Bottle cap labeling device for hypochlorous acid disinfectant production
By designing automated loading, labeling and folding and pressing components, the problems of traditional manual labeling are solved, and efficient and beautiful label fit is achieved, which is suitable for the automated production of hypochlorous acid disinfectant bottle caps.
Patent Information
- Application Number
- CN202422066444.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-26
AI Technical Summary
The traditional manual labeling method is inefficient and inconsistent, resulting in the label of hypochlorous acid disinfectant bottle caps that are not beautiful and increase production costs.
An automated device including a feeding assembly, a labeling assembly and a folding and compacting assembly is designed to drive the bottle body to move through the turntable to realize automatic labeling and labeling compression, ensuring position consistency and sealing effect.
Improves production efficiency, ensures the position consistency and aesthetics of the label, reduces labor costs, and is suitable for large-scale production.
Smart Images

Figure CN223086464U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of hypochlorous acid disinfectant bottle stickers, and specifically relates to a cap labeling device for the production of hypochlorous acid disinfectant. Background Technique
[0002] Hypochlorous acid is a strong oxidant that can kill bacteria in water, so chlorine is commonly used to disinfect tap water. Hypochlorous acid can fade dyes and organic colorants, and is generally used as a bleaching agent, oxidant, deodorant and disinfectant. In biology, hypochlorous acid is used by neutrophils to kill bacteria.
[0003] In the production of hypochlorous acid disinfectant, it is necessary to stick anti-counterfeiting labels on the packaging bottle caps. Most traditional labeling methods are to complete the fitting one by one manually. Therefore, the success rate of fitting can be improved, but the fitting positions are inconsistent, resulting in skew, making the labels unsightly, and the efficiency of manual labeling is low. When the production volume increases, the number of personnel will also increase, thus increasing the production cost. Content of the Utility Model
[0004] To achieve the above object, the utility model provides the following technical solution: A cap labeling device for the production of hypochlorous acid disinfectant, including an operation table and a turntable installed on the operation table, as well as a feeding component and a labeling component surrounding the turntable. A plurality of mounting plates are fixed on the table surface of the turntable, and two bearing blocks are installed on the mounting plates;
[0005] The labeling component is divided into two label lifting parts and a fitting part located between the two label lifting parts;
[0006] The label lifting part includes two bearing seats fixed on the operation table, two screw rod devices, and two driving motors installed at the bottom. The two bearing seats are located on the left and right sides of the fitting part. A cam disc fixed to the rotating end of the driving motor is fixed inside the bearing seat. Two frame plates are fixed on the top of the cam disc, a vertical rod is fixed at the center of the frame plates, and notch openings are provided on both sides below the frame plates. Lifting grooves opposite to the notch openings are provided on the opposite sides of the two frame plates. A lifting plate is sleeved outside the vertical rod, and a lifting rod that can move in the notch openings and the lifting grooves is fixed to the moving end of the screw rod device.
[0007] Further, the fitting part includes a fixing frame fixed on the operation table and located between the two frame plates. Two top push cylinders are installed on the top of the fixing frame. A servo motor is installed at the top end of the top push cylinder, and an adsorption head is installed at the rotating end of the servo motor. The head end of the adsorption head is C-shaped.
[0008] Further, a rotating block is fixed to the rotating end of the servo motor, a plate column is fixed on the rotating block, the adsorption head is sleeved on the two columns of the plate column, and springs are sleeved on the outer sides of the two columns of the plate column and located between the plate body of the plate column and the adsorption head.
[0009] Further, an L-shaped plate is fixed between the two pushing cylinders, and the suction head is L-shaped.
[0010] Further, the feeding assembly includes a vertical frame fixed on the operating table, a pushing cylinder installed at the bottom of the vertical frame, a plurality of guiding rods passing through, and two limiting rods fixed at the top. A limiting block is fixed at the bottom of the guiding rods. The ejecting end of the pushing cylinder is installed with a rotating cylinder connected to the plurality of guiding rods, and the rotating end of the rotating cylinder is fixed with a U-shaped plate. Clamping cylinders are installed at the bottoms of both ends of the U-shaped plate.
[0011] Further, a folding and pressing assembly is also installed on the operating table. The folding and pressing assembly includes a double platform frame fixed on the operating table. A pushing cylinder is installed at the top of the upper platform of the double platform frame, and a pressing block is fixed at the ejecting end of the pushing cylinder. A forward pushing cylinder is installed on the lower platform of the double platform frame, and an ejecting cylinder is installed at the ejecting end of the forward pushing cylinder. A double plug board is fixed at the ejecting end of the ejecting cylinder.
[0012] Compared with the prior art, the technical solution of this application has the following beneficial effects:
[0013] The bottle cap labeling device for the production of hypochlorous acid disinfectant can clamp and transfer the bottle filled with liquid and pasted with glue on the cap body to the bearing block for placement through the feeding assembly. Through the rotation of the turntable, it can drive the bottle to be transferred to the labeling assembly to complete the labeling operation. Then, by transferring the bottle to the folding and pressing assembly, the attached label is pressed, and then folded so that one side of the label is folded down, which can paste the cap body and the bottle mouth, playing a role in sealing indication. At the same time, it can also complete automatic labeling through automation, improving production efficiency and consistency. Description of the Drawings
[0014] Figure 1 It is a schematic structural diagram of the present invention;
[0015] Figure 2 It is a three-dimensional view of the feeding assembly in the present invention;
[0016] Figure 3 It is a three-dimensional view of the labeling assembly in the present invention;
[0017] Figure 4 It is the present invention Figure 3 The three-dimensional view of the fitting part in;
[0018] Figure 5 It is the present invention Figure 3 The three-dimensional view of the label lifting part in;
[0019] Figure 6 It is a three-dimensional view of the folding and pressing assembly in the present invention.
[0020] In the figure: 1. Operating table; 2. Turntable; 3. Loading assembly; 301. Vertical frame; 302. Upward pushing cylinder; 303. Rotary cylinder; 304. Guide rod; 305. Limit block; 306. Limit rod; 307. U-shaped plate; 308. Clamping cylinder; 4. Labeling assembly; 41. Fitting part; 411. Fixed frame; 412. Pushing cylinder; 413. Servo motor; 414. Rotating block; 415. Plate column; 416. Spring; 417. Suction head; 418. L-shaped plate; 42. Label lifting part; 421. Bearing seat; 422. Driving motor; 423. Cam disc; 424. Frame plate; 425. Lead screw device; 426. Lifting rod; 427. Lifting plate; 5. Folding and pressing assembly; 501. Double platform frame; 502. Downward pushing cylinder; 503. Pressing block; 504. Forward pushing cylinder; 505. Ejecting cylinder; 506. Double plug board; 6. Mounting plate; 7. Bearing block. Detailed implementation manners
[0021] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0022] Please refer to Figure 1 , a bottle cap labeling device for the production of hypochlorous acid disinfectant in this embodiment includes an operating table 1. A turntable 2 is installed on the top of the operating table 1. Six mounting plates 6 are fixed on the top edge of the turntable 2. Two bearing blocks 7 are fixed on the mounting plates 6. The center of the bearing block 7 is a concave surface, and the concave surface is adapted to the bottle body. The top of the operating table 1 is sequentially provided with a loading assembly 3, a labeling assembly 4, and a folding and pressing assembly 5 around the table surface of the turntable 2.
[0023] In the above structure, the coated bottle body can be moved to the bearing block through the loading assembly. Since a concave surface is formed on the bearing block, the bottle body can be limited to improve the stability of placement. Then the turntable can drive the bottle body to move under the labeling assembly and the folding and pressing assembly in turn, so as to complete taking the label and attaching the label to the top of the cap of the bottle body in turn. Then, the protruding end is pressed down to be attached to the outside of the bottle cap and the bottle mouth through the folding and pressing assembly, so as to play a sealing role. At the same time, the production efficiency can be improved through automatic labeling, and it is also applicable to mass production, ensuring that the label attachment position is consistent and improving the aesthetics.
[0024] Such as Figure 2For the shown direction, in order to achieve automatic feeding, the feeding assembly 3 includes a vertical frame 301 fixed on the operating table 1. A push-up cylinder 302 is installed at the bottom of the vertical frame 301. A rotary cylinder 303 is installed at the ejecting end of the push-up cylinder 302. A U-shaped plate 307 is fixed at the rotating end of the rotary cylinder 303. Clamping cylinders 308 are installed at the bottoms of both ends of the U-shaped plate 307. First, the push-up cylinder drives the rotary cylinder to move upward, which can lift the clamping cylinders upward. Then, the rotary cylinder drives the U-shaped plate to rotate so that the clamping ends of the clamping cylinders are located above the bottle body. Then, the push-up cylinder resets, so that the cap of the bottle body is located in the clamping ends of the clamping cylinders. After clamping and fixing through the clamping cylinders, through the cooperation of the push-up cylinder and the rotary cylinder, the bottle body can be driven to be transferred and placed in the bearing block.
[0025] Among them, two limiting rods 306 are fixed at the top of the vertical frame 301 and are located below the rotary cylinder 303. Four guiding rods 304 that are all fixed to the bottom of the rotary cylinder 303 penetrate through the top of the vertical frame 301. A limiting block 305 is fixed at the bottom of the guiding rod 304. The guiding rods can improve the stability of the lifting of the rotary cylinder. At the same time, the limiting block prevents the guiding rods from separating from the vertical frame when rising. At the same time, the limiting rods play a role in limiting the rotary cylinder when it falls, preventing the rotary cylinder from colliding with the vertical frame. At the same time, it can also make the downward pressure of the bottle body when placed in the bearing block just right.
[0026] As Figures 3 - 5 , in order to achieve automatic labeling, the labeling assembly 4 is divided into a fitting part 41 and a label-lifting part 42 that provides labels on both sides of the fitting part 41. Through the fitting part, the labels in the label-lifting part can be taken out and attached to the bottle cap. At the same time, after taking the label, the label-lifting part will lift the stacked labels upward, so that the topmost label is located at the best label-taking position for convenient label-taking operation.
[0027] Among them, the fitting part 41 includes a fixed frame 411 fixed on the operating table 1. Two push cylinders 412 are installed on the fixed frame 411. A servo motor 413 is installed at the ejecting end of the push cylinder 412. The rotating end of the servo motor 413 rotates in a reciprocating 90-degree cycle. An adsorption head 417 is installed on the rotating end of the servo motor 413. The adsorption end of the adsorption head 417 is C-shaped. When taking the label, the push cylinder lifts the adsorption head, and the servo motor runs at the same time. When the adsorption head rises, it rotates at the same time until the adsorption head is located above the label-lifting part. Then, by retracting the push cylinder, the adsorption head can be brought into contact with the label and adsorbed. Then, by repeating the operation, the adsorption head can drive the label to be located above the bottle cap, and the labeling operation can be completed by pressing down the push cylinder.
[0028] Further, a rotating block 414 is fixed to the rotating end of the servo motor 413, and a plate column 415 is fixed to the top of the rotating block 414. The plate column 415 is composed of a plate body and two column bodies. The suction head 417 is sleeved between the two column bodies, and a spring 416 is sleeved outside the two column bodies above the suction head 417. When the suction head moves down to fit the label, the suction head will move up and down between the two column bodies and squeeze the spring at the same time, so as to play a buffering role and avoid damaging the bottle cap due to too large downward pressure.
[0029] Furthermore, an L-shaped plate 418 is fixed between the tops of the two jacking cylinders 412. The suction head 417 is L-shaped, and the suction head 417 is on the same horizontal plane as the L-shaped plate 418 in the natural state. Therefore, when the servo motor drives the suction head to rotate, by contacting and limiting with the L-shaped plate, the rotation position of the suction head can be prevented from exceeding, so that the suction head reaches the specified position opposite to the bottle cap.
[0030] In addition, the label lifting part 42 includes bearing seats 421 and screw rod devices 425 fixed on the operation table 1 and located on the left and right sides of the fixed frame 411, and a driving motor 422 is installed at the bottom. A convex disc 423 fixed to the rotating end of the driving motor 422 is fixed inside the bearing seat 421. Two frame plates 424 are fixed to the top of the convex disc 423, a column is located at the center inside the frame plates 424, and openings are provided on both sides. Walking grooves opposite to the openings are provided on the opposite sides of the two frame plates 424. A lifting plate 427 adapted to the inner shape of the frame plates 424 is sleeved outside the column, and a lifting rod 426 that can walk in the openings and the walking grooves is fixed to the moving end of the screw rod device 425. The label is passed through the column and stacked on the lifting plate. The screw rod device drives the lifting rod to move up, so as to drive the lifting plate to move up, so as to push the label upward in a progressive manner, so that the top label is in the best picking position. When the labels in one frame plate are taken out, the driving motor drives the convex disc to rotate, so that the other group of frame plates is located above the lifting rod, and then new labels are filled into the other frame plate.
[0031] As Figure 6For the shown direction, in order to achieve label pressing and sealing, the folding and pressing assembly 5 includes a double bench 501 fixed on the operation table 1. The double bench 501 is divided into an upper bench and a lower bench. Two push-down cylinders 502 are installed on the right side of the upper bench. A rectangular pressing block 503 is fixed to the ejecting end of the push-down cylinder 502. A forward push cylinder 504 is installed at the bottom of the lower bench. An ejecting cylinder 505 is fixed to the ejecting end of the forward push cylinder 504. A double plug board 506 is fixed to the ejecting end of the ejecting cylinder 505. When the bottle body is located below the pressing block, the push-down cylinder drives the pressing block to press the label, improving the firmness of adhesion. Then, the ejecting cylinder drives the double plug board to lift up, and the forward push cylinder drives the double plug board to move above one end of the label. Then, with the cooperation of the ejecting cylinder pressing down, one end of the label can be adhered and sealed to the connection between the bottle cap and the bottle mouth, helping to prevent the product from being tampered with or contaminated.
[0032] The working principle of the above embodiment is as follows:
[0033] The push-up cylinder jacks up the rotary cylinder. The rotary cylinder drives the clamping cylinder to be located above the bottle body and opens the clamping end. Then, the push-up cylinder resets, enabling the bottle body to be located between the clamping ends. Then, the clamping cylinder clamps and fixes the bottle body. The push-up cylinder and the rotary cylinder move the bottle body out and place it in the bearing block. The turntable drives the bottle body to move below the suction head. Before that, the push cylinder and the servo motor run simultaneously, making the suction head located above the frame plate and driving the suction head to adhere to the label. Then, with the cooperation of the push cylinder and the servo motor resetting, the suction head drives the label to be located above the bottle cap. Then, the push cylinder retracts, making the suction head adhere the label to the cover body. After the adhesion is completed, the bottle body with the adhered label is moved below the pressing block. The push-down cylinder drives the pressing block to press the label to improve the firmness of adhesion. The ejecting cylinder drives the double plug board to move up to a certain height. Then, the forward push cylinder advances, making the double plug board move above one end of the label. Then, with the reset of the ejecting cylinder, one end of the label can be adhered to the side of the bottle cap to adhere the demarcation line between the bottle cap and the bottle mouth, thereby improving the sealing effect.
[0034] In summary, automatic labeling can also be achieved, thus being applicable to mass production and reducing production costs. Moreover, it can also make the adhesion position consistent to improve the aesthetics.
[0035] The entire work process ends, and the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
[0036] It should be noted that in this text, relational terms such as "first" and "second" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variation thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or device comprising said element.
[0037] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A bottle cap labeling device for the production of hypochlorous acid disinfectant solution, characterized in that: It includes an operating table (1), a turntable (2) installed on the operating table (1), a feeding component (3) and a labeling component (4) surrounding the turntable (2). A plurality of mounting plates (6) are fixed on the tabletop of the turntable (2), and two bearing blocks (7) are installed on the mounting plates (6). The labeling component (4) is divided into two label lifting parts (42) and a fitting part (41) located between the two label lifting parts (42). Each label lifting part (42) includes two bearing seats (421) fixed on the operating table (1), two lead screw devices (425), and two driving motors (422) installed at the bottom. The two bearing seats (421) are located on the left and right sides of the fitting part (41). A convex disc (423) fixed to the rotating end of the driving motor (422) is fixed inside the bearing seat (421). Two frame plates (424) are fixed on the top of the convex disc (423), a vertical rod is fixed at the center of the frame plates (424), and notches are formed on both sides below the frame plates (424). Lifting grooves opposite to the notches are formed on the opposite sides of the two frame plates (424). A lifting plate (427) is sleeved outside the vertical rod, and a lifting rod (426) that can move in the notches and the lifting grooves is fixed to the moving end of the lead screw device (425).
2. The labeling device for the bottle cap of the hypochlorous acid disinfectant solution production according to claim 1, wherein: The fitting part (41) includes a fixing frame (411) fixed on the operating table (1) and located between the two frame plates (424). Two push cylinders (412) are installed on the top of the fixing frame (411). A servo motor (413) is installed at the top end of the push cylinder (412). An adsorption head (417) is installed at the rotating end of the servo motor (413), and the head end of the adsorption head (417) is C-shaped.
3. The bottle cap labeling device for the production of hypochlorous acid disinfectant solution according to claim 2, wherein: A rotating block (414) is fixed to the rotating end of the servo motor (413), and a plate column (415) is fixed on the rotating block (414). The adsorption head (417) is sleeved on the two columns of the plate column (415), and springs (416) are sleeved outside the two columns of the plate column (415) between the plate body of the plate column (415) and the adsorption head (417).
4. The bottle cap labeling device for the production of hypochlorous acid disinfectant solution according to claim 3, wherein: An L-shaped plate (418) is fixed between the two push cylinders (412), and the adsorption head (417) is L-shaped.
5. The bottle cap labeling device for the production of hypochlorous acid disinfectant solution according to claim 1, wherein: The feeding component (3) includes a vertical frame (301) fixed on the operating table (1), a push cylinder (302) installed at the bottom of the vertical frame (301), a plurality of guide rods (304) passing through, and two limit rods (306) fixed at the top. A limit block (305) is fixed at the bottom of the guide rod (304). The ejecting end of the push cylinder (302) is installed with a rotating cylinder (303) connected to the plurality of guide rods (304). A U-shaped plate (307) is fixed to the rotating end of the rotating cylinder (303), and clamping cylinders (308) are installed at the bottom of both ends of the U-shaped plate (307).
6. The bottle cap labeling device for producing hypochlorous acid disinfectant solution according to claim 1, wherein: A folding and pressing assembly (5) is also installed on the operation table (1). The folding and pressing assembly (5) includes a double-stage frame (501) fixed on the operation table (1). A downward pushing cylinder (502) is installed on the top of the upper stage of the double-stage frame (501). A pressing block (503) is fixed to the ejecting end of the downward pushing cylinder (502). A forward pushing cylinder (504) is installed on the lower stage of the double-stage frame (501). An ejecting cylinder (505) is installed on the ejecting end of the forward pushing cylinder (504). A double plug board (506) is fixed to the ejecting end of the ejecting cylinder (505).