Automatic connection device for material conversion
By introducing fine-tuning and anti-deviation components into the sanitary napkin production line's connecting device, and using laser sensors and moving correction rollers to correct fabric skew, the problem of uneven fabric connection was solved, achieving neat fabric delivery and improved product quality.
Patent Information
- Application Number
- CN202423151805.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-20
AI Technical Summary
The existing sanitary napkin production line splicing device lacks a fabric skew correction design when conveying fabric, resulting in uneven fabric splicing and product defects.
It employs fine-tuning components and anti-deviation components, including a moving correction roller, an anti-wrinkle plate, and a laser sensor. The correction roller is driven to move by a motor slide, the laser sensor detects and corrects fabric deviation, and the anti-wrinkle plate prevents fabric deviation and wrinkles.
It effectively corrects fabric skew, ensures neat fabric delivery, avoids product defects, and improves the working efficiency of production line connection devices.
Smart Images

Figure CN223560938U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to production line connection device technical field, concretely relates to a kind of for material conversion automatic connection device. BACKGROUND
[0002] In the production line production and manufacturing process of sanitary napkin, paper diaper and other sanitary products, production line connection device is the key equipment for connecting different production lines or production section in sanitary napkin production process, and the connection and collaborative work between different production lines are realized by using mechanical transmission system, and the transmission equipment required by production line connection device generally includes motor, speed reducer, transmission shaft and other components, which jointly drive the operation of conveying roller under the command of control system, so as to transfer the raw materials or semi-finished products required by sanitary products from one production line to another production line.
[0003] In the process that sanitary napkin production line connection device connects different fabrics and delivers them to other production lines, the winding fabric is installed on the outside of the rotating roller, and the motor drives the rotating roller to rotate to facilitate fabric delivery. Different fabrics will first pass around the fixed roller, and after the fabric is flattened and guided by the fixed roller, it will pass through the docking port of the connection device in a horizontal flat state. Then, different fabrics will be attached together, and finally, after passing around another fixed roller, they will be delivered to other production lines. In the above operation, although the fabric is in a neat state after being flattened and guided by the fixed roller, the delivered fabric may be in a skewed condition during the long delivery process, resulting in different fabrics being in a non-neat state after docking, which causes product defects.
[0004] The existing sanitary napkin production line connection device does not have a fabric skew correction design when delivering different fabrics, so the present application proposes a kind of for material conversion automatic connection device. INVENTION CONTENTS
[0005] The utility model aims at providing a kind of for material conversion automatic connection device to solve the problem of no fabric skew correction design on the production line connection device proposed in the above background.
[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of for material conversion automatic connection device, comprising
[0007] The automatic connection assembly for connecting and delivering fabric A and fabric B includes a fixed wall, a connection control manipulator and a rotating roller and a fixed roller installed on the fixed wall, and a connection roller perpendicular to the fixed wall.
[0008] The fine adjustment assembly includes a support plate installed on the fixed wall, a motor sliding table fixed to the support plate by screws, a support column connected to the moving sliding block on the motor sliding table, and a moving correction roller connected to the top end of the support column.
[0009] A stable plate connected with the support plate by a screw, and a second laser sensor connected with the stable plate by a screw;
[0010] An adjusting assembly, comprising a fixed frame connected with the stable plate, a first adjusting screw and a second adjusting screw penetrating through one side surface of the fixed frame, a fixed plate installed in the fixed frame, a second sliding block sleeved on the second adjusting screw, and a first sliding block sleeved on the first adjusting screw;
[0011] A deviation preventing assembly, comprising a vertical rod and a wrinkle preventing plate connected with the top end of the vertical rod.
[0012] Preferably, the support plate and the stable plate are of an "L" shape structure, and the horizontal section of the moving deviation correcting roller is flush with the horizontal section of the fixed roller on the same side.
[0013] Preferably, the first adjusting screw and the second adjusting screw are parallel, one end of the first adjusting screw is connected with the fixed plate, the second sliding block and the first sliding block are in line with the inner surface of the fixed frame, and the second sliding block and the first sliding block are connected with the corresponding vertical rod.
[0014] Preferably, a rectangular slot for the fixed roller to slide is arranged on the fixed frame, and one end of the wrinkle preventing plate is of a curved shape.
[0015] Preferably, an adjusting piece is arranged on the top end of the vertical rod, the adjusting piece comprises a connecting plate connected with the vertical rod, a moving screw penetrating through the connecting plate, and a connecting piece connected with one end of the connecting plate.
[0016] Preferably, the connecting plate is of an "L" shape structure, the connecting piece comprises a vertical rod, a fixed ball and an inclined rod, one end of the moving screw penetrating through the connecting plate is connected with the vertical rod, the vertical rod is slidingly connected with the connecting plate, and the curved part of the wrinkle preventing plate is connected with the inclined rod.
[0017] Preferably, a support is arranged on the surface of the fixed wall, and a first laser sensor is arranged on the support.
[0018] Compared with the prior art, the present application has the following beneficial effects:
[0019] In the present application, the production line connecting device is not provided with a deviation preventing design for correcting the deviation of the fabric, the fabric A or the fabric B is in contact with the surface of the moving deviation correcting roller, when the fabric A or the fabric B deviates, the moving deviation correcting roller is driven to move by the motor sliding table, the deviation correcting process is completed, the wrinkle preventing plate makes the side of the fabric A or the fabric B to be raised, and the deviation and wrinkle of the fabric A or the fabric B to one side are avoided. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a structural schematic view of the present application;
[0021] Figure 2 The utility model discloses a motor sliding table Figure 1 The enlarged structure schematic view of D part in the utility model discloses a motor sliding table
[0022] Figure 3 The side view structure schematic view of the motor sliding table of the utility model
[0023] Figure 4 The side view structure schematic view of the fixed frame of the utility model
[0024] Figure 5 The utility model discloses a motor sliding table Figure 4 The enlarged structure schematic view of D part in the utility model discloses a motor sliding table
[0025] In the drawing: 2, motor sliding table;3, mobile rectification roller;4, firm board;5, fixed frame;7, second laser sensor;11, fixed wall surface;12, connection control control machine;13, rotating roller;14, support;15, first laser sensor;16, fixed roller;17, connection roller;21, support column;51, first adjusting screw rod;52, second adjusting screw rod;53, second sliding block;54, first sliding block;55, fixed plate;61, vertical rod;62, anti -wrinkle board;81, connecting plate;82, mobile screw rod;83, connecting piece;111, support plate. Specific implementation
[0026] The technical scheme in the utility model embodiments will be described clearly and completely below in conjunction with the drawings in the utility model embodiments. Apparently, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work belong to the range of protection of the utility model.
[0027] Please refer to Figures 1 to 5The utility model provides a technical scheme: an automatic connecting device for material conversion, including automatic connecting assembly that will fabric A and fabric B connect and convey, including fixed wall surface 11, install the connecting control operating machine 12 and the rotating roller 13 and the fixed roller 16 of fixed wall surface 11 on, the connecting roller 17 of vertical fixed wall surface 11, the rotation of rotating roller 13 is controlled by conventional motor, be provided with control program on connecting control operating machine 12, connecting control operating machine 12 realizes the drive of motor through control program, and then reach the effect of rotating of rotating roller 13, fabric A roll stock and fabric B roll stock are installed on corresponding rotating roller 13, after fabric A and fabric B bypass corresponding fixed roller 16, penetrate connecting control operating machine 12, finally fabric A and fabric B are pasted after bypassing connecting roller 17, and fabric A and fabric B that connect and paste are conveyed to other production line, fine adjustment subassembly, including the support plate 111 that installs on fixed wall surface 11, with the motor sliding table 2 of screw fixed of support plate 111, with the vertical connection of mobile sliding block of motor sliding table 2 of support column 21, with the mobile deviation rectification roller 3 of support column 21 top end connection, support plate 111 is fixed with fixed wall surface 11 through bolt, motor sliding table 2 is fixed with support plate 111 through bolt, support column 21 is fixed with motor sliding table 2 and mobile deviation rectification roller 3 through screw screwing, when fabric A and fabric B are conveyed, fabric A and fabric B bypass mobile deviation rectification roller 3, when fabric A or fabric B is inclined, motor sliding table 2 starts, control support column 21 and mobile deviation rectification roller 3 move, reach the effect of deviation rectification, with the screw connection of support plate 111 of firm board 4, the second laser sensor 7 is connected on this firm board 4 through screw, firm board 4 is fixedly connected with support plate 111 and second laser sensor 7 through screw, and second laser sensor 7 plays the role of sensing whether the fabric A and fabric B that convey are inclined, when fabric A and fabric B are inclined, to the signal transmission of connecting control operating machine 12, and then make motor sliding table 2 start, and mobile deviation rectification roller 3 moves, and completes the deviation rectification process, adjusting subassembly, including the fixed frame 5 that is connected with firm board 4, the first adjusting screw rod 51 and the second adjusting screw rod 52 of first surface of fixed frame 5 penetration, the fixed plate 55 of installation in fixed frame 5, the second sliding block 53 of sleeve set on the second adjusting screw rod 52, the first sliding block 54 of sleeve set on the first adjusting screw rod 51, fixed frame 5 is fixedly connected with firm board 4 through screw, the position of second sliding block 53 can be changed, and then the position of corresponding vertical rod 61 is changed, the position of first sliding block 54 can be changed, and then the position of corresponding vertical rod 61 is changed, can make corresponding vertical rod 61 and anti -wrinkle board 62 move along a direction, change the interval between opposite anti -wrinkle board 62, reach the purpose of the fabric A or fabric B of different width, the side of fabric A or fabric B is contacted with anti -wrinkle board 62, makes the side of fabric A or fabric B rise, avoids fabric A or fabric B to one side and is inclined,
[0028] The anti-deviation assembly comprises a vertical rod 61 and an anti-wrinkle plate 62 connected to the top end of the vertical rod 61, and the anti-wrinkle plate 61 serves to prevent the fabrics A and B from being deviated to one side.
[0029] In the embodiment, the support plate 111 and the stabilizing plate 4 are in an L-shaped structure, the moving deviation correction roller 3 is flush with the horizontal section of the same side fixed roller 16, the same side fixed roller 16 is the b fixed roller 16, and the fabrics A and B passing through the b fixed roller 16 pass through the moving deviation correction roller 3.
[0030] In the embodiment, the first adjusting screw 51 and the second adjusting screw 52 are parallel, one end of the first adjusting screw 51 is connected to the fixed plate 55, the second sliding block 53 and the first sliding block 54 are in line with the inner surface of the fixed frame 5, the second sliding block 53 and the first sliding block 54 are connected to the corresponding vertical rod 61, the fixed frame 5 is provided with a rectangular groove for the fixed roller 16 to slide, one end of the anti-wrinkle plate 62 is in a curved shape, the second adjusting screw 52 is rotatable to change the position of the second sliding block 53, thereby changing the position of the corresponding vertical rod 61, the first adjusting screw 51 is rotatable to change the position of the first sliding block 54, thereby changing the position of the corresponding vertical rod 61, and the corresponding vertical rod 61 and the anti-wrinkle plate 62 can be moved in the a direction.
[0031] In the embodiment, the top end of the vertical rod 61 is provided with an adjusting part, the adjusting part comprises a connecting plate 81 connected to the vertical rod 61, a moving screw 82 penetrating through the connecting plate 81, and a connecting piece 83 connected to one end of the connecting plate 81, the connecting plate 81 is in an L-shaped structure, the connecting piece 83 comprises a vertical rod, a fixed ball and an inclined rod, one end of the moving screw 82 penetrating through the connecting plate 81 is connected to the vertical rod, the vertical rod is slidingly connected to the connecting plate 81, the curved part of the anti-wrinkle plate 62 is connected to the inclined rod, the connecting plate 81 is fixed to the vertical rod 61 by a screw, the moving screw 82 is movable to change the position of the connecting piece 83, the connecting piece 83 is fixedly connected to the anti-wrinkle plate 62 by a screw, and the connecting piece 83 is movable to act on the anti-wrinkle plate 62, so that the curved anti-wrinkle plate 62 is in a deformed state, the degree of bending of the anti-wrinkle plate 62 can be changed, and the degree of lifting of the fabrics A and B on the side can be changed.
[0032] In the embodiment, the surface of the fixed wall surface 11 is provided with a support 14, the support 14 is provided with a first laser sensor 15, and the first laser sensor 15 senses the corresponding fabrics A and B.
[0033] The working principle and use process of the utility model are as follows:
[0034] When the fabric A and the fabric B are connected and conveyed to other production lines, the control program is arranged on the connection control manipulator 12, the connection control manipulator 12 drives the motor through the control program, and the rotating effect of the rotating roller 13 is achieved, the fabric A roll and the fabric B roll are installed on the corresponding rotating roller 13, the fabric A and the fabric B pass through the connection control manipulator 12 after passing through the corresponding fixed roller 16, and finally the fabric A and the fabric B are connected and pass through the connection roller 17, and the connected fabric A and the fabric B are conveyed to other production lines;
[0035] The rotating roller 13 rotates, and when the fabric A and the fabric B are conveyed, the fabric A and the fabric B pass through the space between the opposite anti-wrinkle plates 62 and pass through the moving deviation correcting roller 3;
[0036] The second laser sensor 7 senses the fabric A and the fabric B, and when the fabric A and the fabric B are deviated;
[0037] When the fabric A and the fabric B are deviated, the second laser sensor 7 transmits a signal to the connection control manipulator 12, the connection control manipulator 12 controls the motor sliding table 2 through the control program, the motor sliding table 2 is started, the moving deviation correcting roller 3 is moved, and the deviation correction process is completed;
[0038] The side of the fabric A or the fabric B is in contact with the anti-wrinkle plate 62, so that the side of the fabric A or the fabric B is raised, and the fabric A or the fabric B is prevented from being deviated to one side;
[0039] The second adjusting screw 52 rotates, the position of the second sliding block 53 is changed, the position of the corresponding vertical rod 61 is changed, the first adjusting screw 51 rotates, the position of the first sliding block 54 is changed, the position of the corresponding vertical rod 61 is changed, the corresponding vertical rod 61 and the anti-wrinkle plate 62 can be moved along the a direction, the distance between the opposite anti-wrinkle plates 62 is changed, and the fabric A or the fabric B with different widths is achieved;
[0040] In summary, the production line connection device does not have a deviation prevention design for fabric deviation correction, the fabric A or the fabric B is in contact with the surface of the moving deviation correcting roller 3, when the fabric A or the fabric B is deviated, the moving deviation correcting roller 3 is driven to move through the motor sliding table 2, the deviation correction process is completed, the anti-wrinkle plate 62 makes the side of the fabric A or the fabric B raised, and the fabric A or the fabric B is prevented from being deviated to one side and wrinkled.
[0041] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A material conversion automated docking apparatus, comprising: The utility model relates to an automatic splicing assembly for fabric A and fabric B splicing conveying, including fixed wall (11), the splicing control manipulator (12) and the rotating roller (13) and the fixed roller (16) of installation on fixed wall (11), the splicing roller (17) of vertical fixed wall (11); Fine adjustment assembly, including support plate (111) installed on fixed wall (11), motor slide (2) fixed with support plate (111) through screw, vertical connection of mobile slider on motor slide (2) with support column (21), mobile deviation correction roller (3) connected with the top of support column (21); Stable plate (4) connected with support plate (111) through screw, second laser sensor (7) is connected on stable plate (4) through screw; Adjustment assembly, including fixed frame (5) connected with stable plate (4), first adjusting screw (51) and second adjusting screw (52) penetrating through one side surface of fixed frame (5), fixed plate (55) installed in fixed frame (5), second slider (53) sleeved on second adjusting screw (52), first slider (54) sleeved on first adjusting screw (51); Anti-deviation assembly, including vertical rod (61), anti-wrinkle plate (62) connected with the top of vertical rod (61). The support plate (111) and stable plate (4) are "L" type structures, and the mobile deviation correction roller (3) is flush with the horizontal section of the fixed roller (16) on the same side.
2. An automatic transfer docking device for material conversion as claimed in claim 1, wherein: The first adjusting screw (51) and the second adjusting screw (52) are parallel, one end of the first adjusting screw (51) is connected with the fixed plate (55), the second slider (53) and the first slider (54) are consistent with the inner surface of the fixed frame (5), and the second slider (53) and the first slider (54) are connected with the corresponding vertical rod (61).
3. An automatic transfer docking device for material conversion as defined in claim 1, wherein: The fixed frame (5) is provided with a rectangular groove for the sliding of the fixed roller (16), and one end of the anti-wrinkle plate (62) is in a curved shape.
4. An automatic transfer docking device for material conversion as defined in claim 1, wherein: The top end of the vertical rod (61) is provided with an adjusting member, which comprises a connecting plate (81) connected with the vertical rod (61), a moving screw (82) penetrating through the connecting plate (81), and a connecting piece (83) connected with one end of the connecting plate (81).
5. An automatic transfer docking device for material conversion as defined in claim 1, wherein: The connecting plate (81) is "L" type structure, the connecting piece (83) includes a vertical rod, a fixed ball and an inclined rod, one end of the moving screw (82) penetrating through the connecting plate (81) is connected with the vertical rod, the vertical rod is slidingly connected with the connecting plate (81), and the curved part of the anti-wrinkle plate (62) is connected with the inclined rod.
6. An automatic transfer docking device for material conversion as defined in claim 5, wherein: The surface of the fixed wall (11) is provided with a bracket (14), and the bracket (14) is provided with a first laser sensor (15).
7. An automatic transfer docking device for material conversion as defined in claim 1, wherein: