Intelligent building ceramic tile laying device for construction site

By designing an intelligent tile laying device including a feeding mechanism and a laying mechanism, the problems of untidy, inaccurate position and difficulty in controlling gaps caused by manual laying are solved, and automatic laying, leveling and gap cleaning of tiles are realized, and construction efficiency and quality are improved.

CN119933336AInactive Publication Date: 2025-05-06SHAOYANG UNIV +1
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Patent Information

Application Number
CN202510113231.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2025-05-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During construction, tiles are laid with manual operations, resulting in untidy laying and inaccurate location, which can easily cause damage to the tiles, increase costs, and it is difficult to ensure gap control and flatness.

Method used

Design a construction site intelligent construction tiles laying device, including a loading mechanism and laying mechanism on the mobile trolley. The feeding mechanism is used to automatically carry ceramic tiles to the laying mechanism. The laying mechanism consists of indexing components, limiting components, cleaning components, leveling components and cleaning panels. Through these components, the automatic laying, leveling and gap cleaning of ceramic tiles are realized.

Benefits of technology

It realizes automatic handling, laying and leveling of ceramic tiles, reduces manual operation needs, improves construction speed, ensures the accurate position and high-precision laying effect of ceramic tiles, and ensures the flatness of the ceramic tiles and the cleanliness of the gaps.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a construction site intelligent building tile laying device, and relates to the technical field of building construction, the construction site intelligent building tile laying device comprises a moving trolley, and the moving trolley is sequentially provided with a feeding mechanism and a laying mechanism; the laying mechanism comprises a transposition assembly, a limiting assembly, cleaning assemblies, a leveling assembly and cleaning plates, the transposition assembly is used for adjusting the position of the limiting assembly, and the limiting assembly is used for adjusting the distance between the two cleaning plates; the cleaning assembly is used for driving the two cleaning plates to reciprocate at the two ends of the ceramic tile, and the leveling assembly is used for beating the periphery of the ceramic tile. According to the invention, automatic carrying, laying and leveling of ceramic tiles can be realized; the ceramic tile laying device can ensure that ceramic tiles are kept at accurate positions in the laying process, human errors are reduced, and the high-precision laying effect is achieved; a beating shaft drives a beating block to level a ceramic tile, and it can be guaranteed that the periphery of the ceramic tile is flat; the cleaning assembly can effectively clean gaps around ceramic tiles.
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Description

Technical Field

[0001] The invention relates to the technical field of building construction, and in particular to an intelligent tile laying device for a construction site. Background Art

[0002] During the construction process, tile laying has long relied on manual operation. Workers need to manually carry heavy tiles to the laying site. When laying over a large area, manual operation can easily lead to uneven laying of tiles, inaccurate positioning, and easy damage to tiles, increasing costs. At the same time, manual laying relies on experience and manual hammering for tile gap control and flatness adjustment, which makes it difficult to ensure accuracy, resulting in hollowing, unsatisfactory laying effects, and other problems. Therefore, there is an urgent need for an intelligent laying device that can improve construction efficiency, ensure tile laying quality, and reduce human errors. Summary of the invention

[0003] In view of the above technical problems, the technical solution adopted by the present invention is: an intelligent construction tile laying device at a construction site, comprising a mobile trolley, on which a loading mechanism and a laying mechanism are sequentially arranged; the loading mechanism is used to move the tiles to the laying mechanism; the laying mechanism comprises a transfer assembly, a limit assembly, a cleaning assembly, a leveling assembly and a cleaning plate, the transfer assembly is provided with a limit assembly, the limit assembly is provided with a cleaning assembly and a cleaning plate, two cleaning plates are provided, and the cleaning assembly is provided with a leveling assembly; the transfer assembly is used to adjust the position of the limit assembly, the limit assembly is used to adjust the distance between the two cleaning plates, thereby limiting the two ends of the tile; the cleaning assembly is used to drive the two cleaning plates to reciprocate at the two ends of the tile respectively, thereby cleaning the gaps between the tiles, and the leveling assembly is used to knock around the tiles, thereby leveling the tiles.

[0004] Furthermore, the limit assembly includes a limit plate, the limit plate is horizontally arranged, a suction cup is arranged on the limit plate, the limit plate is in the shape of a cross, the limit plate is provided with a first linear slide groove, a second linear slide groove and a third linear slide groove, the first linear slide groove is respectively vertically arranged with the second linear slide groove and the third linear slide groove, a transverse sliding block is slidably installed on the first linear slide groove of the limit plate, and the transverse sliding block is driven by the transverse sliding unit to slide on the first linear slide groove of the limit plate, the top of the transverse sliding block is rotatably installed with the first ends of the two connecting rods, the second ends of the two connecting rods are rotatably installed on the two slides, and the two slides are respectively slidably installed on the second linear slide groove and the third linear slide groove of the limit plate, a sliding rod is fixedly installed on each slide, a sliding block is slidably installed on the sliding rod, and the bottom of the sliding block is fixedly installed together through a round rod and a cleaning plate, and the cleaning plate is parallel to the two ends of the tile.

[0005] Furthermore, the cleaning assembly includes a rotating unit and a cleaning rod, the rotating unit is used to drive the cleaning rod to rotate, and linear slide grooves are respectively provided at both ends of the cleaning rod, and round rods are respectively slidably installed in the linear slide grooves at both ends of the cleaning rod.

[0006] Furthermore, the leveling assembly includes a driving unit and a striking unit, wherein the driving unit is disposed on a limiting plate and is used to provide power for the striking unit, wherein multiple groups of striking units are provided, and wherein the striking units are disposed on a cleaning rod.

[0007] Furthermore, the knocking unit includes a knocking block, a knocking shaft is arranged on the top of the knocking block, the knocking shaft is slidably mounted on a knocking limit plate, the knocking limit plate is fixedly mounted on the cleaning rod, and the knocking limit plate and the knocking block are connected by a knocking spring.

[0008] Furthermore, the driving unit includes an electric cylinder, a pressure plate is fixedly mounted on the telescopic rod of the electric cylinder, the pressure plate is in contact with and cooperates with a connecting frame, a connecting plate is fixedly mounted on the connecting frame, and a plurality of knocking shafts are mounted on the connecting plate.

[0009] Furthermore, the transfer assembly includes a rotating block, which is rotatably mounted on the moving trolley, a vertical rod is fixedly mounted on the rotating block, a fixed plate is fixedly mounted on the vertical rod, a transfer screw is rotatably mounted on the fixed plate, a transfer plate is threadedly mounted on the transfer screw, a transposition motor is fixedly mounted on the transposition plate, the output shaft of the transposition motor and the transposition shaft are fixedly mounted, and the transposition shaft is fixedly mounted on the limit plate.

[0010] Furthermore, the feeding mechanism includes a lifting assembly, a supporting assembly and a resetting assembly, and the lifting assembly is provided with a supporting assembly and a resetting assembly.

[0011] Furthermore, the lifting assembly includes a fixed frame, a lifting screw is rotatably mounted on the fixed frame, a lifting slider is threadedly mounted on the lifting screw, a lifting plate is fixedly mounted on the lifting slider, two rubber plates are fixedly mounted on the upper surface of the lifting plate, and two electromagnet brackets are respectively fixedly mounted at both ends of the lifting plate, and electromagnets are fixedly mounted on the electromagnet brackets.

[0012] Furthermore, the support assembly includes a support frame, which is provided with four vertical plates, the first surface of each vertical plate is provided with a plurality of circular holes, a support rod is slidably installed in each circular hole, a limiting hole is provided on the side of the support rod, the support rod is connected to the vertical plate through a reset spring, and the second surface of each vertical plate is provided with a plurality of square holes, a limiting rod is slidably installed in the square holes on the second surface of the vertical plate, the limiting rod is in contact with the support rod, an inclined surface is provided at one end of the limiting rod that contacts the support rod, an adsorption plate is fixedly installed at one end of the limiting rod that does not contact the support rod, and the adsorption plate is connected to the vertical plate through a limiting spring.

[0013] Compared with the prior art, the present invention has the following advantages: (1) the present invention can realize the automatic transportation, laying and leveling of ceramic tiles, greatly reducing the need for manual operation and improving the construction speed, and is particularly suitable for construction sites where large-scale ceramic tiles are laid; (2) the present invention can ensure that the ceramic tiles maintain an accurate position during the laying process, reduce human errors, and achieve a high-precision laying effect; (3) the striking shaft of the present invention drives the striking block to level the ceramic tiles, and can ensure that the ceramic tiles are flat all around; (4) the cleaning component of the present invention can effectively clean the gaps around the ceramic tiles, and by controlling the movement of the cleaning plate, ensure that the gaps between the ceramic tiles are clean and free of debris. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0015] Figure 2 It is the front view of the feeding mechanism of the present invention.

[0016] Figure 3 It is a schematic diagram of the local structure of the feeding mechanism of the present invention.

[0017] Figure 4 for Figure 3 A partial enlarged view of point A in the middle.

[0018] Figure 5 It is another partial structural schematic diagram of the feeding mechanism of the present invention.

[0019] Figure 6 It is a schematic diagram of the structure of the material laying mechanism of the present invention.

[0020] Figure 7 It is a schematic diagram of the first partial structure of the material laying mechanism of the present invention.

[0021] Figure 8 It is a schematic diagram of the second partial structure of the material laying mechanism of the present invention.

[0022] Fig. 9 It is a schematic diagram of the third partial structure of the material laying mechanism of the present invention.

[0023] Fig.10It is a schematic diagram of the fourth partial structure of the material laying mechanism of the present invention.

[0024] Fig.11 for Fig.10 A partial enlarged view of point B in the middle.

[0025] Figure numerals: 1-mobile trolley; 201-fixed frame; 202-lifting screw; 203-lifting motor; 204-lifting slider; 205-lifting plate; 206-rubber plate; 207-reset side frame; 208-reset motor; 209-double-head screw; 210-reset push plate; 211-support frame; 212-electromagnet bracket; 213-electromagnet; 214-limiting rod; 215-limiting spring; 216-support rod; 217-reset spring; 218-ceramic tile; 219-adsorption plate; 301-rotating motor; 302-rotating block; 303-vertical rod; 304-transfer screw; 305-fixed plate; 30 6- indexing motor; 307- indexing plate; 308- transposition motor; 309- transposition shaft; 310- limit plate; 311- transverse motor; 312- transverse screw; 313- transverse slider; 314- connecting rod; 315- slide; 316- slide rod; 317- drive motor; 318- drive gear; 319- rotating gear; 320- cleaning rod; 321- cleaning plate; 322- round rod; 323- slider; 324- suction cup; 325- electric cylinder; 326- pressure plate; 327- connecting frame; 328- connecting plate; 329- striking block; 330- striking spring; 331- striking shaft; 332- striking limit plate. DETAILED DESCRIPTION

[0026] The technical solution of the present invention is further described below with reference to the accompanying drawings and through specific implementation methods.

[0027] like Figure 1-Figure 11 An intelligent construction tile laying device for a construction site shown includes a mobile trolley 1, on which a loading mechanism and a laying mechanism are sequentially arranged; the loading mechanism is used to move the tiles to the laying mechanism.

[0028] The feeding mechanism comprises a lifting assembly, a supporting assembly and a resetting assembly, and the lifting assembly is provided with the supporting assembly and the resetting assembly.

[0029] The lifting assembly includes a fixed frame 201, a lifting screw 202, a lifting motor 203, a lifting slider 204, a lifting plate 205, a rubber plate 206, an electromagnet bracket 212 and an electromagnet 213. The fixed frame 201 is fixedly mounted on the mobile trolley 1, a vertical slide groove is provided on the fixed frame 201, a lifting motor 203 is fixedly mounted on the fixed frame 201, a lifting screw 202 is rotatably mounted on the fixed frame 201, an output shaft of the lifting motor 203 and the lifting screw 202 are fixedly mounted, a lifting slider 204 is threadedly mounted on the lifting screw 202, and a lifting slider 204 is slidably mounted on the vertical slide groove of the fixed frame 201, a lifting plate 205 is fixedly mounted on the lifting slider 204, two rubber plates 206 are fixedly mounted on the upper surface of the lifting plate 205, two electromagnet brackets 212 are also fixedly mounted at both ends of the lifting plate 205, and electromagnets 213 are fixedly mounted on the electromagnet brackets 212; the lifting motor 203 is started, the lifting motor 203 drives the lifting screw 202 to rotate, the lifting screw 202 rotates to drive the lifting slider 204 to rise and fall, and the lifting slider 204 drives the lifting plate 205 and the rubber plate 206 to rise and fall.

[0030] The support assembly includes a support frame 211, a limit rod 214, a limit spring 215, a support rod 216, a reset spring 217 and an adsorption plate 219. The support frame 211 is fixedly installed on the fixed frame 201. The support frame 211 is horizontally arranged. Four vertical plates are arranged at the bottom of the support frame 211. The first surface of each vertical plate is provided with a plurality of circular holes. A support rod 216 is slidably installed in each circular hole. A limit hole is arranged on the side of the support rod 216. The support rod 216 is connected to the vertical plate through a reset spring 217. A plurality of square holes are arranged on the second surface of each vertical plate. A limit rod 214 is slidably installed in the square hole on the second surface of the vertical plate. The limit rod 214 is in contact with the support rod 216. The end of the limit rod 214 that contacts the support rod 216 is provided with an inclined surface. An adsorption plate 219 is fixedly installed on the end of 214 that is not in contact with the support rod 216. The adsorption plate 219 cooperates with the electromagnet 213, and the adsorption plate 219 is connected to the vertical plate through a limit spring 215; the tile 218 is placed on the support rod 216, and when the electromagnet 213 on the lifting assembly rises to the position of the adsorption plate 219, the rubber plate 206 lifts the tile 218, the electromagnet 213 is energized, and the electromagnet 213 adsorbs the adsorption plate 219, the limit rod 214 on the adsorption plate 219 does not limit the support rod 216, the support rod 216 is reset under the action of the reset spring 217, the support rod 216 does not limit the tile 218, and the lifting assembly drives the tile 218 to descend to the desired position, and the above steps are repeated to remove multiple tiles 218 in sequence.

[0031] The reset assembly includes a reset side frame 207, a reset motor 208, a double-headed lead screw 209 and a reset push plate 210. The reset side frame 207 is fixedly mounted on the fixed frame 201. The double-headed lead screw 209 is rotatably mounted on the reset side frame 207. The two sides of the double-headed lead screw 209 are provided with threads in opposite directions. The threads on both sides of the double-headed lead screw 209 are respectively threadedly mounted with the reset push plate 210. The reset push plate 210 is slidably mounted with the reset side frame, and the reset push plate 210 is in contact with the support rod 216. When all the support rods 216 are reset, the reset motor is started. 208, the reset motor 208 drives the double-headed screw 209 to rotate, and the double-headed screw 209 drives the two reset push plates 210 to move toward each other, and the reset push plates 210 push the support rod 216, and the end of the support rod 216 contacts the inclined surface of the limit rod 214, and the limit rod 214 cannot limit the movement of the support rod 216. When the limit hole of the support rod 216 moves to the position in contact with the limit rod 214, the limit rod 214 restricts the support rod 216. At this time, the support rod 216 cannot be reset, and the tile 218 can be supported by the support rod 216.

[0032] The laying mechanism includes a transfer component, a limit component, a cleaning component, a leveling component and a cleaning plate 321. The transfer component is provided with a limit component, the limit component is provided with a cleaning component and a cleaning plate 321, two cleaning plates 321 are provided, and the cleaning component is provided with a leveling component; the transfer component is used to adjust the position of the limit component, the limit component is used to adjust the distance between the two cleaning plates 321, so as to limit the two ends of the tile; the cleaning component is used to drive the two cleaning plates 321 to reciprocate at the two ends of the tile, so as to clean the gap between the tiles, and the leveling component is used to knock on the four sides of the tile, so as to level the tile.

[0033] The indexing assembly includes a rotating motor 301, a rotating block 302, a vertical rod 303, an indexing screw 304, a fixed plate 305, an indexing motor 306, an indexing plate 307, a transposition motor 308 and a transposition shaft 309. The rotating motor 301 is fixedly mounted on the lower surface of the mobile trolley 1, the rotating block 302 is rotatably mounted on the mobile trolley 1, the output shaft of the rotating motor 301 and the rotating block 302 are fixedly mounted, the vertical rod 303 is fixedly mounted on the rotating block 302, the fixed plate 305 is fixedly mounted on the vertical rod 303, the indexing screw 304 is rotatably mounted on the fixed plate 305, the indexing screw 304 is threadedly mounted on the indexing screw 304, and the output shaft of the indexing screw 304 and the indexing motor 306 are fixedly mounted on the rotating block 302. The axis is fixedly installed, the indexing motor 306 is fixedly installed on the fixed plate 305, the indexing motor 308 is fixedly installed on the indexing plate 307, the output shaft of the indexing motor 308 and the indexing shaft 309 are fixedly installed, and the indexing shaft 309 is fixedly installed on the limit plate 310; the rotating motor 301 drives the rotating block 302 to rotate, and the rotating block 302 drives the laying mechanism to rotate as a whole to the position of the feeding mechanism, and the indexing motor 306 drives the indexing screw 304 to rotate, and the indexing screw 304 drives the indexing plate 307 to rise and fall; the indexing motor 308 drives the indexing shaft 309 to rotate, and the indexing shaft 309 drives the limit plate 310 to rotate, so that the cleaning plate 321 can be rotated to the other two ends of the tile.

[0034] The limiting assembly includes a limiting plate 310, a transverse movement unit, a transverse movement slider 313, a connecting rod 314, a slide 315, a slide bar 316, a round rod 322, a slider 323 and a suction cup 324. The limiting plate 310 is horizontally arranged, and a suction cup 324 is arranged on the limiting plate 310. The limiting plate 310 is in a cross shape, and a first linear slide groove, a second linear slide groove and a third linear slide groove are arranged on the limiting plate 310. The first linear slide groove is connected to the second linear slide groove and the third linear slide groove respectively. The linear slide is vertically arranged, and a transverse slider 313 is slidably installed on the first linear slide of the limit plate 310. The transverse slider 313 is driven to slide on the first linear slide of the limit plate 310 by the transverse unit. The transverse unit includes a transverse motor 311 and a transverse screw 312. The transverse motor 311 is fixedly installed on the limit plate 310, and the output shaft of the transverse motor 311 and the transverse screw 312 are fixedly installed. The transverse screw 312 and the transverse slider 313 are threadedly installed. The top of the transverse sliding block 313 is rotatably mounted on the first ends of the two connecting rods 314, and the second ends of the two connecting rods 314 are rotatably mounted on the two slides 315, and the two slides 315 are slidably mounted on the second linear slide groove and the third linear slide groove of the limiting plate 310, respectively. A sliding rod 316 is fixedly mounted on each slide 315, and a sliding block 323 is slidably mounted on the sliding rod 316. The bottom of the sliding block 323 is fixedly mounted together with a cleaning plate 321 through a round rod 322, and the cleaning plate 321 is parallel to the two ends of the tile; start the transverse motor 311, the transverse motor 311 drives the transverse screw 312 to rotate, the transverse screw 312 drives the transverse sliding block 313 to move, the transverse sliding block 313 drives the two slides 315 to move respectively through the two connecting rods 314, and the slide 315 drives the sliding block 323, the round rod 322 and the cleaning plate 321 to move through the sliding rod 316, so that tiles of different sizes can be limited.

[0035] The cleaning assembly includes a rotating unit and a cleaning rod 320. The rotating unit is used to drive the cleaning rod 320 to rotate. Linear slide grooves are respectively provided at both ends of the cleaning rod 320, and round rods 322 are respectively slidably installed in the linear slide grooves at both ends of the cleaning rod 320; the rotating unit includes a driving motor 317, a driving gear 318, and a rotating gear 319. The driving motor 317 is fixedly installed on the limit plate 310, the output shaft of the driving motor 317 and the driving gear 318 are fixedly installed, the driving gear 318 and the rotating gear 319 are meshed and installed, and the rotating gear 319 and the cleaning rod 320 are fixedly installed; the driving motor 317 drives the driving gear 318 to rotate, the driving gear 318 drives the rotating gear 319 and the cleaning rod 320 to rotate, and the cleaning rod 320 drives the two cleaning plates 321 to slide on the sliding rod 316, so that the gaps on both sides of the tiles can be cleaned.

[0036] The leveling assembly includes a driving unit and a striking unit. The driving unit is disposed on the limiting plate 310 . The driving unit is used to provide power for the striking unit. There are multiple groups of striking units, and the striking units are disposed on the cleaning rod 320 .

[0037] The knocking unit includes a knocking block 329, a knocking spring 330, a knocking shaft 331, and a knocking limit plate 332. The knocking block 329 is made of rubber. A knocking shaft 331 is provided on the top of the knocking block 329. The knocking shaft 331 is slidably installed on the knocking limit plate 332. The knocking limit plate 332 is fixedly installed on the cleaning rod 320. The knocking limit plate 332 and the knocking block 329 are connected by the knocking spring 330. The knocking shaft 331 is driven by the driving unit to slide in the knocking limit plate 332, and the knocking block 329 at the bottom of the knocking shaft 331 can knock the tiles.

[0038] The driving unit includes an electric cylinder 325, a pressure plate 326, a connecting frame 327 and a connecting plate 328. The electric cylinder 325 is fixedly mounted on the limit plate 310. The pressure plate 326 is fixedly mounted on the telescopic rod of the electric cylinder 325. The pressure plate 326 and the connecting frame 327 are in contact and cooperation. The connecting frame 327 is fixedly mounted with a connecting plate 328, and a plurality of knocking shafts 331 are mounted on the connecting plate 328.

[0039] The working principle of the present invention is as follows: when in use, first place multiple tiles 218 on the support rod 216 in sequence, lift the lowest tile 218 through the rubber plate 206 on the lifting assembly, and then adsorb the adsorption plate 219 through the electromagnet 213. The adsorption plate 219 does not limit the support rod 216, so that the support rod 216 is reset, the support rod 216 does not support the tile 218, and the lifting assembly drives the tile 218 to descend.

[0040] The suction cup 324 is driven to move above the tile 218 by the transfer component, and then the suction cup 324 is moved to a position that fits the tile 218 by the transfer component, the tile 218 is adsorbed by the suction cup 324, and then the tile 218 is moved to above the position where the tile needs to be laid by the transfer component, the distance between the two cleaning plates 321 is adjusted by the limit assembly, the cleaning plates 321 are moved to fit the two sides of the tile 218, and the tile 218 is laid to the desired position by the transfer component.

[0041] The cleaning component drives the two cleaning plates 321 to reciprocate to clean the gaps at both ends of the tile 218, and then the transfer component drives the limit plate 310 to rise and rotate 180 degrees and then descend, and then the cleaning component drives the two cleaning plates 321 to reciprocate to clean the other two ends of the tile 218.

[0042] During the reciprocating motion of the cleaning plate 321, the knocking shaft 331 in the leveling assembly slides up and down, and the knocking shaft 331 drives the knocking block 329 to knock the tile 218, so that the four sides of the tile can be leveled.

Claims

1. A construction site intelligent construction tile laying device, comprising a mobile vehicle (1), characterized in that: The mobile trolley (1) is provided with a loading mechanism and a laying mechanism in sequence; The loading mechanism is used to move the tiles to the laying mechanism; The laying mechanism comprises a rotation component, a limit component, a cleaning component, a leveling component and a cleaning plate (321); the rotation component is provided with a limit component; the limit component is provided with a cleaning component and a cleaning plate (321); two cleaning plates (321) are provided; and the cleaning component is provided with a leveling component; the rotation component is used to adjust the position of the limit component; the limit component is used to adjust the distance between the two cleaning plates (321) so as to limit the two ends of the tile; the cleaning component is used to drive the two cleaning plates (321) to move back and forth at the two ends of the tile respectively so as to clean the gap between the tiles; the leveling component is used to knock around the tiles so as to level the tiles.

2. The intelligent construction tile laying device for construction site as claimed in claim 1, characterized in that: The limiting assembly comprises a limiting plate (310), the limiting plate (310) is arranged horizontally, a suction cup (324) is arranged on the limiting plate (310), the limiting plate (310) is in the shape of a cross, a first linear slide groove, a second linear slide groove and a third linear slide groove are arranged on the limiting plate (310), the first linear slide groove is arranged vertically with the second linear slide groove and the third linear slide groove respectively, a transverse sliding block (313) is slidably mounted on the first linear slide groove of the limiting plate (310), and the top of the transverse sliding block (313) is respectively connected to the two connecting rods (31 4) is rotatably mounted, and the second ends of the two connecting rods (314) are rotatably mounted on two slides (315), respectively. The two slides (315) are slidably mounted on the second linear slide groove and the third linear slide groove of the limiting plate (310), and each slide (315) is fixedly mounted with a slide rod (316), and a slider (323) is slidably mounted on the slide rod (316). The bottom of the slider (323) is fixedly mounted together through a round rod (322) and a cleaning plate (321), and the cleaning plate (321) is parallel to the two ends of the tile.

3. The intelligent construction tile laying device for construction site as claimed in claim 2, characterized in that: The cleaning assembly comprises a rotating unit and a cleaning rod (320), wherein the rotating unit is used to drive the cleaning rod (320) to rotate, and linear slide grooves are respectively arranged at both ends of the cleaning rod (320), and round rods (322) are respectively slidably installed in the linear slide grooves at both ends of the cleaning rod (320).

4. The intelligent construction tile laying device for construction site as claimed in claim 3, characterized in that: The leveling assembly comprises a driving unit and a striking unit, wherein the driving unit is arranged on a limiting plate (310) and is used to provide power for the striking unit, wherein a plurality of striking units are arranged, and wherein the striking units are arranged on a cleaning rod (320).

5. The intelligent construction tile laying device for construction site as claimed in claim 4, characterized in that: The knocking unit comprises a knocking block (329), a knocking shaft (331) is arranged on the top of the knocking block (329), the knocking shaft (331) is slidably mounted on a knocking limit plate (332), the knocking limit plate (332) is fixedly mounted on the cleaning rod (320), and the knocking limit plate (332) and the knocking block (329) are connected via a knocking spring (330).

6. The intelligent construction tile laying device at a construction site as claimed in claim 5, characterized in that: The driving unit comprises an electric cylinder (325), a pressing plate (326) is fixedly mounted on the telescopic rod of the electric cylinder (325), the pressing plate (326) is in contact with a connecting frame (327), a connecting plate (328) is fixedly mounted on the connecting frame (327), and a plurality of knocking shafts (331) are mounted on the connecting plate (328).

7. The intelligent construction tile laying device for construction site as claimed in claim 6, characterized in that: The indexing assembly comprises a rotating block (302), wherein the rotating block (302) is rotatably mounted on the moving trolley (1), a vertical rod (303) is fixedly mounted on the rotating block (302), a fixed plate (305) is fixedly mounted on the vertical rod (303), a indexing screw (304) is rotatably mounted on the fixed plate (305), a indexing plate (307) is threadedly mounted on the indexing screw (304), a transposition motor (308) is fixedly mounted on the indexing plate (307), an output shaft of the transposition motor (308) and a transposition shaft (309) are fixedly mounted, and the transposition shaft (309) is fixedly mounted on a limiting plate (310).

8. The intelligent construction tile laying device for construction site as claimed in claim 1, characterized in that: The feeding mechanism comprises a lifting assembly, a supporting assembly and a resetting assembly, and the lifting assembly is provided with the supporting assembly and the resetting assembly.

9. The intelligent construction tile laying device at a construction site as claimed in claim 8, characterized in that: The lifting assembly comprises a fixed frame (201), a lifting screw (202) is rotatably mounted on the fixed frame (201), a lifting slider (204) is threadedly mounted on the lifting screw (202), a lifting plate (205) is fixedly mounted on the lifting slider (204), two rubber plates (206) are fixedly mounted on the upper surface of the lifting plate (205), two electromagnet brackets (212) are also fixedly mounted on both ends of the lifting plate (205), and an electromagnet (213) is fixedly mounted on the electromagnet bracket (212).

10. The intelligent construction tile laying device at a construction site as claimed in claim 9, characterized in that: The support assembly comprises a support frame (211), on which four vertical plates are arranged, a first surface of each vertical plate is provided with a plurality of circular holes, a support rod (216) is slidably installed in each circular hole, a side surface of the support rod (216) is provided with a limiting hole, the support rod (216) is connected to the vertical plate via a reset spring (217), a second surface of each vertical plate is provided with a plurality of square holes, a limiting rod (214) is slidably installed in the square hole on the second surface of the vertical plate, the limiting rod (214) is in contact with the support rod (216), an inclined surface is arranged at one end of the limiting rod (214) in contact with the support rod (216), an adsorption plate (219) is fixedly installed at one end of the limiting rod (214) not in contact with the support rod (216), and the adsorption plate (219) is connected to the vertical plate via a limiting spring (215).