Transplanting type button feeding device
By designing a transfer-type button feeding device and utilizing the collaborative work of multiple mechanisms, the problems of insufficient adaptability and positioning accuracy of existing devices were solved, and efficient and accurate automatic button delivery was achieved, thereby improving production efficiency and safety.
Patent Information
- Application Number
- CN202422571146.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-10-24
AI Technical Summary
The existing button feeding device is difficult to adapt to the sewing machine and the vibration plate, has low degree of freedom, poor flexibility, and insufficient positioning accuracy, resulting in low production efficiency and high defect rate.
A transfer button feeding device is designed, which includes a channel adjustment component, a button feeding component and a button clamping component. The button removal and feeding processes are controlled by a cam mechanism and a cylinder, and automatic conveying is achieved through the collaborative work of multiple mechanisms.
It improves production efficiency and button feeding positioning accuracy, improves work efficiency and safety, has adjustable operating speed and higher positioning accuracy.
Smart Images

Figure CN223329499U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of automatic button-making equipment, in particular to a transplanting type button-feeding device. Background Art
[0002] In the production process of the clothing industry, for clothing with buttons, the buttons are generally sewn on the clothes through a sewing machine. In this process, the conventional working method in the past was to manually remove and install the buttons for production. However, this working method has low processing efficiency and it is difficult to ensure the positioning accuracy when installing the buttons. In order to improve production efficiency, it is necessary to replace manual operation with automation. The more common practice is to use a vibration plate to load the buttons, and then use a robot or other device to send the buttons to the sewing machine. However, conventional robot and other button feeding devices have the following disadvantages: First, it is difficult for ordinary button feeding devices to adapt to the sewing machine and the vibration plate at the same time. They have low degree of freedom and poor flexibility. It is difficult to simultaneously meet the requirements of removing and feeding buttons at the vibration plate and subsequently cooperating with the sewing machine to position the buttons. Secondly, the positioning accuracy of conventional button feeding devices is poor. For small products such as buttons, it is difficult to accurately feed buttons, which is more likely to cause product defects. In addition, its operating speed is difficult to further improve, and work efficiency is difficult to ensure.
[0003] Therefore, in view of the above-mentioned technical problems, it is necessary to provide a new technical solution. Utility Model Content
[0004] The purpose of the utility model is to provide a transfer-type button feeding device with higher production efficiency and safety, more accurate and faster operation processes such as button feeding and positioning.
[0005] In order to solve the above technical problems, the present invention provides a transplanting button feeding device, and the specific technical solution is as follows:
[0006] A transfer-type button feeding device is used to be installed between a vibrating disk and a sewing machine and transfer buttons with button handles, including a channel adjustment component connected to the vibrating disk and a clip component connected to the sewing machine through a support frame, a button feeding component is installed between the channel adjustment component and the clip component, and the button feeding component includes a cam mechanism and a button taking mechanism controlled by the cam mechanism to perform reciprocating motion to transfer buttons; the channel adjustment mechanism includes a first cylinder and a limiting channel, the limiting channel is located at the discharge port of the vibrating disk, and the limiting channel includes a pair of adjustable channel plates, the first cylinder is a double-claw finger cylinder, the first cylinder is installed on one side of the vibrating disk in a liftable manner, and the double claws of the first cylinder are respectively connected and fixed to a pair of L-shaped connecting frames, and the two connecting frames are respectively connected and fixed to the two channel plates at one end away from the first cylinder, and the two connecting frames drive the two channel plates to rise and fall synchronously under the action of the first cylinder.
[0007] Preferably, the channel adjustment assembly also includes a transverse knob arranged transversely and perpendicular to the two connecting frames and a longitudinal knob arranged longitudinally and vertically, the first cylinder is in a long-through state to ensure that the two connecting frames remain tightened, the screw of the transverse knob passes through one of the connecting frames and is threadedly connected to the connecting frame, and the screw end of the transverse knob is in contact with the inner side surface of the other connecting frame to facilitate adjustment of the spacing between the two connecting frames; the channel adjustment assembly also includes a fixed plate, the vibration disk is mounted on a frame fixed to the ground, the fixed plate is connected and fixed to the frame, and a first slide rail is also installed on the fixed plate, and the first cylinder is mounted on the fixed plate through the first slide rail for easy lifting and lowering movement; an extension plate is fixedly provided on the connecting frame, the longitudinal knob penetrates the extension plate and is threadedly connected to the extension plate, and the end of the longitudinal knob is in contact with the fixed plate, and the height of the connecting frame and the first cylinder is adjusted by rotating the longitudinal knob to control the lifting and lowering of the first cylinder machine limit channel.
[0008] Preferably, a latch mechanism is further installed at the end of the limiting channel away from the vibrating disk, and the latch mechanism includes a latch base fixed on any channel plate, a first bolt is installed on the top surface of the latch base, a 7-shaped spring is mounted on the first bolt, a connecting piece is installed on the side of the latch base close to the gap between the two channel plates, the connecting piece is connected and fixed to the latch base by a second bolt, and a latch block piece is also installed on the outside of the connecting piece, and the latch block piece is connected and fixed to the latch base by a third bolt, and the top of the latch block piece is also connected to the 7-shaped spring to facilitate rebound and reset after material passing, and a limiting protrusion is provided on the connecting piece to limit the rotation direction of the latch block piece and prevent the latch block piece from excessively rebounding.
[0009] Preferably, through holes are provided on the connecting plate and the arresting base to facilitate connection of the second bolt and the third bolt to the arresting base, and the through holes are vertically arranged long waist holes to facilitate fine adjustment of the upper and lower positions.
[0010] Preferably, the cam mechanism includes a driving motor and a cam slot plate with a cam slot, the cam slot plate is fixed on a cam seat, a pendulum block is provided on the side of the cam slot plate away from the driving motor, and a swing arm is provided on the side of the swing block away from the cam slot plate, the driving shaft of the driving motor passes through the cam seat and the cam slot plate in sequence and is connected and fixed to one end of the pendulum block, and a connecting shaft arranged perpendicular to the pendulum block is installed at the other end of the pendulum block, the connecting shaft can rotate around its own axis, and one end of the connecting shaft is inserted into the cam slot, and the other end is connected and fixed to the swing arm, and the swing arm and the cam slot plate are connected by a guide rail slider to facilitate limiting the movement path of the swing arm.
[0011] Preferably, a waist hole is provided at one end of the pendulum block connected to the connecting shaft, the connecting shaft is installed in the waist hole, and a first sleeve and a second sleeve separated by a gasket are fixed on the connecting shaft, the first sleeve is located in the waist hole and the height of the first sleeve does not exceed the thickness of the waist hole, the second sleeve is located in the cam groove and the height of the second sleeve is adapted to the thickness of the cam groove, and a limiting sleeve is also provided on the connecting shaft to fix the first sleeve and the second sleeve.
[0012] Preferably, the buckle removal mechanism includes a second cylinder and a third cylinder, the second cylinder is connected and fixed to the end of the swing arm away from the swing block, the third cylinder is fixedly mounted on the third cylinder mounting plate, the third cylinder mounting plate is arranged perpendicular to the second cylinder, and the third cylinder mounting plate and the second cylinder are slidably connected by a second slide rail so that the third cylinder mounting plate is driven by the second cylinder and moves along the telescopic direction of the second cylinder, and a pair of clamping arms are also installed on the third cylinder mounting plate, and the driving end of the third cylinder is fixedly connected to the clamping arm push plate located on the side surfaces of the two clamping arms, and the side surfaces of the two clamping arms are respectively rotatably fixed with roller bearings, and the clamping arm push plate is provided with strip grooves respectively adapted to the roller bearings on the two clamping arms, and the two strip grooves are arranged obliquely to form an eight-shaped groove to facilitate the control of the approach or distance of the two clamping arms.
[0013] Preferably, the clip assembly includes a fourth cylinder mounted on a fourth cylinder seat and a fifth cylinder mounted on a fifth cylinder mounting plate, the fourth cylinder seat and the fifth cylinder mounting plate are connected and fixed by an adjustable connecting plate, and the connecting plate is connected and fixed to the support frame to support the clip assembly; the fourth cylinder seat is also equipped with a top clip arm driven by the fourth cylinder for swinging, and a pair of button clamps are installed on the fifth cylinder mounting plate, the two button clamps are connected to a button clamp push plate driven by the fifth cylinder to drive the opening and closing of the two button clamps, and a presser foot connected and fixed to the fifth cylinder mounting plate is also provided in the center of the two button clamps, when clamping a button, the two button clamps clamp the arc-shaped outer edge of the button, and at the same time the presser foot abuts against the top surface of the button with the button handle, and the bottom surface of the button is located on the swinging path of the top clip arm to facilitate the cooperation and clamping of the top clip arm and the presser foot.
[0014] Preferably, the fourth cylinder seat includes a seat body and a fourth cylinder mounting plate fixed to the outside of the seat body, the fourth cylinder mounting plate and the connecting plate are fixedly connected by bolts, a mounting cavity is opened inside the seat body, a gear shaft with one end in the shape of a gear is installed in the mounting cavity, the driving shaft of the fourth cylinder is a telescopic shaft, the telescopic shaft is provided with a rack groove adapted to the gear-shaped end of the gear shaft, the top buckle arm is fixed on the top buckle arm seat, the end of the gear shaft away from the gear-shaped end is fixedly connected to the top buckle arm seat, the gear shaft also passes through the fourth cylinder mounting plate, and the gear shaft and the fourth cylinder mounting plate are fixed by a rotatable connection of the cylinder sleeve.
[0015] Preferably, a strip groove is provided on the connecting plate at the connection with the fifth cylinder mounting plate, and the connecting plate and the fifth cylinder mounting plate are connected and fixed by a fastening screw passing through the strip groove and having a gasket for pressing the strip groove. By loosening the fastening screw, the position of the fastening screw in the strip groove can be adjusted to facilitate fine-tuning of the relative position of the fourth cylinder seat and the fifth cylinder mounting plate.
[0016] The utility model is a transplanting type button feeding device, which has the following beneficial effects:
[0017] The utility model's transfer-type button feeding device forms a complete button feeding process of automatic arrangement, button removal, button feeding and clipping through the cooperation of multiple mechanisms, improving the traditional manual button installation to fully automatic button installation, thereby improving production efficiency and production safety. At the same time, the structural coordination adopted has higher degree of freedom and precision. Compared with ordinary manipulators, its work efficiency and button feeding positioning accuracy are better, and the operating speed is infinitely adjustable.
[0018] Additional aspects and advantages of the present invention will be given in part in the following description and will become apparent from the following description or learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solution of the present invention, the following briefly introduces the drawings required for use in the embodiments or descriptions of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0020] Figure 1 A schematic diagram of the cooperation between a transfer-type button feeding device, a vibration plate and a sewing machine;
[0021] Figure 2 for Figure 1 A schematic structural diagram of a transfer-type button feeding device;
[0022] Figure 3 for Figure 2 Schematic diagram of the structure of the middle channel adjustment component;
[0023] Figure 4 for Figure 3 Exploded diagram of the middle arresting mechanism;
[0024] Figure 5 for Figure 2 Schematic diagram of the structure of the center buckle assembly;
[0025] Figure 6 for Figure 5 Exploded diagram of the cam mechanism;
[0026] Figure 7 for Figure 5 Schematic diagram of the structure of the buckle removal mechanism;
[0027] Figure 8 for Figure 2 Schematic diagram of the structure of the middle clip buckle assembly;
[0028] Figure 9 for Figure 8 A schematic structural diagram of the middle clip assembly from another perspective;
[0029] Figure 10 for Figure 8 Schematic diagram of the structure of the middle top buckle mechanism.
[0030] Among them, 1-channel adjustment component; 11-limiting channel; 111-channel plate; 12-first cylinder; 121-connecting frame; 122-horizontal knob; 123-longitudinal knob; 124-reset spring; 125-first slide rail; 126-extension plate; 13-intercepting mechanism; 131-intercepting base; 132-connecting plate; 133-intercepting blocking plate; 134-first bolt; 135-second bolt; 136-third bolt; 137-7-shaped spring; 14-fixing plate; 2-button delivery assembly; 21-cam mechanism; 211-drive motor; 212-cam slot plate; 2121-cam seat; 213-swing block; 2131-connecting shaft; 2132-first shaft sleeve; 2133-second shaft sleeve; 2134-limiting shaft sleeve ;214-swing arm;2141-guide rail slider;22-button removal mechanism;221-second cylinder;2211-second slide rail;222-third cylinder;2221-third cylinder mounting plate;2222-clamping arm;2223-clamping arm push plate;3-clamping assembly;31-fourth cylinder;311-telescopic shaft;32-fifth cylinder;321-fifth cylinder mounting plate;33-button clamp push plate;34-button clamp;341-presser foot;35-fourth cylinder seat;351-seat body;352-gear shaft;353-cylinder sleeve;354-fourth cylinder mounting plate;36-top button arm;361-top button arm seat;37-connecting plate;371-strip groove;4-vibration plate;41-frame;5-sewing machine;51-support frame;6-button. DETAILED DESCRIPTION
[0031] The following describes in detail embodiments of the present invention, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present invention, and should not be construed as limiting the present invention.
[0032] Example
[0033] See also Figures 1 to 10 , a transplanting button feeding device, used to be installed between the vibrating disk 4 and the sewing machine 5 and transfer buttons 6 with button handles, including a channel adjustment component 1 connected to the vibrating disk and a clip component 3 connected to the sewing machine through a support frame 51, a button feeding component 2 is installed between the channel adjustment component and the clip component, and the button feeding component 2 includes a cam mechanism 21 and a button taking mechanism 22 controlled by the cam mechanism to perform reciprocating motion to transport buttons; the channel adjustment mechanism 1 includes a first cylinder 12 and a limiting channel 11, the limiting channel is located at the discharge port of the vibrating disk, and the limiting channel includes a pair of adjustable channel plates 111, the first cylinder is a double-claw finger cylinder, the first cylinder is liftable and installed on one side of the vibrating disk, and the double claws of the first cylinder are respectively connected and fixed to a pair of L-shaped connecting frames 121, and the two connecting frames are respectively connected and fixed to the two channel plates at one end away from the first cylinder. The two connecting frames drive the two channel plates to rise and fall synchronously under the action of the first cylinder.
[0034] The channel adjustment assembly 1 also includes a transverse knob 122 arranged transversely and perpendicularly to the two connecting frames 121 and a longitudinal knob 123 arranged longitudinally and vertically. The first cylinder 12 is in a long-through state to ensure that the two connecting frames remain tightened. The screw of the transverse knob passes through one of the connecting frames and is threadedly connected to the connecting frame, and the end of the screw of the transverse knob is in contact with the inner side of the other connecting frame to facilitate adjustment of the spacing between the two connecting frames; the channel adjustment assembly 1 also includes a fixed plate 14, the vibration disk 4 is mounted on a frame 41 fixed to the ground, the fixed plate is connected and fixed to the frame, and a first slide rail 125 is also installed on the fixed plate. The first cylinder is mounted on the fixed plate through the first slide rail for easy lifting and lowering movement; an extension plate 126 is fixedly provided on the connecting frame 121, the longitudinal knob penetrates the extension plate and is threadedly connected to the extension plate, and the end of the longitudinal knob is in contact with the fixed plate. By rotating the longitudinal knob, the height of the connecting frame and the first cylinder is adjusted to control the lifting and lowering of the first cylinder machine limit channel 11.
[0035] The end of the limiting channel 11 away from the vibrating disk 4 is also equipped with a blocking mechanism 13, and the blocking mechanism includes a blocking base 131 fixed on any channel plate 111, and a first bolt 134 is installed on the top surface of the blocking base, and a 7-shaped spring 137 is installed on the first bolt. A connecting piece 132 is installed on the side of the blocking base close to the gap between the two channel plates, and the connecting piece is connected and fixed to the blocking base by a second bolt 135. A blocking block piece 133 is also installed on the outside of the connecting piece, and the blocking block piece is connected and fixed to the blocking base by a third bolt 136. The top of the blocking block piece is also connected to the 7-shaped spring to facilitate rebound and reset after passing the material. A limiting protrusion is provided on the connecting piece 132 to limit the rotation direction of the blocking block piece and prevent the blocking block piece from excessively rebounding.
[0036] The working principle of the channel adjustment component 1 is that the vibration disk 4 transports the button 6 with the handle facing upward to the entrance of the limiting channel 11, the first cylinder 11 is long-circuited to put the two connecting frames 121 in a clamped state, and the spacing between the two connecting frames is adjusted by the transverse knob (that is, the two connecting frames are stretched apart by the screw of the transverse knob), so that the two channel plates 111 are adjusted so that their spacing can accommodate the button handle on the button to pass through, and the height of the channel plate is increased by the longitudinal knob so that it can accommodate the button body to pass through. When the longitudinal knob is rotated in the opposite direction, the reset spring is used to rebound and lower the channel height. After the width and height adjustment of the limiting channel are verified, the vibration disk transports the button to the blocking mechanism 13 for output.
[0037] The connecting piece 132 and the catch base 131 are both provided with through holes to facilitate the connection of the second bolt and the third bolt to the catch base. The through holes are all vertically arranged long waist holes to facilitate fine adjustment of the upper and lower positions.
[0038] The cam mechanism 21 includes a driving motor 211 and a cam slot plate 212 with a cam slot. The cam slot plate is fixed on a cam seat 2121. A pendulum block 213 is provided on the side of the cam slot plate away from the driving motor. A swing arm 214 is provided on the side of the swing block away from the cam slot plate. The driving shaft of the driving motor passes through the cam seat and the cam slot plate in sequence and is connected and fixed to one end of the pendulum block. A connecting shaft 2131 is installed at the other end of the pendulum block, which is perpendicular to the pendulum block. The connecting shaft can rotate around its own axis, and one end of the connecting shaft is inserted into the cam slot, and the other end is connected and fixed to the swing arm 214. The swing arm and the cam slot plate are connected by a guide rail slider 2141 to limit the movement path of the swing arm.
[0039] The pendulum block 213 has a waist hole at one end connected to the connecting shaft 2131. The connecting shaft is installed in the waist hole. A first sleeve 2132 and a second sleeve 2133 are fixed to the connecting shaft, separated by a gasket. The first sleeve is located in the waist hole, and its height does not exceed the thickness of the waist hole. The second sleeve is located in the cam groove, and its height is adapted to the thickness of the cam groove. A limiting sleeve 2134 is also provided on the connecting shaft to fix the first and second sleeves. The cooperation of the two sleeves here effectively reduces wear on the cam groove plate and the cam groove.
[0040] The buckle removal mechanism 22 includes a second cylinder 221 and a third cylinder 222. The second cylinder 221 is connected and fixed to the end of the swing arm 214 away from the swing block. The third cylinder is fixedly mounted on a third cylinder mounting plate 2221. The third cylinder mounting plate is arranged perpendicular to the second cylinder, and the third cylinder mounting plate and the second cylinder are slidably connected by a second slide rail 2211 so that the third cylinder mounting plate is driven by the second cylinder and moves along the extension and contraction direction of the second cylinder. A pair of clamping arms 2222 are also installed on the third cylinder mounting plate. The driving end of the third cylinder is fixedly connected to a clamping arm push plate 2223 located on the side surfaces of the two clamping arms. The two side surfaces of the two clamping arms are respectively rotatably fixed with roller bearings. The clamping arm push plate is provided with strip grooves that are respectively adapted to the roller bearings on the two clamping arms. The two strip grooves are arranged at an angle to form an eight-shaped groove to facilitate the control of the approach or distance of the two clamping arms.
[0041] When the button delivery assembly 2 is working, it is first necessary to clamp the button at the limiting channel 11. The first button in the channel is blocked by the blocking mechanism. The second cylinder 221 and the third cylinder 222 are used to control the clamping arm 2222 to move to the channel entrance to clamp the button and drag it out of the channel. The blocking plate automatically rebounds to block the button behind. The clamping arm moves through three trajectories: horizontal trajectory, circular trajectory and vertical trajectory under the cooperation of the swing arm 214, the swing block 213 and the cam groove until the button is delivered to the clamping assembly.
[0042] The clip assembly 3 includes a fourth cylinder 31 installed on the fourth cylinder seat 35 and a fifth cylinder 32 installed on the fifth cylinder mounting plate 321. The fourth cylinder seat and the fifth cylinder mounting plate are connected and fixed by an adjustable connecting plate 37, and the connecting plate is connected and fixed to the support frame 51 to support the clip assembly; the fourth cylinder seat 35 is also equipped with a top clip arm 36 driven by the fourth cylinder for swinging, and the fifth cylinder mounting plate 321 is equipped with a pair of button clamps 34, and the two button clamps are connected to a button clamp push plate 33 driven by the fifth cylinder to drive the opening and closing of the two button clamps. A presser foot 341 connected and fixed to the fifth cylinder mounting plate is also provided in the center of the two button clamps. When clamping a button, the two button clamps clamp the arc-shaped outer edge of the button, and the presser foot abuts against the top surface of the button with the button handle. The bottom surface of the button is located on the swinging path of the top clip arm to facilitate the top clip arm and the presser foot to cooperate and clamp.
[0043] The fourth cylinder seat 35 includes a seat body 351 and a fourth cylinder mounting plate 354 fixed to the outside of the seat body. The fourth cylinder mounting plate and the connecting plate are fixedly connected by bolts. A mounting cavity is opened inside the seat body, and a gear shaft 352 with a gear-shaped end is installed in the mounting cavity. The driving shaft of the fourth cylinder is a telescopic shaft 311, and the telescopic shaft is provided with a rack groove adapted to the gear-shaped end of the gear shaft. The top buckle arm is fixed on the top buckle arm seat 361, and the end of the gear shaft away from the gear-shaped end is fixedly connected to the top buckle arm seat. The gear shaft also passes through the fourth cylinder mounting plate, and the gear shaft and the fourth cylinder mounting plate are rotatably fixed by the cylinder sleeve 353.
[0044] A strip groove 371 is provided on the connecting plate 37 at the connection with the fifth cylinder mounting plate. The connecting plate and the fifth cylinder mounting plate are connected and fixed by a fastening screw that passes through the strip groove and has a gasket that presses the strip groove. By loosening the fastening screw, the position of the fastening screw in the strip groove can be adjusted to facilitate fine-tuning the relative position of the fourth cylinder seat and the fifth cylinder mounting plate.
[0045] The beneficial effects of the present invention are: through the cooperation of multiple mechanisms, a complete button conveying process of automatic arrangement, button retrieval, button delivery and button clamping is formed, and the traditional manual button installation is improved to fully automatic button delivery, which improves production efficiency and production safety. At the same time, the structural coordination adopted has higher freedom and precision. Compared with ordinary manipulators, its work efficiency and button delivery positioning accuracy are better, and the operating speed is infinitely adjustable.
[0046] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are illustrative and cannot be understood as limitations of the present invention. Ordinary technicians in this field can change, modify and modify the above embodiments within the scope of the present invention.
Claims
1. A transfer button feeding device, used for being installed between a vibrating plate (4) and a sewing machine (5) and transferring a button (6) with a button handle, characterized in that: The invention comprises a channel adjustment component (1) connected to a vibration plate and a clip component (3) connected to a sewing machine via a support frame (51), a button feeding component (2) is installed between the channel adjustment component and the clip component, and the button feeding component (2) comprises a cam mechanism (21) and a button taking mechanism (22) which is controlled by the cam mechanism to perform reciprocating motion to transport buttons; the channel adjustment component (1) comprises a first cylinder (12) and a limiting channel (11), the limiting channel is located at the discharge port of the vibration plate, and the limiting channel comprises a pair of adjustable channel plates (111), the first cylinder is a double-claw finger cylinder, the first cylinder is installed on one side of the vibration plate in a liftable manner, and the double claws of the first cylinder are respectively connected and fixed to a pair of L-shaped connecting frames (121), the ends of the two connecting frames away from the first cylinder are respectively connected and fixed to the two channel plates, and the two connecting frames drive the two channel plates to rise and fall synchronously under the action of the first cylinder.
2. The transplanting button feeding device according to claim 1, characterized in that: The channel adjustment assembly (1) further comprises a transverse knob (122) arranged transversely and perpendicularly to the two connecting frames (121) and a longitudinal knob (123) arranged longitudinally and vertically, the first cylinder (12) is in a long-through state to ensure that the two connecting frames remain tightened, the screw of the transverse knob passes through one of the connecting frames and is threadedly connected to the connecting frame, and the end of the screw of the transverse knob is in contact with the inner side surface of the other connecting frame to facilitate adjustment of the distance between the two connecting frames; the channel adjustment assembly (1) further comprises a fixing plate (14), the vibration The movable plate (4) is mounted on a frame (41) fixed to the ground, the fixed plate is connected and fixed to the frame, the fixed plate is further mounted with a first slide rail (125), and the first cylinder is mounted on the fixed plate via the first slide rail for easy lifting movement; an extension plate (126) is fixedly mounted on the connecting frame (121), a longitudinal knob penetrates the extension plate and is threadedly connected to the extension plate, an end of the longitudinal knob is in contact with the fixed plate, and the height of the connecting frame and the first cylinder is adjusted by rotating the longitudinal knob to control the lifting of the first cylinder machine limit channel (11).
3. The transfer-type button feeding device according to claim 1, characterized in that: The end of the limiting channel (11) away from the vibration plate (4) is also equipped with a blocking mechanism (13), the blocking mechanism includes a blocking base (131) fixed on any channel plate (111), a first bolt (134) is installed on the top surface of the blocking base, a 7-shaped spring (137) is sleeved on the first bolt, a connecting piece (132) is installed on the side of the blocking base close to the gap between the two channel plates, the connecting piece is connected and fixed to the blocking base by a second bolt (135), a blocking block piece (133) is also installed on the outside of the connecting piece, the blocking block piece is connected and fixed to the blocking base by a third bolt (136), the top of the blocking block piece is also connected to the 7-shaped spring to facilitate rebound reset after material passing, and a limiting protrusion is provided on the connecting piece (132) to limit the rotation direction of the blocking block piece and prevent the blocking block piece from excessively rebounding.
4. The transplanting button feeding device according to claim 3, characterized in that: The connecting piece (132) and the catch base (131) are both provided with through holes to facilitate connection of the second bolt and the third bolt to the catch base, and the through holes are both vertically arranged long waist holes to facilitate fine adjustment of the upper and lower positions.
5. The transplanting button feeding device according to claim 1, characterized in that: The cam mechanism (21) comprises a driving motor (211) and a cam slot plate (212) having a cam slot, the cam slot plate being fixed on a cam seat (2121), a pendulum block (213) being provided on a side of the cam slot plate away from the driving motor, and a pendulum arm (214) being provided on a side of the pendulum block away from the cam slot plate, the driving shaft of the driving motor passing through the cam seat and the cam slot plate in sequence and then being connected and fixed to one end of the pendulum block, the other end of the pendulum block being provided with a connecting shaft (2131) arranged perpendicular to the pendulum block, the connecting shaft being rotatable about its own axis, one end of the connecting shaft being inserted into the cam slot, and the other end being connected and fixed to the pendulum arm (214), the pendulum arm being connected to the cam slot plate via a guide rail slider (2141) so as to limit the motion path of the pendulum arm.
6. The transplanting button feeding device according to claim 5, characterized in that: A waist hole is provided at one end of the pendulum block (213) connected to the connecting shaft (2131), and the connecting shaft is installed in the waist hole. A first shaft sleeve (2132) and a second shaft sleeve (2133) separated by a gasket are fixed on the connecting shaft. The first shaft sleeve is located in the waist hole and the height of the first shaft sleeve does not exceed the thickness of the waist hole. The second shaft sleeve is located in the cam groove and the height of the second shaft sleeve is adapted to the thickness of the cam groove. A limiting shaft sleeve (2134) is also provided on the connecting shaft to fix the first shaft sleeve and the second shaft sleeve.
7. The transfer-type button feeding device according to claim 5 or 6, characterized in that: The buckle removal mechanism (22) includes a second cylinder (221) and a third cylinder (222), wherein the second cylinder (221) is connected and fixed to an end of the swing arm (214) away from the swing block, and the third cylinder is fixedly mounted on a third cylinder mounting plate (2221), the third cylinder mounting plate is arranged perpendicular to the second cylinder, and the third cylinder mounting plate and the second cylinder are slidably connected via a second slide rail (2211) so that the third cylinder mounting plate is driven by the second cylinder and moves along the extension and contraction direction of the second cylinder, and a pair of clamping arms (2222) are also mounted on the third cylinder mounting plate, and the driving end of the third cylinder is fixedly connected to a clamping arm push plate (2223) located on the side surfaces of the two clamping arms, and the side surfaces of the two clamping arms are respectively rotatably fixed with roller bearings, and the clamping arm push plate is provided with strip grooves respectively adapted to the roller bearings on the two clamping arms, and the two strip grooves are arranged obliquely to form an eight-shaped groove to facilitate control of the approach or separation of the two clamping arms.
8. The transfer-type button feeding device according to claim 1, characterized in that: The clip assembly (3) includes a fourth cylinder (31) mounted on a fourth cylinder seat (35) and a fifth cylinder (32) mounted on a fifth cylinder mounting plate (321), wherein the fourth cylinder seat and the fifth cylinder mounting plate are connected and fixed via an adjustable connecting plate (37), and the connecting plate is connected and fixed to a support frame (51) to support the clip assembly; a top clip arm (36) driven by the fourth cylinder to swing is also mounted on the fourth cylinder seat (35). A pair of button clamps (34) are mounted on the fifth cylinder mounting plate (321), and the two button clamps are connected to a button clamp push plate (33) driven by the fifth cylinder to drive the opening and closing of the two button clamps. A presser foot (341) fixedly connected to the fifth cylinder mounting plate is also provided at the center of the two button clamps. When clamping a button, the two button clamps clamp the arc-shaped outer edge of the button, and the presser foot abuts against the top surface of the button with a button handle. The bottom surface of the button is located on the swing path of the top button arm so that the top button arm and the presser foot cooperate to clamp.
9. The transplanting button feeding device according to claim 8, characterized in that: The fourth cylinder seat (35) includes a seat body (351) and a fourth cylinder mounting plate (354) fixed to the outside of the seat body, the fourth cylinder mounting plate and the connecting plate are fixedly connected by bolts, a mounting cavity is provided inside the seat body, a gear shaft (352) with one end in the shape of a gear is installed in the mounting cavity, the driving shaft of the fourth cylinder is a telescopic shaft (311), the telescopic shaft is provided with a rack groove adapted to the gear-shaped end of the gear shaft, the top buckle arm is fixed on the top buckle arm seat (361), the end of the gear shaft away from the gear-shaped end is fixedly connected to the top buckle arm seat, the gear shaft also passes through the fourth cylinder mounting plate, and the gear shaft and the fourth cylinder mounting plate are rotatably connected and fixed by a cylinder sleeve (353).
10. The transplanting button feeding device according to claim 8, characterized in that: A strip groove (371) is provided on the connecting plate (37) at a connection with the fifth cylinder mounting plate. The connecting plate and the fifth cylinder mounting plate are connected and fixed by a fastening screw passing through the strip groove and having a gasket for pressing the strip groove. By loosening the fastening screw, the position of the fastening screw in the strip groove can be adjusted to facilitate fine-tuning of the relative position of the fourth cylinder seat and the fifth cylinder mounting plate.