Bead embroidery bead feeding device for wedding dress production
By setting bead-separating holes in the bead feeding device and using a blower to blow in gas, the problem of mixed embroidery beads of different sizes was solved, achieving accurate bead separation and feeding, and improving the accuracy and efficiency of bead feeding.
Patent Information
- Application Number
- CN202423044578.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-10
AI Technical Summary
The existing bead feeding device used in wedding dress production lacks a material separation function, which makes it easy for beads of different sizes to get mixed together, affecting the accuracy of bead feeding.
A bead feeding device for wedding dress production was designed. By setting bead separating holes in the upper bead feeding channel and using a blower to blow air to apply downward pressure to the embroidered beads, smaller embroidered beads enter the lower bead feeding channel through the bead separating holes, while larger embroidered beads slide down in the upper bead feeding channel, thus realizing the material separation function and ensuring the accuracy of bead feeding.
This system enables separate feeding of embroidered beads, ensuring the accuracy of bead feeding, preventing beads of different sizes from being mixed during the feeding process, and improving work efficiency.
Smart Images

Figure CN223496814U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bead feeding technology for wedding dress production, and more particularly to a bead feeding device for wedding dress production. Background Technology
[0002] In the production process of decorating existing wedding dresses, a large number of embroidered bead patterns are used to achieve a good three-dimensional decorative effect. High-end glass beads are mostly hand-embroidered onto the fabric. When the embroidered beads are manufactured, they need to be transported to a designated process. However, during the bead transport process, embroidered beads of different sizes will be mixed together, which requires sorting the embroidered beads.
[0003] Common bead feeding devices used in wedding dress production only include the bead feeding function, which can transport embroidered beads, but lack the function of separating materials. This makes it impossible to guarantee the accuracy of bead feeding, and it is easy for embroidered beads of different sizes to be mixed together during the bead feeding process, affecting the accuracy of bead feeding.
[0004] Therefore, to address the lack of material separation function in the aforementioned bead feeding device for wedding dress production, a bead feeding device for wedding dress production can be designed. When the embroidered beads pass through the bead separation hole, the air blown in by the blower applies a certain downward pressure to the embroidered beads. At this time, smaller embroidered beads will fall down through the bead separation hole into the lower bead feeding channel, while larger embroidered beads will continue to slide down into the upper bead feeding channel. This allows embroidered beads of different sizes to be fed separately, achieving the function of material separation and ensuring the accuracy of bead feeding. Utility Model Content
[0005] To overcome the problem that common bead feeding devices used in wedding dress production lack material separation capabilities and cannot guarantee the accuracy of bead feeding, which can easily lead to beads of different sizes being mixed together during the feeding process, thus affecting the accuracy of bead feeding.
[0006] The technical solution of this utility model is as follows: a bead feeding device for wedding dress production, including a storage cylinder; it also includes an electromagnetic valve tube, an upper bead feeding channel, bead separating holes, a lower bead feeding channel, an air supply frame, and a blower. An electromagnetic valve tube is provided at the bottom center of the storage cylinder, and an upper bead feeding channel is provided at the bottom end of the electromagnetic valve tube. Several bead separating holes are evenly spaced through the bottom of the upper bead feeding channel. A lower bead feeding channel is provided at the bottom of the upper bead feeding channel corresponding to the position of the bead separating holes. An air supply frame is provided at the top of the upper bead feeding channel, and a blower is provided at the top of the air supply frame.
[0007] Preferably, by opening the solenoid valve, the embroidered beads in the storage cylinder fall into the inclined upper bead feeding channel. The beads slide down the upper bead feeding channel. When the beads pass the bead separating hole, the blower introduces air into the upper bead feeding channel through the air inlet. The blown air applies a certain downward pressure to the embroidered beads. At this time, smaller embroidered beads will fall down into the lower bead feeding channel through the bead separating hole, while larger embroidered beads will continue to slide down into the upper bead feeding channel until the larger embroidered beads continue to slide down. The beads are discharged through the first bead feeding port, while smaller beads slide down the lower bead feeding channel until they are discharged through the second bead feeding port. This allows beads of different sizes to be fed separately, ensuring the accuracy of bead feeding. This solves the problem of common bead feeding devices used in wedding dress production, which only have the function of feeding beads but lack the function of separating them. This makes it difficult to guarantee the accuracy of bead feeding, and beads of different sizes may be mixed together during the feeding process, affecting the accuracy of bead feeding.
[0008] As a preferred embodiment, two first support legs are symmetrically arranged at the front and rear ends of the bottom left side of the lower bead delivery channel, and an air delivery wide opening is provided at the top of the air delivery frame corresponding to the position of the air delivery fan.
[0009] Preferably, a first bead feeding port is provided on the left side of the bottom of the upper bead feeding channel, and a second bead feeding port is provided on the right side of the bottom of the lower bead feeding channel.
[0010] Preferably, both the first and second bead feeding ports are provided with bead feeding rubber rings at their bottoms.
[0011] Preferably, the bottom of the storage cylinder is provided with four second support legs at equal intervals, and the top of the front side of the storage cylinder is provided with a feeding pipe.
[0012] Preferably, a motor is installed at the center of the top of the storage cylinder, and a drive shaft is installed at the center of the inside of the storage cylinder corresponding to the position of the motor. The top end of the drive shaft passes through the storage cylinder and is connected to the output end of the motor.
[0013] Preferably, the drive shaft is provided with several stirring rollers at equal intervals around its perimeter.
[0014] The beneficial effects of this utility model are:
[0015] 1. This utility model opens the solenoid valve tube, causing the embroidered beads in the storage cylinder to fall into the inclined upper bead feeding channel. The beads slide down the upper bead feeding channel. When the beads pass through the bead separating hole, the blower introduces air into the upper bead feeding channel through the air supply port. The blown air applies a certain downward pressure to the beads. At this time, smaller beads will fall down through the bead separating hole into the lower bead feeding channel, while larger beads will continue to slide down inside the upper bead feeding channel until the larger beads pass through the first... Smaller beads are discharged from the bead feeding port and slide down the lower bead feeding channel until they are discharged through the second bead feeding port. This allows beads of different sizes to be fed separately, ensuring the accuracy of bead feeding. This solves the problem of common bead feeding devices used in wedding dress production where beads of different sizes are added to the hopper together before bead feeding, and then mixed together during bead feeding. These beads then need to be sorted afterward, which greatly reduces the efficiency and accuracy of bead feeding. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the beaded embroidery feeding device for wedding dress production according to this utility model.
[0017] Figure 2 The diagram shown is a cross-sectional view of the storage cylinder of the beaded embroidery feeding device for wedding dress production according to this utility model.
[0018] Figure 3 The diagram shown is a cross-sectional view of the bead feeding channel of the bead embroidery feeding device for wedding dress production according to this utility model.
[0019] Figure 4 The diagram shown is a schematic representation of the lower bead feeding channel structure of the bead embroidery feeding device for wedding dress production according to this utility model.
[0020] Explanation of reference numerals in the attached drawings: 1. Storage cylinder; 2. Solenoid valve tube; 3. Upper bead feeding channel; 4. Bead separating hole; 5. Lower bead feeding channel; 6. First support leg; 7. First bead feeding port; 8. Second bead feeding port; 9. Bead feeding rubber ring; 10. Second support leg; 11. Air supply frame; 12. Blower; 13. Air supply port; 14. Motor; 15. Drive shaft; 16. Agitating roller; 17. Feeding pipe. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] Please see Figures 1-4This utility model provides an embodiment of a beaded embroidery feeding device for wedding dress production, including a storage cylinder 1; it also includes an electromagnetic valve tube 2, an upper bead feeding channel 3, bead separating holes 4, a lower bead feeding channel 5, an air supply frame 11, and a blower 12. The electromagnetic valve tube 2 is located at the center of the bottom of the storage cylinder 1. The upper bead feeding channel 3 is located at the bottom end of the electromagnetic valve tube 2. Several bead separating holes 4 are evenly spaced through the bottom of the upper bead feeding channel 3. The lower bead feeding channel 5 is located at the bottom of the upper bead feeding channel 3 corresponding to the positions of the bead separating holes 4. The air supply frame 11 is located at the top of the upper bead feeding channel 3, and the blower 12 is located at the top of the air supply frame 11. By opening the electromagnetic valve tube 2, the embroidered beads in the storage cylinder 1 fall into the upper bead feeding channel 3, which has a certain inclination. The embroidered beads slide down along the upper bead feeding channel 3. When the embroidered beads pass through the bead separating holes 4, the blower 12 delivers air through the air supply opening 1. 3. Gas enters and exits the upper bead feeding channel 3, applying downward pressure to the embroidered beads. Smaller beads fall down through the bead separating hole 4 into the lower bead feeding channel 5, while larger beads continue to slide down through the upper bead feeding channel 3 until they are discharged through the first bead feeding port 7. Smaller beads then slide down along the lower bead feeding channel 5 until they are discharged through the second bead feeding port 8. This allows beads of different sizes to be fed separately, ensuring accurate bead feeding. This addresses the common problem in bead feeding devices used in wedding dress production, which only include bead feeding and can transport beads, but lack the function of separating them, making it difficult to guarantee accurate bead feeding. This can easily lead to beads of different sizes being mixed together during the feeding process, affecting the accuracy of bead feeding.
[0023] Please see Figures 2-4 In this embodiment, four second support legs 10 are evenly spaced at the bottom of the storage cylinder 1. A feeding pipe 17 is provided at the top front of the storage cylinder 1. A motor 14 is provided at the center of the top of the storage cylinder 1. A drive shaft 15 is provided at the center inside the storage cylinder 1, corresponding to the position of the motor 14. The top of the drive shaft 15 passes through the storage cylinder 1 and is connected to the output end of the motor 14. Several stirring rollers 16 are evenly spaced around the drive shaft 15. The feeding pipe 17 is opened to add embroidery beads into the storage cylinder 1 for storage. When it is necessary to perform bead feeding, the solenoid valve pipe 2 is opened, so that the embroidery beads inside the storage cylinder 1 fall downward into the bead feeding channel 3 with a certain inclination. At the same time, the motor 14 is started. The motor 14 drives the stirring rollers 16 to rotate through the drive shaft 15. The rotating stirring rollers 16 stir the embroidery beads to prevent the embroidery beads from piling up and thus failing to fall smoothly from the solenoid valve pipe 2.
[0024] Please see Figures 1-4In this embodiment, two first support legs 6 are symmetrically arranged at the front and rear ends of the bottom left side of the lower bead feeding channel 5. An air supply opening 13 is provided at the top of the air supply frame 11 corresponding to the position of the blower 12. A first bead feeding port 7 is provided on the left side of the bottom of the upper bead feeding channel 3, and a second bead feeding port 8 is provided on the right side of the bottom of the lower bead feeding channel 5. Both the first and second bead feeding ports 7 and 8 have bead feeding rubber rings 9 at their bottoms. The embroidered beads slide down the upper bead feeding channel 3. When the embroidered beads pass through the bead separating hole 4, the blower 12 introduces and removes air through the air supply opening 13 into the upper bead feeding channel 3, applying pressure to the embroidered beads using the inhaled air. With a certain downward pressure, smaller beads will fall down through the bead-separating hole 4 into the lower bead-feeding channel 5, while larger beads will continue to slide down through the upper bead-feeding channel 3 until they are discharged through the first bead-feeding port 7. Smaller beads will then slide down along the lower bead-feeding channel 5 until they are discharged through the second bead-feeding port 8. This allows beads of different sizes to be fed separately, ensuring the accuracy of bead feeding and achieving the function of separating materials. It also prevents beads of different sizes from being mixed together during the bead feeding process, which would affect the accuracy of bead feeding.
[0025] During operation, the feeding pipe 17 is opened to add embroidery beads into the storage cylinder 1. When bead feeding is required, the solenoid valve 2 is opened, causing the embroidery beads in the storage cylinder 1 to fall downwards into the inclined upper bead feeding channel 3. At the same time, the motor 14 is started, and the motor 14 drives the stirring roller 16 to rotate via the drive shaft 15. The rotating stirring roller 16 stirs the embroidery beads to prevent them from piling up and falling smoothly downwards from the solenoid valve 2. The embroidery beads slide down along the upper bead feeding channel 3. When the embroidery beads pass through the bead separating hole 4, the blower 12 feeds them... Gas enters and exits the upper bead feeding channel 3 of the air-blown part 13. The blown gas applies a certain downward pressure to the embroidered beads. At this time, the smaller embroidered beads will fall down through the bead separating hole 4 into the lower bead feeding channel 5, while the larger embroidered beads will continue to slide down inside the upper bead feeding channel 3 until the larger embroidered beads are discharged through the first bead feeding port 7. The smaller embroidered beads will slide down along the lower bead feeding channel 5 until the smaller embroidered beads are discharged through the second bead feeding port 8. This allows embroidered beads of different sizes to be fed separately, ensuring the accuracy of bead feeding and realizing the function of material separation.
[0026] Through the above steps, by opening the solenoid valve tube 2, the embroidered beads in the storage cylinder 1 fall into the inclined upper bead feeding channel 3. The embroidered beads slide down along the upper bead feeding channel 3. When the embroidered beads pass through the bead separating hole 4, the blower 12 blows air into and out of the upper bead feeding channel 3 through the air supply port 13. The blown air applies a certain downward pressure to the embroidered beads. At this time, the smaller embroidered beads will fall down through the bead separating hole 4 into the lower bead feeding channel 5, while the larger embroidered beads will continue to slide down inside the upper bead feeding channel 3 until... Larger beads are discharged through the first bead feeding port 7, while smaller beads slide down along the lower bead feeding channel 5 until they are discharged through the second bead feeding port 8. This allows beads of different sizes to be fed separately, ensuring the accuracy of bead feeding. This solves the problem of common bead feeding devices used in wedding dress production, which only have the function of feeding beads but lack the function of separating them. This makes it difficult to guarantee the accuracy of bead feeding, and beads of different sizes may be mixed together during the feeding process, affecting the accuracy of bead feeding.
Claims
1. A bead feeding device for wedding dress production, comprising a material storage cylinder (1); characterized in that: It also includes a solenoid valve tube (2), an upper bead feeding channel (3), a bead separating hole (4), a lower bead feeding channel (5), an air supply frame (11), and a blower (12). The bottom center of the storage cylinder (1) is provided with a solenoid valve tube (2). The bottom end of the solenoid valve tube (2) is provided with an upper bead feeding channel (3). The bottom end of the upper bead feeding channel (3) is provided with several bead separating holes (4) at equal intervals. The bottom of the upper bead feeding channel (3) is provided with a lower bead feeding channel (5) corresponding to the position of the bead separating hole (4). The top of the upper bead feeding channel (3) is provided with an air supply frame (11), and the top of the air supply frame (11) is provided with a blower (12).
2. The beaded embroidery feeding device for wedding dress production according to claim 1, characterized in that: Two first support legs (6) are symmetrically arranged at the front and rear ends of the bottom left side of the lower bead delivery channel (5), and an air delivery wide opening (13) is arranged at the top of the air delivery frame (11) corresponding to the position of the air delivery fan (12).
3. The beaded embroidery feeding device for wedding dress production according to claim 1, characterized in that: The upper bead feeding channel (3) has a first bead feeding port (7) on the left side of the bottom, and the lower bead feeding channel (5) has a second bead feeding port (8) on the right side of the bottom.
4. The beaded embroidery feeding device for wedding dress production according to claim 1, characterized in that: Both the first bead feeding port (7) and the second bead feeding port (8) are provided with bead feeding rubber rings (9) at their bottoms.
5. The beaded embroidery feeding device for wedding dress production according to claim 1, characterized in that: The bottom of the storage cylinder (1) is provided with four second support legs (10) at equal intervals, and the top of the front side of the storage cylinder (1) is provided with a feeding pipe (17).
6. The beaded embroidery feeding device for wedding dress production according to claim 1, characterized in that: A motor (14) is installed at the center of the top of the storage cylinder (1). A drive shaft (15) is installed at the center inside the storage cylinder (1) corresponding to the position of the motor (14). The top end of the drive shaft (15) passes through the storage cylinder (1) and connects to the output end of the motor (14).
7. The beaded embroidery feeding device for wedding dress production according to claim 6, characterized in that: Several stirring rollers (16) are evenly spaced around the drive shaft (15).