CN218505264U - Edge sealing device for producing EVA foam hollow board - Google Patents

Edge sealing device for producing EVA foam hollow board Download PDF

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Publication number
CN218505264U
CN218505264U CN202222776400.4U CN202222776400U CN218505264U CN 218505264 U CN218505264 U CN 218505264U CN 202222776400 U CN202222776400 U CN 202222776400U CN 218505264 U CN218505264 U CN 218505264U
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subassembly
recess
hot press
symmetry
banding
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CN202222776400.4U
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Chinese (zh)
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芦国铨
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Changzhou Dongmu Plastic Rubber Product Co ltd
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Changzhou Dongmu Plastic Rubber Product Co ltd
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Abstract

The utility model provides a banding device for producing EVA foam hollow boards, which comprises a workbench and a mounting plate; a plurality of bracing pieces are installed to the up end of workstation, the up end at the transport bracing piece of a plurality of settings is installed to the mounting panel, the up end of workstation is equipped with the recess of inside concave yield, bilateral symmetry is equipped with first banding subassembly in the recess, the symmetry is equipped with second banding subassembly around in the recess, the lower terminal surface of mounting panel is installed and is used for compressing tightly the subassembly that compresses tightly of cavity board, the bottom surface of recess is equipped with the opening, be equipped with in the opening and derive the subassembly. The utility model discloses a set up first banding subassembly and second banding subassembly, can carry out the banding processing with the four ends of well hollow plate simultaneously to can promote machining efficiency, reduce production time, compress tightly the subassembly through the setting, can compress tightly the hollow plate, derive the subassembly through the setting, do benefit to and derive the hollow plate, need not the manual well hollow plate that takes out, thereby further promotion machining efficiency.

Description

Edge sealing device for producing EVA foam hollow board
Technical Field
The utility model relates to a EVA steeps cotton well hollow plate production and processing technical field, specifically is a EVA steeps production of cotton well hollow plate and uses banding device.
Background
The EVA foam high foaming process is characterized in that the EVA foam high foaming process is to complete crosslinking under heating and pressurizing of materials subjected to full mixing in a die, partial foaming is generated by decomposition of partial foaming agent, the die is cooled to a certain temperature and taken out, the high-frequency materials are generally used for imprinting high-frequency materials, and the three-dimensional effect of the material appearance is achieved.
For example, application numbers are: 202123069094.2, comprising a base plate, top one side fixedly connected with backup pad of bottom plate, the opposite side at bottom plate top is provided with positioning adjustment mechanism, the top fixedly connected with roof of backup pad, the top fixedly connected with hydraulic telescoping rod of roof, the roof top is located the equal fixedly connected with purifying box in hydraulic telescoping rod's both sides, hydraulic telescoping rod's output extends to the below and the fixedly connected with hot press of roof, the bottom fixedly connected with heat-sealing plate of hot press, the equal fixedly connected with air exhaust mechanism in hot press top both sides for this device can adjust the distance between fly leaf and the grip block through positioning adjustment mechanism, thereby makes this device can fix the cavity board of different width, and then has improved the application scope and the practicality of this device greatly.
Although this design can be adjusted the distance between fly leaf and the grip block through location adjustment mechanism to make this device can fix the well hollow plate of different width, and then improved the application scope and the practicality of this device greatly.
However, the four sides of the hollow plate cannot be sealed simultaneously in the design, so that the production and machining efficiency is not obvious enough, the machined hollow plate cannot be taken out manually, and the overall machining efficiency is low.
An object of the utility model is to provide a production of hollow plate is used to EVA bubble is with banding device to solve the problem that mentions in the above-mentioned background art.
SUMMERY OF THE UTILITY MODEL
In order to achieve the purpose, the utility model provides a sealing device for producing EVA foam hollow plates, which comprises a workbench and a mounting plate; a plurality of bracing pieces are installed to the up end of workstation, the up end at the transport bracing piece of a plurality of settings is installed to the mounting panel, the up end of workstation is equipped with the recess of inside concave yield, bilateral symmetry is equipped with first banding subassembly in the recess, the symmetry is equipped with second banding subassembly around in the recess, the lower terminal surface of mounting panel is installed and is used for compressing tightly the subassembly that compresses tightly of cavity board, the bottom surface of recess is equipped with the opening, be equipped with in the opening and derive the subassembly.
Preferably: bilateral symmetry sets up first banding subassembly all includes first hot press and first cylinder, and the symmetry sets up the first hot press bilateral symmetry that the symmetry set up in the recess, the left and right ends symmetry of workstation install with the mounting box that first hot press corresponds, the symmetry sets up first cylinder is installed respectively in the mounting box, the symmetry sets up the output of first cylinder all runs through the mounting box with the workstation stretches into in the recess with correspond first hot press fixed connection.
Preferably: the second sealing edge assembly is symmetrically arranged in the front and back direction and comprises a second hot press and a second air cylinder, the second hot press is symmetrically arranged in the groove, the mounting boxes corresponding to the second hot press are symmetrically mounted at the front end and the back end of the workbench, the second air cylinder is symmetrically arranged in the mounting boxes respectively, and the output end of the second air cylinder symmetrically arranged penetrates through the mounting boxes and the workbench and extends into the groove and corresponds to the second hot press for fixing and connecting.
Preferably, the following components: the compressing assembly comprises an electric telescopic rod and a push plate, the electric telescopic rod is installed on the lower end face of the mounting plate, the output end of the electric telescopic rod faces towards the direction, and the push plate is installed at the output end of the electric telescopic rod.
Preferably: the derivation subassembly includes shrouding and motor, be equipped with the installation storehouse in the workstation, the motor is installed in the installation storehouse, the dwang is installed to both ends symmetry about the shrouding, open-ended left and right sides two walls be equipped with respectively with dwang pivoted hole and through-hole of mutually supporting, the through-hole intercommunication the installation storehouse, the symmetry sets up the dwang stretches into respectively the through-hole with rotate downthehole and rather than rotate and be connected, the output of motor with stretch into dwang fixed connection in the through-hole.
Preferably, the following components: the up end of shrouding is equipped with a plurality of mounting grooves, the mounting groove internal rotation is connected with changes the roller.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a set up first banding subassembly and second banding subassembly, can carry out the banding processing with the four ends of well hollow plate simultaneously to can promote machining efficiency, reduce production time, compress tightly the subassembly through the setting, can compress tightly the hollow plate, derive the subassembly through the setting, do benefit to and derive the hollow plate, need not the manual well hollow plate that takes out, thereby further promotion machining efficiency.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a top cross-sectional view of the table of the present invention;
FIG. 3 is a front cross-sectional view of the worktable of the present invention;
FIG. 4 is an enlarged view of the area a of the present invention;
fig. 5 is an enlarged view of the region b of the present invention.
In the figure: 1. a work table; 11. a support bar; 12. a groove; 13. an opening; 131. a through hole; 132. rotating the hole; 14. mounting a box; 15. installing a box; 16. installing a bin; 2. mounting a plate; 3. a first edge banding assembly; 31. a first hot press; 32. a first cylinder; 4. a second edge banding assembly; 41. a second hot press; 42. a second cylinder; 5. a compression assembly; 51. an electric telescopic rod; 52. pushing the plate; 6. a exporting component; 61. closing the plate; 611. rotating the rod; 612. mounting grooves; 613. rotating the roller; 62. an electric motor.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully with reference to the accompanying drawings, in which several embodiments of the present invention are shown, but the present invention can be implemented in different forms, and is not limited to the embodiments described in the text, but rather, these embodiments are provided to make the disclosure of the present invention more thorough and comprehensive.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may be present, and when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present, as the terms "vertical", "horizontal", "left", "right" and the like are used herein for descriptive purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs, and the terms used herein in the specification of the present invention are for the purpose of describing particular embodiments only and are not intended to limit the present invention, and the term "and/or" as used herein includes any and all combinations of one or more of the associated listed items.
The present invention will be described in further detail with reference to the accompanying drawings.
Example one
Referring to fig. 1-5, the utility model provides a banding device for producing EVA foam hollow board, comprising a workbench 1 and a mounting plate 2; a plurality of bracing pieces 11 are installed to the up end of workstation 1, the up end at a plurality of conveying bracing pieces 11 that set up is installed to mounting panel 2, the up end of workstation 1 is equipped with the recess 12 of inside concave yield, bilateral symmetry is equipped with first banding subassembly 3 in the recess 12, the symmetry is equipped with second banding subassembly 4 around in the recess 12, the lower terminal surface of mounting panel 2 is installed and is used for compressing tightly the subassembly 5 that compresses tightly of well hollow plate, the bottom surface of recess 12 is equipped with opening 13, be equipped with in the opening 13 and derive subassembly 6, through setting up first banding subassembly 3 and second banding subassembly 4, can carry out banding processing with the four ends of well hollow plate simultaneously to can promote machining efficiency, reduce production time, through setting up compressing tightly subassembly 5, can compress tightly the hollow plate, derive subassembly 6 through setting up, do benefit to derive the well hollow plate, need not manually to take out the hollow plate, thereby further promotion machining efficiency.
Please refer to fig. 1-3: the first edge sealing assemblies 3 which are arranged in bilateral symmetry each comprise a first hot press 31 and a first air cylinder 32, in the grooves 12 which are symmetrically arranged at the left and the right of the first hot press 31, the mounting boxes 14 corresponding to the first hot press 31 are symmetrically arranged at the left and the right ends of the workbench 1, the first cylinders 32 which are symmetrically arranged are respectively installed in the installation box 14, the output ends of the first cylinders 32 which are symmetrically arranged penetrate through the installation box 14 and the workbench 1 and extend into the groove 12 to be fixedly connected with the corresponding first hot press 31, the edge sealing of the left and right end faces of the hollow plate can be realized by arranging the first hot press 31 and the first cylinder 32, the second edge sealing components 4 which are symmetrically arranged front and back comprise a second hot press 41 and a second cylinder 42, in the grooves 12 which are symmetrically arranged at the left and the right of the second hot press 41, the front end and the rear end of the worktable 1 are symmetrically provided with the installation boxes 15 corresponding to the second hot press 41, the second air cylinders 42 which are symmetrically arranged are respectively installed in the installation box 15, the output ends of the second air cylinders 42 which are symmetrically arranged penetrate through the installation box 15 and the workbench 1 and extend into the groove 12 to be fixedly connected with the corresponding second hot press 41, by arranging the second hot press 41 and the second air cylinder 42, the front and rear end surfaces of the hollow plate can be sealed, the compressing assembly 5 comprises an electric telescopic rod 51 and a push plate 52, the electric telescopic rod 51 is arranged on the lower end surface of the mounting plate 2, electric telescopic handle 51's output orientation, push pedal 52 ann is in electric telescopic handle 51's output can realize compressing tightly the function of cavity board through setting up electric telescopic handle 51 and push pedal 52.
Please refer to fig. 2-5: derive subassembly 6 and include shrouding 61 and motor 62, be equipped with installation storehouse 16 in the workstation 1, motor 62 is installed in the installation storehouse 16, dwang 611 is installed to shrouding 61's left and right ends symmetry, opening 13's left and right sides wall be equipped with respectively with dwang 611 mutually supported's rotation hole 132 and through-hole 131, through-hole 131 intercommunication installation storehouse 16, the symmetry sets up dwang 611 stretches into respectively through-hole 131 with rotate in the hole 132 and be connected rather than rotating, motor 62's output with stretch into dwang 611 fixed connection in the through-hole 131, through setting up motor 62 and shrouding 61, enable shrouding 61 and seal opening 13, when needs are derived, drive shrouding 61 through motor 62 and rotate, make shrouding 61 slope, make well hollow plate roll-out recess 12 to realize the function of deriving, the up end of shrouding 61 is equipped with a plurality of mounting grooves 612, the mounting groove 612 internal rotation is connected with rotor 613, through setting up rotor 613, does benefit to the roll through rotor 613, enables the more convenient derivation of well hollow plate.
The embodiment of the utility model provides a concrete operation mode as follows:
when the vacuum plate pressing device is used, a hollow plate is placed on the upper end face of the sealing plate 61, the switch is further pressed, the first air cylinders 32 which are arranged in bilateral symmetry are started, the first air cylinders 32 are started to push the first hot press 31, the first hot press 31 is enabled to be gradually close to the left end and the right end of the hollow plate, after the first hot press 31 is contacted with the left end and the right end of the hollow plate, if the hollow plate is inclined, the first hot press 31 which are arranged in symmetry can push the vacuum plate to be arranged orderly, after the first hot press 31 is contacted with the hollow plate, the switch is pressed to start the second air cylinders 42, the second air cylinders 42 are started to push the second hot press 41, the second hot press 41 is contacted with the front end and the back end of the hollow plate, the switch is further pressed to start the electric telescopic rods 51, the electric telescopic rods 51 extend downwards, so that the push plates 52 are pushed, the hollow plate 52 is pressed, the electric telescopic rods 51 are closed after being pressed, the electric telescopic rod 51 stops extending, further, the switch is pressed to start the first hot press 31 and the second hot press 41 to simultaneously seal edges of the hollow plates, after the sealing edges are finished, the switch is pressed to close the first air cylinder 32, the second air cylinder 42, the first hot press 31 and the second hot press 41, at the moment, as the first air cylinder 32 and the second air cylinder 42 are closed, the first air cylinder 32 and the second air cylinder 42 are reset and drive the first hot press 31 and the second hot press 41 to reset, further, the switch is pressed to start the electric telescopic rod 51 to reset the electric telescopic rod 51 and drive the push plate 52 to be separated from the hollow plates, meanwhile, the switch is pressed to start the motor 62, the motor 62 rotates forward to start the rotating rod 611 to rotate, the rotating rod 611 drives the sealing plate 61 to rotate, the sealing plate 61 is inclined, after the sealing plate 61 is inclined, and when the inclined angle is enough for the hollow plates to slide out, at this time, the motor 62 is turned off, the hollow board is drawn out from the opening 13 to the table 1, and the upper end surface of the sealing plate 61 is provided with the rotary roller 613 which is rotatably connected, so that the hollow board can be smoothly fed out at the time of drawing, after the hollow board is fed out, the switch is pressed again, the motor 62 is started, the motor 62 is reversely rotated, the sealing plate 61 is reset, and after the sealing plate 61 is reset, the motor 62 is turned off, and the operation is completed.
It should be noted that the motor 62 can adopt the servo motor 62, thereby can realize automatic control through installing the PLC device additional, and electric telescopic handle 51, motor 62, first cylinder 32, second cylinder 42, first hot press 31 and second hot press 41 all are external to have power and open and stop the switch.
The present invention has been described above with reference to the accompanying drawings, and it is obvious that the present invention is not limited by the above-mentioned manner, if the method and the technical solution of the present invention are adopted, the present invention can be directly applied to other occasions without substantial improvement, and the present invention is within the protection scope of the present invention.

Claims (6)

1. The utility model provides a production of hollow board is used to EVA bubble banding device which characterized in that: comprises a workbench (1) and a mounting plate (2);
a plurality of bracing pieces (11) are installed to the up end of workstation (1), the up end at the transport bracing piece (11) of a plurality of settings is installed in mounting panel (2), the up end of workstation (1) is equipped with recess (12) of inside concave yield, bilateral symmetry is equipped with first banding subassembly (3) in recess (12), the symmetry is equipped with second banding subassembly (4) around in recess (12), the lower terminal surface of mounting panel (2) is installed and is used for compressing tightly subassembly (5) of cavity board, the bottom surface of recess (12) is equipped with opening (13), be equipped with in opening (13) and derive subassembly (6).
2. The edge sealing device for producing the EVA foam hollow board according to claim 1, wherein: bilateral symmetry sets up first banding subassembly (3) all includes first hot press (31) and first cylinder (32), and the symmetry sets up first hot press (31) bilateral symmetry of symmetry setting in recess (12), the left and right ends symmetry of workstation (1) install with mounting box (14) that first hot press (31) correspond, the symmetry sets up first cylinder (32) are installed respectively in mounting box (14), the symmetry sets up the output of first cylinder (32) all runs through mounting box (14) with workstation (1) and stretch into in recess (12) with correspond first hot press (31) fixed connection.
3. The edge sealing device for producing the EVA foam hollow board according to claim 1, wherein: the symmetry sets up around second banding subassembly (4) all include second hot press (41) and second cylinder (42), and the symmetry sets up second hot press (41) bilateral symmetry the recess (12) in, both ends symmetry install around workstation (1) with install bin (15) that second hot press (41) correspond, the symmetry sets up second cylinder (42) are installed respectively in install bin (15), the symmetry sets up the output of second cylinder (42) all runs through install bin (15) with workstation (1) and stretch into in recess (12) with correspond second hot press (41) fixed connection.
4. The edge sealing device for producing the EVA foam hollow board according to claim 1, wherein: compress tightly subassembly (5) and include electric telescopic handle (51) and push pedal (52), electric telescopic handle (51) are installed the lower terminal surface of mounting panel (2), the output orientation of electric telescopic handle (51), push pedal (52) ann are in the output of electric telescopic handle (51).
5. The edge sealing device for producing the EVA foam hollow board according to claim 1, wherein: derive subassembly (6) including shrouding (61) and motor (62), be equipped with installation bin (16) in workstation (1), motor (62) are installed in installation bin (16), dwang (611) are installed to both ends symmetry about shrouding (61), two walls are equipped with respectively about opening (13) with dwang (611) rotation hole (132) and through-hole (131) of mutually supporting, through-hole (131) intercommunication installation bin (16), the symmetry sets up dwang (611) are stretched into respectively through-hole (131) with rotate in the hole (132) and rather than the swivelling joint, the output of motor (62) with stretch into dwang (611) fixed connection in through-hole (131).
6. The edge sealing device for producing the EVA foam hollow board according to claim 5, wherein: the up end of shrouding (61) is equipped with a plurality of mounting grooves (612), mounting groove (612) internal rotation is connected with changes roller (613).
CN202222776400.4U 2022-10-21 2022-10-21 Edge sealing device for producing EVA foam hollow board Active CN218505264U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222776400.4U CN218505264U (en) 2022-10-21 2022-10-21 Edge sealing device for producing EVA foam hollow board

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222776400.4U CN218505264U (en) 2022-10-21 2022-10-21 Edge sealing device for producing EVA foam hollow board

Publications (1)

Publication Number Publication Date
CN218505264U true CN218505264U (en) 2023-02-21

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ID=85219012

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222776400.4U Active CN218505264U (en) 2022-10-21 2022-10-21 Edge sealing device for producing EVA foam hollow board

Country Status (1)

Country Link
CN (1) CN218505264U (en)

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