Glass panel centering fine adjustment positioning assembly
By using a rotating positioning column assembly, a longitudinal fine-tuning assembly, and an angle synchronous linkage assembly, the glass panel is precisely positioned, solving the accuracy and adaptability problems of traditional positioning devices and improving production efficiency and cost-effectiveness.
Patent Information
- Application Number
- CN202520355796.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-03-03
AI Technical Summary
Traditional glass panel positioning devices struggle to achieve micron-level precision adjustments, leading to processing position deviations and an inability to adapt to different glass panel specifications, thus increasing production costs.
It employs a rotating positioning column assembly, a longitudinal fine-tuning assembly, and an angle synchronous linkage assembly to achieve precise positioning through rotation and longitudinal adjustment, and to simultaneously adjust the angles of multiple positioning columns to adapt to glass panels of different specifications.
It improves positioning accuracy and adjustment efficiency, ensuring efficient operation of glass panels on automated production lines, reducing operation time and production costs.
Smart Images

Figure CN223704428U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass panel processing field, especially a kind of glass panel centering fine adjustment positioning assembly.
BACKGROUND
[0002] Traditional glass panel conveying positioning device is mostly fixed mechanical structure or simple cylinder push, it is difficult to realize micron-level fine adjustment, especially when glass panel size tolerance or conveying deviation, it is easy to cause subsequent processing position deviation.Manual adjustment or step adjustment positioning column is time-consuming, poor consistency, cannot meet the efficient demand of automatic production line, and fixed size positioning assembly is difficult to be compatible with different specifications of glass panel, such as width change, frequent replacement of tooling is needed, which increases production cost.
[0003] Therefore, the existing glass panel processing field needs to be further improved.
UTILITARY MODEL CONTENT
[0004] The utility model aims at providing a kind of glass panel centering fine adjustment positioning assembly, can improve positioning accuracy, adjustment efficiency and adaptability.
[0005] In order to achieve the above purpose, the utility model adopts the following scheme:
[0006] A kind of glass panel centering fine adjustment positioning assembly, including conveying mechanism, the conveying mechanism both sides are provided with side shift device, the side shift device is provided with a plurality of circumferential outer diameter different rotating positioning column assembly, the side shift device is provided with longitudinal fine adjustment assembly, longitudinal fine adjustment assembly and a plurality of rotating positioning column assembly between the angle synchronous linkage assembly for synchronously adjusting the angle of a plurality of rotating positioning column assembly are provided.
[0007] Further, the conveying mechanism includes two pulley assemblies spaced apart left and right, the pulley assembly is provided with conveying belt, the pulley assembly bottom is provided with lifting assembly.
[0008] Further, the side shift device includes side shift base provided outside the pulley assembly, the side shift base is provided with side shift electric track, the side shift electric track is provided with side positioning slider.
[0009] Further, a plurality of rotating positioning column assemblies are evenly arranged on the side positioning slider along the longitudinal direction.
[0010] Further, the rotating positioning column assembly includes outer convex plate provided inside the side positioning slider, the outer convex plate is provided with rotating mounting hole, the rotating mounting hole is rotatably provided with positioning column, and the outer diameter size of the positioning column gradually increases in clockwise direction.
[0011] Furthermore, the longitudinal fine-tuning component includes a longitudinal screw hole disposed on the side positioning slider, and an adjusting screw is inserted into and threadedly connected to the longitudinal screw hole.
[0012] Furthermore, the angle synchronization linkage component includes a positioning rotor disposed at the inner end of the adjusting screw, a positioning sleeve disposed on the positioning rotor, a synchronization longitudinal block disposed at the inner end of the positioning sleeve, a longitudinal groove disposed on the synchronization longitudinal block, an eccentric shaft disposed at the upper end of the positioning column, and multiple eccentric shafts disposed at the same angle, the eccentric shafts being movably installed in the longitudinal groove.
[0013] Furthermore, the positioning sleeve can move axially following the positioning rotor.
[0014] In summary, the advantages of this utility model over the prior art are:
[0015] This invention addresses the shortcomings of existing glass panel processing methods. Through its structural design, it offers the following advantages: the adjusting screw of the longitudinal fine-tuning component can be threaded into the longitudinal screw hole, enabling precise longitudinal adjustment and facilitating accurate positioning of the glass panel in the longitudinal direction. The angle synchronization linkage component can simultaneously adjust the angles of multiple rotating positioning column components, ensuring uniform and consistent force exerted by the positioning columns on the glass panel. This prevents tilting or offset of the glass panel due to different positioning column angles, further improving positioning accuracy. The outer diameter of the positioning columns in the rotating positioning column component gradually increases clockwise. By rotating the positioning columns, different outer diameter portions can contact the glass panel, achieving precise pushing and fine-tuning of the glass panel in the lateral direction, increasing adjustment flexibility. The angle synchronization linkage component allows multiple rotating positioning column components to be adjusted synchronously, eliminating the need for individual adjustment and significantly improving adjustment efficiency, saving operation time, and better meeting the high-efficiency operation requirements of automated production lines. [Attached Image Description]
[0016] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a perspective view of the present utility model;
[0018] Figure 2 This is one of the internal structural diagrams of this utility model;
[0019] Figure 3This utility model Figure 2 A magnified view of part A;
[0020] Figure 4 This is the second schematic diagram of the internal structure of this utility model.
Detailed Implementation Methods
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please see Figures 1-4 This utility model provides a glass panel centering fine-tuning positioning component, including a conveying mechanism 1, a lateral shifting device 2 on each side of the conveying mechanism 1, a plurality of rotating positioning column assemblies 3 with different circumferential outer diameters on the lateral shifting device 2, a longitudinal fine-tuning component 4 on the lateral shifting device 2, and an angle synchronization linkage component 5 for synchronously adjusting the angles of the plurality of rotating positioning column assemblies 3 between the longitudinal fine-tuning component 4 and the plurality of rotating positioning column assemblies 3;
[0023] The conveying mechanism transports glass panels: The left and right pulley assemblies 101 of the conveying mechanism 1 operate, driving the conveyor belt 102 to rotate and transport the glass panels to the positioning area.
[0024] Based on the width of the glass panel, the lateral shifting device 2 begins to operate. The lateral shifting electric track 202 drives the lateral positioning slider 203 to move laterally on the lateral shifting base 201, causing the rotating positioning column assembly 3, which is set on the lateral positioning slider 203, to approach the two sides of the glass panel and adjust to a suitable lateral position in preparation for subsequent positioning.
[0025] The rotating positioning post assembly enables lateral fine-tuning: the positioning post 303 of the rotating positioning post assembly 3 can rotate within the rotating mounting hole. Since the outer diameter of the positioning post 303 gradually increases in the clockwise direction, when the positioning post 303 rotates, its outer diameter in contact with the glass panel changes, thereby pushing the glass panel to make a slight movement in the lateral direction, thus achieving fine-tuning of the lateral position of the glass panel.
[0026] The longitudinal fine-tuning component enables longitudinal fine-tuning: the adjusting screw 402 of the longitudinal fine-tuning component 4 is threadedly connected to the longitudinal screw hole 401. When the adjusting screw 402 is rotated, according to the principle of thread transmission, the adjusting screw 402 will move axially within the longitudinal screw hole 401, thereby driving the associated structure to produce longitudinal displacement, thus achieving fine-tuning of the longitudinal position of the glass panel.
[0027] The angle synchronization linkage component ensures synchronous adjustment: the angle synchronization linkage component 5 plays a synchronizing role between the longitudinal fine-tuning component 4 and the rotary positioning column component 3. When the adjusting screw 402 is rotated, the positioning rotor 501 at the inner end of the adjusting screw 402 rotates accordingly, and the positioning sleeve 502 can follow the positioning rotor 501 to move axially.
[0028] The synchronous longitudinal block 503 at the inner end of the positioning sleeve 502 rotates accordingly, and the longitudinal straight groove 504 on the synchronous longitudinal block 503 cooperates with the eccentric shaft 505 at the upper end of the positioning post 303. Multiple eccentric shafts 505 are set at the same angle. During the rotation of the longitudinal straight groove 504, multiple positioning posts 303 will be driven to rotate synchronously by the same angle, ensuring that the force exerted on the glass panel by multiple rotating positioning post assemblies 3 is uniform and consistent, avoiding tilting or uneven force on the glass panel, realizing the synchronous adjustment of the angle of multiple rotating positioning post assemblies 3, and finally completing the centering and fine-tuning positioning of the glass panel.
[0029] The conveying mechanism 1 of this utility model includes two pulley assemblies 101 arranged at left and right intervals. A conveyor belt 102 is provided on the pulley assembly 101, and a lifting assembly is provided at the bottom of the pulley assembly 101.
[0030] The lateral shifting device 2 of this utility model includes a lateral shifting base 201 disposed on the outside of the pulley assembly 101, a lateral shifting electric track 202 disposed on the lateral shifting base 201, and a lateral positioning slider 203 disposed on the lateral shifting electric track 202.
[0031] The present invention provides that multiple rotating positioning column assemblies 3 are evenly distributed along the longitudinal direction on the side positioning slider 203.
[0032] The rotary positioning column assembly 3 of this utility model includes an outer protruding plate 301 disposed inside the side positioning slider 203. The outer protruding plate 301 is provided with a rotary mounting hole, and a positioning column 303 with an outer diameter that gradually increases in a clockwise direction is rotatably disposed in the rotary mounting hole.
[0033] The longitudinal fine-tuning component 4 of this utility model includes a longitudinal screw hole 401 disposed on the side positioning slider 203, and an adjusting screw 402 is inserted into and threadedly connected to the longitudinal screw hole 401.
[0034] The angle synchronization linkage component 5 of this utility model includes a positioning rotor 501 disposed at the inner end of the adjusting screw 402. The positioning rotor 501 is fitted with a positioning sleeve 502. A synchronization longitudinal block 503 is disposed at the inner end of the positioning sleeve 502. A longitudinal groove 504 is disposed on the synchronization longitudinal block 503. An eccentric shaft 505 is disposed at the upper end of the positioning column 303. Multiple eccentric shafts 505 are arranged facing the same angle. The eccentric shafts 505 are movably installed in the longitudinal groove 504.
[0035] The positioning sleeve 502 of this utility model can move axially following the positioning rotor 501.
[0036] The foregoing has shown and described the basic principles and main features of this utility model, as well as its advantages. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A glass panel centering and fine-tuning positioning component, comprising a conveying mechanism (1), characterized in that: The conveying mechanism (1) is provided with a lateral shifting device (2) on each side. The lateral shifting device (2) is provided with a plurality of rotating positioning column assemblies (3) with different circumferential outer diameters. The lateral shifting device (2) is provided with a longitudinal fine adjustment component (4). An angle synchronization linkage component (5) for synchronously adjusting the angles of the plurality of rotating positioning column assemblies (3) is provided between the longitudinal fine adjustment component (4) and the plurality of rotating positioning column assemblies (3).
2. The glass panel centering and fine-tuning positioning component according to claim 1, characterized in that: The conveying mechanism (1) includes two pulley assemblies (101) spaced apart on the left and right sides. A conveyor belt (102) is provided on the pulley assembly (101), and a lifting assembly is provided at the bottom of the pulley assembly (101).
3. The glass panel centering and fine-tuning positioning component according to claim 2, characterized in that: The lateral shifting device (2) includes a lateral shifting base (201) disposed on the outside of the pulley assembly (101), a lateral shifting electric track (202) disposed on the lateral shifting base (201), and a lateral positioning slider (203) disposed on the lateral shifting electric track (202).
4. The glass panel centering and fine-tuning positioning component according to claim 3, characterized in that: Multiple rotating positioning column assemblies (3) are evenly distributed on the side positioning slider (203) along the longitudinal direction.
5. A glass panel centering fine-tuning positioning component according to claim 4, characterized in that: The rotating positioning column assembly (3) includes an outer protruding plate (301) disposed inside the side positioning slider (203). The outer protruding plate (301) is provided with a rotating mounting hole, and a positioning column (303) with an outer diameter that gradually increases in the clockwise direction is rotatably disposed in the rotating mounting hole.
6. The glass panel centering and fine-tuning positioning component according to claim 5, characterized in that: The longitudinal fine-tuning component (4) includes a longitudinal screw hole (401) disposed on the side positioning slider (203), and an adjusting screw (402) is inserted into and threadedly connected to the longitudinal screw hole (401).
7. A glass panel centering and fine-tuning positioning component according to claim 6, characterized in that: The angle synchronization linkage component (5) includes a positioning rotor (501) disposed at the inner end of the adjusting screw (402). The positioning rotor (501) is covered with a positioning sleeve (502). A synchronization longitudinal block (503) is disposed at the inner end of the positioning sleeve (502). A longitudinal straight groove (504) is disposed on the synchronization longitudinal block (503). An eccentric shaft (505) is disposed at the upper end of the positioning column (303). Multiple eccentric shafts (505) are arranged facing the same angle. The eccentric shafts (505) are movably installed in the longitudinal straight groove (504).
8. A glass panel centering and fine-tuning positioning component according to claim 7, characterized in that: The positioning sleeve (502) can move axially following the positioning rotor (501).