CN114704057B - Assembly type building external wall insulation board construction equipment - Google Patents
Assembly type building external wall insulation board construction equipment Download PDFInfo
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- CN114704057B CN114704057B CN202210395031.6A CN202210395031A CN114704057B CN 114704057 B CN114704057 B CN 114704057B CN 202210395031 A CN202210395031 A CN 202210395031A CN 114704057 B CN114704057 B CN 114704057B
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- 238000001514 detection method Methods 0.000 claims description 11
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- 238000004321 preservation Methods 0.000 claims description 6
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F21/00—Implements for finishing work on buildings
- E04F21/18—Implements for finishing work on buildings for setting wall or ceiling slabs or plates
- E04F21/1838—Implements for finishing work on buildings for setting wall or ceiling slabs or plates for setting a plurality of similar elements
- E04F21/1844—Implements for finishing work on buildings for setting wall or ceiling slabs or plates for setting a plurality of similar elements by applying them one by one
- E04F21/1861—Implements for finishing work on buildings for setting wall or ceiling slabs or plates for setting a plurality of similar elements by applying them one by one for setting insulating panels
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Abstract
The invention discloses an assembly type construction equipment for an external wall insulation board of a building, and belongs to the technical field of insulation board construction equipment. The electric sliding table comprises a hydraulic telescopic rod and a base, wherein the hydraulic telescopic rod is installed on the base, a plurality of tooth sockets are formed in the hydraulic telescopic rod, a transmission mechanism is arranged on the upper hydraulic telescopic rod, a supporting assembly is arranged on the hydraulic telescopic rod, a first installation block is connected between the supporting assembly and the transmission mechanism, an electric sliding table is connected onto the transmission mechanism, a flitch plate assembly is arranged on the electric sliding table, the electric sliding table moves on the hydraulic telescopic rod through the transmission mechanism, the flitch plate assembly moves on the electric sliding table, the transmission mechanism drives the electric sliding table to move longitudinally, the electric sliding table drives the flitch plate assembly to move transversely, and the supporting assembly stabilizes the electric sliding table.
Description
Technical Field
The invention relates to the technical field of insulation board construction equipment, in particular to prefabricated building outer wall insulation board construction equipment.
Background
The fabricated building is a building which is formed by transferring a large amount of field operation work in the traditional construction mode to a factory, processing and manufacturing building components and accessories (such as floor slabs, wall slabs, stairs, balconies and the like) in the factory, transporting the components and accessories to a building construction site, and assembling and installing the components and the accessories on the site in a reliable connection mode. The heat insulation plate is a plate for heat insulation of a building, which is popular and easy to understand. The heat-insulating board is a hard foamed plastic board made up by using polystyrene resin as raw material, adding other raw auxiliary materials and polymer, heating, mixing and simultaneously injecting catalyst, then extruding and forming, and has the characteristics of moisture-proofing, water-proofing and light weight, and can reduce the thickness of external enclosure structure of building so as to increase indoor use area.
Traditional construction external wall heated board construction all carries out the manual work and builds the scaffold frame, just has consumeed a large amount of manpower and materials with the preparation work before the heated board installation, after the scaffold frame is built, still need the workman to scramble and carry out heated board installation operation at the eminence, also brings the hidden danger for workman's life safety when consuming time and wasting effort, consequently to the potential safety hazard problem that workman climbing eminence installation heated board exists to and heated board installation rate problem still remains to be solved.
Disclosure of Invention
The invention aims to provide construction equipment for an external wall insulation board of an assembly type building, which aims to solve the problems in the background technology.
In order to solve the technical problems, the invention provides the following technical scheme:
assembly type structure external wall insulation board construction equipment, this assembly type structure external wall insulation board construction equipment includes hydraulic telescoping rod, a pedestal, hydraulic telescoping rod installs on the base, a plurality of tooth's sockets have been seted up on the hydraulic telescoping rod, the last drive mechanism that is provided with of hydraulic telescoping rod, the last supporting component that is provided with of hydraulic telescoping rod, be connected with first installation piece between supporting component and the drive mechanism, the last electronic slip table that is connected with of drive mechanism, be provided with flitch subassembly on the electronic slip table, electronic slip table passes through drive mechanism and moves on hydraulic telescoping rod, flitch subassembly moves on electronic slip table, drive mechanism drives electronic slip table and is longitudinal movement, electronic slip table drives flitch subassembly lateral shifting, supporting component stabilizes electronic slip table.
Drive mechanism includes two sets of drive assembly, every drive assembly of group all includes two first V templates and two second V templates, first pivot, the second pivot, first V template and second V template rotate through first pivot and second pivot to be connected, install second installation piece on the articulated shaft of second V template, first installation piece is installed on the articulated shaft of first V template, hydraulic telescoping rod compares traditional stand, it carries and installs to make things convenient for the construction more, and need not artifical climbing eminence and carry out top fixed work, avoid taking place workman high altitude construction and take place dangerous condition, change along with the flexible pipe diameter that takes place of hydraulic telescoping rod, first V template and second V template are under the effect of spring, still can make first spacing roller and the spacing roller of second hug closely hydraulic telescoping rod's surface, make first spacing gear and the spacing gear of second keep the engaged state with the tooth's socket.
The connecting end of first V template and second V template is provided with the spring, the one end of first pivot is provided with first transmission gear, the first pivot be provided with first anticreep ring, install first spacing roller in the first pivot, be provided with first spacing gear on the first spacing roller, at first horizontal installation sill bar on the wall of waiting for mat formation heated board, base and hydraulic telescoping rod have been installed to the wall side, drive the axostylus axostyle operation through controller control third motor, the axostylus axostyle drives the drive belt operation again, place the heated board that the installation face scribbled the binder in pan feeding district department, make the heated board move along the stopper under the condition that the drive belt drove electric expansion plate, when filling with the heated board between two drive belts, close the third motor through the controller, control hydraulic telescoping rod rises to can the construction height, control first electric expansion rod and do the extension motion, control second electric expansion rod again and do the extension motion, control the rig makes auger bit rotate, until auger bit bores into the side wall body, exert firm power to hydraulic telescoping rod, make hydraulic telescoping rod keep perpendicular with the wall, improve the installation accuracy of heated board.
One end of the second rotating shaft is provided with a second transmission gear, the second rotating shaft is provided with a second anti-drop ring, a second limiting roller is installed on the second rotating shaft, a second limiting gear is arranged on the second limiting roller, the hydraulic telescopic rod is located between the first limiting roller and the second limiting roller, and the first limiting gear and the second limiting gear are respectively meshed with tooth grooves in two sides of the hydraulic telescopic rod.
The first V-shaped plate is provided with a first motor and a second motor at two ends respectively, an output shaft of the first motor is provided with a first output gear, the first output gear is meshed with a first transmission gear, an output shaft of the second motor is provided with a second output gear, the second output gear is meshed with a second transmission gear, the first output gear is installed on a first rotating shaft, the displacement change generated by the first V-shaped plate is circular motion by taking the first rotating shaft as a circle center, so the first output gear and the first transmission gear are always meshed and connected, the data parameters of the degree of ascension and the width of the insulation plate are measured in advance, the length and the width data parameters of a wall surface to be paved are recorded in a controller, the number of the insulation plate paving blocks corresponding to the length wall surface value is calculated by a central processing unit, the number of the insulation plate paving blocks corresponding to the wall surface and the width value is manually installed at the left end of a bottom strip of the wall surface, the first insulation plate is manually controlled by the controller to rotate in the relative rotation direction, the first motor drives the first rotating shaft of the first output gear, the second rotating shaft drives the second limiting gear and drives the second rotating shaft to rotate, and the second limiting gear to rotate, and drive the second limiting roller to rotate on the first rotating shaft, and drive the second limiting gear to rotate, and move a second limiting roller to rotate, and move on the second limiting gear to rotate, and move.
The supporting component comprises a lantern ring and a stay cable, the lantern ring is connected with the first installation block, the hydraulic telescopic rod is located in the lantern ring, a sliding roller is connected to the lantern ring in a rotating mode, the lantern ring is connected with one end of the stay cable, and the other end of the stay cable is connected with the electric sliding table.
Hydraulic telescoping rod's upper end is provided with first electric telescopic handle, second electric telescopic handle is installed to first electric telescopic handle's flexible end, the rig is installed to second electric telescopic handle's flexible end, the rig rotates and is connected with the auger bit, first installation piece on the first V template drives the lantern ring again and the smooth roller carries out longitudinal movement, carry out the power that the drag link was carried out to electric sliding table through the suspension cable, make electric sliding table keep the level stable, rethread controller control first electric sliding block carries out lateral shifting on electric sliding table, until the heated board between two drive belts removes to the originated heated board of the first piece of alignment, this moment, through the distance data of the current electric sliding table of controller control first distance measuring sensor record on hydraulic telescoping rod, the distance data of current first electric sliding block on electric sliding table of control second distance measuring sensor record.
The flitch component comprises a first electric slide block and a feeding area, the first electric slide block moves on an electric slide table, the first electric slide block is provided with two slide grooves, each slide groove is connected with a second electric slide block in a sliding way, the lower end of the second electric slide block is provided with a first mounting plate, the electric slide table is provided with a first distance measuring sensor, the first electric slide block is provided with a second distance measuring sensor, then, according to the data parameters of the insulation board measured in advance, the first electric slide block is controlled by a controller to move rightwards on the electric slide table by the length distance of one mounted insulation board and then stops moving, the controller controls the second electric slide block to drive the first mounting plate to move towards the wall surface, the first press plate presses the mounted insulation board, and the pressure that will receive transmits for first response piece, first response piece transmission signal gives the controller and starts the third motor, make the drive belt operation, the heated board is carried forward by the electronic expansion plate on the drive belt, at this moment, when connecing on the electronic expansion plate piece to remove to function block department, connect electric block sliding contact conducting block, the electronic expansion plate circular telegram of switch-on conducting block is the extension motion this moment, make the heated board laminated on the wall by the propelling movement, electrified connecing the piece to follow the drive belt and remove to circular telegram piece department, circular telegram piece and electrified connecing electric property intercommunication, detection module detects circular telegram piece and has the transmission signal of electric current after for the controller, the controller closes the third motor after receiving detection module transmission signal.
The downside of first mounting panel is provided with the second mounting panel, be provided with the stopper on the second mounting panel, be provided with axostylus axostyle and dead lever between first mounting panel and the second mounting panel, be provided with the heated board between first mounting panel and the second mounting panel, the third motor is installed to the lower extreme of second mounting panel, the output shaft and the axostylus axostyle of third motor are connected, it even has the change to rotate on the dead lever, the change is provided with the drive belt with the axostylus axostyle surface, evenly distributed has a plurality of electronic expansion plates on the drive belt, equal electric connection has the piece of switching on every electronic expansion plate.
The fixed rod is provided with a function block, the function block is internally provided with a conductive block and an electrifying block, the electrifying block is connected with the conductive block and the electrifying block in a sliding way, the electrifying block is connected with a detection module, one end of the first mounting plate is provided with a first induction block, one end of the first induction block is provided with a first pressing plate, one end of the second mounting plate is provided with a second induction block, one end of the second induction block is provided with a second pressing plate, the hydraulic telescopic rod, the first motor, the second motor, the third motor, the first electric telescopic rod, the second electric telescopic rod, the drilling machine, the electric sliding table, the first electric sliding block, the second electric sliding block, the first distance measuring sensor, the second distance measuring sensor, the first induction block, the second induction block and the detection module are all electrically connected with the controller, the heated board that is close to the wall and does not install still receives to come from to extend to change the electronic expansion plate under the attitude spacing, it can not drop to make it, thereby not influencing follow-up flitch work, at this moment, the electronic slider of controller control second drives first mounting panel and gets back to the normal position, the first electronic slider of controller control carries out the subsides work of heated board to continuation right side removal, until accomplishing and installing behind the heated board piece number that wall length value corresponds, controller control drive mechanism drives the width value of electronic slip table rebound heated board, then carry out heated board laminating work, the first electronic slider of controller control immediately carries out heated board laminating work to the distance of a board of removal left side, thereby form quick wall S type assembly line heated board subsides work.
Compared with the prior art, the invention has the following beneficial effects: the transmission mechanism, the supporting assembly and the flitch assembly improve the installation speed of the insulation board, the auger bit drills into the wall to prevent the hydraulic telescopic rod from tilting to improve the installation precision of the insulation board, the electric sliding table is stably supported through the lantern ring and the stay cable to keep high-level levelness, the installation precision of the insulation board is improved, the transmission belt is matched with the electric telescopic plate to quickly discharge and attach the insulation board, compared with the traditional manual single-block installation, the automatic insulation board installation device is quicker and more efficient, saves manpower, compared with the traditional manual scaffold installation method, the automatic insulation board installation device does not need to build a scaffold, does not need workers to climb high places to perform operation, and provides powerful guarantee for the life safety of the workers.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is a schematic view of a first three-dimensional structure of the prefabricated building external wall insulation board construction equipment of the present invention;
FIG. 2 is a schematic diagram of the construction of the insulation board of the equipment for constructing the insulation board of the exterior wall of the fabricated building of the present invention;
FIG. 3 is a schematic view of a transmission assembly of the construction equipment for the insulation board of the exterior wall of the fabricated building of the present invention;
FIG. 4 is a schematic structural diagram of a supporting assembly of the prefabricated building external wall insulation board construction equipment;
FIG. 5 is a schematic view of the connection relationship between a transmission assembly and a hydraulic rope rod of the equipment for constructing the insulation board of the exterior wall of the fabricated building of the present invention;
FIG. 6 is a schematic view of a flitch assembly of the construction equipment for the heat-insulating board of the external wall of the fabricated building of the invention;
FIG. 7 is a schematic view of the prefabricated building external wall insulation board construction equipment at the position A in FIG. 6;
FIG. 8 is a schematic view of the prefabricated building external wall insulation board construction equipment at the position B in FIG. 6;
FIG. 9 is a schematic view of a partial structure of a flitch assembly of the prefabricated building external wall insulation board construction device of the present invention;
FIG. 10 is a schematic structural view in cross section and side view of the prefabricated building external wall insulation board construction equipment of the present invention;
FIG. 11 is an enlarged view of the construction equipment for the insulation board of the exterior wall of the prefabricated building of the present invention at the point C in FIG. 10;
FIG. 12 is a schematic diagram of the layout structure of conductive blocks in the functional blocks of the construction equipment for the external wall insulation board of the prefabricated building of the present invention;
in the figure: 1. a hydraulic telescopic rod; 101. a tooth socket; 102. a base.
2. A transmission mechanism; 201. a first V-shaped plate; 202. a second V-shaped plate; 203. a first mounting block; 204. a spring; 205. a first motor; 2051. a first output gear; 206. a second motor; 2061. a second output gear; 207. a second mounting block; 11. a first rotating shaft; 1101. a first transmission gear; 1102. a first anti-slip ring; 1103. a first limit roller; 1104. a first limit gear; 12. a second rotating shaft; 1201. a second transmission gear; 1202. a second anti-slip ring; 1203. a second limit roller; 1204. and a second limit gear.
3. A support assembly; 301. a collar; 302. a sliding roller; 303. and (4) stay cables.
4. A first electric telescopic rod; 5. a second electric telescopic rod; 6. a drilling machine; 601. a helical drill bit; 7. an electric sliding table; 13. a first ranging sensor; 14. a second ranging sensor.
8. A flitch component; 10. a thermal insulation board; 1011. a feeding area; 801. a first electric slider; 802. a chute; 15. a second electric slider; 16. a first mounting plate; 161. a first sensing block; 162. a first presser plate; 17. a second mounting plate; 171. a second sensing block; 172. a second platen; 18. a shaft lever; 19. a third motor; 20. fixing the rod; 2011. rotating the ring; 2022. a function block; 21. a transmission belt; 22. an electric expansion plate; 2201. a power connection block; 23. a limiting block; 24. a conductive block; 25. a power-on block; 26. and a detection module.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be obtained by a person skilled in the art without making any creative effort based on the embodiments in the present invention, belong to the protection scope of the present invention.
Referring to fig. 1 to 12, the present invention provides a technical solution:
assembled building external wall insulation board construction equipment, this assembled building external wall insulation board construction equipment includes hydraulic telescoping rod 1, base 102, hydraulic telescoping rod 1 installs on base 102, hydraulic telescoping rod 1 is last to have seted up a plurality of tooth's sockets 101, be provided with drive mechanism 2 on the hydraulic telescoping rod 1, be provided with supporting component 3 on the hydraulic telescoping rod 1, be connected with first installation piece 203 between supporting component 3 and the drive mechanism 2, drive mechanism 2 is last to be connected with electronic slip table 7, be provided with flitch subassembly 8 on electronic slip table 7, electronic slip table 7 passes through drive mechanism 2 and moves on hydraulic telescoping rod 1, flitch subassembly 8 moves on electronic slip table 7, drive mechanism 2 drives electronic slip table 7 and is longitudinal movement, electronic slip table 7 drives flitch subassembly 8 lateral shifting, supporting component 3 stabilizes electronic slip table 7.
The connecting end of the first V-shaped plate 201 and the second V-shaped plate 202 is provided with a spring 204, one end of a first rotating shaft 11 is provided with a first transmission gear 1101, the first rotating shaft 11 is provided with a first anti-slip ring 1102, a first limit roller 1103 is installed on the first rotating shaft 11, a first limit gear 1104 is arranged on the first limit roller 1103, a bottom strip is horizontally installed on a wall surface waiting for paving of the heat-insulation plate 10, a base 102 and a hydraulic telescopic rod 1 are installed on the wall surface side, a third motor 19 is controlled by a controller to drive a shaft lever 18 to operate, the shaft lever 18 drives a transmission belt 21 to operate, the heat-insulation plate 10 with an adhesive coated on an installation surface is placed in a feeding area 1011, the heat-insulation plate 10 moves along a limit block 23 under the condition that the transmission belt 21 drives an electric telescopic plate 22 until the heat-insulation plate 10 is filled between the two transmission belts 21, the third motor 19 is closed by the controller, the hydraulic telescopic rod 1 is controlled to ascend to a construction height, the first electric telescopic rod 4 is controlled to do stretching movement, the second electric telescopic rod 5 is controlled to do stretching movement, a drilling machine 6 is controlled to make a spiral drill bit 601 rotate until the spiral drill bit 601 enters into the inner side 9, the wall surface 1, and the hydraulic telescopic rod 1 keeps the wall surface to stably install the vertical installation force of the wall surface 10.
One end of the second rotating shaft 12 is provided with a second transmission gear 1201, the second rotating shaft 12 is provided with a second anti-drop ring 1202, the second rotating shaft 12 is provided with a second limiting roller 1203, the second limiting roller 1203 is provided with a second limiting gear 1204, the hydraulic telescopic rod 1 is located between the first limiting roller 1103 and the second limiting roller 1203, and the first limiting gear 1104 and the second limiting gear 1204 are respectively meshed with tooth grooves 101 on two sides of the hydraulic telescopic rod 1.
A first motor 205 and a second motor 206 are respectively arranged at two ends of the first V-shaped plate 201, a first output gear 2051 is mounted on an output shaft of the first motor 205, the first output gear 2051 is meshed with the first transmission gear 1101, a second output gear 2061 is mounted on an output shaft of the second motor 206, the second output gear 2061 is meshed with the second transmission gear 1201, because the first output gear 2051 is installed on the first rotating shaft 11, and the displacement change generated by the first V-shaped plate 201 is circular motion with the first rotating shaft 11 as the center of circle, the first output gear 2051 and the first transmission gear wheel 1101 are always meshed and connected, the data parameters of the upper degree and the width of the heat-insulating plate 10 are measured in advance, and the length and width data parameters of the wall surface to be paved, the measured data parameters are recorded in the controller, the number of the paving blocks of the heat-preservation plate 10 corresponding to the length value of the wall surface and the number of the paving blocks of the heat-preservation plate 10 corresponding to the width value of the wall surface are calculated by the central processing unit, the first insulation board 10 is installed at the left end of the bottom strip of the wall surface manually, the controller controls the first motor 205 and the second motor 206 to rotate in the relative rotation direction, the first output gear 2051 drives the first rotating shaft 11 on the first transmission gear 1101 to rotate, the second output gear 2061 drives the second rotating shaft 12 on the second transmission gear 1201 to rotate, so that the first limiting roller 1103 and the first limiting gear 1104 on the first rotating shaft 11 are operated, and the second limit roller 1203 and the second limit gear 1204 on the second rotating shaft 12 are operated, the first limit gear 1104 and the second limit gear 1204 are operated oppositely, thereby drive first V template 201 and second V template 202 and do longitudinal movement on hydraulic telescoping rod 1, second installation piece 207 drives electronic slip table 7 and carries out longitudinal movement.
The supporting component 3 comprises a lantern ring 301 and a stay cable 303, the lantern ring 301 is connected with the first mounting block 203, the hydraulic telescopic rod 1 is located in the lantern ring 301, a sliding roller 302 is connected to the lantern ring 301 in a rotating mode, the lantern ring 301 is connected with one end of the stay cable 303, and the other end of the stay cable 303 is connected with the electric sliding table 7.
The upper end of hydraulic telescoping rod 1 is provided with first electric telescopic handle 4, second electric telescopic handle 5 is installed to the flexible end of first electric telescopic handle 4, rig 6 is installed to the flexible end of second electric telescopic handle 5, rig 6 rotates and is connected with auger bit 601, first installation piece 203 on the first V template 201 drives lantern ring 301 and smooth roller 302 again and carries out longitudinal movement, carry out the power that draws the brace to electric sliding table 7 through stay cable 303, make electric sliding table 7 keep the level stable, rethread controller control first electric sliding block 801 carries out lateral shifting on electric sliding table 7, until moving the heated board 10 between two drive belts 21 to the first originated heated board 10 of the alignment, at this moment, through the first range sensor 13 record of controller control distance data of current electric sliding table 7 on hydraulic telescoping rod 1, control second range sensor 14 record of distance data of current first electric sliding block 801 on electric sliding table 7.
The flitch component 8 comprises a first electric slide block 801 and a feeding area 1011, the first electric slide block 801 moves on an electric sliding table 7, two sliding grooves 802 are arranged on the first electric slide block 801, a second electric slide block 15 is connected on each sliding groove 802 in a sliding manner, a first mounting plate 16 is mounted at the lower end of each second electric slide block 15, a first distance measuring sensor 13 is arranged on the electric sliding table 7, a second distance measuring sensor 14 is arranged on the first electric slide block 801, then, according to the data parameters of the heat preservation plate 10 measured in advance, the first electric slide block 801 is controlled by a controller to move rightwards by the length distance of the heat preservation plate 10 mounted on the electric sliding table 7 and stops moving, the controller controls the second electric slide block 15 to drive the first mounting plate 16 to move towards the wall surface, and the first pressing plate 162 presses the heat preservation plate 10 mounted, the received pressure is transmitted to the first induction block 161, the first induction block 161 transmits a signal to the controller to start the third motor 19, so that the transmission belt 21 runs, the heat insulation plate 10 is conveyed forwards by the electric expansion plate 22 on the transmission belt 21, at the moment, when the power connection block 2201 on the electric expansion plate 22 moves to the functional block 2022, the power connection block 2201 is in sliding contact with the conductive block 24, the electric expansion plate 22 connected with the conductive block 24 is powered on to perform stretching movement, so that the heat insulation plate 10 is pushed and attached to the wall surface, the electrified power connection block 2201 moves to the power connection block 25 along with the transmission belt 21, the power connection block 25 is electrically connected with the electrified power connection block 2201, the detection module 26 detects that the power connection block 25 has current, then the signal is transmitted to the controller, and the controller receives the signal transmitted by the detection module 26 and then closes the third motor 19.
First mounting panel 16's downside is provided with second mounting panel 17, be provided with stopper 23 on the second mounting panel 17, be provided with axostylus axostyle 18 and dead lever 20 between first mounting panel 16 and the second mounting panel 17, be provided with heated board 10 between first mounting panel 16 and the second mounting panel 17, third motor 19 is installed to the lower extreme of second mounting panel 17, third motor 19's output shaft and axostylus axostyle 18 are connected, it has change 2011 to rotate on the dead lever 20, change 2011 and 18 surfaces of axostylus axostyle are provided with drive belt 21, evenly distributed has a plurality of electric expansion plates 22 on the drive belt 21, equal electric connection has electricity piece 2201 on every electric expansion plate 22.
The fixed rod 20 is provided with a function block 2022, the function block 2022 is internally provided with a conductive block 24 and an electrifying block 25, the electrifying block 2201 is slidably connected with the conductive block 24 and the electrifying block 25, the electrifying block 25 is connected with a detection module 26, one end of the first mounting plate 16 is provided with a first induction block 161, one end of the first induction block 161 is provided with a first pressing plate 162, one end of the second mounting plate 17 is provided with a second induction block 171, one end of the second induction block 171 is provided with a second pressing plate 172, the hydraulic telescopic rod 1, the first motor 205, the second motor 206, the third motor 19, the first electric telescopic rod 4, the second electric telescopic rod 5, the drilling machine 6, the electric sliding table 7, the first electric sliding block 801, the second electric sliding block 15, the first distance measuring sensor 13, the second distance measuring sensor 14, the first induction block 161, the second induction block 171 and the detection module 26 are all electrically connected with the controller, it is spacing that the heated board 10 that is close to the wall and does not install still receives the electronic expansion plate 22 that comes from under the extension commentaries on classics attitude, it can not drop to make it, thereby do not influence follow-up flitch work, at this moment, electronic slider 15 of controller control second drives first mounting panel 16 and gets back to the normal position, the first electronic slider 801 of controller control carries out the subsides dress work of heated board 10 to continuing the right movement, until accomplishing and installing behind the heated board 10 that wall length value corresponds, controller control drive mechanism 2 drives the width value of electronic slip table 7 rebound heated board 10, then carry out heated board 10 laminating work, the controller control first electronic slider 801 moves the distance of a board left and carries out heated board 10 laminating work immediately, thereby form quick wall S type assembly line heated board 10 dress work.
The working principle of the invention is as follows: firstly, horizontally installing bottom strips on a wall surface waiting for paving of a heat insulation board 10, installing a base 102 and a hydraulic telescopic rod 1 on the side of the wall body, controlling a third motor 19 to drive a shaft rod 18 to operate through a controller, driving a driving belt 21 to operate through the shaft rod 18, placing the heat insulation board 10 with an installation surface coated with a bonding agent at a feeding area 1011, enabling the heat insulation board 10 to move along a limiting block 23 under the condition that the driving belt 21 drives an electric expansion plate 22, when the heat insulation board 10 is filled between two driving belts 21, closing the third motor 19 through the controller, controlling the hydraulic telescopic rod 1 to ascend to a construction height, controlling a first electric telescopic rod 4 to do expansion movement, then controlling a second electric telescopic rod 5 to do expansion movement, controlling a drilling machine 6 to enable a spiral drill bit 601 to rotate until the spiral drill bit 601 enters into a side wall body 9, applying a firm force to the hydraulic telescopic rod 1, enabling the hydraulic telescopic rod 1 to be vertical to the wall surface, and improving the installation precision of the heat insulation board 10;
because the first output gear 2051 is installed on the first rotating shaft 11, the displacement change generated by the first V-shaped plate 201 is circular motion with the first rotating shaft 11 as the center of circle, the first output gear 2051 and the first transmission gear wheel 1101 are always in meshed connection, the data parameters of the upper degree and the width of the insulation board 10 and the data parameters of the length and the width of the wall to be paved are measured in advance, the measured data parameters are recorded in the controller, the number of the paving blocks of the insulation board 10 corresponding to the length value of the wall and the number of the paving blocks of the insulation board 10 corresponding to the width value of the wall are calculated by the central processor, the first insulation board 10 is installed at the left end of the bottom strip of the wall through manpower, the first motor 205 and the second motor 206 are controlled to rotate in the relative rotating direction by the controller, the first output gear 2051 drives the first rotating shaft 11 on the first transmission gear 1101 to rotate, the second output gear 2061 drives the second rotating shaft 12 on the second transmission gear to rotate, so that the first limiting roller 11 and the first rotating shaft 12 and the second limiting gear 1204 move in the longitudinal direction, and the second limiting gear 1204 and the second sliding table 1204 move, and the second limiting gear 1204 moves relative to move, and the second sliding table 1204 and the first limiting gear 1204 and the second sliding table 1204 and move, thereby drive the first limiting gear 1204 to move in the longitudinal direction, and move, and the second limiting gear 1204 and the second sliding table 1104;
the first mounting block 203 on the first V-shaped plate 201 drives the collar 301 and the sliding roller 302 to move longitudinally, the stay cable 303 is used for pulling and supporting the electric sliding table 7, so that the electric sliding table 7 is kept horizontal and stable, the controller is used for controlling the first electric sliding block 801 to move transversely on the electric sliding table 7 until the heat insulation board 10 between the two transmission belts 21 is moved to be aligned with the first initial heat insulation board 10, at the moment, the controller is used for controlling the first distance measuring sensor 13 to record the current distance data of the electric sliding table 7 on the hydraulic telescopic rod 1, and the second distance measuring sensor 14 is used for recording the current distance data of the first electric sliding block 801 on the electric sliding table 7;
then, according to the data parameters of the insulation board 10 measured in advance, the controller controls the first electric slider 801 to move on the electric sliding table 7 to the right for a length distance for installing the insulation board 10 and then stop moving, the controller controls the second electric slider 15 to drive the first installing plate 16 to move towards the wall surface, the first pressing plate 162 presses the installed insulation board 10 in a pressing mode and transmits the received pressure to the first induction block 161, the first induction block 161 transmits a signal to the controller to start the third motor 19, so that the driving belt 21 runs, the insulation board 10 is conveyed forwards by the electric expansion plate 22 on the driving belt 21, at the moment, when the power connection block 2201 on the electric expansion plate 22 moves to the functional block 2022, the power connection block 2201 slides to contact with the conductive block 24, at the moment, the electric expansion plate 22 connected with the conductive block 24 is powered on to conduct an electric motion, so that the insulation board 10 is pushed and attached to the wall surface, at the moment, the powered power connection block 2201 moves to the power connection block 25 along with the driving belt 21, the powered connection block 25 is electrically communicated with the powered power connection block 2201, the powered, the detection module 26 detects that the block 25 has current, and then the controller receives the transmission signal and then closes the third motor 19;
it is spacing to be close to the heated board 10 that the wall was not installed still to receive to come from to extend the electronic expansion plate 22 under the commentaries on classics attitude, make it can not drop, thereby not influencing follow-up flitch work, this moment, controller control second electronic slider 15 drives first mounting panel 16 and gets back to the normal position, controller control first electronic slider 801 is to continuing the right removal and carrying out the dress work of heated board 10, until accomplishing and installing behind the heated board 10 numbers that wall length value corresponds, controller control drive mechanism 2 drives 7 rebound of electronic slip table of 7 width values of a heated board 10, then carry out heated board 10 laminating work, the distance that first electronic slider 801 moved a board left of controller control immediately carries out heated board 10 laminating work, thereby form quick wall S type assembly line heated board 10 dress work.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described above, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (3)
1. Assembled building external wall insulation board construction equipment, its characterized in that: the assembly type building outer wall insulation board construction equipment comprises a hydraulic telescopic rod (1) and a base (102), wherein the hydraulic telescopic rod (1) is installed on the base (102), a plurality of tooth sockets (101) are formed in the hydraulic telescopic rod (1), a transmission mechanism (2) is arranged on the hydraulic telescopic rod (1), a supporting component (3) is arranged on the hydraulic telescopic rod (1), a first installation block (203) is connected between the supporting component (3) and the transmission mechanism (2), an electric sliding table (7) is connected onto the transmission mechanism (2), a flitch component (8) is arranged on the electric sliding table (7), the electric sliding table (7) moves on the hydraulic telescopic rod (1) through the transmission mechanism (2), and the flitch component (8) moves on the electric sliding table (7);
the transmission mechanism (2) comprises two groups of transmission assemblies, each group of transmission assemblies comprises two first V-shaped plates (201), two second V-shaped plates (202), a first rotating shaft (11) and a second rotating shaft (12), the first V-shaped plates (201) are rotatably connected with the second V-shaped plates (202) through the first rotating shaft (11) and the second rotating shaft (12), second mounting blocks (207) are mounted on hinged shafts of the second V-shaped plates (202), and the first mounting blocks (203) are mounted on hinged shafts of the first V-shaped plates (201);
a spring (204) is arranged between the connecting ends of the first V-shaped plate (201) and the second V-shaped plate (202), a first transmission gear (1101) is arranged at one end of the first rotating shaft (11), a first anti-drop ring (1102) is arranged on the first rotating shaft (11), a first limiting roller (1103) is installed on the first rotating shaft (11), and a first limiting gear (1104) is arranged on the first limiting roller (1103);
a second transmission gear (1201) is arranged at one end of the second rotating shaft (12), a second anti-falling ring (1202) is arranged on the second rotating shaft (12), a second limiting roller (1203) is installed on the second rotating shaft (12), a second limiting gear (1204) is arranged on the second limiting roller (1203), the hydraulic telescopic rod (1) is located between the first limiting roller (1103) and the second limiting roller (1203), and the first limiting gear (1104) and the second limiting gear (1204) are respectively meshed with tooth grooves (101) on two sides of the hydraulic telescopic rod (1);
the supporting assembly (3) comprises a lantern ring (301) and a stay cable (303), the lantern ring (301) is connected with a first mounting block (203), the hydraulic telescopic rod (1) is located in the lantern ring (301), a sliding roller (302) is connected to the lantern ring (301) in a rotating mode, the lantern ring (301) is connected with one end of the stay cable (303), and the other end of the stay cable (303) is connected with the electric sliding table (7);
the flitch assembly (8) comprises a first electric slide block (801) and a feeding area (1011), the first electric slide block (801) moves on the electric slide table (7), two slide grooves (802) are formed in the first electric slide block (801), a second electric slide block (15) is connected to each slide groove (802) in a sliding mode, a first mounting plate (16) is mounted at the lower end of each second electric slide block (15), a first distance measuring sensor (13) is arranged on the electric slide table (7), and a second distance measuring sensor (14) is arranged on the first electric slide block (801);
a first motor (205) and a second motor (206) are respectively arranged at two ends of the first V-shaped plate (201), a first output gear (2051) is mounted on an output shaft of the first motor (205), the first output gear (2051) is meshed with the first transmission gear (1101), a second output gear (2061) is mounted on an output shaft of the second motor (206), and the second output gear (2061) is meshed with the second transmission gear (1201);
the utility model discloses a solar energy heat preservation plate, including first mounting panel (16), stopper (23), pivot, motor, pivot, output shaft, pivot, the downside of first mounting panel (16) is provided with second mounting panel (17), be provided with stopper (23) on second mounting panel (17), be provided with axostylus axostyle (18) and dead lever (20) between first mounting panel (16) and second mounting panel (17), be provided with heated board (10) between first mounting panel (16) and second mounting panel (17), third motor (19) are installed to the lower extreme of second mounting panel (17), the output shaft and the axostylus axostyle (18) of third motor (19) are connected, it has runner (2011) to rotate on dead lever (20), runner (2011) and axostylus axostyle (18) surface are provided with drive belt (21), evenly distributed has a plurality of electric expansion plates (22) on drive belt (21), all electrically connected with on every electric expansion plate (22) connects piece (2201).
2. The prefabricated building exterior wall insulation board construction equipment according to claim 1, characterized in that: the hydraulic telescopic rod is characterized in that a first electric telescopic rod (4) is arranged at the upper end of the hydraulic telescopic rod (1), a second electric telescopic rod (5) is installed at the telescopic end of the first electric telescopic rod (4), a drilling machine (6) is installed at the telescopic end of the second electric telescopic rod (5), and the drilling machine (6) is rotatably connected with a spiral drill bit (601).
3. The prefabricated building exterior wall insulation board construction equipment according to claim 1, characterized in that: be provided with function block (2022) on dead lever (20), be provided with conducting block (24) and circular telegram piece (25) in function block (2022), connect electric piece (2201) and conducting block (24) and circular telegram piece (25) sliding connection, circular telegram piece (25) are connected with detection module (26), the one end of first mounting panel (16) is provided with first response piece (161), the one end of first response piece (161) is provided with first clamp plate (162), the one end of second mounting panel (17) is provided with second response piece (171), the one end of second response piece (171) is provided with second clamp plate (172), hydraulic telescoping rod (1), first motor (205), second motor (206), third motor (19), first electric telescopic handle (4), second electric telescopic handle (5), rig (6), electric sliding table (7), first electric slider (801), second electric slider (15), first distance measuring sensor (13), second distance measuring sensor (14), first response piece (161), second response piece (161) and the equal electric property connection control module (171).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202210395031.6A CN114704057B (en) | 2022-04-14 | 2022-04-14 | Assembly type building external wall insulation board construction equipment |
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| Application Number | Priority Date | Filing Date | Title |
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| CN202210395031.6A CN114704057B (en) | 2022-04-14 | 2022-04-14 | Assembly type building external wall insulation board construction equipment |
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| Publication Number | Publication Date |
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| CN114704057A CN114704057A (en) | 2022-07-05 |
| CN114704057B true CN114704057B (en) | 2023-03-21 |
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| CN202210395031.6A Active CN114704057B (en) | 2022-04-14 | 2022-04-14 | Assembly type building external wall insulation board construction equipment |
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Family Cites Families (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2935808B2 (en) * | 1994-06-22 | 1999-08-16 | 大成建設株式会社 | Ceiling and wall interior construction equipment and its accessories |
| US6672024B2 (en) * | 2002-03-08 | 2004-01-06 | Robert J. Alderman | System for applying heat insulation to a roof structure |
| CN211923418U (en) * | 2019-12-24 | 2020-11-13 | 青岛康太源建设集团有限公司 | Vertical automatic wall tile sticking device for building construction |
| CN111456391B (en) * | 2020-04-16 | 2021-06-15 | 浙江广厦建设职业技术学院 | Vertical automatic wall tile sticking device for building construction |
| CN112282320A (en) * | 2020-10-30 | 2021-01-29 | 毛爱芬 | Energy-conserving building's outer hanging external wall insulation board erection equipment |
| CN112695971A (en) * | 2020-12-28 | 2021-04-23 | 南京俏美骏科技有限公司 | Installation and construction method for building external wall insulation board |
| CN216076394U (en) * | 2021-11-01 | 2022-03-18 | 高娟 | Device is demolishd in installation of building construction with integration wall heated board |
| CN114086744B (en) * | 2021-11-29 | 2023-03-24 | 南京铭胜建设工程有限公司 | Vertical and horizontal switching type automatic tile sticking device for building |
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