Alignment device

By using a positioning device with positioning components and a vibration mechanism in the production process, the problem of low efficiency in manual material positioning is solved, and automatic positioning and rapid alignment of materials are achieved, thereby improving production efficiency.

CN223507037UActive Publication Date: 2025-11-04中山市合沃电子科技有限公司
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Patent Information

Application Number
CN202422987506.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-04
Publication Date
2025-11-04
Estimated Expiration
2034-12-04

AI Technical Summary

Technical Problem

In existing technologies, the material is aligned and positioned by manually identifying the alignment of the inclined surface of the material with the inclined surface of the positioning component, which results in low production efficiency.

Method used

An alignment device consisting of a positioning component, a base assembly, and a vibration mechanism is adopted. The vibration assembly vibrates the positioning component and the material, so that the material is automatically aligned and positioned, thereby improving production efficiency.

Benefits of technology

It enables automatic material positioning, improves production efficiency, reduces manual intervention, and increases processing speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of alignment devices, in particular to an alignment device which comprises a positioning piece, a base assembly and a vibration assembly, the positioning piece is used for attaching materials, the vibration assembly is connected to the base assembly and the positioning piece, and the vibration assembly is used for vibrating the positioning piece and the materials. Therefore, the materials are straightened and positioned. By means of the mode, the vibration assembly is used for vibrating the positioning piece and the materials so that the materials can be straightened and positioned, the materials can be straightened and positioned automatically, manual recognition is not needed, and production efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of alignment device technology, and in particular to an alignment device. Background Technology

[0002] During production and processing, the material needs to be attached to the positioning component so that the positioning component can align and position the material. The positioning component is provided with a first inclined surface, and the material is provided with a second inclined surface. When the second inclined surface is attached to the first inclined surface, the material needs to be aligned and positioned.

[0003] However, in the process of implementing the embodiments of this utility model, the inventors discovered that: currently, during production and processing, the material is confirmed to be aligned and positioned by manually identifying that the second inclined surface of the material is in place with the first inclined surface of the positioning component. However, relying on manual identification to confirm the alignment and positioning of the material results in low production efficiency. Utility Model Content

[0004] The main technical problem solved by this utility model is to provide an alignment device that can solve the problem of low production efficiency.

[0005] To solve the above-mentioned technical problems, the present invention provides a positioning device, including a positioning component, a base assembly, and a vibration mechanism. The positioning component is used for material to adhere to the material, and the vibration mechanism is connected to the base assembly and the positioning component. The vibration mechanism is used to vibrate the positioning component and the material to align and position the material.

[0006] Optionally, the vibration assembly includes a vibrator, a mounting plate, and a fixing structure. The vibrator is connected to the base assembly, the mounting plate is connected to the vibrator and the positioning member, and the fixing structure is used to fix the mounting plate and the positioning member.

[0007] Optionally, the fixing structure is a screw hole and a bolt.

[0008] Optionally, the base assembly includes a base plate, a partition plate, and a shock absorber. The shock absorber is located between the base plate and the partition plate, and is connected to the partition plate assembly and the base plate respectively. The vibrator is mounted on the partition plate.

[0009] Optionally, the shock absorber includes a connecting shaft and a shock absorber body, the connecting shaft is connected to the base plate and the partition plate, and the shock absorber body is sleeved on the connecting shaft.

[0010] Optionally, there are multiple partitions and multiple shock absorbers, with the partitions stacked at intervals and at least one shock absorber between any two adjacent partitions.

[0011] Optionally, the alignment device further includes a counterweight disposed on the base assembly.

[0012] Optionally, the vibration assembly includes a drive component, a striking component, and a mounting bracket. The mounting bracket is connected to the base assembly and the positioning component. The striking component is located between the mounting bracket and the base assembly. The drive component is connected to the base assembly and the striking component. The drive component is used to drive the striking component to reciprocate along the base assembly toward the mounting bracket to strike and vibrate the mounting bracket.

[0013] Optionally, the vibration assembly includes a mounting component, a pushing component, and multiple resetting components, and the number of striking components is multiple;

[0014] The mounting component is disposed on the base assembly. The mounting component has multiple through holes arranged in a straight line. A striking component is slidably inserted through one of the through holes. A reset component is sleeved on the striking component. One end of the reset component is connected to the striking component, and the other end of the reset component is connected to the mounting component. A pushing component is connected to the driving component. The driving component is used to drive the pushing component to reciprocate along the arrangement direction of the multiple through holes, so that the pushing component alternately pushes the striking component to strike and vibrate the mounting bracket.

[0015] Optionally, the vibration assembly includes a guide rail disposed on the base assembly, and the pusher is slidably disposed on the guide rail.

[0016] In this embodiment of the invention, a vibration component is used to vibrate the positioning component and the material to straighten and position the object, thereby achieving automatic straightening and positioning of the object without the need for manual identification and improving production efficiency. Attached Figure Description

[0017] To more clearly illustrate the technical solutions of the embodiments of this application, the drawings used in the embodiments of this application will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the drawings without creative effort.

[0018] Figure 1 This is a schematic diagram of the alignment device and material according to an embodiment of the present invention;

[0019] Figure 2 This is an exploded view of the positioning component and material of the alignment device according to an embodiment of the present invention;

[0020] Figure 3 This is a partial structural schematic diagram of the alignment device according to an embodiment of the present utility model;

[0021] Figure 4 This is a schematic diagram of the structure of the base plate of the alignment device according to an embodiment of the present utility model;

[0022] Figure 5 This is a schematic diagram of the structure of the partition plate of the base assembly of the alignment device according to an embodiment of the present utility model.

[0023] Explanation of reference numerals in the attached figures:

[0024] 100. Alignment device;

[0025] 1. Positioning component; 11. Sleeve shaft; 12. First inclined surface; 13. Mounting hole; 3. Base assembly; 31. Base plate; 311. First shaft hole; 312. Fixing hole; 32. Partition plate; 33. Shock absorber; 331. Connecting shaft; 332. Shock absorber body;

[0026] 4. Vibration assembly; 41. Vibrator; 42. Mounting plate; 43. Fixing structure; 431. Screw hole;

[0027] 5. Counterweights;

[0028] 200. Material; 201. Second inclined plane. Detailed Implementation

[0029] To facilitate understanding of this utility model, a more detailed description is provided below with reference to the accompanying drawings and specific embodiments. It should be noted that when an element is described as "locked" to another element, it can be directly on the other element, or one or more intermediate elements may exist between them. When an element is described as "connected" to another element, it can be directly connected to the other element, or one or more intermediate elements may exist between them. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this specification are for illustrative purposes only.

[0030] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of the invention. The term "and / or" as used in this specification includes any and all combinations of one or more of the associated listed items.

[0031] Please see Figures 1-3This application provides an alignment device 100, which includes a positioning element 1, a base assembly 3, and a vibration mechanism 4. The positioning element 1 is used for material to adhere to the material. The vibration mechanism 4 is connected to the base assembly 3 and the positioning element 1. The vibration mechanism 4 is used to vibrate the positioning element 1 and the material 200 to align and position the material 200, thereby achieving automatic alignment and positioning of the material 200 without manual identification, thus improving production efficiency.

[0032] In some embodiments, please refer to Figure 2 The positioning component 1 is provided with a sleeve shaft 11, and the material 200 is used to be sleeved on the sleeve shaft 11. The surface of one end of the material 200 is used to fit against the surface of the positioning component 1.

[0033] In some embodiments, the sleeve 11 and the material 200 are in transition fit. When the material 200 is sleeved on the sleeve 11, the surface of one end of the material 200 will not be in contact with the surface of the positioning member 1. The positioning member 1 and the material 200 are vibrated by the vibration component 3 so that the surface of one end of the material 22 is in contact with the surface of the positioning member 21.

[0034] In some embodiments, please refer to Figure 2 The surface of the positioning component 1 is a first inclined surface 12, and the surface of one end of the material 200 is a second inclined surface 201. The positioning component 1 and the material 200 are vibrated by the vibration component 3 so that the second inclined surface 201 is attached to the first inclined surface 12, thereby making the material 22 straight and positioned.

[0035] In some embodiments, please refer to Figure 3 The vibration assembly 4 includes a vibrator 41, a mounting plate 42, and a fixing structure 43. The vibrator 41 is connected to the base assembly 1, the mounting plate 32 is connected to the vibrator 31, and the fixing structure 33 is used to fix the mounting plate 32 and the positioning member 1.

[0036] In some embodiments, please refer to Figure 2 and Figure 3 The fixing structure 43 consists of a screw hole 431 and a bolt. The screw hole 431 is provided in one of the positioning member 1 and the mounting plate 32, while the other has a mounting hole 13. The bolt passes through the mounting hole 13 and is screwed into the screw hole 431 to fix the mounting plate 32 and the positioning member 1. As an example, the positioning member 1 has a mounting hole 13, and the mounting plate 42 has a screw hole 431.

[0037] In some embodiments, the mounting hole 13 is elongated, thereby enabling adjustment of the fixed position of the positioning member 1.

[0038] In some embodiments, please refer to Figure 3The base assembly 3 includes a base plate 31, a partition plate 32, and a shock absorber 33. The shock absorber 33 is located between the base plate 31 and the partition plate 32, and is connected to both the partition plate 32 and the base plate 31. The vibrator 41 is installed on the partition plate 12. The shock absorber 33 is used to reduce vibration.

[0039] In some embodiments, please refer to Figure 3 The shock absorber 33 includes a connecting shaft 331 and a shock absorber body 332. The connecting shaft 331 is connected to the base plate 11 and the partition assembly 12. The shock absorber body 332 is sleeved on the connecting shaft 331 to prevent the shock absorber body 332 from falling off.

[0040] In some embodiments, please refer to Figure 4 and Figure 5 The base plate 31 is provided with a first shaft hole 311, the partition plate 32 is provided with a second shaft hole 321, one end of the connecting shaft 311 is inserted into the first shaft hole 311, and the other end of the connecting shaft 311 is inserted into the second shaft hole 321.

[0041] In some embodiments, please refer to Figure 4 The base plate 31 is provided with a fixing hole 312, which penetrates the base plate 31. The fixing hole 312 is elongated and is used for fasteners to pass through, so as to connect and fix the base plate 31 to the outside.

[0042] In some embodiments, please refer to Figure 3 There are multiple partitions 32 and multiple damping components 33. The partitions 32 are stacked sequentially at intervals, and at least one damping component 33 is provided between any two adjacent partitions 32. The multiple partitions 32 and multiple damping components 33 provide multiple damping effects and improve the damping effect. The second shaft holes 321 of any two adjacent partitions 32 are respectively used for the two ends of the connecting shaft 331 of the damper 33 located between any two adjacent partitions 32.

[0043] In some embodiments, please refer to Figure 1 and Figure 3 The alignment device 100 also includes a counterweight 5, which is disposed on the base assembly 3 and is used to balance and reduce shock.

[0044] It is understood that in some embodiments, the vibration component 3 is not limited to the above structure. The vibration component 3 may also be other structures. The vibration component 3 includes a driving member, a striking member, and a mounting bracket. The mounting bracket is connected to the base component 3 and the positioning member 1. The striking member is located between the mounting bracket and the base component 1. The driving member is connected to the base component 1 and the striking member. The driving member is used to drive the striking member to reciprocate along the base component 1 toward the mounting bracket to strike the vibrating mounting bracket, thereby striking the vibrating positioning member 1 and the material 200.

[0045] In some embodiments, the mounting bracket is U-shaped.

[0046] In some embodiments, the driving element is a cylinder, an electric cylinder, or a linear motor.

[0047] It is understood that in some embodiments, the vibration assembly 3 is not limited to the structure described above. The vibration assembly 3 can also be other structures. The vibration assembly 3 includes a mounting member, a pushing member, and multiple resetting members. There are multiple striking members. The mounting member is disposed on the base assembly 3 and has multiple through holes arranged in a straight line. A striking member slides through one of the through holes. The resetting member is sleeved on the striking member. One end of the resetting member is connected to the striking member, and the other end of the resetting member is connected to the mounting member. The pushing member is connected to the driving member, and the driving member is used to drive the pushing member to reciprocate along the arrangement direction of the multiple through holes, so that the pushing member pushes the striking member in turn to strike the vibration mounting bracket. As an example, the resetting member is a spring.

[0048] In some embodiments, the vibration component 3 includes a guide rail disposed on the base component 3, and the pusher is slidably disposed on the guide rail.

[0049] It should be noted that while the preferred embodiments of this utility model are provided in the specification and accompanying drawings, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. These embodiments are not intended to impose additional limitations on the content of this utility model; their purpose is to provide a more thorough and comprehensive understanding of the disclosure of this utility model. Furthermore, the above-described technical features can be combined with each other to form various embodiments not listed above, all of which are considered to be within the scope of this utility model specification. Moreover, those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. An alignment device, characterized in that, include: Positioning components are used to allow materials to adhere; Base assembly; A vibration assembly is connected to the base assembly and the positioning member. The vibration assembly is used to vibrate the positioning member and the material so that the material is aligned and positioned.

2. The alignment device according to claim 1, characterized in that, The vibration assembly includes a vibrator, a mounting plate, and a fixing structure. The vibrator is connected to the base assembly, the mounting plate is connected to the vibrator and the positioning element, and the fixing structure is used to fix the mounting plate and the positioning element.

3. The alignment device according to claim 2, characterized in that, The fixing structure consists of screw holes and bolts.

4. The alignment device according to claim 2, characterized in that, The base assembly includes a base plate, a partition plate, and a shock absorber. The shock absorber is located between the base plate and the partition plate, and is connected to both the partition plate and the base plate. The vibrator is mounted on the partition plate.

5. The alignment device according to claim 4, characterized in that, The shock absorber includes a connecting shaft and a shock absorber body. The connecting shaft is connected to the base plate and the partition plate, and the shock absorber body is sleeved on the connecting shaft.

6. The alignment device according to claim 4 or 5, characterized in that, The number of partitions and shock absorbers are both multiple, and the multiple partitions are stacked sequentially at intervals, with at least one shock absorber between any adjacent partitions.

7. The alignment device according to claim 1, characterized in that, The alignment device further includes a counterweight, which is disposed on the base assembly.

8. The alignment device according to claim 1, characterized in that, The vibration assembly includes a driving component, a striking component, and a mounting bracket. The mounting bracket is connected to the base assembly and the positioning component. The striking component is located between the mounting bracket and the base assembly. The driving component is connected to the base assembly and the striking component. The driving component is used to drive the striking component to reciprocate along the base assembly toward the mounting bracket to strike and vibrate the mounting bracket.

9. The alignment device according to claim 8, characterized in that, The vibration assembly includes a mounting component, a pushing component, and multiple resetting components, and the number of striking components is multiple; The mounting component is disposed on the base assembly. The mounting component has multiple through holes arranged in a straight line. A striking component is slidably inserted through one of the through holes. A reset component is sleeved on the striking component. One end of the reset component is connected to the striking component, and the other end of the reset component is connected to the mounting component. A pushing component is connected to the driving component. The driving component is used to drive the pushing component to reciprocate along the arrangement direction of the multiple through holes, so that the pushing component alternately pushes the striking component to strike and vibrate the mounting bracket.

10. The alignment device according to claim 9, characterized in that, The vibration component includes a guide rail, which is disposed on the base assembly, and the pusher is slidably disposed on the guide rail.