A button processing machine
By designing the automatic feeding and station switching of the button processing machine, the problem of difficult component alignment and assembly in button processing is solved, and the automation and efficient production of button processing is realized, which has the advantages of saving time and labor.
Patent Information
- Application Number
- CN202210447468.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-27
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2042-04-27
AI Technical Summary
In the existing button processing process, the parts are small and difficult to align and assemble, resulting in time-consuming and labor-intensive manual assembly and low efficiency.
A button processing machine is designed, which includes a base feeding device, an elastic core feeding device, a push rod feeding device and a material picking and feeding device. Through automatic feeding and workstation switching, the push rod is automatically fed into the base for processing. The push rod feeding mechanism and the limit plate are used to ensure that the push rod is reliably connected to the base.
The invention realizes the automated production of button processing, saves time and labor, improves processing efficiency, has simple structure, convenient assembly, reliable operation and long service life.
Smart Images

Figure CN114883131B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a processing machine, in particular to a button processing machine. Background Art
[0002] A switch is an electronic component that can open a circuit, interrupt current flow, or redirect it to another circuit. The most common switch is a human-operated electromechanical device with one or more electronic contacts. A "closed" contact indicates that the electronic contact is conducting, allowing current to flow; an "open" switch indicates that the electronic contact is disconnected, resulting in an open circuit, preventing current from flowing. Existing switches are mostly rocker-type switches, with a button typically located above a mounting base. Pressing the operating panel causes the button to swing relative to the mounting base, which in turn drives a push rod (rocker) to swing and press the rocker, switching the circuit. Existing switches typically incorporate the button base, push rod, and spring core within the button base that abuts against the push rod, all as a single unit. This involves first inserting the spring core into the button base, then inserting the push rod to abut against the spring core and prevent it from falling off the button base. However, these components are small and difficult to align and assemble, making manual assembly time-consuming and labor-intensive, resulting in low efficiency. Summary of the Invention
[0003] In order to solve the problem in the prior art that manual processing of buttons is time-consuming and labor-intensive, the present invention provides a button processing machine.
[0004] The technical solution of the present invention is: a button processing machine, including a frame, a seat body feeding device, an elastic core feeding device, a push rod feeding device and a material picking and feeding device, the frame is provided with a first workstation, a second workstation and a third workstation, the seat body feeding device transports the seat body to the first workstation, the material picking and feeding device sends the seat body of the first workstation to the second workstation and the third workstation for processing in turn, the elastic core feeding device transports the elastic core into the seat body at the second workstation, the third workstation is provided with a push rod feeding mechanism, the push rod feeding mechanism receives the push rod on the push rod feeding device and sends it into the seat body at the third workstation.
[0005] As a further improvement of the present invention, the push rod feeding mechanism includes a push rod frame, on which a push rod frame is provided a push rod and at least one set of push rod feeding components. The push rod feeding components have a first position for receiving the push rod and a second position which opens when the push rod is actuated to facilitate the push rod to be pushed into the seat body by the push rod.
[0006] As a further improvement of the present invention, the push rod feeding assembly includes a push rod seat, a first feed hole for inserting a push rod into the push rod, and a second feed hole for feeding the push rod. The push rod seat is provided with a limit plate, and the limit plates have at least two pieces and cooperate with each other to form a accommodating cavity for accommodating the push rod. The first feed hole and the second feed hole are both connected to the accommodating cavity. The limit plate has a first position for accommodating the push rod and a second position which is opened when the push rod is actuated to facilitate the push rod to enter the seat body.
[0007] As a further improvement of the present invention, the limit plate is hinged on the push rod seat, and an elastic member is provided between the limit plate and the push rod seat. The elastic member has a movement tendency to drive the limit plate toward the first position. The limit plate and the push rod seat cooperate with each other to form a bird's beak shape, and a shoulder is provided in the accommodating cavity.
[0008] As a further improvement of the present invention, a first push rod driving member and a second push rod driving member are provided on the push rod frame. The first push rod driving member is connected to the push rod member through the first mounting plate and drives the push rod member to move linearly. The second push rod driving member is connected to the push rod feeding assembly through the second mounting plate and drives the push rod feeding assembly to move linearly. The push rod member and the push rod feeding assembly are arranged in a one-to-one correspondence, and the push rod feeding assembly moves before the push rod member.
[0009] As a further improvement of the present invention, the material picking and feeding device includes a material picking rack, a material picking plate and a material picking drive assembly. The material picking rack is connected to the material picking plate through the material picking drive assembly and drives the material picking plate to move horizontally in the X direction and / or horizontally in the Y direction. At least one material picking trough is provided on the material picking plate.
[0010] As a further improvement of the present invention, the material picking drive assembly includes a first material picking drive component, a second material picking drive component, a first sliding plate and a second sliding plate. The first material picking drive component is arranged on the material picking frame and connected to the first sliding plate for driving the first sliding plate to move along the horizontal X direction. The second material picking drive component is arranged on the first sliding plate and connected to the second sliding plate for driving the second sliding plate to move along the horizontal Y direction. There are multiple material picking plates, and they are respectively arranged corresponding to the first workstation, the second workstation and the third workstation.
[0011] As a further improvement of the present invention, a fourth workstation is provided on the frame, and a waste cleaning device is provided at the fourth workstation. The waste cleaning device includes a waste cleaning frame, a waste cleaning plate and a waste cleaning drive. The waste cleaning drive is provided on the waste cleaning frame and connected to the waste cleaning plate for driving the waste cleaning plate to move back and forth in a straight line. There are multiple waste cleaning plates, and each waste cleaning plate is provided with a limiting groove. The limiting grooves on different waste cleaning plates cooperate with each other to form a channel for the seat body to pass through. A waste collection box is provided under the waste cleaning plate.
[0012] As a further improvement of the present invention, the frame is provided with a feed track, the feed track is provided with a feed trough, the first work station is provided with a first feed push plate and a first feed drive, the first feed push plate is used to receive the seat body on the seat body feeding device and is driven by the first feed drive to the material picking and feeding device, the second work station is provided with a receiving plate and a receiving drive, the receiving plate is provided with a receiving column for receiving the elastic core on the elastic core feeding device, the receiving drive is connected to the receiving plate and drives the receiving plate to move up and down and makes the receiving column correspond to the seat body at the second work station.
[0013] As a further improvement of the present invention, the seat body feeding device, the elastic core feeding device, and the push rod feeding device all include a vibration plate and a linear vibration mechanism. The elastic core feeding device and the push rod feeding device are both provided with a one-by-one feeding mechanism. The one-by-one feeding mechanism includes a first material blocking component, a second material blocking component, a feed plate and a material blocking driving component. The second material blocking component is arranged on the material blocking plate, and the material blocking plate has a first position for receiving material at the first material blocking component and a second position for feeding material corresponding to the feed plate driven by the material blocking driving component.
[0014] The present invention has the beneficial effects of providing a base body feeding device, an elastic core feeding device, and a push rod feeding device, enabling reliable feeding, and enabling the base body to switch workstations through the material taking and feeding device. The push rod on the push rod feeding device is received by the push rod feeding mechanism and fed into the base body at the third workstation to complete processing, thereby achieving automated production and processing, saving time and labor, and being convenient and simple to process. The present invention also has the advantages of simple structure, easy assembly, reliable operation, and long service life. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Attachment Figure 1 Schematic diagram of the structure of an embodiment of the present invention.
[0016] Attachment Figure 2 For attachment Figure 1 Schematic diagram of the structure on the frame.
[0017] Attachment Figure 3 For attachment Figure 2 Schematic diagram of the structure of the middle seat feeding device.
[0018] Attachment Figure 4 For attachment Figure 2 Schematic diagram of the structure of the middle push rod feeding device.
[0019] Attachment Figure 5 For attachment Figure 4 Schematic diagram of the explosion structure.
[0020] Attachment Figure 6 For attachment Figure 2 Schematic diagram of the structure of the center-take-off feeding device.
[0021] Attachment Figure 7 For attachment Figure 2 Schematic diagram of the structure of the middle push rod feeding mechanism.
[0022] Attachment Figure 8 For attachment Figure 7 Schematic diagram of the structure of the middle push rod feeding assembly.
[0023] Attachment Figure 9 For attachment Figure 8 Schematic diagram of the explosion structure.
[0024] Attachment Figure 10 For attachment Figure 8 Schematic diagram of the cross-sectional structure.
[0025] Attachment Figure 11 For attachment Figure 2 Schematic diagram of the structure of the waste cleaning device.
[0026] Attachment Figure 12 For attachment Figure 2 Schematic diagram of the structure of the middle feed track.
[0027] Attachment Figure 13 This is a schematic diagram of the structure of a button after processing according to an embodiment of the present invention.
[0028] Attachment Figure 14 For attachment Figure 13 Schematic diagram of the cross-sectional structure.
[0029] In the figure, 1, frame; 11, feeding track; 111, feeding trough; 2, base feeding device; 21, first feeding push plate; 22, first feeding drive member; 23, vibration plate; 24, linear vibration mechanism; 3, elastic core feeding device; 31, receiving plate; 32, receiving drive member; 33, receiving column; 4, ejector feeding device; 5, material feeding device; 51, material feeding frame; 52, material feeding plate; 521, material feeding trough; 53, material feeding drive assembly; 531, first material feeding drive member; 532, second material feeding drive member; 533, first sliding plate; 534, second sliding plate; 6, ejector feeding mechanism; 61, ejector frame; 62, ejector member; 63, ejector feeding assembly; 631, ejector Rod seat; 632, first feed hole; 633, second feed hole; 634, limit plate; 635, accommodating chamber; 636, shoulder; 637, elastic member; 64, first push rod driving member; 65, first mounting plate; 66, second mounting plate; 7, waste cleaning device; 71, waste cleaning rack; 72, waste cleaning plate; 721, limit groove; 722, channel; 73, waste cleaning driving member; 74, waste collecting box; 8, feeding mechanism one by one; 81, first blocking assembly; 82, second blocking assembly; 83, feeding plate; 84, blocking driving member; 85, blocking plate; 9, button; 91, seat; 92, elastic core; 93, push rod. DETAILED DESCRIPTION
[0030] The embodiments of the present invention will be further described below with reference to the accompanying drawings:
[0031] Depend on Figure 1 Combine Figure 2-14 As shown, a button processing machine includes a frame 1, a seat body feeding device 2, an elastic core feeding device 3, a push rod feeding device 4 and a material picking and feeding device 5. The frame 1 is provided with a first station, a second station and a third station. The seat body feeding device 2 conveys the seat body 91 to the first station. The material picking and feeding device 5 conveys the seat body 91 at the first station to the second station and the third station for processing in sequence. The elastic core feeding device 3 conveys the elastic core 92 to the seat body 91 at the second station. A push rod feeding mechanism 6 is provided at the third station. The push rod feeding mechanism 6 receives the push rod 93 on the push rod feeding device 4 and feeds it into the seat body 91 at the third station. The beneficial effects of the present invention are that a base body feeding device, an elastic core feeding device, and a push rod feeding device are provided to enable reliable feeding, and the base body is switched between workstations via the material feeding device, facilitating reliable and continuous processing. The push rod on the push rod feeding device is received by the push rod feeding mechanism and fed into the base body at the third workstation to complete processing, thereby achieving automated production and processing, saving time and labor, and providing convenient and simple processing. The present invention also has the advantages of simple structure, easy assembly, reliable operation, and long service life. Specifically, after passing through the third workstation, the button 9 has been processed. The fourth workstation is mainly used to detect whether the button is a finished product and to remove waste products.
[0032] The ejector feed mechanism 6 includes an ejector frame 61, on which is mounted an ejector member 62 and at least one ejector feed assembly 63. The ejector feed assembly 63 has a first position for receiving an ejector pin 93 and a second position for opening when the ejector member 62 is actuated, facilitating the ejector member 62's pushing of the ejector pin 93 into the seat 91. The present invention enables batch production, i.e., by providing two, three, or four sets of ejector feed assemblies, allowing for single-time feeding and processing, thereby improving processing efficiency and being a preferred embodiment of the present invention. Specifically, the ejector members are provided in a one-to-one correspondence with the ejector feed assemblies.
[0033] The ejector feeding assembly 63 includes an ejector seat 631, a first feed hole 632 for inserting the ejector member 62 into the ejector pin 93, and a second feed hole 633 for feeding the ejector pin 93. A limiting plate 634 is provided on the ejector seat 631. The limiting plates 634 have at least two members that cooperate with each other to form a receiving cavity 635 for receiving the ejector pin 93. The first feed hole 632 and the second feed hole 633 are both connected to the receiving cavity 635. The limiting plate 634 has a first position for receiving the ejector pin 93 and a second position for opening when the ejector member 62 is in motion to facilitate the ejector member 62 in pushing the ejector pin 93 into the seat body 91. The provision of the limiting plate and the ejector seat facilitates ejector pin feeding and facilitates the ejector member to push the ejector pin out of the ejector seat and press it into the seat body, thereby achieving a reliable connection between the ejector pin and the seat body.
[0034] The limit plate 634 is hinged to the ejector seat 631. An elastic member 637 is disposed between the limit plate 634 and the ejector seat 631. The elastic member 637 has a tendency to drive the limit plate 634 toward the first position. The limit plate 634 and the ejector seat 631 cooperate to form a bird's beak shape. A shoulder 636 is disposed within the accommodating chamber 635. The hinged arrangement of the limit plate allows the accommodating chamber to close, preventing the ejector from falling out during feeding. Once opened, the material can be quickly discharged. Furthermore, the elastic member provides a restoring force, facilitating continuous and reliable processing. More specifically, the shoulder closes the accommodating chamber, preventing the ejector from sliding directly out of the chamber. More specifically, the shoulder can employ an arc transition or a conical surface.
[0035] The ejector frame 61 is provided with a first ejector driving member 64 and a second ejector driving member. The first ejector driving member 64 is connected to the ejector member 62 through a first mounting plate 65 and drives the ejector member 62 to move linearly. The second ejector driving member is connected to the ejector feeding assembly 63 through a second mounting plate 66 and drives the ejector feeding assembly 63 to move linearly. The ejector member 62 and the ejector feeding assembly 63 are arranged in a one-to-one correspondence, and the ejector feeding assembly 63 moves before the ejector member 62. In this way, the ejector member and the ejector feeding assembly are displaced, that is, the ejector feeding assembly is first aligned with the seat body before the ejector is pushed into the seat body, making product processing convenient and reliable.
[0036] The retrieving and feeding device 5 includes a retrieving frame 51, a retrieving plate 52, and a retrieving drive assembly 53. The retrieving frame 51 is connected to the retrieving plate 52 via the retrieving drive assembly 53 and drives the retrieving plate 52 to move horizontally in the X and / or Y directions. The retrieving plate 52 is provided with at least one retrieving trough 521. Specifically, the horizontal movement of the retrieving plate drives the base body from the second station to the third station, and from the third station to the fourth station. Waste products at the fourth station are dropped into a waste collection box by a waste removal device. Finished products are then pushed into the finished product collection box by the retrieving plate that slides over from the third station. Of course, in actual production, the stations can also be arranged in a ring, with processing at each station being achieved using a rotating disk. However, the retrieving plate of the present invention can be provided with multiple retrieving troughs, meaning that multiple base bodies can be processed at once, improving production efficiency, reducing processing time, and lowering production costs. Rational utilization of the space on the frame is a preferred embodiment of the present invention.
[0037] The material picking drive assembly 53 includes a first material picking drive member 531, a second material picking drive member 532, a first sliding plate 533, and a second sliding plate 534. The first material picking drive member 531 is arranged on the material picking frame 51 and connected to the first sliding plate 533 for driving the first sliding plate 533 to move horizontally in the X direction. The second material picking drive member 532 is arranged on the first sliding plate 533 and connected to the second sliding plate 534 for driving the second sliding plate 534 to move horizontally in the Y direction. There are multiple material picking plates 52, which are respectively arranged to correspond to the first workstation, the second workstation, and the third workstation. This structure makes the material picking plate convenient and reliable, and can reliably drive the material forward. Through the provision of the second material picking drive member, when the material picking plate returns to its original position, it will not drive the base body to return to its original position, thereby allowing the product to reliably switch workstations, and product processing is convenient and reliable.
[0038] The frame 1 is provided with a fourth station, at which a waste removal device 7 is located. The waste removal device 7 comprises a waste removal frame 71, a waste removal plate 72, and a waste removal drive 73. The waste removal drive 73 is provided on the waste removal frame 71 and connected to the waste removal plate 72 for driving the waste removal plate 72 in linear reciprocating motion. There are multiple waste removal plates 72, each of which is provided with a limiting groove 721. The limiting grooves 721 on different waste removal plates 72 cooperate with each other to form a passage 722 for the seat body 91 to pass through. A waste collection box 74 is provided below the waste removal plates 72. The waste removal device allows for rapid waste removal. Specifically, the feed track is provided with a notch at the waste removal device. When the waste removal plate is retracted, the button falls into the waste collection box below under the action of gravity, making product waste removal convenient and reliable. More specifically, there are multiple waste removal plates, generally corresponding to the number of material troughs. Taking the present invention as an example, there are four waste removal plates, and each retrieving plate is also provided with four retrieving troughs, that is, four products can be processed at one time, which greatly improves the processing efficiency of the products.
[0039] The frame 1 is provided with a feed track 11, and the feed track 11 is provided with a feed trough 111. The first station is provided with a first feed push plate 21 and a first feed drive 22. The first feed push plate 21 is used to receive the seat 91 on the seat feeding device 2 and is driven by the first feed drive 22 to the material picking and feeding device 5. The second station is provided with a receiving plate 31 and a receiving drive 32. The receiving plate 31 is provided with a receiving column 33 for receiving the elastic core 92 on the elastic core feeding device 3. The receiving drive 32 is connected to the receiving plate 31 and drives the receiving plate 31 to move up and down and makes the receiving column 33 correspond to the seat 91 at the second station. Specifically, the feed trough is set in an inverted "T" shape. The setting of the receiving column and its ability to move vertically facilitate the reliable feeding of the elastic core. The structure is simple and the feeding is convenient and reliable.
[0040] The seat body feeding device 2, the elastic core feeding device 3, and the push rod feeding device 4 all include a vibration disk 23 and a linear vibration mechanism 24. The elastic core feeding device 3 and the push rod feeding device 4 are both provided with a one-by-one feeding mechanism 8. The one-by-one feeding mechanism 8 includes a first material blocking component 81, a second material blocking component 82, a feed plate 83 and a material blocking driving component 84. The second material blocking component 82 is arranged on the material blocking plate 85. The material blocking plate 85 has a first position for receiving material at the first material blocking component 81 and a second position for feeding material corresponding to the feed plate 83 driven by the material blocking driving component 84. Specifically, the base feed device 2, elastic core feed device 3, and ejector feed device 4 all feed materials via a vibrating plate 23 and a linear vibrating mechanism 24. Of course, depending on the actual material being fed, the material paths on the vibrating plate and the linear vibrating mechanism may differ slightly. More specifically, the elastic core feed device 3 and ejector feed device 4 are provided with a feed-by-feed mechanism to enable individual feeding, while the base feed device is limited by a first feed push plate. Specifically, the first and second stopper assemblies resemble cylinder structures. When the stopper plate is in the second position, a power source can be provided to accelerate the flow of material to the processing station. This power source can be a cylinder.
[0041] In the description of the present invention, it should be noted that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "back," "left," "right," "vertical," "horizontal," "top," "bottom," "inside," and "outside" and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate the description of the present invention and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limiting the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0042] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium, or they can refer to internal connections between two components. A person of ordinary skill in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances. In addition, in the description of the present invention, unless otherwise specified, "plurality" means two or more.
[0043] Technical personnel should note: Although the present invention has been described according to the above specific implementation methods, the inventive concept of the present invention is not limited to this invention. Any modification using the inventive concept will be included in the scope of protection of this patent.
Claims
1. A button processing machine, characterized in that : It comprises a frame (1), a seat feeding device (2), an elastic core feeding device (3), a push rod feeding device (4) and a material taking and feeding device (5), wherein the frame (1) is provided with a first station, a second station and a third station, the seat feeding device (2) transports the seat (91) to the first station, the material taking and feeding device (5) transports the seat (91) at the first station to the second station and the third station for processing, the elastic core feeding device (3) transports the elastic core (92) to the seat (91) at the second station, and the push rod feeding device (4) is provided at the third station. The ejector feeding mechanism (6) receives the ejector (93) on the ejector feeding device (4) and feeds it into the seat body (91) at the third station; the ejector feeding mechanism (6) includes an ejector frame (61), the ejector frame (61) is provided with an ejector member (62) and at least one set of ejector feeding assemblies (63), the ejector feeding assembly (63) has a first position for receiving the ejector (93) and a second position for opening when the ejector member (62) is actuated to facilitate the ejector member (62) to push the ejector (93) into the seat body (91); the ejector feeding assembly The component (63) includes a push rod seat (631), a first feed hole (632) for inserting the push rod (93) into the push rod (62), and a second feed hole (633) for feeding the push rod (93). The push rod seat (631) is provided with a limit plate (634). The limit plates (634) have at least two pieces and cooperate with each other to form a receiving cavity (635) for receiving the push rod (93). The first feed hole (632) and the second feed hole (633) are both connected to the receiving cavity (635). The limit plate (634) has a capacity to receive the push rod (93). ) and a second position which is opened when the ejecting member (62) is in motion so that the ejecting member (62) can push the ejector rod (93) into the seat body (91); the limiting plate (634) is hinged to the ejector rod seat (631), an elastic member (637) is provided between the limiting plate (634) and the ejector rod seat (631), the elastic member (637) has a movement tendency of driving the limiting plate (634) toward the first position, the limiting plate (634) and the ejector rod seat (631) cooperate with each other to form a bird's beak shape, and a shoulder (636) is provided in the accommodating cavity (635).
2. A button processing machine according to claim 1, characterized in that The ejector frame (61) is provided with a first ejector driving member (64) and a second ejector driving member. The first ejector driving member (64) is connected to the ejector member (62) through a first mounting plate (65) and drives the ejector member (62) to move linearly. The second ejector driving member is connected to the ejector feeding assembly (63) through a second mounting plate (66) and drives the ejector feeding assembly (63) to move linearly. The ejector member (62) and the ejector feeding assembly (63) are arranged in a one-to-one correspondence, and the ejector feeding assembly (63) moves before the ejector member (62).
3. A button processing machine according to claim 1, characterized in that The material feeding device (5) includes a material feeding frame (51), a material feeding plate (52) and a material feeding drive assembly (53). The material feeding frame (51) is connected to the material feeding plate (52) through the material feeding drive assembly (53) and drives the material feeding plate (52) to move in the horizontal X direction and / or the horizontal Y direction. The material feeding plate (52) is provided with at least one material feeding trough (521).
4. A button processing machine according to claim 3, characterized in that The material picking drive assembly (53) includes a first material picking drive member (531), a second material picking drive member (532), a first sliding plate (533) and a second sliding plate (534). The first material picking drive member (531) is arranged on the material picking frame (51) and is connected to the first sliding plate (533) for driving the first sliding plate (533) to move along the horizontal X direction. The second material picking drive member (532) is arranged on the first sliding plate (533) and is connected to the second sliding plate (534) for driving the second sliding plate (534) to move along the horizontal Y direction. There are multiple material picking plates (52), and they are respectively arranged corresponding to the first workstation, the second workstation and the third workstation.
5. A button processing machine according to claim 1, characterized in that The frame (1) is provided with a fourth workstation, and the fourth workstation is provided with a waste cleaning device (7). The waste cleaning device (7) comprises a waste cleaning frame (71), a waste cleaning plate (72) and a waste cleaning driving member (73). The waste cleaning driving member (73) is provided on the waste cleaning frame (71) and is connected to the waste cleaning plate (72) for driving the waste cleaning plate (72) to move back and forth linearly. There are multiple waste cleaning plates (72), and each waste cleaning plate (72) is provided with a limiting groove (721). The limiting grooves (721) on different waste cleaning plates (72) cooperate with each other to form a channel (722) for the seat body (91) to pass through. A waste collection box (74) is provided below the waste cleaning plate (72).
6. A button processing machine according to claim 1, characterized in that The frame (1) is provided with a feed track (11), the feed track (11) is provided with a feed trough (111), a first feed push plate (21) and a first feed drive (22) are provided at the first station, the first feed push plate (21) is used to receive the seat body (91) on the seat body feeding device (2) and is driven by the first feed drive (22) to the material feeding device (5), a receiving plate (31) and a receiving drive (32) are provided at the second station, the receiving plate (31) is provided with a receiving column (33) for receiving the elastic core (92) on the elastic core feeding device (3), the receiving drive (32) is connected to the receiving plate (31) and drives the receiving plate (31) to move up and down and makes the receiving column (33) correspond to the seat body (91) at the second station.
7. A button processing machine according to claim 1, characterized in that The seat body feeding device (2), the elastic core feeding device (3), and the push rod feeding device (4) all include a vibration plate (23) and a linear vibration mechanism (24). The elastic core feeding device (3) and the push rod feeding device (4) are both provided with a feeding mechanism (8) one by one. The feeding mechanism (8) includes a first material blocking component (81), a second material blocking component (82), a feeding plate (83), and a material blocking driving member (84). The second material blocking component (82) is provided on the material blocking plate (85). The material blocking plate (85) has a first position for receiving material at the first material blocking component (81) and a second position for feeding material corresponding to the feeding plate (83) driven by the material blocking driving member (84).
Citation Information
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