CN218615842U - Special automatic plywood device of doubling glass - Google Patents

Special automatic plywood device of doubling glass Download PDF

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Publication number
CN218615842U
CN218615842U CN202223050827.2U CN202223050827U CN218615842U CN 218615842 U CN218615842 U CN 218615842U CN 202223050827 U CN202223050827 U CN 202223050827U CN 218615842 U CN218615842 U CN 218615842U
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CN
China
Prior art keywords
fixed mounting
adhesive film
adjusting
glass
sliding
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CN202223050827.2U
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Chinese (zh)
Inventor
李桂林
李小芬
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Zhongshan Guangye Glass Co ltd
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Zhongshan Guangye Glass Co ltd
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Priority to CN202223050827.2U priority Critical patent/CN218615842U/en
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Abstract

The utility model discloses a special automatic plywood device of doubling glass relates to doubling glass production facility field, close the trigger including doubling glass, be equipped with sucking disc arm and adhesive film on the doubling glass closes the trigger, be equipped with two glass on the adhesive film, two glass contact with the both sides of adhesive film respectively, and doubling glass closes fixed mounting and has the base on the trigger. The utility model discloses, through cutting out the blade, splint, the setting of movable blade isotructure, the blend stop can be to its with the one end of glass and adhesive film, splint through both sides can carry out the centre gripping with the adhesive film that surpasss the glass part fixed, can prevent that the adhesive film from appearing the displacement or the condition that drops when tailorring, two are cut out the blade and can realize tailorring the both ends of adhesive film, and movable blade can be tailor the end of adhesive film, and can not appear cutting more or the few circumstances of cutting, the more even cover of adhesive film is in the middle of two glass, promote plywood and off-the-shelf effect.

Description

Special automatic plywood device of doubling glass
Technical Field
The utility model relates to a doubling glass production facility technical field especially relates to a special automatic plywood device of doubling glass.
Background
The laminated glass is a composite glass product which is made up by using two or several pieces of glass, between them a layer of organic polymer intermediate film or several layers of organic polymer intermediate films are sandwiched, and making the glass and intermediate film be permanently bonded into one body by means of special high-temp. prepressing (or vacuum-pumping) and high-temp. high-pressure treatment.
In the prior art, laminated glass is when producing, at first need adsorb glass through the sucking disc davit on the board combining machine and carry the cylinder of glued membrane by, later pulling glued membrane covers the surface of glass, adsorb another piece of glass through the sucking disc davit and cover on the glued membrane, realize the plywood step of laminated glass production, the in-process is because glued membrane and glass size inconsistent, need cut out with the glued membrane that surpasss glass through the manual work, artifical manual operation appears the error easily, lead to cutting out inhomogeneously, the condition that leads to finished laminated glass edge flash or glue of clamp to cover incompletely appears, influence the finished product quality, and the cost is increased, therefore, a special automatic plywood device of laminated glass is required to satisfy people's demand.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a special automatic plywood device of doubling glass to when solving the production of doubling glass that provides among the above-mentioned background art and carrying out the plywood, need the manual work to use the scissors will surpass the adhesive film of glass and tailor, manual operation personnel appears the error, leads to tailorring the suggestion, influences the problem of finished product quality.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a special automatic plywood device of doubling glass, includes doubling glass plate closing machine, doubling glass plate closing machine is last to be equipped with sucking disc arm and adhesive film, be equipped with two glasses on the adhesive film, two glass contacts with the both sides of adhesive film respectively, fixed mounting has the base on the doubling glass plate closing machine, one side fixed mounting of base has the blend stop, the top side symmetry fixed mounting of base has two backup pads, equal movable mounting has centre gripping fixed knot to construct in two backup pads, the equal fixed mounting in top side of two backup pads has T type strip, slidable mounting has slide bar and bracing piece on two T type strips, equal movable mounting has the structure of tailorring on slide bar and the bracing piece, movable mounting has the regulation structure on the bracing piece, it is structural in tailorring to adjust structure fixed mounting.
Preferably, centre gripping fixed knot constructs including driving actuating cylinder, drives actuating cylinder fixed mounting in one side of backup pad, and the output fixed mounting who drives actuating cylinder has the gangbar, and gangbar slidable mounting is in one side of backup pad, and one side fixed mounting of gangbar has a plurality of gangbars, rotates on the gangbar and installs two returning plates, and one side that two returning plates kept away from the gangbar rotates the one end of installing two slip strips respectively, and backup pad and fixed mounting are all run through to the other one end of two slip strips has splint, and two splint are located the both sides of adhesive film respectively.
Preferably, two linkage holes have been seted up on the linkage plate, and the universal driving shaft is installed all to rotate in two linkage holes, and two universal driving shafts are fixed mounting respectively in one side of two returning face plates, have all seted up on two returning face plates and have rotated the hole, and two rotate downthehole all to rotate and install the connecting axle, and two connecting axles are fixed mounting respectively in one side of two slip strips, have seted up a plurality of perpendicular spouts in the backup pad, and slip strip slidable mounting is in perpendicular spout.
Preferably, tailor the structure and include two connecting blocks and adjusting block, the equal slidable mounting of two connecting blocks is on the bracing piece, adjusting block slidable mounting is on the slide bar, and the equal fixed mounting in bottom side of two connecting blocks has the blade of tailorring, and adjusting block's bottom side fixed mounting has movable blade, and movable blade's top side fixed mounting has the one end of adjusting the pole, and adjusting block and fixed mounting are run through to the other one end of pole has the clamp plate.
Preferably, horizontal sliding grooves are formed in the inner walls of the two sides of the sliding rod and the inner wall of the two sides of the supporting rod, horizontal sliding blocks are arranged in the four horizontal sliding grooves in a sliding mode, and the four horizontal sliding blocks are fixedly arranged on the two sides of the connecting block and the adjusting sliding blocks respectively.
Preferably, two T-shaped grooves are formed in the sliding rod and the supporting rod, and the two T-shaped strips are respectively installed in the two T-shaped grooves on the same side in a sliding mode.
Preferably, adjust the structure and include the gag lever post, gag lever post fixed mounting is in the top side of connecting block, and the top side fixed mounting of gag lever post has the separation blade, and slidable mounting has limit stop on the gag lever post, has seted up two spacing jacks on the limit stop, and the top side fixed mounting of bracing piece has a plurality of inserted blocks, and two spacing jack activities are cup jointed on two corresponding inserted blocks.
Preferably, the limiting stop block is provided with an adjusting hole, the limiting rod is slidably mounted in the adjusting hole, the limiting rod and the adjusting rod are sleeved with the auxiliary springs in a sliding mode, one ends of the two auxiliary springs are fixedly mounted on the top sides of the adjusting sliding block and the connecting block respectively, and the other ends of the two auxiliary springs are fixedly mounted on the bottom sides of the pressing plate and the blocking piece respectively.
The utility model has the advantages that:
the utility model discloses in, through cutting out the blade, splint, the setting of movable blade isotructure, the blend stop can be to its with the one end of glass with the adhesive film, splint through both sides can carry out the centre gripping with the adhesive film that surpasss the glass part fixed, can prevent the condition that the displacement appears or drops in the adhesive film when tailorring, two are cut out the blade and can realize tailorring to the both ends of adhesive film, and movable blade can be tailor the end of adhesive film, and can not appear cutting more or the few circumstances of cutting, the more even cover of adhesive film is in the middle of two glass, promote plywood and off-the-shelf effect.
The utility model discloses in, through the setting of limit stop, inserted block isotructure, upwards stimulate the dog and make it keep away from the inserted block and can remove the restriction to the gag lever post, can adjust cutting blade through the horizontal slip gag lever post, make it can use the glass of equidimension not to tailor, promote the suitability.
Drawings
FIG. 1 is a schematic structural view of an automatic plate bonding device for laminated glass according to the present invention;
FIG. 2 is a schematic structural view of a base portion of an automatic plywood device for laminated glass according to the present invention;
fig. 3 is a schematic cross-sectional structural view of a linkage rod portion of the automatic plywood device specially used for laminated glass according to the present invention;
FIG. 4 is a schematic cross-sectional view of a sliding rod portion of an automatic plywood device for laminated glass according to the present invention;
fig. 5 is a schematic structural view of a plywood part of the automatic plywood device specially used for laminated glass according to the present invention;
fig. 6 is a schematic cross-sectional structural view of a supporting plate part of the automatic plywood device special for laminated glass of the present invention.
In the figure: 100. laminated glass veneer combining machine; 101. a sucker mechanical arm; 102. an adhesive film; 103. glass; 200. a base; 201. a support plate; 202. a driving cylinder; 203. a linkage rod; 204. a linkage plate; 205. a turnover plate; 206. a slide bar; 207. a splint; 208. rotating the hole; 209. a connecting shaft; 210. a linkage hole; 211. a linkage shaft; 212. a vertical chute; 213. blocking strips; 300. t-shaped strips; 301. a slide bar; 302. a support bar; 303. connecting blocks; 304. cutting a blade; 305. a limiting rod; 306. a baffle plate; 307. a limit stop; 308. limiting jacks; 309. inserting a block; 310. an auxiliary spring; 311. adjusting the slide block; 312. a movable blade; 313. adjusting a rod; 314. pressing a plate; 315. a horizontal chute; 316. a T-shaped groove; 317. a horizontal slider; 318. and adjusting the hole.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-6, a special automatic plywood device for laminated glass, comprising a laminated glass plywood 100, a sucker mechanical arm 101 and an adhesive film 102 arranged on the laminated glass plywood 100, two pieces of glass 103 arranged on the adhesive film 102, the two pieces of glass 103 respectively contacted with two sides of the adhesive film 102, a base 200 fixedly arranged on the laminated glass plywood 100, a barrier bar 213 fixedly arranged on one side of the base 200, two support plates 201 symmetrically and fixedly arranged on the top side of the base 200, clamping and fixing structures movably arranged on the two support plates 201, T-shaped bars 300 fixedly arranged on the top sides of the two support plates 201, a sliding bar 301 and a support bar 302 slidably arranged on the two T-shaped bars 300, a cutting structure movably arranged on the sliding bar 301 and the support bar 302, an adjusting structure movably arranged on the support bar 302, the adjusting structure fixedly arranged on the cutting structure, when in use, the glass 103 is adsorbed on the base 200 by the sucker mechanical arm 101, one end of the glass 103 is contacted with the barrier strip 213, then the adhesive film 102 is pulled to cover the surface of the glass 103, and one end of the adhesive film 102 is contacted with the barrier strip 213, so that the adhesive film 102 is aligned with the glass 103, then the other piece of glass 103 is adsorbed to the surface of the adhesive film 102 by the sucker mechanical arm 101, so that the two pieces of glass 103 are covered on two sides of the adhesive film 102, at this time, the two driving cylinders 202 are started, the output ends of the driving cylinders 202 can drive the linkage rods 203 to slide on one side of the supporting plate 201, the sliding linkage rods 203 can drive the linkage plate 204 to move, when the linkage plate 204 moves, one ends of the two turnover plates 205 are pulled to rotate through the matching of the two linkage holes 210 and the two linkage shafts 211, so that the other end of the turnover plate 205 is pulled to slide through the matching between the rotation hole 208 and the connecting shaft 209, the two sliding strips 206 respectively slide in the two vertical sliding grooves 212 and approach each other, so that the sliding strips 206 can only slide in the vertical direction, the two sliding strips 206 approaching each other respectively drive the two clamping plates 207 to approach each other so as to clamp the adhesive film 102, then the supporting rod 302 is pushed, the sliding supporting rod 302 can respectively slide on the two T-shaped grooves 316 through the two T-shaped strips 300, it is ensured that the supporting rod 302 does not deviate and fall off when sliding, the sliding supporting rod 302 can drive the two cutting blades 304 to slide through the two connecting blocks 303, the sliding cutting blades 304 can contact with two ends of the adhesive film 102 and cut the adhesive film, after cutting the two ends, the movable blade 312 is positioned on the horizontal sliding rod 301, the movable blade 312 is aligned to the tail end of the adhesive film 102, then the pressing plate 314 is pressed downwards, so that the pressing plate 314 drives the adjusting rod 313 to slide on the adjusting sliding block 311 and compress one of the auxiliary springs 310, the continuously sliding adjusting rod 313 drives the movable blade 312 to move downwards, so that the movable blade 312 can be positioned on one side of the adhesive film 102 when pushing the pressing plate 314, and the tail end of the movable blade 312 can perform cutting of the adhesive film 102, thereby avoiding the condition of uneven cutting of the adhesive film.
Further, the clamping and fixing structure comprises a driving cylinder 202, the driving cylinder 202 is fixedly installed on one side of the supporting plate 201, an output end of the driving cylinder 202 is fixedly installed with a linkage rod 203, the linkage rod 203 is slidably installed on one side of the supporting plate 201, a plurality of linkage plates 204 are fixedly installed on one side of the linkage rod 203, two turnover plates 205 are rotatably installed on the linkage plate 204, one sides of the two turnover plates 205, which are far away from the linkage plate 204, are respectively rotatably installed with one ends of two sliding strips 206, the other ends of the two sliding strips 206 penetrate through the supporting plate 201 and are fixedly installed with clamping plates 207, the two clamping plates 207 are respectively located on two sides of the adhesive film 102, the two driving cylinders 202 are started, the output ends of the driving cylinders 202 can drive the linkage rod 203 to slide on one side of the supporting plate 201, the sliding linkage rod 203 can drive the linkage plate 204 to move, the linkage plate 204 can drive one ends of the two turnover plates 205 to rotate through the cooperation of the two linkage holes 210 and the two linkage shafts 211 when moving, so that the other ends of the turnover plates 205 can drive the sliding strips 206 to slide through the cooperation between the rotation holes 208 and the two linkage shafts 211, the two sliding strips 206 can slide in the directions, and the two sliding strips 206 can be close to the two sliding grooves 206, and can be close to each other, and the two sliding strips 206, and the sliding strips can be close to each other to be driven to clamp the sliding strips 102.
Further, two linkage holes 210 have been seted up on the linkage plate 204, all rotate in two linkage holes 210 and install the universal driving shaft 211, two universal driving shafts 211 are fixed mounting respectively in one side of two upset boards 205, all seted up on two upset boards 205 and rotated the hole 208, all rotate and install the connecting axle 209 in two rotation holes 208, two connecting axles 209 are fixed mounting respectively in one side of two slip strips 206, a plurality of perpendicular spouts 212 have been seted up on the backup pad 201, slip strip 206 slidable mounting is in perpendicular spout 212, can rotate through the cooperation pulling two upset boards 205 of two linkage holes 210 and two universal driving shafts 211 when linkage plate 204 removes, make the other one end of upset board 205 slide through the cooperation pulling slip strip 206 that rotates between hole 208 and the connecting axle 209.
Further, the cutting structure comprises two connecting blocks 303 and an adjusting slider 311, both connecting blocks 303 are slidably mounted on a supporting rod 302, the adjusting slider 311 is slidably mounted on a sliding rod 301, cutting blades 304 are fixedly mounted on the bottom sides of both connecting blocks 303, a movable blade 312 is fixedly mounted on the bottom side of the adjusting slider 311, one end of an adjusting rod 313 is fixedly mounted on the top side of the movable blade 312, the other end of the adjusting rod 313 penetrates through the adjusting slider 311 and is fixedly mounted with a pressing plate 314, the supporting rod 302 is pushed, the sliding supporting rod 302 can respectively slide on two T-shaped grooves 316 through two T-shaped bars 300, it is ensured that the supporting rod 302 does not deviate or fall when sliding, the sliding supporting rod 302 can drive the two cutting blades 304 to slide through the two connecting blocks 303, the sliding cutting blades 304 can contact and cut two ends of the adhesive film 102, the sliding rod 301 slides horizontally after the two ends are finished, the movable blade 312 is aligned with the tail end of the adhesive film 102, then the pressing plate 314 is pressed downwards, the pressing plate 314 drives the adjusting rod 313 to slide on the adjusting slider 311 and compress one auxiliary spring 310, the adjusting rod 313 continuously sliding 312 can drive the movable blade to move downwards, so that the movable blade 312 can be positioned on one side of the adhesive film 102, and the movable blade 312 can push the movable blade to cut the tail end of the adhesive film 102, thereby avoiding the condition that the movable blade 312 can push the movable blade 312 to cut the movable blade 102 more uniform cutting blade 312.
Further, horizontal sliding grooves 315 are formed in the inner walls of the two sides of the sliding rod 301 and the supporting rod 302, horizontal sliding blocks 317 are arranged in the four horizontal sliding grooves 315 in a sliding mode, the four horizontal sliding blocks 317 are fixedly arranged on the two sides of the connecting block 303 and the adjusting sliding block 311 respectively, the sliding connecting block 303 and the supporting rod 302 can drive the horizontal sliding blocks 317 on the two sides to slide in the two horizontal sliding grooves 315 respectively, and therefore it is guaranteed that the connecting block 303 and the supporting rod 302 can only slide in the horizontal direction.
Further, two T type grooves 316 have all been seted up on slide bar 301 and the bracing piece 302, and two T type strips 300 slidable mounting are respectively in lieing in two T type grooves 316 of same one side, promote bracing piece 302, and gliding bracing piece 302 can slide on two T type grooves 316 respectively through two T type strips 300, has guaranteed that the skew condition that drops can not appear when bracing piece 302 slides.
Further, the adjusting structure includes a limiting rod 305, the limiting rod 305 is fixedly installed on the top side of the connecting block 303, a baffle 306 is fixedly installed on the top side of the limiting rod 305, a limit stop 307 is installed on the limiting rod 305 in a sliding manner, two limit insertion holes 308 are formed in the limit stop 307, a plurality of insertion blocks 309 are fixedly installed on the top side of the supporting rod 302, the two limit insertion holes 308 are movably sleeved on the two corresponding insertion blocks 309, the limit stop 307 is pulled to enable the limit stop 307 to slide on the limiting rod 305 through the adjusting hole 318, and further enable the limit stop 307 to slide only in the vertical direction, the sliding limit stop 307 can drive the limit insertion holes 308 to be far away from the corresponding insertion blocks 309, and compress another auxiliary spring 310, at this moment, the limitation on the limiting rod 305 can be removed, the horizontal sliding limiting rod 305 enables the horizontal sliding limiting rod 305 to drive the connecting block 303 to slide, the sliding connecting block 303 can drive the blade 304 to slide, and further the position of the cutting blade 304 can be adjusted according to the size of the glass.
Furthermore, an adjusting hole 318 is formed in the limit stop 307, the limit rod 305 is slidably installed in the adjusting hole 318, the auxiliary springs 310 are slidably sleeved on the limit rod 305 and the adjusting rod 313, one ends of the two auxiliary springs 310 are fixedly installed on the top sides of the adjusting slide block 311 and the connecting block 303 respectively, the other ends of the two auxiliary springs 310 are fixedly installed on the bottom sides of the pressing plate 314 and the blocking piece 306 respectively, the limit stop 307 is pulled, the limit stop 307 can slide on the limit rod 305 through the adjusting hole 318, the limit stop 307 can only slide in the vertical direction, the sliding limit stop 307 can drive the limit insertion hole 308 to be away from the corresponding insertion block 309 and compress the auxiliary springs 310, the limit stop 307 is released after adjustment is completed, at the moment, the auxiliary spring 310 can push the limit stop 307 to be restored, the restored limit stop 307 drives the limit insertion hole 308 to be sleeved on the corresponding insertion block 309, and fixing operation is completed again.
The utility model discloses the theory of operation:
when the glass turnover device is used, the glass 103 is adsorbed to the base 200 through the sucker mechanical arm 101, one end of the glass 103 is enabled to be in contact with the blocking strip 213, then the adhesive film 102 is pulled, the adhesive film 102 is covered on the surface of the glass 103, one end of the adhesive film 102 is enabled to be in contact with the blocking strip 213, so that the adhesive film 102 and the glass 103 can be ensured to be aligned, then the other piece of glass 103 is adsorbed to the surface of the adhesive film 102 through the sucker mechanical arm 101, two pieces of glass 103 are enabled to be covered on two sides of the adhesive film 102, at the moment, the two driving cylinders 202 are started, the output ends of the driving cylinders 202 can drive the linkage rods 203 to slide on one side of the supporting plate 201, the sliding linkage rods 203 can drive the linkage plate 204 to move, when the linkage plate 204 moves, one ends of the two turnover plates 205 are pulled to rotate through the matching of the two linkage holes 210 and the two linkage shafts 211, so that the other ends of the turnover plates 205 pull the sliding strips 206 to slide through the matching between the rotating holes 208 and the connecting shafts 209, the two sliding strips 206 will slide in the two vertical sliding slots 212 and approach each other, respectively, so that the sliding strips 206 can only slide in the vertical direction, the two sliding strips 206 approaching each other will drive the two clamping plates 207 to approach each other, so as to clamp the adhesive film 102, and then push the supporting rod 302, the sliding supporting rod 302 will slide on the two T-shaped slots 316 through the two T-shaped strips 300, respectively, so as to ensure that the supporting rod 302 will not deviate or fall off when sliding, the sliding supporting rod 302 will drive the two cutting blades 304 to slide through the two connecting blocks 303, the sliding cutting blades 304 will contact and cut the two ends of the adhesive film 102, after cutting the two ends, the movable blade 312 will be aligned with the end of the adhesive film 102 on the horizontal sliding rod 301, and then press the pressing plate 314 downwards, so that the pressing plate 314 drives the adjusting rod 313 to slide on the adjusting slider 311 and compress one of the auxiliary springs 310, the adjusting rod 313 which slides continuously can drive the movable blade 312 to move downwards, so that the movable blade 312 can be located on one side of the adhesive film 102, then the pressing plate 314 is pushed to enable the movable blade 312 to slide horizontally, the horizontally sliding movable blade 312 can cut the tail end of the adhesive film 102, thereby the operation of the plywood can be completed more quickly, meanwhile, the condition of uneven cutting is avoided, and by pulling the limit stop 307, the limit stop 307 can slide on the limit rod 305 through the adjusting hole 318, and further the limit stop 307 can only slide in the vertical direction, the sliding limit stop 307 can drive the limit jack 308 to be far away from the corresponding plug-in block 309 and compress another auxiliary spring 310, at the moment, the limitation on the limit rod 305 can be removed, the horizontally sliding limit rod 303 can drive the connecting block to slide, the sliding connecting block 303 can drive the horizontal sliding blocks 317 on two sides to slide in two horizontal sliding chutes 315 respectively, thereby ensuring that the connecting block 303 can only slide in the horizontal direction, the sliding connecting block 303 can drive the cutting blade 304 to slide, and further adjust the position of the cutting blade 304 according to the size of the glass, after the adjusting, the auxiliary spring 307 can be released, thereby the auxiliary spring 307 can conveniently recover to the size of the corresponding plug-in-position of the fixing plug-in-limiting block 308, thereby the fixing the limiting block 307 can be conveniently.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (8)

1. The utility model provides a special automatic plywood device of doubling glass, includes doubling glass board machine (100), be equipped with sucking disc arm (101) and glued membrane (102) on doubling glass board machine (100), be equipped with two glass (103) on glued membrane (102), its characterized in that: two glass (103) contact with the both sides of gluing membrane (102) respectively, fixed mounting has base (200) on doubling glass board binding machine (100), one side fixed mounting of base (200) has blend stop (213), the top side symmetry fixed mounting of base (200) has two backup pads (201), equal movable mounting has centre gripping fixed knot to construct on two backup pads (201), the equal fixed mounting in top side of two backup pads (201) has T type strip (300), slidable mounting has slide bar (301) and bracing piece (302) on two T type strips (300), equal movable mounting has the structure of tailorring on slide bar (301) and bracing piece (302), movable mounting has the regulation structure on bracing piece (302), regulation structure fixed mounting is tailorring structurally.
2. The automatic plate bonding device special for laminated glass according to claim 1, wherein: centre gripping fixed knot constructs including driving actuating cylinder (202), drive actuating cylinder (202) fixed mounting in one side of backup pad (201), the output fixed mounting who drives actuating cylinder (202) has gangbar (203), gangbar (203) slidable mounting is in one side of backup pad (201), one side fixed mounting of gangbar (203) has a plurality of gangplates (204), rotate on gangplate (204) and install two returning face plates (205), one side that linked plate (204) were kept away from in two returning face plates (205) rotates the one end of installing two slip strips (206) respectively, the other one end of two slip strips (206) all runs through backup pad (201) and fixed mounting has splint (207), two splint (207) are located the both sides of adhesive film (102) respectively.
3. The special automatic plywood device for laminated glass according to claim 2, wherein: seted up two linkage holes (210) on linkage plate (204), all rotate in two linkage holes (210) and install universal driving shaft (211), two universal driving shaft (211) are fixed mounting respectively in one side of two returning face plates (205), all seted up on two returning face plates (205) and rotated hole (208), all rotate in two rotation holes (208) and install connecting axle (209), two connecting axle (209) are fixed mounting respectively in one side of two slip strips (206), a plurality of perpendicular spouts (212) have been seted up on backup pad (201), slip strip (206) slidable mounting is in perpendicular spout (212).
4. The automatic plate bonding device special for laminated glass according to claim 1, wherein: the utility model discloses a structure of tailorring includes two connecting blocks (303) and adjusting block (311), two equal slidable mounting of connecting block (303) are on bracing piece (302), adjusting block (311) slidable mounting is on slide bar (301), the equal fixed mounting in bottom side of two connecting blocks (303) has blade (304) of tailorring, the bottom side fixed mounting of adjusting block (311) has movable blade (312), the top side fixed mounting of movable blade (312) has the one end of adjusting pole (313), the other one end of adjusting pole (313) runs through adjusting block (311) and fixed mounting has clamp plate (314).
5. The automatic plate bonding device special for laminated glass according to claim 1, wherein: horizontal sliding grooves (315) are formed in the inner walls of the two sides of the sliding rod (301) and the supporting rod (302), horizontal sliding blocks (317) are arranged in the four horizontal sliding grooves (315) in a sliding mode, and the four horizontal sliding blocks (317) are fixedly arranged on the two sides of the connecting block (303) and the adjusting sliding block (311) respectively.
6. The automatic plate bonding device special for laminated glass according to claim 1, wherein: two T-shaped grooves (316) are formed in the sliding rod (301) and the supporting rod (302), and the two T-shaped strips (300) are respectively installed in the two T-shaped grooves (316) on the same side in a sliding mode.
7. The special automatic plywood device for laminated glass according to claim 1, wherein: the adjusting structure comprises a limiting rod (305), the limiting rod (305) is fixedly installed on the top side of a connecting block (303), a baffle (306) is fixedly installed on the top side of the limiting rod (305), a limiting stop (307) is installed on the limiting rod (305) in a sliding mode, two limiting insertion holes (308) are formed in the limiting stop (307), a plurality of insertion blocks (309) are fixedly installed on the top side of a supporting rod (302), and the two limiting insertion holes (308) are movably sleeved on the two corresponding insertion blocks (309).
8. The automatic plate bonding device special for laminated glass according to claim 7, wherein: the limiting stopper (307) is provided with an adjusting hole (318), the limiting rod (305) is slidably mounted in the adjusting hole (318), the limiting rod (305) and the adjusting rod (313) are sleeved with the auxiliary springs (310) in a sliding mode, one ends of the two auxiliary springs (310) are fixedly mounted on the top sides of the adjusting sliding block (311) and the connecting block (303) respectively, and the other ends of the two auxiliary springs (310) are fixedly mounted on the bottom sides of the pressing plate (314) and the blocking piece (306) respectively.
CN202223050827.2U 2022-11-15 2022-11-15 Special automatic plywood device of doubling glass Active CN218615842U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223050827.2U CN218615842U (en) 2022-11-15 2022-11-15 Special automatic plywood device of doubling glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223050827.2U CN218615842U (en) 2022-11-15 2022-11-15 Special automatic plywood device of doubling glass

Publications (1)

Publication Number Publication Date
CN218615842U true CN218615842U (en) 2023-03-14

Family

ID=85424770

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223050827.2U Active CN218615842U (en) 2022-11-15 2022-11-15 Special automatic plywood device of doubling glass

Country Status (1)

Country Link
CN (1) CN218615842U (en)

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GR01 Patent grant