Rope belt blanking device
The rope lace dispensing device addresses the need for continuous human oversight by accumulating and sensing multiple batches for timely collection, enhancing production efficiency and reducing labor requirements.
Patent Information
- Application Number
- CN202422321111.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-23
AI Technical Summary
The rope and belt unloading device of existing rope and belt automatic production equipment requires manual real-time intervention and cannot achieve unattended automated production.
A rope and belt discharge device including a feeding rack, a feeding conveyor belt, a feeding conveyor power mechanism and a guide block is designed. It combines an infrared sensor module to realize automatic detection and pushing of the push plate, and cache multiple stacks of rope and belts before taking them away to reduce manual intervention.
Automatic cache and removal of rope and belt strips is realized, reducing the need for manual supervision and allowing one operator to manage multiple equipment at the same time.
Smart Images

Figure CN223102298U_ABST
Abstract
Description
Technical Field:
[0001] The utility model relates to the technical field of cord and belt blanking, in particular to a cord and belt blanking device. Background Art:
[0002] Cords and belts are used in many places in life, and their functions are very extensive, such as for shoelaces, sports pants belts, hat cord belts, etc.; in order to reduce the workload of operators and improve the production efficiency of cords and belts, cord and belt automatic production equipment has emerged on the market. For example, the Chinese utility model patent with the application number CN202121319920.1 discloses a cord and belt automatic production equipment, including a cord and belt main body feeding device, a cord buckle feeding device, a cord buckle assembling device, and a cord and belt blanking device. Among them, although the cord and belt blanking device can be used to achieve batch counting blanking, when each stack of cords and belts is blanked, the operator needs to immediately take away the blanked cords and belts so that the subsequent equipment can continue to produce cords and belts and blank them. The operator needs to stay beside the cord and belt production equipment all the time, which has certain limitations. Summary of the Utility Model:
[0003] The purpose of the utility model is to provide a cord and belt blanking device aiming at the deficiencies of the existing technology, which can cache the blanked cords and belts in multiple stacks and then take them away, and has more buffer time to take away the cords and belts. It is not necessary for the operator to stay beside a cord and belt production equipment all the time, and one operator can manage multiple cord and belt automatic production equipment at the same time.
[0004] To achieve the above purpose, the technical solution adopted by the utility model is: a cord and belt blanking device, including a blanking frame, a blanking conveyor belt arranged on the blanking frame, a blanking conveyor power mechanism for driving the blanking conveyor belt to operate, and a plurality of blanking push plates arranged at equal intervals on the blanking conveyor belt. A blanking guiding block is arranged at one end of the blanking frame. The blanking guiding block includes a blanking guiding support part arranged on the blanking frame and a blanking guiding part inclined at the top of the blanking guiding support part. The blanking guiding support part is formed with a guiding push plate through hole for the blanking push plate to pass through.
[0005] Further improvement of the above solution is that a material taking sensor module is arranged at the end of the blanking frame far away from the blanking guiding block.
[0006] Further improvement of the above solution is that the material taking sensor module is an infrared sensor module.
[0007] Further improvement of the above solution is that a cord and belt intercepting block is arranged on the blanking frame. The cord and belt intercepting block is located beside the material taking sensor module, and the cord and belt intercepting block is formed with an intercepting push plate through hole for the blanking push plate to pass through.
[0008] A further improvement to the above solution is that a push plate detection sensor module is provided on the blanking rack.
[0009] A further improvement to the above solution is that the push plate detection sensor module is an infrared sensor module.
[0010] A further improvement to the above solution is that an integral structure is formed between the blanking guiding support portion and the blanking guiding portion of the blanking guiding block.
[0011] A further improvement to the above solution is that the blanking guiding portion is a triangular structure with a narrow top and a wide bottom.
[0012] The beneficial effect of the present utility model lies in that: A cord blanking device provided by the present utility model includes a blanking rack, a blanking conveyor belt arranged on the blanking rack, a blanking conveyor power mechanism for driving the blanking conveyor belt to operate, and a plurality of blanking push plates arranged at equal intervals on the blanking conveyor belt. One end of the blanking rack is provided with a blanking guiding block, which includes a blanking guiding support portion arranged on the blanking rack and a blanking guiding portion obliquely arranged on the top of the blanking guiding support portion. The blanking guiding support portion is formed with a guiding push plate through hole for the blanking push plate to pass through.
[0013] When blanking the cord through the present utility model, the cord after processing is placed on the blanking guiding portion of the blanking guiding block of the present utility model. The cord placed on the blanking guiding portion will slide to the position of the blanking conveyor belt close to the blanking guiding block. When a certain number of cords have fallen in accumulation, that is, when the blanking of a stack of cords with the required quantity is completed, the blanking conveyor power mechanism drives the blanking conveyor belt to move and pushes the stack of cords away from the blanking guiding block through the blanking push plate, and continues the blanking of the next stack of cords. Compared with the existing cord blanking device for cord automatic production equipment, the present utility model can cache the blanking of multiple stacks of cords and then take away the cords, and has more buffer time to take away the cords, without the need for an operator to always stay beside a cord production equipment, and can realize the supervision of multiple cord automatic production equipment by one operator. Description of the Drawings:
[0014] Figure 1 It is a schematic structural diagram of the present utility model.
[0015] Figure 2 It is a schematic structural diagram of a cord automatic production equipment.
[0016] Description of the reference numerals: Blanking rack 1, Blanking conveyor belt 2, Blanking conveyor power mechanism 3, Blanking push plate 4, Blanking guiding block 5, Blanking guiding support portion 51, Blanking guiding portion 52, Guiding push plate through hole 53, Material taking sensor module 6, Cord intercepting block 7, Intercepting push plate through hole 71, Push plate detection sensor module 8, Cord supporting roller 9. Detailed implementation mode:
[0017] The present utility model will be further described below in conjunction with the accompanying drawings. As Figure 1 shown, the present utility model includes a blanking rack 1, a blanking conveyor belt 2 arranged on the blanking rack 1, a blanking conveyor power mechanism 3 for driving the blanking conveyor belt 2 to operate, and a plurality of blanking push plates 4 arranged on the blanking conveyor belt 2 at equal intervals. A blanking guiding block 5 is arranged at one end of the blanking rack 1. The blanking guiding block 5 includes a blanking guiding support part 51 arranged on the blanking rack 1 and a blanking guiding part 52 inclinedly arranged on the top of the blanking guiding support part 51. The blanking guiding support part 51 is formed with a guiding push plate through hole 53 for the blanking push plate 4 to pass through. When blanking the cord by means of the present utility model, the cord after processing is placed on the blanking guiding part 52 of the blanking guiding block 5 of the present utility model. The cord placed on the blanking guiding part 52 will slide to a position on the blanking conveyor belt 2 close to the blanking guiding block 5. When a certain number of cords have been accumulated and dropped, that is, when the blanking of a stack of cords with the required quantity is completed, the blanking conveyor power mechanism 3 drives the blanking conveyor belt 2 to move and pushes the stack of cords away from the blanking guiding block 5 through the blanking push plate 4, and continues the blanking of the next stack of cords. Compared with the existing cord blanking device for cord automatic production equipment, the present utility model can cache the blanking of multiple stacks of cords and then take away the cords, and has more buffer time to take away the cords, without the need for an operator to always stay beside a cord production equipment, and can realize the supervision of multiple cord automatic production equipment by one operator.
[0018] A material taking sensor module 6 is arranged at one end of the blanking rack 1 away from the blanking guiding block 5. The material taking sensor module 6 is used to monitor in real time whether the cords are fully loaded, that is, when a certain number of stacks of cords are accumulated, the material taking sensor module 6 will detect the cords, and by combining with an audible and visual alarm to remind the operator to take away the cords, so as to ensure the normal production and blanking of the cords in the subsequent process. The material taking sensor module 6 in this embodiment is an infrared sensor module. When the cords on the blanking conveyor belt 2 move to a position near the material taking sensor module 6, the material taking sensor module 6 detects the cords, which means that the cords are currently in a fully loaded state and need to be taken away from the blanking conveyor belt 2 in time.
[0019] A cord intercepting block 7 is arranged on the blanking rack 1. The cord intercepting block 7 is located beside the material taking sensor module 6. The cord intercepting block 7 is formed with an intercepting push plate through hole 71 for the blanking push plate 4 to pass through. The cord intercepting block 7 can prevent the cords from moving excessively due to not being taken away in time.
[0020] The blanking rack 1 is provided with a push plate detection sensor module 8. In this embodiment, the push plate detection sensor module 8 is an infrared sensor module. By using the push plate detection sensor module 8 to detect the blanking push plate 4 in real time, the fixed-distance transmission of the blanking conveyor belt 2 can be realized more accurately, that is, the distance between two adjacent blanking push plates 4 is moved each time.
[0021] The blanking guiding support part 51 and the blanking guiding part 52 of the blanking guiding block 5 are of an integral structure. Not only are the overall number of components less, but the structure is also more stable.
[0022] The blanking guiding part 52 is a triangular structure with a narrow top and a wide bottom, which can prevent scratching the rope belt and make the rope belt slide down more smoothly, so as to better realize the blanking of the rope belt.
[0023] As Figure 2 shown, a rope belt automatic production device includes the present utility model, a rope belt supporting roller 9, and a blowing device. After the processed rope belt is located on the rope belt supporting roller 9, the processed rope belt located on the rope belt supporting roller 9 is blown onto the blanking guiding part 52 of the blanking guiding block 5 of the present utility model by the blowing device. The blowing device is not shown in the figure. The blowing device is a known prior art. As long as the blowing port of the blowing device is aligned with the rope belt located on the rope belt supporting roller 9, the rope belt located on the rope belt supporting roller 9 can be blown off. The rope belt slides obliquely downward along the blanking guiding part 52 onto the blanking conveyor belt 2. If the top of the blanking guiding part 52 is too wide, it will block the rope belt from sliding from the position of the rope belt supporting roller 9 onto the blanking guiding part 52. Therefore, the width of the top of the rope belt guiding part is preferably smaller than the width of the rope belt supporting roller 9, so as to better realize the blanking of the rope belt.
[0024] Working principle:
[0025] The processed rope belt is placed on the blanking guiding part 52 of the blanking guiding block 5 of the present utility model. The rope belt placed on the blanking guiding part 52 will slide to the position of the blanking conveyor belt 2 close to the blanking guiding block 5. When a certain number of rope belts have fallen cumulatively, that is, when the blanking of a stack of rope belts with the required quantity is completed, the blanking transmission power mechanism 3 drives the blanking conveyor belt 2 to move and pushes the stack of rope belts away from the blanking guiding block 5 by the blanking push plate 4, and continues the blanking of the next stack of rope belts; compared with the existing rope belt blanking device for rope belt automatic production equipment, the present utility model can cache the blanking of multiple stacks of rope belts and then take away the rope belts, and has more buffer time to take away the rope belts, without the need for an operator to stay beside a rope belt production equipment all the time, and can realize the supervision of multiple rope belt automatic production equipment by one operator.
[0026] Certainly, the above description is only the preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made according to the structure, features and principles described in the scope of the patent application of the present utility model are included in the scope of the patent application of the present utility model.
Claims
1. A cord cutting device, characterized in that: It includes a blanking rack (1), a blanking conveyor belt (2) arranged on the blanking rack (1), a blanking conveyor power mechanism (3) for driving the blanking conveyor belt (2) to operate, and a plurality of blanking push plates (4) arranged at equal intervals on the blanking conveyor belt (2). A blanking guiding block (5) is provided at one end of the blanking rack (1). The blanking guiding block (5) includes a blanking guiding support portion (51) arranged on the blanking rack (1) and a blanking guiding portion (52) obliquely arranged on the top of the blanking guiding support portion (51). The blanking guiding support portion (51) is formed with a guiding push plate through hole (53) for the blanking push plate (4) to pass through.
2. The rope belt blanking device according to claim 1, characterized in that: A material taking sensor module (6) is provided at one end of the blanking rack (1) away from the blanking guiding block (5).
3. The rope and belt blanking device according to claim 2, characterized in that: The material taking sensor module (6) is an infrared sensor module.
4. A cord cutting device according to claim 2, characterized in that: A rope belt intercepting block (7) is provided on the blanking rack (1). The rope belt intercepting block (7) is located beside the material taking sensor module (6). The rope belt intercepting block (7) is formed with an intercepting push plate through hole (71) for the blanking push plate (4) to pass through.
5. A cord cutting device according to claim 1, characterized in that: A push plate detection sensor module (8) is provided on the blanking rack (1).
6. The tape cutting device according to claim 5, wherein: The push plate detection sensor module (8) is an infrared sensor module.
7. A cord cutting device according to claim 1, characterized in that: Between the blanking guiding support portion (51) and the blanking guiding portion (52) of the blanking guiding block (5) is an integral structure.
8. A cord cutting device according to any one of claims 1-7, characterized in that: The blanking guiding portion (52) is a triangular structure with a narrow top and a wide bottom.
Citation Information
Patent Citations
An automatic rope and tape production equipment
CN215093319U