Bottle stiffness enhancing apparatus

By designing a glass bottle hardness enhancement device that includes a brush roller and a rotating support, and utilizing a coating liquid to form a protective film, the problem of insufficient hardness in glass bottles during the production process is solved, and the mechanized enhancement of the surface hardness of glass bottles is realized.

CN114289247BActive Publication Date: 2025-12-19CHONGQING ZHENGCHUAN PHARM PACKAGING CO LTD
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Patent Information

Application Number
CN202210049235.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-17
Publication Date
2025-12-19
Estimated Expiration
2042-01-17

AI Technical Summary

Technical Problem

Glass bottles are easily damaged during production, packaging, and transportation, and existing technologies are insufficient to effectively enhance their hardness.

Method used

A glass bottle hardness enhancement device was designed, comprising a frame, a brush roller, a rotating support, a holding mechanism, a brush driver, a support mechanism, and a trowel. The device enhances the hardness of the glass bottle by rotating the brush roller to apply a protective film with the coating liquid.

Benefits of technology

It achieves mechanical enhancement of the surface hardness of glass bottles, is convenient and quick to operate, and reduces the need for manual coating.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN114289247B_ABST
    Figure CN114289247B_ABST
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Abstract

The application discloses a kind of bottle hardness enhancement equipment.The bottle hardness enhancement equipment includes frame body, brush roller, rotating support, holding mechanism, brush driver, support mechanism and wiping head, the brush roller is rotationally arranged on rotating support, the rotating support is rotationally arranged on frame body, the support mechanism is used to support bottle, the wiping head is arranged on rotating support, the wiping head has connecting mouth, and coating liquid enters the wiping head by connecting mouth, the brush driver is used to drive brush roller rotation, and the holding mechanism is used to drive rotating support, so that rotating support is kept in separation state or working state.The bottle hardness enhancement equipment of the application can coat coating liquid to bottle to enhance bottle hardness.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of bottle hardness enhancement, in particular to a bottle hardness enhancement device. BACKGROUND

[0002] The bottle is directly packaged, packaged and transported after production and manufacturing, and damage is prone to occur during the process, which is caused by the material of the bottle, so that the surface of the bottle is prone to damage. SUMMARY

[0003] The technical problem to be solved by the present application is to provide a bottle hardness enhancement device for applying a spraying liquid to a bottle.

[0004] To solve the above problems, the present application provides a bottle hardness enhancement device, which comprises a frame body, a brush roller, a rotating support, a retaining mechanism, a brush drive, a supporting mechanism and a wiping head. The brush roller is rotatably arranged on the rotating support, the rotating support is rotatably arranged on the frame body, the supporting mechanism is used for supporting the bottle, the wiping head is arranged on the rotating support, the wiping head has a connecting mouth, the spraying liquid enters the wiping head through the connecting mouth, the brush drive is used for driving the brush roller to rotate, and the retaining mechanism is used for driving the rotating support to keep the rotating support in a separated state or a working state.

[0005] Further, the rotating support comprises a rotating shaft, two support plates, a first mounting seat, a second mounting seat and a fork piece, the two support plates are connected through the rotating shaft, the rotating shaft is rotatably arranged on the frame body, the first mounting seat and the second mounting seat are fixed on the support plates, and the fork piece is fixed on one of the support plates.

[0006] Further, the first mounting seat comprises a first connecting plate and three first mounting plates, the first connecting plate is fixed with the support plate, the three first mounting plates are fixed on the first connecting plate, and the three first mounting plates are arranged side by side.

[0007] Further, a first long hole is arranged on each first mounting plate, and a second long hole is arranged on the first connecting plate.

[0008] Further, the first connecting plate is fixed obliquely.

[0009] Further, it further comprises a peristaltic pump, the peristaltic pump is fixed on the rack, and the peristaltic pump is connected with the connecting mouth through a pipeline.

[0010] Further, the brush drive comprises a brush drive motor, a driving wheel, a driven wheel and a transmission belt, the driving wheel is fixed on the brush drive motor, the driven wheel is fixed on the rotating shaft of the brush roller, and the transmission belt is arranged on the driving wheel and the transmission wheel.

[0011] Further, the holding mechanism comprises a holding driving motor, a mounting disc and an eccentric wheel, the eccentric wheel is eccentrically arranged on the mounting disc, the eccentric wheel is matched with the shift fork, and the mounting disc is fixed on the output shaft of the holding driving motor.

[0012] Further, the holding mechanism further comprises a height adjusting assembly, the height adjusting assembly comprises an adjusting handle, an adjusting rod, a sliding rail and a sliding block, the sliding rail is slidably arranged on the sliding rail, the sliding block is screwedly arranged on the adjusting rod, the holding driving motor is fixed on the sliding block, the adjusting rod is rotationally arranged on the sliding rail, and the handle is fixed on the upper end of the adjusting rod.

[0013] Further, the sliding rail is provided with a groove, the sliding block is provided with a connecting portion, the connecting portion is connected with the adjusting rod, and the connecting portion is located in the groove.

[0014] The bottle hardness enhancing equipment utilizes the rotation of the brush roller to brush the coating liquid on the pad head onto the bottles, so that the bottles form a protective film, and the hardness of the bottles is enhanced. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a structural schematic view of a preferred embodiment of the bottle hardness enhancing equipment.

[0016] Figure 2 is a perspective view of the bottle hardness enhancing equipment without a supporting mechanism.

[0017] Figure 3 is a top view of the bottle hardness enhancing equipment without a supporting mechanism.

[0018] Figure 4 is Figure 2 is a partial enlarged view of A in the figure.

[0019] Figure 5 is a structural schematic view of the height adjusting assembly.

[0020] Figure 6 is a structural schematic view of another preferred embodiment of the bottle hardness enhancing equipment. DETAILED DESCRIPTION

[0021] The application will be further described below in combination with the drawings.

[0022] Example 1

[0023] As Figures 1 to 3As shown, the preferred embodiment of the bottle 9 hardness enhancing device of the present application comprises a frame 1, a brush roller 2, a rotating support 3, a holding mechanism 4, a brush driver 5, a supporting mechanism 6 and an applicator head 7. The brush roller 2 is rotatably arranged on the rotating support 3, which is rotatably arranged on the frame 1, and the supporting mechanism 6 is arranged below the brush roller 2. The brush driver 5 is fixed on the rotating support 3 and drives the brush roller 2 to rotate. The holding mechanism 4 drives the rotating support 3 to keep it in a separated state or a working state. The applicator head 7 is fixed on the rotating support 3 and has a connecting mouth 72 connected with a source of coating liquid through a pipe. The coating liquid enters the applicator head 7 through the connecting mouth 72 and is dispersed on the applicator head 7, so that the brushes on the brush roller 2 can uniformly adhere to the coating liquid. The applicator head 7 has a water outlet surface 71, from which the coating liquid flows out. The water outlet surface 71 is inclined, which facilitates more coating liquid to adhere to the brushes. The applicator head 7 can be made of a material capable of permeating liquid. The supporting mechanism 6 supports the bottle 9, and the glass bottle rotates when subjected to an external force on the supporting mechanism 6. The supporting mechanism 6 is a roller type conveyor belt, which facilitates continuous feeding of the bottle 9 to a processing position and conveying away after processing is completed. In other embodiments, other devices can be used for supporting. The brush roller 2 rotates to bring the coating liquid on the applicator head 7 to the bottle 9. The brush roller 2 rotates at the same time to drive the bottle 9 to rotate, so that the entire bottle 9 is coated with the coating liquid.

[0024] The rotating support 3 comprises a rotating shaft 31, two support plates 32, a first mounting seat 33 and a second mounting seat 34. The two support plates 32 are connected by the rotating shaft 31, which is rotatably arranged on the frame 1. The first mounting seat 33 and the second mounting seat 34 are fixed on the support plates 32. The first mounting seat 33 is used to mount the applicator head 7, and the second mounting seat 34 is used to mount the brush driver 5. One of the support plates is further provided with a fork piece 35, which is driven by the holding mechanism 4 to rotate the support plate 32 around the rotating shaft 31 as a center and fulcrum, so that the brushes contact or separate from the bottle 9. The brushes are in a working state when they contact the bottle 9, and in a separated state when they separate from the bottle 9.

[0025] As Figure 4As shown, the first mounting seat 33 includes a first connecting plate 331 and three first mounting plates 332, the first connecting plate 331 is fixed with the support plate 32 by bolts, and the three first mounting plates 332 are fixed on the first connecting plate 331 by bolts, and the three first mounting plates 332 are arranged side by side. Each of the first mounting plate 332 and the first connecting plate 331 is respectively provided with a first long hole 3311 and a second long hole 3321, and the bolt is located in the first long hole 3311 and the second long hole 3321. The position of the bolt in the first long hole 3311 and the second long hole 3321 can be adjusted according to the needs, so as to adjust the fixed position of the first mounting plate 332 on the first connecting plate 331, so as to adapt to different brushes. The first connecting plate 331 is fixed obliquely, that is, the side of the first connecting plate 331 close to the brush is low, and the side away from the brush cylinder 2 is high, so that the brush on the brush cylinder 2 can better brush the coating liquid on the applicator 7 to the bottle 9.

[0026] The second mounting seat 34 includes a second connecting plate 341 and a second mounting plate 342, the second connecting plate 341 is inverted U-shaped, the two sides of the second connecting plate 341 are fixed on the inner sides of the two support plates 32 by bolts, the second mounting plate 342 is L-shaped, and the second mounting plate 342 is fixed on the top of the second connecting plate 341. The brush driving motor 51 is fixed on the side wall of the second mounting plate 342.

[0027] The brush driving device 5 includes a brush driving motor 51, a driving wheel 52, a driven wheel 53 and a transmission belt 54, the brush driving motor 51 is fixed on the rotating support 3, the driving wheel 52 is fixed on the output shaft of the brush driving motor 51, the driven wheel 53 is fixed on the rotating shaft of the brush cylinder 2, and the transmission belt 54 is arranged on the driving wheel 52 and the transmission wheel. The brush driving motor 51 drives the driving wheel 52 to rotate, the driving wheel 52 drives the driven wheel 53 to rotate through the transmission belt 54, and the driven wheel 53 drives the brush cylinder 2 to rotate, so as to realize the rotation of the brush cylinder 2. In other embodiments, a low-speed motor can also be directly connected with the brush cylinder 2, or other transmission modes can also be used to connect with the brush cylinder 2.

[0028] The holding mechanism 4 comprises a holding drive motor 41, a mounting disc 42, an eccentric wheel 43 and a height adjusting assembly 44. The eccentric wheel 43 is eccentrically arranged on the mounting disc 42, and the eccentric wheel 43 is matched with the fork. The mounting disc 42 is fixed on the output shaft of the holding drive motor 41. The holding drive motor 41 is fixed on the height adjusting assembly 44. The height adjusting assembly 44 is used to adjust the position of the holding drive motor 41, so as to adjust the height position of the swing of the support plate 32, so as to adapt to different sizes of bottles 9. The holding drive motor 41 drives the mounting disc 42 to rotate by a certain angle. The mounting disc 42 drives the eccentric wheel 43 to rotate along the center of the mounting disc 42. The eccentric wheel 43 drives the fork to move, and the fork drives the support plate 32 to rotate. In other embodiments, the holding mechanism 4 can also use a cylinder, an oil cylinder and other devices that can make the support plate 32 rotate and swing.

[0029] As shown in Figure 5 The height adjusting assembly 44 comprises an adjusting handle 441, an adjusting rod 442, a sliding rail 443 and a sliding block 444. The sliding rail 443 is slidingly arranged on the sliding rail 443, and the sliding block 444 is screwedly arranged on the adjusting rod 442. The holding drive motor 41 is fixed on the sliding block 444. The adjusting rod 442 is rotatably arranged on the sliding rail 443. The handle is fixed with the upper end of the adjusting rod 442. Rotating the adjusting handle 441 drives the adjusting rod 442 to rotate, which drives the sliding block 444 to move up and down, and drives the holding drive motor 41 to move up and down, so as to adjust the activity range of the eccentric wheel 43, that is, to adjust the swing position of the support plate 32. The sliding rail 443 is provided with a groove 4431, and the sliding block 444 is provided with a connecting portion 4441 connected with the adjusting rod 442. The connecting portion 4441 is located in the groove 4431, so that the volume of the sliding rail 443 and the sliding block 444 can be reduced.

[0030] In use, the brush drive motor 51 drives the brush roller 2 to rotate. The brush on the brush roller 2 first brushes the applicator head 7, so that the coating liquid is attached to the brush roller 2. Then the brush roller 2 continues to rotate, so that the brush brushes the bottle 9. In this way, the coating liquid is brushed onto the surface of the bottle 9, forming a thin film on the surface of the bottle 9. The thin film can enhance the hardness of the surface of the bottle 9. After one bottle 9 is brushed, the holding drive motor 41 drives the eccentric wheel 43 to rotate, so that the support plate 32 rotates and drives the brush roller 2 to separate from the bottle 9. At this time, the glass on the support mechanism 6 can be replaced. In this embodiment, the conveying belt moves a certain distance, so that the next bottle 9 enters the processing position, and the finished bottle 9 is taken away from the processing position. The operation is mechanized, and manual coating is not required, which is convenient and efficient.

[0031] Embodiment 2

[0032] As Figure 6 shown, the embodiment differs from embodiment 1 in that the embodiment further comprises a peristaltic pump 8 connected with the connecting nozzle 72 through a pipe, the peristaltic pump 8 pumps the coating liquid into the applicator head 7, facilitating control of the amount of coating liquid entering the applicator head 7 and saving cost.

[0033] The above is only an embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structure, direct or indirect application in other related technical fields, made by using the content of the present application specification and drawings, are also within the patent protection scope of the present application.

Claims

1. A bottle stiffness enhancing apparatus, characterized by: The application relates to a bottle coating device, which comprises a frame, a brush roller, a rotating support, a holding mechanism, a brush driver, a supporting mechanism and a coating head, the brush roller is arranged to rotate on the rotating support, the rotating support is arranged to rotate on the frame, the supporting mechanism is used for supporting bottles, the supporting mechanism is a roller type conveying belt, the bottles rotate when subjected to external force on the supporting mechanism, the coating head is arranged on the rotating support, the coating head is provided with a connecting nozzle, coating liquid enters the coating head through the connecting nozzle, the coating liquid is dispersed on the coating head, so that the brushes on the brush roller can uniformly adhere to the coating liquid, the brush driver is arranged on the rotating support, the brush driver is used for driving the brush roller to rotate, the brush roller drives the bottles to rotate at the same time, so that the whole bottles are coated with the coating liquid, and the holding mechanism is arranged on the frame, the holding mechanism is used for intermittently driving the rotating support, so that the rotating support is kept in a separated state or a working state.

2. The bottle rigidity enhancing apparatus of claim 1, wherein: The rotating support comprises a rotating shaft, two supporting plates, a first mounting base, a second mounting base and a fork piece, the two supporting plates are connected through the rotating shaft, the rotating shaft is arranged to rotate on the frame, the first mounting base and the second mounting base are fixed on the supporting plates, and the fork piece is fixed on one of the supporting plates.

3. The bottle rigidity enhancing apparatus of claim 2, wherein: The first mounting base comprises a first connecting plate and three first mounting plates, the first connecting plate is fixed with the supporting plate, and the three first mounting plates are fixed on the first connecting plate.

4. The bottle rigidity enhancing apparatus of claim 3, wherein: Each first mounting plate is provided with a first long slot, and the first connecting plate is provided with a second long slot.

5. The bottle rigidity enhancing apparatus of claim 3, wherein: The first connecting plate is fixed in an inclined manner.

6. The bottle firmness enhancing apparatus of claim 1 wherein: The bottle coating device further comprises a peristaltic pump, the peristaltic pump is fixed on the frame, and the peristaltic pump is connected with the connecting nozzle through a pipeline.

7. The bottle firmness enhancing apparatus of claim 1 wherein: The brush driver comprises a brush driving motor, a driving wheel, a driven wheel and a transmission belt, the driving wheel is fixed on the brush driving motor, the driven wheel is fixed on the rotating shaft of the brush roller, and the transmission belt is arranged around the driving wheel and the transmission wheel.

8. The bottle firmness enhancing apparatus of claim 2, wherein: The holding mechanism comprises a holding driving motor, a mounting disc and an eccentric wheel, the eccentric wheel is arranged eccentrically on the mounting disc, the eccentric wheel cooperates with the fork piece, and the mounting disc is fixed on the output shaft of the holding driving motor.

9. The bottle rigidity enhancing apparatus of claim 8, wherein: The holding mechanism further comprises a height adjusting assembly, the height adjusting assembly comprises an adjusting handle, an adjusting rod, a sliding rail and a sliding block, the sliding rail is arranged to slide on the sliding rail, the sliding block is arranged to screw on the adjusting rod, the holding driving motor is fixed on the sliding block, the adjusting rod is arranged to rotate on the sliding rail, and the adjusting handle is fixed with the upper end of the adjusting rod.

10. The bottle rigidity enhancing apparatus of claim 9, wherein: The sliding rail is provided with a groove, the sliding block is provided with a connecting portion, the connecting portion is connected with the adjusting rod, and the connecting portion is located in the groove.

Citation Information

Patent Citations

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