Automatic fan lettering device applied to conveying mechanism
By setting an automatic engraving device and a top-holding component on the transmission mechanism, and using cylinder drive to achieve X/Y axis position adjustment, the compatibility problem between the fan equipment and the transmission mechanism is solved, realizing fast and accurate engraving and improving efficiency.
Patent Information
- Application Number
- CN202423208885.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-25
AI Technical Summary
Existing fan equipment cannot work efficiently with the transmission mechanism, requires additional engraving, and has poor compatibility, making it unsuitable for different product models.
Design an automatic lettering device with a fan, comprising a transmission mechanism, an automatic lettering device, and a top holding component. The device utilizes a cylinder drive to achieve X/Y axis position adjustment and, combined with a lettering block and an inkpad tray, enables fast and accurate lettering.
It enables rapid and precise engraving of fan products, applicable to different product models, and improves processing efficiency.
Smart Images

Figure CN223546045U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fan equipment technology, and in particular to an automatic lettering device for fans applied to conveying mechanisms. Background Technology
[0002] The aerodynamic performance of a fan typically refers to the relationship between its flow rate and static pressure, and between flow rate and power. The flow rate of a fan is equal to its intake or exhaust volume per unit time, which is the volumetric flow rate of gas passing through the duct per unit time in a performance test.
[0003] The existing technology, with application number CN2024106654741, has a structure that cannot be used in conjunction with a transmission mechanism, resulting in low adaptability. After the product is processed, it needs to be engraved again on additional equipment and tested, which is time-consuming. In order to be used in conjunction with an automated production line and to be compatible with different product models, the technology needs to be developed.
[0004] Therefore, it is necessary to design an automatic lettering device for fans used in conveying mechanisms to solve the above problems. Utility Model Content
[0005] The purpose of this invention is to provide an automatic lettering device for a fan used in a conveying mechanism, so as to overcome the above-mentioned shortcomings of the existing technology.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] An automatic engraving device for a conveying mechanism includes a conveying mechanism, an automatic engraving device located on one side of the conveying mechanism, and a top-holding assembly located on the other side of the conveying mechanism and corresponding to the automatic engraving device. The automatic engraving device includes a mounting bracket, a horizontal transverse slide rail mounted on the mounting bracket, a drive plate slidably mounted on the horizontal transverse slide rail via a slider, a horizontal transverse drive cylinder driving the drive plate to move along the horizontal transverse slide rail, a longitudinal slide rail mounted on the drive plate and perpendicular to the conveying mechanism, a drive base mounted on the longitudinal slide rail via a slider, a horizontal longitudinal drive cylinder driving the drive base to move along the longitudinal slide rail, an engraving block mounted on the upper part of the drive base via a bearing, a rotary motor driving the engraving block to rotate, an engraving drive cylinder driving the engraving block to engrave characters, an ink pad drive cylinder located below the engraving block, and an ink pad tray driven upward by the ink pad drive cylinder.
[0008] Preferably, the transmission mechanism is provided with several sets of limiting mechanisms, and several sets of top-feeding mechanisms are provided at the bottom of the transmission mechanism.
[0009] Preferably, the top material mechanism includes a top material cylinder placed at the bottom of the transmission mechanism and a top material block driven by the top material cylinder.
[0010] Preferably, the top-holding assembly includes a top-holding bracket disposed on the side of the transmission mechanism, a top-holding cylinder disposed on the top-holding bracket, and a top-holding block driven by the top-holding cylinder.
[0011] The beneficial effects of this utility model are as follows: This technical solution sets up a lettering device on the side of the transmission mechanism and uses a cylinder to drive the X and Y axis position adjustment, thereby quickly and accurately positioning and aligning with the position to be lettered. The position is adjustable and suitable for processing different models of products. Furthermore, an ink pad tray is set at the bottom of the lettering block to facilitate rapid ink application and lettering, thereby improving efficiency. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the structure of an automatic lettering device for a fan applied to a conveying mechanism according to the present invention;
[0013] Figure 2 This is a schematic diagram of an automatic lettering device for a fan automatic lettering device applied to a conveying mechanism according to the present invention;
[0014] In the diagram: 1. Transmission mechanism; 11. Ejector mechanism; 2. Automatic engraving device; 3. Supporting assembly; 21. Mounting bracket; 22. Horizontal slide rail; 23. Drive plate; 24. Horizontal drive cylinder; 25. Longitudinal slide rail; 26. Drive base; 27. Horizontal longitudinal drive cylinder; 28. Engraving block; 29. Rotary motor; 291. Engraving drive cylinder; 292. Inkpad drive cylinder; 293. Inkpad tray; 31. Supporting bracket; 32. Supporting cylinder; 33. Supporting block. Detailed Implementation
[0015] Reference Figures 1 to 2 An automatic lettering device for a fan used in a conveying mechanism includes a transmission mechanism 1, an automatic lettering device 2 placed on one side of the transmission mechanism, and a top holding component 3 placed on the other side of the transmission mechanism and corresponding to the automatic lettering device.
[0016] To facilitate use with the engraving mechanism, the transmission mechanism 1 is provided with several sets of limiting mechanisms, and several sets of ejecting mechanisms are provided at the bottom of the transmission mechanism 1. Since the product is a square-structured fan mechanism, the limiting mechanisms are arranged diagonally on both sides of the transmission mechanism 1. The fan is fixed by the relative limiting and fixing of the limiting mechanisms. The limiting mechanism includes a limiting cylinder and a limiting block driven by the limiting cylinder.
[0017] The top material mechanism 11 includes a top material cylinder 12 placed at the bottom of the transmission mechanism 1 and a top material block driven by the top material cylinder. When the fan moves to the top material mechanism, it is driven to rise upward by the top material cylinder, and the top material block lifts the fan. The fan is then quickly limited by the limiting mechanism.
[0018] The automatic engraving device 2 includes a mounting bracket 21, a horizontal slide rail 22 mounted on the mounting bracket, a drive plate 23 slidably mounted on the horizontal slide rail via a slider, a horizontal drive cylinder 24 that drives the drive plate to move along the horizontal slide rail, a longitudinal slide rail 25 mounted on the drive plate and perpendicular to the transmission mechanism 1, a drive base 26 mounted on the longitudinal slide rail via a slider, a horizontal longitudinal drive cylinder 27 that drives the drive base to move along the longitudinal slide rail, an engraving block 28 mounted on the upper part of the drive base via a bearing, a rotary motor 29 that drives the engraving block to rotate, an engraving drive cylinder 291 that drives the engraving block to engrave characters, an ink pad drive cylinder 292 located below the engraving block, and an ink pad tray 293 that is driven upward by the ink pad drive cylinder.
[0019] The horizontal drive cylinder 24 and the horizontal longitudinal drive cylinder 27 drive the drive base 26 to move, thereby adjusting the position of the X and Y axes to ensure that the engraving block corresponds to the position where the fan product needs to be engraved. The position can be adjusted according to the product requirements.
[0020] First, the rotary motor 29 drives the engraving block 28 to rotate, setting one end of the engraving block to face downwards. Then, the ink pad driving cylinder 292 drives the ink pad tray 293 to move upwards, applying ink to the engraving end of the ink pad block. After application, the block is reset and moved downwards. The rotary motor 29 drives the engraving block 28 to rotate 90° and set it perpendicular to the transmission mechanism 1, aligning it with the fan product. Then, the engraving driving cylinder 291 drives the engraving block to approach the fan product, thereby applying ink to the corresponding position on the fan product and engraving characters.
[0021] To ensure that the automatic engraving device 2 can completely leave engraving information on the fan product, it is necessary to hold the product on the other side to prevent the product from moving and affecting the engraving information. The holding assembly includes a holding bracket 31 set on the side of the transmission mechanism 1, a holding cylinder 32 set on the holding bracket, and a holding block 33 driven by the holding cylinder. The holding block 33 is moved by the holding cylinder 32 to cooperate with the automatic engraving device 2 to fix the engraving on the fan product.
[0022] In this implementation process, the fan product is placed on the transmission mechanism 1 and transported between the automatic engraving device and the top holding component. The top material mechanism 11 drives the fan product at the corresponding position to be lifted and moved upward by the lifting cylinder. After it is moved between the two, the top holding component 3, driven by the top holding cylinder 32, moves the top holding block 33 closer to it. The engraving block is driven by the horizontal drive cylinder 24 and the horizontal vertical drive cylinder 27 to move the drive base 26 to the position where the engraving is required on the fan product. At the same time, the engraving block is first moved by the rotary motor. The engraving block 28 is rotated by the drive motor 29, so that one end of the engraving block is rotated downwards. Then, the ink pad drive cylinder 292 drives the ink pad tray 293 to move upwards, so that the ink is applied to the engraving end of the ink pad block. After application, the ink pad is reset and moved downwards. The rotary motor 29 drives the engraving block 28 to rotate 90° and set it perpendicular to the transmission mechanism 1, aligning it with the fan product. Then, the engraving drive cylinder 291 drives the engraving block to move closer to the fan product. The top holding block 33 and the engraving block press against the product, which not only fixes and limits the product, but also completes the engraving work at the same time.
[0023] The advantages of this utility model are that the technical solution sets up a lettering device on the side of the transmission mechanism, and realizes the X and Y axis position adjustment by cylinder drive, so as to quickly and accurately position and align with the position to be lettered, and the position is adjustable to process different models of products; and an ink tray is set at the bottom of the lettering block to cooperate with the lettering block to quickly apply ink and cooperate with the rapid lettering, thereby improving efficiency.
[0024] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. An automatic lettering device for a fan used in a conveying mechanism, comprising a conveying mechanism, an automatic lettering device disposed on one side of the conveying mechanism, and a top-holding assembly disposed on the other side of the conveying mechanism and corresponding to the automatic lettering device, characterized in that: The automatic engraving device includes a mounting bracket, a horizontal slide rail mounted on the mounting bracket, a drive plate slidably mounted on the horizontal slide rail via a slider, a horizontal drive cylinder that drives the drive plate to move along the horizontal slide rail, a vertical slide rail mounted on the drive plate and perpendicular to the transmission mechanism, a drive base mounted on the vertical slide rail via a slider, a horizontal vertical drive cylinder that drives the drive base to move along the vertical slide rail, an engraving block mounted on the upper part of the drive base via a bearing, a rotary motor that drives the engraving block to rotate, an engraving drive cylinder that drives the engraving block to engrave characters, an ink pad drive cylinder located below the engraving block, and an ink pad tray driven upward by the ink pad drive cylinder.
2. The automatic lettering device for a fan applied to a conveying mechanism according to claim 1, characterized in that: The transmission mechanism is provided with several sets of limiting mechanisms, and several sets of top material mechanisms are provided at the bottom of the transmission mechanism.
3. The automatic lettering device for a fan applied to a conveying mechanism according to claim 2, characterized in that: The top-feeding mechanism includes a top-feeding cylinder located at the bottom of the conveying mechanism and a top-feeding block driven by the top-feeding cylinder.
4. The automatic lettering device for a fan applied to a conveying mechanism according to claim 1, characterized in that: The top-holding assembly includes a top-holding bracket disposed on the side of the transmission mechanism, a top-holding cylinder disposed on the top-holding bracket, and a top-holding block driven by the top-holding cylinder.