Bottle overturning and clamping device

By designing a bottle flipping and clamping device, the problem of low bottle transfer efficiency during the liquid cosmetics filling process is solved, and efficient flipping and transfer of multiple bottles is achieved, which improves production efficiency and reduces labor costs.

CN223457676UActive Publication Date: 2025-10-21CHENGDU YIMEIKE TECH CO LTD
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Patent Information

Application Number
CN202423112149.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-10-21
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

In the existing technology, during the filling process of liquid cosmetics such as essence, the efficiency of transferring bottles by one person is low, resulting in low production efficiency. In addition, multiple single-bottle filling machines require multiple people to operate, increasing labor costs.

Method used

A bottle flipping and clamping device is designed, including a workbench, a flipping assembly and a clamping assembly. It can clamp, flip and transfer multiple bottles at the same time, and use a lifting block and a transmission mechanism to achieve 180-degree flipping and positioning of the bottles, thereby improving production efficiency.

Benefits of technology

Through the cooperation of the clamping component and the flipping component, efficient flipping and transfer of multiple bottles can be achieved, which reduces manual operations, improves production efficiency and reduces labor costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

A bottle overturning and clamping device comprises a workbench, an overturning assembly and a clamping assembly. A material frame which is movably arranged in the vertical direction is arranged at one end of the workbench, and a plurality of bearing plates used for bearing bottle bodies are arranged in the material frame in the vertical direction; the overturning assembly is arranged at the other end of the workbench and comprises two lifting blocks which are arranged on the two sides of the workbench in the length direction and move in the vertical direction, and rotating frames rotating around the axes of the lifting blocks are arranged on the inner sides of the lifting blocks. The clamping assembly comprises two clamping modules which are arranged around the central axis of the rotating frames in a circumferential array mode and arranged between the two rotating frames, each clamping module comprises a connecting frame, the two ends of each connecting frame are installed on the corresponding rotating frame, side frames which are movably arranged in the length direction of the connecting frame are arranged on the two sides of each connecting frame, and two clamping plates which are symmetrically arranged and move in the opposite directions are arranged between the side frames. The clamp is used for clamping bottle bodies. And a plurality of bottle bodies can be clamped, overturned and transferred at the same time, the production efficiency is improved, and high practicability is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to skin care product production technical field, especially with a bottle body overturns clamping device related. BACKGROUND

[0002] For essence liquid etc. The cosmetic in liquid state, in order to facilitate carrying and using it, usually store it in bottle body, so after essence liquid etc. The cosmetic processing is finished, it needs to be filled into bottle body. In actual production process, in order to reduce the possibility of foreign matter into bottle body, usually the bottle body is placed upside down on the bearing plate, but this also brings inconvenience for subsequent production, such as when filling, the bottle body needs to be overturned and then placed on the conveying belt, and the bottle body is conveyed in batches to the lower part of the filling machine for batch filling operation. Due to the inconvenience of operation, the bottle body is usually transferred manually, but the efficiency of single person transferring the bottle body is limited, resulting in a long pause after single filling is completed, which is not conducive to improving production efficiency. At present, single bottle filling machine is also used for filling, which requires multiple single bottle filling machines to work simultaneously, and each filling machine needs a worker to operate. Although it can ensure production efficiency, labor cost will increase substantially. SUMMARY

[0003] In view of the deficiencies of the above-mentioned related prior art, the present application provides a bottle body overturning clamping device that can clamp, overturn and transfer multiple bottle bodies simultaneously, improve production efficiency and has strong practicality.

[0004] To achieve the above purpose, the utility model adopts the following technology:

[0005] A bottle body overturning clamping device, comprising: a workbench, a overturning assembly, and a clamping assembly.

[0006] One end of the workbench is provided with a material rack moving in the vertical direction, and multiple bearing plates for bearing the bottle body are arranged in the vertical direction in the material rack. The overturning assembly is arranged at the other end of the workbench and comprises two lifting blocks arranged on both sides of the length direction of the workbench and moving in the vertical direction. The inner side of the lifting block is provided with a rotating frame rotating around the central axis thereof. The clamping assembly comprises two clamping modules arranged in a circular array around the central axis of the rotating frame and arranged between the two rotating frames. The clamping module comprises a connecting frame mounted on the rotating frame at both ends, and a side frame moving in the length direction is arranged on both sides of the connecting frame. Two symmetrical clamping plates moving towards each other are arranged between the side frames for clamping the bottle body.

[0007] Further, the lifting block is connected to the moving end of the first vertical lifting mechanism, the first vertical lifting mechanism is installed on the workbench, a first rotating shaft is rotatably installed in the lifting block, one end of the first rotating shaft is connected to the rotating frame, a first driven gear is installed on the first rotating shaft, in use, the first driven gear is engaged with a first driving gear, the first driving gear is installed on a first transmission shaft, the first transmission shaft is rotatably installed on the supporting plate, and one end of the first transmission shaft is connected to the output end of a first power device, the first power device is installed on the supporting plate, and the supporting plate is installed on the workbench.

[0008] Further, the other end of the first rotating shaft is provided with a connecting rod, in use, a positioning rod is arranged in the connecting rod, the positioning rod is installed on a support, the support is connected to the moving end of the horizontal linear mechanism, and the horizontal linear mechanism is installed on the lifting block.

[0009] Further, the outer side of the side frame is provided with a protrusion, the protrusion is sleeved on the guide rod, the guide rod is installed on the inner side of the connecting frame, a spring is sleeved on the guide rod, and the two ends of the spring are respectively abutted to the protrusion and the end of the connecting frame close to the rotation axis of the connecting frame.

[0010] Further, a second rotating shaft is rotatably installed in the side frame, the second rotating shaft is provided with two segments of threads with opposite rotation directions, the two ends of the clamping plate are respectively sleeved on the segments of threads of the second rotating shaft, a plurality of clamping grooves are arranged on the clamping plate along the length direction of the clamping plate, the clamping grooves are arc-shaped, and the clamping grooves are used for clamping the bottle body.

[0011] Further, one end of the second rotating shaft penetrates out of the side frame and penetrates through the connecting frame, a second driven gear is slidably sleeved on the second rotating shaft, and the second rotating shaft and the second driven gear are in key groove cooperation, the second driven gear is rotatably installed on the connecting frame, one of the second driven gears is engaged with a second driving gear, the second driving gear is installed on a second transmission shaft, the second transmission shaft is rotatably installed on the connecting frame and is connected to the output end of a second power device, the second power device is installed on the connecting frame, and the end faces of the second driving gear and the other second driven gear are respectively provided with connecting rings, and the two connecting rings are driven by a belt.

[0012] Further, one end of the workbench is provided with a supporting frame, a telescopic rod is arranged on the supporting frame along the length direction of the workbench, a push rod is arranged on the moving end of the telescopic rod, the push rod is in an inverted U shape, and the push rod is used for pushing the protrusion.

[0013] Further, the material rack is placed on the lifting plate, the lifting plate is connected to the moving end of the second vertical lifting mechanism, and the second vertical lifting mechanism is installed on the workbench.

[0014] The utility model beneficial effect lies in: through clamping assembly can carry out clamping to multiple bottle body simultaneously, and under the cooperation of turnover assembly, make bottle body overturn 180 degrees, thereby convenient for the bottle mouth of bottle body is placed on the conveyer belt upwards, thereby improve production efficiency, after the rotation frame is overturned, positioning is carried out through positioning rod, prevent its deflection under the action of gravity, guarantee the smooth operation of bottle body transfer operation. BRIEF DESCRIPTION OF DRAWINGS

[0015] The drawings described herein are only for illustrating selected embodiments, rather than all possible implementations, and are not intended to limit the scope of the utility model.

[0016] Figure 1 It is whole structural schematic diagram of the embodiment of the application.

[0017] Figure 2 It is three-dimensional schematic view of the turnover assembly of the embodiment of the application.

[0018] Figure 3 It is three-dimensional schematic view of the clamping assembly of the embodiment of the application is installed on the rotation frame.

[0019] Figure 4 It is three-dimensional schematic view of the clamping module of the embodiment of the application. DETAILED DESCRIPTION

[0020] To make the purpose, technical scheme and advantage of the utility model embodiment more clear, the embodiment of the utility model is explained in detail below with the drawings, but the embodiment described by the utility model is a part of the embodiment of the utility model, rather than all the embodiment.

[0021] As Figures 1-4 Shown, the present example provides a kind of bottle body turnover clamping device, including: workbench 100, turnover assembly 200, clamping assembly 300.

[0022] Workbench 100 one end is equipped with material rack 101 being arranged along vertical direction movement, material rack 101 is equipped with multiple load-bearing plate 102 for carrying bottle body along vertical direction, and bottle body is placed upside down in load-bearing plate 102;Turnover assembly 200 is equipped in workbench 100 other end, including two respectively being arranged along vertical direction movement in the length direction of workbench 100 both sides and lifting block 201, lifting block 201 inside is equipped with rotation frame 202 rotating around its central axis;Clamping assembly 300 includes two circumferential array arrangement around the central axis of rotation frame 202, and is equipped between two rotation frames 202 clamping module, clamping module includes two ends respectively mounted on the connecting frame 301 of rotation frame 202, connecting frame 301 both sides are equipped with side frame 302 being arranged along its length direction movement, side frame 302 between is equipped with two symmetrically arranged and mutually moving clamping plate 303, for clamping bottle body.

[0023] Specifically, the lifting block 201 is connected to the moving end of the first vertical lifting mechanism installed on the workbench 100, a first rotating shaft 203 is rotatably installed in the lifting block 201, one end of the first rotating shaft 203 is connected to the rotating frame 202, a first driven gear 204 is installed on the first rotating shaft 203, in use, the first driven gear 204 is engaged with a first driving gear 205, the first driving gear 205 is installed on a first transmission shaft 206, the first transmission shaft 206 is rotatably installed on a support plate 207, and one end of the first transmission shaft 206 is connected to the output end of a first power device installed on the support plate 207, the support plate 207 is installed on the workbench 100, after the bottle body is clamped by the clamping assembly 300, the lifting block 201 is driven upward by the first vertical lifting mechanism, at this time, the rotating frame 202 also moves upward synchronously, until the first driven gear 204 is engaged with the first driving gear 205, then the first transmission shaft 206 is driven to rotate by the first power device, driving the first driving gear 205 to rotate, so that the rotating frame 202 starts to rotate, until the rotating frame 202 rotates 180 degrees, then the lifting block 201 is driven downward by the first vertical lifting mechanism, at this time, the bottle mouth of the bottle body faces upward, that is, the bottle body can be placed on the conveying belt, and at this time, the other clamping module also clamps the bottle body on the carrier plate 101, thereby improving the transfer efficiency of the bottle body.

[0024] Specifically, the other end of the first rotating shaft 203 is provided with a connecting rod 208, when the rotating frame 202 does not need to be rotated, a positioning rod 209 is provided in the connecting rod 208, the positioning rod 209 is installed on a support 210, the support 210 is connected to the moving end of the horizontal linear mechanism installed on the lifting block 201, in use, the support 210 is driven to move by the horizontal linear mechanism, so that the positioning rod 209 can be inserted into or moved out of the connecting rod 208.

[0025] Specifically, the side frame 302 is provided with a protrusion 304 outside, the protrusion 304 is sleeved on a guide rod 305, the guide rod 305 is installed inside the connecting frame 301, a spring 306 is sleeved on the guide rod 305, and the two ends of the spring 306 abut against the protrusion 304 and the end of the connecting frame 301 close to the rotation axis of the self, under the action of the spring 306, the side frame 302 always has a tendency to move away from the rotation axis of the rotating frame 202, so that the side frame 302 is located at the outermost end of the connecting frame 301 without external force, so as to facilitate the placement of the bottle body on the conveying belt, and when it is necessary to clamp the bottle body on the carrier plate 102, only an external force towards the rotation axis of the rotating frame 202 needs to be applied to the side frame 302, so as to realize the movement of the side frame 302, so as to facilitate the clamping of the bottle body at different positions on the carrier plate 102.

[0026] Specifically, the second rotating shaft 307 is rotatably installed in the side frame 302, and two sections of threads with opposite rotation directions are arranged on the second rotating shaft 307. The two ends of the clamping plate 303 are respectively sleeved on the threads of the second rotating shaft 307. The clamping plate 303 is provided with a plurality of clamping grooves 308 along the length direction of the clamping plate 303. The clamping grooves 308 are arc-shaped and used for clamping the bottle body. A layer of rubber can be arranged on the inner side of the clamping grooves 308 to increase the friction and avoid hard contact to scratch the bottle body. When the bottle body on the bearing plate 102 needs to be clamped, the second rotating shaft 307 is driven to rotate, so that the two clamping plates 303 move towards each other, thereby clamping the bottle body.

[0027] Specifically, since the side frame 302 moves, in order to ensure transmission, one end of the second rotating shaft 307 penetrates through the side frame 302 and passes through the connecting frame 301. The second rotating shaft 307 is sleeved with a second driven gear 309 which is rotatably installed on the connecting frame 301. One of the second driven gears 309 is engaged with a second driving gear 310 which is installed on a second transmission shaft 311. The second transmission shaft 311 is rotatably installed on the connecting frame 301 and connected to the output end of a second power device which is installed on the connecting frame 301. The end faces of the second driving gear 310 and the other second driven gear 309 are respectively provided with a connecting ring 312. The two connecting rings 312 are driven by a belt. The second transmission shaft 311 is driven to rotate by the second power device, thereby driving the second driving gear 310 to rotate, and driving the one second driven gear 309 to rotate. Under the transmission of the belt, the other second driven gear 309 starts to rotate. At this time, the second rotating shaft 307 can be rotated. The key groove cooperation between the second rotating shaft 307 and the second driven gear 309 enables the relative sliding between the second rotating shaft 307 and the second driven gear 309, while ensuring the transmission effect.

[0028] Specifically, the workbench 100 is provided with a supporting frame 103 at one end. The supporting frame 103 is provided with a telescopic rod 104 arranged along the length direction of the workbench 100. The moving end of the telescopic rod 104 is provided with a push rod 105 which is inverted U-shaped and used for pushing the protruding block 304. When the bottle body at different positions on the bearing plate 102 needs to be clamped, the rotating frame 202 is in the process of moving downward. The push rod 105 is driven to move by the telescopic rod 104, and the push rod 105 abuts against the protruding block 304. With the continuous movement of the push rod 105, the side frame 302 is forced to move, thereby adjusting the position of the clamping plate 303. After the clamping of the bottle body is completed, the rotating frame 202 moves upward. After the bottle body is completely moved out of the bearing plate 102, the push rod 105 also moves back.

[0029] Specifically, the material rack 101 is placed on the lifting plate 106, the lifting plate 106 is connected to the moving end of the second vertical lifting mechanism, the second vertical lifting mechanism is installed on the workbench 100, the up and down movement of the lifting plate 106 is driven through the second vertical lifting mechanism, so that the material rack 101 moves up and down, after the bottle bodies on the uppermost bearing plate 102 are all transferred, the bearing plate 102 can be removed, then the lifting plate 106 moves up through the second vertical lifting mechanism, so that the material rack 101 moves up, so as to facilitate the subsequent bottle body transfer operation.

[0030] Since the above is only the preferred embodiment of the present application, and is not used to limit the present application, it is obvious that those skilled in the art can make various modifications and changes to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and changes of the present application belong to the scope of the claims of the present application and the equivalent technology, the present application also intends to include these modifications and changes.

Claims

1. A bottle body inverting and clamping device characterized by comprising: include: A workbench (100) is provided at one end with a material rack (101) movable in a vertical direction, and a plurality of supporting plates (102) for supporting bottles are provided in the material rack (101) in the vertical direction; A turning assembly (200) is provided at the other end of the workbench (100), comprising two lifting blocks (201) respectively provided on both sides of the length direction of the workbench (100) and movable in the vertical direction, wherein a rotating frame (202) is provided inside the lifting blocks (201) and is rotatable around its own central axis; The clamping assembly (300) comprises two clamping modules arranged in a circular array around the central axis of the rotating frame (202) and provided between the two rotating frames (202), the clamping module comprising a connecting frame (301) with both ends respectively mounted on the rotating frame (202), side frames (302) movable along the length direction of the connecting frame (301) are provided on both sides, and two symmetrically arranged and mutually movable clamping plates (303) are provided between the side frames (302) for clamping the bottle body.

2. The bottle body inverting and gripping device according to claim 1, characterized by The lifting block (201) is connected to the movable end of the first vertical lifting mechanism, the first vertical lifting mechanism is installed on the workbench (100), a first rotating shaft (203) is rotatably installed in the lifting block (201), one end of the first rotating shaft (203) is connected to the rotating frame (202), a first driven gear (204) is installed on the first rotating shaft (203), when in use, the first driven gear (204) is engaged with the first driving gear (205), the first driving gear (205) is installed on the first transmission shaft (206), the first transmission shaft (206) is rotatably installed on the support plate (207), and one end is connected to the output end of the first power device, the first power device is installed on the support plate (207), and the support plate (207) is installed on the workbench (100).

3. The bottle inverting and clamping device of claim 2, wherein A connecting rod (208) is provided at the other end of the first rotating shaft (203). When in use, a positioning rod (209) is passed through the connecting rod (208). The positioning rod (209) is installed on a bracket (210). The bracket (210) is connected to the moving end of the horizontal linear mechanism. The horizontal linear mechanism is installed on the lifting block (201).

4. The bottle inverting and gripping device of claim 1, wherein, A protrusion (304) is provided on the outside of the side frame (302), and the protrusion (304) is sleeved on a guide rod (305). The guide rod (305) is installed on the inside of the connecting frame (301). A spring (306) is sleeved on the guide rod (305), and two ends of the spring (306) respectively abut against the protrusion (304) and an end of the connecting frame (301) close to its own rotation axis.

5. The bottle inverting and gripping device of claim 1, wherein, The second rotating shaft (307) is rotatably installed in the side frame (302), and two threads with opposite rotation directions are arranged on the second rotating shaft (307). The clamping plates (303) are sleeved on the threads of the second rotating shaft (307) at two ends, respectively. A plurality of clamping grooves (308) are arranged on the clamping plates (303) along the length direction, and the clamping grooves (308) are in arc shape and used for clamping the bottle body.

6. The bottle inverting and gripping device of claim 5, wherein, One end of the second rotating shaft (307) penetrates through the side frame (302) and the connecting frame (301). The second rotating shaft (307) is sleeved with a second driven gear (309) which is in sliding mode, and the second rotating shaft (307) is in key groove mode with the second driven gear (309). The second driven gear (309) is rotatably installed on the connecting frame (301), and one of the second driven gears (309) is in meshing mode with a second driving gear (310). The second driving gear (310) is installed on a second transmission shaft (311), the second transmission shaft (311) is rotatably installed on the connecting frame (301) and is connected to the output end of a second power device. The second power device is installed on the connecting frame (301). The second driving gear (310) and the other second driven gear (309) are both provided with a connecting ring (312), and the two connecting rings (312) are in belt transmission mode.

7. The bottle inverting and gripping device of claim 4, wherein, One end of the workbench (100) is provided with a supporting frame (103), and the supporting frame (103) is provided with a telescopic rod (104) arranged along the length direction of the workbench (100). The moving end of the telescopic rod (104) is provided with a push rod (105), and the push rod (105) is in inverted U shape and used for pushing the convex block (304).

8. The bottle inverting and gripping device of claim 1, wherein, The material rack (101) is placed on a lifting plate (106), and the lifting plate (106) is connected to the moving end of a second vertical lifting mechanism. The second vertical lifting mechanism is installed on the workbench (100).