Oral liquid filling equipment
By introducing a filling component and a dial moving component into the oral liquid filling equipment, the problems of inconsistent bottle spacing and nozzle misalignment are solved by using a star wheel dial and lifting structure, thereby improving filling efficiency.
Patent Information
- Application Number
- CN202423180578.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing oral liquid filling equipment cannot effectively ensure that the spacing between adjacent bottles is the same, and the bottles and the nozzles in the filling structure are prone to misalignment, resulting in low filling efficiency.
The design incorporates a filling assembly and a dial moving assembly. The bottle body is moved by the first star wheel dial, and the hollow rotating sleeve is driven by the first drive structure to rotate the annular connecting plate and the star wheel dial, thereby achieving consistency in the spacing between the bottles. At the same time, a lifting structure is set to adjust the height of the filling nozzle for easy filling.
It achieves consistent bottle spacing and stable nozzle alignment, improving filling efficiency and avoiding misalignment between bottles and nozzles.
Smart Images

Figure CN223494903U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of oral liquid filling equipment technology, and in particular to an oral liquid filling equipment. Background Technology
[0002] Oral liquid filling equipment is a type of machinery used to fill liquid medicines, nutritional solutions, or beverages into bottles. It generally includes a filling structure and a conveying structure. The conveying structure automatically delivers empty bottles or containers to the filling position and transfers them after filling. The filling structure is used to fill liquid medicines, nutritional solutions, or beverages into bottles, ampoules, or other containers.
[0003] Current oral liquid filling equipment has some limitations and shortcomings in use. For example, most of the conveying structures in current oral liquid filling equipment use belt conveyors. When conveying bottles, belt conveyors cannot effectively ensure that the spacing between adjacent bottles is the same. This can easily lead to misalignment between the bottles and the nozzles in the filling structure during filling, resulting in the oral liquid not being injected into the bottles and the filling process not being completed effectively. At the same time, most current filling structures have only one or two nozzles, which means that only a few bottles can be filled at a time, resulting in low filling efficiency.
[0004] A multi-diameter oral liquid filling device is disclosed in utility model application number CN202322185652.4 and publication number CN220221378U. The device includes a frame, a partition fixedly installed inside the frame, multiple limiting strips fixedly installed on the top of the partition, two slots opened inside the partition, a filling positioning mechanism at the bottom of the frame, and a filling component at the top of the partition. However, in use, it still has the problem of not being able to effectively ensure that the spacing between adjacent bottles is the same, and that the bottles and the nozzles in the filling structure are easily misaligned, making it impossible to complete the filling effectively. Utility Model Content
[0005] Based on this, and in response to the above problems, this utility model proposes an oral liquid filling device, which solves the problem that current oral liquid filling devices cannot effectively ensure that the spacing between adjacent bottles is the same, and that the bottles and the nozzles in the filling structure are easily misaligned, thus failing to complete the filling effectively.
[0006] The technical solution of this utility model is:
[0007] An oral liquid filling device includes a filling component and a dial moving component that are configured to cooperate. The dial moving component includes a mounting housing, a hollow rotating sleeve, an annular connecting plate, a first star wheel dial, and a filling track. The hollow rotating sleeve is disposed on the top of the mounting housing. One end of the hollow rotating sleeve extends through the top of the mounting housing and into the mounting housing, and is rotatably connected to the top of the mounting housing. The mounting housing is provided with a first driving structure for driving the hollow rotating sleeve.
[0008] An annular connecting plate is sleeved on the other end of the hollow rotating sleeve and is detachably connected to the hollow rotating sleeve. A first star wheel dial is set on the annular connecting plate and is detachably connected to the annular connecting plate. A filling track is set on the top of the mounting housing and is configured to cooperate with the first star wheel dial. The first star wheel dial is provided with several first bottle slots, and the filling track is provided with first track grooves that cooperate with the first bottle slots.
[0009] The filling assembly includes a mounting frame and a lifting structure for adjusting the height of the mounting frame. One end of the lifting structure extends through a hollow rotating sleeve into the mounting housing and is detachably connected to the mounting housing. The mounting frame is located at the other end of the lifting structure and is fixedly connected to the lifting structure. The mounting frame is provided with several filling nozzles that cooperate with the first bottle slot and the first track slot.
[0010] Preferably, the mounting housing includes a mounting outer shell and a mounting top plate. The mounting outer shell has a receiving cavity. One end of the hollow rotating sleeve, which passes through the top of the mounting housing, is located in the receiving cavity. The first driving structure is located at the bottom of the receiving cavity and is configured to cooperate with the hollow rotating sleeve to drive the hollow rotating sleeve to rotate.
[0011] Preferably, the first drive structure includes a first drive motor, a first main gear, and a first transmission gear. The first drive motor is disposed at the bottom of the receiving cavity and is detachably connected to the mounting housing. The first main gear is fixedly disposed on the output shaft of the first drive motor, and the first transmission gear is fixedly disposed on the hollow rotating sleeve and meshes with the first main gear.
[0012] Preferably, one end of the hollow rotating sleeve is provided with a limiting ring for installing the annular connecting plate. The annular connecting plate is sleeved on the hollow rotating sleeve and is detachably connected to the limiting ring by bolts.
[0013] Preferably, the annular connecting plate is provided with several connecting posts, and the bottom of the first star wheel dial is detachably connected to several connecting posts by bolts.
[0014] Preferably, the first star wheel dial includes an upper dial, a partition plate, and a lower dial. The partition plate is disposed between the upper dial and the lower dial and is fixedly connected to the upper dial and the lower dial respectively. The first bottle body slot is disposed on the upper dial and the lower dial.
[0015] Preferably, the mounting plate is provided with several connecting rods, the filling track is set on the several connecting rods, one end of the several connecting rods is fixedly connected to the top of the mounting plate, and the other end is fixedly connected to the bottom of the filling track.
[0016] Preferably, the lifting structure includes a mounting rod, a first mounting sleeve, a second mounting sleeve, and a driving component. One end of the mounting rod extends through the hollow rotating sleeve into the receiving cavity and is detachably connected to the bottom of the mounting housing. The first mounting sleeve is disposed at the other end of the mounting rod and is detachably connected to the mounting rod by bolts. The second mounting sleeve is sleeved on the outside of the first mounting sleeve and is slidably connected to the first mounting sleeve. One end of the driving component is disposed inside the first mounting sleeve and is detachably connected to the first mounting sleeve. The other end of the driving component is connected to the second mounting sleeve for driving the second mounting sleeve.
[0017] Preferably, the mounting frame includes an upper frame and a lower frame, which are fixedly connected by several fixing rods. The upper frame is fitted onto the upper end of the second mounting sleeve and is fixedly connected to the second mounting sleeve. The lower frame is provided with several mounting blocks for mounting filling nozzles. The filling nozzles are mounted on the mounting blocks. A connecting ring is provided at the top of the filling track. The connecting ring is provided with several sliding rods that cooperate with the mounting blocks. One end of the sliding rod is fixedly connected to the connecting ring. One end of the mounting block is fixedly connected to the lower frame, and the other end is fitted onto the sliding rod and slidably connected to the sliding rod.
[0018] Preferably, it also includes a dial input component, a dial output component, and a bottle-splitting component, wherein the dial input component and the dial output component are respectively configured to cooperate with the dial moving component, and the bottle-splitting component is configured to cooperate with the dial input component and the dial output component.
[0019] Compared with the prior art, the beneficial effects of this utility model are:
[0020] This invention uses a first star wheel dial to move the bottle. In use, a first driving structure drives a hollow rotating sleeve, which in turn drives a ring-shaped connecting plate, causing the first star wheel dial to rotate. When the first star wheel dial rotates, the bottle can be engaged through a first bottle-holding slot on the dial, allowing the bottle to move along a first track groove. The design of the first star wheel dial and the first bottle-holding slot ensures consistent bottle spacing. A lifting structure is also included to raise and lower the filling nozzle, facilitating the connection between the nozzle and the bottle and thus simplifying filling. This invention solves the problem in current oral liquid filling equipment where the spacing between adjacent bottles cannot be effectively guaranteed, leading to misalignment between the bottle and the nozzle in the filling structure, hindering effective filling. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of an oral liquid filling device described in this embodiment of the present invention. Figure 1 ;
[0022] Figure 2 This is a schematic diagram of the structure of an oral liquid filling device described in this embodiment of the present invention. Figure 2 ;
[0023] Figure 3 This is a partial structural diagram of an oral liquid filling device described in an embodiment of this utility model. Figure 1 ;
[0024] Figure 4 This is a schematic diagram of the structure of an oral liquid filling device described in this embodiment of the present invention. Figure 3 ;
[0025] Figure 5 This is a cross-sectional structural schematic diagram of an oral liquid filling device described in an embodiment of this utility model;
[0026] Figure 6 This is a partial structural diagram of an oral liquid filling device described in an embodiment of this utility model. Figure 2 ;
[0027] Figure 7 This is a partial structural diagram of an oral liquid filling device described in an embodiment of this utility model. Figure 3 ;
[0028] Explanation of reference numerals in the attached figures:
[0029] 10-Filling assembly, 100-Mounting frame, 101-Lifting structure, 102-Filling nozzle, 103-Mounting rod, 104-First mounting sleeve, 105-Second mounting sleeve, 106-Drive component, 107-Upper frame, 108-Lower frame, 109-Fixing rod, 110-Mounting block, 111-Connecting ring, 112-Sliding rod, 20-Dial moving assembly, 200-Mounting housing, 201-Hollow rotating sleeve, 202-Annular connecting plate, 203-First star wheel dial, 204-Filling track, 205-First drive structure, 206-First bottle slot, 207-First track groove, 208-Mounting outer shell, 209-Mounting top plate, 210-Receiving cavity, 211-First drive motor, 212-First main gear, 213-First transmission gear 214-Limiting ring, 215-Connecting column, 216-Upper dial, 217-Divider plate, 218-Lower dial, 219-Connecting rod, 220-Rotating bearing, 30-Dial input assembly, 300-Input track, 301-Second star wheel dial, 302-First mounting shaft, 303-First housing, 304-Second drive structure, 305-Second bottle slot, 306-Second track groove, 40-Dial output assembly, 400-Output track, 401-Third star wheel dial, 402-Second mounting shaft, 403-Second housing, 404-Third drive structure, 405-Third bottle slot, 406-Third track groove, 50-Bottle separating assembly, 500-Dual output shaft gear reversing box, 501-Third housing, 502-Third mounting shaft, 503-Bottle separating screw. Detailed Implementation
[0030] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0031] Example:
[0032] like Figures 1 to 4 As shown, in order to solve the above problems, this embodiment discloses an oral liquid filling device, including a filling component 10 and a dial moving component 20. The dial moving component 20 includes a mounting housing 200, a hollow rotating sleeve 201, an annular connecting plate 202, a first star wheel dial 203, and a filling track 204. The hollow rotating sleeve 201 is disposed on the top of the mounting housing 200. One end of the hollow rotating sleeve 201 extends through the top of the mounting housing 200 and into the mounting housing 200, and is rotatably connected to the top of the mounting housing 200. The mounting housing 200 is provided with a first driving structure 205 for driving the hollow rotating sleeve 201.
[0033] An annular connecting plate 202 is sleeved on the other end of the hollow rotating sleeve 201 and is detachably connected to the hollow rotating sleeve 201. A first star wheel dial 203 is disposed on the annular connecting plate 202 and is detachably connected to the annular connecting plate 202. A filling track 204 is disposed on the top of the mounting housing 200 and is configured to cooperate with the first star wheel dial 203. The first star wheel dial 203 is provided with a plurality of first bottle slots 206, and the filling track 204 is provided with first track grooves 207 that cooperate with the first bottle slots 206.
[0034] The filling assembly 10 includes a mounting frame 100 and a lifting structure 101 for adjusting the height of the mounting frame 100. One end of the lifting structure 101 extends through the hollow rotating sleeve 201 into the mounting housing 200 and is detachably connected to the mounting housing 200. The mounting frame 100 is located at the other end of the lifting structure 101 and is fixedly connected to the lifting structure 101. The mounting frame 100 is provided with a plurality of filling nozzles 102 that cooperate with the first bottle slot 206 and the first track slot 207.
[0035] This invention uses a first star wheel dial 203 to move the bottle. In use, a first drive structure 205 drives a hollow rotating sleeve 201, which in turn drives an annular connecting plate 202, causing the first star wheel dial 203 to rotate. When the first star wheel dial 203 rotates, the bottle can be secured by a first bottle-holding slot 206 on the first star wheel dial 203, allowing the bottle to move along the first track groove 207. The first star wheel dial 203 and the first bottle-holding slot 206 ensure consistent bottle spacing. A lifting structure 101 is also provided to raise and lower the filling nozzle 102, facilitating the connection between the filling nozzle 102 and the bottle, thus simplifying filling. This solves the problem in current oral liquid filling equipment where the spacing between adjacent bottles cannot be effectively guaranteed, and misalignment between the bottle and the nozzle in the filling structure easily occurs, hindering effective filling.
[0036] It should be noted that several filling nozzles 102 can be connected to the oral liquid storage unit through pipelines and controlled by a combination of valves and pumps in the prior art.
[0037] like Figure 5 As shown, for ease of installation, this embodiment is modified based on the above embodiment. The difference from the above embodiment is that the mounting housing 200 includes a mounting outer shell 208 and a mounting top plate 209. The mounting outer shell 208 is provided with a receiving cavity 210. One end of the hollow rotating sleeve 201 that passes through the top of the mounting housing 200 is located in the receiving cavity 210. The first driving structure 205 is disposed at the bottom of the receiving cavity 210 and is configured to cooperate with the hollow rotating sleeve 201 to drive the hollow rotating sleeve 201 to rotate.
[0038] In one embodiment, the mounting top plate 209 is provided with a mounting groove, and a rotating bearing 220 is provided at the mounting groove opening. The outer ring of the rotating bearing 220 is fixedly connected to the mounting groove, and the inner ring is sleeved on the outside of the hollow rotating sleeve 201 and fixedly connected to the hollow rotating sleeve 201. The hollow rotating sleeve 201 and the mounting top plate 209 are rotatably connected through the rotating bearing 220.
[0039] like Figure 6 As shown, in order to facilitate the driving of the hollow rotating sleeve 201, this embodiment is modified based on the above embodiment. The difference from the above embodiment is that the first driving structure 205 includes a first driving motor 211, a first main gear 212 and a first transmission gear 213. The first driving motor 211 is disposed at the bottom of the receiving cavity 210 and is detachably connected to the mounting housing 208. The first main gear 212 is fixedly disposed on the output shaft of the first driving motor 211, and the first transmission gear 213 is fixedly disposed on the hollow rotating sleeve 201 and meshes with the first main gear 212.
[0040] During use, the rotation of the hollow rotating sleeve 201 can be made more stable through gear transmission.
[0041] It should be noted that the first drive motor 211 can be a servo motor as is currently known. The speed of the first drive motor 211 can be controlled by changing the power supply frequency using a frequency converter.
[0042] To facilitate the disassembly and assembly of the annular connecting plate 202, this embodiment is modified based on the above embodiment. The difference from the above embodiment is that one end of the hollow rotating sleeve 201 is provided with a limiting ring 214 for installing the annular connecting plate 202. The annular connecting plate 202 is sleeved on the hollow rotating sleeve 201 and is detachably connected to the limiting ring 214 by bolts.
[0043] When in use, the limit ring 214 facilitates the positioning and installation of the annular connecting plate 202, and the bolt connection facilitates the disassembly and assembly of the annular connecting plate 202.
[0044] In order to facilitate the disassembly and assembly of the first star wheel dial 203, the annular connecting plate 202 is provided with several connecting posts 215, and the bottom of the first star wheel dial 203 is detachably connected to the several connecting posts 215 by bolts.
[0045] like Figure 7 As shown, in order to facilitate the movement of the bottle, this embodiment is modified based on the above embodiment. The difference from the above embodiment is that the first star wheel dial 203 includes an upper dial 216, a partition plate 217 and a lower dial 218. The partition plate 217 is disposed between the upper dial 216 and the lower dial 218 and is fixedly connected to the upper dial 216 and the lower dial 218 respectively. The first bottle slot 206 is disposed on the upper dial 216 and the lower dial 218.
[0046] When in use, the upper dial 216 and the lower dial 218 simultaneously lock the upper and lower ends of the bottle, thus facilitating stable movement of the bottle.
[0047] like Figure 6 As shown, in order to facilitate the installation of the filling track 204 and to make the filling track 204 cooperate with the first star wheel dial 203, this embodiment is modified based on the above embodiment. The difference from the above embodiment is that the mounting top plate 209 is provided with a plurality of connecting rods 219, the filling track 204 is set on the plurality of connecting rods 219, one end of the plurality of connecting rods 219 is fixedly connected to the top of the mounting top plate 209, and the other end is fixedly connected to the bottom of the filling track 204.
[0048] During installation, the filling track 204 can be connected to the mounting top plate 209 via the connecting rod 219. The installation height of the filling track 204 can be changed by altering the length of the connecting rod 219, thereby facilitating a proper fit between the filling track 204 and the first star wheel dial 203.
[0049] like Figure 5 As shown, in order to facilitate the adjustment of the height of the filling nozzle 102 and enable the filling nozzle 102 to perform effective filling, this embodiment is modified based on the above embodiment. The difference from the above embodiment is that the lifting structure 101 includes a mounting rod 103, a first mounting sleeve 104, a second mounting sleeve 105, and a driving member 106. One end of the mounting rod 103 extends through the hollow rotating sleeve 201 into the receiving cavity 210 and is detachably connected to the bottom of the mounting housing 208. The first mounting sleeve 104 is disposed at the other end of the mounting rod 103 and is detachably connected to the mounting rod 103 by bolts. The second mounting sleeve 105 is sleeved on the outside of the first mounting sleeve 104 and is slidably connected to the first mounting sleeve 104. One end of the driving member 106 is disposed inside the first mounting sleeve 104 and is detachably connected to the first mounting sleeve 104. The other end of the driving member 106 is connected to the second mounting sleeve 105 and is used to drive the second mounting sleeve 105.
[0050] like Figure 6 As shown, the mounting frame 100 includes an upper frame 107 and a lower frame 108, which are fixedly connected by several fixing rods 109. The upper frame 107 is sleeved on the upper end of the second mounting sleeve 105 and is fixedly connected to the second mounting sleeve 105. The lower frame 108 is provided with several mounting blocks 110 for mounting filling nozzles 102. The filling nozzles 102 are mounted on the mounting blocks 110. The top of the filling track 204 is provided with a connecting ring 111. The connecting ring 111 is provided with several sliding rods 112 that cooperate with the mounting blocks 110. One end of the sliding rod 112 is fixedly connected to the connecting ring 111. One end of the mounting block 110 is fixedly connected to the lower frame 108, and the other end is sleeved on the sliding rod 112 and slidably connected to the sliding rod 112.
[0051] It should be noted that the drive component 106 may be a cylinder as used in the prior art.
[0052] In use, the second mounting sleeve 105 is driven by the drive component 106, which in turn moves the second mounting sleeve 105 along the first mounting sleeve 104, thereby adjusting the height of the mounting frame 100 and the filling nozzle 102. The sliding rod 112 makes the movement of the filling nozzle 102 more stable and prevents the filling nozzle 102 from shaking.
[0053] To facilitate bottle transport, this embodiment is modified from the above embodiment. The difference from the above embodiment is that it also includes a dial input component 30, a dial output component 40, and a bottle separating component 50. The dial input component 30 and the dial output component 40 are respectively configured to cooperate with the dial moving component 20, and the bottle separating component 50 is configured to cooperate with the dial input component 30 and the dial output component 40.
[0054] like Figure 1 , Figure 4 , Figure 6 As shown, to facilitate bottle dispensing input, this embodiment modifies the above embodiment. The difference from the above embodiment is that the dial input component 30 includes an input track 300, a second star wheel dial 301, a first mounting shaft 302, and a first housing 303. The second star wheel dial 301 is disposed above the first housing 303 and cooperates with the first star wheel dial 303. One end of the first mounting shaft 302 is fixedly connected to the second star wheel dial 301, and the other end extends through the top of the first housing 303 into the first housing 303. The first mounting shaft 302 is rotatably connected to the top of the first housing 303. The first housing 303 is provided with a second drive structure 304 for driving the first mounting shaft 302. The input track 300 is disposed outside the second star wheel dial 301, and one end cooperates with the filling track 204. The second star wheel dial 301 is provided with a plurality of second bottle slots 305, and the input track 300 is provided with second track grooves 306 that cooperate with the second bottle slots 305.
[0055] The second drive structure 304 includes a second drive motor, a second main gear, and a second transmission gear. The second drive motor is disposed at the bottom of the first housing 303 and is detachably connected to the first housing 303. The second main gear is fixedly disposed on the output shaft of the second drive motor, and the second transmission gear is fixedly disposed on the first mounting shaft 302 and meshes with the second main gear. The second drive motor can be a servo motor as used in the prior art.
[0056] In use, the second drive motor drives the second main gear, which in turn drives the second transmission gear, which in turn drives the first mounting shaft 302, causing the second star wheel dial 301 to rotate. This allows the bottle to be caught in the second bottle slot 305 on the second star wheel dial 301 and move along the second track groove 306 as the second star wheel dial 301 rotates, until it engages with the first star wheel dial 203 and is then transferred to the dial moving assembly 20.
[0057] like Figure 1 , Figure 4 , Figure 7As shown, to facilitate bottle dispensing, this embodiment modifies the above embodiment. The difference lies in that the dial output assembly 40 includes an output track 400, a third star wheel dial 401, a second mounting shaft 402, and a second housing 403. The third star wheel dial 401 is positioned above the second housing 403 and cooperates with the first star wheel dial 203. One end of the second mounting shaft 402 is fixedly connected to the third star wheel dial 401, and the other end extends through the top of the second housing 403 into the housing. The second mounting shaft 402 is rotatably connected to the top of the second housing 403. A third drive structure 404 for driving the second mounting shaft 402 is provided inside the second housing 403. The output track 400 is positioned outside the third star wheel dial 401, and one end cooperates with the filling track 204. The third star wheel dial 401 has several third bottle slots 405, and the output track 400 has third track grooves 406 that cooperate with the third bottle slots 405.
[0058] The third drive structure 404 includes a third drive motor, a third main gear, and a third transmission gear. The third drive motor is located at the bottom inside the second housing 403 and is detachably connected to the second housing 403. The third main gear is fixedly mounted on the output shaft of the third drive motor, and the third transmission gear is fixedly mounted on the second mounting shaft 402 and meshes with the third main gear. The third drive motor can be a servo motor as used in the prior art.
[0059] In use, the third drive motor drives the third main gear, which in turn drives the third transmission gear, which in turn drives the second mounting shaft 402, causing the third star wheel dial 401 to rotate. This allows the bottle to be held in the third bottle slot 405 on the third star wheel dial 401 and to move on the third track groove 406 as the third star wheel dial 401 rotates.
[0060] like Figure 2As shown, to further facilitate bottle input or output, this embodiment modifies the above embodiment. The difference lies in that the bottle-splitting assembly 50 includes a dual-output shaft gear reversing box 500, a third housing 501, a third mounting shaft 502, and a pair of bottle-splitting screws 503. The dual-output shaft gear reversing box 500 is positioned above the third housing 501. One end of the third mounting shaft 502 is fixedly connected to the input end of the dual-output shaft gear reversing box 500, and the other end extends through the top of the third housing 501 into the third housing 501 and is rotatably connected to the top of the third housing 501. A fourth drive structure for driving the third mounting shaft 502 is provided inside the third housing 501. One end of each pair of bottle-splitting screws 503 is fixedly connected to the two output ends of the dual-output shaft gear reversing box 500. One bottle-splitting screw 503 is configured to cooperate with the input track 300 for bottle input, and the other bottle-splitting screw 503 is configured to cooperate with the output track 400 for bottle output.
[0061] The fourth drive structure includes a fourth drive motor, the output shaft of which is fixedly connected to the third mounting shaft 502. The fourth drive motor can be a servo motor as used in the prior art. The dual-output-shaft gearbox 500 can be a gear commutator with one input and two outputs as used in the prior art.
[0062] When in use, the bottle-separating screw 503 is designed to facilitate the separation of bottles during input or output, and also facilitates the further achievement of consistent bottle spacing.
[0063] Working principle of this utility model:
[0064] This invention uses a first star wheel dial 203 to move the bottle. In use, a first drive structure 205 drives a hollow rotating sleeve 201, which in turn drives an annular connecting plate 202, which in turn drives the first star wheel dial 203 to rotate. When the first star wheel dial 203 rotates, the bottle can be held in place by a first bottle slot 206 on the first star wheel dial 203, allowing the bottle to move on the first track groove 207. The first star wheel dial 203 and the first bottle slot 206 ensure consistent spacing between the bottles. A lifting structure 101 is also provided to raise and lower the filling nozzle 102, facilitating the connection between the filling nozzle 102 and the bottle, thus simplifying the filling process.
[0065] The embodiments described above merely illustrate specific implementations of this utility model, and while the descriptions are detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these modifications and improvements all fall within the protection scope of this utility model.
Claims
1. An oral liquid filling device, characterized in that, The assembly includes a filling component (10) and a dial moving component (20) that are configured to work together. The dial moving component (20) includes a mounting housing (200), a hollow rotating sleeve (201), an annular connecting plate (202), a first star wheel dial (203), and a filling track (204). The hollow rotating sleeve (201) is disposed on the top of the mounting housing (200). One end of the hollow rotating sleeve (201) extends through the top of the mounting housing (200) and into the mounting housing (200), and is rotatably connected to the top of the mounting housing (200). The mounting housing (200) is provided with a first driving structure (205) for driving the hollow rotating sleeve (201). An annular connecting plate (202) is sleeved on the other end of the hollow rotating sleeve (201) and is detachably connected to the hollow rotating sleeve (201). A first star wheel dial (203) is set on the annular connecting plate (202) and is detachably connected to the annular connecting plate (202). A filling track (204) is set on the top of the mounting housing (200) and is configured to cooperate with the first star wheel dial (203). The first star wheel dial (203) is provided with a plurality of first bottle slots (206). The filling track (204) is provided with first track grooves (207) that cooperate with the first bottle slots (206). The filling assembly (10) includes a mounting frame (100) and a lifting structure (101) for adjusting the height of the mounting frame (100). One end of the lifting structure (101) extends through the hollow rotating sleeve (201) into the mounting housing (200) and is detachably connected to the mounting housing (200). The mounting frame (100) is located at the other end of the lifting structure (101) and is fixedly connected to the lifting structure (101). The mounting frame (100) is provided with a plurality of filling nozzles (102) that cooperate with the first bottle slot (206) and the first track slot (207).
2. The oral liquid filling equipment according to claim 1, characterized in that, The mounting housing (200) includes a mounting outer shell (208) and a mounting top plate (209). The mounting outer shell (208) is provided with a receiving cavity (210). One end of the hollow rotating sleeve (201) passing through the top of the mounting housing (200) is located in the receiving cavity (210). The first driving structure (205) is located at the bottom of the receiving cavity (210) and is configured to cooperate with the hollow rotating sleeve (201) for driving the hollow rotating sleeve (201) to rotate.
3. The oral liquid filling equipment according to claim 2, characterized in that, The first drive structure (205) includes a first drive motor (211), a first main gear (212) and a first transmission gear (213). The first drive motor (211) is located at the bottom of the receiving cavity (210) and is detachably connected to the mounting housing (208). The first main gear (212) is fixedly mounted on the output shaft of the first drive motor (211). The first transmission gear (213) is fixedly mounted on the hollow rotating sleeve (201) and meshes with the first main gear (212).
4. An oral liquid filling device according to claim 2 or 3, characterized in that, One end of the hollow rotating sleeve (201) is provided with a limiting ring (214) for installing the annular connecting plate (202). The annular connecting plate (202) is sleeved on the hollow rotating sleeve (201) and is detachably connected to the limiting ring (214) by bolts.
5. The oral liquid filling equipment according to claim 4, characterized in that, The annular connecting plate (202) is provided with several connecting posts (215), and the bottom of the first star wheel dial (203) is detachably connected to the several connecting posts (215) by bolts.
6. The oral liquid filling equipment according to claim 5, characterized in that, The first star wheel dial (203) includes an upper dial (216), a partition plate (217) and a lower dial (218). The partition plate (217) is disposed between the upper dial (216) and the lower dial (218) and is fixedly connected to the upper dial (216) and the lower dial (218) respectively. The first bottle body slot (206) is disposed on the upper dial (216) and the lower dial (218).
7. The oral liquid filling equipment according to claim 6, characterized in that, The mounting plate (209) is provided with several connecting rods (219), and the filling track (204) is set on the several connecting rods (219). One end of the several connecting rods (219) is fixedly connected to the top of the mounting plate (209), and the other end is fixedly connected to the bottom of the filling track (204).
8. The oral liquid filling equipment according to claim 7, characterized in that, The lifting structure (101) includes a mounting rod (103), a first mounting sleeve (104), a second mounting sleeve (105), and a driving component (106). One end of the mounting rod (103) extends through the hollow rotating sleeve (201) into the receiving cavity (210) and is detachably connected to the bottom of the mounting housing (208). The first mounting sleeve (104) is disposed at the other end of the mounting rod (103) and is detachably connected to the mounting rod (103) by bolts. The second mounting sleeve (105) is sleeved on the outside of the first mounting sleeve (104) and is slidably connected to the first mounting sleeve (104). One end of the driving component (106) is disposed inside the first mounting sleeve (104) and is detachably connected to the first mounting sleeve (104). The other end of the driving component (106) is connected to the second mounting sleeve (105) for driving the second mounting sleeve (105).
9. An oral liquid filling device according to claim 8, characterized in that, The mounting frame (100) includes an upper frame (107) and a lower frame (108), which are fixedly connected by several fixing rods (109). The upper frame (107) is fitted onto the upper end of the second mounting sleeve (105) and is fixedly connected to the second mounting sleeve (105). The lower frame (108) is provided with several mounting blocks (110) for mounting the filling nozzles (102). Installed on the mounting block (110), the top of the filling track (204) is provided with a connecting ring (111), and the connecting ring (111) is provided with a number of sliding rods (112) that cooperate with the mounting block (110). One end of the sliding rod (112) is fixedly connected to the connecting ring (111), one end of the mounting block (110) is fixedly connected to the lower frame (108), and the other end is sleeved on the sliding rod (112) and slidably connected to the sliding rod (112).
10. An oral liquid filling device according to claim 1, characterized in that, It also includes a dial input component (30), a dial output component (40), and a bottle-splitting component (50). The dial input component (30) and the dial output component (40) are respectively configured in conjunction with the dial moving component (20), and the bottle-splitting component (50) is configured in conjunction with the dial input component (30) and the dial output component (40).
Citation Information
Patent Citations
Multi-caliber oral liquid canning equipment
CN220221378U