A filling machine for double-ended water bottles

CN224739687UActive Publication Date: 2026-09-11GUANGZHOU ZHONGDA MEDICAL SKIN CARE PRODUCTS R&D CO LTD
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Patent Information

Application Number
CN202522069476.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-26
Publication Date
2026-09-11
Estimated Expiration
2035-09-26

AI Technical Summary

Technical Problem

[0005]本实用新型公开一种适用于双头水剂瓶的灌装机,以解决不适配的技术问题

Benefits of technology

本实用新型提供的双头水剂瓶的灌装机设置两个储液器和两个注水器,两个储液器能够储存不同的溶液,并分别向两个注水器通入不同的溶液,两个注水器再向双头水剂瓶的双口分别注入不同的溶液;自动化程度高,工作效率高,适配性高。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of filling machines suitable for double-end water agent bottle, it is related to filling equipment technical field, including rack, liquid storage mechanism, liquid adding mechanism;Liquid storage mechanism is arranged on the rack, the liquid storage mechanism includes two liquid reservoirs, two the liquid reservoir is connected two following water injector by water pipe respectively, and water is added to following water injector;Liquid adding mechanism the liquid adding mechanism includes first lifting assembly and two water injectors, the first lifting assembly is arranged on the rack, two the water injector is arranged on the first lifting assembly, and the first lifting assembly is used to drive the water injector lifting;The utility model is high in degree of automation, high in work efficiency, and high in adaptability.
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Description

Technical Field

[0001] This utility model relates to the field of filling equipment technology, specifically a filling machine suitable for double-headed liquid bottles. Background Technology

[0002] A filling machine is a packaging machine that fills containers with liquids or other media.

[0003] Double-ended liquid bottles, also known as double-necked bottles, are containers that use a double-opening design to allow for the separate storage or mixing of liquids. Their core structure includes an inlet, an outlet, and a sealing device, enabling independent liquid storage through a combined double-bottle structure.

[0004] Most existing filling machines are designed for single-necked bottles, with only one water inlet for filling single-necked bottles. They are not suitable for filling double-necked bottles. Therefore, a filling machine specifically designed for double-necked bottles is needed. Utility Model Content

[0005] This utility model discloses a filling machine suitable for double-headed liquid bottles to solve the technical problem of incompatibility.

[0006] To solve the above-mentioned technical problems, the present invention proposes the following optimized technical solution: A filling machine for double-headed liquid bottles, comprising: frame; A liquid storage mechanism is mounted on the frame. The liquid storage mechanism includes two liquid reservoirs. The two liquid reservoirs are respectively connected to two water injectors via water pipes, and water is added to the water injectors. The liquid filling mechanism includes a first lifting assembly and two water injectors. The first lifting assembly is mounted on the frame, and the two water injectors are mounted on the first lifting assembly. The first lifting assembly is used to drive the water injectors to lift and lower.

[0007] Furthermore, the liquid storage mechanism includes a second lifting assembly, which is mounted on the frame. Two liquid storage containers are mounted on the second lifting assembly. The second lifting assembly is used to drive the liquid storage containers to rise and fall. The two liquid storage containers are respectively connected to two water injectors via water pipes.

[0008] Furthermore, the second lifting assembly includes a first cylinder and a first bracket, the first cylinder is mounted on the frame, the output shaft of the first cylinder is connected to the first bracket, and the first bracket is connected to the liquid reservoir.

[0009] Furthermore, the second lifting assembly also includes a first base plate and two first guide shafts. The first base plate is fixed on the first cylinder, the first guide shafts are fixed on the first base plate, and the first bracket is sleeved on the first guide shafts via a first guide sleeve.

[0010] Furthermore, the liquid storage device includes a bottle body, a connector, and a water pump. The bottle body is mounted on the second lifting assembly, and the connector is connected to the bottle opening of the bottle body. The connector has a first interface and a second interface. The first interface is used to connect to an external water source, and the second interface is used to connect the water pump and the water injector.

[0011] Furthermore, the first lifting assembly includes a second cylinder and a second bracket. The second cylinder is mounted on the frame, and the output shaft of the second cylinder is connected to the second bracket. The water injector is detachably connected to the second bracket.

[0012] Furthermore, the first lifting assembly also includes a second base plate and a second guide shaft. The second guide shaft is fixed on the frame, and the second base plate and the second cylinder are both fixed on the second guide shaft. The second bracket is fitted onto the second guide shaft via a second guide sleeve.

[0013] Furthermore, the second bracket is provided with a limiting groove, the width of which is adapted to the diameter of the water injector, and the water injector is locked in the limiting groove.

[0014] Furthermore, the water injector includes a third cylinder, a plunger, and a housing. The housing has an internal flow channel, a bottom outlet, and a side inlet. The flow channel, the outlet, and the inlet are connected. The inlet is connected to the reservoir via a water pipe. The third cylinder is connected to the top of the housing, and its output shaft is connected to the plunger. The plunger is located inside the housing and blocks the outlet. The diameter of the plunger is smaller than the inner diameter of the housing.

[0015] Furthermore, a sealing ring is fitted at the bottom end of the plunger.

[0016] The present invention has the following advantages over the prior art: The filling machine for the double-headed liquid bottle provided by this utility model is equipped with two liquid reservoirs and two water injectors. The two liquid reservoirs can store different solutions and respectively introduce different solutions into the two water injectors. The two water injectors then inject different solutions into the two openings of the double-headed liquid bottle. It has a high degree of automation, high working efficiency, and high adaptability. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this utility model.

[0018] Figure 2 This is a partial structural schematic diagram of the present invention.

[0019] Figure 3 This is a schematic diagram of the liquid storage mechanism of this utility model.

[0020] Figure 4 This is a schematic diagram of the liquid addition mechanism of this utility model.

[0021] Figure 5 This is a schematic diagram of the water injector of this utility model.

[0022] Figure 6 This is an exploded view of the structure of the water injector of this utility model.

[0023] Figure 7 This is a cross-sectional view of the water injector of this utility model.

[0024] In the diagram: 100, frame; 200, liquid storage mechanism; 210, second lifting assembly; 211, first cylinder; 212, first bracket; 213, first base plate; 214, first guide shaft; 220, liquid reservoir; 221, bottle body; 222, connector; 223, first interface; 224, second interface; 230, water pump; 300, liquid filling mechanism; 310, first lifting assembly; 311, second cylinder; 312, second bracket; 313, second base plate; 314, second guide shaft; 315, limiting groove; 320, water injector; 321, third cylinder; 322, plunger; 323, outer shell; 324, flow channel; 325, water outlet; 326, water inlet. Detailed Implementation

[0025] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0026] See Figures 1-7A filling machine suitable for double-headed liquid bottles includes a frame 100, a liquid storage mechanism 200, and a liquid dispensing mechanism 300. The liquid storage mechanism 200 is disposed on the frame 100 and includes two liquid reservoirs 220. The two liquid reservoirs 220 are respectively connected to two water injectors 320 via water pipes and add water to the water injectors 320. The liquid dispensing mechanism 300 includes a first lifting assembly 310 and two water injectors 320. The first lifting assembly 310 is disposed on the frame 100, and the two water injectors 320 are disposed on the first lifting assembly 310. The first lifting assembly 310 is used to drive the water injectors 320 to lift and lower.

[0027] In use, the two reservoirs 220 draw the two solutions into the two injectors 320 respectively. When the double-ended liquid bottle is placed under the injector 320, the two openings of the double-ended liquid bottle are aligned with the two injectors 320 respectively. The two injectors 320 then release the solutions inside, and the two solutions fall into the two openings of the double-ended liquid bottle respectively.

[0028] Additionally, a sensor is installed below the injector 320. When the double-ended liquid bottle is placed below the injector 320, the sensor detects the double-ended liquid bottle, and the controller will control the reservoir 220 and the injector 320 to operate.

[0029] In this embodiment, the liquid storage mechanism 200 includes a second lifting assembly 210, which is mounted on the frame 100. Two liquid storage containers 220 are mounted on the second lifting assembly 210. The second lifting assembly 210 is used to drive the liquid storage containers 220 to lift and lower, thereby adjusting the height of the two liquid storage containers 220. The two liquid storage containers 220 are respectively connected to two water injectors 320 through water pipes. The two liquid storage containers are used to hold two solutions, and the solutions in the liquid storage containers can be introduced into the water injectors 320.

[0030] In this embodiment, the second lifting assembly 210 includes a first cylinder 211 and a first bracket 212. The first cylinder 211 is mounted on the frame 100, and its output shaft is connected to the first bracket 212. The first bracket 212 is connected to the liquid reservoir 220. The first cylinder 211 is activated to drive the first bracket 212 to rise or fall to a suitable height, thereby adjusting the liquid reservoir 220 to a suitable height.

[0031] In this embodiment, the second lifting assembly 210 further includes a first base plate 213 and two first guide shafts 214. The first base plate 213 is fixed to the first cylinder 211, and the first guide shafts 214 are fixed to the first base plate 213. The first bracket 212 is fitted onto the first guide shafts 214 via a first guide sleeve. During the lifting and lowering process of the first bracket 212, the first guide shafts 214 provide guidance and stability for the first bracket 212.

[0032] In this embodiment, the liquid reservoir 220 includes a bottle body 221, a connector 222, and a water pump 230. The bottle body 221 is mounted on the second lifting assembly 210. The connector 222 is connected to the bottle opening of the bottle body 221. The connector 222 has a first interface 223 and a second interface 224. The first interface 223 is used to connect to an external water source, which can draw the solution into the bottle body 221. The second interface 224 connects the water pump 230 and the water injector 320. The water pump 230 can draw the solution in the bottle body 221 out from the second interface 224 and pass it to the water injector 320.

[0033] In this embodiment, the first lifting assembly 310 includes a second cylinder 311 and a second bracket 312. The second cylinder 311 is mounted on the frame 100, and its output shaft is connected to the second bracket 312. The water injector 320 is detachably connected to the second bracket 312. The second cylinder 311 is activated to drive the second bracket 312 to a suitable height, thereby adjusting the water injector 320 to a suitable height. Specifically, the height of the water injector 320 is adjusted according to the height of the double-ended liquid bottle, so that the water injector 320 is positioned appropriately above the double-ended liquid bottle.

[0034] In this embodiment, the first lifting assembly 310 further includes a second base plate 313 and a second guide shaft 314. The second guide shaft 314 is fixed to the frame 100. The second base plate 313 and the second cylinder 311 are both fixed to the second guide shaft 314. The second bracket 312 is fitted onto the second guide shaft 314 via a second guide sleeve. During the lifting process of the second bracket 312, the second guide shaft 314 provides guidance and stability for the second bracket 312.

[0035] In this embodiment, the second bracket 312 is provided with a limiting groove 315. The width of the limiting groove 315 is adapted to the diameter of the water injector 320. The water injector 320 is locked in the limiting groove 315. The water injector 320 can be moved manually. Without the action of external force, the water injector 320 is locked in the limiting groove 315 and will not move spontaneously. Thus, the position of the two water injectors 320 can be adjusted according to the position of the two bottle mouths of the double-ended liquid bottle.

[0036] Additionally, the frame 100 is provided with a slot located below the limiting slot 315. This slot is used to place a double-ended liquid bottle. During the adjustment phase, a double-ended liquid bottle can be placed in the slot, and then the two injectors 320 are moved so that the two openings of the double-ended liquid bottle are facing each other. This ensures that when the double-ended liquid bottle is placed in the slot later, the injectors 320 can accurately inject the solution into the double-ended liquid bottle.

[0037] In this embodiment, the water injector 320 includes a third cylinder 321, a plunger 322, and a housing 323. The housing 323 has a flow channel 324 inside, a water outlet 325 at the bottom, and a water inlet 326 on the side. The flow channel 324, the water outlet 325, and the water inlet 326 are connected. The water inlet 326 is connected to the liquid reservoir 220 through a water pipe. The solution in the liquid reservoir 220 is introduced into the flow channel 324 through the water inlet 326. The third cylinder 321 is connected to the top of the housing 323. The output shaft of the third cylinder 321 is connected to the plunger 322. The plunger 322 is disposed inside the housing 323 and blocks the water outlet 325. The diameter of the plunger 322 is smaller than the inner diameter of the housing 323. When the third cylinder 321 drives the plunger 322 to rise, the bottom end of the plunger 322 leaves the outlet 325, and the solution in the flow channel 324 can flow out from the outlet 325 and fall into the double-ended liquid bottle; when the solution in the double-ended liquid bottle is full, the third cylinder 321 drives the plunger 322 to fall to block the outlet 325.

[0038] Additionally, the controller can set the water injection volume of the two injectors 320 according to the volume of the dual-headed liquid bottle, thereby intelligently controlling the operation of the injectors 320.

[0039] In this embodiment, a sealing ring is fitted at the bottom end of the plunger 322. When the plunger 322 blocks the outlet 325, the sealing ring has a sealing function.

[0040] The above description is merely a specific embodiment of the present invention, enabling those skilled in the art to understand or implement the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features claimed herein.

Claims

1. A filling machine suitable for double-headed water agent bottles, characterized in that, include: frame; A liquid storage mechanism is mounted on the frame. The liquid storage mechanism includes two liquid reservoirs. The two liquid reservoirs are respectively connected to two water injectors via water pipes, and water is added to the water injectors. The liquid filling mechanism includes a first lifting assembly and two water injectors. The first lifting assembly is mounted on the frame, and the two water injectors are mounted on the first lifting assembly. The first lifting assembly is used to drive the water injectors to lift and lower.

2. A filling machine for double-headed water bottles according to claim 1, characterized in that, The liquid storage mechanism further includes a second lifting assembly, which is mounted on the frame. Two liquid storage containers are mounted on the second lifting assembly. The second lifting assembly is used to drive the liquid storage containers to rise and fall. The two liquid storage containers are respectively connected to two water injectors through water pipes.

3. A filling machine for double-headed water bottles according to claim 2, characterized in that, The second lifting assembly includes a first cylinder and a first bracket. The first cylinder is mounted on the frame, and the output shaft of the first cylinder is connected to the first bracket. The first bracket is connected to the liquid reservoir.

4. The filling machine for dual head water bottles of claim 3, wherein, The second lifting assembly also includes a first base plate and two first guide shafts. The first base plate is fixed on the first cylinder, the first guide shafts are fixed on the first base plate, and the first bracket is sleeved on the first guide shafts via a first guide sleeve.

5. The filling machine for dual head water bottles of claim 2, wherein, The liquid storage device includes a bottle body, a connector, and a water pump. The bottle body is mounted on the second lifting assembly, and the connector is connected to the bottle mouth of the bottle body. The connector has a first interface and a second interface. The first interface is used to connect to an external water source, and the second interface is used to connect the water pump and the water injector.

6. The filling machine for dual head water bottles of claim 1, wherein, The first lifting assembly includes a second cylinder and a second bracket. The second cylinder is mounted on the frame, and the output shaft of the second cylinder is connected to the second bracket. The water injector is detachably connected to the second bracket.

7. A filling machine for double-headed liquid bottles according to claim 6, characterized in that, The first lifting assembly also includes a second base plate and two second guide shafts. The second guide shafts are fixed on the frame, and the second base plate and the second cylinder are both fixed on the second guide shafts. The second bracket is fitted onto the second guide shafts via a second guide sleeve.

8. A filling machine for twin head water bottles as claimed in claim 6, wherein, The second bracket is provided with a limiting groove, the width of which is adapted to the diameter of the water injector, and the water injector is locked in the limiting groove.

9. The filling machine for dual head water bottles of claim 1, wherein, The water injector includes a third cylinder, a plunger, and a housing. The housing has an internal flow channel, a bottom outlet, and a side inlet. The flow channel, the outlet, and the inlet are connected. The inlet is connected to the reservoir via a water pipe. The third cylinder is connected to the top of the housing. The output shaft of the third cylinder is connected to the plunger. The plunger is located inside the housing and blocks the outlet. The diameter of the plunger is smaller than the inner diameter of the housing.

10. The filling machine for double-headed water bottles of claim 9, wherein A sealing ring is fitted at the bottom end of the plunger.