Dispensing machine with double-layer feeding structure
By designing a double-layer feeding structure and a flipping hot pressing device on the dispensing machine, the problem of low efficiency of traditional dispensing machines is solved, and efficient dispensing operations with multi-layer alternating processing are realized, meeting the high-efficiency production needs of the garment industry.
Patent Information
- Application Number
- CN202520267970.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-02-19
AI Technical Summary
Traditional single-layer feeding and dispensing machines have low working efficiency and cannot efficiently complete dispensing operations involving multiple layers or alternating layers.
The dispensing machine adopts a double-layer feeding structure. By setting up lower and upper feeding mechanisms on the machine base, it uses lifting cylinders and conveying servo motors to achieve longitudinal and lateral movement, and is equipped with a flipping hot press device to realize the alternating conveying of materials and dispensing operations.
It improves work efficiency and enables efficient, accurate and stable multi-layer alternating material feeding and dispensing operations, meeting the requirements of high production efficiency and process reliability.
Smart Images

Figure CN223959907U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of dispensing equipment, and specifically to a dispensing machine with a double-layer feeding structure. Background Technology
[0002] With the rapid development of the garment industry, the requirements for craftsmanship in various garments are becoming increasingly stringent. A large portion of these garments require the use of adhesive bonding technology to ensure the reliability of the garment's adhesion.
[0003] In existing dispensing operations, traditional single-layer feeding dispensing machines have limited efficiency and cannot efficiently complete tasks for products requiring multi-layer processing or alternating processing of different layers. To improve production efficiency and meet diverse processing needs, a device capable of alternating double-layer feeding and dispensing is required. Utility Model Content
[0004] The purpose of this invention is to address the shortcomings of existing technologies by providing a dispensing machine with a double-layer feeding structure. Its scientific structure, through the use of a double-layer alternating feeding and processing structure on an integrated base, and in conjunction with a multi-station flipping hot pressing device, enables efficient, accurate, and stable alternating material feeding and dispensing operations, meeting the industry's requirements for high production efficiency and process reliability.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A dispensing machine with a double-layer feeding structure includes: a base, a feeding mechanism, a machine body, and a control box. The feeding mechanism and machine body are mounted on the base, the control box is mounted on the side of the machine body, the feeding mechanism includes a lower feeding mechanism and an upper feeding mechanism, both the lower and upper feeding mechanisms are equipped with a flipping hot-pressing device, the base has a lower feeding rack and an upper feeding rack, the lower feeding rack has two sets of parallel lower feeding tracks, the upper feeding rack has two sets of parallel upper feeding tracks, a lifting device is mounted on the lower feeding tracks, the lower feeding mechanism is mounted on the lifting device, the upper feeding mechanism is mounted on the upper feeding tracks, a conveying mechanism is mounted on the side of the upper feeding tracks, and feeding position sensors are mounted on the sides of both the lower and upper feeding tracks.
[0007] Preferably, the lifting device includes a movable base, the two sides of which are fixed to the sliders of two sets of lower feeding tracks, a lifting cylinder is fixed to the bottom surface in the middle of the movable base, linear bearings are provided at the four corners of the movable base, linear slide rods are slidably connected to the linear bearings, and a synchronous fixing rod is provided at the bottom of the linear slide rods.
[0008] Preferably, the lower feeding mechanism includes a lifting plate, which is fixed on a linear slide bar. A cylinder connecting seat is fixed on the bottom surface of the middle of the lifting plate, and the lower part of the cylinder connecting seat is connected to the piston rod of the lifting cylinder. The upper feeding mechanism includes a movable plate, and the two sides of the movable plate are fixed on the sliders of two sets of upper feeding tracks.
[0009] Preferably, the conveying mechanism includes a conveying servo motor and a transmission wheel. The conveying servo motor consists of two stacked motors placed at the ends of the lower and upper feeding tracks. A transmission wheel is mounted on the power output shaft of the conveying servo motor. A transmission wheel is also mounted at the other end of the lower and upper feeding tracks. A synchronous transmission belt is provided between the transmission wheels at both ends of the lower and upper feeding tracks.
[0010] Preferably, the side of the lifting plate is fixedly connected to the synchronous conveyor belt via a connecting block, and the side of the movable plate is fixedly connected to the synchronous conveyor belt via a connecting block.
[0011] Preferably, both the lower and upper feeding mechanisms have two sets of flipping hot pressing devices. Each flipping hot pressing device includes a hot pressing base plate and a flipping servo motor. The hot pressing base plate is fixed to the lifting plate and the movable plate by several pads. A suction plate is provided on the top of the hot pressing base plate. A flipping bearing seat is provided at one end of the suction plate. The flipping servo motor is connected to the lifting plate and the movable plate through a motor fixing plate. The flipping hot pressing device also includes a flipping heating plate symmetrically arranged with the suction plate. Both ends of the flipping heating plate are provided with flipping lock heads. One end of the flipping lock head is movably connected to the flipping bearing seat, and the other end of the flipping lock head is connected to the power output main shaft of the flipping servo motor. A flipping position sensor is also provided on the motor fixing plate on the side of the flipping servo motor.
[0012] Preferably, the lower feeding mechanism is vertically lifted by the power of the lifting cylinder, and the lower feeding mechanism moves laterally on the lower feeding track by the power of the conveying servo motor, and the upper feeding mechanism moves laterally on the upper feeding track by the power of the conveying servo motor.
[0013] Preferably, the rotating heating plate is rotated to fit against the suction plate by the power of the rotating servo motor.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] 1. This utility model discloses a dispensing machine with a double-layer feeding structure. By adopting a double-layer structure on an integrated base, the lower feeding mechanism can be vertically raised and lowered by the power of a lifting cylinder, and then horizontally moved on the lower feeding track by the power of a conveying servo motor. The upper feeding mechanism can be horizontally moved on the upper feeding track by the power of a conveying servo motor. When the upper feeding mechanism moves horizontally, the lower feeding mechanism can descend to the lower part of the upper feeding mechanism. When the upper feeding mechanism returns, the lower feeding mechanism can rise to the same height as the upper feeding mechanism, thereby achieving the purpose of alternating conveying and processing, and increasing work efficiency.
[0016] 2. This utility model discloses a dispensing machine with a double-layer feeding structure. By setting two sets of flipping hot pressing devices with flipping structures on both the lower and upper feeding mechanisms, a multi-processing position is formed, which can realize efficient, accurate and stable alternating material feeding and dispensing operations, and meet the industry's requirements for high production efficiency and process reliability. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the internal structure of this utility model;
[0019] Figure 3 This is another view of the internal structure of this utility model;
[0020] Figure 4 This is a side view of the internal structure of this utility model;
[0021] Figure 5 This is a schematic diagram of the flipping hot pressing device of this utility model. Detailed Implementation
[0022] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or / several" as used herein includes any and all combinations of one or more of the associated listed items.
[0024] Example 1:
[0025] like Figure 1-4 As shown, this utility model discloses a dispensing machine with a double-layer feeding structure, including a base 1, a feeding mechanism 2, a machine body 3, and a control box 4. The feeding mechanism 2 and the machine body 3 are mounted on the base 1, and the control box 4 is mounted on the side of the machine body 3. The feeding mechanism 2 includes a lower feeding mechanism 21 and an upper feeding mechanism 22. Both the lower feeding mechanism 21 and the upper feeding mechanism 22 are equipped with a flipping hot pressing mechanism 30. The base 1 is equipped with a lower feeding rack 11 and an upper feeding rack 12. The lower feeding rack 11 is equipped with two sets of parallel lower feeding tracks 110, and the upper feeding rack 12 is equipped with two sets of parallel upper feeding tracks 120. A lifting device 24 is installed on top of 110. A lower feeding mechanism 21 is installed on the lifting device 24, and an upper feeding mechanism 22 is installed on the upper feeding track 120. A conveying mechanism 23 is installed on the side of the upper feeding track 120. Feeding position sensors 25 are installed on the sides of both the lower and upper feeding tracks 110 and 120. The feeding position sensors 25 can accurately locate the lateral movement stop position of the lower feeding mechanism 21 and the upper feeding mechanism 22. The lifting device 24 includes a movable base 240. The two sides of the movable base 240 are fixed to the sliders of the two sets of lower feeding tracks 110, and the bottom surface in the middle of the movable base 240 is fixed. The system includes a lifting cylinder 241, and linear bearings 242 at each of the four corners of the movable base 240. Linear slide rods 243 are slidably connected to the linear bearings 242, and synchronous fixing rods 244 are located at the bottom of the linear slide rods 243. The lower feeding mechanism 21 includes a lifting plate 210, which is fixed to the linear slide rods 243. A cylinder connecting seat 211 is fixed to the bottom surface of the middle of the lifting plate 210, and the lower part of the cylinder connecting seat 211 is connected to the piston rod of the lifting cylinder 241. The upper feeding mechanism 22 includes a movable plate 220, whose two sides are fixed to the sliders of two sets of upper feeding tracks 120. The conveying mechanism 23 includes a conveying... The servo motor 230 and the transmission wheel 231 are arranged in two stacked layers at the ends of the lower feeding track 110 and the upper feeding track 120. The transmission wheel 231 is provided on the power output shaft of the servo motor 230. The other end of the lower feeding track 110 and the upper feeding track 120 is also provided with a transmission wheel 231. A synchronous transmission belt 232 is provided between the transmission wheels 231 at both ends of the lower feeding track 110 and the upper feeding track 120. The side of the lifting plate 210 is fixedly connected to the synchronous transmission belt 232 through a connecting block. The side of the movable plate 220 is fixedly connected to the synchronous transmission belt 232 through a connecting block.
[0026] The lower feeding mechanism 21 is vertically lifted by the power of the lifting cylinder 241, and the lower feeding mechanism 21 is horizontally moved on the lower feeding track 110 by the power of the conveying servo motor 230. The upper feeding mechanism 22 is horizontally moved on the upper feeding track 120 by the power of the conveying servo motor 230.
[0027] By adopting a double-layer structure on an integrated base, the lower feeding mechanism can be vertically raised and lowered by the power of the lifting cylinder, and then moved laterally on the lower feeding track by the power of the conveying servo motor. The upper feeding mechanism can be moved laterally on the upper feeding track by the power of the conveying servo motor. When the upper feeding mechanism moves laterally, the lower feeding mechanism can descend to the lower part of the upper feeding mechanism. When the upper feeding mechanism returns, the lower feeding mechanism can rise to the same height as the upper feeding mechanism, thereby achieving the purpose of alternating conveying and processing and increasing work efficiency.
[0028] Example 2:
[0029] like Figure 1-4 As shown, this utility model discloses a dispensing machine with a double-layer feeding structure. Two sets of flipping hot-pressing mechanisms 30 are installed on both the lower feeding mechanism 21 and the upper feeding mechanism 22. Each flipping hot-pressing mechanism 30 includes a hot-pressing base plate 31 and a flipping servo motor 35. The hot-pressing base plate 31 is fixed to the lifting plate 210 and the movable plate 220 by several pads 32. A suction plate 33 is installed on the top of the hot-pressing base plate 31, and a flipping bearing seat 36 is installed at one end of the suction plate 33. The flipping servo motor 35 is connected to the lifting plate 210 and the movable plate 220 through a motor fixing plate 34. The flipping hot-pressing mechanism 30 also includes… The device includes a rotating heating plate 38 symmetrically arranged with the suction plate 33. Both ends of the rotating heating plate 38 are provided with rotating lock heads 37. One rotating lock head 37 is movably connected to the rotating bearing seat 36, and the other rotating lock head 37 is connected to the power output spindle of the rotating servo motor 35. A rotating position sensor 39 is also provided on the motor fixing plate 34 on the side of the rotating servo motor 35. The rotating position sensor 39 can accurately locate the stop position of the rotating heating plate 38 driven by the rotating servo motor 35. The rotating heating plate 38 is rotated to fit with the suction plate 33 by the power of the rotating servo motor 35.
[0030] By setting two sets of flipping hot press devices with flipping structures on both the lower and upper feeding mechanisms, a multi-processing position can be formed, which can realize efficient, accurate and stable alternating material feeding and dispensing operations, meeting the industry's requirements for high production efficiency and process reliability.
[0031] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A dispensing machine with a double-layer feeding structure, comprising: The machine base (1), feeding mechanism (2), machine body (3), and control box (4) are characterized in that: the feeding mechanism (2) and machine body (3) are set on the machine base (1), the control box (4) is set on the side of the machine body (3), the feeding mechanism (2) includes a lower feeding mechanism (21) and an upper feeding mechanism (22), both the lower feeding mechanism (21) and the upper feeding mechanism (22) are provided with a flipping hot pressing device (30), the machine base (1) is provided with a lower feeding rack (11) and an upper feeding rack (12), and the lower feeding rack (11) is provided with two sets of flat... The lower feeding track (110) is arranged in a row, and the upper feeding rack (12) is provided with two sets of parallel upper feeding tracks (120). A lifting device (24) is provided on the lower feeding track (110), the lower feeding mechanism (21) is provided on the lifting device (24), the upper feeding mechanism (22) is provided on the upper feeding track (120), and a conveying mechanism (23) is provided on the side of the upper feeding track (120). Feeding position sensors (25) are provided on the sides of both the lower feeding track (110) and the upper feeding track (120).
2. The dispensing machine with a double-layer feeding structure according to claim 1, characterized in that: The lifting device (24) includes a movable base (240), the two sides of the movable base (240) are fixed on the sliders of two sets of lower feeding tracks (110), the bottom surface of the movable base (240) is fixed with a lifting cylinder (241), the four corners of the movable base (240) are provided with linear bearings (242), the linear bearings (242) are slidably connected with linear slide rods (243), and the bottom of the linear slide rods (243) is provided with synchronous fixing rods (244).
3. The dispensing machine with a double-layer feeding structure according to claim 1, characterized in that: The lower feeding mechanism (21) includes a lifting plate (210), which is fixed on a linear slide bar (243). A cylinder connecting seat (211) is fixed on the bottom surface of the middle of the lifting plate (210). The lower part of the cylinder connecting seat (211) is connected to the piston rod of the lifting cylinder (241). The upper feeding mechanism (22) includes a movable plate (220), which is fixed on both sides of the movable plate (220) on the sliders of two sets of upper feeding tracks (120).
4. The dispensing machine with a double-layer feeding structure according to claim 1, characterized in that: The conveying mechanism (23) includes a conveying servo motor (230) and a transmission wheel (231). The conveying servo motor (230) consists of two stacked units placed at the ends of the lower feeding track (110) and the upper feeding track (120). The power output shaft of the conveying servo motor (230) is equipped with a transmission wheel (231). The other ends of the lower feeding track (110) and the upper feeding track (120) are also equipped with transmission wheels (231). A synchronous transmission belt (232) is provided between the transmission wheels (231) at both ends of the lower feeding track (110) and the upper feeding track (120).
5. A dispensing machine with a double-layer feeding structure according to claim 3, characterized in that: The side of the lifting plate (210) is fixedly connected to the synchronous transmission belt (232) via a connecting block, and the side of the movable plate (220) is fixedly connected to the synchronous transmission belt (232) via a connecting block.
6. The dispensing machine with a double-layer feeding structure according to claim 1, characterized in that: The flipping hot pressing device (30) on both the lower feeding mechanism (21) and the upper feeding mechanism (22) consists of two sets. The flipping hot pressing device (30) includes a hot pressing base plate (31) and a flipping servo motor (35). The hot pressing base plate (31) is fixed to the lifting plate (210) and the movable plate (220) by several pads (32). A suction plate (33) is provided on the top of the hot pressing base plate (31). A flipping bearing seat (36) is provided at one end of the suction plate (33). The flipping servo motor (35) is connected by a motor fixing plate (34). Connected to the lifting plate (210) and the movable plate (220), the flipping hot press device (30) also includes a flipping heating plate (38) symmetrically arranged with the suction plate (33). Both ends of the flipping heating plate (38) are provided with flipping lock heads (37). One end of the flipping lock head (37) is movably connected to the flipping bearing seat (36), and the other end of the flipping lock head (37) is connected to the power output spindle of the flipping servo motor (35). A flipping position sensor (39) is also provided on the motor fixing plate (34) on the side of the flipping servo motor (35).
7. A dispensing machine with a double-layer feeding structure according to claim 1, characterized in that: The lower feeding mechanism (21) is vertically lifted by the power of the lifting cylinder (241), and the lower feeding mechanism (21) moves laterally on the lower feeding track (110) by the power of the conveying servo motor (230). The upper feeding mechanism (22) moves laterally on the upper feeding track (120) by the power of the conveying servo motor (230).
8. A dispensing machine with a double-layer feeding structure according to claim 6, characterized in that: The flip heating plate (38) is flipped by the power of the flip servo motor (35) until it fits against the suction plate (33).