Automatic bulking positioning mechanism

By using the combination of displacement sensors and push blocks in the drum-starting process, raw material length detection and screening and classification can be achieved, solving the problem of high frequency of positioning fixture position adjustment and improving operating efficiency.

CN223417772UActive Publication Date: 2025-10-10CHANGZHOU AVIATION TOOL & MOULD CO LTD
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Patent Information

Application Number
CN202422560510.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-23
Publication Date
2025-10-10
Estimated Expiration
2034-10-23

AI Technical Summary

Technical Problem

In the prior art, in the process of drumming the shock absorber raw material, it is necessary to adjust the position of the positioning fixture according to the length of the raw material, which increases the operation time and reduces the efficiency.

Method used

An automatic drum positioning mechanism is adopted, which uses a displacement sensor and a push block to detect the length of the raw materials and realize screening and classification, reducing the frequency of adjusting the positioning fixture position.

Benefits of technology

The length of raw materials can be effectively detected through the automatic positioning mechanism, so that the screening and classification of raw materials can be achieved, the frequency of adjusting the positioning fixture position can be reduced, and the efficiency of drumming operation can be improved.

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Abstract

The utility model relates to the technical field of bulking automation, in particular to an automatic bulking positioning mechanism, which is characterized in that a connecting plate is mounted on a base, a limiting block is mounted on the connecting plate, a material stopping block is mounted on one side of the limiting block, a material pushing block is movably arranged on the connecting plate, the material pushing block is connected with a second connecting block through a first connecting block, and the second connecting block is connected with a first sliding plate; the first sliding plate is installed on the second sliding plate, the second sliding plate is installed on one sliding block of the sliding rail, and the sliding rail is installed on the base. The displacement sensor is installed on the base, and the sensing end of the displacement sensor is arranged in the second connecting block. The plurality of sliding block plates are respectively mounted on the plurality of sliding blocks on the sliding rail, and the limiting plates are mounted on the side walls, adjacent to the limiting blocks, of the sliding block plates; the air cylinder is installed on the base through an air cylinder installation base, and the output end of the air cylinder is connected with the first sliding plate through a floating connector. Raw materials can be screened, the clamp position adjusting frequency is reduced, and the bulking operation efficiency is effectively improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of drum starting automation, in particular to an automatic drum starting positioning mechanism. Background Art

[0002] When processing shock absorber raw materials for drumming, the positioning fixture needs to be adjusted according to the length of the raw materials, which undoubtedly increases processing time and reduces efficiency. A positioning mechanism that can measure the length of the raw materials is needed to screen the raw materials and reduce the frequency of fixture position adjustment. Utility Model Content

[0003] The purpose of the utility model is to address the defects and shortcomings of the existing technology and provide an automatic drum positioning mechanism, which can screen raw materials, reduce the frequency of clamp position adjustment, and effectively improve the drum operation efficiency.

[0004] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions: it includes a base, a connecting plate, a limit block, a stop block, a push block, a slider plate, a limit plate, a slide rail, a cylinder, a displacement sensor and a slider; a connecting plate is installed on the base, a limit block is installed on the connecting plate, a stop block is installed on one side of the limit block, and a push block is also movably provided on the connecting plate, the push block is connected to connecting block 2 by connecting block 1, connecting block 2 is connected to slide plate 1, slide plate 1 is installed on slide plate 2, slide plate 2 is installed on one of the sliders on the slide rail, and the slide rail is installed on the base; the displacement sensor is installed on the base, and its sensing end is arranged in connecting block 2; there are several slider plates, which are respectively installed on several sliders on the slide rail, and a limit plate is installed on a side wall of the slider plate adjacent to the limit block; the cylinder is installed on the base by using a cylinder mounting seat, and its output end is connected to slide plate 1 by using a floating joint.

[0005] Preferably, a locking screw is connected to the slider plate, and the bottom end of the locking screw is movably contacted with the base.

[0006] Preferably, the upper surface of the connecting plate is arranged in an inclined structure from high to low on the side facing the limiting plate.

[0007] Preferably, the base is arranged in an "I"-shaped structure, and the slide rail, connecting plate and displacement sensor are all installed on the upper panel of the "I"-shaped structure.

[0008] Preferably, baffles are provided at both ends of the slide rail, and the baffles are installed on the side walls of the base.

[0009] Preferably, a diffuse reflection sensor is mounted on the base using a sensor bracket, and the diffuse reflection sensor is located between a plurality of limit plates.

[0010] Compared with the prior art, the drum starting automatic positioning mechanism has the advantages that the displacement sensor cooperates with the material pushing block, the length of the raw material can be effectively detected, the screening and classification of the raw material are realized, the position adjusting frequency of the drum starting positioning clamp is effectively reduced, and the work efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0011] Figure 1 is a structural schematic view of the utility model.

[0012] Figure 2 is a structural schematic view of the connecting plate in the utility model.

[0013] Figure 3 is Figure 2 A-A direction section view in

[0014] Figure 4 is Figure 2 B-B direction section view in

[0015] BRIEF DESCRIPTION OF DRAWINGS

[0016] Base 1, connecting plate 2, mounting groove 2-1, mounting screw hole 2-2, adjusting connecting hole 2-3, limiting block 3, material blocking block 4, material pushing block 5, connecting block one 6, connecting block two 7, cylinder mounting seat 8, sliding block plate 9, limiting plate 10, sliding rail 11, cylinder 12, displacement sensor 13, floating joint 14, sliding block 15, sensor support 16, locking screw 17, sliding plate two 18, sliding plate one 19, baffle 20. DETAILED DESCRIPTION

[0017] The technical solutions in the utility model will be clearly and completely described below with reference to the drawings, and the preferred embodiments in the description are only taken as examples, and all other embodiments obtained by the person skilled in the art without creative labor fall within the protection scope of the utility model.

[0018] As Figures 1-4As shown, this specific embodiment adopts the following technical scheme: it includes a base 1, a connecting plate 2, a limit block 3, a stop block 4, a push block 5, a slider plate 9, a limit plate 10, a slide rail 11, a cylinder 12, a displacement sensor 13 and a slider 15; the base 1 is an "I"-shaped structure, on which a connecting plate 2 is installed on the upper plate, and the upper surface of the connecting plate 2 is inclined from high to low toward the side of the limit plate 10, and a mounting groove 2-1 is provided on the connecting plate 2, and a plurality of mounting screw holes 2-2 are provided in the mounting groove 2-1. The bottom of the positioning block 3 is set in the installation groove 2-1, and is connected and fixed by screws and mounting screw holes 2-2; two strip-shaped adjustment connection holes 2-3 are provided on the left and right sides of the connecting plate 2, and the connecting plate 2 is installed on the base 1 by screws and the adjustment connection holes 2-3. A stop block 4 is installed on one side of the limit block 3, and a push block 5 is also movably provided on the connecting plate 2. The push block 5 is connected to the connecting block 2 7 by connecting block 1 6, and the connecting block 2 7 is connected to the slide 1 19. The slide 19 is installed on the slide 2 18. The second plate 18 is installed on one of the sliders 15 on the slide rail 11, and the slide rail 11 is installed on the base 1. The two ends of the slide rail 11 are provided with baffles 20, and the baffles 20 are installed on the side walls of the base 1; the displacement sensor 13 is installed on the base 1, and its sensing end is set in the connecting block 2 7; the slider plates 9 are two, which are respectively installed on the two sliders 15 on the slide rail 11. A limit plate 10 is installed on one side wall of the slider plate 9 adjacent to the limit block 3. The limit plate 10 cooperates with the inclined connecting plate 2 to limit the raw material to the connecting plate 2. On the connecting plate 2, to prevent rolling, a locking screw 17 is connected to the slider plate 9, and the bottom end of the locking screw 17 is movably in contact with the base 1. When the slider 15 is adjusted into place, the locking screw 17 is rotated so that the lower end of the locking screw 17 is in contact with the upper panel of the base 1 to achieve position positioning; the cylinder 12 is installed on the base 1 using the cylinder mounting seat 8, and its output end is connected to the slide plate 19 using a floating joint 14; a diffuse reflection sensor is installed on the base 1 between the two limit plates 10 using the sensor bracket 16.

[0019] When using the present invention, the distance between the two sliders 15 is adjusted according to the approximate length of the raw material, and the locking screws 17 are used to lock and fix them. Then, the raw material is placed on the connecting plate 2, and the cylinder 12 is used to drive the slide plate 19, thereby pushing the connecting block 2 7, the connecting block 1 6 and the pushing block 5 to move. The pushing block 5 touches one end of the raw material and pushes the raw material to move at the same time until the other end of the raw material hits the side wall of the stop block 4. The cylinder 12 stops. At this time, the displacement sensor 13 transmits the displacement data of the connecting block 2 7 to the CPU. The CPU processes the data and converts it to obtain the length of the shock absorber raw material.

[0020] Compared with the existing technology, the beneficial effects of the present invention are: the present invention provides an automatic drum positioning mechanism, which uses a displacement sensor in conjunction with a push block to effectively detect the length of the raw material, thereby realizing the screening and classification of the raw materials, effectively reducing the position adjustment frequency of the drum positioning fixture, and improving work efficiency.

[0021] For those skilled in the art, they can modify the technical solutions described in the aforementioned embodiments and make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present utility model should be included in the scope of protection of the present utility model.

Claims

1. An automatic positioning mechanism for drum starting, characterized by: It comprises a base (1), a connecting plate (2), a limit block (3), a stop block (4), a push block (5), a slider plate (9), a limit plate (10), a slide rail (11), a cylinder (12), a displacement sensor (13) and a slider (15); a connecting plate (2) is installed on the base (1), a limit block (3) is installed on the connecting plate (2), a stop block (4) is installed on one side of the limit block (3), and a push block (5) is movably provided on the connecting plate (2), the push block (5) is connected to the connecting block 2 (7) by the connecting block 1 (6), the connecting block 2 (7) is connected to the slide plate 1 (19), and the slide plate 1 (19) is installed On the slide plate 2 (18), the slide plate 2 (18) is mounted on one of the sliders (15) on the slide rail (11), and the slide rail (11) is mounted on the base (1); the displacement sensor (13) is mounted on the base (1), and its sensing end is set in the connecting block 2 (7); the slider plates (9) are multiple, respectively mounted on the multiple sliders (15) on the slide rail (11), and a limit plate (10) is mounted on a side wall of the slider plate (9) adjacent to the limit block (3); the cylinder (12) is mounted on the base (1) using the cylinder mounting seat (8), and its output end is connected to the slide plate 1 (19) using a floating joint (14).

2. The drum-starting automatic positioning mechanism according to claim 1, characterized in that: The slider plate (9) is connected to a locking screw (17), and the bottom end of the locking screw (17) is movably contacted with the base (1).

3. The automatic drum positioning mechanism according to claim 2, characterized in that: The upper surface of the connecting plate (2) is arranged in an inclined structure from high to low on the side facing the limiting plate (10).

4. The automatic drum positioning mechanism according to claim 3, characterized in that: The base (1) is arranged in an "I"-shaped structure, and the slide rail (11), the connecting plate (2) and the displacement sensor (13) are all mounted on the upper panel of the "I"-shaped structure.

5. The automatic drum positioning mechanism according to claim 4, characterized in that: Both ends of the slide rail (11) are provided with baffles (20), and the baffles (20) are installed on the side walls of the base (1).

6. The automatic drum positioning mechanism according to claim 5, characterized in that: A diffuse reflection sensor is mounted on the base (1) using a sensor bracket (16), and the diffuse reflection sensor is located between the plurality of limit plates (10).