Conveying mechanism for glass bottle filling

By designing a rotating ring and positioning mechanism, and using a drive motor and electric push rod to control the movement of the fork, the problem of adapting rotary filling machines to glass bottles of different sizes was solved, achieving bottle mouth alignment and stable filling.

CN223852286UActive Publication Date: 2026-01-30江苏新美源机械有限公司
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Patent Information

Application Number
CN202520556564.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-01-30
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

Existing rotary filling machines are difficult to adapt to glass bottles of different sizes and shapes, resulting in misalignment of the bottle mouth and filling head, which affects filling efficiency.

Method used

A transmission mechanism including a rotating ring, a positioning mechanism, and a power supply mechanism was designed. The movement of the fork is controlled by a drive motor and an electric push rod to ensure that the bottle mouth is aligned with the center of the notch, which facilitates filling.

Benefits of technology

It achieves stable positioning of glass bottles of different sizes and shapes, improves filling efficiency and stability, and is compatible with a variety of bottle sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass bottle filling, in particular to a conveying mechanism for glass bottle filling, which comprises a machine body, a rotating ring capable of bearing bottle bodies, a plurality of positioning mechanisms for positioning the bottle bodies and a plurality of power supply mechanisms for supplying power to the positioning mechanisms, and the inner side wall of the rotating ring is fixedly sleeved with the outer side wall of the machine body. According to the utility model, the bottle body is placed at the gap, then the machine body is started to drive the rotating ring to rotate, and the power supply mechanism is used for supplying power to the positioning mechanism, so that the two driving motors on the adjacent positioning mechanism of the bottle body are automatically started to drive the adjacent screw rods to rotate in the rotating process of the rotating ring, and the two screw rods drive the two fork rods to move downwards; the bottle opening is located between the C-shaped structures at one ends of the two fork rods, the two electric push rods are automatically started to drive the two fork rods to oppositely move by the same distance, the bottle opening abuts against the center of the inner arc face at one end of each fork rod, and therefore the bottle opening is aligned to the center of the notch, filling of the bottle body is facilitated, and the bottle filling device can adapt to the bottle bodies of various types and specifications.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass bottle filling technical field, concretely is a kind of transmission mechanism for glass bottle filling. BACKGROUND

[0002] Rotary filling machine can also be called rotary filling machine, generally adopts continuous filling form, that is, packaging container is automatically completed filling action in operation, and rotary filling machine is filled in multiple, and bottle is transported in the transportation process, and filling is carried out on bottle, and the filling head for discharging on filling machine is fixedly arranged, bottle mouth can be inclined and not aligned with filling head when bottle is transported to transmission equipment, therefore, automatic clamp is equipped on transmission equipment to clamp and position bottle body, but glass bottle has big and small, and bottle body can have different shapes, such as cylindrical bottle body, square bottle body and the like, generally, clamp can not be adapted to different types and specifications of bottle body, and it is relatively inconvenient. SUMMARY

[0003] The utility model aims at providing a kind of transmission mechanism for glass bottle filling, to solve the problems raised in the above background.

[0004] To achieve the above object, the utility model provides the following technical scheme:

[0005] A kind of transmission mechanism for glass bottle filling, comprising:

[0006] Machine body, the ring of being able to carry bottle, multiple positioning mechanisms for positioning bottle and multiple power supply mechanisms for powering positioning mechanism, the inner side wall of ring is fixedly sleeved with the outer side wall of machine body, the outer side wall of ring is provided with multiple notches, multiple positioning mechanisms are respectively one-to-one corresponding with multiple notches, the positioning mechanism includes two sliding rails, and two forked rods are arranged between two sliding rails, any forked rod is C-shaped structure at one end, and the other end is fixedly connected with sliding block, two sliding blocks are respectively slidably connected in two sliding rails, two screw rods are rotatably connected at the bottom of two sliding rails, and the top of two screw rods penetrates the top of adjacent sliding rail, two sliding blocks are provided with threaded hole at the bottom, and the inner side wall of two threaded holes is respectively screw-engaged with the outer side wall of adjacent screw rod, two forked rods are staggered, and multiple power supply mechanisms are located outside ring.

[0007] Further, the top of two sliding rails is fixedly connected with drive box, and drive motor is arranged in the inside of two drive boxes, and the motor shaft of two drive motors is fixedly connected with the top of adjacent screw rod.

[0008] Further in: two said slide rails are equipped with connecting frames, and the bottom ends of the two connecting frames are fixedly connected with the top surface of the rotating ring, two said connecting frames are fixedly connected with electric push rods, and the movable ends of the two electric push rods are fixedly connected with the adjacent slide rail on one side.

[0009] Further in: any fork rod is fixedly connected with a vertical plate on one side, any vertical plate is provided with a resisting plate on one side, and a plurality of rebound springs are fixedly connected between any resisting plate on one side and the adjacent vertical plate.

[0010] Further in: any resisting plate is fixedly connected with a plurality of positioning pins on one side, any vertical plate is provided with a plurality of sleeve holes on one side, and the outer side wall of any positioning pin is slidably sleeved with the inner side wall of the adjacent sleeve hole.

[0011] Further in: the power supply mechanism comprises:

[0012] The U-shaped frame, a plurality of power supply rods capable of supplying power for the driving motor and the electric push rod, and a plurality of pressing springs are located outside the rotating ring, the plurality of power supply rods are located on one side of the U-shaped frame, any slide rail top end is fixedly connected with a connecting block, any connecting block is fixedly connected with two copper rods on one side, any connecting frame is fixedly connected with two contact rods on one side, the plurality of pressing springs are in one-to-one correspondence with the plurality of power supply rods, one end of the plurality of pressing springs is fixedly connected with one side of the U-shaped frame, and the other end is fixedly connected with one end of the corresponding power supply rod.

[0013] Further in: any power supply rod outer side wall is slidably sleeved with a sleeve, and one end of any sleeve is fixedly connected with one side of the adjacent U-shaped frame.

[0014] Compared with the prior art, the beneficial effects of the utility model are:

[0015] By placing the bottle body in the notch, then starting the machine body to drive the rotating ring and the bottle body to rotate, using the power supply mechanism to supply power for the positioning mechanism, the two driving motors on the adjacent positioning mechanism are self-started during the rotation of the bottle body with the rotating ring, driving the adjacent screw rod to rotate, so that the two screw rods drive the two fork rods to move downward, the bottle mouth is located between the C-shaped structures at one end of the two fork rods, then the two electric push rods are self-started to drive the two slide rails and the two fork rods to move towards each other by the same distance, and the bottle mouth is abutted to the center of the inner arc surface at one end of the two fork rods, so that the bottle mouth is aligned to the center of the notch, thereby facilitating the bottle body to be filled, and being suitable for various types and specifications of bottle bodies. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the overall structure schematic diagram of the utility model;

[0017] Figure 2 It is the schematic diagram of the position relationship between the positioning mechanism and the rotating ring in the utility model;

[0018] Figure 3 is a schematic diagram of a fork rod structure in the utility model;

[0019] Figure 4 is an exploded view of a power supply mechanism structure in the utility model.

[0020] In the figure: 100, machine body; 200, rotating ring; 201, notch; 300, positioning mechanism; 310, sliding rail; 311, screw rod; 312, drive box; 313, connecting block; 320, fork rod; 321, vertical plate; 330, abutting plate; 331, rebound spring; 332, positioning pin; 340, connecting frame; 341, electric push rod; 342, contact rod; 400, power supply mechanism; 410, U-shaped frame; 420, power supply rod; 430, abutting spring; 440, sleeve. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0022] Please refer to Figures 1-4 In the embodiments of the utility model, a transmission mechanism for glass bottle filling includes:

[0023] The machine body 100, the rotating ring 200 capable of carrying the bottle body, the plurality of positioning mechanisms 300 for positioning the bottle body, and the plurality of power supply mechanisms 400 for supplying power to the positioning mechanisms 300, the inner side wall of the rotating ring 200 is fixedly sleeved with the outer side wall of the machine body 100, the outer side wall of the rotating ring 200 is provided with a plurality of notches 201, the plurality of positioning mechanisms 300 are one-to-one corresponding to the plurality of notches 201, the positioning mechanism 300 includes two sliding rails 310, two fork rods 320 are arranged between the two sliding rails 310, one end of any fork rod 320 is a C-shaped structure, the other end is fixedly connected with a sliding block, the two sliding blocks are respectively slidably connected in the two sliding rails 310, the screw rod 311 is rotatably connected to the bottom end inside the two sliding rails 310, the top end of the two screw rods 311 penetrates the top end of the adjacent sliding rail 310, the bottom end of the two sliding blocks is provided with a threaded hole, and the inner side wall of the two threaded holes is respectively screwed with the outer side wall of the adjacent screw rod 311, the two fork rods 320 are staggered, and the plurality of power supply mechanisms 400 are located outside the rotating ring 200.

[0024] Specifically, the machine body 100 is a rotary filling machine. By installing the rotating ring 200 onto the machine body 100, the machine body 100 can drive the rotating ring 200 to rotate. The notch 201 on the rotating ring 200 is used to place the bottle. During use, the bottle is placed into the notch 201 by means of other conveying equipment or manually. In the initial state, the C-shaped structure at one end of the two forks 320 on any positioning mechanism 300 forms a ring. After the bottle is placed into the notch 201, the bottle is located below the two adjacent forks 320, and then the rotating ring 200 rotates. The bottle body is moved, and by rotating the two screws 311, the two forks 320 are moved downward, causing the C-shaped structure of the two forks 320 to move to the bottle mouth. Then, by moving the two slide rails 310, the two forks 320 are moved towards each other by the same distance, so that the C-shaped structure at one end of the two intersecting forks 320 squeezes the bottle mouth to the center of the inner arc surface at one end of the two forks 320, which facilitates the positioning of the bottle mouth and moves the bottle mouth to the center of the notch 201, which facilitates the filling of the bottle and can be adapted to various types and specifications of bottles.

[0025] Example 1

[0026] like Figures 1-2 As shown, in this embodiment, a drive box 312 is fixedly connected to the top of each of the two slide rails 310, and a drive motor is provided inside each of the two drive boxes 312. The motor shafts of the two drive motors are fixedly connected to the top of the adjacent screw 311.

[0027] Both slide rails 310 are equipped with connecting brackets 340, and the bottom ends of both connecting brackets 340 are fixedly connected to the top surface of the rotating ring 200. Both connecting brackets 340 are fixedly connected with electric push rods 341, and the movable ends of both electric push rods 341 are fixedly connected to one side of the adjacent slide rail 310.

[0028] In this embodiment, starting the drive motor can drive the adjacent screw 311 to rotate, thereby controlling the position of the adjacent fork 320 on the adjacent slide rail 310. Starting the electric push rod 341 can drive the adjacent slide rail 310 to move, thereby driving the adjacent fork 320 to move.

[0029] like Figures 2-3 As shown, in this embodiment, a vertical plate 321 is fixedly connected to one side of any fork 320, a stop plate 330 is provided on one side of any vertical plate 321, a plurality of spring springs 331 are fixedly connected between one side of any stop plate 330 and the adjacent vertical plate 321, a plurality of positioning pins 332 are fixedly connected to one side of any stop plate 330, a plurality of sleeve holes are opened on one side of any vertical plate 321, and the outer side wall of any positioning pin 332 is slidably sleeved with the inner side wall of the adjacent sleeve hole.

[0030] In the embodiment, the two fork rods 320 are staggered on the same positioning mechanism 300, and the abutting plate 330 on one fork rod 320 is located on the same horizontal plane as the abutting plate 330 on the adjacent fork rod 320. When the one fork rod 320 moves to the bottle mouth and pushes the bottle, the bottle is simultaneously abutted by the abutting plate 330 on the other fork rod 320, so that the bottle is clamped, thereby improving the stability of the bottle during filling. Any abutting plate 330 keeps parallel to the adjacent vertical plate 321 by the adjacent positioning pin 332, so as to avoid the abutting plate 330 from being skewed.

[0031] Embodiment two

[0032] On the basis of the first embodiment, a plurality of power supply mechanisms 400 are arranged outside the rotating ring 200 to supply power to the plurality of positioning mechanisms 300, so as to ensure the normal operation of the positioning mechanism 300.

[0033] As shown in Figure 1 and Figure 4 In the embodiment, the power supply mechanism 400 comprises:

[0034] A plurality of power supply rods 420 capable of supplying power to the driving motor and the electric push rod 341, and a plurality of abutting springs 430. The U-shaped frame 410 is located outside the rotating ring 200, the plurality of power supply rods 420 are located on one side of the U-shaped frame 410, any sliding rail 310 has a connecting block 313 fixedly connected at the top end, any connecting block 313 has two copper rods fixedly connected on one side, any connecting frame 340 has two contact rods 342 fixedly connected on one side, the plurality of abutting springs 430 correspond to the plurality of power supply rods 420, the plurality of abutting springs 430 have one end fixedly connected to one side of the U-shaped frame 410 and the other end fixedly connected to one end of the corresponding power supply rod 420, any power supply rod 420 has a sleeve 440 slidably sleeved on the outer side wall, and any sleeve 440 has one end fixedly connected to one side of the adjacent U-shaped frame 410.

[0035] In specific implementation, the power supply rod 420, the contact rod 342 and the copper rod are all made of copper, the U-shaped frame 410 on the power supply mechanism 400 can be connected with other external supports or the ground, the copper rod is connected with the adjacent driving motor circuit, the contact rod 342 is connected with the adjacent electric push rod 341 circuit, the power supply rod 420 can be connected with external circuits, when the rotary ring 200 is driven to rotate by the body 100, the positioning mechanism 300 moves to the adjacent power supply mechanism 400, the contact rod 342 on the connecting frame 340 abuts against the adjacent power supply rod 420, the power supply rod 420 on any U-shaped frame 410 has the same position as the contact rod 342, the power supply rod 420 can transmit external current to the electric push rod 341 through the contact rod 342, so as to control the opening and closing of the electric push rod 341, when the copper rod on the connecting block 313 contacts the adjacent power supply rod 420, the power supply rod 420 can transmit external current to the driving motor through the copper rod, so as to control the opening and closing of the driving motor, the power supply rod 420 in contact with the copper rod can be pre-installed as required, so that the power supply rod 420 on the power supply mechanism 400 contacts the contact rod 342 or the copper rod to supply power, reducing the complexity of circuit layout, the sleeve 440 can limit the power supply rod 420, avoiding the power supply rod 420 from being skewed when the contact rod 342 or the copper rod contacts the power supply rod 420.

[0036] It is apparent for those skilled in the art that the present application is not limited to the details of the foregoing exemplary embodiments, and the present application can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the foregoing description, and it is intended to embrace all changes falling within the meaning and range of equivalents of the elements of the claims. Any reference signs in the claims should not be deemed to limit the claims involved.

[0037] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be combined appropriately to form other embodiments that those skilled in the art can understand.

Claims

1. A transfer mechanism for glass bottle filling, characterized by, Include: Machine body (100); Swivel ring (200), the inner side wall is fixed with the outer side wall of the machine body (100), the outer side wall of the swivel ring (200) is provided with a plurality of notches (201); A plurality of positioning mechanisms (300) correspond to a plurality of said notches (201) one by one, the positioning mechanism (300) includes two slide rails (310), and two slide rails (310) are provided with two fork rods (320) between, either fork rod (320) is C-shaped structure at one end, and the other end is fixedly connected with a sliding block, two said sliding blocks are respectively slidably connected in two slide rails (310), two said slide rails (310) are rotatably connected with screw rods (311) at the bottom, and the top of two screw rods (311) penetrates the top of the adjacent slide rail (310), two said sliding blocks are provided with threaded holes at the bottom, and the inner side wall of two threaded holes is respectively screwed with the outer side wall of the adjacent screw rod (311), two said fork rods (320) are staggered arrangement; A plurality of power supply mechanisms (400) are located outside the swivel ring (200).

2. The transfer mechanism for glass bottle filling according to claim 1, wherein, Either side of any fork rod (320) is fixedly connected with a vertical plate (321), either side of any vertical plate (321) is provided with a resisting plate (330), and either side of any resisting plate (330) and the adjacent vertical plate (321) are fixedly connected with a plurality of rebound springs (331).

3. The transfer mechanism for glass bottle filling according to claim 2, wherein, Either side of any resisting plate (330) is fixedly connected with a plurality of positioning pins (332), either side of any vertical plate (321) is provided with a plurality of sleeve holes, and the outer side wall of any positioning pin (332) is slidably connected with the inner side wall of the adjacent sleeve hole.

4. The transfer mechanism for glass bottle filling according to claim 1, wherein, Two said slide rails (310) are fixedly connected with drive boxes (312) at the top, and drive motors are arranged in two drive boxes (312), and the motor shaft of two said drive motors is fixedly connected with the top of the adjacent screw rod (311).

5. The transfer mechanism for glass bottle filling according to claim 4, wherein, Two said slide rails (310) are provided with a connecting frame (340) in a matched mode, and the bottom of two connecting frames (340) is fixedly connected with the top surface of the swivel ring (200), two said connecting frames (340) are fixedly connected with electric push rods (341), and the movable end of two electric push rods (341) is fixedly connected with the side of the adjacent slide rail (310).

6. The transfer mechanism for glass bottle filling as claimed in claim 5, wherein, The power supply mechanism (400) includes: U-shaped frame (410) located outside the swivel ring (200); A plurality of power supply rods (420) are located on one side of the U-shaped frame (410), either side of any slide rail (310) is fixedly connected with a connecting block (313), either side of any connecting block (313) is fixedly connected with two copper rods, either side of any connecting frame (340) is fixedly connected with two contact rods (342); A plurality of pressing springs (430) correspond to a plurality of said power supply rods (420) one by one, one end of a plurality of said pressing springs (430) is fixedly connected with one side of the U-shaped frame (410), and the other end is fixedly connected with one end of the corresponding power supply rod (420).

7. The transfer mechanism for glass bottle filling as claimed in claim 6, wherein, The outer side wall of any power supply rod (420) is slidably connected with a sleeve (440), and one end of any sleeve (440) is fixedly connected with one side of the adjacent U-shaped frame (410).