Automatic gold stamping equipment for hang tag labels
By setting positioning blocks and clamping blocks in the hot stamping equipment for hang tags, and utilizing the sliding and oscillating of the counterweight slider and pressing components, the problem of bending and sagging of the hang tag cardboard due to gravity transmission during the hot stamping process is solved, achieving a stable hot stamping effect.
Patent Information
- Application Number
- CN202520565945.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-28
AI Technical Summary
During the hot stamping process, the swinging of the movable pressure plate causes the weight of the tag cardboard to be transferred to the bottom, resulting in the tag bending and sagging, which affects the hot stamping effect.
Positioning blocks and clamping blocks are set on the movable pressure plate. By using the cooperation of counterweight slider and pressure component, the plate material is stably clamped through sliding and swinging, avoiding bending and sagging caused by gravity transmission.
This effectively prevents the cardboard tag from bending and sagging due to gravity during the hot stamping process, ensuring the stability and integrity of the hot stamping effect.
Smart Images

Figure CN223918947U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to bag label field, concretely is a kind of automatic gilding equipment for label tag. BACKGROUND
[0002] Label refers to the business card of clothing bag, record brand, product condition and other information on it, and some labels are gold-stamped for beauty.
[0003] When label is gold-stamped, usually first arrange and print several labels on paperboard to form a whole page, then cut the whole page along the edge of single label to make each label keep partly connected, then send the whole paperboard into gilding machine to press and gold-stamp, after gold-stamping, according to requirement, use the whole page of label to tear and put into bag for user when packaging, or tear and discharge to form independent label.
[0004] When cutting label with dotted line, to ensure the beauty of label front, usually cut from label front, so as to form cutting seam with large front width and small back width on paperboard, and then put into indentation gilding machine to gold-stamp label on paperboard front, movable pressure plate carrying paperboard will rotate vertically, since the large-width opening of cutting seam is on front, this makes paperboard where label is located easy to bend and drop from front when rotating, which affects the gold-stamping effect of label. SUMMARY
[0005] To solve the problem that movable pressure plate transfers gravity above label paperboard to bottom when swinging, which makes label in bottom range bend and make whole paperboard drop, the utility model provides a kind of automatic gilding equipment for label tag, structure includes fixed pressure plate installed on base and movable pressure plate movably installed in front of fixed pressure plate, plate material is placed on movable pressure plate, and gilding die is arranged on movable pressure plate, positioning block is laid on movable pressure plate to position the position of plate material, at least a pair of clamping blocks on both sides of plate material are arranged on movable pressure plate to clamp plate material, the clamping piece includes counterweight sliding block for sliding and pressure position piece for swinging, counterweight sliding block cooperates with inclined movable pressure plate to slide down, the position of pressure position piece includes static position and working position, pressure position piece cooperates with counterweight sliding block to move between static position and working position, the projection of pressure position piece on movable pressure plate in static position does not interfere with plate material, and pressure position piece and movable pressure plate cooperate to clamp plate material in working position.
[0006] Further, the clamp further comprises a base, a side cavity is arranged at the side end of the base, a structure beam is arranged at the top end of the base, and the pressure part is arranged in the side cavity.
[0007] Further, a bottom movable hole is arranged at the bottom end of the side cavity, a ball head shaft is arranged at the bottom end of the rotating shaft, and the rotating shaft is swingably arranged in the bottom movable hole; a top guide groove is arranged on the structure beam and points to the direction of the plate, an elastic part is arranged above the top guide groove, a clamping shaft is arranged at the top end of the rotating shaft, the clamping shaft passes through the top guide groove and is connected with the elastic part, and the elastic part provides elastic force for driving the rotating shaft to rotate and reset to the static position; the rotating shaft in the static position is inclined on the bottom movable hole, and the inclination direction is an end of the guide groove away from the plate.
[0008] Further, the elastic part comprises a swing elastic part and a torsion elastic part arranged at the end of the swing elastic part, the torsion elastic part is connected with the clamping shaft to provide elastic force for rotating the rotating shaft around the axis of the rotating shaft, and the swing elastic part is in a strip shape and is fixedly arranged at the first end of the structure beam.
[0009] Further, the rotating shaft in the working position is in a vertical shape on the bottom movable hole, the axis of the rotating shaft is perpendicular to the plane of the movable pressing plate, one side of the counterweight sliding block close to the rotating shaft is provided with a first contact inclined part, the distance between the front end of the first contact inclined part and the rotating shaft is greater than the distance between the end of the first contact inclined part and the rotating shaft, and the first contact inclined part is used for abutting against the pushing arm in the sliding of the counterweight sliding block; a top tightening part is arranged on the side surface of the counterweight sliding block and extends outward at the end of the first contact inclined part, the rotating shaft in the working position abuts against the top tightening part, and the top tightening part is used for pushing the inclined rotating shaft.
[0010] Further, the distance between one end of the inclined surface close to the fixed pressing plate and the surface of the movable pressing plate is greater than the distance between the other end away from the fixed pressing plate and the surface of the movable pressing plate, the included angle between the inclined surface of the base on the movable pressing plate and the horizontal plane when the movable pressing plate is unfolded to the maximum angle is greater than 1°, and the opening direction of the included angle is directed to the fixed pressing plate.
[0011] Further, a limiting shell is arranged outside the base, the base extends upward through a vertical structure wall to be provided with the structure beam at the top end, the counterweight sliding block is slidably arranged between the structure wall and the limiting shell and is slidably matched on the inclined surface of the base through the self weight.
[0012] Further, a resistance part is arranged on the bottom surface of the pressure arm and is used for contacting the plate.
[0013] Compared with the prior art, the clamp has the following beneficial effects:
[0014] The utility model discloses a fixed pressing plate is set up to the movable pressing plate on the plate material clamping, and the counterweight sliding block is driven to slide and drive the pressure position piece swing through the dead weight when the movable pressing plate is inclined, utilizes the pressure position piece to clamp the plate material, avoids the gravity of movable pressing plate above the swing in the paperboard of hanging label to transfer to the bottom and makes the hanging label in the range of bottom to bend, the situation of subsiding.
[0015] Moreover, the utility model discloses the pivot of pressure position piece is in the inclined state, under the drive of counterweight sliding block sliding, let resistance piece of pressure arm bottom surface not contact movable pressing plate's surface, the surface of plate material in the process of pressure arm rotation, but in the process of last pivot of toping of counterweight sliding block, pressure arm only presses to the plate material, reduces unnecessary friction to the plate material in the swing process. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is whole structure schematic diagram for the utility model automatic gold stamping equipment for hanging label.
[0017] Figure 2 It is side structure schematic diagram for the utility model gold stamping process of hanging label.
[0018] Figure 3 It is distribution mode schematic diagram for the utility model positioning block and clamping block.
[0019] Figure 4 It is three -dimensional structure schematic diagram for the utility model clamping block.
[0020] Figure 5 It is the schematic diagram of the cross section structure of the utility model clamping block.
[0021] Figure 6 It is the schematic diagram of the working state conversion of the utility model clamping block.
[0022] In the drawing: a, plate material;B, gold stamping film;1, base;2, fixed pressing plate;3, movable pressing plate;4, drive arm;5, gold stamping mould;6, conveying roller group;7, positioning block;8, clamping block;
[0023] 81, base;82, counterweight sliding block;83, limit shell;84, pressure position piece;85, elastic piece;811, inclined plane;812, side cavity;813, bottom movable hole;814, structure beam;815, top guide groove;821, initial contact inclined part;822, toping part;841, pivot;842, pressure arm;843, resistance piece;844, push arm;851, torsion elastic part;852, swing elastic part;
[0024] 8411, ball head shaft;8412, clamping shaft. DETAILED DESCRIPTION
[0025] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.
[0026] Examples, such as Figures 1-5 As shown: This utility model provides an automatic hot stamping equipment for hang tags and labels. The structure includes a fixed pressure plate 2 mounted on a base 1 and a movable pressure plate 3 movably mounted in front of the fixed pressure plate 2. It is known that the rear end of the fixed pressure plate 2 is provided with a rotary drive structure and is connected to the movable pressure plate 3 through a drive arm 4, which drives the movable pressure plate 3 to move in contact or away. A sheet material a is placed on the movable pressure plate 3 and a hot stamping mold 5 is provided on the movable pressure plate 3. Conveying roller groups 6 are provided at the top and bottom of the fixed pressure plate 2 for conveying hot stamping film b at the front end of the fixed pressure plate 2.
[0027] Positioning blocks 7 are laid on the movable pressure plate 3 to position the board material a. The positioning blocks 7 are laid on the bottom and one side of the board material a, and limit one corner of the board material a, thereby positioning the entire board material a. The movable pressure plate 3 is also provided with at least one pair of clamping blocks 8 located on both sides of the board material a to clamp the board material a. The clamping blocks 8 clamp the top of the board material a to prevent the weight of the hang tag cardboard above the movable pressure plate 3 from being transferred to the bottom during swinging, causing the hang tag in the bottom range to bend or fall.
[0028] The clamping component includes a sliding counterweight slider 82 and a oscillating pressing component 84. The counterweight slider 82 cooperates with the inclined movable pressing plate 3 to slide downwards. The clamping component also includes a base 81, which has an inclined surface 811 on which the counterweight slider 82 is slidably mounted. A limiting shell 83 is provided on the outer side of the base 81. The outer side of the base 81 extends upwards through a vertical structural wall and has a structural beam 814 at the top. The counterweight slider 82 is slidably engaged with the structural wall and the limiting shell. Between the shells 83, and slidingly engaged on the inclined surface 811 of the base 81 by its own weight, the position of the pressing member 84 includes a stationary position and a working position. The pressing member 84 and the sliding counterweight slider 82 cooperate to move between the stationary position and the working position. In the stationary position, the projection of the pressing member 84 on the movable pressure plate 3 does not interfere with the plate a, so as to avoid the plate a being blocked by the pressing member 84 when loading and unloading. In the working position, the pressing member 84 and the movable pressure plate 3 cooperate to clamp the plate a, so as to prevent the plate a from falling.
[0029] It should be noted that the distance from the end of the inclined surface 811 close to the fixed pressing plate 2 to the surface of the movable pressing plate 3 is greater than the distance from the end far away from the fixed pressing plate 2 to the surface of the movable pressing plate 3, thereby determining the inclination direction of the inclined surface 811. The angle between the inclined surface 811 of the base 81 on the movable pressing plate 3 expanded to the maximum angle and the horizontal plane is greater than 1°, and the opening direction of the angle points to the fixed pressing plate 2, so that the expanded movable pressing plate 3 can reset the counterweight sliding block 82 on the base 81. It is known that the counterweight sliding block 82 is made of a metal material with a large mass.
[0030] Specifically, the structure wall of the side end of the base 81 is provided with a side cavity, and the top end of the base 81 is provided with a structure beam 814 extended from the base 81. The pressure position piece 84 is arranged in the side cavity. The pressure position piece 84 includes a rotating shaft 841 in the middle, a pressure arm 842 and a push arm 844 arranged on the rotating shaft 841. The bottom surface of the pressure arm 842 is provided with a resistance piece 843 for contacting the plate material a. The push arm 844 in the static position is located in the sliding path of the counterweight sliding block 82 on the inclined surface 811. The bottom end of the side cavity is provided with a bottom movable hole 812; side cavity; 813. The bottom end of the rotating shaft 841 is provided with a ball head shaft 8411 and is swingably arranged in the bottom movable hole 812; side cavity; 813. The structure beam 814 is provided with a top guide groove 815 directed to the direction of the plate material a. An elastic piece 85 is arranged above the top guide groove 815. The top end of the rotating shaft 841 is provided with a clamping shaft 8412. The clamping shaft 8412 penetrates through the top guide groove 815 and is connected with the elastic piece 85. On the one hand, the elastic piece 85 provides an elastic force to drive the rotating shaft 841 to rotate and reset to the static position, so that the push arm 844 in the static position is located in the sliding path of the counterweight sliding block 82 on the inclined surface 811, and the projection of the pressure position piece 84 on the movable pressing plate 3 does not interfere with the plate material a. On the other hand, the elastic piece 85 provides an elastic force to drive the rotating shaft 841 to tilt and swing to the end of the guide groove away from the plate material a. Since the top guide groove 815 limits the swinging direction of the rotating shaft 841, the rotating shaft 841 in the static position is inclined on the bottom movable hole 812; side cavity; 813, and the inclination direction is directed to the end of the guide groove away from the plate material a.
[0031] Then, the rotating shaft 841 of the working position is in the vertical state on the bottom movable hole 812; the side cavity; 813, the axis is perpendicular to the plane of the movable pressing plate 3, the initial contact inclined part 821 is arranged on the side close to the rotating shaft 841 of the counterweight sliding block 82, the distance between the front end of the initial contact inclined part 821 and the rotating shaft 841 is greater than the distance between the end of the initial contact inclined part 821 and the rotating shaft 841, the initial contact inclined part 821 is used to abut against the push arm 844 in the sliding of the counterweight sliding block 82, the top tightening part 822 is arranged on the side of the counterweight sliding block 82 and extends outward from the end of the initial contact inclined part 821, the rotating shaft 841 of the working position abuts against the top tightening part 822, the top tightening part 822 is used to push the inclined rotating shaft 841, gradually abut against the push arm 844 through the inclined initial contact inclined part 821, and gradually rotate the rotating shaft 841 in the inclined state, then the rotating shaft 841 is adjusted through the abutment between the top tightening part 822 and the rotating shaft 841, so that the resistance element 843 on the bottom surface of the pressing arm 842 does not contact the surface of the movable pressing plate 3 and the surface of the plate material a in the rotating process of the pressing arm 842, and the pressing arm 842 presses the plate material a only in the process of finally adjusting the rotating shaft 841, thereby reducing unnecessary friction on the plate material a in the swinging process.
[0032] In addition, the elastic element 85 includes the swing elastic part 852 and the torsion elastic part 851 arranged at the end of the swing elastic part 852, the torsion elastic part 851 is in the structure of a coil spring, the clamping shaft 8412 is fixed at the inner end of the coil spring, the torsion elastic part 851 is connected with the clamping shaft 8412 to provide the elastic force for the rotating shaft 841 to rotate around the axis of the rotating shaft 841, that is, the torsion force resisting the rotation of the clamping shaft 8412 and the rotating shaft 841, and the swing elastic part 852 is in the strip shape and is fixedly arranged at the structure beam 814.
[0033] In summary, in the specific implementation, the plate material a is placed on the movable pressing plate 3, the position of the plate material a is positioned through the positioning block 7 at the corner, then the equipment is started to make the movable pressing plate 3 close to the fixed pressing plate 2, during which the counterweight sliding block 82 slides downward on the inclined surface 811, the initial contact inclined part 821 of the counterweight sliding block 82 abuts against the push arm 844, the rotating shaft 841 is driven to rotate, the pressing arm 842 rotates to the plate material a, the rotating shaft 841 is adjusted when the counterweight sliding block 82 moves to the abutment between the top tightening part 822 and the rotating shaft 841, so that the resistance element 843 on the bottom surface of the pressing arm 842 does not contact the surface of the movable pressing plate 3 and the surface of the plate material a in the rotating process of the pressing arm 842, the pressing arm 842 drives the resistance element 843 to clamp the plate material a in the process of finally adjusting the rotating shaft 841, thereby avoiding the sliding of the plate material a, then the movable pressing plate 3 is close to the fixed pressing plate 2, the gilding die 5 is heated to drive the gilding film b to be pressed and imprinted on the plate material a, thereby forming the gilding pattern;
[0034] The torsion spring 851 provides a subsequent restoring torsion when the rotating shaft 841 rotates, and the swing spring 852 also provides a subsequent restoring elastic force during the rotation and after the rotating shaft 841 is adjusted by the abutting of the tightening part 822 and the rotating shaft 841. After the gilding is completed, the movable platen 3 swings outwardly and out, and before swinging to the limit position, the counterweight slider 82 slides back on the inclined surface 811, and the counterweight slider 82 is separated from the abutting of the rotating shaft 841, and the elastic member 85 drives the rotating shaft 841 to return to the static position where the projection of the movable platen 3 does not interfere with the sheet material a.
[0035] The technical features of the above embodiments can be combined in any manner. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described, and it should be considered that any combination of the technical features is within the scope of the present disclosure as long as the combination does not result in contradictions.
Claims
1. A kind of automatic gilding equipment for hanging tag label, structure includes the fixed pressure plate of being installed on base and the movable pressure plate of being movably installed in front of fixed pressure plate, the movable pressure plate is placed with plate material and the gilding mould is equipped on movable pressure plate, it is characterized by: The movable pressing plate is provided with positioning blocks for positioning the position of the plate material, and is also provided with at least one pair of clamping blocks on both sides of the plate material for clamping the plate material; The clamping member comprises a counterweight sliding block and a pressing position member, the counterweight sliding block cooperates with the inclined movable pressing plate to slide downward, the pressing position member is located at a static position and a working position, and the pressing position member cooperates with the downward sliding counterweight sliding block to move between the static position and the working position; The projection of the pressing position member on the movable pressing plate in the static position does not interfere with the plate material, and the pressing position member cooperates with the movable pressing plate to clamp the plate material in the working position.
2. The automatic gilding apparatus for a hangtag label according to claim 1, characterized by: The clamping member further comprises a base, the base is provided with a side cavity at the side end and is provided with a structural beam at the top end extended from the base, and the pressing position member is arranged in the side cavity; The base is provided with an inclined surface, the counterweight sliding block is arranged on the inclined surface to slide, the pressing position member comprises a rotating shaft at the middle part, a pressing arm and a pushing arm arranged on the rotating shaft, and the pushing arm at the static position is located in the sliding path of the counterweight sliding block on the inclined surface.
3. The automatic gilding apparatus for a hangtag label according to claim 2, characterized in that: The bottom end of the side cavity is provided with a bottom movable hole, the bottom end of the rotating shaft is provided with a ball head shaft and is swingably arranged in the bottom movable hole; The structural beam is provided with a top guide groove in the direction of the plate material, an elastic member is arranged above the top guide groove, the top end of the rotating shaft is provided with a clamping shaft, the clamping shaft passes through the top guide groove and is connected with the elastic member, and the elastic member provides elastic force for driving the rotating shaft to rotate and reset to the static position; The rotating shaft at the static position is inclined on the bottom movable hole, and the inclined direction is directed to one end of the guide groove away from the plate material, and the elastic member provides elastic force for driving the rotating shaft to tilt and swing to one end of the guide groove away from the plate material.
4. The automatic gilding apparatus for a hangtag label according to claim 3, characterized in that: The elastic member comprises a swing elastic part and a torsion elastic part arranged at the end of the swing elastic part, the torsion elastic part is connected with the clamping shaft to provide elastic force for rotating the rotating shaft around the axis of the rotating shaft, and the swing elastic part is in strip shape and is fixedly arranged at the top end of the structural beam.
5. The automatic gilding apparatus for a hangtag label according to claim 3, characterized by: The rotating shaft at the working position is in vertical shape on the bottom movable hole, the axis of the rotating shaft is perpendicular to the plane of the movable pressing plate, one side of the counterweight sliding block close to the rotating shaft is provided with a first contact inclined part, the distance between the front end of the first contact inclined part and the rotating shaft is greater than the distance between the end of the first contact inclined part and the rotating shaft, and the first contact inclined part is used for abutting against the pushing arm in the sliding of the counterweight sliding block; The side surface of the counterweight sliding block is provided with a tightening part outwardly extended at the end of the first contact inclined part, the rotating shaft at the working position abuts against the tightening part, and the tightening part is used for pushing the inclined rotating shaft.
6. The automatic gilding apparatus for a hangtag label according to claim 2, characterized by: The distance from one end of the inclined surface close to the fixed pressing plate to the surface of the movable pressing plate is greater than the distance from the other end away from the fixed pressing plate to the surface of the movable pressing plate, the included angle between the inclined surface of the base on the movable pressing plate and the horizontal plane when the movable pressing plate is spread to the maximum angle is greater than 1°, and the opening direction of the included angle is directed to the fixed pressing plate.
7. The automatic gilding apparatus for a hangtag label according to claim 2, characterized by: The base is provided with a limiting shell outside, the base is upwardly extended through a vertical structural wall to be provided with a structural beam at the top end, the counterweight sliding block is slidingly engaged between the structural wall and the limiting shell and is cooperatively slid on the inclined surface of the base through the dead weight.
8. The automatic gilding apparatus for a hangtag label according to claim 2, characterized by: The bottom surface of the pressing arm is provided with a resistance member for contacting the plate material.