Three-sequin stacking and feeding device

By concentrating the drive motor on one side and optimizing the layout of the transmission components, the problems of large lateral space and cutter interference in the existing embroidery machine feeding device are solved, making it suitable for small-head-distance embroidery machines.

CN223593002UActive Publication Date: 2025-11-25杭州慧群机电设备有限公司
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Patent Information

Application Number
CN202423075221.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-11-25
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

The existing multi-functional embroidery machine's feeding device has a large lateral space occupied by the drive motors distributed on both sides of the end seat, making it unsuitable for embroidery machines with a small head-to-head distance. Furthermore, the cutting assembly is prone to interference with the bead feeding device.

Method used

The drive motors are concentrated on one side to reduce the lateral space occupied, and the cutter assembly is placed at the end of the feeding base plate away from the end seat to avoid interference with the bead feeding device. The transmission path is optimized by using a synchronous belt assembly and a transmission assembly.

Benefits of technology

It enables the effective layout of the feeding device on embroidery machines with a small head-to-head distance, reduces the lateral space occupied, avoids interference between the cutting assembly and the bead feeding device, and is suitable for embroidery machines with a small head-to-head distance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a three-sequin stacking and feeding device which comprises an end seat, a sequin feeding bottom plate, a first sequin feeding mechanism, a second sequin feeding mechanism, a third sequin feeding mechanism and a slicing mechanism, the first sequin feeding mechanism, the second sequin feeding mechanism and the third sequin feeding mechanism are arranged at the upper end of the sequin feeding bottom plate and sequentially stacked from top to bottom, and a first sequin shifting assembly, a first motor for driving the first sequin shifting assembly and a first transmission assembly are arranged on the first sequin feeding mechanism; the second sheet feeding mechanism is provided with a second sheet shifting assembly, a second motor for driving the second sheet shifting assembly and a second transmission assembly; the third piece feeding mechanism is provided with a third piece shifting assembly, a third motor for driving the third piece shifting assembly and a third transmission assembly, the third piece feeding mechanism further comprises a corresponding cutter assembly and a cutter transmission assembly, the cutter transmission assembly is arranged on the end base and located on the other side where the motor is installed, and the cutter assembly is arranged at the end, away from the end base, of the piece feeding bottom plate. The cutter assembly occupies a small transverse space and is suitable for the embroidery machine with a small head distance, and the cutter assembly is not easy to interfere with other devices.
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Description

TECHNICAL FIELD

[0001] The utility model relates to embroidery machine technical field especially three gold sheet laminated sheet feeding device. BACKGROUND

[0002] The existing multifunctional embroidery machine is usually provided with a sheet feeding device and a bead feeding device on one side of the head, the existing three gold sheet laminated sheet feeding device comprises an end seat, a sheet feeding bottom plate connected with the lower end of the end seat, three groups of sheet feeding mechanisms, corresponding three groups of sheet shifting assemblies and a sheet cutting mechanism which are sequentially and laminatedly arranged on the upper end of the sheet feeding bottom plate, and further comprises a driving motor, because the three groups of sheet shifting assemblies need to be driven to shift the sheets and the sheet cutting mechanism needs to be driven to cut the sheets, the driving motor is generally provided with at least three, and in the prior art, the driving motors are usually distributed on both sides of the end seat, and the cutter transmission assembly is usually arranged on the side of the end seat close to the motor mounting plate, since the side of the motor mounting plate is close to the bead feeding device, in order to avoid the mutual interference between the sheet feeding device and the bead feeding device, a gap is arranged on the side of the sheet feeding device close to the bead feeding device, and if the cutter handle is installed on the side, the installation and layout of the cutter will be affected. SUMMARY

[0003] In order to solve the problems of the prior art, the utility model provides a three gold sheet laminated sheet feeding device, the driving motor is arranged on one side, the transverse occupied space is reduced as much as possible, and the utility model is suitable for the embroidery machine with small head distance.

[0004] The technical scheme adopted is as follows:

[0005] A three gold sheet laminated sheet feeding device, comprising an end seat, a sheet feeding bottom plate arranged at the lower end of the end seat, a first sheet feeding mechanism, a second sheet feeding mechanism and a third sheet feeding mechanism which are sequentially and laminatedly arranged on the upper end of the sheet feeding bottom plate from top to bottom, and a sheet cutting mechanism, a first sheet shifting assembly, a first motor for driving the first sheet shifting assembly and a first transmission assembly are arranged on the first sheet feeding mechanism, a second sheet shifting assembly, a second motor for driving the second sheet shifting assembly and a second transmission assembly are arranged on the second sheet feeding mechanism, a third sheet shifting assembly, a third motor for driving the third sheet shifting assembly and a third transmission assembly are arranged on the third sheet feeding mechanism, and further comprising a corresponding cutter assembly and a cutter transmission assembly, the driving motor of the sheet cutting mechanism is any one of the first motor to the third motor, the cutter transmission assembly is arranged on the other side of the end seat where the motor is arranged, and the cutter assembly is arranged on the end of the sheet feeding bottom plate away from the end seat.

[0006] Further, the driving motor for driving the sheet cutting mechanism is the first motor.

[0007] Further, the first, second and third dial components each comprise a dial rod and a dial driving arm, the dial driving arm is provided with a rotating pin, and the rotating pin is provided with a reset spring, and the connection part of the dial rod and the driving arm is provided with a reset torsion spring.

[0008] Further, the first transmission component comprises a first transmission rod for driving the dial rod of the first dial component to swing, and a first driving rod for driving the first transmission rod to swing, and the first driving rod is provided with a first synchronous belt component between the first driving rod and the first motor.

[0009] Further, the second transmission component comprises a transmission shaft, a second synchronous belt component provided between the second motor and the transmission shaft, and a third synchronous belt component provided between the transmission shaft and the dial rod of the second dial component.

[0010] Further, the third transmission component comprises a fourth synchronous belt component provided between the third motor and the dial rod of the third dial component.

[0011] Further, the cutter component comprises three cutter blades corresponding to the three feeding mechanisms, and a driving shaft for driving the cutter blades to rotate.

[0012] Further, the cutter transmission component comprises a driving handle provided on the first motor, a transmission rod rotatably provided on the end base, one end of the transmission rod is matched with the driving handle, the other end of the transmission rod is connected with a pull rod, and the pull rod is connected with the driving shaft through a transmission block component.

[0013] Further, the first, second and third motors are installed on the same side of the end base.

[0014] Compared with the prior art, the present application has the following beneficial effects:

[0015] The present application provides a three-gold-leaf stacking and feeding device, which comprises first, second and third feeding mechanisms stacked in sequence from top to bottom, and first, second and third motors for driving the three feeding mechanisms respectively, and the first, second and third motors are installed on the same side. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 Fig. 1 is a schematic view of the overall structure of the present application at an angle;

[0017] Figure 2The disassembling view of the utility model;

[0018] Figure 3 The partial structure schematic view of the utility model;

[0019] Figure 4 The overall structure schematic view of another angle of the utility model;

[0020] The first driving rod 3032, the first synchronous belt assembly 3033, the second sending piece mechanism 4, the second driving piece assembly 401, the second motor 402, the second transmission assembly 403, the transmission shaft 4031, the second synchronous belt assembly 4032, the third synchronous belt assembly 4033, the third sending piece mechanism 5, the third driving piece assembly 501, the third motor 502, the third transmission assembly 503, the cutting mechanism 6, the cutting knife assembly 601, the three-folded piece cutting knife 6011, the driving shaft 6012, the cutting knife transmission assembly 602, the driving handle 6021, the transmission rod 6022, the pull rod 6023, the transmission block assembly 6024, the driving piece rod 7, the driving piece driving arm 8, the reset torsional spring 9, the rotating pin 10 and the reset spring 11. DETAILED DESCRIPTION

[0021] The utility model will be further described in connection with specific embodiment.

[0022] Reference Figures 1-4 A three gold piece folded piece sending device, including end seat 1, be equipped with sending piece bottom plate 2 in the lower end of end seat, be equipped with first sending piece mechanism 3, second sending piece mechanism 4, third sending piece mechanism 5 and cutting mechanism 6 in the upper end of sending piece bottom plate 2 and from top to bottom sequentially layering settings, first sending piece mechanism 3 is equipped with first driving piece assembly 301, the first motor 302 of driving first driving piece assembly and first transmission assembly 303, second sending piece mechanism 4 is equipped with second driving piece assembly 401, the second motor 402 of driving second driving piece assembly and second transmission assembly 403, third sending piece mechanism 5 is equipped with third driving piece assembly 501, the third motor 502 of driving third driving piece assembly and third transmission assembly 503, still including corresponding cutting knife assembly 601 and cutting knife transmission assembly 602, the drive motor of cutting mechanism 6 is any one of first to third motor, according to the installation and layout of motor arrangement as required. At least one motor drives driving piece assembly simultaneously and drives cutting mechanism, in the embodiment, the drive motor of cutting mechanism 6 is first motor 302.

[0023] The first, second and third motors are installed on the same side of the end base 1, compared with the prior art in which the motors are distributed on both sides, the utility model only sets the motor on one side, and the occupied horizontal space is reduced as much as possible, and is suitable for the embroidery machine with small head distance; due to the installation space of the end base 1, the cutter assembly 601 is arranged at the end, away from the end base 1, of the sheet feeding bottom plate 2, and the cutter transmission assembly 602 is arranged at the other side of the end base 1, away from the motor installation. The end base is usually close to other devices, such as a bead feeding device, the cutter assembly 601 is arranged at the end, away from the end base, so that the interference between the cutter assembly and the bead feeding device is reduced, and especially, the cutter handle is arranged at the end, away from the end base, so that the installation of the cutter is not affected if a gap for avoiding is arranged on the sheet feeding device.

[0024] The first, second and third piece driving assemblies each comprise a piece driving rod 7 and a piece driving arm 8, the piece driving arm 8 is provided with a rotating pin 10, the rotating pin 10 is provided with a reset spring 11, and the connecting position of the piece driving rod and the driving arm is provided with a reset torsion spring 9. The first, second and third piece driving assemblies are arranged on the side of the end base, away from the motor installation.

[0025] The first transmission assembly 303 comprises a first transmission rod 3031 for driving the first piece driving assembly 301 to swing and a first driving rod 3032 for driving the first transmission rod to swing, and a first synchronous belt assembly 3033 is arranged between the first driving rod and the first motor. The end base is provided with a groove for accommodating the first synchronous belt assembly 3033, the first transmission assembly 303 is arranged on the side of the end base, close to the motor installation, one end of the first transmission rod 3031 is coaxially arranged with the piece driving rod of the first piece driving assembly 301, and the other end is provided with an extension rod matched with the first driving rod 3032, and the first driving rod 3032 is provided with a driving cam matched with the extension rod. The first motor drives the first driving rod 3032 to swing through the first synchronous belt assembly 3033, the first driving rod 3032 drives the first transmission rod 3031 to swing, so as to drive the first piece driving assembly 301 to drive the piece.

[0026] The second transmission assembly 403 comprises a transmission shaft 4031, a second synchronous belt assembly 4032 arranged between the second motor and the transmission shaft, and a third synchronous belt assembly 4033 arranged between the transmission shaft and the piece driving rod of the second piece driving assembly. The third synchronous belt assembly 4033 is arranged on the side of the motor installation, the second synchronous belt assembly 4032 is arranged on the opposite side, and the end base is provided with a groove for accommodating the second synchronous belt assembly 4032. The second motor drives the transmission shaft 4031 to rotate through the second synchronous belt assembly 4032, and then drives the second piece driving assembly to drive the piece through the third synchronous belt assembly.

[0027] The third transmission assembly 503 is a fourth synchronous belt assembly arranged between the third motor and the third dial piece assembly.

[0028] The cutter assembly 601 includes three sets of three-fold cutters 6011 corresponding to the three sets of sheet feeding mechanisms, and a drive shaft 6012 for driving the rotation of the cutters.

[0029] The cutter transmission assembly 602 includes a drive handle 6021 arranged on the first motor, a transmission rod 6022 rotatably arranged on the end seat 1, one end of the transmission rod 6022 being matched with the drive handle 6021, the other end being connected with a pull rod 6023, the pull rod 6023 being connected with the drive shaft 6012 through a transmission block assembly 6024. The drive handle 6021 is arranged on the output shaft of the first motor, and the drive handle 6021 and the transmission rod 6022 are arranged on the side of the end seat away from the motor installation side. The first motor drives the drive handle 6021 to swing, drives the pull rod 6023 to move up and down through the transmission rod 6022, and drives the drive shaft 6012 to rotate through the transmission block assembly 6024, so as to drive the cutters to cut sheets.

[0030] The transmission assemblies of the utility model are arranged on the end seat, and the end seat is further provided with a groove for accommodating part of the conveying belt assembly, so that the space is reasonably utilized, and the occupied horizontal space is small.

[0031] The above is only an optional embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made under the inventive concept of the utility model, or direct / indirect application in other related technical fields is included in the patent protection range of the utility model.

Claims

1. A three-gold piece laminating and feeding device, comprising an end seat (1), a feeding bottom plate (2) arranged at the lower end of the end seat, a first feeding mechanism (3), a second feeding mechanism (4), and a third feeding mechanism (5) arranged in sequence from top to bottom at the upper end of the feeding bottom plate, and a cutting mechanism (6), wherein the first feeding mechanism (3) is provided with a first piece poking assembly (301), a first motor (302) for driving the first piece poking assembly, and a first transmission assembly (303); the second feeding mechanism (4) is provided with a second piece poking assembly (401), a second motor (402) for driving the second piece poking assembly, and a second transmission assembly (403); the third feeding mechanism (5) is provided with a third piece poking assembly (501), a third motor (502) for driving the third piece poking assembly, and a third transmission assembly (503); and the device further comprises a corresponding cutter assembly (601) and a cutter transmission assembly (602), and the driving motor of the cutting mechanism (6) is any one of the first to third motors, characterized in that: The cutter transmission assembly (602) is arranged on the other side of the end seat (1) where the motor is installed, and the cutter assembly (601) is arranged on the end of the film feeding bottom plate (2) away from the end seat (1). ​ 2. The three coin stack coin feed device of claim 1 wherein: The driving motor of the slicing mechanism (6) is a first motor (302).

3. The three coin stack dispensing apparatus of claim 1 wherein: The first, second and third piece shifting assemblies each include a piece shifting rod (7) and a piece shifting driving arm (8), the piece shifting driving arm (8) is provided with a rotating pin (10), the rotating pin (10) is provided with a reset spring (11), and the connecting position of the piece shifting rod and the driving arm is provided with a reset torsion spring (9).

4. The three coin stack dispensing apparatus of claim 1 wherein: The first transmission assembly (303) includes a first transmission rod (3031) for driving the piece shifting rod of the first piece shifting assembly (301) to swing, and a first driving rod (3032) for driving the first transmission rod to swing, and a first synchronous belt assembly (3033) is arranged between the first driving rod and the first motor.

5. The three coin stack coin feed device of claim 1 wherein: The second transmission assembly (403) includes a transmission shaft (4031), a second synchronous belt assembly (4032) arranged between the second motor and the transmission shaft, and a third synchronous belt assembly (4033) arranged between the transmission shaft and the piece shifting rod of the second piece shifting assembly.

6. The three coin stack dispensing apparatus of claim 1 wherein: The third transmission assembly (503) is a fourth synchronous belt assembly arranged between the third motor and the piece shifting rod of the third piece shifting assembly.

7. The three coin stack dispensing apparatus of claim 1 wherein: The cutter assembly (601) includes three piece shifting cutters (6011) corresponding to the three film feeding mechanisms, and a driving shaft (6012) for driving the cutters to rotate.

8. The three coin stack dispensing apparatus of claim 1 wherein: The cutter transmission assembly (602) includes a driving handle (6021) arranged on the first motor, and a transmission rod (6022) arranged on the end seat (1), one end of the transmission rod is matched with the driving handle (6021), the other end is connected with a pull rod (6023), and the pull rod (6023) is connected with the driving shaft (6012) through a transmission block assembly (6024).

9. The three coin stack dispensing apparatus of claim 1 wherein: The first, second and third motors are installed on the same side of the end seat (1).