Braid boxing device
By combining the stacking chamber, presser, and feeding assembly of the webbing packing device, the problem of loose stacking of webbing in the material frame is solved, and tight stacking and efficient space utilization of webbing are achieved.
Patent Information
- Application Number
- CN202511412892.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2025-11-18
AI Technical Summary
In the existing technology, the stacking method of the webbing in the material frame results in low space utilization. In the existing technology, the webbing is loosely stacked in the material frame after the transfer roller, resulting in low space utilization.
A webbing packing device is used, including a stacking chamber, a presser, and a feeding assembly. The orderly stacking and compaction of webbing is achieved by moving the support plate and pressing the pressing head of the presser, combined with the pushing of the lever.
This achieves tight stacking of webbing and efficient use of space, as well as orderly stacking of webbing and efficient use of space, thus improving space utilization.
Smart Images

Figure CN120964137A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of ribbon packing, in particular to a ribbon packing device. BACKGROUND
[0002] Ribbon is a kind of fabric with a narrow width or a tubular shape made of various yarns. After completing the corresponding processes in the weaving production line, printing production line, etc., the ribbon is usually collected in a frame by a conveying roller for transportation, storage or packaging. The traditional ribbon collection method uses a discharging mechanism of a ribbon dyeing machine disclosed in the patent No. CN217973691U, which uses a swing type hopper to stack the ribbon in order. However, this method can only stack the ribbon in a local area of the frame, and the remaining space can only be utilized by manually adjusting it periodically. In addition, the ribbon is soft in material, so even if it is discharged in a swing manner, the stacking of the ribbon in the frame is still loose, resulting in a low utilization rate of the space in the frame. SUMMARY
[0003] The technical problem to be solved by the present application is to provide a ribbon packing device capable of stacking the ribbon in order.
[0004] To solve the above technical problem, the present application adopts a technical solution of a ribbon packing device, which comprises a stacking chamber, a pressing device, a discharging assembly and a push rod.
[0005] The pressing device is provided above both ends in the length direction or both ends in the width direction of the opening, and the pressing device has a pressing head moving towards the support plate.
[0006] The discharging assembly comprises a discharging hopper arranged above the opening, and the discharging hopper can move in the length direction and the width direction of the stacking chamber.
[0007] The push rod is rotatably arranged at the side end of the pressing device, and the push head of the push rod passes below the discharging hopper and below the pressing head.
[0008] The present application has the following advantages: a stacking chamber with a liftable support plate is used to replace the traditional frame, and a discharging assembly, a pressing device and a push rod are arranged above the stacking chamber. The discharging assembly moves in the length direction and the width direction of the stacking chamber to evenly lay the ribbon on the support surface of the support plate, and then the push rod pushes the ribbon into the pressing device below to locally compact it, so as to prevent the laid ribbon from being taken away by the movement of the discharging hopper, thereby ensuring the tightness and neatness of the stacked ribbon. At the same time, the support plate automatically descends with the increase of the number of stacked layers to create space for continuous stacking, ensuring that the pressing device can effectively compact the ribbon. BRIEF DESCRIPTION OF DRAWINGS
[0009] Figure 1Structure diagram of a weaving tape boxing device according to the present application Figure 1 ;
[0010] Figure 2 Structure diagram of a weaving tape boxing device according to the present application Figure 2 ;
[0011] Figure 3 For Figure 2 Enlarged view of A part of a weaving tape boxing device
[0012] Figure 4 Structure diagram of a weaving tape boxing device according to the present application Figure 3 ;
[0013] Figure 5 Structure diagram of a stacking chamber of a weaving tape boxing device according to the present application in an open state
[0014] Figure 6 Structure diagram of a side plate and support connection of a weaving tape boxing device according to the present application
[0015] Figure 7 For Figure 6 Enlarged view of B part of a weaving tape boxing device
[0016] Label explanation:
[0017] 1, stacking chamber; 11, support plate; 111, connecting block; 12, opening; 13, side plate; 131, guide rod; 14, support; 141, guide pipe; 15, door body; 16, avoiding hole;
[0018] 2, presser; 21, press head;
[0019] 3, blanking assembly; 31, blanking hopper; 32, second reciprocator; 33, third reciprocator;
[0020] 4, push rod; 41, limiting sheet;
[0021] 5, mounting frame; 51, first reciprocator;
[0022] 6, rotator;
[0023] 7, fourth reciprocator; 71, motor; 72, screw rod;
[0024] 8, transmission assembly; 81, L-shaped connecting block; 82, driving frame; 83, transmission sheet;
[0025] 9, tray; 10, handle. DETAILED DESCRIPTION
[0026] To explain the technical contents, purposes and effects of the present application in detail, the following will be described in conjunction with the embodiments and the accompanying drawings.
[0027] Please refer to Figures 1 to 3 , Figure 5 The present application is a weaving tape boxing device, which comprises a stacking chamber 1, a presser 2, a discharging assembly 3 and a push rod 4. The stacking chamber 1 has a support plate 11 moving along the height direction of itself, and the top of the stacking chamber 1 is an opening 12. The presser 2 is arranged above the two ends of the length direction or the two ends of the width direction of the opening 12, and the presser 2 has a pressing head 21 moving towards the support plate 11. The discharging assembly 3 comprises a discharging hopper 31 arranged above the opening 12, and the discharging hopper 31 can move along the length direction and the width direction of the stacking chamber 1. The side end of the presser 2 is rotatably provided with the push rod 4, and the push head of the push rod 4 passes below the discharging hopper 31 and below the pressing head 21.
[0028] Working principle: when the presser 2 is arranged at the two ends of the length direction of the opening 12, the discharging assembly 3 drives the discharging hopper 31 to move from the presser 2 at one end of the opening 12 towards the presser 2 at the other end, and in the process of moving the discharging hopper 31 from the presser 2 at one end of the opening 12 to the presser 2 at the other end, the discharging hopper 31 is synchronously gradually moved along the width direction of the stacking chamber 1 by a distance at least equal to the width of the received weaving tape. When the discharging hopper 31 is moved along the width direction of the stacking chamber 1 from one end to the other end, the first layer of weaving tape on the support plate 11 is completed, and then the discharging hopper 31 is reciprocally moved along the width direction of the stacking chamber 1 layer by layer to lay the weaving tape in the same manner.
[0029] When the presser 2 is arranged at the two ends of the width direction of the opening 12, the discharging assembly 3 drives the discharging hopper 31 to move from the presser 2 at one end of the opening 12 towards the presser 2 at the other end, and in the process of moving the discharging hopper 31 from the presser 2 at one end of the opening 12 to the presser 2 at the other end, the discharging hopper 31 is synchronously gradually moved along the length direction of the stacking chamber 1 by a distance at least equal to the width of the received weaving tape. When the discharging hopper 31 is moved along the length direction of the stacking chamber 1 from one end to the other end, the first layer of weaving tape on the support plate 11 is completed, and then the discharging hopper 31 is reciprocally moved along the length direction of the stacking chamber 1 layer by layer to lay the weaving tape in the same manner.
[0030] As the feed hopper 31 moves the webbing from one presser 2 to another, the presser 2 that is gradually moved away from the feed hopper 31 drives the pressing head 21 to press the webbing onto the support plate 11, preventing the laid webbing from being carried away by the movement of the feed hopper 31. As the feed hopper 31 moves closer to the presser 2, the pressing head 21 moves away from the support plate 11, so that after the webbing is laid near it, the lever 4 can push the webbing under the presser 2. After the lever 4 returns to its original position, the presser 2 drives the pressing head 21 to press the webbing onto the support plate 11. Then the feed hopper 31 turns around to continue laying webbing closer to the previously moved-away presser 2, and this cycle continues.
[0031] Meanwhile, as the number of webbing stacking layers increases, the support plate 11 will automatically descend along the height direction of the stacking chamber 1, making room for continuous webbing stacking and ensuring that the presser 2 can effectively compact the webbing.
[0032] In some implementations, please refer to Figure 3 As shown, a webbing packing device further includes a mounting frame 5 and a rotator 6. The mounting frame 5 is provided with a first reciprocating device 51, which has a movable end that moves toward the presser 2. The rotator 6 is connected to the movable end of the first reciprocating device 51, and the lever 4 is connected to the rotator 6. During the process of pushing the webbing under the presser 2, the lever 4 is driven by the first reciprocating device 51 to approach the presser 2, and then the rotator 6 drives the lever 4 to rotate, thereby pushing the webbing under the rotator 6.
[0033] It is worth noting that the rotator 6 can be a motor directly driving the lever 4 to rotate via a shaft; the rotator 6 can also be a device with a reciprocating moving end, such as a cylinder, hydraulic cylinder, or electric cylinder. Figure 3 As shown, the movable end of the rotator 6 is hinged to the rotating shaft. The rotator 6 drives the movable end to extend and retract, thereby controlling the rotating shaft to drive the lever 4 to rotate.
[0034] In some implementations, please refer to Figure 1 As shown, a limiting piece 41 is provided at the head of the lever 4, and the limiting piece 41 is parallel to the surface of the support plate 11. The width of the limiting piece 41 is 3cm to 8cm. During the process of pushing the webbing under the presser 2, the limiting piece 41 prevents the webbing from wrapping around the head of the lever 4, thereby preventing the webbing from being pulled out from under the presser 2 when the lever 4 is reset.
[0035] In some implementations, please refer to Figure 3As shown, the feeding assembly 3 further includes a second reciprocating device 32 and a third reciprocating device 33. The second reciprocating device 32 is used to drive the feeding hopper 31 to move along the length direction of the stacking chamber 1, and the third reciprocating device 33 is used to drive the feeding hopper to move along the width direction of the stacking chamber 1. Through the cooperation of the second reciprocating device 32 and the third reciprocating device 33, the feeding hopper 31 can be stacked in an orderly manner on the support plate 11.
[0036] It is worth noting that the second reciprocator 32 and the third reciprocator 33 can be ball screw mechanisms driven by servo motors, or devices with reciprocating moving ends such as cylinders, hydraulic cylinders, and electric cylinders.
[0037] In some implementations, please refer to Figure 4 As shown, a webbing packing device also includes a fourth reciprocating device 7. The side wall of the stacking chamber 1 is provided with a clearance hole 16, and the support plate 11 is provided with a connecting block 111 that passes through the clearance hole 16 and connects to the movable end of the fourth reciprocating device 7. The clearance hole 16 on the side wall of the stacking chamber 1, and the connection between the support plate 11 and the external fourth reciprocating device 7 via the clearance hole 16, not only enables the support plate 11 to move within the stacking chamber 1, but also avoids the need for equipment to drive the support plate 11 within the stacking chamber 1, thereby ensuring the webbing storage capacity of the stacking chamber 1.
[0038] For details, please refer to Figure 4 As shown, the fourth reciprocating device 7 includes a motor 71 and a lead screw 72. The output shaft of the motor 71 is connected to the lead screw 72 for transmission, and the connecting block 111 is threadedly connected to the lead screw 72. The motor 71 drives the lead screw 72 to rotate, so that the connecting block 111 can move on the lead screw 72, thereby realizing the movement of the support plate 11 within the stacking chamber 1.
[0039] In some implementations, please refer to Figure 4 As shown, the stacking chamber 1 includes side plates 13 disposed opposite each other on both sides of the support plate 11 in the length or width direction. The side plates 13 are movable along the length or width direction of the support plate 11. After the webbing is stacked in the stacking chamber 1, the side plates 13 are moved outward so that the stacked webbing in the stacking chamber 1 does not come into contact with the side plates 13. This ensures that when the stacked webbing is removed from the door 15 of the stacking chamber 1 by a forklift, the stack of webbing will not rub against the side plates 13 and tip over.
[0040] It is worth noting that, please refer to Figure 5As shown, before stacking the webbing in the stacking chamber 1, a pallet 9 should be placed on the support plate 11 so that the webbing can be stacked on the pallet 9. This allows the pallet 9 to be lifted by a forklift and removed from the stacking chamber 1 after stacking. Before removing the webbing stack by the forklift, it should be secured with binding ropes. The binding ropes need to be laid on the pallet 9 before the webbing is stacked.
[0041] In some implementations, please refer to Figure 6 and Figure 7 As shown, a webbing packing device further includes a transmission assembly 8, which includes an L-shaped connecting block 81, a drive frame 82, and a transmission plate 83. The stacking chamber 1 also includes a support 14. The L-shaped connecting block 81 is rotatably mounted on the support 14. The drive frame 82 is hinged to one end of the L-shaped connecting block 81, and one end of the transmission plate 83 is hinged to the end of the L-shaped connecting block 81 away from the drive frame 82. The end of the transmission plate 83 away from the L-shaped connecting block 81 is hinged to a side plate 13. By operating the drive frame 82 to rise and fall, the L-shaped connecting block 81 rotates on the support 14, thereby driving the transmission plate 83 to swing, and thus driving the side plate 13 to move.
[0042] It is worth noting that, please refer to Figure 6 As shown, the movement of the drive frame 82 can be achieved by connecting a handle 10 to a rotating shaft, and the handle 10 can drive the rotating shaft to rotate, which is hinged to the drive frame 82.
[0043] Of course, it can also be equipped with devices such as cylinders, oil cylinders, electric cylinders, etc., which have reciprocating moving ends, and the moving ends of these devices are hinged to the drive frame 82.
[0044] In some implementations, please refer to Figure 6 As shown, the side plate 13 is provided with a guide rod 131, the axis of which is parallel to the direction of movement of the side plate 13. The bracket 14 is provided with a conduit 141 sleeved on the guide rod 131. The movement direction of the side plate 13 is ensured by the cooperation between the conduit 141 and the guide rod 131.
[0045] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent modifications made based on the content of the present invention specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of the present invention.
Claims
1. A webbing packing device, characterized in that: It includes a stacking chamber (1), a presser (2), a feeding assembly (3), and a lever (4); the stacking chamber (1) has a support plate (11) that moves along its own height direction, and the top of the stacking chamber (1) is an opening (12); Pressers (2) are provided above both ends of the opening (12) in the length direction or both ends in the width direction. The pressers (2) have pressing heads (21) that move toward the support plate (11). The feeding assembly (3) includes a feeding hopper (31) disposed above the opening (12), and the feeding hopper (31) is movable along the length and width directions of the stacking chamber (1); The side end of the presser (2) is rotatably provided with a lever (4), the head of the lever (4) passing below the hopper (31) and below the press head (21).
2. The webbing packing device according to claim 1, characterized in that: It also includes a mounting bracket (5) and a rotator (6), the mounting bracket (5) having a first reciprocator (51) having a movable end that moves toward the presser (2), the rotator (6) being connected to the movable end of the first reciprocator (51), and the lever (4) being connected to the rotator (6).
3. The webbing packing device according to claim 1, characterized in that: The lever (4) has a limiting piece (41) at its head, and the limiting piece (41) is parallel to the surface of the support plate (11).
4. The webbing packing device according to claim 3, characterized in that: The width of the limiting piece (41) is 3cm to 8cm.
5. The webbing packing device according to claim 1, characterized in that: The feeding assembly (3) further includes a second reciprocator (32) and a third reciprocator (33). The second reciprocator (32) is used to drive the feeding hopper (31) to move along the length direction of the stacking chamber (1), and the third reciprocator (33) is used to drive the feeding hopper to move along the width direction of the stacking chamber (1).
6. The webbing packing device according to claim 1, characterized in that: It also includes a fourth reciprocator (7), and the side wall of the stacking chamber (1) is provided with a clearance hole (16), and the support plate (11) is provided with a connecting block (111) that passes through the clearance hole (16) and connects to the movable end of the fourth reciprocator (7).
7. The webbing packing device according to claim 6, characterized in that: The fourth reciprocating device (7) includes a motor (71) and a lead screw (72). The output shaft of the motor (71) is connected to the lead screw (72) for transmission, and the connecting block (111) is threadedly connected to the lead screw (72).
8. The webbing packing device according to claim 1, characterized in that: The stacking chamber (1) includes side plates (13) disposed on both sides of the support plate (11) in the length or width direction, and the side plates (13) are movable along the length or width direction of the support plate (11).
9. The webbing packing device according to claim 8, characterized in that: It also includes a transmission assembly (8), which includes an L-shaped connecting block (81), a drive frame (82), and a transmission plate (83); the stacking chamber (1) also includes a support (14), the L-shaped connecting block (81) is rotatably mounted on the support (14), the drive frame (82) is hinged to one end of the L-shaped connecting block (81), one end of the transmission plate (83) is hinged to the end of the L-shaped connecting block (81) away from the drive frame (82), and the end of the transmission plate (83) away from the L-shaped connecting block (81) is hinged to the side plate (13).
10. The webbing packing device according to claim 9, characterized in that: The side plate (13) is provided with a guide rod (131), the axis of the guide rod (131) is parallel to the moving direction of the side plate (13), and the bracket (14) is provided with a conduit (141) sleeved on the guide rod (131).
Citation Information
Patent Citations
Discharging mechanism of braid dyeing machine
CN217973691U