This application claims priority to PCT Application No. PCT/CN2020/131131, having a filing date of Nov. 24, 2020, which is based on CN Application No. 202010073088.5, having a filing date of Jan. 22, 2020, the entire contents both of which are hereby incorporated by reference.
The following relates to the field of hot stamping of license plates, particularly to a hot stamping machine.
After license plates are formed, it is necessary to use a hot stamping machine to dye the raised words. Currently, rolling hot stamping is adopted in general for the words on license plates, at a low working efficiency.
An aspect relates to a hot stamping machine, which does not require manual involvement in feeding and discharging and has a high hot stamping efficiency.
In order to achieve the foregoing technical aspect, embodiments of the present invention adopt the following technical solution:
A hot stamping machine, comprising:
As a further improvement of embodiments of the present invention, each of the lifting mechanisms comprises a rotating nut ball screw, a bottom plate and limit rods; the limit rods surround a lifting plate and the bottoms of the limit rods are fixed to the bottom plate; a through hole is arranged in the middle of the bottom plate, internal threads are arranged inside the through hole, the top of the rotating nut ball screw is connected to the lifting plate, and the bottom of the rotating nut ball screw passes through the through hole, and is connected to the bottom plate in a threaded manner.
As a further improvement of embodiments of the present invention, the hot stamping machine further comprises a lower heating plate, and the lower heating plate is arranged below the processing platform and used for heating the processing platform. The pressing requires a certain temperature, while the license plate itself is cold. When the license plate contacts the upper heating plate, it will reduce the temperature of the upper heating plate, thereby resulting in a prolonged heating time. The lower heating plate provided in embodiments of the present invention can preheat the license plate in advance. When the preheated license plate contacts the upper heating plate, it will not affect the temperature of the upper heating plate, making the heating time shorter and the pressing faster.
As a further improvement of embodiments of the present invention, the grabbing devices are sucking discs. Further, each group of the grabbing devices includes at least one sucking disc.
As a further improvement of embodiments of the present invention, each of the grabbing device moving mechanisms comprises a synchronous wheel rotating motor, a synchronous wheel, a synchronous belt, a connection profile, lifting cylinders and a slide, the tops of the lifting cylinders are fixed to the connection profile and the bottoms of the lifting cylinders are connected to the grabbing devices and drive the grabbing devices to move perpendicularly; the connection profile is fixed to the synchronous belt by the slide, and the synchronous wheel rotating motor drives the synchronous wheel, which drives the synchronous belt to rotate, so that the grabbing devices move horizontally.
As a further improvement of embodiments of the present invention, the carbon ribbon conveying mechanism comprises a bull stick rotating motor and two bull sticks; the two bull sticks are correspondingly connected to two sides of the upper heating plate, and two ends of the carbon ribbon are wrapped around the bull sticks on the two sides; and one of the bull sticks is fixedly connected to an output shaft of the bull stick rotating motor.
As a further improvement of embodiments of the present invention, a suction opening is arranged on the processing platform and connected to a vacuum generator.
As a further improvement of embodiments of the present invention, a gravity sensor is arranged on the processing platform.
As a further improvement of embodiments of the present invention, a protective casing is arranged outside the hot stamping machine.
As a further improvement of embodiments of the present invention, the hot stamping machine further comprises a displayer, used for displaying the internal temperature and operating state of the hot stamping machine.
Compared with existing rolling hot stamping, the hot stamping machine provided by embodiments of the present invention does not require manual involvement in feeding and discharging, shortens the time for hot stamping one license plate by two-thirds, and has a high hot stamping efficiency.
Some of the embodiments will be described in detail, with references to the following Figures, wherein like designations denote like members, wherein:
In the figures: 1. machine table, 2. lifting plate, 31. upper heating plate, 32. lower heating plate, 4. single-rod cylinder, 5. grabbing device, 6. grabbing device moving mechanism, 7. carbon ribbon, 8. carbon ribbon conveying mechanism, 9. processing platform, 10. processing platform lifting cylinder, 11. protective casing, 12. displayer, 21. rotating nut ball screw, 22. bottom plate, 23. limit rod, 61. synchronous wheel rotating motor, 62. synchronous wheel, 63. synchronous belt, 64. connection profile, 65. lifting cylinder, 66. slide, 81. bull stick rotating motor, 82. bull stck.
A hot stamping machine as shown in
The grabbing devices in this embodiment are sucking discs. Each group of the grabbing devices includes at least one sucking disc. Two sucking discs are provided in this embodiment.
An exemplary method for use of the hot stamping machine provided by embodiments of the present invention is as follows:
A license plate is placed on a lifting plate 2 on a side of the machine table 1. The grabbing device moving mechanism 6 drives a grabbing device 5 to grab the license plate on the lifting plate 2, then places the license plate on the processing platform 9 in the middle, and the grabbing device returns to the original position. The limit device of the processing platform 9 senses the license plate through pressure detection, the lower heating plate 32 is started to preheat the license plate, and the piston rod of the single-rod cylinder 4 pushes the upper heating plate 31 forward horizontally until the upper heating plate 31 moves over the license plate of the processing platform 8. The negative pressure suction of the suction opening on the processing platform 9 sucks the license plate.
Then the piston rod of the processing platform lifting cylinder 10 drives the processing platform 9 to move upwards until the carbon ribbon 7 is gripped between the license plate of the processing platform 9 and the upper heating plate 31. The carbon on the carbon ribbon 7 is transferred onto the raised words on the license plate, thereby achieving dyeing of the words.
After the dyeing, the processing platform 9 descends to the original position, and the upper heating plate 31 returns to the original position. Now, the grabbing device 5 comes and grabs the dyed license plate and puts the license plate to a lifting plate 2 on the other side. By repeating the above steps, the license plates stacked on the lifting plate 2 on a side can be gradually placed on the lifting plate 2 on the other side.
The operating method of the lifting mechanisms: Initially, the lifting plate 2 clings to the bottom plate 22. A stack of license plates are placed on the lifting plate 2. Sensors are installed at the upper limit position and lower limit position of the limit rods 23. When the upper limit sensor does not sense a license plate, the rotating nut ball screw 21 drives the lead screw to rise perpendicularly. The lead screw pushes up the lifting plate 2 until the top license plate among a stack of the license plates surpasses the limit rods 23, so that the top license plate can be grabbed away. By the above method, the license plates can be taken away one by one. Then the rotating nut ball screw 21 descends to the lower limit so that license plates are put in. The above work is repeated.
Although the present invention has been disclosed in the form of preferred embodiments and variations thereon, it will be understood that numerous additional modifications and variations could be made thereto without departing from the scope of the invention.
For the sake of clarity, it is to be understood that the use of “a” or “an” throughout this application does not exclude a plurality, and “comprising” does not exclude other steps or elements. The mention of a “unit” or a “module” does not preclude the use of more than one unit or module.
Number | Date | Country | Kind |
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202010073088.5 | Jan 2020 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2020/131131 | 11/24/2020 | WO |
Publishing Document | Publishing Date | Country | Kind |
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WO2021/147503 | 7/29/2021 | WO | A |
Number | Name | Date | Kind |
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20180243781 | Buerger | Aug 2018 | A1 |
Number | Date | Country |
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105667076 | Jun 2016 | CN |
106142830 | Nov 2016 | CN |
207889334 | Sep 2018 | CN |
208843366 | May 2019 | CN |
111114111 | May 2020 | CN |
211730636 | Oct 2020 | CN |
102015208915 | Nov 2016 | DE |
H10286941 | Oct 1998 | JP |
Entry |
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International Search Report dated Feb. 23, 2021 for PCT/CN2020/131131. |
Number | Date | Country | |
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20230049022 A1 | Feb 2023 | US |