Drying device for sticker production
Through the combination of push, tension and drive mechanism, the problem of inconvenience in the position adjustment and unloading of rolls in existing sticker dryers is solved, and automated roll positions adjustment and unloading operations are realized, improving production efficiency and safety.
Patent Information
- Application Number
- CN202422413622.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-10-08
AI Technical Summary
The existing sticker dryer needs to manually adjust the position and push the drum during the winding process, and it cannot be unloaded automatically, resulting in inconvenient operation.
A sticker production and drying device including a push mechanism, a tensioning mechanism and a driving mechanism is designed. The push mechanism realizes automatic limiting and pushing of the drum, the tensioning mechanism realizes the fixing drum and prevents displacement, and the driving mechanism drives the winding roller to wind.
Automatic adjustment and unloading of the reel position is realized, manual manual operation is avoided, and production efficiency and safety is improved.
Smart Images

Figure CN223138263U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sticker production equipment, in particular to a sticker production drying device. Background Technique
[0002] A sticker belongs to a self-adhesive paper of the sticking type, and various pictures and photos are printed on the self-adhesive paper, which is the common sticker on the market and is also a popular fashion product loved by the general public of teenagers and youths. It has a very wide range of uses and is also a key product in the printing industry. It can be pasted arbitrarily and is mostly disposable. During the production process of stickers, after the stickers are dot-glued, a winding operation needs to be performed on the stickers. Therefore, a dryer is required to dry the dot-glued stickers.
[0003] During the use of the existing sticker dryer, it can effectively dry the stickers and effectively save the length of the production line. However, during the process of loading and unloading the reel for winding the stickers, the staff needs to manually adjust the position of the reel on the winding roller according to the width of the stickers. And since the wound stickers cannot be automatically pushed out inside the dryer, the staff also needs to manually reach into the dryer to slowly push it. Based on this, a sticker production drying device is now provided, which can eliminate the disadvantages of the existing device. Content of the Utility Model
[0004] The purpose of the utility model is to provide a sticker production drying device to solve the problems in the background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solution:
[0006] A sticker production drying device includes a dryer main body. A winding frame is fixedly connected inside the dryer main body. A winding roller is arranged inside the winding frame. A plurality of tension plates are circumferentially and equidistantly arranged on the outer side of the winding roller. A plurality of the tension plates all penetrate into the inside of the winding roller and are slidably connected with the winding roller. A pushing mechanism is arranged inside the winding frame;
[0007] A tension mechanism is transversely arranged on the winding roller;
[0008] One end outer wall of the dryer main body is provided with a driving mechanism located at one end of the winding roller;
[0009] The driving mechanism includes:
[0010] A driving motor installed on the outer wall at one end of the dryer main body through a fixed seat. The output end of the driving motor is fixedly connected with a first gear. The outer wall of the first gear is meshed and connected with a second gear. One end of the second gear is fixedly connected with a connecting rotating cylinder. The connecting rotating cylinder penetrates through the dryer main body and is fixedly connected with the winding roller, and is rotationally connected with the dryer main body through a bearing.
[0011] On the basis of the above technical solution, the present utility model further provides the following alternative technical solutions:
[0012] In an alternative solution: The pushing mechanism includes:
[0013] A blocking component arranged inside one end of the winding frame, and the blocking component is used for blocking and limiting the reel.
[0014] The blocking component is a movable baffle arranged inside one end of the winding frame. The movable baffle is sleeved on the outer walls of the winding roller and a plurality of tension plates, and is slidably connected with the winding roller and the plurality of tension plates.
[0015] A locking component is arranged inside the movable baffle, and the locking component is used for clamping and locking the movable baffle when the tension plate presses against the inner wall of the reel.
[0016] In an alternative solution: The locking component includes:
[0017] Multiple groups of movable clamping blocks formed circumferentially and equidistantly inside the movable baffle. The multiple groups of movable clamping blocks are symmetrical with the plurality of tension plates. One group of movable clamping blocks has two. The two movable clamping blocks are respectively located on both sides of a tension plate and are slidably connected with the tension plate. A linear sliding groove for the movable clamping block to slide is opened at the position where the tension plate is connected with the movable clamping block. A plurality of positioning sleeve grooves for the movable clamping block to slide are transversely and equidistantly opened on the inner wall of the tension plate at one end of the linear sliding groove close to the inside of the winding roller.
[0018] A pushing component is arranged outside the movable baffle, and the pushing component is used for pushing the movable baffle to unload the wound reel.
[0019] In an alternative solution: The pushing component includes:
[0020] A servo motor installed on the outer wall at one end of the dryer main body. The output end of the servo motor is fixedly connected to a lead screw located inside the winding frame. One end of the lead screw away from the servo motor is provided with a support plate. The support plate is rotationally connected to the lead screw through a rotating shaft and is fixedly connected to the inner wall of the winding frame. A moving sleeve plate is sleeved on the outer wall of one end of the lead screw. The inner wall of the moving sleeve plate is provided with an internal thread that mutually matches the external thread of the lead screw, and the moving sleeve plate is located above the moving baffle. The bottom end of the moving sleeve plate is integrally formed with a connecting sleeve frame. The connecting sleeve frame is sleeved on the outer wall of the moving baffle. The outer wall of the moving baffle is integrally formed with a limiting rotating ring that is slidably connected to the connecting sleeve frame.
[0021] In an alternative solution: The tensioning mechanism includes:
[0022] An extrusion assembly horizontally arranged on the winding roller, and the extrusion assembly is used to extrude a plurality of tensioning plates to slide along the inner wall of the winding roller;
[0023] The extrusion assembly includes:
[0024] A linkage rotating rod horizontally arranged inside the winding roller. The linkage rotating rod is rotationally connected to the winding roller through a rotating shaft. Two moving push frames are symmetrically sleeved on the outer wall of the linkage rotating rod. A plurality of connecting push blocks are circumferentially and equally spaced on the outer walls of the two moving push frames. The plurality of connecting push blocks respectively penetrate through the winding roller to the inside of the plurality of tensioning plates. Two guiding pressing blocks are symmetrically formed on the outer walls of the plurality of connecting push blocks. Guide sliding grooves for the connecting push blocks and the guiding pressing blocks to slide are provided at the connection positions of the tensioning plates with the connecting push blocks and the guiding pressing blocks. Fixed blocks are formed inside the two moving push frames. First threaded grooves for the fixed blocks to slide are provided at the connection positions of the linkage rotating rod with the fixed blocks;
[0025] A moving assembly is horizontally arranged on the linkage rotating rod, and the moving assembly is used to drive the linkage rotating rod to rotate.
[0026] In an alternative solution: The moving assembly includes:
[0027] A moving pressing block is arranged inside the linkage rotating rod. The moving pressing block is connected to the linkage rotating rod in a transverse sliding manner. A connecting guide block is integrally formed on the outer wall of the moving pressing block. A second threaded groove for the connecting guide block to slide is opened at the position where the linkage rotating rod is connected to the connecting guide block. One end of the moving pressing block is fixedly connected to a fixed push rod. The fixed push rod sequentially penetrates through the linkage rotating rod, the winding roller, the connecting rotating cylinder, the second gear to the outside of one end of the dryer main body. The fixed push rod is rotatably connected to the linkage rotating rod, the winding roller, the connecting rotating cylinder, and the second gear. One end of the fixed push rod away from the moving pressing block is rotatably connected to a moving push plate through a rotating shaft. An electromagnet fixedly connected to the outer wall of the dryer main body is arranged above the fixed push rod. One end of the electromagnet away from the dryer main body is fixedly connected to a fixed guide rod. The moving push plate is sleeved on the outer wall of the fixed guide rod and is slidably connected to the fixed guide rod. An iron sheet is slidably sleeved on the outer wall of the fixed guide rod, and the iron sheet is fixedly connected to the fixed guide rod;
[0028] A reset assembly is arranged at one end of the moving pressing block away from the fixed push rod. The reset assembly is used to push the moving pressing block to automatically reset.
[0029] In an alternative solution: The reset assembly is a spring arranged in the inner cavity of the linkage rotating rod. One end of the spring is in contact with the inner wall of the linkage rotating rod, and the other end of the spring is in contact with the outer wall of the moving pressing block.
[0030] In an alternative solution: Feeding ports penetrating through to the inside of the dryer main body are opened at the upper ends of one sides of the dryer main body and the winding frame. Four groups of limiting rods are circumferentially and equidistantly arranged inside the dryer main body with the winding roller as the axis. One group of the limiting rods has a plurality of them. The plurality of limiting rods are equidistantly located inside the dryer main body and are all rotatably connected to the dryer main body through rotating shafts.
[0031] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0032] 1. Through the pushing mechanism of the present utility model, the purpose of blocking and limiting the reel is achieved, and after the sticker winding is completed, the reel is pushed, so as to automatically adjust the position of the reel and assist in discharging the reel after winding.
[0033] 2. Through the tensioning mechanism of the present utility model, the purpose of squeezing and fixing the reel and engaging and locking the pushing mechanism is achieved, effectively avoiding the displacement of the pushing mechanism during the winding process.
[0034] 3. Through the driving mechanism of the present utility model, the purpose of driving the winding roller to make the tensioning plate drive the reel to wind the sticker is achieved without affecting the functions of the pushing mechanism and the tensioning mechanism. Description of the Drawings
[0035] Figure 1 This is a structural schematic diagram of the present utility model.
[0036] Figure 2 This is a sectional structural schematic diagram of the dryer main body in an embodiment of the present utility model.
[0037] Figure 3 This is a sectional structural schematic diagram of the pushing mechanism in an embodiment of the present utility model.
[0038] Figure 4 This is an internal structural schematic diagram of the winding roller in an embodiment of the present utility model.
[0039] Figure 5 This is a sectional structural schematic diagram of the linkage rotating rod in an embodiment of the present utility model.
[0040] Figure 6 This is a structural schematic diagram of the moving clamping block in an embodiment of the present utility model.
[0041] Figure 7 This is an internal structural schematic diagram of the dryer main body in an embodiment of the present utility model.
[0042] Figure 8 In an embodiment of the present utility model Figure 4 The partial enlarged structural schematic diagram at position A.
[0043] Annotation of reference numerals in the drawings: 1. Dryer main body; 201. Movable sleeve plate; 202. Servo motor; 203. Connecting sleeve frame; 204. Movable baffle; 205. Limiting rotating ring; 206. Positioning sleeve groove; 207. Lead screw; 208. Movable clamping block; 209. Linear sliding groove; 2010. Support plate; 301. Electromagnet; 302. Fixed guide rod; 303. Movable push plate; 304. Fixed push rod; 305. Connecting guide block; 306. Movable pressing block; 307. Iron sheet; 308. Movable push frame; 309. Connecting push block; 3010. Guide pressing block; 3011. Linkage rotating rod; 3012. Spring; 401. First gear; 402. Driving motor; 403. Second gear; 404. Connecting rotating cylinder; 5. Winding frame; 6. Winding roller; 7. Feeding port; 8. Tensioning plate; 9. Limiting rod. Detailed implementation manners
[0044] In order to make the objectives, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the drawings and embodiments.
[0045] In one embodiment, as Figures 1-8As shown in the figure, a sticker production and drying device includes a dryer main body 1. Inside the dryer main body 1, a winding frame 5 is fixedly connected. Inside the winding frame 5, a winding roller 6 is provided. A plurality of tension plates 8 are circumferentially and equidistantly arranged on the outer circumference of the winding roller 6. A plurality of tension plates 8 all penetrate into the inside of the winding roller 6 and are slidably connected to the winding roller 6. On the upper end of one side of the dryer main body 1 and the winding frame 5, a feed port 7 penetrating into the inside of the dryer main body 1 is opened. Inside the dryer main body 1, four groups of limiting rods 9 are circumferentially and equidistantly arranged with the winding roller 6 as the axis. One group of limiting rods 9 has a plurality of them. A plurality of limiting rods 9 are equidistantly located inside the dryer main body 1 and are all rotationally connected to the dryer main body 1 through a rotating shaft. Inside the winding frame 5, a pushing mechanism is provided;
[0046] A tensioning mechanism is transversely arranged on the winding roller 6;
[0047] On one end outer wall of the dryer main body 1, a driving mechanism located at one end of the winding roller 6 is provided. The driving mechanism is used to drive the winding roller 6 so that the tension plate 8 drives the winding cylinder to wind the sticker;
[0048] The driving mechanism includes:
[0049] A driving motor 402 installed on one end outer wall of the dryer main body 1 through a fixed seat. The output end of the driving motor 402 is fixedly connected with a first gear 401. The first gear 401 is rotationally connected to the dryer main body 1 through a rotating shaft. The outer wall of the first gear 401 is meshed with a second gear 403. One end of the second gear 403 is fixedly connected with a connecting rotating cylinder 404. The connecting rotating cylinder 404 penetrates the dryer main body 1 and is fixedly connected with the winding roller 6 and is rotationally connected to the dryer main body 1 through a bearing;
[0050] In this embodiment, it should be particularly noted that a drying device is installed inside the dryer main body 1. The drying device is used to dry the sticker;
[0051] The winding cylinder is sleeved on the outer walls of the winding roller 6 and the tension plate 8. Then, through the pushing mechanism, the winding cylinder can be pushed to move along the outer walls of the winding roller 6 and the tension plate 8, so as to achieve the purpose of blocking and limiting one end face of the winding cylinder;
[0052] Then, through the tensioning mechanism, a plurality of tension plates 8 can be pushed to slide along the inner wall of the winding roller 6 and towards the outside of the winding roller 6 until the outer walls of the plurality of tension plates 8 are in contact with the inner wall of the winding cylinder, so as to achieve the automatic tensioning operation of the winding cylinder. At the same time, through the mutual cooperation of the tension plate 8 and the pushing mechanism, the tension plate 8 can be clamped and limited to the pushing mechanism through movement;
[0053] Afterwards, the end of the sticker that needs to be dried is inserted into the inner cavity of the dryer main body 1 through the feeding port 7 on the dryer main body 1, and then the sticker is passed through a plurality of limiting rods 9 in a swirling form. After that, the end of the sticker that has passed through the plurality of limiting rods 9 is inserted into the inner cavity of the winding frame 5 through the feeding port 7 on the winding frame 5. Finally, the sticker is sequentially passed through the limiting rollers at the upper and lower ends on both sides in the inner cavity of the winding frame 5 and connected and fixed to the outer wall of the winding drum;
[0054] Afterwards, start the driving motor 402 to drive the first gear 401 to rotate. At this time, the second gear 403 is driven by the meshing of the first gear 401, and drives the winding roller 6 to rotate through the connecting rotating cylinder 404. And the winding roller 6 is driven by the connecting rotating cylinder 404 to drive the winding drum to rotate synchronously through the tensioning plate 8, so as to realize the winding operation of the sticker;
[0055] When the winding of the sticker is completed, stop the driving motor 402 at this time and the winding drum wound with the sticker can be pushed to the outside of one end of the dryer main body 1 through the pushing mechanism. At the same time, the staff receives it at one end of the dryer main body 1, so as to realize the operation of assisting in unloading the winding drum wound with the sticker;
[0056] In one embodiment, as Figures 2-5 shown, the pushing mechanism includes:
[0057] A blocking component arranged inside one end of the winding frame 5, and the blocking component is used for blocking and limiting the winding drum;
[0058] The blocking component is a moving baffle 204 arranged inside one end of the winding frame 5. The moving baffle 204 is sleeved on the outer walls of the winding roller 6 and a plurality of tensioning plates 8, and is slidably connected to the winding roller 6 and a plurality of tensioning plates 8. The position of the winding drum can be conveniently limited through the moving baffle 204;
[0059] A locking component is arranged inside the moving baffle 204, and the locking component is used for clamping and locking the moving baffle 204 when the tensioning plate 8 presses against the inner wall of the winding drum;
[0060] In one embodiment, as Figures 2-8 shown, the locking component includes:
[0061] A plurality of movable clamping blocks 208 formed equidistantly in the circumferential direction are arranged inside the movable baffle 204. The plurality of movable clamping blocks 208 are symmetric with a plurality of tensioning plates 8. One set of movable clamping blocks 208 is provided with two. The two movable clamping blocks 208 are respectively located on both sides of a tensioning plate 8 and are slidably connected to the tensioning plate 8. A linear sliding groove 209 for the movable clamping block 208 to slide is formed at the position where the tensioning plate 8 is connected to the movable clamping block 208. A plurality of positioning sleeve grooves 206 for the movable clamping block 208 to slide are transversely and equidistantly formed on the inner wall of one end of the linear sliding groove 209 close to the inside of the winding roller 6. Through the positioning sleeve grooves 206 and the linear sliding groove 209, the tensioning plate 8 can engage and lock the movable clamping block 208 during the process of tensioning the winding drum, thereby avoiding the displacement of the movable baffle 204 during rotation;
[0062] A pushing component is arranged on the outer side of the movable baffle 204. The pushing component is used to push the movable baffle 204 to unload the wound winding drum.
[0063] In one embodiment, as Figures 2-5 shown, the pushing component includes:
[0064] A servo motor 202 installed on the outer wall of one end of the dryer main body 1. The output end of the servo motor 202 is fixedly connected with a lead screw 207 located inside the winding frame 5. A support plate 2010 is arranged at one end of the lead screw 207 away from the servo motor 202. The support plate 2010 is rotationally connected to the lead screw 207 through a rotating shaft and is fixedly connected to the inner wall of the winding frame 5. The lead screw 207 can be supported by the support plate 2010. A movable sleeve plate 201 is sleeved on the outer wall of one end of the lead screw 207. An internal thread that matches the external thread of the lead screw 207 is formed on the inner wall of the movable sleeve plate 201. The movable sleeve plate 201 is located above the movable baffle 204. A connecting sleeve frame 203 is integrally formed at the bottom end of the movable sleeve plate 201. The connecting sleeve frame 203 is sleeved on the outer wall of the movable baffle 204. A limiting rotating ring 205 that is slidably connected to the connecting sleeve frame 203 is integrally formed on the outer wall of the movable baffle 204. Through the limiting rotating ring 205 that is rotationally connected to the connecting sleeve frame 203, the movable baffle 204 can be limited to rotate inside the connecting sleeve frame 203.
[0065] In one embodiment, as Figures 2-8 shown, the tensioning mechanism includes:
[0066] An extrusion component transversely arranged on the winding roller 6. The extrusion component is used to extrude a plurality of tensioning plates 8 to slide along the inner wall of the winding roller 6;
[0067] The extrusion component includes:
[0068] The linkage rotating rod 3011 is horizontally arranged inside the winding roller 6. The linkage rotating rod 3011 is rotationally connected to the winding roller 6 through a rotating shaft. Two moving push frames 308 are symmetrically sleeved on the outer wall of the linkage rotating rod 3011. A plurality of connecting push blocks 309 are circumferentially and equidistantly formed on the outer walls of the two moving push frames 308. The plurality of connecting push blocks 309 respectively penetrate through the winding roller 6 into the interiors of a plurality of tension plates 8. Two guiding pressing blocks 3010 are symmetrically formed on the outer walls of the plurality of connecting push blocks 309. Guiding sliding grooves for the connecting push blocks 309 and the guiding pressing blocks 3010 to slide are formed at the positions where the tension plates 8 are connected to the connecting push blocks 309 and the guiding pressing blocks 3010. Through the guiding sliding grooves, when the connecting push blocks 309 move, the tension plates 8 can be extruded to move through the guiding pressing blocks 3010. Fixed blocks are formed inside the two moving push frames 308. First threaded grooves for the fixed blocks to slide are formed at the positions where the linkage rotating rod 3011 is connected to the fixed blocks. Through the mutual cooperation of the fixed blocks and the first threaded grooves, the linkage rotating rod 3011 can drive the two moving push frames 308 to approach or move away from each other by rotation;
[0069] A moving component is horizontally arranged on the linkage rotating rod 3011. The moving component is used to drive the linkage rotating rod 3011 to rotate;
[0070] In one embodiment, as Figures 2-5 shown, the moving component includes:
[0071] A moving pressing block 306 arranged inside the linkage rotating rod 3011. The moving pressing block 306 is horizontally slidably connected to the linkage rotating rod 3011. A connecting guide block 305 is integrally formed on the outer wall of the moving pressing block 306. A second threaded groove for the connecting guide block 305 to slide is formed at the position where the linkage rotating rod 3011 is connected to the connecting guide block 305. Through the mutual cooperation of the second threaded groove and the connecting guide block 305, the moving pressing block 306 can rotate the linkage rotating rod 3011 by moving. One end of the moving pressing block 306 is fixedly connected to a fixed push rod 304. The fixed push rod 304 sequentially penetrates through the linkage rotating rod 3011, the winding roller 6, the connecting rotating cylinder 404, the second gear 403 to the outside of one end of the dryer main body 1. The fixed push rod 304 is rotationally connected to the linkage rotating rod 3011, the winding roller 6, the connecting rotating cylinder 404, and the second gear 403. One end of the fixed push rod 304 away from the moving pressing block 306 is rotationally connected to a moving push plate 303 through a rotating shaft. An electromagnet 301 fixedly connected to the outer wall of the dryer main body 1 is arranged above the fixed push rod 304. The electromagnet 301 is electrically connected to a control switch through a wire. The control switch is electrically connected to a storage battery through a wire. One end of the electromagnet 301 away from the dryer main body 1 is fixedly connected to a fixed guide rod 302. The moving push plate 303 is sleeved on the outer wall of the fixed guide rod 302 and is slidably connected to the fixed guide rod 302. An iron sheet 307 is slidably sleeved on the outer wall of the fixed guide rod 302. The iron sheet 307 is fixedly connected to the fixed guide rod 302;
[0072] A reset assembly is provided at one end of the movable pressing block 306 away from the fixed push rod 304, and the reset assembly is used to push the movable pressing block 306 to automatically reset;
[0073] In one embodiment, as Figure 5 shown, the reset assembly is a spring 3012 arranged in the inner cavity of the linkage rotating rod 3011. One end of the spring 3012 is in contact with the inner wall of the linkage rotating rod 3011, and the other end of the spring 3012 is in contact with the outer wall of the movable pressing block 306. When the electromagnet 301 releases the attraction to the iron sheet 307 through the spring 3012, the movable pressing block 306 is pushed to reset.
[0074] The above embodiment discloses a sticker production and drying device. When in use, a reel is sleeved on the outer walls of the winding roller 6 and the tensioning plate 8 until one end face of the reel is in contact with the outer wall of the movable baffle 204. Then, the servo motor 202 is started to drive the lead screw 207 to rotate. At this time, the movable sleeve plate 201 is driven by the lead screw 207 through the thread, and drives the limit rotating ring 205 to move through the connecting sleeve frame 203. At the same time, the movable baffle 204 drives the limit rotating ring 205 through the connecting sleeve frame 203 and slides along the outer walls of the winding roller 6 and the tensioning plate 8. At this time, the reel is synchronously moved along the outer walls of the winding roller 6 and the tensioning plate 8 under the push of the movable baffle 204. During this process, the movable clamping block 208 is driven by the movable baffle 204 and slides along the inner wall of the linear chute 209 until the movable baffle 204 moves to a specified position, so as to achieve the purpose of blocking and limiting one end face of the reel;
[0075] After that, the servo motor 202 is stopped and the electromagnet 301 is powered by the control switch. At this time, the electromagnet 301 generates suction force due to the energization. At the same time, under the attraction of the electromagnet 301, the iron sheet 307 drives the movable push plate 303 to slide along the outer wall of the fixed guide rod 302. At this time, the movable pressing block 306 is driven by the fixed push rod 304 under the push of the movable push plate 303 to drive the connecting guide block 305 to slide along the inner wall of the linkage rotating rod 3011. During this process, the movable pressing block 306 contracts through the movable extrusion spring 3012, and the linkage rotating rod 3011 rotates inside the winding roller 6 through the shaft under the extrusion of the connecting guide block 305 through the second thread groove. At this time, both movable push frames 308 drive a plurality of connecting push blocks 309 to approach each other under the drive of the first thread groove on the outer wall of the linkage rotating rod 3011 through the fixed blocks. At this time, the plurality of connecting push blocks 309 are respectively driven by the two movable push frames 308 to slide along the inner walls of the winding roller 6 and the tensioning plate 8. At the same time, the guiding pressing block 3010 moves inside the tensioning plate 8 under the drive of the connecting push block 309. At this time, the tensioning plate 8 slides along the inner wall of the winding roller 6 to the outside of the winding roller 6 under the extrusion and push of the guiding pressing block 3010 through the guiding chute until the outer walls of the plurality of tensioning plates 8 are in contact with the inner wall of the drum, so as to realize the automatic tensioning operation of the drum;
[0076] At the same time, the tensioning plate 8 moves to separate the outer wall of the movable clamping block 208 from the inner wall of the linear chute 209, and sleeved the outer wall of the movable clamping block 208 through a positioning sleeve groove 206, so as to realize the clamping and limiting of the movable baffle 204 by clamping and limiting the movable clamping block 208 through the tensioning plate 8;
[0077] After that, the end of the sticker to be dried is inserted into the inner cavity of the dryer main body 1 through the feed port 7 on the dryer main body 1, and then the sticker passes through a plurality of limiting rods 9 in a vortex form. After that, the end of the sticker passing through the plurality of limiting rods 9 is inserted into the inner cavity of the winding frame 5 through the feed port 7 on the winding frame 5, and finally the sticker passes through the limiting rollers at the upper and lower ends on both sides in the inner cavity of the winding frame 5 and is connected and fixed to the outer wall of the drum;
[0078] After that, start the driving motor 402 to drive the first gear 401 to rotate. At this time, the second gear 403 is driven by the meshing of the first gear 401, and drives the winding roller 6 to rotate through the connecting rotary cylinder 404. And the winding roller 6 is driven by the connecting rotary cylinder 404 to drive the moving baffle 204 to rotate through the tensioning plate 8. At this time, the moving baffle 204 rotates along the inner wall of the connecting sleeve frame 203 through the limiting rotary ring 205. During this process, the connecting push block 309 is driven by the tensioning plate 8, and drives the linkage rotating rod 3011 to rotate synchronously through the moving push frame 308. At this time, the moving pressing block 306 drives the fixed push rod 304 to rotate synchronously through the connecting guide block 305 under the drive of the linkage rotating rod 3011. During this process, the winding drum rotates synchronously under the drive of multiple tensioning plates 8, so as to realize the winding operation of the sticker;
[0079] When the winding of the sticker is completed, stop the driving motor 402 at this time and stop supplying power to the electromagnet 301 through the control switch. At this time, the spring 3012 pushes the moving pressing block 306 to reset through rebound, so as to perform the reverse operation of the above operation, and the tension fixation of the winding drum can be released. After that, start the servo motor 202 to move the moving baffle 204 to push the winding drum with the sticker to the outside of one end of the dryer main body 1, and at the same time, the staff receives it at one end of the dryer main body 1, so as to realize the operation of assisting the unloading of the winding drum with the sticker.
[0080] As mentioned above, it is only the specific implementation manner of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present disclosure can easily think of changes or substitutions, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall be subject to the protection scope of the claims.
Claims
1. A sticker production drying device, including a dryer main body (1), a winding frame (5) is fixedly connected inside the dryer main body (1), a winding roller (6) is arranged inside the winding frame (5), a plurality of tension plates (8) are circumferentially and equidistantly arranged on the outer side of the winding roller (6), and a plurality of the tension plates (8) all penetrate into the inside of the winding roller (6) and are slidably connected with the winding roller (6), characterized in that, A pushing mechanism is arranged inside the winding frame (5); A tensioning mechanism is transversely arranged on the winding roller (6); A driving mechanism is arranged on the outer wall of one end of the dryer main body (1) and is located at one end of the winding roller (6); The driving mechanism includes: A driving motor (402) installed on the outer wall of one end of the dryer main body (1) through a fixed seat. The output end of the driving motor (402) is fixedly connected with a first gear (401). The outer wall of the first gear (401) is meshed with a second gear (403). One end of the second gear (403) is fixedly connected with a connecting rotating cylinder (404). The connecting rotating cylinder (404) penetrates through the dryer main body (1) and is fixedly connected with the winding roller (6), and is rotatably connected with the dryer main body (1) through a bearing.
2. The sticker production and drying device according to claim 1, characterized in that, The pushing mechanism includes: A blocking component arranged inside one end of the winding frame (5), and the blocking component is used for blocking and limiting the reel; The blocking component is a movable baffle (204) arranged inside one end of the winding frame (5). The movable baffle (204) is sleeved on the outer walls of the winding roller (6) and a plurality of tensioning plates (8), and is slidably connected with the winding roller (6) and the plurality of tensioning plates (8); A locking component is arranged inside the movable baffle (204), and the locking component is used for clamping and locking the movable baffle (204) when the tensioning plate (8) presses against the inner wall of the reel.
3. A sticker production and drying device according to claim 2, characterized in that, The locking component includes: Multiple groups of movable clamping blocks (208) formed circumferentially and equidistantly inside the movable baffle (204). The multiple groups of movable clamping blocks (208) are symmetrical with the plurality of tensioning plates (8). One group of the movable clamping blocks (208) has two. The two movable clamping blocks (208) are respectively located on both sides of a tensioning plate (8) and are slidably connected with the tensioning plate (8). A linear sliding groove (209) for the movable clamping block (208) to slide is opened at the position where the tensioning plate (8) is connected with the movable clamping block (208). A plurality of positioning sleeve grooves (206) for the movable clamping block (208) to slide are transversely and equidistantly opened on the inner wall of the tensioning plate (8) at one end of the linear sliding groove (209) close to the inside of the winding roller (6); A pushing component is arranged on the outer side of the movable baffle (204), and the pushing component is used for pushing the movable baffle (204) to unload the wound reel.
4. A sticker production and drying device according to claim 3, characterized in that, The pushing component includes: A servo motor (202) is installed on the outer wall of one end of a dryer main body (1). The output end of the servo motor (202) is fixedly connected to a lead screw (207) located inside a winding frame (5). One end of the lead screw (207) away from the servo motor (202) is provided with a support plate (2010). The support plate (2010) is rotationally connected to the lead screw (207) through a rotating shaft and is fixedly connected to the inner wall of the winding frame (5). A moving sleeve plate (201) is sleeved on the outer wall of one end of the lead screw (207). The inner wall of the moving sleeve plate (201) is provided with internal threads that match the external threads of the lead screw (207) outer wall, and the moving sleeve plate (201) is located above a moving baffle plate (204). A connecting sleeve frame (203) is integrally formed at the bottom end of the moving sleeve plate (201). The connecting sleeve frame (203) is sleeved on the outer wall of the moving baffle plate (204). A limiting rotating ring (205) that is slidably connected to the connecting sleeve frame (203) is integrally formed on the outer wall of the moving baffle plate (204).
5. A sticker production drying device according to claim 1, characterized in that, The tensioning mechanism includes: An extrusion assembly horizontally arranged on a winding roller (6), and the extrusion assembly is used to extrude a plurality of tensioning plates (8) to slide along the inner wall of the winding roller (6); The extrusion assembly includes: A linkage rotating rod (3011) horizontally arranged inside the winding roller (6). The linkage rotating rod (3011) is rotationally connected to the winding roller (6) through a rotating shaft. Two moving push frames (308) are symmetrically sleeved on the outer wall of the linkage rotating rod (3011). A plurality of connecting push blocks (309) are circumferentially and equidistantly formed on the outer walls of the two moving push frames (308). The plurality of connecting push blocks (309) respectively penetrate through the winding roller (6) to the inside of the plurality of tensioning plates (8). Two guiding pressing blocks (3010) are symmetrically formed on the outer walls of the plurality of connecting push blocks (309). Guide sliding grooves for the connecting push blocks (309) and the guiding pressing blocks (3010) to slide are formed at the positions where the tensioning plates (8) are connected to the connecting push blocks (309) and the guiding pressing blocks (3010). Fixed blocks are formed inside the two moving push frames (308). First threaded grooves for the fixed blocks to slide are formed at the positions where the linkage rotating rod (3011) is connected to the fixed blocks; A moving assembly is horizontally arranged on the linkage rotating rod (3011), and the moving assembly is used to drive the linkage rotating rod (3011) to rotate.
6. The sticker production and drying device according to claim 5, characterized in that, The moving assembly includes: A moving pressure block (306) is arranged inside the linkage rotating rod (3011). The moving pressure block (306) is transversely slidably connected to the linkage rotating rod (3011). A connecting guide block (305) is integrally formed on the outer wall of the moving pressure block (306). A second threaded groove for the connecting guide block (305) to slide is provided at the position where the linkage rotating rod (3011) is connected to the connecting guide block (305). One end of the moving pressure block (306) is fixedly connected to a fixed push rod (304). The fixed push rod (304) sequentially passes through the linkage rotating rod (3011), the winding roller (6), the connecting rotating cylinder (404), the second gear (403) to the outside of one end of the dryer main body (1). The fixed push rod (304) is rotatably connected to the linkage rotating rod (3011), the winding roller (6), the connecting rotating cylinder (404), and the second gear (403). A moving push plate (303) is rotatably connected to the end of the fixed push rod (304) away from the moving pressure block (306) through a rotating shaft. An electromagnet (301) fixedly connected to the outer wall of the dryer main body (1) is arranged above the fixed push rod (304). A fixed guide rod (302) is fixedly connected to the end of the electromagnet (301) away from the dryer main body (1). The moving push plate (303) is sleeved on the outer wall of the fixed guide rod (302) and is slidably connected to the fixed guide rod (302). An iron sheet (307) is slidably sleeved on the outer wall of the fixed guide rod (302), and the iron sheet (307) is fixedly connected to the fixed guide rod (302); A reset assembly is arranged at the end of the moving pressure block (306) away from the fixed push rod (304). The reset assembly is used to push the moving pressure block (306) to automatically reset.
7. A sticker production and drying device according to claim 6, characterized in that, The reset assembly is a spring (3012) arranged in the inner cavity of the linkage rotating rod (3011). One end of the spring (3012) is in contact with the inner wall of the linkage rotating rod (3011), and the other end of the spring (3012) is in contact with the outer wall of the moving pressure block (306).
8. A sticker production and drying device according to claim 1, characterized in that, Feeding ports (7) penetrating into the inside of the dryer main body (1) are provided at the upper ends of one sides of the dryer main body (1) and the winding frame (5). Four groups of limiting rods (9) are circumferentially and equidistantly arranged inside the dryer main body (1) with the winding roller (6) as the axis. One group of the limiting rods (9) has a plurality of them. The plurality of limiting rods (9) are equidistantly located inside the dryer main body (1) and are all rotatably connected to the dryer main body (1) through rotating shafts.