Magnetic strip feeding device
Through the design of the magnetic strip feeding device, the combination of the suction baffle and the lower pushing material head is used to solve the problem of magnetic strip feeding, the stable output of the magnetic strip is achieved, and the production efficiency and stability are improved.
Patent Information
- Application Number
- CN202422545884.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-10-22
AI Technical Summary
In products such as leather shells, it is difficult to maintain uniform relative position and posture of the magnetic strip, which makes it difficult to mechanize feeding, low efficiency, poor stability, and prone to problems such that the magnetic strips are disengaged from the position or fall off.
The magnetic strip feeding device is adopted, including a feeding seat, a suction baffle and a lifting lower pushing material head. The magnetic strip is attracted by the suction baffle and the magnetic strip is pushed by the lower pushing material head to achieve stable feeding.
The stable output and supply of magnetic stripes is achieved, which improves production efficiency and stability, avoids the inconvenience of manual operation and the risk of magnetic stripes being disengaged from position.
Smart Images

Figure CN223175241U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a magnetic strip feeding device in production equipment such as leather cases. Background Art
[0002] In products such as leather cases, they can be opened and closed by magnetic attraction; for example, in a paper box, its paper cover can be opened and closed by magnetic attraction at the left and right edges, and magnetic strips (i.e., magnetic bars) need to be respectively arranged at the left and right edge positions of the leather case paper cover for cooperating with magnetic attraction to open and close. The relative position postures of the magnetic strips at the edge positions of the leather cases in the same batch need to be kept unified, and the magnetic force directions of the magnetic strips at the set positions of the leather cases in the same batch need to be relatively consistent to ensure the smooth operation and functional consistency of the magnetic attraction opening and closing function of the paper boxes in the same batch.
[0003] Since the magnetic strips have magnetic attraction to each other, it is difficult to separate the magnetic strips from each other, and it is difficult to keep the relative position postures of the magnetic strips unified, resulting in difficulty in mechanized feeding. Currently, it is necessary to manually pick up the materials and place them at the edge positions of the cardboard of the leather case, and then perform leather case edge wrapping (i.e., the face paper is wrapped around the edge of the cardboard). This method not only has low efficiency, poor stability, and relatively high production costs, but also requires re-placing the semi-finished leather cases into the equipment for edge wrapping or manual edge wrapping during subsequent leather case edge wrapping, and the operation process is extremely inconvenient, and problems such as the magnetic strip deviating from its position or even falling off may occur. Summary of the Utility Model
[0004] In view of the technical problems existing in the background art, the utility model aims to provide a magnetic strip feeding device that can stably output and supply magnetic strips one by one.
[0005] To solve the above technical problems, the utility model adopts the following technical solutions: A magnetic strip feeding device includes a feeding base, a material suction baffle, and a lifting lower pushing material head. It is characterized in that: a feeding channel for arranging magnetic strips side by side is provided on the feeding base, the material suction baffle is arranged at the end of the feeding channel, the material suction baffle is in magnetic attraction cooperation, the material suction baffle has a material blocking part, the material blocking part faces the feeding channel, a material discharging port for outputting magnetic strips is further provided at the end of the feeding channel, the material discharging port is located on the side of the material suction baffle facing the feeding channel, and the lower pushing material head is arranged at the material discharging port.
[0006] The following various optimizations or supplementary explanations can be further carried out on the above technical solutions respectively.
[0007] For example, the feeding channel is set as a feeding guiding groove matching the magnetic strip, and a cover plate is also provided above the feeding guiding groove; the feeding base is made of non-magnetic material, and the cover plate is made of non-magnetic material; the material suction baffle includes magnetic material.
[0008] For further optimization, the cover plate is arranged at the front part of the feeding guiding groove; a clearance space for the lifting movement of the lower pushing material head is left between the cover plate and the material suction baffle.
[0009] It can also be optimized that the path of the material guide groove is arranged in a straight line; the material blocking part adopts a vertical plane.
[0010] In addition, the downward pushing head cooperates with the magnetic attraction, and the lower end surface of the downward pushing head is the feeding horizontal surface.
[0011] There is even a material receiving support plate provided below the downward pushing head. The material receiving support plate is located below the discharge port and cooperates with magnetic attraction. The downward pushing head includes magnetic material, and the material receiving support plate includes magnetic material.
[0012] Among them, the magnetic attraction of the material receiving support plate is greater than the magnetic attraction of the downward pushing material head.
[0013] As an additional optimization, the downward pushing head is also equipped with a lifting and separating material separation and pressing head. The lower end of the lifting and separating material separation and pressing head is the pressing part, and the lifting and separating material separation and pressing head is arranged at the discharge port.
[0014] For example, the lifting and discharging press head for material distribution is set to rise and fall at the discharge port, the lifting and discharging press head is connected to the lifting drive component, and the lower pushing head is connected to the lifting drive device; the discharge port is arranged on the lifting path of the lower pushing head; the lifting and discharging press head adopts non-magnetic material.
[0015] In addition, the suction baffle is provided with an avoidance groove for the lifting and distributing material to separate from the up and down lifting action of the pressing head; or, the side of the suction baffle is provided with an avoidance position for the lifting and distributing material to separate from the up and down lifting action of the pressing head.
[0016] The beneficial effect of the present utility model is that the magnetic strip feeding device is used for feeding magnetic strips and can be used in the production of leather cases, paper boxes, etc. During operation, the magnets are pre-arranged and placed in the feed channel. The magnetic strips are attracted by the material suction baffle and moved (and blocked by the material blocking portion) smoothly into position. Once in position, the magnetic strips are located above the discharge port and are pushed down from the feed channel when the downward push head descends. The magnetic strips are fed downward from the discharge port, completing the magnetic strip feeding. This feeding method can stably output the magnetic strips one by one for subsequent operations. Among them, the substances that the magnetic strips can attract mainly include magnetic materials such as iron, cobalt, and nickel. The attractive force of the magnet, that is, the magnetic force, can cooperate with the magnetic attraction of the magnetic material. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The following describes the relevant details and working principles of the implementation methods and embodiments of the present invention in conjunction with the accompanying drawings.
[0018] Figure 1 It is a structural diagram of the present utility model.
[0019] Figure 2 for Figure 1 Schematic diagram after hiding part of the structure.
[0020] Figure 3 is Figure 1 a schematic structural view from another angle.
[0021] Figure 4 is Figure 3 a schematic view after hiding some structures therein.
[0022] Figure 5 is Figure 4 a schematic structural view from another angle, and shows a material receiving pallet.
[0023] In the figure:
[0024] 1. Feeding seat; 10. Material feeding channel; 11. Material feeding guiding groove; 12. Cover plate; 13. Material discharging port;
[0025] 2. Suction material baffle; 20. Material blocking part;
[0026] 3. Lower pushing material head; 30. Lifting driving device; 31. Avoidance groove;
[0027] 4. Material receiving pallet;
[0028] 5. Lifting and distributing and separating and pressing material head; 50. Lifting driving component;
[0029] 100. Magnetic strip. Specific embodiments
[0030] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model; obviously, the described embodiments are only a part of the embodiments of the present utility model implementation manners, rather than all of the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present utility model.
[0031] Referring to the accompanying drawings, in the embodiments of this implementation manner, a magnetic strip feeding device is used for feeding and outputting magnet strips (i.e., magnetic strips), and it includes a feeding seat 1, a suction material baffle 2, and a lower pushing material head 3.
[0032] Among them, a material feeding channel 10 is provided on the feeding seat 1, and the magnetic strips are arranged side by side in the material feeding channel 10, that is, the magnetic strips 100 are laid therein for feeding movement, and the magnetic strips are magnetically attracted to each other side by side.
[0033] Among them, the material suction baffle 2 is arranged at the end of the material feeding channel 10. The material suction baffle 2 is magnetically attracted and can attract the magnetic strip. Without additional power, the material suction baffle 2 can directly attract the magnetic strip arranged in the material feeding channel 10 to move. The material suction baffle 2 has a material blocking part 20, and the material blocking part 20 faces the material feeding channel 10. The magnetic strip in the material feeding channel 10 is attracted to move forward and will be blocked by the material blocking part 20, so that the magnetic strip moves smoothly to the place.
[0034] Among them, a material discharging port 13 is also provided at the end of the material feeding channel 10. The material discharging port 13 is for the magnetic strip to be output. The material discharging port 13 is located on the side of the material suction baffle 2 facing the material feeding channel 10, that is, the material discharging port 13 is located on the incoming material side of the material suction baffle 2. The magnetic strip 100 that has been attracted by the material suction baffle 2 to move (and limited by the material blocking part 20) and reaches the place smoothly can be output downward from the material discharging port 13 for feeding.
[0035] Among them, the lower pushing feeding head 3 is a lifting type and can perform lifting actions. The lower pushing feeding head 3 is arranged at the material discharging port 13. When the lower pushing feeding head 3 descends, it will push the magnetic strip downward for output feeding. The magnetic strip 100 has been attracted by the material suction baffle 2 to move (and limited by the material blocking part 20) and reaches the place smoothly. Then the lower pushing feeding head 3 rises and returns to its original position to wait for the next feeding.
[0036] This magnetic strip feeding device is used for feeding magnet strips and can be used in the production of leather cases, paper boxes, etc. During operation, the magnets are pre-arranged and placed in the material feeding channel 10. The magnetic strip 100 will be attracted by the material suction baffle 2 to move (and limited by the material blocking part 20) and reach the place smoothly. The magnetic strip in place is located above the material discharging port 13 and is pushed downward from the material feeding channel 10 when the lower pushing feeding head 3 descends. The magnetic strip is output downward from the material discharging port 13 for feeding, completing the magnetic strip feeding. This feeding method can stably output the magnetic strips one by one for subsequent operations. Among them, the substances that the magnet strip can attract mainly include magnetic substances such as iron, cobalt, and nickel. The attractive force of the magnet, that is, the magnetic force, can cooperate with the magnetic force of the magnetic substance for magnetic attraction.
[0037] Based on the above embodiments, the following optimizations or further explanations can be made respectively.
[0038] For example, a material feeding channel 10 is provided with a material feeding guiding groove 11, which is matched with a magnetic strip, so that the magnetic strip is arranged therein to stably guide the material feeding movement. A cover plate 12 is also provided above the material feeding guiding groove 11. While facilitating the processing of the material feeding guiding groove 11, the cover plate 12 can block the magnetic strip in the material feeding guiding groove 11 to prevent it from detaching and shifting. When the magnetic strip moves forward close to the material suction baffle 2 during the material feeding movement, to avoid the problem that the magnetic strip detaches from the material feeding guiding groove 11 due to the magnetic attraction cooperation, the cover plate 12 blocks the magnetic strip in the material feeding guiding groove 11. Among them, the feeding base 1 can be made of non-magnetic material (such as an aluminum base), and the cover plate 12 is made of non-magnetic material (such as a glass cover); the material suction baffle 2 includes a magnetic material (for example, the whole material suction baffle 2 is made of an iron baffle).
[0039] For further optimization, the cover plate 12 is arranged at the front part of the material feeding guiding groove 11, and only the area at the front part that is vulnerable to being affected by the material suction baffle 2 and detaching needs to be blocked. A clearance space for the lifting movement of the lower pushing material head 3 is left between the cover plate 12 and the material suction baffle 2 to ensure the smooth operation of the lower pushing material head 3. The path of the material feeding guiding groove 11 is linearly arranged, and the magnetic strip moves more smoothly during the material feeding movement and is not easily jammed. Among them, the material feeding path of the material feeding channel 10 can be a straight path, which is convenient for processing and setting, not easily jammed, and the material feeding is smoother.
[0040] Among them, the material blocking part 20 can adopt a vertical material blocking plane, which can be arranged orthogonally to the linearly arranged material feeding guiding groove 11. On the premise that the magnetic strip moves smoothly during the material feeding movement, the magnetic strip can stably lean on the material blocking part 20 (vertical material blocking plane) to be blocked and limited, and the postures of the magnetic strips are relatively consistent (relatively unified), which is convenient for subsequent lower pushing material feeding.
[0041] In addition, the lower pushing material head 3 is cooperated with magnetic attraction. The lower pushing material head 3 can attract the magnetic strip. During the process of the lower pushing material head 3 pushing the magnetic strip downward for output feeding, the lower pushing material head 3 can also suck the magnetic strip for lower pushing material feeding to ensure the stability of the magnetic strip feeding, and the posture of the magnetic strip is not easy to change; the lower end surface of the lower pushing material head 3 is a feeding horizontal plane. When the lower pushing material head 3 performs lower pushing material feeding, it can contact the magnetic strip and make the magnetic strip in a horizontal state to ensure the feeding stability.
[0042] In addition, a receiving pallet 4 is provided below the lower pushing feed head 3. The receiving pallet 4 is located below the feeding port 13 and can be used to cooperate in receiving and supporting the pushed magnetic strip. The receiving pallet 4 is magnetically attracted and can also attract the magnetic strip pushed by the lower pushing feed head, keeping the magnetic strip in a relatively stable position and posture for subsequent processing and facilitating the separation of the lower pushing feed head 3 from the magnetic strip when it rises and returns to its original position. Among them, the lower pushing feed head 3 includes magnetic substances (such as iron substances), and the receiving pallet 4 includes magnetic substances (such as iron substances). Further optimized, the magnetic attraction of the receiving pallet 4 can be greater than the magnetic attraction of the lower pushing feed head 3 to ensure that the lower pushing feed head 3 can be smoothly separated from the magnetic strip when it rises and returns to its original position, and the magnetic strip is attracted (i.e., held) on the receiving pallet 4 and will not be taken away by the rising and returning lower pushing feed head 3. Of course, another method can also be adopted, for example, using the lifting and separating pressure head 5 to cooperate so that the magnetic strip will not be taken away when the lower pushing feed head 3 rises and returns to its original position.
[0043] For example, the lower pushing feed head 3 is also equipped with a lifting and separating pressure head 5. The lower end of the lifting and separating pressure head 5 is the pressure application part. The lifting and separating pressure head 5 is arranged at the feeding port 13. The pressure application part of the lifting and separating pressure head 5 can press the magnetic strip, and cooperate with the rising and returning lower pushing feed head 3 for separating and discharging, so that the magnetic strip that has been pushed by the lower pushing feed head can be smoothly separated from the lower pushing feed head 3 (separating and discharging), and the magnetic strip will not be taken away by the rising and returning lower pushing feed head 3 (held). Before the lower pushing feed head 3 rises and returns to its original position, the lifting and separating pressure head 5 descends to press the magnetic strip (which has been pushed in place by the lower pushing feed head 3). After the lower pushing feed head 3 rises and returns to its original position, the lifting and separating pressure head 5 rises and returns to its original position to release the pressed magnetic strip.
[0044] The lifting and distributing head 5 for separating the material from the material press is arranged to be lifted and lowered at the discharge port 13, and the lifting and lowering movement of the lifting and distributing head 5 can pass through the discharge port 13. The lifting and lowering movement of the pushing head 3 can also pass through the discharge port 13. The lifting and distributing head 5 for separating the material from the material press is connected to a lifting drive component 50 (such as a motor or a cylinder, etc.), and the lifting drive component 50 cooperates to drive the lifting and distributing head 5 for separation and separation to perform lifting movements. The pushing head 3 is connected to a lifting drive device 30 (such as a motor or a cylinder, etc.), and the lifting drive device 30 cooperates to drive the pushing head 3 for separation and separation to perform lifting movements. The pushing head 3 and the lifting and distributing head 5 for separating the material from the material press can share a power source or be configured with separate power sources. The discharge port 13 is arranged on the lifting path of the pushing head 3. The lifting and distributing head 5 for separating the material from the material press is made of non-magnetic material and will not be attracted by magnets. In addition, in order to make the spatial layout more reasonable, the suction baffle 2 is provided with an avoidance groove 31 for the lifting and distributing of the material to be separated from the pressing head 5 to be lifted up and down; or, the side (left and right or front and back) of the suction baffle 2 is reserved with an avoidance position for the lifting and distributing of the material to be separated from the pressing head 5 to be lifted up and down; it is convenient for the suction baffle 2 to be lifted up and down smoothly and cooperate with the lifting and distributing of the pushing head 3 to complete the corresponding operation smoothly.
Claims
1. A magnetic stripe feeding device comprising a feeding seat (1), a material suction baffle (2) and a lifting downward pushing feeding head (3), characterized in that: The feeding seat (1) is provided with a feeding channel (10) in which the magnetic strips are arranged side by side. The material suction baffle (2) is arranged at the end of the material feeding channel (10). The material suction baffle (2) cooperates with the magnetic attraction, The material suction baffle (2) has a material blocking portion (20), and the material blocking portion (20) faces the material feeding channel (10). The end of the feeding channel (10) is also provided with a discharge port (13) for outputting the magnetic strip. The discharge port (13) is located on the side of the suction baffle (2) facing the feeding channel (10). The downward pushing head (3) is arranged at the material discharge port (13).
2. The magnetic stripe feeding device according to claim 1, characterized in that: The material feeding channel (10) is configured as a material feeding guide groove (11) matching the magnetic strip, and a cover plate (12) is provided above the material feeding guide groove (11); the material feeding seat (1) is made of non-magnetic material, and the cover plate (12) is made of non-magnetic material; and the material suction baffle (2) includes a magnetic material.
3. The magnetic stripe feeding device according to claim 2, characterized in that: The cover plate (12) is arranged in front of the material guide groove (11); a space for the downward pushing material head (3) to move upward and downward is reserved between the cover plate (12) and the material suction baffle (2).
4. The magnetic stripe feeding device according to claim 2, wherein: The path of the material guide groove (11) is arranged in a straight line; the material blocking portion (20) adopts a material blocking vertical plane.
5. The magnetic stripe feeding device according to claim 1, wherein: The downward pushing head (3) cooperates with magnetic attraction, and the lower end surface of the downward pushing head (3) is a feeding horizontal surface.
6. The magnetic stripe feeding device according to claim 5, wherein: A material receiving support plate (4) is provided below the downward pushing material head (3), and the material receiving support plate (4) is located below the material discharge port (13), and the material receiving support plate (4) cooperates with magnetic attraction; The downward pushing head (3) comprises a magnetic material, and the receiving support plate (4) comprises a magnetic material.
7. The magnetic stripe feeding device according to claim 6, wherein: The magnetic attraction force of the material receiving support plate (4) is greater than the magnetic attraction force of the downward pushing material head (3).
8. The magnetic stripe feeding device according to claim 5, wherein: The lower pushing head (3) is also equipped with a lifting material separation and pressing head (5), the lower end of the lifting material separation and pressing head (5) is a pressing part, and the lifting material separation and pressing head (5) is arranged at the material discharge port (13).
9. The magnetic stripe feeding device according to claim 8, wherein: The lifting and distributing material separation pressing head (5) is lifted and lowered at the material discharge port (13); the lifting and distributing material separation pressing head (5) is transmission-connected to a lifting drive component (50); the lower pushing material head (3) is transmission-connected to the lifting drive device (30); the material discharge port (13) is arranged on the lifting path of the lower pushing material head (3); The lifting and separating material separation pressing head (5) is made of non-magnetic material.
10. The magnetic stripe feeding device according to claim 8, wherein: The material suction baffle (2) is provided with an avoidance groove (31) for the lifting and separating material from the pressing head (5) to move up and down; or, the side of the material suction baffle (2) is left with an avoidance position for the lifting and separating material from the pressing head (5) to move up and down.