A label tape flattening mechanism
By using a hydraulic telescopic frame and a drive gear in conjunction with a gear ring to drive the pressing rollers of the central hinge rod and the shock-absorbing plate, the adaptability problem of existing label tape leveling mechanisms to products with curved structures is solved, and efficient leveling of multiple structural surfaces is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI LEIDI ELECTRONIC TECHNOLOGY DEVELOPMENT CO LTD
- Filing Date
- 2025-07-28
- Publication Date
- 2026-06-19
Smart Images

Figure CN224377251U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of label tape leveling technology, specifically a label tape leveling mechanism. Background Technology
[0002] The widespread use of labels and the continuous development of label varieties have naturally driven the development of label printing technology. Label printing covers all printing methods such as planographic, relief, intaglio, and screen printing, and their applications vary. However, from the development trend, it can be seen that flexographic printing, narrow-web rotary printing, and digital printing have become new highlights of label printing and are also the development trend of label printing.
[0003] In the field of label tape leveling mechanisms, CN202221148382.9 discloses a trademark ironing and shaping machine, which relates to the field of ironing equipment. It includes a frame, a worktable fixedly mounted on the upper end of the frame, an ironing table fixedly connected to the middle of the upper end of the worktable, a transverse slide rail fixedly connected to one side of the ironing table, a slider slidably connected to the upper end of the transverse slide rail, a leveling mechanism mounting plate fixedly connected to the upper end of the slider, a label leveling mechanism fixedly mounted on the upper end of the leveling mechanism mounting plate, and an ironing frame fixedly connected to one side of the upper end of the worktable. However, the ironing structure of the label tape leveling mechanism is quite flat, making it unsuitable for adapting to the handling of products with curved structures. Utility Model Content
[0004] The purpose of this invention is to provide a label tape leveling mechanism to solve the problems mentioned in the background art.
[0005] By adopting the above technical solution, the lifting base can be adjusted to the nearest height position after the hydraulic telescopic frame is operated, and the active gear can be operated to make adaptive movement with the gear ring. This allows the central hinge rod and shock absorber to swing adaptively, so that the pressing roller can make adaptive pressing on the label to achieve an adaptive leveling effect. Since the pressing roller has a cylindrical strip structure, it can effectively adapt to the leveling treatment of various product surfaces.
[0006] To achieve the purpose of this utility model, the utility model is implemented through the following technical solution: a label strip leveling mechanism, including an infeed and outfeed positioning component and an upper strip leveling mechanism, wherein a bolt-assembled label strip output component is provided on the upper outer side of the infeed and outfeed positioning component, and a bolt-assembled upper strip leveling mechanism is provided on the upper side of the label strip output component.
[0007] The label leveling mechanism includes a top frame, a hydraulic telescopic frame, a lifting base, a slotted box, a separating rod, a clamping rod, a convex plate, a gear ring, a drive gear, a central hinge rod, a shock-absorbing plate, and a pressing roller. The top frame is bolted to the upper side of the label output assembly, and a hydraulic telescopic frame is provided on the inner side of the top of the top frame. A lifting base is provided at the output end of the hydraulic telescopic frame, and slotted boxes are provided on the inner sides of both ends of the lifting base. A separating rod is provided on one set of the inner sides of the slotted box, and a clamping rod is provided on the other set of the inner sides of the slotted box. A convex plate is provided above the inner end of the lifting base, and a gear ring is provided above the convex plate. A drive gear is provided above the gear ring, and a central hinge rod is provided on one side of the drive gear. A shock-absorbing plate is provided at one end of the central hinge rod, and a pressing roller is provided on the inner side of one end of the shock-absorbing plate.
[0008] In a preferred embodiment of this utility model, the toothed ring is a semi-circular gear structure, and the shock-absorbing plate and the pressing roller strip are rotationally symmetrical about the central hinge rod.
[0009] In a preferred embodiment of this utility model, the feeding and discharging positioning component includes a pad base, a shaft box base, a drive housing, an output roller, a conveyor belt, an inclined plate, a damping hinge strip, a buffer plate, an inner folding pad, a drive cylinder, a clamping plate, and a pneumatic telescopic clamp. The shaft box base is provided above the side of the pad base, and the inner folding pad is provided above the inner end of the shaft box base. The drive cylinder is provided on the inner side of the inner folding pad, and the clamping plate is provided at the output end of the drive cylinder. Pneumatic telescopic clamps are provided at both ends of the clamping plate.
[0010] In a preferred embodiment of the present invention, an output roller connected to the output end of the drive housing is provided on the inner side of one end of the shaft box base, and a conveyor belt is wound around the output end of the output roller. A bolt-fitted inclined plate is provided on one end of the shaft box base, and a damping hinge strip is provided on the inner side of one end of the inclined plate. A buffer plate is provided on one side of the damping hinge strip.
[0011] In a preferred embodiment of this utility model, the label output assembly includes an end frame, a side plate, a first cylinder, a label material roller, a first mounting rod, a second mounting rod, a third mounting rod, an adhesive paper collection roller, a first rotary motor, a second cylinder, a fourth mounting rod, a label waste roller, a second rotary motor, and a third cylinder. The side plate is bolted to the upper outer side of the shaft box base via the end frame. A first cylinder is provided on one side of the upper part of the side plate, and the output end of the first cylinder is provided with a label material roller. The output end of the label material roller is provided with a first mounting rod, and the output end of the first mounting rod is provided with a second mounting rod.
[0012] In a preferred embodiment of this utility model, a third mounting rod is provided at one set of output ends of the second mounting rod, and an adhesive paper collecting roller is provided at the output end of the third mounting rod. The two ends of the adhesive paper collecting roller pass through the side plate and are respectively connected to a first rotary motor and a second cylinder. A fourth mounting rod is provided at the other set of output ends of the second mounting rod, and a label waste roller is provided at the output end of the fourth mounting rod. The two ends of the label waste roller pass through the side plate and are respectively connected to a second rotary motor and a third cylinder.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: the label strip leveling mechanism, after the hydraulic telescopic frame is operated, allows the lifting base to be adjusted to the nearest height position in a timely manner, and after the drive gear is operated, it engages with the gear ring to make adaptive movements. This allows the central hinge rod and the shock-absorbing plate to swing adaptively, so that the pressing roller strip can make adaptive pressing on the label to achieve an adaptive leveling effect. Since the pressing roller strip has a cylindrical strip structure, it can effectively adapt to the leveling treatment of various product surface structures. Attached Figure Description
[0014] Figure 1 This is a front-view three-dimensional structural schematic diagram of the present invention;
[0015] Figure 2 This is a three-dimensional structural diagram of the present invention viewed from below;
[0016] Figure 3 This is a three-dimensional structural diagram of the label strip output component of this utility model;
[0017] Figure 4 This is a three-dimensional structural diagram of the upper leveling mechanism of this utility model.
[0018] In the diagram: 1. Feed / Discharge positioning component; 101. Pad base; 102. Shaft box base; 103. Drive housing; 104. Output roller; 105. Conveyor belt; 106. Inclined plate; 107. Damping hinge strip; 108. Buffer plate; 109. Inner folding pad; 1010. Drive cylinder; 1011. Clamping plate; 1012. Pneumatic telescopic clamp; 2. Label strip output assembly; 201. End frame; 202. Side plate; 203. First cylinder; 204. Label raw material roller; 205. First mounting rod; 206. Second mounting rod; 207. Third mounting rod. 208. Carrier rod; 209. Adhesive paper collection roller; 2010. First rotary motor; 2011. Second cylinder; 2012. Fourth mounting rod; 2013. Label waste roller; 2014. Second rotary motor; 2015. Third cylinder; 3. Upper strip leveling mechanism; 301. Top frame; 302. Hydraulic telescopic frame; 303. Lifting base; 304. Slotted box; 305. Separating bar; 306. Clamping bar; 307. Convex plate; 308. Gear ring; 309. Drive gear; 3010. Central hinge rod; 3011. Shock absorber plate; 3012. Pressing roller strip. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] Please see Figure 1-4 This utility model provides a technical solution: a label strip leveling mechanism, including an infeed and outfeed positioning component 1 and an upper strip leveling mechanism 3. A bolt-assembled label strip output component 2 is provided on the upper outer side of the infeed and outfeed positioning component 1, and a bolt-assembled upper strip leveling mechanism 3 is provided on the upper side of the label strip output component 2.
[0021] The top leveling mechanism 3 includes a top frame 301, a hydraulic telescopic frame 302, a lifting base 303, a slotted box 304, a separating rod 305, a clamping rod 306, a convex plate 307, a gear ring 308, a drive gear 309, a central hinge rod 3010, a shock-absorbing plate 3011, and a pressing roller strip 3012. The top frame 301 is bolted to the upper side of the label strip output assembly 2, and the hydraulic telescopic frame 302 is provided on the inner side of the top of the top frame 301. The lifting base 303 is provided at the output end of the hydraulic telescopic frame 302, and the lifting base 303 is located at both ends. A slotted box 304 is provided on the side. A set of separating rods 305 are provided on one set of inner sides of the slotted box 304, and a clamping rod 306 is provided on the other set of inner sides of the slotted box 304. A protruding plate 307 is provided above the inner end of the lifting base 303, and a toothed ring 308 is provided above the protruding plate 307. A drive gear 309 is provided above the toothed ring 308, and a central hinge rod 3010 is provided on one side of the drive gear 309. A shock-absorbing plate 3011 is provided at one end of the central hinge rod 3010, and a pressing roller strip 3012 is provided on the inner side of one end of the shock-absorbing plate 3011.
[0022] The gear ring 308 has a semi-circular gear structure, and the shock-absorbing plate 3011 and the pressing roller strip 3012 are rotationally symmetrical about the central hinge rod 3010.
[0023] In this embodiment, when the first mounting rod 205 and the second mounting rod 206 transmit the label strip, the label strip is input into a set of separating rods 305 inside the slotted box 304 to separate the label from the adhesive. Then, the hydraulic telescopic frame 302 on the top frame 301 is operated to make the lifting base 303 move to a suitable height position, and the drive gear 309 is operated to cooperate with the upper gear ring 308 for limited transmission. The central hinge rod 3010, the shock absorber 3011 and the pressing roller 3012 achieve the effect of pressing and shaping the label strip. After pressing, the label paper waste is input into the clamping rod 306 for output.
[0024] The feeding and discharging positioning component 1 includes a pad base 101, a shaft box base 102, a drive housing 103, an output roller 104, a conveyor belt 105, an inclined plate 106, a damping hinge strip 107, a buffer plate 108, an inner folding pad 109, a drive cylinder 1010, a clamping plate 1011, and a pneumatic telescopic clamp 1012. The shaft box base 102 is provided above the side of the pad base 101, and the inner folding pad 109 is provided above the inner end of the shaft box base 102. The drive cylinder 1010 is provided on the inner side of the inner folding pad 109, and the clamping plate 1011 is provided at the output end of the drive cylinder 1010. The pneumatic telescopic clamp 1012 is provided at both ends of the clamping plate 1011.
[0025] In this embodiment, after the label is attached, the pneumatic telescopic card 1012 and the drive cylinder 1010 are activated to release the product. The product is then fed into the inclined plate 106 after being driven by the output roller 104 and the conveyor belt 105. With the cooperation of the damping hinge bar 107 and the buffer plate 108, the product is output from the device for subsequent processing.
[0026] An output roller 104 connected to the output end of the drive housing 103 is provided on the inner side of one end of the shaft box base 102, and a conveyor belt 105 is wound around the output end of the output roller 104. A bolt-assembled inclined plate 106 is provided on one end of the shaft box base 102, and a damping hinge strip 107 is provided on the inner side of one end of the inclined plate 106. A buffer plate 108 is provided on one side of the damping hinge strip 107.
[0027] In this embodiment, when in use, the output of the drive housing 103 drives the output roller 104 on the inner side of one end of the shaft box base 102 to drive the conveyor belt 105 to run. The pneumatic telescopic clamp 1012 and the output of the drive cylinder 1010 are used to clamp and position the products driven on the conveyor belt 105.
[0028] The label output assembly 2 includes an end frame 201, a side plate 202, a first cylinder 203, a label material roller 204, a first mounting rod 205, a second mounting rod 206, a third mounting rod 207, an adhesive paper collection roller 208, a first rotary motor 209, a second cylinder 2010, a fourth mounting rod 2011, a label waste roller 2012, a second rotary motor 2013, and a third cylinder 2014. The side plate 202 is bolted to the upper outer side of the shaft box base 102 via the end frame 201. The first cylinder 203 is provided on one side above the side plate 202, and the label material roller 204 is provided at the output end of the first cylinder 203. The first mounting rod 205 is provided at the output end of the label material roller 204, and the second mounting rod 206 is provided at the output end of the first mounting rod 205.
[0029] In this embodiment, when it is necessary to load a label, the first cylinder 203 on the side plate 202 outputs power to drive the output end to run, thereby installing the label material roller 204. After the label material roller 204 is installed, it outputs label strips. After the label material roller 204 outputs, it is loaded onto the first mounting rod 205 and the second mounting rod 206 in stages to achieve the transmission effect.
[0030] A third mounting rod 207 is provided at one set of output ends of the second mounting rod 206. An adhesive paper collection roller 208 is provided at the output end of the third mounting rod 207. The two ends of the adhesive paper collection roller 208 are respectively connected to the first rotary motor 209 and the second cylinder 2010 through the side plate 202. A fourth mounting rod 2011 is provided at the other set of output ends of the second mounting rod 206. A label waste roller 2012 is provided at the output end of the fourth mounting rod 2011. The two ends of the label waste roller 2012 are respectively connected to the second rotary motor 2013 and the third cylinder 2014 through the side plate 202.
[0031] In this embodiment, the adhesive backing after being applied is fed to the third mounting rod 207 for mounting and then output onto the adhesive backing paper collection roller 208. The first rotary motor 209 then drives the adhesive backing paper collection roller 208 to wind and collect the adhesive backing paper. Next, the label waste output from the clamping rod 306 is fed to the fourth mounting rod 2011 for mounting and transmission. After that, the label waste is fed into the label waste roller 2012, and the second rotary motor 2013 then drives the label waste roller 2012 to wind and collect the label waste.
[0032] The working principle of the label tape leveling mechanism is as follows: During operation, the drive housing 103 outputs power to drive the output roller 104 on one end of the shaft box base 102, which in turn drives the conveyor belt 105. The pneumatic telescopic clamp 1012 and the drive cylinder 1010 clamp and position the products moving on the conveyor belt 105. When label loading is required, the first cylinder 203 on the side plate 202 outputs power to drive the output end, causing the label material roller 204 to be installed, thus loading the label material... After roller 204 is installed, it outputs label strips. The label strips are then loaded onto the first mounting rod 205 and the second mounting rod 206 in stages for transmission. As the label strips are transmitted through the first and second mounting rods 205 and 206, they are fed into a set of separating bars 305 inside the slotted box 304 to separate the label from the adhesive. Then, the hydraulic telescopic frame 302 on the top frame 301 operates, causing the lifting base 303 to move to a suitable height position, and activating the drive gear. After outputting from motor 309, it engages with gear ring 308 for limited transmission, enabling the central hinge rod 3010, damping plate 3011, and pressing roller 3012 to press and shape the label strip. After pressing, the label waste is fed into clamping bar 306 for output. The adhesive backing is fed into third mounting bar 207 for mounting, and after output, it is mounted on adhesive backing paper collection roller 208. This causes the first rotary motor 209 to operate, driving the adhesive backing paper collection roller 208 to wind and collect the label waste. Then, the label waste output from clamping bar 306 is fed into the fourth... The mounting rod 2011 carries the conveyor, which then feeds the label waste paper into the label waste roller 2012. The second rotary motor 2013 then drives the label waste roller 2012 to wind and collect the label. After the label is loaded, the pneumatic telescopic card 1012 and the drive cylinder 1010 release the product. The product is then fed into the inclined plate 106 after being output by the output roller 104 and the conveyor belt 105. With the cooperation of the damping hinge bar 107 and the buffer plate 108, the product is output from the equipment for subsequent processing.
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
Claims
1. A label tape flattening mechanism comprising an in-out positioning member (1) and a tape feeding flattening mechanism (3), characterized in that: A bolt-assembled label strip output assembly (2) is provided on the upper outer side of the infeed and outfeed positioning component (1), and a bolt-assembled upper strip leveling mechanism (3) is provided on the upper side of the label strip output assembly (2). The top leveling mechanism (3) includes a top frame (301), a hydraulic telescopic frame (302), a lifting base (303), a slotted box (304), a separating rod (305), a clamping rod (306), a convex plate (307), a gear ring (308), a drive gear (309), a central hinge rod (3010), a shock-absorbing plate (3011), and a pressing roller strip (3012). The top frame (301) is bolted to the upper side of the label strip output assembly (2), and a hydraulic telescopic frame (302) is provided on the inner side of the top of the top frame (301). The output end of the hydraulic telescopic frame (302) is provided with a lifting base (303), and both ends of the lifting base (303) are provided with a hydraulic telescopic frame (302). A slotted box (304) is provided on the inner side. A set of separating rods (305) is provided on one set of the inner side of the slotted box (304), and a clamping rod (306) is provided on the other set of the inner side of the slotted box (304). A protruding plate (307) is provided above the inner end of the lifting base (303), and a toothed ring (308) is provided above the protruding plate (307). A drive gear (309) is provided above the toothed ring (308), and a central hinge rod (3010) is provided on one side of the drive gear (309). A shock-absorbing plate (3011) is provided at one end of the central hinge rod (3010), and a pressing roller strip (3012) is provided on the inner side of one end of the shock-absorbing plate (3011).
2. A label web flattening mechanism according to claim 1, wherein: The gear ring (308) has a semi-circular gear structure, and the shock-absorbing plate (3011) and the pressing roller strip (3012) are rotationally symmetrical about the central hinge rod (3010).
3. A label web flattening mechanism according to claim 1 wherein: The feeding and discharging positioning component (1) includes a pad base (101), a shaft box base (102), a drive housing (103), an output roller (104), a conveyor belt (105), an inclined plate (106), a damping hinge strip (107), a buffer plate (108), an inner folding pad (109), a drive cylinder (1010), a clamping plate (1011), and a pneumatic telescopic clamp (1012). The shaft box base (102) is provided above the side of the pad base (101), and the inner folding pad (109) is provided above the inner end of the shaft box base (102). The drive cylinder (1010) is provided on the inner side of the inner folding pad (109), and the clamping plate (1011) is provided at the output end of the drive cylinder (1010). The pneumatic telescopic clamp (1012) is provided at both ends of the clamping plate (1011).
4. A label web flattening mechanism according to claim 3, wherein: An output roller (104) connected to the output end of the drive housing (103) is provided on the inner side of one end of the shaft box base (102), and a conveyor belt (105) is wound around the output end of the output roller (104). A bolt-assembled inclined plate (106) is provided on one end of the shaft box base (102), and a damping hinge strip (107) is provided on the inner side of one end of the inclined plate (106). A buffer plate (108) is provided on one side of the damping hinge strip (107).
5. A label web flattening mechanism according to claim 3, wherein: The label output assembly (2) includes an end frame (201), a side plate (202), a first cylinder (203), a label raw material roller (204), a first mounting rod (205), a second mounting rod (206), a third mounting rod (207), an adhesive paper collection roller (208), a first rotary motor (209), a second cylinder (2010), a fourth mounting rod (2011), a label waste roller (2012), a second rotary motor (2013), and a third cylinder (2014). 014), the side plate (202) is bolted to the upper outer side of the shaft box base (102) by the end bracket (201), a first cylinder (203) is provided on the upper side of the side plate (202), and a label material roller (204) is provided at the output end of the first cylinder (203), a first mounting rod (205) is provided at the output end of the label material roller (204), and a second mounting rod (206) is provided at the output end of the first mounting rod (205).
6. A label web flattening mechanism according to claim 5, wherein: A third mounting rod (207) is provided at one of the output ends of the second mounting rod (206). The third mounting rod (207) is provided at the output end of the third mounting rod (207) with an adhesive paper collection roller (208). The two ends of the adhesive paper collection roller (208) pass through the side plate (202) and are respectively connected to a first rotary motor (209) and a second cylinder (2010). A fourth mounting rod (2011) is provided at the other output end of the second mounting rod (206). The label waste roller (2012) is provided at the output end of the fourth mounting rod (2011). The two ends of the label waste roller (2012) pass through the side plate (202) and are respectively connected to a second rotary motor (2013) and a third cylinder (2014).