A stuffed toy pressing detection clamping device
By fixing plush toys with guide seats and clamping plates, combining a fan to absorb lint, and integrating an X-ray scanner, the problems of popping out and lint during the plush toy inspection process are solved, achieving an efficient and stable inspection process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- EUROFINS TESTING TECH SERVICES (HANGZHOU) CO LTD
- Filing Date
- 2025-05-08
- Publication Date
- 2026-06-02
AI Technical Summary
Existing plush toy pressing and clamping equipment often results in plush toys popping out during the testing process, requiring manual repositioning, which reduces testing efficiency. Furthermore, the lint generated during the testing process affects the environment and reduces its practicality.
It employs components such as guide seats, clamping plates, pressing parts, filter boxes, and exhaust fans. Guided by guide wheels, fixed by clamping plates, and with the exhaust fan absorbing lint, it integrates an X-ray scanner for inspection, ensuring continuous and stable inspection.
It improves the continuity and stability of plush toy testing, prevents lint from affecting the environment, and enhances testing efficiency and practicality.
Smart Images

Figure CN224317412U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of plush toy processing technology, and more specifically, to a plush toy pressing detection and clamping device. Background Technology
[0002] Plush toys are toys made primarily of plush fabric, PP cotton, and other textile materials, filled with various stuffing materials. They can also be called soft toys or stuffed toys. Plush toys are characterized by their realistic and cute shapes, soft touch, resistance to squeezing, easy cleaning, strong decorative appeal, high safety, and wide applicability. Therefore, plush toys are a great choice for children's toys, home decorations, and as gifts. Plush toys are not only loved by children, but also by many adults, resulting in booming sales every year. However, for plush toy production, design and manufacturing are key. Plush toys need to be tested after leaving the factory. As consumer goods that children come into daily contact with, the safety, durability, and functionality of plush toys must be guaranteed through strict testing procedures. However, existing plush toy pressing and clamping equipment typically places plush toys directly into a fixed slot or platform for pressing tests. Due to their elasticity, plush toys easily pop out of the slot during pressing, requiring manual repositioning, reducing testing efficiency. Furthermore, continuous pressing tests may generate lint, which may float in the air, affecting the surrounding environment and reducing practicality. Utility Model Content
[0003] To overcome the above shortcomings, this application provides a plush toy pressing and holding device, which aims to improve the existing plush toy pressing and holding devices. Usually, plush toys are placed directly in a fixed slot or platform for pressing tests. However, due to their elasticity, plush toys are prone to popping out of the slot during the pressing process, requiring manual repositioning, which reduces the testing efficiency. Secondly, during the continuous pressing and testing of plush toys, lint may be generated. This lint may float in the air and affect the surrounding environment, thus reducing the practicality of the device.
[0004] This application provides a plush toy pressing detection and clamping device, including a detection component and a pressing component.
[0005] The detection assembly includes a conveyor body, guide seats, and an X-ray scanner. Two guide seats are correspondingly disposed on one side of the conveyor body, and the X-ray scanner is disposed on one side of the conveyor body. The pressing assembly includes a frame plate, a pressing component, a first drive seat, a placement plate, a second drive seat, a clamping plate, a filter box, an exhaust fan, and a suction hood. The frame plate is disposed on one side of the conveyor body, the pressing component is disposed on one side of the frame plate, the first drive seat is disposed on one side of the frame plate, two placement plates are correspondingly disposed on one side of the first drive seat, and both placement plates are slidably connected to the frame plate, the second drive seat is disposed on one side of the placement plate, two clamping plates are correspondingly disposed on one side of the second drive seat, two filter boxes are correspondingly disposed on one side of the frame plate, the exhaust fan is disposed on one side of the filter box, and the suction hood is disposed on both sides inside the frame plate. The suction hood is connected to the filter box through a connecting pipe.
[0006] In one specific implementation, the guide seat includes a hinge plate, a guide wheel plate, and an electric push rod. The guide wheel plate is rotatably connected to the hinge plate, one end of the electric push rod is hinged to the hinge plate, and the other end of the electric push rod is hinged to the guide wheel plate.
[0007] In the above process, the guide wheel plate can guide the plush toy, so that the plush toy can be in a centered position. The angle of the guide wheel plate can be adjusted by the electric push rod, which is suitable for plush toys of different sizes.
[0008] In one specific implementation, the pressing component includes a hydraulic cylinder and an arc-shaped pressure plate, the arc-shaped pressure plate being fixedly connected to the output end of the hydraulic cylinder.
[0009] In the above process, the hydraulic cylinder and the arc-shaped pressure plate can be used to press and detect the plush toy.
[0010] In one specific implementation, the first drive base includes a first frame, a first motor, and a first bidirectional screw. The first motor is disposed at one end of the first frame, the first bidirectional screw is rotatably connected to the first frame, and the first bidirectional screw is fixedly connected to the output end of the first motor.
[0011] In the above implementation process, the first motor can drive the first bidirectional screw to rotate. The rotation of the first bidirectional screw can drive the two placement plates to move relative to each other, so that the plush toys after inspection can fall onto the conveyor body.
[0012] In one specific implementation, a groove is provided on one side of the placement plate, a first screw block is provided at one end of the placement plate, the first screw block is threadedly connected to the first bidirectional screw, the first screw block is slidably connected to the first frame, and a slider is provided at one end of the placement plate, the slider being slidably connected to the frame plate.
[0013] In the above implementation process, a groove is provided on one side of the placement plate for placing plush toys, and the first screw block can serve as a connector.
[0014] In one specific implementation, the second drive base includes a second frame, a second motor, and a second bidirectional screw. The second motor is disposed at one end of the second frame, the second bidirectional screw is rotatably connected to the second frame, and the second bidirectional screw is fixedly connected to the output end of the second motor.
[0015] In the above implementation process, the second motor can drive the second bidirectional screw to rotate. The rotation of the second bidirectional screw can drive the two clamping plates to move relative to each other. The clamping plates can clamp and fix the plush toy. The inner diameter formed by the two clamping plates is larger than the diameter of the arc-shaped pressure plate to prevent the arc-shaped pressure plate from touching the clamping plates.
[0016] In one specific implementation, a second screw block is provided at one end of the clamping plate, the second screw block is threadedly connected to the second bidirectional screw, and the second screw block is slidably connected to the second frame.
[0017] In the above implementation process, a second screw block is provided at one end of the clamping plate, which can serve as a connection.
[0018] In one specific implementation, the filter box includes a box body, a box door, and an L-shaped filter plate. The box door is located on one side of the box body, and the L-shaped filter plate is slidably connected to the box body.
[0019] In the above process, lint can be collected through the box and the door, while the L-shaped filter plate can filter the lint to prevent it from entering the exhaust fan.
[0020] Compared with the prior art, the beneficial effects of this application are as follows: First, the second drive seat brings the two clamping plates closer together until the plush toy is clamped and fixed. The pressing component can perform a pressing detection function on the plush toy. The first drive seat can move the two placement plates relative to each other, allowing the detected plush toy to fall onto the conveyor body and be transferred to the next process. The filter box, exhaust fan, and suction hood can absorb the lint generated when the plush toy is pressed, preventing it from affecting the surrounding environment. The guide seat can guide the plush toy. The X-ray scanner can scan the plush toy to check for metal inside. Furthermore, by setting clamping plates on the placement plates, the plush toy can be effectively clamped to prevent it from popping out of the placement plates due to its own elasticity, ensuring the continuity and stability of the detection process. Integrating pressing detection and metal detection into the same device improves detection efficiency and facilitates the absorption of lint generated when pressing the plush toy, thereby improving practicality. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of a plush toy pressing detection and clamping device provided in the embodiments of this application;
[0022] Figure 2 A schematic diagram of the guide seat structure provided for an embodiment of this application;
[0023] Figure 3 A schematic diagram of the first driving component structure provided for an embodiment of this application;
[0024] Figure 4 A schematic diagram of the placement plate structure provided for an embodiment of this application;
[0025] Figure 5 A schematic diagram of the second driving component structure provided for an embodiment of this application;
[0026] Figure 6 A schematic diagram of the filter box structure provided for an embodiment of this application.
[0027] In the diagram: 100-Detection component; 110-Conveyor body; 120-Guide seat; 121-Hinge plate; 122-Guide wheel plate; 123-Electric push rod; 130-X-ray scanner; 200-Pressing component; 210-Frame plate; 220-Pressing element; 221-Hydraulic cylinder; 222-Arc-shaped pressure plate; 230-First drive seat; 231-First frame; 232-First motor; 233- 240-Placement plate; 241-Groove; 242-First screw block; 243-Slider; 250-Second drive seat; 251-Second frame; 252-Second motor; 253-Second bidirectional screw; 260-Clamping plate; 261-Second screw block; 270-Filter box; 271-Box body; 272-Box door; 273-L-shaped filter plate; 280-Exhaust fan; 290-Suction hood. Detailed Implementation
[0028] The technical solutions in the embodiments of this application will now be described with reference to the accompanying drawings.
[0029] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, not all of them. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0030] Please see Figure 1-6 This application provides a plush toy pressing detection and clamping device, including a detection component 100 and a pressing component 200.
[0031] Please see Figure 1-2 The detection component 100 includes a conveyor body 110, guide seats 120, and an X-ray scanner 130. Two guide seats 120 are correspondingly arranged on one side of the conveyor body 110, and the X-ray scanner 130 is arranged on one side of the conveyor body 110. The core principle of the X-ray scanner 130 is to utilize the penetrating power of X-rays and generate two-dimensional or three-dimensional images of the internal structure by observing the differences in the absorption of X-rays by substances of different densities inside the object. The guide seat 120 includes a hinge plate 121, a guide wheel plate 122, and an electric push rod 123. The guide wheel plate 122 is rotatably connected to the hinge plate 121. One end of the electric push rod 123 is hinged to the hinge plate 121, and the other end of the electric push rod 123 is hinged to the guide wheel plate 122. The guide wheel plate 122 can guide the plush toy, so that the plush toy can be in a centered position. The angle of the guide wheel plate 122 can be adjusted by the electric push rod 123, which is suitable for plush toys of different sizes.
[0032] Please see Figure 1 , Figure 3 , Figure 4 , Figure 5 and Figure 6 The pressing assembly 200 includes a frame plate 210, a pressing element 220, a first drive seat 230, a placement plate 240, a second drive seat 250, a clamping plate 260, a filter box 270, an exhaust fan 280, and an exhaust hood 290. The frame plate 210 is disposed on one side of the conveyor body 110, the pressing element 220 is disposed on one side of the frame plate 210, the first drive seat 230 is disposed on one side of the frame plate 210, and the two placement plates 240 are correspondingly disposed on one side of the first drive seat 230, with both placement plates 240 slidably connected to the frame plate 210. The second drive seat 250 is disposed on the placement plate. On one side of 240, two clamping plates 260 are correspondingly arranged on one side of the second drive seat 250, two filter boxes 270 are correspondingly arranged on one side of the frame plate 210, an exhaust fan 280 is arranged on one side of the filter box 270, and an exhaust hood 290 is arranged on both sides inside the frame plate 210. The exhaust hood 290 is connected to the filter box 270 through a connecting pipe. The pressing component 220 includes a hydraulic cylinder 221 and an arc-shaped pressure plate 222. The arc-shaped pressure plate 222 is fixedly connected to the output end of the hydraulic cylinder 221. The hydraulic cylinder 221 and the arc-shaped pressure plate 222 can perform the pressing detection function on the plush toy.
[0033] In some specific implementations, the first drive seat 230 includes a first frame 231, a first motor 232, and a first bidirectional screw 233. The first motor 232 is disposed at one end of the first frame 231, and the first bidirectional screw 233 is rotatably connected to the first frame 231. The first bidirectional screw 233 is fixedly connected to the output end of the first motor 232. The first motor 232 can drive the first bidirectional screw 233 to rotate. The rotation of the first bidirectional screw 233 can drive the two placement plates 240 to move relative to each other, so that the plush toys after inspection can fall onto the conveyor body 110.
[0034] In some specific implementations, a groove 241 is provided on one side of the placement plate 240, and a first screw block 242 is provided at one end of the placement plate 240. The first screw block 242 is threadedly connected to the first bidirectional screw 233 and slidably connected to the first frame 231. A slider 243 is provided at one end of the placement plate 240 and slidably connected to the frame plate 210. The groove 241 is provided for placing plush toys, and the first screw block 242 can serve as a connector. The second drive base 250 includes a second frame 251, a second motor 252, and a second bidirectional screw 253. The second motor 252 is located at one end of the second frame 251, and the second bidirectional screw 253 is rotatably connected to the second frame 251. The second bidirectional screw 253 is fixedly connected to the output end of the second motor 252. The second bidirectional screw 253 can be driven to rotate by the second motor 252. 3. Rotation can drive the two clamping plates 260 to move relative to each other. The clamping plates 260 can clamp and fix the plush toy. The inner diameter formed by the two clamping plates 260 is larger than the diameter of the arc-shaped pressure plate 222 to prevent the arc-shaped pressure plate 222 from touching the clamping plates 260. A second screw block 261 is provided at one end of the clamping plate 260. The second screw block 261 is threadedly connected to the second bidirectional screw 253 and slidably connected to the second frame 251. The second screw block 261 can serve as a connection. The filter box 270 includes a box body 271, a box door 272 and an L-shaped filter plate 273. The box door 272 is located on one side of the box body 271. The L-shaped filter plate 273 is slidably connected to the box body 271. The box body 271 and the box door 272 can collect lint, while the L-shaped filter plate 273 can filter the lint to prevent it from entering the exhaust fan 280.
[0035] The working principle of this plush toy pressing and clamping device is as follows: During use, the second motor 252 drives the second bidirectional screw 253 to rotate. The rotation of the second bidirectional screw 253 causes the two clamping plates 260 to move relative to each other, thus clamping and fixing the plush toy. The hydraulic cylinder 221 and the arc-shaped pressure plate 222 perform pressing and detection on the plush toy. Meanwhile, the first motor 232 drives the first bidirectional screw 233 to rotate. The rotation of the first bidirectional screw 233 causes the two placement plates 240 to move relative to each other, facilitating the transfer of the tested plush toy onto the conveyor body 110 to the next process. The guide wheel plate 122 guides the plush toy, ensuring it is centered. The guide wheel plate 122 can be adjusted by the electric push rod 123. The device is designed for plush toys of different sizes. A negative pressure is generated inside the filter box 270 by the exhaust fan 280, and the lint generated when the plush toy is pressed is absorbed by the suction hood 290. The lint is collected by the box body 271 and the box door 272, while the L-shaped filter plate 273 filters the lint, preventing it from entering the exhaust fan 280. An X-ray scanner 130 scans the plush toy to check for metal inside. A clamping plate 260 on the placement plate 240 effectively holds the plush toy, preventing it from popping out due to its own elasticity, ensuring the continuity and stability of the detection process. Integrating pressing detection and metal detection into the same device improves detection efficiency and facilitates the absorption of lint generated when pressing the plush toy, thus enhancing its practicality.
[0036] It should be noted that the specific models and specifications of the conveyor body 110, electric push rod 123, X-ray scanner 130, hydraulic cylinder 221, first motor 232, second motor 252 and exhaust fan 280 need to be selected and determined according to the actual specifications of the device. The specific selection calculation method adopts the existing technology in this field, so it will not be described in detail.
[0037] The power supply and operating principles of the conveyor body 110, electric push rod 123, X-ray scanner 130, hydraulic cylinder 221, first motor 232, second motor 252 and exhaust fan 280 are clear to those skilled in the art and will not be described in detail here.
[0038] The above description is merely an embodiment of this application and is not intended to limit the scope of protection of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application. It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0039] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A plush toy pressing detection and clamping device, characterized in that, include The detection component (100) includes a conveyor body (110), a guide seat (120) and an X-ray scanner (130). The two guide seats (120) are respectively disposed on one side of the conveyor body (110), and the X-ray scanner (130) is disposed on one side of the conveyor body (110). The pressing assembly (200) includes a frame plate (210), a pressing element (220), a first drive seat (230), a placement plate (240), a second drive seat (250), a clamping plate (260), a filter box (270), an exhaust fan (280), and an exhaust hood (290). The frame plate (210) is disposed on one side of the conveyor body (110), the pressing element (220) is disposed on one side of the frame plate (210), the first drive seat (230) is disposed on one side of the frame plate (210), and the two placement plates (240) are correspondingly disposed on the first drive seat. The second drive seat (250) is located on one side of the placement plate (240), and the two clamping plates (260) are slidably connected to the frame plate (210). The second drive seat (250) is located on one side of the placement plate (240), the two clamping plates (260) are correspondingly located on one side of the second drive seat (250), the two filter boxes (270) are correspondingly located on one side of the frame plate (210), the exhaust fan (280) is located on one side of the filter box (270), and the suction hood (290) is located on both sides inside the frame plate (210). The suction hood (290) is connected to the filter box (270) through a connecting pipe.
2. The plush toy pressing and clamping device according to claim 1, characterized in that, The guide seat (120) includes a hinge plate (121), a guide wheel plate (122), and an electric push rod (123). The guide wheel plate (122) is rotatably connected to the hinge plate (121). One end of the electric push rod (123) is hinged to the hinge plate (121), and the other end of the electric push rod (123) is hinged to the guide wheel plate (122).
3. The plush toy pressing and clamping device according to claim 1, characterized in that, The pressing component (220) includes a hydraulic cylinder (221) and an arc-shaped pressure plate (222), and the arc-shaped pressure plate (222) is fixedly connected to the output end of the hydraulic cylinder (221).
4. The plush toy pressing detection and clamping device according to claim 1, characterized in that, The first drive base (230) includes a first frame (231), a first motor (232) and a first bidirectional screw (233). The first motor (232) is disposed at one end of the first frame (231), the first bidirectional screw (233) is rotatably connected to the first frame (231), and the first bidirectional screw (233) is fixedly connected to the output end of the first motor (232).
5. The plush toy pressing and clamping device according to claim 4, characterized in that, The placement plate (240) has a groove (241) on one side and a first screw block (242) on one end. The first screw block (242) is threadedly connected to the first bidirectional screw (233) and slidably connected to the first frame (231). The placement plate (240) has a slider (243) on one end and slidably connected to the frame plate (210).
6. The plush toy pressing and clamping device according to claim 1, characterized in that, The second drive base (250) includes a second frame (251), a second motor (252), and a second bidirectional screw (253). The second motor (252) is disposed at one end of the second frame (251), the second bidirectional screw (253) is rotatably connected to the second frame (251), and the second bidirectional screw (253) is fixedly connected to the output end of the second motor (252).
7. The plush toy pressing and clamping device according to claim 6, characterized in that, The clamping plate (260) is provided with a second screw block (261) at one end. The second screw block (261) is threadedly connected to the second bidirectional screw (253), and the second screw block (261) is slidably connected to the second frame (251).
8. The plush toy pressing and clamping device according to claim 1, characterized in that, The filter box (270) includes a box body (271), a box door (272) and an L-shaped filter plate (273). The box door (272) is located on one side of the box body (271), and the L-shaped filter plate (273) is slidably connected to the box body (271).