Building board mounting equipment

Through the automated construction of positioning mechanisms, installation mechanisms and glue coating mechanisms, the problem of low construction efficiency is solved and the efficient installation of building panels is achieved.

CN120401758APending Publication Date: 2025-08-01NANTONG HUARONG CONSTR GRP CO LTD +1
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Patent Information

Application Number
CN202510701377.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-08-01

AI Technical Summary

Technical Problem

During the installation of existing building panels, the construction efficiency is low and the reliance on manual completion one by one leads to limited construction progress.

Method used

The positioning mechanism, installation mechanism and glue coating mechanism are adopted to automatically position, install and glue coating the positioning strips, adsorption pipes and hose outlets through the cylinder to realize the automatic construction of building panels.

Benefits of technology

Improve construction efficiency, reduce manual operations, and improve construction progress.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses building board installation equipment, and relates to the technical field of buildings, the building board installation equipment comprises a positioning mechanism, an installation mechanism and a gluing mechanism, the positioning mechanism comprises an installation table, positioning strips and a first air cylinder, the first air cylinder drives the surrounding positioning strips to be close to each other, and a building board is centered and positioned on the installation table; the mounting mechanism comprises a second air cylinder and adsorption pipes, the second air cylinder drives the adsorption pipes on the left side and the right side to move in a reciprocating mode, and the adsorbed K-shaped hanging piece is automatically mounted in a clamping groove in the building board; the gluing mechanism comprises a fourth air cylinder and glue outlet pipes, the glue outlet pipes on the left side and the right side are driven by the fourth air cylinder to move in a reciprocating mode, and the tile glue in the glue outlet pipes is automatically filled into clamping grooves in the building boards. When the building board installation equipment is actually applied, the situation that constructors have to slowly complete construction on a construction site can be avoided, so that the construction efficiency is high, and the construction progress of a construction unit is certainly accelerated through the manual assistance construction mode.
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Description

Technical Field

[0001] The present invention relates to the technical field of construction, and particularly relates to a building board installation device. Background Art

[0002] Dry-hanging ceramic tiles on the exterior wall of a building is a modern construction technology. Compared with the traditional wet pasting method, the dry-hanging method has multiple advantages such as improved safety, extended service life, good aesthetics, environmental protection and energy conservation, convenient construction, strong adaptability, and high economy. These advantages have enabled dry-hanging ceramic tiles to be widely used in modern buildings, especially in high-rise buildings and public buildings.

[0003] Using K-shaped hangers for ceramic tile paving is a relatively advanced dry-hanging construction technology. Compared with the traditional wet pasting method, this method can provide better stability and safety. During actual construction, multiple "eight"-shaped clamping grooves are first cut on the ceramic tiles, and then the K-shaped hangers are one by one clamped into each pair of clamping grooves. Finally, the clamping grooves are fully filled with ceramic tile glue. After the glue cures, the K-shaped hangers on the ceramic tiles can be installed on the building wall through screws.

[0004] However, the above construction content is completely completed slowly one by one by construction workers at the construction site, resulting in extremely slow construction efficiency. However, dry-hanging ceramic tiles on the exterior wall of a building are generally relatively large engineering projects, and the existing construction method that completely relies on manual labor will inevitably restrict the construction progress of the construction unit. Summary of the Invention

[0005] The purpose of the present invention is to provide a building board installation device to solve the above-mentioned defects in the prior art.

[0006] A building board installation device includes a positioning mechanism, an installation mechanism, and a glue application mechanism, where:

[0007] The positioning mechanism includes an installation table, positioning strips, and a cylinder 1. The cylinder 1 drives the surrounding positioning strips to approach each other and center the building board on the installation table;

[0008] The installation mechanism includes a cylinder 2 and an adsorption tube. The cylinder 2 drives the adsorption tubes on both sides to reciprocate and automatically installs the adsorbed K-shaped hangers at the clamping grooves on the building board;

[0009] The glue application mechanism includes a cylinder 4 and a glue outlet tube. The cylinder 4 drives the glue outlet tubes on both sides to reciprocate and automatically fills the ceramic tile glue in the glue outlet tubes into the clamping grooves on the building board.

[0010] Preferably, a plurality of guide rails 1 are evenly connected to the upper side of the mounting platform, a slider 1 is slidably connected to each guide rail 1, and a slide plate 1 is horizontally connected to the slide plate 1, the outer edge of each slide plate 1 is connected to an L-shaped positioning bar, and a pair of linkage bars are symmetrically connected to the side of the slide plate 1, a connecting plate is provided in parallel directly below the mounting platform, and the connecting plate is connected to the bottom of the mounting platform through a plurality of connecting columns, the cylinder 1 is vertically installed upward at the center of the connecting plate, and an X-shaped lifting frame is connected to the end of its piston rod, a plurality of Y-shaped articulated frames are hinged on the lifting frame, and the articulated frames and the linkage bars located on the same side are hinged to each other.

[0011] Preferably, a pair of cylinders 2 are symmetrically installed on the upper side of the mounting platform, and a "冂"-shaped mounting plate is commonly connected between the ends of their piston rods. A pair of guide rails 2 are symmetrically connected to the front and rear outer edges of the mounting plate. A pair of sliders 2 are slidably connected to each guide rail 2, and an L-shaped slide plate 2 is connected to the slide plate 2. The lower side of each slide plate 2 is connected to an adsorption tube, and a number of adsorption holes are distributed on the lower side of the adsorption tube, and an air suction pipe is connected to the outer end of the adsorption tube. The cylinder 3 is provided with a pair and is symmetrically distributed front and back. The cylinder 3 is vertically downwardly installed on the mounting plate through a fixing plate, and a hinged seat is connected to the end of its piston rod. A pair of hinged bars are hinged on the hinged seat, and the hinged bars and the slide plate 2 on the same side are hinged to each other.

[0012] Preferably, a pair of guide rails three are symmetrically connected to the front and rear inner edges of the mounting plate, a pair of sliders three are slidably connected to each guide rail three, and a Z-shaped slide plate three is connected to the slide plate three, the cylinder four is vertically downwardly installed in the center of the mounting plate, and is connected to a connecting seat at the end of its piston rod, a pair of connecting rods are connected to the connecting seat, the ends of the connecting rods are hinged with connecting strips, and the connecting strips and slide plate three on the same side are hinged to each other, an inverted T-shaped connecting rod one is connected to the side of the slide plate three, a T-shaped connecting rod two is provided above the connecting rod one, and a pair of hinges are connected between the connecting rod one and the connecting rod two, a steel pipe one is threadedly connected to the connecting rod one, a steel pipe two is threadedly connected to the connecting rod two, and a rubber tube is connected between the steel pipe one and the steel pipe two, the top end of the steel pipe two is threadedly connected to a glue storage barrel, and the bottom end of the steel pipe one is threadedly connected to a glue outlet hose.

[0013] Preferably, a plurality of universal balls are centrally mounted on the upper side of the mounting platform.

[0014] Preferably, two pairs of mounting grooves are symmetrically arranged on the upper side of the mounting table from left to right, and a conveying box is detachably connected in the mounting groove. A rectangular conveying groove is arranged on the top surface of the conveying box, and rectangular loading and unloading grooves are symmetrically arranged at both ends of the conveying groove. "Eight"-shaped avoidance grooves are symmetrically arranged on the left and right sides of the conveying box. Two pairs of conveying shafts are rotatably connected in the conveying box, and a conveying wheel is centrally installed on each conveying shaft. A motor is centrally installed on the side surface of the conveying box, and a driving wheel is installed at its output end, and a conveyor belt is commonly connected between the driving wheel and all the conveying wheels.

[0015] Preferably, a linkage rod is commonly connected between the front and rear two link rods II on the same side. A pair of limiting plates are symmetrically connected to the lower side of the mounting plate, and an L-shaped limiting groove is arranged on the limiting plate.

[0016] Compared with the prior art, the present invention has the following advantages:

[0017] When the building board installation equipment in the present invention is actually applied, first, the surrounding positioning strips are driven by the cylinder I to approach each other and center the building board on the mounting table. Then, the left and right adsorption pipes are driven by the cylinder II to reciprocate and automatically install the adsorbed K-shaped hanging parts at the clamping grooves on the building board. Finally, the left and right glue outlet pipes are driven by the cylinder IV to reciprocate and automatically fill the tile glue in the glue outlet pipes into the clamping grooves on the building board. The above construction content can avoid the need for construction workers to slowly complete it at the construction site, resulting in a high construction efficiency. Such a construction method with manual assistance will surely speed up the construction progress of the construction unit. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a three-dimensional structural schematic diagram of the whole of the present invention.

[0019] Figure 2 It is a front structural schematic diagram of the whole of the present invention.

[0020] Figure 3 It is a side structural schematic diagram of the whole of the present invention.

[0021] Figure 4 It is a first perspective structural schematic diagram of the whole positioning mechanism.

[0022] Figure 5 It is a second perspective structural schematic diagram of the whole positioning mechanism.

[0023] Figure 6 It is a three-dimensional structural schematic diagram of the whole installation mechanism.

[0024] Figure 7 It is a first perspective structural schematic diagram of a part of the installation mechanism.

[0025] Figure 8It is a schematic structural diagram of the second perspective of the installation mechanism in part.

[0026] Figure 9 It is a schematic structural diagram of the first perspective of the whole gluing mechanism.

[0027] Figure 10 It is a schematic structural diagram of the second perspective of the whole gluing mechanism.

[0028] Figure 11 It is a schematic three-dimensional structural diagram of the gluing mechanism in part.

[0029] Figure 12 It is a schematic structural diagram of a building board and a K-shaped hanging piece.

[0030] Wherein:

[0031] 10 - positioning mechanism; 101 - installation table; 101a - installation groove; 102 - guide rail 1; 103 - slider 1; 104 - sliding plate 1; 105 - positioning strip; 106 - linkage strip; 107 - connecting plate; 108 - connecting column; 109 - cylinder 1; 110 - lifting frame; 111 - hinged frame; 112 - universal ball;

[0032] 20 - installation mechanism; 201 - cylinder 2; 202 - installation plate; 203 - guide rail 2; 204 - slider 2; 205 - sliding plate 2; 206 - adsorption tube; 206a - adsorption hole; 207 - air suction tube; 208 - cylinder 3; 209 - fixing plate; 210 - hinge seat; 211 - hinge strip; 212 - conveying box; 212a - conveying groove; 212b - loading and unloading groove; 212c - avoiding groove; 213 - conveying shaft; 214 - conveying wheel; 215 - motor; 216 - driving wheel; 217 - conveyor belt;

[0033] 30 - gluing mechanism; 301 - guide rail 3; 302 - slider 3; 303 - sliding plate 3; 304 - cylinder 4; 305 - connecting seat; 306 - connecting rod; 307 - connecting strip; 308 - connecting rod 1; 309 - connecting rod 2; 310 - compression spring; 311 - hinge piece; 312 - steel pipe 1; 313 - steel pipe 2; 314 - rubber tube; 315 - glue storage barrel; 316 - glue outlet pipe; 317 - linkage rod; 318 - limiting plate; 318a - limiting groove;

[0034] 40 - building board; 40a - clamping groove;

[0035] 50 - K-shaped hanging piece. Specific implementation manners

[0036] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.

[0037] As shown Figures 1 to 12 in the figure, a building board installation device includes a positioning mechanism 10, an installation mechanism 20 and an adhesive coating mechanism 30, where:

[0038] The positioning mechanism 10 includes an installation table 101, positioning strips 105 and a first cylinder 109. The first cylinder 109 drives the surrounding positioning strips 105 to approach each other and center the building board 40 on the installation table 101;

[0039] The installation mechanism 20 includes a second cylinder 202 and adsorption tubes 206. The second cylinder 202 drives the adsorption tubes 206 on both left and right sides to reciprocate and automatically install the adsorbed K-shaped hanging parts 50 at the clamping grooves 40a on the building board 40;

[0040] The adhesive coating mechanism 30 includes a fourth cylinder 304 and glue outlet tubes 316. The fourth cylinder 304 drives the glue outlet tubes 316 on both left and right sides to reciprocate and automatically fill the tile adhesive in the glue outlet tubes 316 into the clamping grooves 40a on the building board 40.

[0041] In this embodiment, a plurality of first guide rails 102 are evenly connected to the upper side of the installation table 101. A first slider 103 is slidably connected to each first guide rail 102, and a first sliding plate 104 is horizontally connected to the first slider 103. An L-shaped positioning strip 105 is connected to the outer edge of each first sliding plate 104. A pair of linkage strips 106 are symmetrically connected to the side surface of the first sliding plate 104. A connecting plate 107 is arranged in parallel directly below the installation table 101, and the connecting plate 107 is connected to the lower part of the installation table 101 through a plurality of connecting columns 108. The first cylinder 109 is vertically upwardly installed at the center of the connecting plate 107, and an X-shaped lifting frame 110 is connected to the end of its piston rod. A plurality of Y-shaped hinge frames 111 are hinged to the lifting frame 110, and the hinge frames 111 on the same side and the linkage strips 106 are hinged to each other.

[0042] When the piston rod of the first cylinder 109 extends and drives the surrounding hinge frames 111 to expand outwards, it further pushes the surrounding positioning strips 105 to move outwards along the corresponding first guide rails 102, so as to horizontally place the building board 40 on the surrounding first sliding plates 104. Then, when the piston rod of the first cylinder 109 contracts and drives the surrounding hinge frames 111 to contract inwards, it further pulls the surrounding positioning strips 105 to move inwards along their respective first guide rails 102, so as to center the building board 40 on the installation table 101.

[0043] In this embodiment, a pair of cylinders II 201 are symmetrically installed on the upper side of the mounting table 101, and an "n"-shaped mounting plate 202 is commonly connected between the ends of their piston rods. A pair of guide rails II 203 are symmetrically connected to the front and rear outer edges of the mounting plate 202. A pair of sliders II 204 are slidably connected to each guide rail II 203, and an L-shaped sliding plate II 205 is connected to the sliders II 204. An adsorption tube 206 is connected to the lower side of each sliding plate II 205. A plurality of adsorption holes 206a are distributed on the lower side of the adsorption tube 206, and an air suction tube 207 is connected to the outer end of the adsorption tube 206. A pair of cylinders III 208 are provided and symmetrically distributed front and rear. The cylinders III 208 are vertically and downwardly installed on the mounting plate 202 through fixing plates 209, and a hinge seat 210 is connected to the end of their piston rods. A pair of hinge bars 211 are hinged to the hinge seat 210, and the hinge bars 211 on the same side are hinged to the sliding plate II 205.

[0044] By extending and retracting the piston rod of the cylinder II 201, the height of the mounting plate 202 can be adjusted. In addition, by extending the piston rod of the cylinder III 208 and driving the hinge bars 211 on both sides to expand outwards, the adsorption tubes 206 on both sides are driven to move outwards along the guide rails II 203, so that the adsorption tubes 206 can reach the designated position to adsorb the K-shaped hanging parts 50. Then, by contracting the piston rod of the cylinder III 208 and driving the hinge bars 211 on both sides to contract inwards, the adsorption tubes 206 on both sides are driven to move inwards along the guide rails II 203, so as to automatically install the adsorbed K-shaped hanging parts 50 at the corresponding clamping grooves 40a.

[0045] In this embodiment, a pair of guide rails III 301 are symmetrically connected to the front and rear inner edges of the mounting plate 202. A pair of sliders III 302 are slidably connected to each guide rail III 301, and a Z-shaped sliding plate III 303 is connected to the sliders III 302. The cylinder IV 304 is vertically and downwardly installed at the center of the mounting plate 202, and a connecting seat 305 is connected to the end of its piston rod. A pair of connecting rods 306 are connected to the connecting seat 305. The end of the connecting rod 306 is hinged with a connecting bar 307, and the connecting bar 307 on the same side is hinged to the sliding plate III 303. An inverted T-shaped connecting rod I 308 is connected to the side of the sliding plate III 303. A T-shaped connecting rod II 309 is provided above the connecting rod I 308, and a pair of hinge members 311 are connected between the connecting rod I 308 and the connecting rod II 309. A steel pipe I 312 is threadedly connected to the connecting rod I 308. A steel pipe II 313 is threadedly connected to the connecting rod II 309, and a rubber tube 314 is connected between the steel pipe I 312 and the steel pipe II 313. The top end of the steel pipe II 313 is threadedly connected with a glue storage bucket 315, and the bottom end of the steel pipe I 312 is threadedly connected with a glue outlet pipe 316.

[0046] The piston rod of cylinder four 304 extends to drive the hinge pieces 311 on both sides to expand outwards, thereby driving the glue outlet hoses 316 on both sides to move outwards along guide rail three 301. During the movement, the tile adhesive in glue storage barrel 315 is first filled into the corresponding clamping grooves 40a. Then, the piston rod of cylinder four 304 contracts to drive the hinge pieces 311 on both sides to contract inwards, thereby driving the glue outlet hoses 316 on both sides to move inwards along guide rail three 301. During the movement, the tile adhesive in glue storage barrel 315 is secondarily filled into the corresponding clamping grooves 40a.

[0047] In this embodiment, a plurality of universal balls 112 are centrally installed on the upper side of the mounting table 101

[0048] These universal balls 112 can effectively support the building board 40, so that during the positioning of the building board 40, the orientation of the building board 40 in the horizontal plane can be easily adjusted.

[0049] In this embodiment, two pairs of mounting grooves 101a are symmetrically arranged on the left and right sides of the upper side of the mounting table 101, and a conveying box 212 is detachably connected in the mounting grooves 101a. A rectangular conveying groove 212a is provided on the top surface of the conveying box 212, and rectangular loading and unloading grooves 212b are symmetrically arranged at both ends of the conveying groove 212a. "Eight"-shaped avoiding grooves 212c are symmetrically arranged on the left and right sides of the conveying box 212. Two pairs of conveying shafts 213 are rotatably connected in the conveying box 212, and a conveying wheel 214 is centrally installed on each conveying shaft 213. A motor 215 is centrally installed on the side surface of the conveying box 212, and a driving wheel 216 is installed at its output end, and a conveyor belt 217 is commonly connected between the driving wheel 216 and all the conveying wheels 214.

[0050] The K-shaped hanging parts 50 can be orderly stacked into the conveying groove 212a through the loading and unloading grooves 212b at both ends, and these K-shaped hanging parts 50 are attached to the upper section of the conveyor belt 217, and then the conveying box 212 is placed in the mounting groove 101a. When the adsorption tube 206 takes away a K-shaped hanging part 50 from the inner loading and unloading groove 212b, the motor 215 drives the conveyor belt 217 to operate through the driving wheel 216, and conveys the remaining K-shaped hanging parts 50 inwards synchronously until the innermost K-shaped hanging part 50 is transferred to the inner loading and unloading groove 212b.

[0051] In this embodiment, a linkage rod 317 is commonly connected between the front and rear two link rods two 309 on the same side, and a pair of limiting plates 318 are symmetrically connected to the lower side of the mounting plate 202, and L-shaped limiting grooves 318a are provided on the limiting plates 318.

[0052] When the linkage rod 317 moves inward and slides into the limit groove 318a through the lower port of the limit groove 318a, it drives the first connecting rod 308 and the second connecting rod 309 to be misaligned and pinch the rubber tube 314 therebetween, so as to prevent the tile adhesive in the glue storage barrel 315 from continuing to be transmitted into the glue outlet pipe 316. When the linkage rod 317 moves outward and slides out of the limit groove 318a through the lower port of the limit groove 318a, under the action of the compression spring 310, it drives the first connecting rod 308 and the second connecting rod 309 to be misaligned and move away from the rubber tube 314 therebetween, so that the tile adhesive in the glue storage barrel 315 is continuously transmitted into the glue outlet pipe 316.

[0053] The working principle of this building board installation device includes the following operating steps:

[0054] S1: The piston rod of the first cylinder 109 extends to drive the surrounding articulated frames 111 to expand outward, and then pushes the surrounding positioning bars 105 to move outward along the corresponding first guide rails 102, and then horizontally places the building board 40 on the surrounding first sliding plates 104.

[0055] S2: The piston rod of the second cylinder 201 extends to drive the mounting plate 202 to move downward, and uses the suction tube 206 to suck the K-shaped hanging part 50 directly below.

[0056] S3: The piston rod of the fourth cylinder 304 extends to drive the articulated parts 311 on both sides to expand outward, and then drives the glue outlet pipes 316 on both sides to move outward along the third guide rails 301. During the movement, the tile adhesive in the glue storage barrel 315 is first filled into the corresponding clamping grooves 40a.

[0057] S4: The piston rod of the third cylinder 208 contracts to drive the articulated bars 211 on both sides to contract inward, and then drives the suction tubes 206 on both sides to move inward along the second guide rails 203, and automatically installs the sucked K-shaped hanging parts 50 at the corresponding clamping grooves 40a.

[0058] S5: The piston rod of the third cylinder 208 extends to drive the articulated bars 211 on both sides to expand outward, and then drives the suction tubes 206 on both sides to move outward along the second guide rails 203, so that the suction tubes 206 on both sides return to the initial position.

[0059] S6: The piston rod of the fourth cylinder 304 contracts to drive the articulated parts 311 on both sides to contract inward, and then drives the glue outlet pipes 316 on both sides to move inward along the third guide rails 301. During the movement, the tile adhesive in the glue storage barrel 315 is secondarily filled into the corresponding clamping grooves 40a.

[0060] S7: The piston rod of the second cylinder 201 extends to drive the mounting plate 202 to move downward, so that the mounting plate 202 returns to the initial height.

[0061] S8: The piston rod of cylinder 109 extends to drive the surrounding hinge frame 111 to expand outwards, thereby pushing the surrounding positioning strip 105 to move outwards along the corresponding guide rail 102, and then taking away the building board 40 with the K-shaped hanging parts installed.

[0062] Therefore, the above-disclosed embodiments are illustrative in all aspects and not exclusive. All changes within the scope of the present invention or within the scope equivalent to the present invention are encompassed by the present invention.

Claims

1. A building board installation device, characterized in that: It comprises a positioning mechanism (10), a mounting mechanism (20) and a gluing mechanism (30), wherein: The positioning mechanism (10) includes a mounting platform (101), positioning bars (105) and a first cylinder (109). The first cylinder (109) drives the surrounding positioning bars (105) to move closer to each other and centrally positions the building board (40) on the mounting platform (101). The installation mechanism (20) includes a second cylinder (202) and an adsorption tube (206), and the second cylinder (202) drives the adsorption tubes (206) on the left and right sides to move back and forth and automatically install the adsorbed K-shaped hanger (50) to the card slot (40a) on the building board (40); The glue coating mechanism (30) includes a cylinder (304) and a glue outlet pipe (316). The cylinder (304) drives the glue outlet pipes (316) on the left and right sides to move back and forth and automatically fills the tile glue in the glue outlet pipes (316) into the clamping groove (40a) on the building board (40).

2. The installation equipment for a building board according to claim 1, characterized in that: The upper side of the mounting platform (101) is evenly connected with a plurality of guide rails (102), each guide rail (102) is slidably connected with a slider (103), and a slide plate (104) is horizontally connected to the slider (103), and the outer edge of each slide plate (104) is connected with an L-shaped positioning strip (105), and the side of the slide plate (104) is symmetrically connected with a pair of linkage strips (106), and a parallel plate is provided directly below the mounting platform (101). The connecting plate (107) is connected to the bottom of the mounting platform (101) through a plurality of connecting columns (108). The cylinder (109) is vertically mounted upward at the center of the connecting plate (107) and is connected to an X-shaped lifting frame (110) at the end of its piston rod. The lifting frame (110) is hinged with a plurality of Y-shaped articulated frames (111), and the articulated frames (111) and the linkage bar (106) on the same side are hinged to each other.

3. An installation device for building boards according to claim 1, characterized in that: A pair of cylinders (201) are symmetrically mounted on the upper side of the mounting platform (101), and a "冂"-shaped mounting plate (202) is commonly connected between the ends of the piston rods thereof. A pair of guide rails (203) are symmetrically connected to the front and rear outer edges of the mounting plate (202). A pair of sliders (204) are slidably connected to each guide rail (203), and an L-shaped slide plate (205) is connected to the slide plate (204). The lower side of each slide plate (205) is connected to an adsorption tube (206). The adsorption tube (206) is connected to the lower side of the adsorption tube (206). 6), and a plurality of adsorption holes (206a) are distributed on the lower side, and the outer end of the adsorption tube (206) is connected to the suction pipe (207), and the cylinder three (208) is provided with a pair of and symmetrically distributed front and back, and the cylinder three (208) is vertically downwardly mounted on the mounting plate (202) through the fixing plate (209), and is connected to a hinge seat (210) at the end of its piston rod, and a pair of hinge bars (211) are hinged on the hinge seat (210), and the hinge bars (211) and the slide plate two (205) on the same side are hinged to each other.

4. The building board installation equipment according to claim 3, characterized in that: A pair of guide rails three (301) are symmetrically connected to the front and rear inner edges of the mounting plate (202). A pair of sliders three (302) are slidably connected to each guide rail three (301), and a Z-shaped slide plate three (303) is connected to the slider three (302). The cylinder four (304) is vertically downwardly mounted at the center of the mounting plate (202), and a connecting seat (305) is connected to the end of its piston rod. A pair of connecting rods (306) are connected to the connecting seat (305). The end of the connecting rod (306) is hinged with a connecting bar (307), and the connecting bar (307) and the slide plate three (303) on the same side are hinged to each other. An inverted T-shaped connecting rod one (308) is connected to the side of the slide plate three (303). A T-shaped connecting rod two (309) is provided above the connecting rod one (308), and a pair of hinge members (311) are connected between the connecting rod one (308) and the connecting rod two (309). A steel pipe one (312) is threadedly connected to the connecting rod one (308). A steel pipe two (313) is threadedly connected to the connecting rod two (309), and a rubber tube (314) is connected between the steel pipe one (312) and the steel pipe two (313). The top end of the steel pipe two (313) is threadedly connected to a glue storage barrel (315). The bottom end of the steel pipe one (312) is threadedly connected to a glue outlet pipe (316).

5. The building board installation equipment according to claim 2, characterized in that: A number of universal balls (112) are centrally mounted on the upper side of the mounting table (101).

6. The building board installation equipment according to claim 3, characterized in that: Two pairs of mounting grooves (101a) are symmetrically provided on the left and right sides of the upper side of the mounting table (101), and a conveying box (212) is detachably connected in the mounting groove (101a). A rectangular conveying groove (212a) is provided on the top surface of the conveying box (212), and rectangular loading and unloading grooves (212b) are symmetrically provided at both ends of the conveying groove (212a). "Eight”-shaped avoiding grooves (212c) are symmetrically provided on the left and right sides of the conveying box (212). Two pairs of conveying shafts (213) are rotatably connected in the conveying box (212). A conveying wheel (214) is centrally mounted on each conveying shaft (213). A motor (215) is centrally mounted on the side of the conveying box (212), and a driving wheel (216) is mounted on its output end. A conveyor belt (217) is commonly connected between the driving wheel (216) and all the conveying wheels (214).

7. An installation device for building boards according to claim 4, characterized in that: A linkage rod (317) is commonly connected between the front and rear two connecting rods two (309) on the same side. A pair of limiting plates (318) are symmetrically connected to the lower side of the mounting plate (202), and an L-shaped limiting groove (318a) is provided on the limiting plate (318).