut along the length direction, width direction or inclined direction of the insulation board 10 before installation, but also adjust the installation angle of the insulation board 10 on the installation surface according to the installation requirements, solving the problem that it is inconvenient to cut the insulation board 10 during high-altitude installation operations, and having the characteristics of being convenient for cutting the insulation board 10 during high-altitude operations and facilitating the installation of the insulation board 10.
[0063] For those skilled in the art, although several embodiments and examples of the present invention have been described, these embodiments and examples are presented as examples and are not intended to limit the scope of the invention. These new embodiments can be implemented in various other ways, and various omissions, substitutions, and changes can be made without departing from the gist of the invention.
[0064] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only includes an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An auxiliary installation device for a thermal insulation board used in construction engineering, comprising a protective housing (1) and a skeleton (2), the protective housing (1) being connected to the skeleton (2), characterized in that, Further comprising: An adsorption module (3), the adsorption module (3) includes a second transmission member (31) and an adsorbing member (32), the second transmission member (31) is connected to the protective housing (1), the adsorbing member (32) includes a central tube (321) and a suction cup (322), the central tube (321) is coaxially connected to the second transmission member (31), and the suction cup (322) is fixedly connected to the central tube (321); A drive module (5) drivingly connected to the second transmission member (31), the drive module (5) is connected within the protective housing (1); A telescopic module (4), the telescopic module (4) includes a telescopic member (41), a moving frame (42) and a pressing disc (43), the telescopic member (41) is fixedly connected to the protective housing (1), the moving frame (42) is fixedly connected to the telescopic member (41), the pressing disc (43) is disposed on the surface of the moving frame (42), and the moving frame (42) is connected to the surface of the central tube (321); A cutting module (6), the cutting module (6) includes a moving seat (61), a cutting member (62), a threaded rod (63) and a second drive motor (64), the second drive motor (64) is connected to the threaded rod (63), the moving seat (61) is threadedly connected to the threaded rod (63), the cutting member (62) is fixedly connected to the moving seat (61), and the threaded rod (63) and the second drive motor (64) are both connected to the protective housing (1); The protective housing (1) includes a fixed cover (11), a first transmission member (12) and a rotating shaft (15), the rotating shaft (15) is fixedly connected to the side wall of the protective housing (1), the first transmission member (12) includes a transmission rod (121), a first driven gear (122) and a transmission gear (123), the first driven gear (122) and the transmission gear (123) are both fixedly connected to the transmission rod (121), the fixed cover (11) is fixedly connected to the protective housing (1), the transmission rod (121), the drive module (5), the telescopic member (41) and the second transmission member (31) are all connected to the fixed cover (11), and the first driven gear (122) is drivingly connected to the drive module (5); The framework (2) includes a fixed frame (21), a handle (22), a fixed tube sleeve (23) and a fixed gear disc (24), the handle (22) and the fixed tube sleeve (23) are both fixedly connected to the fixed frame (21), the fixed gear disc (24) is fixedly connected to the fixed tube sleeve (23), the rotating shaft (15) is rotatably connected within the fixed tube sleeve (23), and the transmission gear (123) is fixedly connected to the fixed gear disc (24); The second transmission member (31) includes a transmission pipe (311), a worm gear (312), a worm (313) and a second driven gear (314). The worm (313) and the transmission pipe (311) are both connected to the fixed cover (11). The worm gear (312) and the second driven gear (314) are respectively fixedly connected to the transmission pipe (311) and the worm (313). The worm gear (312) is in transmission connection with the worm (313), and the second driven gear (314) is in transmission connection with the drive module (5).
2. The auxiliary installation device for a heat preservation board used in a construction project according to claim 1, wherein The drive module (5) includes a first drive motor (51), a drive shaft (52), a driving tooth ring (53) and a limit end (56). The first drive motor (51) is fixedly connected with the drive shaft (52). A limit end (56) is arranged at the end of the drive shaft (52). The driving tooth ring (53) is movably sleeved on the surface of the drive shaft (52). Both the first driven gear (122) and the second driven gear (314) are in transmission connection with the driving tooth ring (53). The central tube (321) is movably connected in the transmission pipe (311). Limit ribs (325) are arranged on the surface of the central tube (321) and the surface of the drive shaft (52). Limit grooves are arranged on the inner walls of the transmission pipe (311) and the driving tooth ring (53). The limit ribs (325) are slidably connected with the limit grooves.
3. The auxiliary installation device for the thermal insulation board used in construction engineering according to claim 2, wherein, The drive module (5) further includes an electromagnet (54), a return spring (55) and a bracket (57). The first drive motor (51) and the bracket (57) are both connected to the fixed cover (11). The electromagnet (54) is embedded on the surface of the bracket (57). The return spring (55) is connected between the driving tooth ring (53) and the bracket (57).
4. An auxiliary installation device for thermal insulation boards used in construction engineering according to claim 3, characterized in that, The adsorbing member (32) further includes a vacuum pump (323), a flexible pipe (324) and an annular groove (326). The vacuum pump (323) is connected to the fixed cover (11). The flexible pipe (324) is connected between the central tube (321) and the vacuum pump (323). An annular groove (326) is arranged on the surface of the central tube (321). The moving frame (42) is connected in the annular groove (326). The four suction cups (322) are all fixedly connected to the central tube (321). The two pressure plates (43) are symmetrically distributed on both sides of the suction cups (322).
5. An auxiliary installation device for thermal insulation boards used in construction engineering according to claim 4, characterized in that, The protective housing (1) further includes positioning clamping blocks (13), a protective sleeve (14) and a guide rail (16). The four positioning clamping blocks (13) are fixedly connected to the surface of the protective housing (1). The end of the protective sleeve (14) is arranged at the end of the protective housing (1). A guide rail (16) is arranged on the surface of the protective housing (1). The moving seat (61) is slidably connected in the guide rail (16).
6. The auxiliary installation device for a heat preservation board used in construction engineering according to claim 5, characterized in that, A displacement sensor (7) and an angle sensor (8) are further included. Displacement sensors (7) are fixedly connected to the surfaces of the moving seat (61) and the moving frame (42). Angle sensors (8) are fixedly connected to the surfaces of the transmission pipe (311) and the rotating shaft (15).
7. An auxiliary installation device for thermal insulation boards used in construction engineering according to claim 6, characterized in that It further includes a control and display module (9), the control and display module (9) is fixedly connected to the surface of the fixing bracket (21), and both the displacement sensor (7) and the angle sensor (8) are communicatively connected to the control and display module (9).
Citation Information
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