Discharging device

By designing an automated feeding device, the problem of manual transfer of raw materials after cutting in the production of inflatable amusement facilities has been solved. The device enables automatic clamping, cutting and conveying of raw materials, improving the efficiency and accuracy of feeding and processing.

CN223990728UActive Publication Date: 2026-03-13GUANGZHOU YUJIA NEW MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

The existing material cutting devices used in the production of inflatable amusement facilities require manual transfer of raw materials after cutting, which makes it inconvenient to use large and heavy raw materials and affects the efficiency of material cutting and processing.

Method used

A feeding device was designed, comprising a cutting table, a conveying device, a clamping frame, a clamping module, and a cutting blade. The device automatically clamps, straightens, cuts, and conveys raw materials through a linear slide, a vertical plate, and a telescopic push rod. The device's stability and smoothness are ensured by using guide slots and insert rods.

Benefits of technology

It achieves automated raw material transfer and cutting, avoiding raw material wrinkles and deviations, improving the efficiency and accuracy of material processing, and reducing the inconvenience of manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a discharging device which comprises a rack, a cutting table and a conveying device are arranged on the rack, a mounting frame stretching across one end of the cutting table is arranged on the rack, and a first telescopic push rod, a pressing and fixing frame, a linear sliding table, a vertical plate, a clamping module and a second telescopic push rod are vertically arranged on the mounting frame. An output shaft of the second telescopic push rod is provided with a cutting knife through a mounting plate, wherein the cutting knife penetrates through the pressing and fixing frame to cut the raw materials. According to the discharging device, the basic requirement for discharging raw materials needed by production of the inflatable recreation facility can be met, the cut raw materials can be automatically transferred to the conveying device to be conveyed, and then the using requirements of people are more fully met.
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Description

Technical Field

[0001] This utility model belongs to the field of inflatable amusement facility production technology, and specifically relates to a feeding device. Background Technology

[0002] With the improvement of people's living standards and the growth of entertainment needs, inflatable amusement facilities (such as inflatable castles and inflatable slides) have been widely used in children's playgrounds, parks, shopping malls, and other places. These facilities are usually made of flexible materials (such as PVC coated fabric and nylon fabric) and are assembled by heat sealing or sewing processes. In the production process, raw materials and material preparation are among the key steps.

[0003] While existing inflatable amusement facility production feeding devices can meet the basic requirements for feeding raw materials, after the raw materials are cut, workers usually need to manually transfer them to a conveyor device for subsequent processing. For some raw materials that are too large or heavy, this can cause great inconvenience to users and affect the overall efficiency of feeding and processing raw materials, thus failing to fully meet the needs of users. Utility Model Content

[0004] In view of this, this utility model addresses the shortcomings of the prior art by providing a feeding device that not only meets the basic requirement of feeding raw materials needed for the production of inflatable amusement facilities, but also automatically transfers the cut raw materials to a conveying device for transport, thereby more fully meeting people's usage needs.

[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a feeding device, including a frame, a cutting table and a conveying device are provided on the frame, a mounting frame spanning one end of the cutting table is provided on the frame, a first telescopic push rod is vertically provided on the mounting frame, a clamping frame for clamping the raw material is provided on the output shaft of the first telescopic push rod, a linear slide extending from the other end of the cutting table to the feeding end of the conveying device is also provided on the frame, a vertical plate is provided on the slide base of the linear slide, a clamping module for clamping the other end of the raw material is provided on the vertical plate, a second telescopic push rod is also provided on the mounting frame, and a cutting blade for cutting the raw material is provided through the clamping frame via the mounting plate on the output shaft of the second telescopic push rod.

[0006] As a further improvement of this utility model, the clamping module includes a mounting groove on a vertical plate, a bidirectional screw is vertically rotatably mounted in the mounting groove, a drive motor for driving the bidirectional screw to rotate is mounted on the mounting groove, mounting blocks that are slidably connected to the mounting groove are screwed to both sides of the bidirectional screw, and clamping plates for clamping the free end of the raw material are mounted on the mounting blocks.

[0007] As a further improvement of this utility model, the frame is also provided with a U-shaped fixing frame that spans the cutting table and is located between the mounting frame and the vertical plate. A third telescopic push rod is vertically arranged on the fixing frame. A U-shaped suspension frame is provided at the lower end of the output shaft of the third telescopic push rod. A suspension roller is arranged between the two ends of the suspension frame. A receiving groove for accommodating the suspension roller is provided on the cutting table.

[0008] As a further improvement of this utility model, the two ends of the suspension roller are rotatably connected to the suspension frame.

[0009] As a further improvement of this utility model, the mounting bracket is also provided with a first guide slot located at the side end of the first telescopic push rod, and the clamping frame is provided with a first guide rod that is inserted into the first guide slot.

[0010] As a further improvement of this utility model, the mounting bracket is also provided with a second guide slot located at the side end of the second telescopic push rod, and the mounting plate is provided with a second guide rod that is inserted into the second guide slot.

[0011] As a further improvement of this utility model, a third guide slot is vertically provided on the fixing frame, and a third guide rod is provided on the suspension frame to be inserted into the third guide slot. Through the third guide slot...

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] Firstly, the free end of the raw material can be clamped and straightened by the linear slide, vertical plate, and clamping module to avoid wrinkles that could affect the accuracy of the measurement. Secondly, the free end of the cut raw material can be transferred to the loading end of the conveying device, so that the conveying device can easily transport the cut raw material.

[0014] Secondly, the clamping frame driven by the first telescopic push rod can firmly fix the raw material and prevent it from shifting during the cutting process. The cutting blade cuts the raw material by passing through the clamping frame. During the cutting process, the clamping frame can clamp both sides of the raw material cut, effectively preventing the raw material from tilting and shifting during the cutting process due to clamping only one side, which would affect the cutting effect.

[0015] Third, the design of various guide slots and inserts (such as the first guide slot, the second guide slot, and the third guide slot) ensures the stability of the clamping frame, the cutting blade, and the suspension frame during vertical movement, thereby enhancing the overall stability of the device.

[0016] Fourth, the suspension frame and suspension roller can be lifted from the receiving groove by the third telescopic push rod on the fixed frame, thereby lifting the cut raw material from the cutting table and avoiding the conveying process of the conveying device moving the raw material away from the cutting table due to the excessive contact area and friction between the raw material and the cutting table. Attached Figure Description

[0017] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the structure of the mounting groove, bidirectional screw, drive motor, and mounting block of this utility model;

[0020] Figure 3 This is a schematic diagram of the structure of the second telescopic push rod, mounting plate, and cutting blade of this utility model;

[0021] Figure 4 This is a schematic diagram of the structure of the third telescopic push rod, suspension frame and suspension roller of this utility model.

[0022] In the diagram: 101, frame; 102, cutting table; 103, conveying device; 104, mounting frame; 105, first telescopic push rod; 106, clamping frame; 107, linear slide; 108, vertical plate; 109, second telescopic push rod; 110, mounting plate; 111, cutting blade; 201, mounting groove; 202, bidirectional screw; 203, drive motor; 204, mounting block; 205, clamping plate; 301, fixing frame; 302, third telescopic push rod; 303, suspension frame; 304, suspension roller; 305, receiving groove; 306, bearing; 401, first guide slot; 402, first guide rod; 403, second guide slot; 404, second guide rod; 405, third guide slot; 406, third guide rod. Detailed Implementation

[0023] To better understand this utility model, the following embodiments further illustrate its content, but the scope of protection of this utility model is not limited to the embodiments described below. Numerous specific details are set forth in the following description to provide a more thorough understanding of this utility model. However, it will be apparent to those skilled in the art that this utility model can be practiced without one or more of these details.

[0024] like Figure 1 , 2As shown, a feeding device includes a frame 101, on which a cutting table 102 and a conveying device 103 are mounted. A mounting frame 104 spans one end of the cutting table 102 on the frame 101. A first telescopic push rod 105 is vertically mounted on the mounting frame 104. A clamping frame 106 for clamping the raw material is mounted on the output shaft of the first telescopic push rod 105. A linear slide 107 extending from the other end of the cutting table 102 to the feeding end of the conveying device 103 is also mounted on the frame 101. A vertical plate 108 is mounted on the slide of the linear slide 107. A clamping module for clamping the other end of the raw material is mounted on the vertical plate 108. A second telescopic push rod 109 is also mounted on the mounting frame 104. A cutting blade 111 passing through the clamping frame 106 and cutting the raw material is mounted on the output shaft of the second telescopic push rod 109 via a mounting plate 110.

[0025] like Figure 1 , 2 As shown, the clamping module includes a mounting groove 201 on a vertical plate 108. A bidirectional screw 202 is vertically rotatably mounted in the mounting groove 201. A drive motor 203 for rotating the bidirectional screw 202 is mounted on the mounting groove 201. Mounting blocks 204 that are slidably connected to the mounting groove 201 are screwed to both sides of the bidirectional screw 202. A clamping plate 205 for clamping the free end of the raw material is mounted on the mounting block 204.

[0026] The worker unfolds the raw material to be cut and moves the free end of the raw material between the two clamping plates 205. Then, the drive motor 203 drives the bidirectional screw 202 to rotate, so that the mounting blocks 204 on both sides and the clamping plates 205 move closer to each other, clamping the free end of the raw material. The linear slide table 107 is driven to move away from the mounting frame 104 to straighten and tension the raw material until the part of the raw material to be cut corresponds to the cutting blade 111. Then, the output axis of the first telescopic push rod 105 is driven to extend downward by a certain length, driving the pressure frame 106 to move downward, firmly pressing one end of the raw material onto the cutting table 102 to prevent it from shifting in subsequent operations.

[0027] Then, the output axis of the second telescopic push rod 109 can be extended downward by a certain length, driving the cutting blade 111 to move downward. The cutting blade 111 passes through the clamping frame 106 to precisely cut the raw material. During the cutting process, the clamping frame 106 continuously clamps both sides of the raw material cut, effectively avoiding skewing or offset caused by unilateral clamping, and ensuring the cutting effect.

[0028] Then the slide of the linear slide 107 can be driven to continue moving forward, moving the free end of the raw material to the conveying device 103. Then the drive motor 203 drives the bidirectional screw 202 to rotate in the opposite direction, so that the mounting blocks 204 and clamping plates 205 on both sides move away from each other, releasing the clamping of the raw material, and driving the slide of the linear slide 107 to move forward first, so that the free end of the raw material is separated from the clamping plate 205, and then driving the slide of the linear slide 107 to move backward to reset the clamping plate 205.

[0029] Then, simply start the conveyor 103, and the conveyor 103 will drive the raw material forward and drive the raw material away from the cutting table 102, thereby realizing the unloading of the raw material.

[0030] According to another embodiment of the present invention, such as Figure 1 , 2 As shown in Figure 4, a U-shaped fixing frame 301 is also provided on the frame 101, which spans the cutting table 102 and is located between the mounting frame 104 and the vertical plate 108. A third telescopic push rod 302 is vertically provided on the fixing frame 301. A U-shaped suspension frame 303 is provided at the lower end of the output shaft of the third telescopic push rod 302. A suspension roller 304 is provided between the two ends of the suspension frame. A receiving groove 305 for accommodating the suspension roller 304 is provided on the cutting table 102.

[0031] During the process of conveying and removing the raw material from the cutting table 102 by the conveying device 103, the output axis of the third telescopic push rod 302 can be shortened by a certain length, which will drive the suspension frame 303 and the suspension roller 304 to move out of the receiving groove 305, thereby lifting the cut raw material from the cutting table 102. This avoids the conveying process of the conveying device 103 removing the raw material from the cutting table 102 due to excessive contact area and friction between the raw material and the cutting table 102.

[0032] According to another embodiment of the present invention, such as Figure 4 As shown, the two ends of the suspension roller 304 are rotatably connected to the suspension frame 303. Bearings 306 are respectively installed on both sides of the suspension frame 303. The outer ring of the bearing 306 is connected to the side end of the suspension frame 303, and the inner ring of the bearing 306 is connected to the suspension roller 304. When the raw material moves relative to the suspension roller 304, it can drive the suspension roller 304 to rotate, thereby reducing the resistance of the suspension roller 304 to the movement of the raw material.

[0033] According to another embodiment of the present invention, such as Figure 1 , 3As shown, the mounting bracket 104 is also vertically provided with a first guide slot 401 located at the side end of the first telescopic push rod 105, and the clamping frame 106 is provided with a first guide rod 402 that is inserted into the first guide slot 401. During the process of the first telescopic push rod 105 driving the clamping frame 106 to move vertically, the clamping frame 106 can move up and down stably through the insertion and cooperation of the first guide slot 401 and the first guide rod 402, and effectively avoid the first telescopic push rod 105 from being easily deformed and damaged by non-vertical forces.

[0034] According to another embodiment of the present invention, such as Figure 1 , 3 As shown, the mounting bracket 104 is also vertically provided with a second guide slot 403 located at the side end of the second telescopic push rod 109, and the mounting plate 110 is provided with a second guide rod 404 that is inserted into the second guide slot 403. During the process of the second telescopic push rod 109 driving the mounting plate 110 and the cutting blade 111 to move vertically, the second guide slot 403 and the second guide rod 404 can be engaged to make the mounting plate 110 and the cutting blade 111 move up and down stably, and effectively prevent the second telescopic push rod 109 from being easily deformed and damaged by non-vertical forces.

[0035] According to another embodiment of the present invention, such as Figure 1 , 4 As shown, a third guide slot 405 is vertically provided on the fixed frame 301, and a third guide rod 406 is provided on the suspension frame 303 to be inserted into the third guide slot 405. During the process of the third telescopic push rod 302 driving the suspension frame 303 and the suspension roller 304 to move vertically, the third guide slot 405 and the third guide rod 406 can be engaged to enable the suspension frame 303 and the suspension roller 304 to move up and down stably, and effectively prevent the third telescopic push rod 302 from being easily damaged by non-vertical forces.

[0036] The above are preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A blanking device comprising a frame (101) provided with a cutting table (102) and a conveying device (103), characterized in that: The rack (101) is provided with a mounting frame (104) across one end of the cutting table (102), a first telescopic push rod (105) is vertically arranged on the mounting frame (104), a pressing frame (106) for pressing the raw material is arranged on the output shaft of the first telescopic push rod (105), a linear sliding table (107) extending from the other end of the cutting table (102) to the feeding end of the conveying device (103) is further arranged on the rack (101), a vertical plate (108) is arranged on the sliding seat of the linear sliding table (107), a clamping module for clamping the other end of the raw material is arranged on the vertical plate (108), a second telescopic push rod (109) is further arranged on the mounting frame (104), a cutting knife (111) for cutting the raw material by penetrating the pressing frame (106) is arranged on the output shaft of the second telescopic push rod (109) through a mounting plate (110).

2. The blanking device of claim 1, wherein: The clamping module comprises a mounting groove (201) arranged on the vertical plate (108), a bidirectional screw (202) is vertically arranged in the mounting groove (201), a driving motor (203) for driving the bidirectional screw (202) to rotate is arranged on the mounting groove (201), mounting blocks (204) slidably connected with the mounting groove (201) are screwed on the two sides of the bidirectional screw (202), and a clamping plate (205) for clamping the free end of the raw material is arranged on the mounting block (204).

3. The blanking device of claim 2, wherein: The rack (101) is further provided with a U-shaped fixing frame (301) across the cutting table (102) and between the mounting frame (104) and the vertical plate (108), a third telescopic push rod (302) is vertically arranged on the fixing frame (301), a U-shaped suspension frame (303) is arranged at the lower end of the output shaft of the third telescopic push rod (302), and a suspension roller (304) is arranged between the two side ends of the suspension frame.

4. The blanking device of claim 3, wherein: The two ends of the suspension roller (304) are rotatably connected with the suspension frame (303).

5. The blanking device of claim 4, wherein: The mounting frame (104) is further vertically provided with a first guide insertion slot (401) at the side end of the first telescopic push rod (105), and the pressing frame (106) is provided with a first guide insertion rod (402) inserted with the first guide insertion slot (401).

6. The blanking device of claim 5, wherein: The mounting frame (104) is further vertically provided with a second guide insertion slot (403) at the side end of the second telescopic push rod (109), and the mounting plate (110) is provided with a second guide insertion rod (404) inserted with the second guide insertion slot (403).

7. The blanking device of claim 6, wherein: The fixing frame (301) is further vertically provided with a third guide insertion slot (405), and the suspension frame (303) is provided with a third guide insertion rod (406) inserted with the third guide insertion slot (405).