Bottle mold spacing adjusting device
By using a combination of a first push plate, a connecting rod, and a drive cylinder in the bottle mold spacing adjustment device, the automated and precise adjustment of the bottle mold spacing is achieved, solving the problem of difficulty in controlling the bottle mold spacing in traditional methods and improving production efficiency and weighing accuracy.
Patent Information
- Application Number
- CN202520329575.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2035-02-27
AI Technical Summary
In the production of bottled products, traditional methods are difficult to automate the control of the gap between the bottle molds, which affects the weighing results, and manual adjustment is difficult to control precisely.
Design a bottle mold spacing adjustment device. By setting a first push plate and a connecting rod at intervals on the receiving platform, the bottle mold spacing can be controlled and adjusted by a driving component. Combined with a slide rail and slider structure, a driving cylinder drives a second push plate to move the first push plate. The connecting rod drives the slider and the bottle mold to move synchronously, thereby realizing the automatic adjustment of the bottle mold spacing.
It achieves automated and precise control of the bottle mold spacing, ensuring that the bottle mold does not shift during the transfer process, reducing friction, and improving production efficiency and weighing accuracy.
Smart Images

Figure CN223619635U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automated filling equipment technology, specifically to a bottle mold spacing adjustment device. Background Technology
[0002] In recent years, more and more high-end daily chemical products have adopted colorful bottle packaging, which greatly enhances the packaging grade of the products and makes them more popular.
[0003] During the production of bottled products, a series of operations are required, including cleaning, filling, weighing, and capping. After the bottles are cleaned, they need to be transferred to the weighing station. During bottle cleaning, the bottle molds holding the bottles are in contact with each other and adjacent to each other. However, when entering the weighing station, in order to avoid the adjacent bottle molds from contacting each other and affecting the weighing results, the adjacent bottle molds need to be separated by a certain distance before being transferred to the weighing station.
[0004] Separating multiple adjacent bottle molds can be done manually by moving each mold in one direction, but this method makes it difficult to control the spacing between the molds. Alternatively, an automatic drive device can be placed on one side of each mold to move each mold a certain distance to either side, but in this case, the distance moved by each mold is different, making it difficult to achieve automated control of the system.
[0005] Therefore, designing a spacing adjustment device that can separate the bottle molds and ensure that the spacing between the bottle molds is controllable is a technical problem that urgently needs to be solved in the field of automated filling equipment. Utility Model Content
[0006] Purpose of the utility model: In view of the problems existing in the prior art, the present utility model provides a bottle mold spacing adjustment device, which achieves overall spacing adjustment by setting first push plates at intervals on the receiving platform and using connecting rods and driving components set between the first push plates, which is convenient for control.
[0007] Technical solution: This utility model provides a bottle mold spacing adjustment device, including a receiving platform with multiple bottle molds arranged side by side, a plurality of pairs of first push plates are spaced apart on the receiving platform and the lower surface of the first push plates slides in contact with the surface of the receiving platform, and the bottle mold is disposed between a pair of first push plates.
[0008] A second push plate is also provided on the inner side of the first push plate at one end of the receiving platform. The second push plate is provided on the driving component. Several pairs of first push plates are respectively provided on the corresponding sliding components. A connecting rod is provided through the two first push plates provided between adjacent bottle molds. A first base is fixed on one side of the connecting rod, and a second base is slidably sleeved on the other side with a certain sliding distance. The first base and the second base are respectively fixed on the corresponding sliding components.
[0009] Furthermore, the sliding member includes a slide rail disposed on the worktable surface, and a number of sliders equal in number to the number of first push plates are slidably disposed on the slide rail. The first push plates are disposed on both sides of the sliders, and their extensions are connected to the surface of the receiving table.
[0010] Furthermore, the driving component includes a driving cylinder fixed to the worktable surface, and a second push plate is fixed to the actuating end of the driving cylinder. The second push plate is located inside the first push plate at the end of the receiving platform and slides in contact with the surface of the first slider.
[0011] Furthermore, the first base is fixed on the side of the connecting rod near the second push plate, and the second base is slidably sleeved on the other side away from the second push plate.
[0012] Furthermore, a limit block is vertically installed on the side of the slider near the receiving platform.
[0013] Furthermore, ball bearings are also embedded on the inner side of the first push plate.
[0014] Furthermore, the spacing between the paired first push plates matches the width of the lower end of the bottle mold, and there is no gap between adjacent bottle molds when the bottle mold is located between the first push plates.
[0015] Beneficial effects
[0016] 1. In the process of adjusting the overall spacing, this utility model uses a pair of first push plates to separate the bottle molds. The second push plate on the receiving platform pushes the first push plate to move in one direction. During the movement, due to the action of the designed connecting rod and the first and second bases on both sides of the connecting rod, the first base moves with the sliding part where the first push plate is located, thereby driving the connecting rod to move to one side. Since the second base and the connecting rod are slidably fitted and have a certain sliding distance, after the first slider of the first pair of first push plates slides to one side a certain distance, the connecting rod pulls the second slider to slide to one side as well. At this time, a certain distance has been opened between the first bottle mold and the second bottle mold. Similarly, the distance is opened between the second and the third, the third and the fourth, and so on, until all bottle molds are opened to a certain distance, thus completing the spacing adjustment.
[0017] 2. The sliding component designed in this utility model is realized by a slide rail. It only requires a long slide rail to be set on the worktable. The slide rail is equipped with the same number of sliders as the pair of first push plates as needed. The pair of first push plates are set at both ends of the slider. The slider can drive the pair of first push plates to slide when it slides, thereby realizing the movement of the bottle mold between the pair of first push plates.
[0018] 3. This utility model achieves overall drive through a drive cylinder. In specific implementation, it is only necessary to control the drive cylinder to extend, and the second push plate can drive the first push plate to move to one side.
[0019] 4. Taking the left and right receiving platform as an example, this utility model assumes that the bottle molds from left to right are 1 to 7 respectively. The connecting rod is set between the first and second bottle molds, the second and third bottle molds, the third and fourth bottle molds, etc., between two first push plates. These two first push plates are located on different sliders. The left side of the connecting rod is fixed with a first base, and the right side of the connecting rod is slidably fitted with a second base. In this way, when the driving cylinder drives the first first push plate to move to the left, the second base slides a certain distance on the connecting rod to complete the adjustment of the distance between the bottle molds.
[0020] 5. In order to prevent the bottle mold from shifting during the adjustment of the bottle mold spacing, a limit block is set on one side of the slider. The block plays a limiting role.
[0021] 6. The present invention provides ball bearings on the inner side of the first push plate. When the bottle mold is transferred from other places to the receiving platform, the ball bearings between the bottle mold and the first push plate can play a guiding role and reduce friction.
[0022] 7. In the process of adjusting the bottle mold spacing using the first push plate, this utility model sets the spacing between the first push plates according to the structural adaptability of the bottle mold, so that it matches the width of the lower end of the bottle mold, and there is no gap between adjacent bottle molds when the bottle mold is located between the first push plates. When the bottle mold is transferred between the first push plates, it can be guaranteed to be transferred in. The bottle mold can be correspondingly pushed to move during the movement of the first push plate. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0024] Figure 2 for Figure 1 Enlarged diagram of point A.
[0025] Among them, 1-receiving platform, 2-first push plate, 3-second push plate, 4-connecting rod, 5-first base, 6-second base, 7-slide rail, 8-slider, 9-drive cylinder, 10-limiting block, 11-ball bearing, 12-bottle mold. Detailed Implementation
[0026] The present invention will be further described below with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present invention, and should not be used to limit the scope of protection of the present invention.
[0027] See Figure 1This utility model discloses a bottle mold spacing adjustment device, including a receiving platform with multiple bottle molds arranged side by side. The receiving platform 1 has several pairs of first push plates 2 spaced apart, with the lower surface of the first push plates 2 slidingly contacting the surface of the receiving platform 1. Bottle molds 12 are positioned between a pair of first push plates 2. A second push plate 3 is also provided inside the first push plate 2 at the end of the receiving platform 1. The second push plate 3 is mounted on a driving component. Several pairs of first push plates 2 are respectively mounted on corresponding sliding components. A connecting rod 4 is provided through two first push plates 2 positioned between adjacent bottle molds 12. A first base 5 is fixed to one side of the connecting rod 4, and a second base 6 is slidably sleeved on the other side with a certain sliding distance. The first base 5 and the second base 6 are respectively fixed to the corresponding sliding components.
[0028] In this embodiment, the sliding member includes a slide rail 7 disposed on the worktable surface. A number of sliders 8, equal in number to the number of first push plates 2, are slidably disposed on the slide rail 7. The pairs of first push plates 2 are disposed on both sides of the sliders 8, and their extensions slide in contact with the surface of the receiving platform 1.
[0029] In this embodiment, the driving component includes a driving cylinder 9 fixed to the worktable surface. The actuating end of the driving cylinder 9 is fixed with a second push plate 3. The second push plate 3 is located inside the first push plate 2 at the end of the receiving platform 1 and is connected to the surface of the first slider 8.
[0030] A first base 5 is fixed to the side of the connecting rod 4 near the second push plate 2, and a second base 6 is slidably fitted to the other side away from the second push plate 3. A limit block 10 is also vertically installed on the side of the slider 8 near the receiving platform 1. A ball bearing 11 is also embedded in the inner side of the first push plate 2.
[0031] The spacing between the paired first push plates 2 matches the width of the lower end of the bottle mold 12, and there is no gap between adjacent bottle molds 12 when the bottle mold 12 is located between the first push plates 2. In this way, the spacing between the bottle molds 12 can be adjusted immediately when the drive cylinder 9 is started, making it convenient to control and adjust the spacing.
[0032] Working principle:
[0033] The bottle mold 12 and the bottle body are transferred to the receiving platform 1. Before the transfer, the receiving platform 1 is already equipped with first push plates 2 at intervals, and the first push plates 2 correspond one-to-one with the bottle mold 12. After the transfer, the bottle mold 12 is exactly located between the pairs of first push plates 2, and there is no gap between the bottle mold 12. The drive cylinder 9 is activated to extend, driving the second push plate 3 to move the first push plate 2 to the left by a certain distance. Driven by the first base 5, the connecting rod 4 moves to the left. At this time, the connecting rod 4 slides with the second base 6. The first pair of first push plates 2 drive the first bottle mold 12 to move to the left. After the connecting rod 4 slides a certain distance with the second base 6, the second base is locked by the end of the connecting rod 4. At this time, the first pair of first push plates 2 continue to slide to the left. The second base 6 also slides to the left with the connecting rod 4. Then the second slider 8 also moves to the left, driving the second bottle mold 12 to move to the left. At this time, a gap has been generated between the first bottle mold 12 and the second bottle mold 12. Similarly, gaps are generated between the second and third, the third and fourth, etc., completing the expansion of the gap.
[0034] After the bottle mold 12 is transferred to the weighing station, the distance between the two first push plates 2 between adjacent bottle molds needs to return to the initial zero distance. At this time, the control drive cylinder 9 retracts, and the second push plate 3 drives the first slider 8 to move to the right. This is a process of widening the distance, which will not be described in detail here.
[0035] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent transformations or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.
Claims
1. A bottle mold spacing adjustment device, comprising a receiving platform for multiple bottle molds arranged side by side, characterized in that, The receiving platform (1) is provided with a plurality of pairs of first push plates (2) spaced apart, and the lower surface of the first push plate (2) slides in contact with the surface of the receiving platform (1). The bottle mold (12) is disposed between a pair of first push plates (2). A second push plate (3) is also provided on the inner side of the first push plate (2) at the end of the receiving platform (1). The second push plate (3) is provided on the driving component. Several pairs of first push plates (2) are respectively provided on the corresponding sliding components. A connecting rod (4) is provided through the two first push plates (2) between adjacent bottle molds (12). A first base (5) is fixed on one side of the connecting rod (4), and a second base (6) is slidably sleeved on the other side with a certain sliding distance. The first base (5) and the second base (6) are respectively fixed on the corresponding sliding components.
2. The bottle mold spacing adjustment device according to claim 1, characterized in that, The sliding member includes a slide rail (7) disposed on the worktable surface. A number of sliders (8) equal to the number of first push plates (2) are slidably disposed on the slide rail (7). The first push plates (2) are disposed on both sides of the sliders (8), and their extensions are in sliding contact with the surface of the receiving platform (1).
3. The bottle mold spacing adjustment device according to claim 1, characterized in that, The driving component includes a driving cylinder (9) fixed to the worktable surface. The driving cylinder (9) has a second push plate (3) fixed to its actuating end. The second push plate (3) is located inside the first push plate (2) at the end of the receiving platform (1) and is connected to the surface of the first slider (8).
4. The bottle mold spacing adjustment device according to claim 1, characterized in that, The first base (5) is fixed on the side of the connecting rod (4) near the second push plate (3), and the second base (6) is slidably sleeved on the other side away from the second push plate (3).
5. The bottle mold spacing adjustment device according to claim 2, characterized in that, A limit block (10) is also vertically installed on the side of the slider (8) near the receiving platform (1).
6. The bottle mold spacing adjustment device according to claim 1, characterized in that, The inner side of the first push plate (2) is also fitted with ball bearings (11).
7. The bottle mold spacing adjustment device according to claim 1, characterized in that, The spacing between the pair of first push plates (2) matches the width of the lower end of the bottle mold (12), and there is no gap between adjacent bottle molds (12) when the bottle mold (12) is located between the first push plates (2).