Intelligent wall construction method and equipment

Through the intelligent wall construction methods and the use of mixing equipment, the problem of hanging net falling off is solved, the wall anti-falling effect is improved and the paint is uniformly mixed, and the construction quality is improved.

CN116290617BActive Publication Date: 2025-09-02TIANKUN CONSTR (JIAXING) CO LTD
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Patent Information

Application Number
CN202310365838.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-07
Publication Date
2025-09-02
Estimated Expiration
2043-04-07

AI Technical Summary

Technical Problem

In the existing wall construction methods, the hanging net is prone to falling off, causing the entire wall skin to fall off, which cannot meet the quality requirements.

Method used

Intelligent wall construction methods are adopted, including grinding the outer wall, manufacturing and coating the adhesion layer of staple fiber and paint, mixing the staple fiber and paint evenly through a stirring device, and applying the outer coating on the adhesion layer, and separating the agglomerated fibers using the agitated device's clumping mechanism.

Benefits of technology

It improves the anti-fall effect of the wall, achieves uniform and high-quality mixing of the adhesion layer coating, and enhances the overall quality of the wall.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of wall construction and discloses an intelligent wall construction method and equipment. The intelligent wall construction method proposed in the present invention can realize the sequential polishing, coating, surface polishing and coating of the exterior wall of a building, wherein the anti-shedding effect is greatly improved by adding short fibers to the adhesion layer; the stirring equipment proposed in the present invention can realize the rapid mixing of paint and short fibers, can separate the fibers of agglomerated materials, and realize the uniform and high-quality mixing of the adhesion layer coating.
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Description

Technical Field

[0001] The present invention relates to the field of wall construction, and more particularly to an intelligent wall construction method and equipment. Background Art

[0002] After the construction of high-rise buildings and other structures is completed, in order to prevent the wall from falling off, a hanging mesh is generally added to the wall during construction. This construction method, once the hanging mesh falls off, can easily cause the entire wall to fall off, which cannot meet current quality requirements. Summary of the Invention

[0003] In order to solve the above technical problems, the present invention provides an intelligent wall construction method and equipment.

[0004] Among them, an intelligent wall construction method includes the following steps:

[0005] S1: Polish the exterior wall;

[0006] S2: Make the adhesive layer coating, using a stirring device to mix the short fibers and the coating evenly;

[0007] S3: Apply the adhesive layer paint on the polished exterior wall surface. After the adhesive layer paint solidifies, an adhesive layer is formed. The surface of the adhesive layer is scratched to make the surface of the adhesive layer rough and partially expose the short fibers.

[0008] S4: Apply an outer coating on the adhesive layer.

[0009] A stirring device comprises a stirring tank, a sealing cover is provided at the upper end of the stirring tank, a feeding port is provided on the sealing cover, a discharge valve is provided at the bottom of the stirring tank, a stirring mechanism and a deagglomerating mechanism are provided in the stirring tank, the stirring mechanism is used to stir and mix the various materials, and the deagglomerating mechanism is used to separate the short fibers that are clumped and bonded together in the stirring tank; the stirring mechanism comprises a stirring shaft, the axis of the stirring shaft and the axis of the stirring tank are collinear, rotating stirring components are installed at intervals on the stirring shaft, and a scraping stirring component is installed at the end of the stirring shaft.

[0010] Furthermore: the rotating stirring assembly includes a transmission box, a cross bar is installed on the transmission box, a vertical bar is installed on the cross bar, the transmission box is connected to the power unit at the upper end of the sealing cover, the transmission box is used to drive the cross bar to rotate, and the vertical bars between adjacent rotating stirring assemblies are staggered.

[0011] Furthermore: the scraping and stirring assembly includes a fixed rod and a scraping piece, the fixed rod and the scraping piece are connected, and the scraping piece is in contact with the bottom of the stirring tank.

[0012] Furthermore: the deagglomerating mechanism is installed on a turntable, the deagglomerating mechanism is distributed in a circular array around the stirring shaft, and the turntable is used to drive the deagglomerating mechanism to rotate intermittently.

[0013] Furthermore, the deagglomeration mechanism includes a supporting shaft, a deagglomeration assembly, a discharge assembly, a first matching assembly, and a second matching assembly. The supporting shaft is arranged horizontally, and the axial direction of the supporting shaft and the stirring shaft are vertically distributed. Both ends of the supporting shaft are rotatably mounted in a bearing seat, and the bearing seat is fixedly connected to the turntable through a bracket.

[0014] There are four groups of deagglomeration components, which are distributed in a circular array around the support shaft, and each deagglomeration component is connected to the support shaft;

[0015] The discharge assembly, the first cooperating assembly and the second cooperating assembly are spaced apart in sequence around the supporting shaft. The discharge assembly, the first cooperating assembly, the second cooperating assembly and the deagglomeration assembly are arranged correspondingly. The supporting shaft is used to drive the deagglomeration assembly to rotate to the position cooperating with the discharge assembly, the first cooperating assembly and the second cooperating assembly in sequence; the discharge assembly is used to load the agglomerated material into the deagglomeration assembly, and the first cooperating assembly and the second cooperating assembly are used to cooperate with the deagglomeration assembly in sequence to pull and separate the agglomerated material loaded on the deagglomeration assembly.

[0016] Furthermore: the de-agglomeration component includes a long strip box, which is arranged along the axis of the supporting shaft. The interior of the strip box is hollow, and a needle plate is installed in the strip box. The plate surface of the needle plate is parallel to the box surface of the strip box away from the supporting shaft. The needle plate is equipped with straight needles, which are interspersed on the box surface of the strip box away from the supporting shaft. The straight needles and the needle plate are distributed vertically. The needle plate forms a sliding guide cooperation with the strip box along direction a, and direction a is perpendicular to the box surface of the strip box away from the supporting shaft. A passive component is installed on the side of the strip box close to the supporting shaft, and the passive component is connected to the needle plate.

[0017] Furthermore: a trigger component is installed on the supporting shaft, and the trigger component and the passive component are arranged correspondingly. The state when the straight needle extends out of the bar box is recorded as the A-state bar box, and the state when the straight needle is retracted in the bar box is recorded as the B-state bar box. The trigger component is used to trigger the passive component and adjust the A-state bar box to switch to the B-state bar box during the process of the bar box rotating from the position corresponding to the second matching component to the position corresponding to the discharge component.

[0018] Furthermore, the passive component includes a sleeve and a telescopic rod, the sleeve is fixedly mounted on the bar box, the length direction of the sleeve is perpendicular to the box surface of the bar box, the telescopic rod is slidably mounted in the sleeve, one end of the telescopic rod is fixedly connected to the needle plate, and the other end of the telescopic rod extends out of the sleeve, a first spring is connected between the telescopic rod and the sleeve, and the first spring is used to maintain the relative position of the telescopic rod and the sleeve, so that the straight needle is in a state of extending out of the bar box;

[0019] A passive rod is installed at the protruding end of the telescopic rod, and the trigger assembly includes an abutment guide rail, which is fixedly installed on the outer wall of the supporting shaft. The abutment guide rail is used to form an inclined driving cooperation with the passive rod during the process of the box rotating from the position corresponding to the second matching assembly to the position corresponding to the discharge assembly, thereby pulling the telescopic rod.

[0020] Furthermore: the discharge assembly includes a discharge plate, which is arranged along the axial direction of the supporting shaft. Both ends of the discharge plate are installed on the A elastic bracket, and the A elastic bracket is installed on the support. The support is fixedly installed on the turntable. The elastic direction of the A elastic bracket is consistent with the vertical direction. The discharge plate connects the upper and lower components, and the upper and lower components are used to adjust the reciprocating lifting and lowering of the discharge plate to continuously push the agglomerated material onto the straight needle of the corresponding box.

[0021] Furthermore: a flexible rubber pad is installed on the plate surface of the discharge plate close to the supporting shaft.

[0022] Furthermore: the upper and lower components include a rotating shaft, the axial direction of the rotating shaft is consistent with the axial direction of the supporting rotating shaft, the supporting rotating shaft is a supporting rotating shaft, one end of the rotating shaft is rotatably installed in the bearing seat, and the other end of the rotating shaft is rotatably installed in the supporting rotating shaft. A cam is installed on the rotating shaft, and one side of the discharge plate is fixedly connected to the matching bracket, and the matching bracket matches the cam.

[0023] Furthermore, the first mating component includes a first rectangular box, the structure of the first rectangular box is consistent with the structure of the strip box, the first rectangular box and the strip box are arranged in a straight needle-like manner, both ends of the first rectangular box are mounted on elastic brackets B, the elastic brackets B are mounted on the support, and the elastic direction of the elastic brackets B is perpendicular to the box surface of the first rectangular box;

[0024] Support frames are fixedly installed at both ends of the support shaft, and guide rods are installed at both ends of the support frames. The length direction of the guide rods is consistent with the axial direction of the support shaft. Guide sleeves are installed on the sides of the two ends of the box close to the support shaft. The guide sleeves are slidably connected to the guide rods. A second spring is installed on the guide sleeves, and the second spring is used to maintain the relative position of the guide sleeves on the guide rods.

[0025] Furthermore, a first reciprocating assembly is mounted on the supporting shaft. The first reciprocating assembly is used to cooperate with the passive assembly to drive the bar box to reciprocate along the axial direction of the supporting shaft.

[0026] Furthermore: the first reciprocating component includes a sliding shaft, the axial direction of the sliding shaft is consistent with the axial direction of the supporting rotating shaft, the sliding shaft is inserted into the supporting rotating shaft, and the area corresponding to the supporting rotating shaft and the telescopic rod is provided with a vacant portion. The sliding shaft is provided with a matching plate on the axial section of the vacant portion, and the matching plate extends out of the vacant portion. A notch is provided at the telescopic end of the telescopic rod, and the notch matches the matching plate. When the cassette rotates to a position that matches the A matching component, the notch rotates to the matching plate.

[0027] Furthermore, the second mating component includes a second rectangular box, the structure of the second rectangular box is consistent with the structure of the strip box, the second rectangular box and the strip box are arranged in a straight needle-like manner, both ends of the second rectangular box are mounted on a C elastic bracket, the C elastic bracket is mounted on a support, and the elastic direction of the C elastic bracket is perpendicular to the box surface of the second rectangular box;

[0028] The second rectangular box is connected to the second reciprocating assembly, and the second reciprocating assembly is used to drive the second rectangular box to reciprocate along a direction perpendicular to the supporting shaft.

[0029] Furthermore, the support shaft is also provided with an avoidance component, which is used to adjust the discharge component, the first matching component, and the second matching component away from the support shaft to avoid the deagglomeration component during the process of the support shaft driving the deagglomeration component to rotate;

[0030] The avoidance component includes a rest disc and three sets of matching brackets. The three sets of matching brackets are fixedly connected to the discharge plate, the first rectangular box, and the second reciprocating component respectively. The rest disc consists of four protrusions and four grooves. The angle between adjacent protrusions is ninety degrees. The rest disc is fixedly installed on the supporting shaft. The rest disc and the matching bracket match. During the rotation of the supporting shaft, the protrusions on the rest disc abut against the matching bracket, driving the matching bracket away from the supporting shaft.

[0031] Furthermore: one end of the supporting shaft is connected to gear A, and an annular gear ring is installed inside the mixing tank. Gear A and the annular gear ring are engaged. When the turntable rotates intermittently by an angle, gear A drives the supporting shaft to rotate ninety degrees.

[0032] One end of the rotating shaft is connected to gear B, and a toothed disc is installed on the stirring shaft. Gear B and the toothed disc are engaged to drive the rotating shaft to rotate.

[0033] Furthermore: the sliding shaft is connected to the cylinder, and the cylinder is used to drive the sliding shaft to slide back and forth.

[0034] It should be noted that the stirring shaft and the turntable are both connected to a power device, which is located on the sealing cover. The power device can drive the stirring shaft to rotate and the turntable to rotate intermittently.

[0035] The beneficial effects of the present invention are as follows: the intelligent wall construction method proposed in the present invention can realize the grinding treatment, coating, surface grinding treatment and coating of the exterior wall of the building in sequence, wherein the anti-shedding effect is greatly improved by adding short fibers to the adhesive layer;

[0036] The stirring device proposed in the present invention can realize the rapid mixing process of paint and short fibers, can separate the agglomerated material fibers, and realize the uniform and high-quality mixing process of the adhesion layer coating. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Figure 1 This is a flow chart of an intelligent wall construction method proposed by the present invention;

[0038] Figure 2 This is a structural diagram of a mixing device in an intelligent wall construction method proposed by the present invention;

[0039] Figure 3This is a schematic structural diagram of a deagglomeration mechanism in a mixing device in an intelligent wall construction method proposed by the present invention;

[0040] Figure 4 This is a schematic structural diagram of the components of a deagglomeration mechanism in a mixing device in an intelligent wall construction method proposed by the present invention;

[0041] Figure 5 It is a structural schematic diagram of a deagglomeration component in a deagglomeration mechanism in a mixing device in an intelligent wall construction method proposed by the present invention;

[0042] Figure 6 It is a structural diagram of a discharge plate, a first rectangular box, a second rectangular box and a rectangular box in a deagglomeration mechanism in a mixing device in an intelligent wall construction method proposed by the present invention;

[0043] Figure 7 This is a schematic structural diagram of a supporting disc in a de-agglomerating mechanism in a mixing device in an intelligent wall construction method proposed by the present invention;

[0044] Figure 8 The present invention provides a schematic structural diagram of a cam in a de-agglomeration mechanism within a mixing device in an intelligent wall construction method.

[0045] In the figure: 100, stirring tank; 110, stirring mechanism; 111, stirring shaft; 112, transmission box; 113, horizontal rod; 114, vertical rod; 115, discharge valve; 116, fixing rod; 117, scraper; 120, toothed disc; 130, annular gear ring; 200, sealing cover; 210, power unit; 220, feeding port; 300, deagglomerating mechanism; 310, supporting shaft; 311, supporting frame; 312, guide rod; 313, guide sleeve; 314, second spring; 315, abutting guide rail; 316, gear A; 320, deagglomerating assembly; 321, rectangular box; 322, needle plate; 323, straight needle; 324, sleeve; 325, telescopic Rod; 326, notch; 327, passive rod; 328, first spring; 330, discharge assembly; 331, discharge plate; 332, rubber pad; 333, elastic bracket A; 334, matching frame; 340, first reciprocating assembly; 341, sliding shaft; 342, matching plate; 343, cylinder; 350, second matching assembly; 351, second rectangular box; 352, elastic bracket C; 353, second reciprocating assembly; 360, first matching assembly; 361, first rectangular box; 362, elastic bracket B; 370, avoidance assembly; 371, abutting disc; 380, upper and lower assemblies; 381, rotating shaft; 382, ​​cam; 383, gear B. DETAILED DESCRIPTION

[0046] The subject matter described herein will now be discussed with reference to example embodiments. It should be understood that these embodiments are discussed to enable those skilled in the art to better understand and implement the subject matter described herein. The functions and arrangements of the elements discussed may be varied without departing from the scope of protection of this specification. Various examples may omit, substitute, or add various processes or components as needed. In addition, features described with respect to some examples may also be combined in other examples.

[0047] Example 1

[0048] Reference Attachment Figure 1 In this embodiment, an intelligent wall construction method is proposed, comprising the following steps:

[0049] S1: Polish the exterior wall;

[0050] S2: Make the adhesive layer coating, using a stirring device to mix the short fibers and the coating evenly;

[0051] S3: Apply the adhesive layer paint on the polished exterior wall surface. After the adhesive layer paint solidifies, an adhesive layer is formed. The surface of the adhesive layer is scratched to make the surface of the adhesive layer rough and partially expose the short fibers.

[0052] S4: Apply an outer coating on the adhesive layer.

[0053] Example 2

[0054] Reference Attachment Figure 2-Figure 8 In this embodiment, a stirring device is proposed, including a stirring tank 100, a sealing cover 200 is provided at the upper end of the stirring tank 100, a feeding port 220 is provided on the sealing cover 200, a discharge valve 115 is provided at the bottom of the stirring tank 100, a stirring mechanism 110 and a deagglomerating mechanism 300 are installed in the stirring tank 100, the stirring mechanism 110 is used to stir and mix the various materials, and the deagglomerating mechanism 300 is used to separate the short fibers that are clumped and bonded together in the stirring tank 100; the stirring mechanism 110 includes a stirring shaft 111, the axis of the stirring shaft 111 is collinear with the axis of the stirring tank 100, rotating stirring components are installed at intervals on the stirring shaft 111, and a scraping stirring component is installed at the end of the stirring shaft 111.

[0055] The rotating stirring assembly includes a transmission box 112, on which a cross bar 113 is installed, and on which a vertical bar 114 is installed. The transmission box 112 is connected to the power unit 210 at the upper end of the sealing cover 200. The transmission box 112 is used to drive the cross bar 113 to rotate, and the vertical bars 114 between adjacent rotating stirring assemblies are staggered.

[0056] The scraping and stirring assembly includes a fixed rod 116 and a scraping piece 117 . The fixed rod 116 and the scraping piece 117 are connected, and the scraping piece 117 fits the bottom of the stirring tank 100 .

[0057] The deagglomerating mechanism 300 is mounted on the turntable 230 . The deagglomerating mechanism 300 is distributed in a circular array around the stirring shaft 111 . The turntable 230 is used to drive the deagglomerating mechanism 300 to rotate intermittently.

[0058] The deagglomeration mechanism 300 includes a support shaft 310, a deagglomeration assembly 320, a discharge assembly 330, a first mating assembly 360, and a second mating assembly 350. The support shaft 310 is arranged horizontally, with the axial direction of the support shaft 310 perpendicular to the stirring shaft 111. Both ends of the support shaft 310 are rotatably mounted in a bearing seat, which is fixedly connected to the turntable 230 via a bracket.

[0059] There are four groups of deagglomeration components 320, which are distributed in a circular array around the support shaft 310, and each deagglomeration component 320 is connected to the support shaft 310;

[0060] The discharge component 330, the first matching component 360 and the second matching component 350 are spaced apart in sequence around the support shaft 310, and the discharge component 330, the first matching component 360, the second matching component 350 and the deagglomeration component 320 are arranged correspondingly. The support shaft 310 is used to drive the deagglomeration component 320 to rotate to the position of matching with the discharge component 330, the first matching component 360 and the second matching component 350 in sequence; the discharge component 330 is used to load the agglomerated material into the deagglomeration component 320, and the first matching component 360 and the second matching component 350 are used to match with the deagglomeration component 320 in sequence to pull and separate the agglomerated material loaded on the deagglomeration component 320.

[0061] The deagglomeration component 320 includes a long strip box 321, which is arranged along the axis of the support shaft 310. The interior of the strip box 321 is hollow, and a needle plate 322 is installed in the strip box 321. The plate surface of the needle plate 322 is parallel to the box surface of the strip box 321 away from the support shaft 310. The needle plate 322 is equipped with straight needles 323, which are inserted into the box surface of the strip box 321 away from the support shaft 310. The straight needles 323 and the needle plate 322 are distributed vertically. The needle plate 322 forms a sliding guide with the strip box 321 along direction a, and the direction a is perpendicular to the box surface of the strip box 321 away from the support shaft 310. A passive component is installed on the side of the strip box 321 close to the support shaft 310, and the passive component is connected to the needle plate 322.

[0062] A trigger component is installed on the supporting shaft 310, and the trigger component and the passive component are arranged correspondingly. The state when the straight needle 323 extends out of the bar box 321 is recorded as the A state bar box 321, and the state when the straight needle 323 is retracted in the bar box 321 is recorded as the B state bar box 321. The trigger component is used to trigger the passive component and adjust the A state bar box 321 to switch to the B state bar box 321 during the process of the bar box 321 rotating from the position corresponding to the second matching component 350 to the position corresponding to the discharge component 330.

[0063] The passive component includes a sleeve 324 and a telescopic rod 325. The sleeve 324 is fixedly mounted on the bar cassette 321. The length of the sleeve 324 is perpendicular to the surface of the bar cassette 321. The telescopic rod 325 is slidably mounted in the sleeve 324. One end of the telescopic rod 325 is fixedly connected to the needle plate 322, and the other end of the telescopic rod 325 extends out of the sleeve 324. A first spring 328 is connected between the telescopic rod 325 and the sleeve 324. The first spring 328 is used to maintain the relative position of the telescopic rod 325 and the sleeve 324, so that the straight needle 323 is in a state of extending out of the bar cassette 321.

[0064] A passive rod 327 is installed at the protruding end of the telescopic rod 325, and the trigger assembly includes an abutment guide rail 315, which is fixedly installed on the outer wall of the support shaft 310. The abutment guide rail 315 is used to form an inclined driving cooperation with the passive rod 327 during the process of the box 321 rotating from the position corresponding to the second matching assembly 350 to the position corresponding to the discharge assembly 330, thereby pulling the telescopic rod 325.

[0065] The discharge assembly 330 includes a discharge plate 331, which is arranged axially along the support shaft 310. Both ends of the discharge plate 331 are installed on the A elastic bracket 333, and the A elastic bracket 333 is installed on the support. The support is fixedly installed on the turntable 230. The elastic direction of the A elastic bracket 333 is consistent with the vertical direction. The discharge plate 331 is connected to the upper and lower components 380. The upper and lower components 380 are used to adjust the reciprocating lifting and lowering of the discharge plate 331 to continuously push the agglomerated material onto the straight needle 323 of the corresponding box 321.

[0066] A flexible rubber pad 332 is installed on the surface of the discharge plate 331 close to the support shaft 310 .

[0067] The upper and lower components 380 include a rotating shaft 381, the axial direction of the rotating shaft 381 is consistent with the axial direction of the supporting rotating shaft 310, the supporting rotating shaft 310 is a supporting rotating shaft, one end of the rotating shaft 381 is rotatably installed in the bearing seat, and the other end of the rotating shaft 381 is rotatably installed in the supporting rotating shaft 310, a cam 382 is installed on the rotating shaft 381, and one side of the discharge plate 331 is fixedly connected to the matching bracket 334, and the matching bracket 334 matches the cam 382.

[0068] The first mating assembly 360 includes a first rectangular box 361. The structure of the first rectangular box 361 is consistent with that of the strip box 321. The first rectangular box 361 and the strip box 321 are arranged in a straight line relative to each other. The two ends of the first rectangular box 361 are mounted on elastic brackets 362. The elastic brackets 362 are mounted on the support. The elastic direction of the elastic brackets 362 is perpendicular to the box surface of the first rectangular box 361.

[0069] Support frames 311 are fixedly mounted at both ends of the support shaft 310. Guide rods 312 are mounted at both ends of the support frame 311. The length of the guide rods 312 is consistent with the axial direction of the support shaft 310. Guide sleeves 313 are mounted on the sides of the support shaft 310 at both ends of the barrel 321. The guide sleeves 313 are slidably sleeved on the guide rods 312. Second springs 314 are mounted on the guide sleeves 313 to maintain the relative position of the guide sleeves 313 on the guide rods 312.

[0070] A first reciprocating assembly 340 is further mounted on the support shaft 310 . The first reciprocating assembly 340 is used to cooperate with the passive assembly to drive the bar box 321 to reciprocate along the axial direction of the support shaft 310 .

[0071] The first reciprocating component 340 includes a sliding shaft 341, the axial direction of the sliding shaft 341 is consistent with the axial direction of the supporting shaft 310, the sliding shaft 341 is inserted into the supporting shaft 310, and the area corresponding to the supporting shaft 310 and the telescopic rod 325 is provided with a vacant portion. The sliding shaft 341 is provided with a matching plate 342 on the axial section of the vacant portion, and the matching plate 342 extends out of the vacant portion. The telescopic end of the telescopic rod 325 is provided with a notch 326, and the notch 326 matches the matching plate 342. When the box 321 rotates to a position that matches the A matching component 240, the notch 326 rotates to the matching plate 342.

[0072] The second mating assembly 350 includes a second rectangular box 351. The structure of the second rectangular box 351 is consistent with that of the strip box 321. The second rectangular box 351 and the strip box 321 are arranged in a straight line relative to each other. The two ends of the second rectangular box 351 are mounted on C elastic brackets 352. The C elastic brackets 352 are mounted on the support 211. The elastic direction of the C elastic brackets 352 is perpendicular to the box surface of the second rectangular box 351.

[0073] The second rectangular box 351 is connected to the second reciprocating assembly 353 , and the second reciprocating assembly 353 is used to drive the second rectangular box 351 to reciprocate along a direction perpendicular to the supporting shaft 310 .

[0074] The support shaft 310 is also provided with an avoidance assembly 370, which is used to adjust the discharge assembly 330, the first matching assembly 360, and the second matching assembly 350 away from the support shaft 310 to avoid the deagglomeration assembly 320 when the support shaft 310 drives the deagglomeration assembly 320 to rotate;

[0075] The avoidance component 370 includes a rest disc 371 and three groups of matching brackets. The three groups of matching brackets are fixedly connected to the discharge plate 331, the first rectangular box 361, and the second reciprocating component 353 respectively. The rest disc 371 consists of four protrusions and four grooves. The angle between adjacent protrusions is ninety degrees. The rest disc 371 is fixedly installed on the support shaft 310. The rest disc 371 and the matching bracket are matched. During the rotation of the support shaft 310, the protrusions on the rest disc 371 abut against the matching bracket, driving the matching bracket away from the support shaft.

[0076] One end of the support shaft 310 is connected to a gear A 316 , and an annular gear ring 130 is installed inside the mixing tank 100 . The gear A 316 is meshed with the annular gear ring 130 . When the turntable 230 rotates an angle intermittently, the gear A 316 drives the support shaft 310 to rotate ninety degrees.

[0077] One end of the rotating shaft 381 is connected to the B gear 383 . The stirring shaft 111 is provided with a toothed disc 120 . The B gear 383 is meshed with the toothed disc 120 to drive the rotating shaft 381 to rotate.

[0078] The sliding shaft 341 is connected to the cylinder 343 , and the cylinder 343 is used to drive the sliding shaft 341 to slide back and forth.

[0079] It should be noted that the stirring shaft 111 and the turntable 230 are both connected to the power device 210. The power device 210 is located on the sealing cover 200. The power device 210 can respectively drive the stirring shaft 111 to rotate and the turntable 230 to rotate intermittently.

[0080] The processing process of the adhesion layer coating by the stirring equipment in this embodiment is as follows:

[0081] First, short fibers and other raw materials are added into the mixing tank 100. The mixing shaft 111 drives the rotating mixing components and the scraping mixing components to rotate. At the same time, the horizontal rod 113 rotates, driving the vertical rod 114 to rotate, so as to achieve mixing of the raw materials. The scraping piece 117 is provided to prevent the materials from sticking to the bottom of the mixing tank 100.

[0082] Then, it should be noted that the discharge assembly 330 and the lowest deagglomeration assembly 320 are inserted into the liquid surface of the mixed material, and the remaining three groups of deagglomeration assemblies 320 and the first matching assembly 360 and the second matching assembly 350 are above the liquid surface.

[0083] When the material in the mixing tank 100 is continuously moved upward, the material between the discharge plate 331 and the strip box 321 is continuously moved upward, so that the material in the mixing tank 100 is continuously moved upward, and the material between the discharge plate 331 and the strip box 321 is continuously moved, so that the material in the mixing tank 100 is continuously moved upward, and the material between the discharge plate 331 and the strip box 321 is continuously moved, so that the material in the mixing tank 100 is continuously moved upward, and the material between the discharge plate 331 and the strip box 321 is continuously moved, so that the material in the mixing tank 100 is continuously moved upward, and the material in the mixing tank 100 is continuously moved.

[0084] After a period of time, the turntable 230 rotates an angle, and through the engagement of the A gear 316 and the annular gear ring 130, it drives the support shaft 310 to rotate ninety degrees. During the rotation, the disc 371 abuts against the matching brackets, so that the discharge plate 331, the first rectangular box 361, and the second rectangular box 351 first move away from the support shaft 310, and then return to their original positions, thereby avoiding the bar box 321.

[0085] After the support shaft 310 rotates 90 degrees, it pauses and the strip box 321 with the agglomerated material rotates to the position corresponding to the first rectangular box 361. It should be noted that at this time, the straight needles on the first rectangular box 361 are in a retracted state, and the needle plate in the first rectangular box 361 is pneumatically adjusted to drive the straight needles on the first rectangular box 361 to extend and penetrate into the agglomerated material brought by the strip box 321. The straight needles on the first rectangular box 361 are staggered and distributed. The notches 326 on the telescopic rod 325 are stuck on the matching plate 342, and the sliding shaft 341 slides. The matching plate 342 drives the telescopic rod 325 to reciprocate along the axial direction of the support shaft 310. The telescopic rod 325 drives the strip box 321 to move synchronously, and the straight needles on the strip box 321 move relative to the straight needles on the first rectangular box 361, so as to pull and rub the agglomerated material apart along the axial direction of the support shaft 310, and also pull and separate the agglomerated short fibers.

[0086] Before the support shaft 310 rotates again, the straight needles on the first rectangular box 361 shrink, leaving materials such as short fibers on the strip box 321.

[0087] The supporting shaft 310 rotates ninety degrees again and pauses. Similarly, the discharge plate 331, the first rectangular box 361, and the second rectangular box 351 avoid the strip box 321; the strip box 321 rotates to a position corresponding to the second rectangular box 351. The second rectangular box 351 and the first rectangular box 361 have the same structure and the same driving mode. The straight needle of the second rectangular box 351 is adjusted to extend, and the straight needle on the rectangular box 321 pulls and rubs the agglomerated material apart in a direction perpendicular to the axial direction of the supporting shaft 310, and also pulls and separates the agglomerated short fibers.

[0088] Through the above two steps, the clumped materials on the straight needles 323 of the strip box 321 can be pulled and separated from different directions, and the relative displacement between the straight needles of the first rectangular box 361, the second rectangular box 351 and the straight needles 323 of the strip box 321 is greater than the length of the short fibers, so the clumped short fibers can be pulled and separated.

[0089] Before the support shaft 310 rotates again, the straight needles on the first rectangular box 361 shrink, leaving materials such as short fibers on the strip box 321.

[0090] The supporting shaft 310 rotates 90 degrees again and pauses. At this time, the box surface of the strip box 321 is in a vertical position, and a part of the material on the straight needle 323 will fall off.

[0091] After the cam 321 is in the process of being lifted up, the pin 323 is pulled back into the drawer 321 and the pin 323 is pulled out of the drawer 321. When the cam 321 is in the process of being lifted up, the pin 323 is pulled back into the drawer 321 and the pin 323 is pulled out of the drawer 321. When the cam 321 is in the process of being lifted up, the pin 323 is pulled out of the drawer 321 and the pin 323 is pulled out of the drawer 321.

[0092] Repeat the above steps to realize automatic loading of mixed agglomerated materials such as agglomerated materials and short fibers bonded together, separate them by stretching from two different directions, and realize automatic unloading.

[0093] The intelligent wall construction method proposed in the present invention can realize the grinding, coating, surface grinding and coating of the building exterior wall in sequence, wherein the anti-shedding effect is greatly improved by adding short fibers to the adhesive layer;

[0094] The stirring device proposed in the present invention can realize the rapid mixing process of paint and short fibers, can separate the agglomerated material fibers, and realize the uniform and high-quality mixing process of the adhesion layer coating.

[0095] The embodiment of the present embodiment is described above in conjunction with the accompanying drawings, but the present embodiment is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of this embodiment, ordinary technicians in this field can also make many forms without departing from the purpose of this embodiment and the scope of protection of the claims, all of which are protected by this embodiment.

Claims

1. An intelligent wall construction method, characterized in that: The steps include: S1: Polish the exterior wall; S2: Make the adhesive layer coating, using a stirring device to mix the short fibers and the coating evenly; S3: Applying the adhesive layer coating on the polished exterior wall surface, and after the adhesive layer coating solidifies to form an adhesive layer, scratching the surface of the adhesive layer to make the surface rough and partially expose the short fibers; S4: applying an outer coating on the adhesive layer; The stirring device comprises a stirring tank, the upper end of which is provided with a sealing cover, the sealing cover is provided with a feeding port, the bottom of which is provided with a discharge valve, and the stirring tank is provided with a stirring mechanism and a deagglomerating mechanism. The stirring mechanism is used to stir and mix the materials, and the deagglomerating mechanism is used to separate the short fibers that are clumped and bonded together in the stirring tank. The stirring mechanism includes a stirring shaft, the axis of the stirring shaft and the axis of the stirring tank are collinear, a rotating stirring assembly is installed on the stirring shaft at intervals, and a scraping stirring assembly is installed at the end of the stirring shaft; The deagglomeration mechanism includes a supporting shaft, a deagglomeration assembly, a discharge assembly, a first matching assembly and a second matching assembly. The supporting shaft is arranged horizontally, and the axial direction of the supporting shaft and the stirring shaft are vertically distributed. Both ends of the supporting shaft are rotatably mounted in the bearing seat, and the bearing seat is fixedly connected to the turntable through a bracket; There are four groups of deagglomeration components, which are distributed in a circular array around the support shaft, and each deagglomeration component is connected to the support shaft; The discharge assembly, the first matching assembly, and the second matching assembly are sequentially spaced around the support shaft. The discharge assembly, the first matching assembly, the second matching assembly, and the deagglomeration assembly are correspondingly arranged. The support shaft is used to drive the deagglomeration assembly to rotate to a position where it matches the discharge assembly, the first matching assembly, and the second matching assembly in sequence. The discharge assembly is used to load agglomerated materials into the deagglomeration assembly. The first matching assembly and the second matching assembly are used to sequentially match the deagglomeration assembly to pull and separate the agglomerated materials loaded on the deagglomeration assembly. The de-agglomeration component includes a long strip box, which is arranged along the axis of the support shaft. The interior of the strip box is hollow and a needle plate is installed in the strip box. The plate surface of the needle plate is parallel to the box surface of the strip box away from the support shaft. The needle plate is equipped with straight needles, which are inserted into the box surface of the strip box away from the support shaft. The straight needles and the needle plate are vertically distributed. The needle plate forms a sliding guide with the strip box along direction a, which is perpendicular to the box surface of the strip box away from the support shaft. A passive component is installed on the side of the strip box close to the support shaft, and the passive component is connected to the needle plate. The discharge assembly includes a discharge plate, which is arranged along the axial direction of the supporting shaft. Both ends of the discharge plate are mounted on elastic brackets A, which are mounted on supports. The supports are fixedly mounted on the turntable. The elastic direction of the elastic bracket A is consistent with the vertical direction. The discharge plate connects the upper and lower components. The upper and lower components are used to adjust the reciprocating lifting and lowering of the discharge plate to continuously push the agglomerated materials onto the straight needles of the corresponding strip box. The first mating component includes a first rectangular box, the structure of the first rectangular box is consistent with that of the strip box, the first rectangular box and the strip box are arranged in a straight needle-like manner, both ends of the first rectangular box are mounted on elastic brackets B, the elastic brackets B are mounted on the support, and the elastic direction of the elastic brackets B is perpendicular to the box surface of the first rectangular box; Support frames are fixedly installed at both ends of the support shaft, and guide rods are installed at both ends of the support frames. The length direction of the guide rods is consistent with the axial direction of the support shaft. Guide sleeves are installed on the sides of the two ends of the box close to the support shaft. The guide sleeves are slidably connected to the guide rods. A second spring is installed on the guide sleeves, and the second spring is used to maintain the relative position of the guide sleeves on the guide rods. The supporting shaft is also provided with a first reciprocating assembly, which is used to cooperate with the passive assembly to drive the bar box to reciprocate along the axial direction of the supporting shaft; The first reciprocating assembly includes a sliding shaft, the axial direction of the sliding shaft is consistent with the axial direction of the supporting shaft, the sliding shaft is inserted into the supporting shaft, and a vacant portion is formed in the area corresponding to the supporting shaft and the telescopic rod. A matching plate is installed on the shaft section of the sliding shaft in the vacant portion, and the matching plate extends out of the vacant portion. A notch is formed at the telescopic end of the telescopic rod, and the notch matches the matching plate. When the cassette rotates to a position where it mates with the matching assembly A, the notch rotates onto the matching plate. The second mating component includes a second rectangular box, the structure of the second rectangular box is consistent with that of the strip box, the second rectangular box and the strip box are arranged in a straight needle-like manner, both ends of the second rectangular box are mounted on a C elastic bracket, the C elastic bracket is mounted on a support, and the elastic direction of the C elastic bracket is perpendicular to the box surface of the second rectangular box; The second rectangular box is connected to the second reciprocating assembly, and the second reciprocating assembly is used to drive the second rectangular box to reciprocate along a direction perpendicular to the supporting shaft.

2. An intelligent wall construction method according to claim 1, characterized in that: The rotating stirring assembly includes a transmission box, a cross bar is installed on the transmission box, a vertical bar is installed on the cross bar, the transmission box is connected to the power unit at the upper end of the sealing cover, the transmission box is used to drive the cross bar to rotate, and the vertical bars between adjacent rotating stirring assemblies are staggered.

3. An intelligent wall construction method according to claim 2, characterized in that: The scraping and stirring assembly comprises a fixed rod and a scraping piece, the fixed rod and the scraping piece are connected, and the scraping piece is fitted to the bottom of the stirring tank.

4. An intelligent wall construction method according to claim 3, characterized in that: A trigger component is installed on the supporting shaft, and the trigger component and the passive component are arranged correspondingly. The state when the straight needle extends out of the bar box is recorded as the A-state bar box, and the state when the straight needle is retracted in the bar box is recorded as the B-state bar box. The trigger component is used to trigger the passive component and adjust the A-state bar box to switch to the B-state bar box during the process of the bar box rotating from the position corresponding to the second mating component to the position corresponding to the discharge component.

5. An intelligent wall construction method according to claim 4, characterized in that: The passive component includes a sleeve and a telescopic rod. The sleeve is fixedly mounted on the bar box, with the length of the sleeve perpendicular to the bar box surface. The telescopic rod is slidably mounted in the sleeve. One end of the telescopic rod is fixedly connected to the needle plate, and the other end of the telescopic rod extends out of the sleeve. A first spring is connected between the telescopic rod and the sleeve. The first spring is used to maintain the relative position of the telescopic rod and the sleeve, so that the straight needle is in a state of extending out of the bar box. A passive rod is installed at the protruding end of the telescopic rod, and the trigger assembly includes an abutment guide rail, which is fixedly installed on the outer wall of the supporting shaft. The abutment guide rail is used to form an inclined driving cooperation with the passive rod during the process of the box rotating from the position corresponding to the second matching assembly to the position corresponding to the discharge assembly, thereby pulling the telescopic rod.

6. An intelligent wall construction method according to claim 5, characterized in that: A flexible rubber pad is installed on the plate surface of the discharge plate close to the supporting shaft.

Citation Information

Patent Citations

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