Pure water filling production line

By designing a pure water filling production line containing multiple equipment, the drinking water insecurity and environmental pollution caused by the use of disposable plastic bottles and bottle caps in the prior art is solved, and the recycling of non-plastic bottles and safety guarantees of drinking water are achieved.

CN223002734UActive Publication Date: 2025-06-20DONGGUAN FEIBA WATER PURIFICATION TECH CO LTD
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Patent Information

Application Number
CN202421795872.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-29
Publication Date
2025-06-20
Estimated Expiration
2034-07-29

AI Technical Summary

Technical Problem

The existing pure water filling production lines use disposable plastic bottles and bottle caps, which have problems such as unsafe drinking water and environmental pollution.

Method used

A pure water filling production line is designed, including bottle cleaning machine, bottle washing machine, dryer, filling machine, capping machine, capping machine, labeling machine and bottle collector. Through these equipment, non-plastic bottles are sorted, cleaned, disinfected and dried, filling, capping, labeling and collecting, so as to realize the recycling and reuse of bottles.

Benefits of technology

Through the design of this production line, the safety of drinking water is ensured, environmental pollution is avoided, and non-plastic bottles and bottle caps are reusable.

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Abstract

The utility model discloses a pure water filling production line which comprises a bottle arranging machine, a bottle washing machine, a drying machine, a filling machine, a cap feeding machine, a cap screwing machine, a labeling machine and a bottle collecting machine. The bottle arranging machine is used for arranging non-plastic bottles and outputting the non-plastic bottles in sequence. The bottle washing machine is used for washing non-plastic bottles, and the input end of the bottle washing machine is connected with the output end of the bottle unscrambler. The dryer is used for performing high-temperature disinfection and drying on non-plastic bottles; the bottle unscrambler, the bottle washing machine, the drying machine, the filling machine, the cap feeding machine, the cap screwing machine, the labeling machine and the bottle collecting machine are arranged in a matched mode, non-plastic bottles can be arranged, washed, disinfected, dried, filled, screwed, labeled and collected, the non-plastic bottles and the bottle caps can be recycled through pure water filling, disposable bottle caps and plastic bottles do not need to be adopted, the production cost is reduced, and the production efficiency is improved. Drinking water is guaranteed to be safe, body health is not harmed after long-term use, the non-plastic bottle and the bottle cap can be repeatedly used, and environmental pollution is avoided.
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Description

Technical Field

[0001] The utility model relates to the technology in the field of filling production, in particular to a pure water filling production line. Background Art

[0002] Pure water is an inorganic compound with the chemical formula H2O. It is a liquid with a certain structure. Although it has no rigidity, its molecular arrangement is much more regular than that of gaseous water molecules. In liquid water, water molecules do not exist in the form of single molecules, but several molecules associate through hydrogen bonds to form water molecule clusters (H2O). Therefore, the orientation and movement of water molecules will be significantly affected by other surrounding water molecules. There is no definite structural model for the structure of water, and the three main models accepted by most people are: mixed type, interstitial type, and continuous structure (or uniform structure) model.

[0003] After pure water is manufactured, it needs to be filled into bottles and caps through a filling production line. In the prior art, the pure water filling production line mainly uses disposable caps and plastic bottles. However, plastic bottles for drinking water are not safe. Plastic chemical components are easily decomposed and penetrate into the water, which will harm physical health in the long term, and plastic bottles are likely to cause environmental pollution. Therefore, it is necessary to study a solution to solve the above problems. Content of the Utility Model

[0004] In view of this, in view of the deficiencies of the prior art, the main purpose of the present utility model is to provide a pure water filling production line, which can effectively solve the problem of unsafe drinking water existing in the prior filling production line using disposable caps and plastic bottles for pure water filling.

[0005] To achieve the above purpose, the present utility model adopts the following technical solutions:

[0006] A pure water filling production line includes a bottle arranging machine, a bottle washing machine, a dryer, a filling machine, a cap feeding machine, a capping machine, a labeling machine, and a bottle collecting machine; the bottle arranging machine is used to arrange non-plastic bottles and output them in sequence; the bottle washing machine is used to wash non-plastic bottles, and the input end of the bottle washing machine is connected to the output end of the bottle arranging machine; the dryer is used to disinfect and dry non-plastic bottles at high temperature, and the input end of the dryer is connected to the output end of the bottle washing machine; the filling machine is used to fill non-plastic bottles with pure water, and the input end of the filling machine is connected to the output end of the dryer; the cap feeding machine is used to feed caps, and the cap feeding machine is located beside the output end of the filling machine; the capping machine is used to screw the cap onto the mouth of the non-plastic bottle, the cap input end of the capping machine is connected to the output end of the cap feeding machine, and the non-plastic bottle input end of the capping machine is connected to the output end of the filling machine; the labeling machine is used to label non-plastic bottles, and the input end of the labeling machine is connected to the output end of the capping machine; the bottle collecting machine is used to collect the non-plastic bottles with caps screwed on, and the input end of the bottle collecting machine is connected to the output end of the labeling machine.

[0007] Preferably, the bottle arranging machine, bottle washing machine, dryer, filling machine, cap covering machine, capping machine, labeling machine and bottle collecting machine are arranged side by side horizontally in sequence.

[0008] Preferably, the bottle washing machine is a rotary bottle washing machine.

[0009] Preferably, the dryer is a multi-column dryer.

[0010] Preferably, the filling machine is a direct-flow filling machine.

[0011] Preferably, the cap covering machine is a lifting cap covering machine.

[0012] Preferably, the capping machine is a four-wheel capping machine.

[0013] Preferably, the labeling machine is a flat labeling machine.

[0014] Compared with the prior art, the utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solutions:

[0015] By cooperating with the bottle arranging machine, bottle washing machine, dryer, filling machine, cap covering machine, capping machine, labeling machine and bottle collecting machine, non-plastic bottles can be sorted, cleaned, disinfected and dried, filled, capped, labeled and collected, so that the filling of pure water can use recyclable non-plastic bottles and bottle caps, without using disposable bottle caps and plastic bottles, ensuring the safety of drinking water and not harming the health of the body in the long term, and the non-plastic bottles and bottle caps can be reused, avoiding environmental pollution. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of a preferred embodiment of the utility model.

[0017] DESCRIPTION OF THE REFERENCE NUMERALS IN THE DRAWINGS:

[0018] 10. Bottle arranging machine; 20. Bottle washing machine

[0019] 30. Dryer; 40. Filling machine

[0020] 50. Cap covering machine; 60. Capping machine

[0021] 70. Labeling machine; 80. Bottle collecting machine DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] Please refer to Figure 1 as shown, which shows the specific structure of a preferred embodiment of the utility model, including a bottle arranging machine 10, a bottle washing machine 20, a dryer 30, a filling machine 40, a cap covering machine 50, a capping machine 60, a labeling machine 70 and a bottle collecting machine 80.

[0023] The bottle arranging machine 10 is used to arrange non-plastic bottles and output them in sequence.

[0024] The bottle washing machine 20 is used to wash non-plastic bottles. The input end of the bottle washing machine 20 is connected to the output end of the bottle arranging machine 10; in this embodiment, the bottle washing machine 20 is a tilting type bottle washing machine, which can quickly wash non-plastic bottles clean.

[0025] The dryer 30 is used to perform high-temperature disinfection and drying on non-plastic bottles. The input end of the dryer 30 is connected to the output end of the bottle washing machine 20; in this embodiment, the dryer 30 is a multi-column type dryer, which can efficiently perform high-temperature disinfection and drying on non-plastic bottles.

[0026] The filling machine 40 is used to fill pure water into non-plastic bottles. The input end of the filling machine 40 is connected to the output end of the dryer 30; in this embodiment, the filling machine 40 is a direct-current filling machine, which can continuously and efficiently fill pure water into non-plastic bottles.

[0027] The capping machine 50 is used to feed caps. The capping machine 50 is located beside the output end of the filling machine 40; in this embodiment, the capping machine 50 is a lifting capping machine, which can quickly feed caps.

[0028] The cap screwing machine 60 is used to screw caps onto the mouths of non-plastic bottles. The cap input end of the cap screwing machine 60 is connected to the output end of the capping machine 50, and the non-plastic bottle input end of the cap screwing machine 60 is connected to the output end of the filling machine 40; in this embodiment, the cap screwing machine 60 is a four-wheel cap screwing machine, which can quickly screw caps onto non-plastic bottles for encapsulation.

[0029] The labeling machine 70 is used to label non-plastic bottles to seal the caps and bottle bodies with labels. The input end of the labeling machine 70 is connected to the output end of the cap screwing machine 60; in this embodiment, the labeling machine 70 is a flat labeling machine.

[0030] The bottle collecting machine 80 is used to collect non-plastic bottles with caps screwed on. The input end of the bottle collecting machine 80 is connected to the output end of the labeling machine 70.

[0031] Moreover, the bottle arranging machine 10, bottle washing machine 20, dryer 30, filling machine 40, capping machine 50, cap screwing machine 60, labeling machine 70 and bottle collecting machine 80 are arranged side by side horizontally in sequence, with a compact structure and the entire production line running smoothly and reliably.

[0032] The working principle of this embodiment is described in detail as follows:

[0033] First, place the non-plastic bottles to be filled with pure water into the bottle arranging machine 10. The bottle arranging machine 10 arranges and outputs the non-plastic bottles. Then, the non-plastic bottles are sent into the bottle washing machine 20, and the bottle washing machine 20 cleans the non-plastic bottles thoroughly. Next, the non-plastic bottles are output and enter the dryer 30, where the dryer 30 performs high-temperature disinfection and drying on the non-plastic bottles. Then, the non-plastic bottles are output from the dryer 30 and enter the filling machine 40, and the filling machine 40 fills the non-plastic bottles with pure water. The filled non-plastic bottles are sent into the capping machine 60. At the same time, the cap feeding machine 50 feeds and sends the caps that have been cleaned and disinfected into the capping machine 60. Then, the capping machine 60 screws the caps tightly onto the non-plastic bottles to complete the encapsulation of the non-plastic bottles. The encapsulated non-plastic bottles are output and enter the labeling machine 70, and the labeling machine 70 labels the non-plastic bottles. Next, the non-plastic bottles are output and enter the bottle collecting machine 80, and the bottle collecting machine 80 collects the non-plastic bottles.

[0034] The design focus of the present utility model is: by cooperatively arranging a bottle arranging machine, a bottle washing machine, a dryer, a filling machine, a cap feeding machine, a capping machine, a labeling machine and a bottle collecting machine, the non-plastic bottles can be arranged, cleaned, disinfected and dried, filled, capped, labeled and collected, so that the non-plastic bottles and caps that can be recycled and reused can be used for filling pure water, without using disposable caps and plastic bottles, ensuring the safety of drinking water and not harming the physical health in long-term use. Moreover, the non-plastic bottles and caps can be reused, avoiding environmental pollution.

[0035] The technical principle of the present utility model has been described above in combination with specific embodiments. These descriptions are only for explaining the principle of the present utility model and cannot be construed in any way as a limitation on the protection scope of the present utility model. Based on the explanations herein, those skilled in the art can readily conceive of other specific embodiments of the present utility model without creative efforts, and these embodiments will fall within the protection scope of the present utility model.

Claims

1. A pure water filling production line, characterized by: It includes a bottle unscrambler, a bottle washer, a dryer, a filling machine, a capping machine, a capping machine, a labeling machine and a bottle collecting machine; the bottle unscrambler is used to sort non-plastic bottles and output them in order; the bottle washer is used to wash non-plastic bottles, and the input end of the bottle washer is connected to the output end of the bottle unscrambler; the dryer is used to sterilize and dry non-plastic bottles at high temperature, and the input end of the dryer is connected to the output end of the bottle washer; the filling machine is used to fill non-plastic bottles with pure water, and the input end of the filling machine is connected to the output end of the dryer ; The capping machine is used for loading bottle caps, and the capping machine is located beside the output end of the filling machine; the capping machine is used for screwing bottle caps on the bottle mouths of non-plastic bottles, the bottle cap input end of the capping machine is connected to the output end of the capping machine, and the non-plastic bottle input end of the capping machine is connected to the output end of the filling machine; the labeling machine is used for labeling non-plastic bottles, and the input end of the labeling machine is connected to the output end of the capping machine; the bottle collecting machine is used for collecting non-plastic bottles that have completed capping, and the input end of the bottle collecting machine is connected to the output end of the labeling machine.

2. The pure water filling production line according to claim 1, characterized in that: The bottle unscrambler, bottle washer, dryer, filler, capping machine, capping machine, labeling machine and bottle collecting machine are arranged in parallel in sequence.

3. The pure water filling production line according to claim 1, characterized in that: The bottle washing machine is a flip-type bottle washing machine.

4. The pure water filling production line according to claim 1, characterized in that: The dryer is a multi-row dryer.

5. The pure water filling production line according to claim 1, characterized in that: The filling machine is a direct current filling machine.

6. The pure water filling production line according to claim 1, characterized in that: The cover putting machine is a lifting cover putting machine.

7. The pure water filling production line according to claim 1, characterized in that: The capping machine is a four-wheel capping machine.

8. The pure water filling production line according to claim 1, characterized in that: The labeling machine is a flat labeling machine.