A stamping device for clothing labels
By designing an automated clothing sign stamping device, the automatic discharge, stamping and unloading of signs is achieved using the drive shaft and motor drive, which solves the problem of inefficiency in the existing technology and achieves efficient automated production.
Patent Information
- Application Number
- CN202310606854.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-24
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2043-05-24
AI Technical Summary
The existing clothing sign stamping process relies on manual operations, resulting in low processing efficiency and high product scrapping rate.
An automated device including a frame body, stamping unit and feeding unit is designed. The automatic discharge, stamping and unloading of the sign is achieved by using the drive shaft and motor drive. Combined with the design of the pushing parts and feeding units, the fully automatic processing process of the sign is realized.
It improves processing efficiency, reduces the demand for manual operation, reduces product scrapping rate, and realizes automated production.
Smart Images

Figure CN116551786B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of clothing accessory processing, and more specifically, it relates to a stamping device for clothing labels. Background Art
[0002] With the improvement of living conditions, people begin to pursue fashion. Clothing of various styles and uses can best reflect the sense of fashion. In the production process of clothing, in order to achieve differentiation, some will attach various labels outside the clothing, and there will be exclusive identifiers on the labels, such as words, numbers, patterns or letters. The identifiers on the existing labels are stamped and formed by a stamping machine using a steel seal.
[0003] Currently, during the stamping process of labels, manual labor is used to place the labels under the working station of the stamping machine, and then the stamping machine is driven to stamp the labels. During the stamping process, since the labels still need to be placed and taken, the processing efficiency is very low. Summary of the Invention
[0004] Aiming at the deficiencies of the existing technology, the purpose of the present invention is to provide a stamping device for clothing labels with a reasonable and simple structure, strong practicability, capable of realizing automatic blanking, automatic stamping, automatic discharging, and high processing efficiency.
[0005] To achieve the above purpose, the present invention provides the following technical solutions:
[0006] A stamping device for clothing labels, including a frame, a stamping unit and a material receiving unit placed on the frame,
[0007] The stamping unit includes a base, a storage bin and a press. The base is rotatably connected to the frame;
[0008] A power unit and a transmission shaft are provided on the base. The transmission shaft passes through the base and is rotatably connected to it. The power unit drives the transmission shaft to rotate.
[0009] The storage bin includes a bin body, a cover body and a top seat. The cover body is hinged to the frame. The top seat is placed below the bin body. A number of working holes penetrating its body are opened in the bin body. Both the bin body and the top seat are sleeved on the outer peripheral wall of the transmission shaft. The bin body and the top seat are rotatably connected to the transmission shaft. An outlet for the label to pass through is opened on the top seat.
[0010] A pushing component is provided in the bin body, and the pushing component is connected to the end of the transmission shaft.
[0011] The press is placed on the cover body so that after the cover body and the bin body are closed, the label falling on the working hole is stamped.
[0012] The material receiving unit is placed below the top seat to receive the label falling from the outlet.
[0013] The present invention is further configured such that: a connection hole for the transmission shaft to pass through is provided at the center of the bin body, and a first bearing is provided in the connection hole.
[0014] The transmission shaft includes a pipe body and a rod body. The rod body is placed inside the pipe body and can rotate relative to the pipe body. One end of the pipe body is connected to the lower end surface of the bin body, and the other end is connected with a first driven gear.
[0015] Both ends of the rod body penetrate through the pipe body and are connected with the first bearing. One end of the rod body is connected with the pushing component, and the other end of the rod body is connected with a second driven gear.
[0016] The material receiving unit is sleeved outside the pipe fitting. A second bearing is provided at the center of the material receiving unit, and the pipe fitting is rotatably connected with the second bearing.
[0017] The present invention is further configured such that: the power unit includes a lifting cylinder and a first motor. The first driving gear is connected to the output end of the first motor. The output end of the lifting cylinder is connected to the first motor so as to control the lifting of the first motor to make the first driving gear engage with the first driven gear or engage with the second driven gear.
[0018] The present invention is further configured such that: a flip cover component is provided on the frame body. The flip cover component includes a second motor and a push rod component. Both ends of the push rod component are rotatably connected with the frame body. The body of the push rod component is connected with the cover body. One end of the push rod component is connected with a third driven gear.
[0019] The output end of the second motor is connected with a second driving gear, and the second driving gear is an incomplete gear body.
[0020] Shaft rods rotatably connected with the frame body are provided on both sides of the base. A fourth driven gear is connected to one of the shaft rods.
[0021] The third driven gear and the fourth driven gear are successively engaged and driven by the second driving gear when the second driving gear rotates.
[0022] The present invention is further configured such that: the pushing component includes a shaft sleeve part and two scraping strips arranged on the outer peripheral wall of the shaft sleeve part. The scraping strips are arc-shaped, and the ends of the scraping strips are close to the inner wall of the bin. The shaft sleeve part is connected to the end of the rod body.
[0023] The present invention is further configured such that: two punching positions are provided on the cover body. The two punching positions are arranged corresponding to two adjacent working holes arranged inside and outside. The output end of the press is placed behind the punching positions so that the punch penetrates out from the punching positions and extends to the working holes to punch the nameplate.
[0024] The present invention is further configured as follows: The press is placed on the outer end face of the cover body. The press includes a pressing plate, a machine body, and a punch. There are two punches. Two guide columns are provided on the cover body. The pressing plate is movably connected to the guide columns. The rear end of the punch abuts against the pressing plate. A spring is sleeved outside the punch. One end of the spring is connected to the pressing plate, and the other end abuts against the cover body. The output end of the machine body abuts against the pressing plate.
[0025] The present invention is further configured as follows: The punch includes a main body and a die head detachably connected thereto. The die head is engraved with a forming pattern.
[0026] Comparing with the deficiencies of the prior art, the beneficial effects of the present invention are as follows:
[0027] By placing the nameplate in the bin body, using the first motor to drive the pushing component to rotate to push the nameplate into each station hole, covering the cover body on the bin body, and stamping the nameplate on the station hole by the punch on the press. During this period, by driving the rotation of the bin body, each station hole can be moved under the punch for stamping. During the rotation of the bin body, the stamped nameplate will fall from the discharge port on the top seat to the receiving unit. When all the nameplates in the bin body are processed and dropped into the receiving unit, control the rotation of the entire base to turn it over and drop the nameplate into the storage.
[0028] For the entire processing process, as long as the operator places the nameplate in the bin body, the subsequent processing process can be fully automated, greatly improving the processing efficiency. Moreover, by automatically limiting the position of the nameplate, the rejection rate of the product during stamping is reduced. Description of the Drawings
[0029] Figure 1 is a schematic structural diagram of the present invention;
[0030] Figure 2 is a second three-dimensional structural diagram of the present invention;
[0031] Figure 3 is a partial exploded schematic diagram of the present invention;
[0032] Figure 4 is a combined schematic diagram of the bin body and the top seat of the present invention.
[0033] Frame 1, Base 10, Storage bin 2, Receiving unit 3, Power unit 4, First motor 41, Lifting cylinder 42, Transmission shaft 5, Station hole 20, Bin body 21, Top seat 22, Cover body 23, Discharge port 220, Pipe body 51, Rod body 52, Pushing component 6, Second motor 61, Push rod part 62, First driving gear 11, Second driving gear 12, Third driving gear 13, Fourth driving gear 14, Press 7, Machine body 71, Pressing plate 72, Punch 73, Guide rod 74, Spring 75, Insertion part 8, Pushing component 9, Sleeve part 91, Scraping strip 92. Embodiment
[0034] Refer to Figures 1 to 4 The embodiments of the present invention will be further described below.
[0035] The specific structure of this embodiment includes a frame 1, a stamping unit placed on the frame 1, and a material receiving unit 3.
[0036] The stamping unit includes a base 10, a storage bin 2, and a press 7.
[0037] Shaft rods rotatably connected to the frame 1 are provided on both sides of the base 10. A fourth driven gear 14 is connected to one of the shaft rods and then rotatably connected. The base 10 can be turned over within the frame 1 through the shaft rods.
[0038] A power unit 4 and a transmission shaft 5 are provided on the base 10. The transmission shaft 5 penetrates through the base 10 and is rotatably connected to it. The power unit 4 drives the transmission shaft 5 to rotate.
[0039] The power unit 4 includes a lifting cylinder 42 and a first motor 41. A first driving gear 101 is installed on the output end of the first motor 41. The output end of the lifting cylinder 42 is connected to the first motor 41 to control the lifting of the first motor 41 on the base 10.
[0040] The storage bin 2 includes a bin body 21, a cover body 23, and a top seat 22. The cover body 23 is hingedly connected to the frame 1. The top seat 22 is placed below the bin body 21. A number of working holes 20 penetrating through its body are provided in the bin body 21. Both the bin body 21 and the top seat 22 are sleeved on the outer peripheral wall of the transmission shaft 5. The bin body 21 and the top seat 22 are rotatably connected to the transmission shaft 5. An outlet through which a label can pass is provided on the top seat 22.
[0041] The transmission shaft 5 includes a pipe body 51 and a rod body 52. The pipe member 51 is hollow. The rod body 52 is placed inside the pipe body 51 and can rotate relative to the pipe body 51. One end of the pipe body 51 is fixedly connected to the lower end face of the bin body 21, and the other end is connected to a first driven gear 11. Both the top seat 22 and the material receiving unit 3 are sleeved on the outside of the pipe body 51. A bearing member is provided at the connection between the pipe member 51 and the base 10, so that the pipe member 51 can drive the bin body 21 to rotate relative to the base 10.
[0042] A connection hole is provided at the center of the bin body 21. A first bearing 211 is provided in the connection hole. Both ends of the rod body 52 penetrate through the pipe body 51, and one end penetrates through the first bearing and is rotatably connected, and a pushing member 9 is connected to this end. The other end of the rod body 52 is connected to a second driven gear 12.
[0043] The pusher component 9 moves on the surface of the bin body 21. The pusher component 9 includes a bushing part 91 and two scraping strips 92 disposed on the outer peripheral wall of the bushing part 91. The scraping strips 92 are arc-shaped, the ends of the scraping strips 92 are close to the inner wall of the bin, and the bushing part 91 is connected to the end of the rod body 52. When the first driving gear 101 of the first motor 41 meshes with the second driven gear 12, the rotation of the rod body 52 can be controlled.
[0044] A clamping groove is provided on the bushing part 91, and a plugging part 8 corresponding to the clamping groove is provided on the cover body 23. When the cover body 23 is placed on the bin body 21, a part of the plugging part 8 will extend into the clamping groove. When the cover body 23 covers the bin body 21, it is supported through the cooperation of the plugging part 8 and the clamping groove. An image sensing probe is installed on the plugging part 8 to detect whether the label in the bin body 21 has fallen into the working hole 20.
[0045] The receiving unit 3 is of a disc structure. The receiving unit 3 is sleeved on the outside of the pipe fitting 51. A second bearing 31 is provided at the center of the receiving unit 3, and the pipe fitting 51 is rotatably connected to the second bearing. The receiving unit 3 is placed below the top seat 22 to receive the labels falling from the discharge port.
[0046] During the above work, when the label is placed into the bin body 21, the first driving gear meshes with the first driven gear 11, the first motor 41 drives the rod body 52 to rotate, driving the scraping strips 92 to rotate. The scraping strips 92 will drive the labels to move in the bin body 21 so that all these labels fall into the working holes 20.
[0047] When the press 7 punches the label in the working hole 20, the first motor 41 is driven to rise by the lifting air cylinder 42, so that the first driving gear 101 disengages from the first driven gear 11 and then meshes with the second driven gear 12, realizing the first motor 41 driving the bin body 21 to rotate. During the rotation of the bin body 21, the processed labels will be sent to the discharge port of the fixing seat, so that the labels fall onto the receiving unit 3 below.
[0048] A flip cover component is provided on the frame body 1. The flip cover component includes a second motor 61 and a push rod member 62. Both ends of the push rod member 62 are rotatably connected to the frame body 1. Bearings for connecting the push rod member are installed at corresponding positions on the frame body 1 to realize the rotation of the push rod member relative to the frame body 1.
[0049] One end of the push rod member 62 is connected to a third driven gear 13 and then connected to the bearing on the frame body 1. The body part of the push rod member 62 is connected to the cover body 23. When the push rod member 62 rotates, it will drive the cover body 23 to move and flip.
[0050] The output end of the second motor 61 is connected to a second driving gear 102, and the second driving gear 102 is an incomplete gear body. The third driven gear 13 and the fourth driven gear 14 are meshed and driven by the second driving gear 102 successively when the second driving gear 102 rotates.
[0051] When working as described above, since the second driving gear 102 connected to the second motor 61 is an incomplete gear body, its movement during rotation is intermittent. When the second driving gear 102 rotates in one reverse direction, it first meshes with the third driven gear 13, thereby driving the push rod member 62 to rotate, causing the cover body 23 to cover the bin body 21 so that the press 7 can work. When the press 7 is working, the second motor 61 stops driving. After the stamping process is completed and the nameplate falls off, the second motor 61 continues to drive. The part without tooth profile on the second driving gear 102 contacts the third driven gear 13, and the part with tooth profile on it meshes with the fourth driven gear 14, thereby driving the base 10 to flip, causing the nameplate on the receiving unit 3 to fall off.
[0052] Two punching positions are provided on the cover body 23, and the two punching positions are arranged corresponding to two adjacent working holes 20 arranged in an inner and outer manner. The settings of the two punching positions and the two working holes 20 correspond to the double-head stamping of the press 7, improving the efficiency.
[0053] The press 7 is placed on the outer end face of the cover body 23 so as to stamp the nameplate falling onto the working hole 20 after the cover body 23 and the bin body 21 are covered.
[0054] The press 7 includes a pressure plate 72, a machine body 71 and a punch 73. There are two punches 73. Two guide columns 74 are provided on the cover body 23. The pressure plate 72 is movably connected to the guide columns 74. The rear end of the punch 73 abuts against the pressure plate 72. A spring 75 is sleeved outside the punch 73. One end of the spring 75 is connected to the pressure plate 72, and the other end abuts against the cover body 23. The output end of the machine body 71 abuts against the pressure plate 72. The punch 73 includes a main body and a die head detachably connected thereto, and a formed pattern is engraved on the die head.
[0055] When working as described above, the machine body 71 is a hydraulic press. When the machine body 71 drives the pressure plate 72 to move in one direction, the pressure plate 72 drives the two punches 73 to stamp the nameplate on the working hole 20. During this period, the spring 75 is used for resetting to improve the stamping efficiency. For stamping different patterns, characters or letters, it can be achieved by replacing the die head. The die head and the main body of the punch 73 are connected by threads.
[0056] The lifting cylinder 42, the first motor 41, the second motor 61, the image sensor probe and the PC terminal are electrically correlated, and commands are output through the PC terminal to make these components perform actions.
[0057] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any ordinary changes and substitutions made by those skilled in the art within the scope of the technical solution of the present invention should be included in the protection scope of the present invention.
Claims
1. A stamping device for clothing labels, characterized in that: It includes a frame body, a stamping unit and a material receiving unit placed on the frame body. The stamping unit includes a base, a storage bin and a press. The base is rotatably connected to the frame body. A power unit and a transmission shaft are provided on the base. The transmission shaft passes through the base and is rotatably connected to it. The power unit drives the transmission shaft to rotate. The storage bin includes a bin body, a cover body and a top seat. The cover body is hingedly connected to the frame body. The top seat is placed below the bin body. A number of working holes penetrating through its body are provided in the bin body. Both the bin body and the top seat are sleeved on the outer peripheral wall of the transmission shaft. The bin body and the top seat are rotatably connected to the transmission shaft. An outlet through which a nameplate can pass is provided on the top seat. A pushing component is provided in the bin body. The pushing component is connected to the end of the transmission shaft. The press is placed on the cover body so that after the cover body and the bin body are closed, the nameplate falling on the working hole can be stamped. The material receiving unit is placed below the top seat to receive the nameplate falling from the outlet. A connection hole for the transmission shaft to pass through is provided at the center of the bin body. A first bearing is provided in the connection hole. The transmission shaft includes a pipe body and a rod body. The rod body is placed inside the pipe body and can rotate relative to the pipe body. One end of the pipe body is connected to the lower end face of the bin body, and the other end is connected with a first driven gear. Both ends of the rod body penetrate through the pipe body and are connected with the first bearing. One end of the rod body is connected with the pushing component, and the other end of the rod body is connected with a second driven gear. The material receiving unit is sleeved on the outside of the pipe body. A second bearing is provided at the center of the material receiving unit. The pipe body is rotatably connected with the second bearing. The power unit includes a lifting cylinder and a first motor. A first driving gear is connected to the output end of the first motor. The output end of the lifting cylinder is connected to the first motor to control the lifting of the first motor so that the first driving gear meshes with the first driven gear or meshes with the second driven gear. A flip-up component is provided on the frame body. The flip-up component includes a second motor and a push rod component. Both ends of the push rod component are rotatably connected to the frame body. The body of the push rod component is connected to the cover body. One end of the push rod component is connected with a third driven gear. The output end of the second motor is connected with a second driving gear. The second driving gear is an incomplete gear body. Shaft rods rotatably connected to the frame body are provided on both sides of the base. A fourth driven gear is connected to one of the shaft rods. The third driven gear and the fourth driven gear are meshed and driven with the second driving gear successively when the second driving gear rotates.
2. The stamping device for clothing labels according to claim 1, wherein: The pushing component includes a shaft sleeve part and two scraping strips placed on the outer peripheral wall of the shaft sleeve part. The scraping strips are arc-shaped. The ends of the scraping strips are close to the inner wall of the material bin. The shaft sleeve part is connected to the end of the rod body.
3. The stamping device for clothing labels according to claim 2, wherein: Two punching positions are provided on the cover body. The two punching positions are arranged corresponding to two adjacent working holes arranged inside and outside. The output end of the press is placed behind the punching positions so that the punch can penetrate from the punching positions and extend to the working holes to stamp the nameplate.
4. The stamping device for clothing labels according to claim 3, characterized in that: The press is placed on the outer end face of the cover body. The press includes a pressing plate, a machine body and punches. There are two punches. Two guiding columns are provided on the cover body. The pressing plate is movably connected to the guiding columns. The rear ends of the punches are in contact with the pressing plate. Springs are sleeved outside the punches. One end of the spring is connected to the pressing plate, and the other end is in contact with the cover body. The output end of the machine body abuts against the pressing plate.
5. The stamping device for clothing labels according to claim 4, characterized in that: The punch includes a body and a die head detachably connected thereto, and a forming pattern is engraved on the die head.
Citation Information
Patent Citations
Automatic punching device of carousel formula multistation
CN208600552U