Label dismounting mechanism of automatic label dismounting machine
By designing the label removal mechanism of the automatic label removal machine, and utilizing the combination structure of the push plate and the intermediate plate, stable label removal for different specifications of trademarks is achieved, solving the problem of poor versatility of existing mechanical label removal machines, reducing costs and improving label removal efficiency.
Patent Information
- Application Number
- CN202520157152.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing mechanical label removal machines have poor versatility and are difficult to adapt to the removal of labels of different specifications, resulting in high label removal costs and easy damage to the labels.
An automatic label removal machine with a label removal mechanism was designed. The mechanism consists of a push plate, a lower plate, an upper plate, and a middle plate. The middle plate is driven to move laterally by a lateral push cylinder, so that the push rod is inserted into the through holes of different specifications and positioned by the ring groove. This mechanism is suitable for removing labels of different specifications.
It achieves stable label removal adaptability to different trademark sizes, reduces label removal costs and improves label removal efficiency, and avoids trademark damage.
Smart Images

Figure CN223722060U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of label removal equipment, specifically to a label removal mechanism for an automatic label removal machine. Background Technology
[0002] After printing, individual trademarks are formed on the printing plate. These printed trademarks need to be cut out and used to affix to products or to be made into products themselves, such as fans used for advertising. These trademarks are not cut out one by one, but are cut with a dotted and line cutting blade and then stacked. At this time, the trademarks are still attached to the printing plate. Only by manually pressing can a certain trademark in the stack be removed together. However, it is obvious that manual pressing is costly and inefficient. Although mechanical label removal machines now exist, the existing label removal machines have poor versatility. They cannot be used to remove different sizes of trademarks effectively using the same machine, resulting in high label removal costs for manufacturers and unstable label removal that can easily damage the trademarks. Summary of the Invention
[0003] The technical problem to be solved by this utility model is to address the shortcomings of the existing technology.
[0004] An automatic label removal machine with a label removal mechanism is provided, which is adapted to the removal of labels of different specifications.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a label removal mechanism for an automatic label removal machine, characterized in that: it includes a push plate, a lower plate, and an upper plate arranged axially in sequence; the lower plate and the upper plate are provided with movable cavities; a middle plate capable of lateral displacement is slidably arranged within the movable cavities; the upper plate is provided with axially penetrating first through holes arranged in an orderly manner; the lower plate is provided with third through holes coaxially arranged with each of the first through holes; the middle plate is provided with second through holes; and multiple push rods are provided above the push plate, each push rod capable of passing through the corresponding first through hole, second through hole, and third through hole. Below is a lifting drive cylinder capable of driving the push plate to move up and down. One end of the push plate is connected to a lateral push cylinder. The output end of the lateral push cylinder is linked to the middle plate. The lateral push cylinder can push the middle plate to move laterally, so that the second through hole is displaced to be misaligned with the first and third through holes. Each push rod is inserted through the corresponding first, second, and third through holes, and the bottom of each push rod abuts against the push plate. Each push rod has an annular groove on the push plate. The annular groove is adapted to the thickness of the middle plate. When the second through hole is misaligned with the first and third through holes, the push plate is engaged into the annular groove.
[0006] The utility model discloses the following features: according to the product trademark of different specifications and position, the top rod is inserted in the first through -hole, the second through -hole and the third through -hole in the corresponding position, the horizontal push cylinder pushes the horizontal displacement of the middle plate to make the second through -hole and the first through -hole and the third through -hole staggered arrangement, and the middle plate is clamped in the ring groove, and the clamping positioning of each top rod is realized.
[0007] The utility model further provides: the horizontal push cylinder output end includes output shaft and the L type connecting plate that is linked with output shaft, the L type connecting plate is perpendicular to one end of fixed connection of output shaft with middle plate, and the L type connecting plate is parallel to one end of fixed connection of middle plate with middle plate.
[0008] The utility model discloses the following features: the L type connecting plate can make the driving direction of the output shaft of horizontal push cylinder and the displacement direction of middle plate parallel, and the displacement of middle plate is more stable.
[0009] The utility model further provides: the upper plate, the lower plate and the push plate are fixedly connected through the support plate.
[0010] The utility model discloses the following features: the upper plate, the middle plate, the lower plate and the push plate synchronous lifting displacement are made.
[0011] The utility model further provides: the upper plate, the lower plate and the push plate coaxially have a plurality of guide holes, and a guide rod is slidably arranged in each guide hole.
[0012] The utility model discloses the following features: the upper plate, the lower plate and the push plate are more stable when displacement.
[0013] The utility model discloses the following features: the position of top rod can be adjusted according to the trademark specification and position, and the trademark of different specifications is adapted.
[0014] The utility model will be further explained in detail in connection with the drawings and examples. DRAWINGS
[0015] Figure 1 It is the three -dimensional schematic drawing of the utility model embodiment.
[0016] Figure 2 It is the explosion schematic drawing of the utility model embodiment.
[0017] Figure 3 It is the three -dimensional schematic drawing of the top rod of the utility model embodiment. CONCRETE IMPLEMENTING METHOD
[0018] As Figure 1 --- Figure 3The label removal mechanism of an automatic label removal machine shown includes a push plate 1, a lower plate 2, and an upper plate 4 arranged axially in sequence. The lower plate 2 and the upper plate 4 are provided with movable cavities 5. A middle plate 3 capable of lateral displacement is slidably arranged within the movable cavities 5. The upper plate 4 has axially penetrating first through holes 401 arranged in an orderly manner. The lower plate 2 has third through holes 201 coaxially arranged with each of the first through holes 401, corresponding to the first through holes 401. The middle plate 3 has second through holes 301. Multiple push rods 6 are provided above the push plate 1. All can pass through the corresponding first through hole 401, second through hole 301, and third through hole 201. A lifting drive cylinder 7 is provided below the push plate 1 to drive the push plate 1 to move up and down. A transverse push cylinder 8 is connected to one end of the side of the push plate 1. The output end of the transverse push cylinder 8 is linked to the intermediate plate 3. The output end of the transverse push cylinder 8 includes an output shaft 801 and an L-shaped connecting plate 9 linked to the output shaft. The L-shaped connecting plate 9 is fixedly connected to the output shaft 801 at one end 901 perpendicular to the intermediate plate 3. The L-shaped connecting plate 9 is parallel to the middle plate 3 at one end 902 and is fixedly connected to the middle plate 3. The lateral pushing cylinder 8 can push the middle plate 3 to move laterally, so that the second through hole 301 is displaced to be misaligned with the first through hole 401 and the third through hole 201. Each push rod 6 is inserted through the corresponding first through hole 401, second through hole 301 and third through hole 201, and the bottom of each push rod 6 abuts against the push plate 1. Each push rod 6 has an annular groove 601 corresponding to the push plate 1. The annular groove 601 is adapted to the thickness of the middle plate 3. When the second through hole 301 is misaligned with the first through hole 401 and the third through hole 201, the push plate 1 engages with the annular groove. The upper plate 401, the lower plate 201 and the push plate 1 are fixedly connected by the support plate 10. The upper plate 4, the lower plate 2 and the push plate 1 are coaxially provided with multiple guide holes. Each guide hole is slidably fitted with a guide rod 11. The push plate 1 is provided with a bushing 12 corresponding to each guide shaft. The bushing 12 is slidably fitted with the guide hole. The lifting drive cylinder 7 and the guide rod 11 are fixedly mounted on the base plate.
Claims
1. A label unscrambling mechanism for an automatic label unscrambler, characterized by: The application relates to a push plate, a lower plate and an upper plate arranged axially in sequence, the lower plate and the upper plate are provided with movable cavities, a middle plate capable of transverse displacement is slidably arranged in the movable cavities, the upper plate is sequentially arranged with first through holes arranged axially, the lower plate is provided with third through holes coaxially arranged with the first through holes, the middle plate is provided with second through holes, the push plate is provided with a plurality of jacks above the push plate, each jack can pass through the corresponding first through hole, the second through hole and the third through hole, a lifting driving cylinder capable of driving the push plate to move up and down is arranged below the push plate, a lateral pushing cylinder is connected to one end of the side surface of the push plate, the output end of the lateral pushing cylinder is connected with the middle plate, the lateral pushing cylinder can push the middle plate to move laterally, so that the second through hole is displaced to be arranged in a dislocation mode with the first through hole and the third through hole, each jack is inserted through the corresponding first through hole, the second through hole and the third through hole, and the bottom of each jack abuts against the push plate, each jack is provided with a ring groove corresponding to the push plate, the ring groove is matched with the thickness of the middle plate, and the push plate is clamped into the ring groove when the second through hole is dislocated from the first through hole and the third through hole.
2. The label unloading mechanism of an automatic label unloading machine according to claim 1, characterized in that: The output end of the lateral pushing cylinder comprises an output shaft and an L-shaped connecting plate connected with the output shaft, one end of the L-shaped connecting plate is fixedly connected with the output shaft perpendicularly, and the other end of the L-shaped connecting plate is fixedly connected with the middle plate in parallel.
3. The label unloading mechanism of an automatic label unloading machine according to claim 1, characterized in that: The upper plate, the lower plate and the push plate are fixedly connected through a supporting plate.
4. The label unloading mechanism of an automatic label unloading machine according to claim 2, characterized in that: The upper plate, the lower plate and the push plate are coaxially provided with a plurality of guide holes, guide rods are slidably arranged in the guide holes, and the push plate is provided with a shaft sleeve corresponding to each guide shaft below the push plate, and the shaft sleeve is slidably matched with the guide hole.