Multifunctional integrated paving platform convenient for paving ceramic tile glue
By designing a multi-functional integrated paving platform that integrates tile adsorption, rotation, and adhesive spreading functions, the problem of cumbersome traditional tile adhesive spreading operations is solved, achieving efficient and uniform tile adhesive distribution and stable paving quality, adapting to different tile sizes.
Patent Information
- Application Number
- CN202423190739.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Traditional tile adhesive application is cumbersome and inefficient, and existing equipment has limited functionality, failing to meet the diverse needs of the tile laying process and increasing construction complexity and costs.
Design a multi-functional integrated tiling platform that integrates tile adsorption and fixing, rotation and cutting, and adhesive spreading functions. It includes an adsorption mechanism, a rotation component, an auxiliary platform mechanism, and a tile adhesive spreading mechanism, achieving a one-stop solution for various needs in the tile laying process.
It simplifies the construction process, improves construction efficiency, ensures uniform distribution of tile adhesive, enhances bonding strength, reduces material waste, and adapts to tiles of different sizes and shapes, thereby improving construction quality and versatility.
Smart Images

Figure CN223707021U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of building decoration engineering construction especially, a kind of multifunctional integrated laying platform of porcelain tile glue paving. BACKGROUND
[0002] In modern building decoration industry, porcelain tile as a kind of common decorative material, is widely used in ground, wall and other various scenes. The laying quality of porcelain tile not only affects the aesthetic degree, but also is directly related to the overall durability and safety of building. However, the traditional porcelain tile laying process often has many inconveniences, especially in the porcelain tile glue paving link, operation is cumbersome and inefficient, becomes the key factor restricting porcelain tile laying quality and speed.
[0003] The traditional porcelain tile glue paving mode mostly relies on manual operation, workers need to manually smear porcelain tile glue on the back of porcelain tile, which not only easily causes the waste of porcelain tile glue, but also is difficult to guarantee the uniform distribution of porcelain tile glue, and further affects the bonding strength of porcelain tile and base surface and laying effect. In addition, manual operation also easily leads to worker fatigue, increases construction difficulty and time cost.
[0004] In order to solve the above problems, various porcelain tile glue paving devices appear in the market, which improve the paving efficiency and uniformity of porcelain tile glue to some extent. However, these devices mostly have single function, can only complete the paving work of porcelain tile glue, and cannot meet other needs in the porcelain tile laying process, such as positioning, turning over, supporting and the like of porcelain tile. Therefore, in actual construction process, still needs to use multiple equipment and tools to cooperate, to complete the entire porcelain tile laying operation, which undoubtedly increases construction complexity and cost.
[0005] How to solve the above technical problems is the subject faced by the utility model. SUMMARY
[0006] In order to solve the deficiency of prior art, the utility model provides a multifunctional integrated laying platform of porcelain tile glue paving convenient, which is reasonable in design, safe and reliable, and is suitable for porcelain tile installation preparation work in various building decoration engineering. The device integrates the functions of adsorption fixing, rotary cutting, glue paving and the like of porcelain tile, realizes one-stop solution from preliminary treatment to glue paving of porcelain tile.
[0007] The utility model solves the technical scheme that technical problem adopts: a multifunctional integrated laying platform of porcelain tile glue paving convenient, including mobile base frame, mobile base frame is provided with stable frame, stable frame is provided with support frame, support frame is provided with adsorption mechanism for adsorbing and fixing porcelain tile, support frame is provided with rotating assembly for realizing angle rotation of porcelain tile;
[0008] The stable frame is provided with a paving support, the paving support is provided with a tile adhesive paving mechanism for paving tile adhesive on the moving base frame, and the tile adhesive paving mechanism is located directly above the adsorption mechanism.
[0009] Further, the support frame includes two support supports symmetrically arranged on the stable frame, the support supports are provided with a tripod fixedly connected with the stable frame, and the support supports are provided with a rotating round frame matched with the rotating assembly;
[0010] The rotating assembly includes rotating bearings arranged on the rotating round frame, a rotating shaft is arranged between the two rotating bearings, the rotating shaft is provided with an adsorption support matched with the adsorption mechanism, both ends of the rotating shaft are provided with rotating shafts penetrating the rotating bearings, one of the rotating shafts is provided with a driving unit, the other rotating shaft is provided with a stable gear unit matched with the driving unit, one of the support supports is provided with a driving support matched with the driving unit, and the other support support is provided with a stable round frame matched with the stable gear unit.
[0011] Further, the driving unit includes a driving motor arranged on the driving support, the output end of the driving motor is fixedly connected with the rotating shaft, the driving support is provided with a stable gear unit matched with the rotating shaft and matched with the stable gear unit, and the structure of the stable gear unit is consistent with that of the stable gear unit;
[0012] The stable gear unit includes a first gear arranged on the rotating shaft, and the stable round frame is uniformly provided with a plurality of second gears matched with the first gear in the circumferential direction of the stable round frame.
[0013] Further, the adsorption mechanism includes an adsorption support frame arranged on the rotating assembly, the adsorption support frame is symmetrically provided with two groups of first electric rods, each group of the electric rods includes a plurality of first electric rods arranged on the adsorption support frame, and the moving ends of the plurality of first electric rods are commonly connected with the same adsorption fixed frame.
[0014] The adsorption support frame is provided with a plurality of second electric rods, the plurality of second electric rods are commonly connected with the same adsorption movable frame, the adsorption fixed frame is provided with a buffer assembly matched with the adsorption movable frame.
[0015] And the mobile base is provided with an electric suction disc assembly matched with the suction movable rack.
[0016] Further, the suction movable rack comprises movable bases fixedly connected with the second electric rods, and the movable bases are provided with a main movable rack, and the main movable rack is symmetrically provided with two groups of secondary movable racks, and each group of the secondary movable racks comprises a plurality of secondary movable racks arranged on the main movable rack.
[0017] The damping assembly comprises a plurality of damping cylinders arranged on the suction fixed rack and matched with the embedded grooves, the damping cylinders are provided with first springs, the damping cylinders are provided with damping round plates matched with the first springs, and the suction movable rack is provided with damping rods matched with the damping round plates; the damping rods are provided with second springs, the embedded grooves are provided with extrusion circular grooves matched with the second springs, one end of the second spring is in contact with the embedded groove, and the other end of the second spring is in contact with the suction movable rack.
[0018] The electric suction disc assembly comprises an electric negative pressure machine arranged on the mobile base, the movable rack is provided with a plurality of negative pressure suction discs, the electric negative pressure machine is provided with a negative pressure main pipe located on the main movable rack, and the secondary movable racks are provided with negative pressure secondary pipes connected with the negative pressure suction discs.
[0019] Further, the auxiliary platform mechanism comprises a vertical slot arranged on the stable frame, the vertical slot is provided with a vertical frame matched with the vertical slot in a sliding manner, the vertical frame is provided with a synchronous frame, the vertical slot is provided with a first linear driving element for driving the vertical frame to move up and down, the synchronous frame is symmetrically provided with synchronous arms, and the synchronous frame is provided with a synchronous driving assembly for controlling the synchronous arms to move in the same direction and opposite directions.
[0020] The synchronous arm is provided with a telescopic arm matched with the synchronous arm in a sliding manner, the synchronous arm is provided with a second linear driving element for controlling the telescopic arm to move in an extending and retracting manner, one end of the telescopic arm away from the synchronous arm is provided with an abutting base, the abutting base is provided with an angle plate matched with the abutting base, the angle plate is provided with an abutting assembly for contacting the ceramic tile, and the abutting base is provided with an angle assembly for controlling the angle plate to rotate.
[0021] The stable frame is provided with a central control assembly for controlling the angle assembly and the rotating assembly to be linked.
[0022] Further, the abutting component comprises an abutting plate, a plurality of abutting hydraulic rods for controlling the abutting plate to contact the ceramic tile are arranged on the angle plate, a shock absorbing plate is arranged on the abutting plate, and a plurality of shock absorbing springs are arranged between the abutting plate and the shock absorbing plate.
[0023] The angle component comprises an angle rotating seat arranged on the abutting base, an angle rotating shaft is arranged on the angle rotating seat, a rotating hinge seat matched with the angle rotating shaft is arranged on the angle plate, and an angle motor matched with the angle rotating shaft is arranged on the angle rotating seat.
[0024] The central control component comprises a first angle sensor matched with the rotating component, a second angle sensor matched with the angle rotating shaft and matched with the rotating component is arranged on the angle rotating seat, a central control chip matched with the rotating component and electrically connected with the second angle sensor is arranged on the stable frame, the central control chip is electrically connected with the angle motor, and a battery matched with the central control chip is arranged on the moving base.
[0025] Further, a second linear drive is arranged at the bottom end of the synchronous arm, a stable sliding groove is arranged on the synchronous arm, a stable rod slidably matched with the stable groove is arranged on the telescopic arm, and a telescopic base matched with the second linear drive is arranged at the bottom end of the synchronous arm; and the second linear drive comprises a telescopic hydraulic rod arranged on the telescopic base, the fixed end of the telescopic hydraulic rod is fixedly connected with the telescopic base, and the telescopic end of the telescopic hydraulic rod is fixedly connected with the telescopic arm.
[0026] Further, the synchronous driving component comprises a first sliding groove arranged on the synchronous frame and slidably matched with the synchronous arm, a second sliding groove in communication with the first sliding groove is arranged on the synchronous frame, and a third sliding groove matched with the second sliding groove is arranged on the synchronous frame.
[0027] The synchronous frame is provided with a driving frame, a driving groove is arranged on the driving frame, a driving support slidably matched with the driving groove is arranged in the driving groove, a third linear drive for driving the driving support to move along the length direction of the driving groove is arranged on the driving frame, a driving base connected with the synchronous arm is arranged in the second sliding groove, and the two ends of the driving support are provided with driving connecting rods connected with the driving base on the same side of the synchronous arm.
[0028] The driving base is provided with a stable frame, and the stable frame is provided with a triangular stable frame connected with the synchronous arm and forming a triangular support with the stable frame.
[0029] Further, the tile adhesive spreading mechanism comprises a spreading fixed frame fixedly connected with the spreading support, a spreading movable frame is arranged on the spreading fixed frame, a driving electric rod for driving the spreading sliding frame to move is arranged on the spreading fixed frame, a tile adhesive placing hopper is arranged on the spreading movable frame, a discharging assembly is arranged on the tile adhesive placing hopper, and a spreading assembly matched with the discharging assembly is arranged on the tile adhesive placing hopper.
[0030] Further, the tile adhesive placing hopper comprises a tile adhesive placing box arranged on the spreading movable frame, a discharging hopper is arranged at the bottom end of the tile adhesive placing box, the discharging assembly is arranged on the discharging hopper, a plurality of discharging ports are arranged at the bottom end of the discharging hopper, and a discharging plate for opening and closing the discharging port is arranged at the discharging port;
[0031] The discharging assembly comprises a discharging rotating shaft arranged in the discharging hopper, a discharging motor matched with the discharging rotating shaft is arranged on the discharging hopper, a plurality of distribution partition plates are uniformly arranged on the discharging rotating shaft along the circumferential direction of the discharging rotating shaft, and a plurality of partition ring plates for separating the distribution partition plates into a plurality of discharging areas and matched with the discharging ports one by one are uniformly arranged on the discharging rotating shaft along the axis direction of the discharging rotating shaft;
[0032] The spreading assembly comprises a spreading frame arranged at the end of the spreading movable frame away from the driving electric rod, a placing groove is formed in the spreading frame, a sawtooth scraping plate for spreading tile adhesive on the back of a tile is arranged in the placing groove, an extrusion screw is arranged on the spreading frame, and an extrusion plate matched with the sawtooth scraping plate is arranged on the extrusion screw.
[0033] Further, the movable base frame is provided with a tile placing platform matched with the adsorption mechanism, the movable base frame is provided with a stable hydraulic leg assembly matched with the jacking and stabilizing assembly, and the movable base frame is provided with a moving wheel assembly, the movable base frame is provided with a jacking and stabilizing assembly matched with the stable frame and used for ensuring the stability of paving and pasting;
[0034] The tile placing platform comprises a placing plate located directly above the movable base frame, a plurality of shock-absorbing springs connected with the movable base frame are arranged at the bottom end of the placing plate, and a handheld tile suction cup matched with the adsorption mechanism and used for holding and carrying a tile is arranged on the front surface of the tile;
[0035] The stable hydraulic leg assembly comprises four stable hydraulic legs respectively arranged at the four corners of the movable base frame;
[0036] The mobile wheel assembly comprises a wheel frame arranged at a bottom end of the mobile base frame, a wheel shaft arranged on the wheel frame, and mobile wheels arranged at two ends of the wheel shaft, and the mobile base frame is provided with an electric drive unit matched with one of the wheel shafts;
[0037] The top support stable assembly comprises a top support stable frame arranged on the stable frame, a top support sliding frame arranged in sliding fit with the top support stable frame, a plurality of top support rods arranged at a top end of the top support sliding frame, and top support plates arranged on the top support rods and in contact with a ceiling, and the mobile base frame is provided with a plurality of top support hydraulic cylinders matched with the top support sliding frame.
[0038] The ceramic tile platform integrates ceramic tile adsorption, tile turning, support, positioning, ceramic tile glue paving and other functions, avoids the complicated process of using multiple devices and tools in traditional construction, greatly simplifies the construction steps, and improves the overall construction efficiency.
[0039] The platform can firmly adsorb the ceramic tile by means of the adsorption mechanism, avoids displacement in the processes of turning and paving, and ensures accurate positioning of the ceramic tile.
[0040] The ceramic tile glue paving mechanism in the utility model adopts an optimized discharging assembly and paving assembly, can accurately control the amount and distribution of the ceramic tile glue, ensures that the ceramic tile glue uniformly and fully covers the back of the ceramic tile, improves the bonding strength, and reduces material waste.
[0041] The platform is provided with a central control assembly, can realize accurate control and cooperative operation of each component, and makes operation more convenient and fast.
[0042] The platform structure in the utility model fully considers the diversity of ceramic tile specifications, can easily adapt to ceramic tiles of different sizes, shapes and materials by adjusting parameters of the adsorption mechanism, the auxiliary platform mechanism and other components, and improves the universality and practicality of the platform. BRIEF DESCRIPTION OF DRAWINGS
[0043] Figure 1 is a three-dimensional structure schematic diagram of the utility model in a preliminary processing state;
[0044] Figure 2 is a first three-dimensional structure schematic diagram of the utility model in a ceramic tile glue paving state;
[0045] Figure 3 is the A place expansion structure schematic view of the utility model.
[0046] Figure 4 is the side view of the utility model.
[0047] Figure 5 is the A-A section view of the utility model.
[0048] Figure 6 is the B place expansion structure schematic view of the utility model.
[0049] Figure 7 is the C place expansion structure schematic view of the utility model.
[0050] Figure 8 is the D place expansion structure schematic view of the utility model.
[0051] Figure 9 is the E place expansion structure schematic view of the utility model.
[0052] Figure 10 is the cooperation view of the mobile base frame and the ceramic tile adhesive paving mechanism of the utility model.
[0053] Figure 11 is the F place expansion structure schematic view of the utility model.
[0054] Figure 12 is the G place expansion structure schematic view of the utility model.
[0055] Figure 13 is the explosion schematic view of the ceramic tile adhesive paving mechanism of the utility model.
[0056] Figure 14 is the H place expansion structure schematic view of the utility model.
[0057] Figure 15 is the cooperation view of the suction mechanism and the rotating assembly part structure of the utility model.
[0058] Figure 16 is the three-dimensional structure schematic view of the auxiliary platform mechanism of the utility model.
[0059] Figure 17 is the part structure three-dimensional schematic view of the auxiliary platform mechanism of the utility model.
[0060] Figure 18 is the cooperation view of the mobile base frame and the auxiliary platform mechanism of the utility model.
[0061] Wherein, the drawing mark is: 100, mobile base frame; 110, stable frame; 111, vertical slot; 120, ceramic tile placement platform; 121, placement plate; 122, shock absorbing spring; 123, handheld ceramic tile suction cup; 130, stable hydraulic leg assembly; 131, stable hydraulic leg; 140, mobile wheel assembly; 141, wheel frame; 142, axle; 143, mobile wheel; 200, support frame; 210, support bracket; 220, tripod; 230, rotating round frame; 300, suction mechanism; 310, suction support frame; 320, first group of electric rods; 330, second group of electric rods; 340, suction fixing frame; 341, embedded slot; 350, suction movable frame; 351, movable base; 352, main movable frame; 353, secondary movable frame; 360, shock absorbing assembly; 361, shock absorbing cylinder; 362, first spring; 363, shock absorbing round plate; 364, shock absorbing rod; 365, second spring; 366, extrusion round slot; 370, electric suction cup assembly; 371, negative pressure main pipe; 372, negative pressure secondary pipe; 373, negative pressure suction cup; 400, rotating assembly; 410, rotating bearing; 420, rotating shaft; 430, suction support; 440, rotating shaft; 450, drive unit; 451, drive motor; 460, smooth gear unit; 461, first gear; 462, second gear; 470, stable gear unit; 500, top support stable assembly; 510, top support frame; 520, top support carriage; 530, top support rod; 540, top support plate; 550, top support hydraulic cylinder; 600, auxiliary platform mechanism; 601, vertical frame; 602, synchronous frame; 603, first sliding slot; 604, second sliding slot; 605, third sliding slot; 606, first linear drive; 607, synchronous arm; 608, stable sliding slot; 609, telescopic base; 610, synchronous drive assembly; 611, drive frame; 612, drive slot; 613, drive bracket; 614, third linear drive; 615, drive base; 616, drive connecting rod; 617, stable frame; 618, triangular stable frame; 620, telescopic arm; 630, second linear drive; 631, telescopic hydraulic rod; 640, abutting base; 650, angle plate; 660, abutting assembly; 661, abutting plate; 662, abutting hydraulic rod; 663, shock absorbing plate; 664, shock absorbing spring; 670, angle assembly; 671, angle rotating seat; 672, rotating hinge seat; 673, angle motor; 680, hub control assembly; 681, first angle sensor; 682, second angle sensor; 683, hub control chip; 684, battery pack; 700, ceramic tile adhesive spreading mechanism; 710, spreading frame; 720, spreading movable frame; 730, drive electric rod; 740, ceramic tile adhesive placement hopper; 741, ceramic tile adhesive placement box; 742, discharge hopper; 743, discharge port; 744, discharge plate; 750, discharging assembly; 751, discharging rotating shaft; 752, discharging motor; 753, material distribution partition plate;754, partition ring plate; 760, paving assembly; 761, paving frame; 762, placing groove; 763, sawtooth scraper; 764, extrusion screw; 765, extrusion plate; 800, paving support. DETAILED DESCRIPTION
[0062] Referring to Figures 1 to 18 As shown, a multifunctional integrated tiling platform facilitating tile adhesive paving includes a mobile base frame 100, the mobile base frame 100 is provided with a stable frame 110, the stable frame 110 is provided with a support frame 200, the support frame 200 is provided with an adsorption mechanism 300 for adsorbing and fixing tiles, the support frame 200 is provided with a rotating assembly 400 for realizing tile angle rotation, the mobile base frame 100 is provided with a top support stability assembly 500 cooperating with the stable frame 110 and used to ensure tiling stability.
[0063] The stable frame 110 is provided with a paving support 800, the paving support 800 is provided with a tile adhesive paving mechanism 700 for paving tile adhesive on the mobile base frame 100, and the tile adhesive paving mechanism 700 is located directly above the adsorption mechanism 300, the stable frame 110 is provided with an auxiliary platform mechanism 600 cooperating with the adsorption mechanism 300 and used to provide auxiliary support for tiles; in use, the auxiliary platform mechanism 600 is located below the adsorption mechanism 300.
[0064] Specifically, the mobile base 100 serves as the foundation of the entire device, and its structural design ensures the stability of the device during operation and the convenience of movement. The stable frame 110 is fixed to the mobile base 100 by welding or bolting, forming a more stable support structure to ensure the stable operation of the upper support frame 200, the adsorption mechanism 300, and the rotating assembly 400. The support frame 200, through its structural design, can bear the weight of the adsorption mechanism 300 and the rotating assembly 400, while ensuring that these components maintain a relatively stable position during operation. The adsorption mechanism 300 usually adopts negative pressure adsorption principle, through electric suction cup or pneumatic suction cup, etc. components, firmly adsorbing the ceramic tile on the support frame 200, ensuring that the ceramic tile will not slip during angle adjustment, ceramic tile glue spreading and paving process. The rotating assembly 400 drives the ceramic tile on the adsorption mechanism 300 to rotate through the motor, reducer, transmission shaft and other components, so as to realize the accurate adjustment of the angle of the ceramic tile. The top support stable assembly 500 can usually extend and contact the ceiling during ceramic tile paving, providing additional support force to ensure the stability of the ceramic tile during paving. The spreading support 800, through its structural design, can bear the weight of the ceramic tile glue spreading mechanism 700, while ensuring that the mechanism can maintain a relatively stable position during operation, so as to realize the uniform spreading of the ceramic tile glue. The ceramic tile glue spreading mechanism 700 spreads the ceramic tile glue in the storage hopper evenly on the ceramic tile. The design of this mechanism can ensure the uniformity and consistency of the ceramic tile glue, thereby improving the paving quality. The auxiliary platform mechanism 600 can provide additional support force for the ceramic tile during the ceramic tile glue spreading and preliminary processing process. The design of this mechanism can ensure that the ceramic tile remains flat and stable during the entire paving process.
[0065] Further, the support frame 200 includes two support supports 210 symmetrically arranged on the stable frame 110, and a tripod 220 fixedly connected with the stable frame 110 is arranged on the support support 210. A rotating round frame 230 cooperating with the rotating assembly 400 is arranged on the support support 210.
[0066] The rotating assembly 400 includes rotating bearings 410 arranged on the rotating round frame 230, a rotating shaft 420 arranged between the two rotating bearings 410, an adsorption support 430 cooperating with the adsorption mechanism 300 arranged on the rotating shaft 420, and rotating shafts 440 penetrating the rotating bearings 410 arranged at both ends of the rotating shaft 420. One of the rotating shafts 440 is provided with a driving unit 450, and the other rotating shaft 440 is provided with a smooth gear unit 460 cooperating with the driving unit 450. One of the support supports 210 is provided with a driving support 613 cooperating with the driving unit 450, and the other support support 210 is provided with a smooth round frame cooperating with the smooth gear unit 460.
[0067] Further, the driving unit 450 includes a driving motor 451 arranged on the driving support 613, and the output end of the driving motor 451 is fixedly connected with the rotating shaft 440, and the driving support 613 is arranged with a stabilizing gear unit 470 matched with the rotating shaft 440 and matched with the stabilizing gear unit 460, and the structure of the stabilizing gear unit 470 is consistent with that of the stabilizing gear unit 460;
[0068] The stabilizing gear unit 460 includes a first gear 461 arranged on the rotating shaft 440, and the stabilizing round frame is uniformly arranged with a plurality of second gears 462 matched with the first gear 461 along the circumferential direction of the stabilizing round frame.
[0069] Specifically, the support frame 200 includes two support supports 210 symmetrically arranged on the stable frame 110, the support support 210 is arranged with a tripod 220 fixedly connected with the stable frame 110, and the support support 210 is arranged with a rotating round frame 230 matched with the rotating assembly 400, so as to provide a stable support structure and ensure the normal operation of the rotating assembly 400 and the adsorption mechanism 300. The rotating assembly 400 realizes the angular rotation of the ceramic tile through the rotating bearing 410 and the rotating shaft 420. The adsorption support 430 is installed on the rotating shaft 420 and matched with the adsorption mechanism 300 to ensure the fixation of the ceramic tile during rotation. The two ends of the rotating shaft 420 are provided with rotating shafts 440 penetrating through the rotating bearing 410, one of which is installed with a driving unit 450, and the other is installed with a stabilizing gear unit 460. The rotating assembly 400 realizes the accurate adjustment of the angle of the ceramic tile, ensuring the controllability of the angle of the ceramic tile during processing. The driving unit 450 provides stable power output to ensure the stable rotation of the rotating shaft 420 and reduce vibration and noise. The stabilizing gear unit 460 ensures the stable rotation of the rotating shaft 420 through the engagement of multiple gears, improving the accuracy and reliability of angle adjustment.
[0070] Further, the adsorption mechanism 300 includes an adsorption support frame 310 arranged on the rotating assembly 400, the adsorption support frame 310 is symmetrically arranged with two groups of first electric rods, and each group of the electric rods includes a plurality of first electric rods arranged on the adsorption support frame 310, and the moving ends of the plurality of first electric rods are commonly connected with the same adsorption fixed frame 340;
[0071] The adsorption support frame 310 is arranged with a plurality of second electric rods, and the plurality of second electric rods are commonly connected with the same adsorption movable frame 350, the adsorption fixed frame 340 is arranged with a buffer assembly 360 matched with the adsorption movable frame 350.
[0072] And the mobile base 100 is provided with an electric suction cup assembly 370 matched with the suction movable rack 350.
[0073] Further, the suction movable rack 350 comprises a movable base 351 fixedly connected with a plurality of second electric rods, and a main movable rack 352 is arranged on the movable base 351, and two groups of secondary movable racks 353 are symmetrically arranged on the main movable rack 352, and each group of secondary movable racks 353 comprises a plurality of secondary movable racks 353 arranged on the main movable rack 352.
[0074] The damping assembly 360 comprises a plurality of damping cylinders 361 arranged on the suction fixed rack 340 and matched with the embedded groove 341, a first spring 362 is arranged in the damping cylinder 361, a damping disc 363 matched with the first spring 362 is arranged in the damping cylinder 361, and a damping rod 364 matched with the damping disc 363 is arranged on the suction movable rack 350; a second spring 365 is sleeved on the damping rod 364, the embedded groove 341 is provided with an extrusion circular groove 366 matched with the second spring 365, one end of the second spring 365 is in contact with the embedded groove 341, and the other end of the second spring 365 is in contact with the suction movable rack 350.
[0075] The electric suction cup assembly 370 comprises an electric negative pressure machine arranged on the mobile base 100, a plurality of negative pressure suction cups 373 are arranged on the movable rack, a negative pressure main pipe 371 is arranged on the electric negative pressure machine and located on the main movable rack 352, and a negative pressure secondary pipe 372 connected with a plurality of negative pressure suction cups 373 is arranged on the secondary movable rack 353.
[0076] Specifically, the suction support frame 310 is arranged on the suction support 430 located on the rotating assembly 400.
[0077] Preferably, the suction support frame 310 is provided with a guide rod, and the suction support frame 310 is provided with a guide cylinder matched with the guide rod.
[0078] Specifically, the adsorption support frame 310 serves as the main structure of the adsorption mechanism 300, and is fixedly installed on the rotating assembly 400 for supporting and connecting other components. The adsorption support frame 310 is symmetrically provided with two groups of first electric rods, each group including a plurality of first electric rods, the moving ends of which are jointly connected to the same adsorption fixed frame 340. By controlling the extension and retraction of the first electric rods, the height and position of the adsorption fixed frame 340 can be adjusted to adapt to ceramic tiles of different sizes and shapes. Similarly, the adsorption support frame 310 is also provided with a plurality of second electric rods, the moving ends of which are jointly connected to the same adsorption movable frame 350. The adsorption movable frame 350 can move up and down under the drive of the second electric rods, cooperating with the adsorption fixed frame 340 to realize clamping of the ceramic tile. The adsorption fixed frame 340 is provided with an embedded groove 341 for accommodating the adsorption movable frame 350. The shock absorption assembly 360 includes a shock absorption cylinder 361, a first spring 362, a shock absorption disc 363, and a shock absorption rod 364, which jointly act between the adsorption movable frame 350 and the adsorption fixed frame 340, and play a role in buffering and shock absorption, protecting the ceramic tile from impact and damage. The electric suction cup assembly 370 includes an electric negative pressure machine, a negative pressure main pipe 371, and a negative pressure secondary pipe 372. The electric negative pressure machine generates negative pressure, which is transmitted to the negative pressure suction cup 373 through the negative pressure main pipe 371 and the negative pressure secondary pipe 372, thereby firmly adsorbing the ceramic tile.
[0079] Further, the auxiliary platform mechanism 600 includes a vertical slot 111 opened in the stable frame 110, a vertical frame 601 is arranged in the vertical slot 111 in sliding cooperation with the vertical slot 111, a synchronous frame 602 is arranged on the vertical frame 601, a first linear driving member 606 is arranged in the vertical slot 111 to drive the vertical frame 601 to move up and down, the synchronous frame 602 is symmetrically provided with a synchronous arm 607, and a synchronous driving assembly 610 is arranged on the synchronous frame 602 to control the synchronous arm 607 to move in the same direction and opposite directions;
[0080] The synchronous arm 607 is provided with a telescopic arm 620 in sliding cooperation with the synchronous arm 607, a second linear driving member 630 is arranged on the synchronous arm 607 to control the telescopic arm 620 to move in extension and retraction, a contact base 640 is arranged at an end of the telescopic arm 620 away from the synchronous arm 607, an angle plate 650 is arranged on the contact base 640 in cooperation with the contact base 640, a contact assembly 660 is arranged on the angle plate 650 to contact the ceramic tile, and an angle assembly 670 is arranged on the contact base 640 to control the angle plate 650 to rotate;
[0081] The stable frame 110 is provided with a central control assembly 680 for controlling linkage of the angle assembly 670 and the rotating assembly 400.
[0082] Specifically, during use of the auxiliary platform mechanism 600, the vertical frame 601 is lifted and lowered by sliding cooperation of the vertical slot 111 and the vertical frame 601 and driving of the first linear drive 606, thereby providing support at different heights. The synchronous driving assembly 610 controls the same direction and opposite direction movement of the synchronous arm 607, thereby ensuring stable support of the ceramic tile at different positions. The telescopic arm 620 is extended and retracted by cooperation of the telescopic arm 620 and the second linear drive 630, thereby providing support at different positions. The angle plate 650 and the angle assembly 670 cooperate to adjust the angle of the ceramic tile, thereby ensuring accuracy of the ceramic tile during processing. The central control assembly 680 is monitored and controlled in real time, thereby ensuring linkage of the angle assembly 670 and the rotating assembly 400, and improving accuracy and coordination of angle adjustment and rotation.
[0083] Further, the resisting assembly 660 comprises a resisting plate 661, the angle plate 650 is provided with a plurality of resisting hydraulic rods 662 for controlling contact of the resisting plate 661 with the ceramic tile, the resisting plate 661 is provided with a shock absorbing plate 663, and a plurality of shock absorbing springs 664 are arranged between the resisting plate 661 and the shock absorbing plate 663.
[0084] The angle assembly 670 comprises an angle rotating seat 671 arranged on the resisting base 640, the angle rotating seat 671 is provided with an angle rotating shaft 440, the angle plate 650 is provided with a rotating hinge seat 672 cooperating with the angle rotating shaft 440, and the angle rotating seat 671 is provided with an angle motor 673 cooperating with the angle rotating shaft 440.
[0085] The central control assembly 680 comprises a first angle sensor 681 cooperating with the rotating assembly 400, the angle rotating seat 671 is provided with a second angle sensor 682 cooperating with the angle rotating shaft 440 and cooperating with the rotating assembly 400, the stable frame 110 is provided with a central control chip cooperating with the rotating assembly 400 and electrically connected with the second angle sensor 682, the central control chip is electrically connected with the angle motor 673, and the mobile base 100 is provided with a battery pack cooperating with the central control chip.
[0086] Specifically, the central control chip is electrically connected with the driving motor 451 of the rotating assembly 400, and the first angle sensor 681 cooperates with the rotating shaft 440 of the rotating assembly 400.
[0087] Specifically, in the conflict component 660, it mainly solves the impact and damage problems that the conflict plate 661 may cause when contacting the ceramic tile. Through the cooperation of the conflict hydraulic rod 662 and the shock absorbing spring 664, the softness and stability of the conflict plate 661 when contacting the ceramic tile are ensured, and the damage to the ceramic tile is reduced. The angle component 670 includes an angle rotating seat 671 arranged on the conflict base 640, an angle rotating shaft 440 arranged on the angle rotating seat 671, a rotating hinge seat 672 arranged on the angle plate 650 and matched with the angle rotating shaft 440, and an angle motor 673 arranged on the angle rotating seat 671 and matched with the angle rotating shaft 440, thereby solving the problems of insufficient accuracy and inaccurate control in the angle adjustment process. Through the cooperation of the angle motor 673 and the angle rotating shaft 440, the accurate rotation of the angle plate 650 is realized, and the angle adjustment accuracy of the ceramic tile in the processing process is ensured. In the central control component 680, through the real-time monitoring of the first angle sensor 681 and the second angle sensor 682, the central control chip controls the operation of the angle motor 673 and the driving motor 451 according to the sensor data, and the accuracy and coordination of the angle adjustment and rotation are ensured.
[0088] Further, the bottom end of the synchronous arm 607 is provided with a second linear drive 630, the synchronous arm 607 is provided with a stable sliding groove 608, the telescopic arm 620 is provided with a stable rod which is in sliding cooperation with the stable groove, and the bottom end of the synchronous arm 607 is provided with a telescopic base 609 which is in cooperation with the second linear drive 630.
[0089] Further, the synchronous drive component 610 includes a first sliding groove 603 which is arranged on the synchronous frame 602 and in sliding cooperation with the synchronous arm 607, a second sliding groove 604 which is arranged on the synchronous frame 602 and in communication with the first sliding groove 603, and a third sliding groove 605 which is arranged on the synchronous frame 602 and in cooperation with the second sliding groove 604.
[0090] The synchronous frame 602 is provided with a driving frame 611, the driving frame 611 is provided with a driving groove 612, the driving groove 612 is provided with a driving support 613 which is in sliding cooperation with the driving groove 612, the driving frame 611 is provided with a third linear drive 614 which is used to drive the driving support 613 to move along the length direction of the driving groove 612, the second sliding groove 604 is provided with a driving base 615 which is connected with the synchronous arm 607, and both ends of the driving support 613 are provided with a driving connecting rod 616 which is connected with the driving base 615 on the same side of the synchronous arm 607.
[0091] The driving base 615 is provided with a stabilizing frame 617, and the stabilizing frame 617 is provided with a triangular stabilizing frame 618 connected with the synchronous arm 607 and forming a triangular support with the stabilizing frame 617.
[0092] Specifically, during the processing of the ceramic tile, the synchronous driving assembly 610 can ensure the stable support of the ceramic tile at different positions, and especially when the ceramic tile is turned over or the angle is adjusted, the synchronous and opposite movements of the synchronous arm 607 can accurately control the position of the ceramic tile, so that the processing process can be smoothly carried out. Through the cooperation of the multi-stage sliding groove and the driving connecting rod 616, the synchronous driving assembly 610 can effectively solve the problems of insufficient stability and inaccurate control of the synchronous arm 607 during movement, and improve the efficiency and quality of the processing of the ceramic tile.
[0093] Further, the ceramic tile glue spreading mechanism 700 comprises a spreading fixed frame 710 fixedly connected with the spreading support 800, the spreading fixed frame 710 is provided with a spreading movable frame 720, the spreading fixed frame 710 is provided with a driving electric rod 730 for driving the spreading sliding frame to move, the spreading movable frame 720 is provided with a ceramic tile glue placing hopper 740, the ceramic tile glue placing hopper 740 is provided with a discharging assembly 750, and the ceramic tile glue placing hopper 740 is provided with a spreading assembly 760 matched with the discharging assembly 750.
[0094] Further, the ceramic tile glue placing hopper 740 comprises a ceramic tile glue placing box 741 placed on the spreading movable frame 720, the bottom end of the ceramic tile glue placing box 741 is provided with a discharging hopper 742, the discharging assembly 750 is arranged on the discharging hopper 742, the bottom end of the discharging hopper 742 is provided with a plurality of discharging ports 743, and the discharging ports 743 are provided with discharging plates 744 for opening and closing the discharging ports 743.
[0095] The discharging assembly 750 comprises a discharging rotating shaft 751 arranged in the discharging hopper 742, the discharging hopper 742 is provided with a discharging motor 752 matched with the discharging rotating shaft 751, the discharging rotating shaft 751 is uniformly provided with a plurality of discharging partition plates 753 along the circumferential direction of the discharging rotating shaft 751, and the discharging rotating shaft 751 is uniformly provided with a plurality of separation ring plates 754 along the axis direction of the discharging rotating shaft 751, the separation ring plates 754 separate the discharging partition plates 753 into a plurality of discharging areas, and are matched with the discharging ports 743 one by one.
[0096] The paving assembly 760 includes a paving frame 761 arranged at the end of the paving movable frame 720 away from the driving electric rod 730, the paving frame 761 is provided with a placing groove 762, and the placing groove 762 is provided with a sawtooth scraper 763 for paving the tile adhesive on the back of the tile. The paving frame 761 is provided with an extrusion screw 764, and the extrusion screw 764 is provided with an extrusion plate 765 matched with the sawtooth scraper 763.
[0097] In the structure of the tile adhesive paving mechanism 700, the tile adhesive paving mechanism 700 includes a paving fixed frame 710 fixedly connected with the paving support 800, and the paving fixed frame 710 is provided with a paving movable frame 720. These structures constitute the main body of the paving mechanism, which is used to support and move the tile adhesive placing hopper 740 and other related components. The paving movable frame 720 is provided with the tile adhesive placing hopper 740, and the tile adhesive placing hopper 740 is provided with a discharging assembly 750 and a paving assembly 760. The tile adhesive placing hopper 740 is used to store tile adhesive, and the tile adhesive is uniformly paved on the back of the tile through the discharging assembly 750 and the paving assembly 760. The discharging assembly 750 is arranged on the discharging hopper 742, the bottom end of the discharging hopper 742 is provided with a plurality of discharging ports 743, and the discharging ports 743 are provided with a discharging plate 744 for opening and closing the discharging ports 743. The discharging assembly 750 is responsible for controlling the flow and discharging position of the tile adhesive, ensuring that the tile adhesive can be uniformly distributed on the back of the tile. The discharging shaft 751 and the distribution partition plate 753 in the discharging assembly 750 uniformly distribute the tile adhesive into the discharging ports 743, and the number of opening windows of the discharging plate 744 is selected according to the size of the tile. The discharging plate 744 controls the opening and closing of the discharging ports 743. The paving assembly 760 includes a paving frame 761 arranged at the end of the paving movable frame 720 away from the driving electric rod 730, the paving frame 761 is provided with a placing groove 762, and the placing groove 762 is provided with a sawtooth scraper 763 for paving the tile adhesive on the back of the tile. The paving frame 761 is provided with an extrusion screw 764, and the extrusion screw 764 is provided with an extrusion plate 765 matched with the sawtooth scraper 763. The function of the paving assembly 760 is to uniformly pave the tile adhesive on the back of the tile and ensure the close combination of the tile adhesive and the tile.
[0098] Further, the moving base frame 100 is provided with a tile placing platform 120 matched with the suction mechanism 300, the moving base frame 100 is provided with a stable hydraulic leg assembly 130 matched with the top supporting and stabilizing assembly 500, and the moving base frame 100 is provided with a moving wheel assembly 140. The moving base frame is provided with a top supporting and stabilizing assembly matched with the stable frame and used to ensure the paving stability.
[0099] The tile placing platform 120 comprises a placing plate 121 located right above the moving base 100, a plurality of shock-absorbing springs 122 are arranged at the bottom end of the placing plate 121 and connected with the moving base 100, and a handheld tile suction cup 123 is arranged on the front surface of the tile and used for holding and carrying the tile.
[0100] The stable hydraulic leg assembly 130 comprises four stable hydraulic legs 131 arranged at the four corners of the moving base 100 respectively.
[0101] The moving wheel assembly 140 comprises a wheel frame 141 arranged at the bottom end of the moving base 100, a wheel shaft 142 is arranged on the wheel frame 141, moving wheels 143 are arranged at the two ends of the wheel shaft 142, and an electric drive unit is arranged on the moving base 100 and matched with one of the wheel shafts 142.
[0102] The top supporting and stabilizing assembly 500 comprises a top supporting and stabilizing frame 510 arranged on the stabilizing frame 110, the top supporting and stabilizing frame 510 is arranged with a top supporting sliding frame 520 matched with the top supporting and stabilizing frame 510 in sliding mode, a plurality of top supporting rods 530 are arranged at the top end of the top supporting sliding frame 520, top supporting plates 540 are arranged on the top supporting rods 530 and used for contacting the ceiling, and a plurality of top supporting hydraulic cylinders 550 are arranged on the moving base 100 and matched with the top supporting sliding frame 520.
[0103] Specifically, the structure of the electric drive unit is basically the same as the electric drive structure used for driving the wheels to move on the market, and thus will not be described herein.
[0104] The technical features not described in the utility model can be realized by or using the prior art, and thus will not be described herein again. Of course, the above description is not a limitation on the utility model, and the utility model is not limited to the above examples. Changes, modifications, additions or replacements made by ordinary skilled in the art within the essential scope of the utility model should also belong to the protection scope of the utility model.
Claims
1. A multifunctional integrated paving platform facilitating tile adhesive spreading, characterized in that: it comprises a mobile base frame (100), a stabilizing frame (110) is arranged on the mobile base frame (100), a support frame (200) is arranged on the stabilizing frame (110), an adsorption mechanism (300) for adsorbing and fixing tiles is arranged on the support frame (200), a rotating assembly (400) for realizing tile angle rotation is arranged on the support frame (200), a top supporting stabilizing assembly (500) for ensuring paving stability is arranged on the mobile base frame (100) and cooperates with the stabilizing frame (110); an adhesive spreading support (800) is arranged on the stabilizing frame (110), an adhesive spreading mechanism (700) for spreading tile adhesive on the mobile base frame (100) is arranged on the adhesive spreading support (800), and the adhesive spreading mechanism (700) is located directly above the adsorption mechanism (300), an auxiliary platform mechanism (600) for providing auxiliary support for tiles is arranged on the stabilizing frame (110) and cooperates with the adsorption mechanism (300); in use, the auxiliary platform mechanism (600) is located below the adsorption mechanism (300).
2. The multifunctional integrated paving platform facilitating tile adhesive spreading according to claim 1, characterized in that: the support frame (200) comprises two support supports (210) symmetrically arranged on the stabilizing frame (110), a tripod (220) fixedly connected with the stabilizing frame (110) is arranged on the support support (210), and a rotating round frame (230) cooperating with the rotating assembly (400) is arranged on the support support (210); the rotating assembly (400) comprises rotating bearings (410) arranged on the rotating round frame (230), a rotating shaft (420) is arranged between the two rotating bearings (410), an adsorption support (430) cooperating with the adsorption mechanism (300) is arranged on the rotating shaft (420), rotating shafts (440) penetrating through the rotating bearings (410) are arranged at both ends of the rotating shaft (420), one of the rotating shafts (440) is provided with a driving unit (450), the other rotating shaft (440) is provided with a smooth gear unit (460) cooperating with the driving unit (450), one of the support supports (210) is provided with a driving support (613) cooperating with the driving unit (450), and the other support support (210) is provided with a smooth round frame cooperating with the smooth gear unit (460).
3. The multifunctional integrated paving platform facilitating tile adhesive spreading according to claim 1, characterized in that: The adsorption mechanism (300) comprises an adsorption support frame (310) arranged on the rotating assembly (400), the adsorption support frame (310) is symmetrically provided with two groups of first electric rods (320), and each group of the electric rods comprises a plurality of first electric rods (320) arranged on the adsorption support frame (310), and the moving ends of the plurality of first electric rods are connected to the same adsorption fixed frame (340); The adsorption support frame (310) is provided with a plurality of second electric rods (330), the plurality of second electric rods (330) are connected to the same adsorption movable frame (350), the adsorption fixed frame (340) is provided with an embedded groove (341) matched with the adsorption movable frame (350), and the adsorption fixed frame (340) is provided with a shock absorbing assembly (360) matched with the adsorption movable frame (350); And the mobile base frame (100) is provided with an electric suction disc assembly (370) matched with the adsorption movable frame (350).
4. The multifunctional integrated paving platform according to claim 3, wherein: The adsorption movable frame (350) comprises a movable base (351) fixedly connected with the plurality of second electric rods, the movable base (351) is provided with a main movable frame (352), the main movable frame (352) is symmetrically provided with two groups of secondary movable frames (353), and each group of the secondary movable frames (353) comprises a plurality of secondary movable frames (353) arranged on the main movable frame (352); The shock absorbing assembly (360) comprises a plurality of shock absorbing cylinders (361) arranged on the adsorption fixed frame (340) and matched with the embedded groove (341), the shock absorbing cylinder (361) is provided with a first spring (362), the shock absorbing cylinder (361) is provided with a shock absorbing disc (363) matched with the first spring (362), and the adsorption movable frame (350) is provided with a shock absorbing rod (364) matched with the shock absorbing disc (363); the shock absorbing rod (364) is sleeved with a second spring (365), the embedded groove (341) is provided with an extrusion circular groove (366) matched with the second spring (365), one end of the second spring (365) is in contact with the embedded groove (341), and the other end of the second spring (365) is in contact with the adsorption movable frame (350); The electric suction disc assembly (370) comprises an electric negative pressure machine arranged on the mobile base frame (100), the secondary movable frame is provided with a plurality of negative pressure suction discs (373), the electric negative pressure machine is provided with a negative pressure main pipe (371) located on the main movable frame (352), and the secondary movable frame (353) is provided with a negative pressure secondary pipe (372) connected with the plurality of negative pressure suction discs (373).
5. The multifunctional integrated paving platform according to claim 1, wherein: The auxiliary platform mechanism (600) comprises a vertical slot (111) formed on the stable frame (110), a vertical frame (601) is arranged in the vertical slot (111) and is in sliding fit with the vertical slot (111), a synchronous frame (602) is arranged on the vertical frame (601), a first linear driving piece (606) is arranged in the vertical slot (111) and is used to drive the vertical frame (601) to move up and down, the synchronous frame (602) is symmetrically provided with a synchronous arm (607), and a synchronous driving assembly (610) is arranged on the synchronous frame (602) and is used to control the synchronous arm (607) to move in the same direction and opposite directions; The synchronous arm (607) is provided with a telescopic arm (620) in sliding fit with the synchronous arm (607), a second linear driving piece (630) is arranged on the synchronous arm (607) and is used to control the telescopic arm (620) to move in the telescopic mode, a contact base (640) is arranged at one end of the telescopic arm (620) away from the synchronous arm (607), an angle plate (650) is arranged on the contact base (640) and is in fit with the contact base (640), a contact assembly (660) is arranged on the angle plate (650) and is used to contact the ceramic tile, and an angle assembly (670) is arranged on the contact base (640) and is used to control the angle plate (650) to rotate. The stable frame (110) is provided with a hub control assembly (680) used to control linkage of the angle assembly (670) and the rotating assembly (400).
6. The multifunctional integrated tile paving platform facilitating tile adhesive paving according to claim 5, characterized in that: The contact assembly (660) comprises a contact plate (661), the angle plate (650) is provided with a plurality of contact hydraulic rods (662) used to control the contact plate (661) to contact the ceramic tile, a shock-absorbing plate (663) is arranged on the contact plate (661), and a plurality of shock-absorbing springs (664) are arranged between the contact plate (661) and the shock-absorbing plate (663); The angle assembly (670) comprises an angle rotating seat (671) arranged on the contact base (640), the angle rotating seat (671) is provided with an angle rotating shaft (440), the angle plate (650) is provided with a rotating hinge seat (672) in fit with the angle rotating shaft (440), and the angle rotating seat (671) is provided with an angle motor (673) in fit with the angle rotating shaft (440). The central control assembly (680) comprises a first angle sensor (681) matched with the rotating assembly (400), a second angle sensor (682) arranged on the angle rotating seat (671) and matched with the angle rotating shaft (440) and matched with the rotating assembly (400), and a central control chip arranged on the stabilizing frame (110) and matched with the rotating assembly (400) and electrically connected with the second angle sensor (682), the central control chip being electrically connected with the angle motor (673), and the mobile base frame (100) being provided with a battery pack matched with the central control chip.
7. The multifunctional integrated paving platform facilitating tile adhesive spreading according to claim 5, characterized in that: The synchronous driving assembly (610) comprises a first sliding groove (603) formed in the synchronous frame (602) and slidably matched with the synchronous arm (607), the synchronous frame (602) is provided with a second sliding groove (604) in communication with the first sliding groove (603), and the synchronous frame (602) is provided with a third sliding groove (605) matched with the second sliding groove (604); The synchronous frame (602) is provided with a driving frame (611), the driving frame (611) is provided with a driving groove (612), the driving groove (612) is provided with a driving support (613) slidably matched with the driving groove (612), and the driving frame (611) is provided with a third linear driving member (614) for driving the driving support (613) to move along the length direction of the driving groove (612), the second sliding groove (604) is provided with a driving base (615) connected with the synchronous arm (607), and the two ends of the driving support (613) are provided with driving connecting rods (616) connected with the driving base (615) on the same side of the synchronous arm (607); The driving base (615) is provided with a stabilizing frame (617), and the stabilizing frame (617) is provided with a triangular stabilizing frame (618) connected with the synchronous arm (607) and forming a triangular support with the stabilizing frame (617).
8. The multifunctional integrated paving platform facilitating tile adhesive spreading according to claim 1, characterized in that: The tile adhesive spreading mechanism (700) comprises a spreading fixed frame (710) fixedly connected with the spreading support (800), the spreading fixed frame (710) is provided with a spreading movable frame (720), the spreading fixed frame (710) is provided with a driving electric rod (730) for driving the spreading sliding frame to move, the spreading movable frame (720) is provided with a tile adhesive placing hopper (740), the tile adhesive placing hopper (740) is provided with a discharging assembly (750), and the tile adhesive placing hopper (740) is provided with a spreading assembly (760) matched with the discharging assembly (750).
9. The multifunctional integrated paving platform facilitating tile adhesive spreading according to claim 8, characterized in that: The tile adhesive placing hopper (740) comprises a tile adhesive placing box (741) placed on the paving movable frame (720), a lower hopper (742) is arranged at the bottom end of the tile adhesive placing box (741), the lower hopper assembly (750) is arranged on the lower hopper (742), a plurality of lower discharge ports (743) are arranged at the bottom end of the lower hopper (742), and a lower discharge plate (744) for opening and closing the lower discharge ports (743) is arranged at the lower discharge ports (743); The lower hopper assembly (750) comprises a lower hopper rotating shaft (751) arranged in the lower hopper (742), a lower hopper motor (752) matched with the lower hopper rotating shaft (751) is arranged on the lower hopper (742), a plurality of distribution partition plates (753) are uniformly arranged on the lower hopper rotating shaft (751) along the circumferential direction of the lower hopper rotating shaft (751), and a plurality of partition ring plates (754) for separating the distribution partition plates (753) into a plurality of lower hopper areas and matched with the lower discharge ports (743) one by one are uniformly arranged on the lower hopper rotating shaft (751) along the axis direction of the lower hopper rotating shaft (751); The paving assembly (760) comprises a paving frame (761) arranged at the end of the paving movable frame (720) away from the driving electric rod (730), a placing groove (762) is arranged on the paving frame (761), a sawtooth scraper (763) for paving tile adhesive on the back of a tile is arranged in the placing groove (762), an extrusion screw rod (764) is arranged on the paving frame (761), and an extrusion plate (765) matched with the sawtooth scraper (763) is arranged on the extrusion screw rod (764).