CN220615103U - Card inner page bag making machine - Google Patents

Card inner page bag making machine Download PDF

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Publication number
CN220615103U
CN220615103U CN202322175956.2U CN202322175956U CN220615103U CN 220615103 U CN220615103 U CN 220615103U CN 202322175956 U CN202322175956 U CN 202322175956U CN 220615103 U CN220615103 U CN 220615103U
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CN
China
Prior art keywords
card
bag
making machine
bag making
groove
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Active
Application number
CN202322175956.2U
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Chinese (zh)
Inventor
施榕棋
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Quzhou Benneng New Materials Co ltd
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Quzhou Benneng New Materials Co ltd
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Priority to CN202322175956.2U priority Critical patent/CN220615103U/en
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Abstract

The utility model provides a card inner page bag making machine, which relates to the field of bag making machines and aims to solve the problem that when the existing card inner page bag making machine is used, a card inner page bag is easy to misplace in the long-time moving process. When processing card internal page bag, according to the width of card internal page bag, the card subassembly installation of the suitable quantity of free control, the adjusting head is at the inside removal of cavity guide slot, be close to the deflector roll, card internal page bag through deflector roll removal, between the carding subassembly, comb the subassembly and comb the card internal page bag definitely, avoid the card internal page bag to appear the displacement, move down through screw thread control displacement pole, comb the subassembly and adjust down, comb the card internal page bag of subassembly to the bottom and comb.

Description

Card inner page bag making machine
Technical Field
The utility model belongs to the technical field of bag making machines, and particularly relates to a card inner page bag making machine.
Background
When the inner page bags of the cards are produced, a bag making machine is usually required to carry out welding perforation, so that the inner page bags of the cards can be quickly combined together for use, and the production efficiency is improved.
When the existing card inner page bag making machine is operated and used, especially in the material guiding process, a virtual position is easy to appear, the virtual position can easily cause the loosening of the card inner page bag, the welding perforation effect is affected, and the dislocation of the card inner page bag is easy to appear in the long-time moving process.
Disclosure of Invention
In order to solve the technical problems, the utility model provides a card inner page bag making machine, which aims to solve the problems that the existing card inner page bag making machine is easy to generate a virtual position, influence the welding perforation effect and easily generate dislocation when in operation and use, especially in the material guiding process.
The utility model relates to a card inner page bag making machine, which comprises: bag making machine equipment; two supporting inclined plates are respectively fixed on two sides of the front end of the bag making machine, two supporting inclined plates are arranged in total, a guide roller is arranged between the two supporting inclined plates, two stress components are respectively fixed on two ends of the guide roller, a pulling piece is arranged on the stress components through a driving groove, the top cross section of the pulling piece is of a cylindrical structure, and a round hole is formed in the middle of the bottom end of the pulling piece; the movable assembly is positioned at the front end of the bag making machine, the movable assembly is arranged between the two supporting inclined plates, two long grooves are respectively formed in two sides of the movable assembly, two adjusting heads are respectively fixed at two ends of the movable assembly, a round hole is formed in each adjusting head, a displacement rod is inserted into each round hole, an ejector rod is fixed at the top end of each displacement rod, and carding assemblies which are uniformly arranged are arranged at the bottoms of the ejector rods through threads.
Optionally, a hollow guide groove is arranged at the bottom of the inner end of each supporting inclined plate, an adjusting head is inserted into each hollow guide groove in a sliding manner, an outer groove is arranged at the front end of each supporting inclined plate, and a stop block is arranged outside each outer groove through threads; the outer side of each supporting inclined plate is fixedly provided with a control plate, the bottom end of each control plate is fixedly welded with a T-shaped shaft rod, the outer part of each T-shaped shaft rod is sleeved with a spring, the T-shaped shaft rod is inserted into a round hole of the pulling piece, the bottom of the spring is in contact with the inside of the pulling piece, the inner side of each control plate is provided with a sliding groove, the bottom end of each control plate is provided with two bottom grooves, the pulling piece is inserted into the bottom grooves, two ends of each guide roller are respectively fixed with a sliding block, and the sliding blocks are inserted into the outer grooves in a sliding manner; the stress components are fixedly connected with the sliding blocks, the stress components are inserted into the sliding grooves, a driving groove is formed in each stress component, the driving groove is of an inclined structure, and a pulling piece is inserted into the driving groove in a sliding mode.
Optionally, a connecting piece is fixed at the bottom of each adjusting head, the connecting piece is in a circular ring structure, the cross section of the connecting piece is in an L-shaped structure, each connecting piece is rotationally connected with a rotating assembly, and a threaded hole is formed in each rotating assembly; the displacement rod is inserted into the long groove, threads are arranged at the outer parts of the two ends of the displacement rod, and the two ends of the displacement rod are inserted into the threaded holes.
Compared with the prior art, the utility model has the following beneficial effects:
1. through setting up and drawing the piece, card internal page bag can pass through the deflector roll outside and remove by driven in-process, the in-process that removes, the outside spring of T shape axostylus axostyle continuously promotes and draws the piece, draw the piece to bear the downward displacement of atress continuously, draw the top of piece to bear the downward displacement in the drive tank inside continuously, draw the piece to bear the weight of and slide in the bottom tank inside simultaneously, because the drive tank is the slope form structure, control the stress subassembly and last horizontal displacement, drive deflector roll and transversely displace together, bear the weight of and take up the card internal page bag continuously, take up the card internal page bag automatically, avoid the card internal page bag to appear becoming flexible at the in-process that removes, lead to welding perforation dislocation appears, card internal page bag direction removal has been solved, the problem of virtual position appears easily;
2. through setting up adjusting head and carding the subassembly, when processing card interior page or leaf bag, can be according to the width of card interior page or leaf bag, the carding subassembly installation of proper quantity of free control, carding the subassembly is connected with the ejector pin through the screw thread, control simultaneously and remove the subassembly and pass through adjusting head sliding displacement, adjust head at inside removal of cavity guide slot, be close to the deflector roll, card interior page or leaf bag through the deflector roll removal, between carding the subassembly, carding the subassembly and clearly comb the card interior page or leaf bag, avoid the card interior page or leaf bag to appear the displacement, can control rotatory subassembly simultaneously, move downwards through screw thread control displacement pole, comb the subassembly and down adjust the height, comb the card interior page or leaf bag of subassembly to the bottom, the problem that the dislocation appears easily in the card has been solved.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is a schematic bottom view of the present utility model.
Fig. 3 is an exploded perspective view of the present utility model.
Fig. 4 is an exploded perspective view of the bag machine apparatus of the present utility model.
Fig. 5 is an exploded perspective view of the mobile assembly of the present utility model.
In the figure, the correspondence between the component names and the drawing numbers is:
1. bag making machine equipment; 101. supporting a sloping plate; 102. a hollow guide groove; 103. an outer groove; 104. a control board; 105. a guide roller; 106. a force-bearing component; 107. a driving groove; 108. a pull member;
2. a moving assembly; 201. adjusting the head; 202. a connecting piece; 203. a rotating assembly; 204. a displacement rod; 205. a push rod; 206. and (3) a carding assembly.
Detailed Description
Embodiments of the present utility model are described in further detail below with reference to the accompanying drawings and examples.
Embodiment one:
as shown in fig. 1 to 5:
the utility model provides a card inner page bag making machine, which comprises: a bag making machine device 1; the two sides of the front end of the bag making machine equipment 1 are respectively fixed with a supporting inclined plate 101, the two supporting inclined plates 101 are provided with two supporting inclined plates, a guide roller 105 is arranged between the two supporting inclined plates 101, two ends of the guide roller 105 are respectively fixed with a stress component 106, the stress component 106 is provided with a pull piece 108 through a driving groove 107, the top cross section of the pull piece 108 is of a cylindrical structure, the pull piece 108 is continuously stressed and inserted into the driving groove 107 for internal displacement, the driving groove 107 is of an inclined structure, the stress component 106 and the guide roller 105 are continuously pulled to transversely move, the guide roller 105 continuously pulls a card inner page bag to be tensioned, looseness is avoided, welding perforation is influenced, a round hole is formed in the middle position of the bottom end of the pull piece 108 and is used for inserting a T-shaped shaft rod, and a spring outside the T-shaped shaft rod continuously pulls the pull piece 108 to downwards displace; the movable assembly 2, the movable assembly 2 is in the front end of bag making machine equipment 1, the movable assembly 2 is installed between two support inclined plates 101, both sides of the movable assembly 2 are respectively provided with a long groove, both ends of the movable assembly 2 are respectively fixed with an adjusting head 201, the inside of the hollow guide groove 102 is inserted to freely slide, card inner page bags are combed close to the guide roller 105, dislocation of the card inner page bags when passing through the guide roller 105 is avoided, a round hole is formed in the inside of each adjusting head 201, a displacement rod 204 is inserted into the round hole, the top end of the displacement rod 204 is fixed with a push rod 205, a carding assembly 206 which is uniformly arranged is installed at the bottom of the push rod 205 through threads, the carding assembly 206 is of a cylindrical structure and is in sliding contact with the side edges of the card inner page bags, abrasion is avoided, and meanwhile the carding assembly 206 freely adjusts the height to comb the card inner page bags at the bottom.
Referring to fig. 4, a hollow guide groove 102 is provided at the bottom of the inner end of each supporting inclined plate 101, an adjusting head 201 is slidably inserted into each hollow guide groove 102, the adjusting head 201 drives the moving assembly 2 to freely slide to adjust the carding position, an outer groove 103 is provided at the front end of each supporting inclined plate 101 for guiding the sliding block of the guide roller 105 in the inner part thereof, and a stopper is mounted on the outer part of each outer groove 103 by threads for blocking the guide roller 105; a control plate 104 is fixed on the outer side of each support sloping plate 101, a T-shaped shaft rod is welded and fixed at the bottom end of each control plate 104, a spring is sleeved on the outer part of each T-shaped shaft rod, the pull piece 108 is continuously pushed to move downwards, the T-shaped shaft rod is inserted into a round hole of the pull piece 108, the bottom of the spring is contacted with the inner part of the pull piece 108, a sliding groove is formed in the inner side of each control plate 104, a stress component 106 slides in a guiding manner in the inner part of the stress component, two bottom grooves are formed in the bottom end of each control plate 104, the pull piece 108 is inserted into the bottom grooves, the pull piece 108 moves in a guiding manner, two sliding blocks are respectively fixed at the two ends of each guide roller 105, the sliding blocks are slidably inserted into the outer grooves 103, and the guide rollers 105 are used in a guiding manner; the stress components 106 are fixedly connected with the sliding blocks, the stress components 106 are inserted into the sliding grooves to push the guide rollers 105 to move the clothes, a driving groove 107 is formed in each stress component 106, the driving groove 107 is of an inclined structure, a pull piece 108 is inserted into the driving groove 107 in a sliding mode, the pull piece 108 continuously moves, the stress components 106 are controlled to transversely move through the driving grooves 107, and the guide rollers 105 are pushed to adjust the height.
Referring to fig. 5, a connection member 202 is fixed at the bottom of each adjustment head 201, the connection member 202 is in a circular ring structure and is used for being embedded into the interior of a rotating assembly 203, the rotating assembly 203 is connected and rotated on the exterior thereof, the section of the connection member 202 is in an L-shaped structure, each connection member 202 is rotatably connected with a rotating assembly 203, a threaded hole is formed in the interior of each rotating assembly 203, and the adjustment height is moved by a threaded control displacement rod 204; the displacement rod 204 is inserted in the long groove, threads are arranged at the outer parts of the two ends of the displacement rod 204, the two ends of the displacement rod 204 are inserted in the threaded holes, the rotating assembly 203 controls the height of the displacement rod 204 through the threads to drive the carding assembly 206 to adjust the height, the carding assembly 206 is inserted between the card inner page pockets at the bottom, and the card inner page pockets at the bottom are carded.
Embodiment two: if the card inner page bag is not required to be combed, all the carding components 206 are controlled to be rotated and taken down, so that the use cost and equipment abrasion are reduced.
When in use, the utility model is characterized in that: when the welding perforation of the inner page bag of the card needs to be controlled, the carding component 206 is controlled to be installed according to the width of the inner page bag of the card, the inner page bag of the card passes through the side edge of the carding component 206, the inner page bag of the card bypasses the guide roller 105 to move, then the bag making machine 1 is controlled to operate, the inner page bag of the card is continuously controlled to move, welding perforation is carried out while moving, the inner page bag of the card is controlled to be rapidly molded, meanwhile, the elastic outside the T-shaped shaft continuously pushes the pull piece 108 to move downwards, the top end of the pull piece 108 moves inside the driving groove 107, and because the driving groove 107 is of an inclined structure, the stress component 106 and the guide roller 105 are controlled to continuously move, the inner page bag of the card is continuously pulled to be tensioned, the inner page bag of the card is prevented from loosening, the welding perforation effect is influenced, the rotating component 203 is informed to rotate, the rotating component 203 moves through the thread control displacement rod 204, the carding component 206 moves downwards, the carding component 206 is inserted between the inner page bags of the card at the bottom, meanwhile, the moving component 2 is close to the guide roller 105, and the inner page bag of the card is carded, and the inner page bag of the card is prevented from moving.

Claims (7)

1. A card inner page bag making machine comprising: a bag making machine device (1); the bag making machine is characterized in that a guide roller (105) is arranged between the two support sloping plates (101), two stress components (106) are respectively fixed at two ends of the guide roller (105), a pull piece (108) is arranged on the stress components (106) through a driving groove (107), the top cross section of the pull piece (108) is of a cylindrical structure, and a round hole is formed in the middle of the bottom end of the pull piece (108); still including moving subassembly (2), moving subassembly (2) are in the front end of system bag machine equipment (1), and moving subassembly (2) are installed between two support swash plates (101), moving subassembly (2) both sides are equipped with an elongated slot respectively, and moving subassembly (2) both ends are fixed with respectively and adjust first (201), and the inside of every adjusting first (201) all is equipped with a round hole, and displacement pole (204) has still been inserted to the inside of this round hole, and displacement pole (204) top is fixed with ejector pin (205), and carding assembly (206) of even range are installed through the screw thread to the bottom of ejector pin (205).
2. A card inner leaf bag machine according to claim 1, characterized in that the bottom of the inner end of each supporting sloping plate (101) is provided with a hollow guide groove (102), an adjusting head (201) is inserted into the hollow guide groove (102) in a sliding manner, the front end of each supporting sloping plate (101) is provided with an outer groove (103), and a stop block is arranged outside each outer groove (103) through threads.
3. A card inner page bag making machine according to claim 2, wherein a control board (104) is fixed on the outer side of each supporting inclined board (101), a T-shaped shaft rod is welded and fixed at the bottom end of each control board (104), a spring is sleeved on the outer side of each T-shaped shaft rod, the T-shaped shaft rod is inserted into a round hole of the pull piece (108), the bottom of the spring is in contact with the inner side of the pull piece (108), and a sliding groove is further arranged on the inner side of each control board (104).
4. A card inner page bag making machine according to claim 3, wherein the force bearing components (106) are fixedly connected with the sliding blocks, the force bearing components (106) are inserted into the sliding grooves, a driving groove (107) is arranged in each force bearing component (106), the driving grooves (107) are of inclined structures, and pull pieces (108) are inserted into the driving grooves (107) in a sliding mode.
5. A card inner page bag making machine according to claim 1, characterized in that the bottom of the adjusting head (201) is fixed with a connecting piece (202), the connecting piece (202) is of a circular ring structure, the cross section of the connecting piece (202) is of an L-shaped structure, each connecting piece (202) is rotatably connected with a rotating assembly (203), and a threaded hole is formed in each rotating assembly (203).
6. A card inner leaf bag machine according to claim 1 or 5, wherein the displacement rod (204) is inserted into the long groove, threads are provided on the outer sides of both ends of the displacement rod (204), and both ends of the displacement rod (204) are inserted into the threaded holes.
7. A card inner page bag machine according to claim 3, wherein the bottom end of the control board (104) is further provided with two bottom grooves, pull pieces (108) are inserted into the bottom grooves, two sliding blocks are respectively fixed at two ends of the guide roller (105), and the sliding blocks are slidably inserted into the outer grooves (103).
CN202322175956.2U 2023-08-14 2023-08-14 Card inner page bag making machine Active CN220615103U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322175956.2U CN220615103U (en) 2023-08-14 2023-08-14 Card inner page bag making machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322175956.2U CN220615103U (en) 2023-08-14 2023-08-14 Card inner page bag making machine

Publications (1)

Publication Number Publication Date
CN220615103U true CN220615103U (en) 2024-03-19

Family

ID=90228896

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322175956.2U Active CN220615103U (en) 2023-08-14 2023-08-14 Card inner page bag making machine

Country Status (1)

Country Link
CN (1) CN220615103U (en)

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