Coiling and coil-dividing station of flame laminating machine
By adjusting the structural connection and position relationship of the winding station of the flame composite machine, adding monitoring positions and using photoelectric sensors for monitoring, the inefficiency problem of material conditions under space limitations is solved, and efficient and convenient monitoring effect is achieved.
Patent Information
- Application Number
- CN202421729266.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-19
AI Technical Summary
Due to space limitations, the field of view is limited when monitoring material conditions such as winding tension and winding speed, resulting in inefficient monitoring.
By adjusting the structural connection and position relationship of the coiling station, reserve and add monitoring positions, workers are arranged to monitor the field of view at this position, and induction monitoring such as fabric alignment and material width are carried out through photoelectric sensors.
It realizes efficient and convenient monitoring of the material conditions on the coiling and separation station in a compact space, and improves the smoothness of the production process and the stability of product quality.
Smart Images

Figure CN222934890U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of sponge manufacturing, and particularly to a coiling and uncoiling station of a flame laminating machine. Background Art
[0002] The duty of the coiling and uncoiling station of the flame laminating machine is to coil the laminated materials for easy transportation and storage. To facilitate the coiling, a storage rack structure is generally added to store and convey the materials, ensuring that the coiling and uncoiling station can continuously and efficiently wind and process the materials. However, in actual use, the structures of the entire coiling and uncoiling station are closely arranged together to save space. However, the coiling and uncoiling station needs to monitor the fabric conditions, such as winding tension, winding speed, etc., to ensure the smooth progress of the production process and the stability of product quality. However, due to limited space, different contents need to be observed from different angles. The reason is as mentioned above, there is no large-space monitoring position, resulting in limited overall vision and the need to constantly adjust the position, making the whole monitoring very inefficient.
[0003] To solve the above problems, a series of improvements have been made. Content of the Utility Model
[0004] The purpose of the utility model is to provide a coiling and uncoiling station of a flame laminating machine to overcome the above-mentioned drawbacks and deficiencies of the prior art.
[0005] A coiling and uncoiling station of a flame laminating machine includes: a frame, a connecting column, a storage rack, a tension rod, a first judging roller, a second judging roller, a photoelectric sensor, a guiding roller, a winding roller, a supporting platform and a monitoring position. One side of the frame is connected to the connecting column, and a guiding roller is provided on the other side of the frame. A winding roller is provided above the guiding roller. A storage rack is provided on one side of the connecting column. A first judging roller and a second judging roller are provided below the frame. One end of the first judging roller is adjacent to the tension rod, and the second judging roller is provided at the other end of the first judging roller. A photoelectric sensor and a supporting platform are provided between the first judging roller and the second judging roller. The monitoring position is arranged between the frame, the tension rod and the connecting column;
[0006] Wherein, a frame guiding roller is provided at the lower end of the frame, and a storage guiding roller of the storage rack is provided at the top end of the connecting column.
[0007] Advantages of the Utility Model
[0008] Compared with the traditional technology, the utility model adds an additional monitoring position by adjusting the connection relationship and position relationship of the coiling and uncoiling structure, and can more efficiently and conveniently monitor the material conditions on the coiling and uncoiling station. Description of the Drawings
[0009] Figure 1 This is a schematic structural diagram of the present utility model.
[0010] Reference Numerals:
[0011] Frame 100, frame guide roller 110.
[0012] Connecting column 200, storage rack 300, storage guide roller 310.
[0013] Tension bar 400, first determination roller 500, second determination roller 600, photoelectric sensor 700, guiding roller 800, winding roller 900, supporting platform 1000, monitoring position 1100. Detailed Description of the Preferred Embodiments
[0014] The present utility model will be further described below in conjunction with specific embodiments. It should be understood that the following embodiments are only used to illustrate the present utility model and are not intended to limit the scope of the present utility model.
[0015] Embodiment 1
[0016] Figure 1 This is a schematic structural diagram of the present utility model.
[0017] As Figure 1 shown, a coiling and uncoiling station of a flame laminating machine includes: a frame 100, a connecting column 200, a storage rack 300, a tension bar 400, a first determination roller 500, a second determination roller 600, a photoelectric sensor 700, a guiding roller 800, a winding roller 900, a supporting platform 1000, and a monitoring position 1100. One side of the frame 100 is connected to the connecting column 200, a guiding roller 800 is provided on the other side of the frame 100, a winding roller 900 is provided above the guiding roller 800, a storage rack 300 is provided on one side of the connecting column 200, a first determination roller 500 and a second determination roller 600 are provided below the frame 100, one end of the first determination roller 500 is adjacent to the tension bar 400, a second determination roller 600 is provided at the other end of the first determination roller 500, a photoelectric sensor 700 and a supporting platform 1000 are provided between the first determination roller 500 and the second determination roller 600, and the monitoring position 1100 is provided between the frame 100, the tension bar 400, and the connecting column 200;
[0018] Wherein, a frame guide roller 110 is provided at the lower end of the frame 100, and a storage guide roller 310 of the storage rack 300 is provided at the top end of the connecting column 200.
[0019] The innovation of the utility model is that a space is reserved in the originally compact space as a monitoring position 1100, and then workers can have a large field of vision to monitor the fabric condition as long as they are arranged at the monitoring position 1100. In order to realize this monitoring position 1100, the structure of the winding and splitting stations is increased, and their positional relationship is adjusted.
[0020] Firstly, the material storage rack 300 is improved by adjusting the position and size of the material storage guide roller 310 of the material storage rack 300 and moving it from its original position close to the ground to the top of the connecting column 200. Therefore, when the fabric moves forward from the material storage rack 300, the starting position is raised, and a large space is reserved where the material originally passed through the ground, and the material is currently at the top position.
[0021] Then, a frame guide roller 110 is installed at the bottom of the frame 100 to receive the material at the top.
[0022] Secondly, the position of the tension rod 400 is moved from the original position close to the connecting column 200 to the lower part of the discharging end of the frame guide roller 110, and its original position is reserved for the monitoring position 1100, while the material at the top is guided downward. Then the tension rod 400 guides the material to the first judgment roller 500 and the second judgment roller 600 according to the preset trajectory. The distance between the first judgment roller 500 and the second judgment roller 600 is shortened, and the position is reserved for the tension rod 400. In order to avoid the problems caused by the shortened distance between the first judgment roller 500 and the second judgment roller 600, we have added a supporting platform 1000 between them, and the material can be transferred on the supporting platform 1000 without dragging on the ground. The photoelectric sensor 700 can perform some sensing monitoring of fabric alignment, material width, etc.
[0023] Finally, the material passes through the guide roller 800 and enters the winding roller 900 to complete the winding.
[0024] In summary, the utility model creates an additional monitoring position 1100 for monitoring by adding some auxiliary structures and adjusting the positions and connection relationships of some structures.
[0025] Compared with the traditional technology, the utility model increases the monitoring position by adjusting the connection relationship and the position relationship of the winding and winding sub-rolling structure, so as to monitor the material conditions on the winding and winding sub-rolling stations more efficiently and conveniently.
[0026] The specific implementation modes of the present invention are described above, but the present invention is not limited thereto. The present invention can also have various changes without departing from the purpose of the present invention.
Claims
1. A coiling and splitting station of a flame laminating machine, characterized in that: include: A frame (100), a connecting column (200), a material storage rack (300), a tension rod (400), a first determination roller (500), a second determination roller (600), a photoelectric sensor (700), a guide roller (800), a winding roller (900), a supporting platform (1000) and a monitoring position (1100), wherein one side of the frame (100) is connected to the connecting column (200), the other side of the frame (100) is provided with a guide roller (800), the upper side of the guide roller (800) is provided with a winding roller (900), and one side of the connecting column (200) is provided with a guide roller (800). A material storage rack (300) is provided, a first determination roller (500) and a second determination roller (600) are provided below the frame (100), one end of the first determination roller (500) is adjacent to the tension rod (400), the other end of the first determination roller (500) is provided with the second determination roller (600), a photoelectric sensor (700) and a supporting platform (1000) are provided between the first determination roller (500) and the second determination roller (600), and the monitoring position (1100) is provided between the frame (100), the tension rod (400) and the connecting column (200); The lower end of the frame (100) is provided with a frame guide roller (110), and the material storage guide roller (310) of the material storage rack (300) is provided at the top end of the connecting column (200).