Full-automatic positioning spinning machine device

By employing a design that combines a diagonal bar, a moving plate, a spring, and a No. 2 screw in the spinning machine, along with a controller and a vacuum suction cup, automatic positioning of the spinning machine is achieved, solving the problem of inaccurate positioning in existing spinning machines and saving costs.

CN223932444UActive Publication Date: 2026-02-24SUZHOU HUAANG INTELLIGENT EQUIP MFG CO LTD
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Patent Information

Application Number
CN202520590819.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-02-24
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

Existing spinning machines cannot achieve automatic material positioning, resulting in inaccurate positioning, requiring repeated trial processing, and wasting metal billets.

Method used

The design employs a combination of inclined bars, a moving plate, springs, and a No. 2 screw. The controller controls the motor to achieve automatic material positioning, and a vacuum suction cup is used to fix the material. The material is then processed in conjunction with the spinning machine body.

Benefits of technology

It enables automatic positioning of materials, avoids repeated trial processing, and saves costs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223932444U_ABST
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Abstract

The utility model discloses a full-automatic positioning spinning machine device, which belongs to the field of spinning machines and comprises a base, a spinning machine body and a vertical block are fixedly connected to the top of the base, an abutting head is fixedly connected to one side of the spinning machine body, a bottom plate is slidably connected to the outer side of the vertical block, and a movable plate is slidably connected to the inner wall of the bottom of the bottom plate. Two inclined strips are slidably connected to the inner side of the moving plate, clamping plates are fixedly connected to the other ends of the two inclined strips, and an abutting plate is slidably connected to the inner side of the bottom plate. The round material positioning device is reasonable in structural design, through cooperation of the inclined strip, the movable plate, the spring and the second screw rod, when round materials are machined, positioning work can be automatically completed, the materials do not need to be subjected to trial machining repeatedly, and therefore cost is saved.
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Description

Technical Field

[0001] This utility model relates to the field of spinning machines, and in particular to a fully automatic positioning spinning machine device. Background Technology

[0002] The spinning machine belongs to the category of metal plastic forming machinery. It is equipped with an AC servo system on its bed. The spinning head of this system has two mutually perpendicular carriages, one longitudinal and one transverse. The transverse and longitudinal feeds utilize precision ball screw pairs, which are connected in sequence by a servo motor to a synchronous belt drive pair and the precision ball screw pairs. Precision ball linear guides are located below the carriages. A "copying" mechanism for the mandrel's outline is located above the transverse slide of the spinning head. The CNC system controlling the servo system and the programmable logic controller (PLC) controlling the hydraulic transmission system are both connected to an industrial PC. This new spinning machine achieves automatic processing and control, is a multi-functional and general-purpose device, possesses high precision and reliability, and features CAD drawing and programming functions, mandrel copying functions, and recording and feedback functions.

[0003] When using existing spinning machines, some of them cannot achieve automatic material positioning, which may require users to repeatedly try processing due to inaccurate positioning, thus wasting metal billets. Therefore, we propose a fully automatic positioning spinning machine device to solve this problem. Utility Model Content

[0004] The purpose of this invention is to provide a fully automatic positioning spinning machine device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A fully automatic positioning spinning machine device includes: a base, a spinning machine body and a vertical block fixedly connected to the top of the base, an abutment fixedly connected to one side of the spinning machine body, a base plate slidably connected to the outer side of the vertical block, a movable plate slidably connected to the inner wall of the bottom of the base plate, two inclined bars slidably connected to the inner side of the movable plate, and clamping plates fixedly connected to the other ends of the two inclined bars, an abutment plate slidably connected to the inner side of the base plate, two springs fixedly connected to one side of the abutment plate, and one side of each of the two springs fixedly connected to one side of the base plate, a groove adapted to the clamping plate being opened on the top of the base plate, the outer sides of the two clamping plates slidably connected to the inner side of the groove, a No. 4 motor fixedly connected to one side of the base plate, a No. 2 screw fixedly connected to the output end of the No. 4 motor, the outer side of the No. 2 screw being rotatably connected to the inner wall of one side of the base plate, and the outer side of the No. 2 screw being threadedly connected to the inner side of the movable plate.

[0007] Preferably, a first block is fixedly connected to the top of the base, a third motor is fixedly connected to one side of the first block, a rotating plate is fixedly connected to the output end of the third motor, and the outer side of the rotating plate is rotatably connected to the inner side of the first block. A second block is provided on the top of the base, and the second block is threadedly connected to the inner side of the rotating plate by multiple bolts. A circular material is provided on one side of the second block.

[0008] Preferably, a second motor is fixedly connected to the top of the base, a flat plate is fixedly connected to the output end of the second motor, an electric push rod is fixedly connected to one side of the flat plate, and a vacuum suction cup is fixedly connected to the output end of the electric push rod.

[0009] Preferably, a No. 1 motor is fixedly connected to one side of the vertical block, and a No. 1 screw is fixedly connected to the output end of the No. 1 motor. The outer side of the No. 1 screw is threadedly connected to the inner side of the base plate, and the outer side of the No. 1 screw is rotatably connected to the inner side of the base.

[0010] Preferably, a measuring ruler is fixedly connected to one side of the vertical block.

[0011] Preferably, a controller is fixedly connected to one side of the base, and the controller is electrically connected to motor one, vacuum suction cup, motor two, and motor three.

[0012] In this utility model, a fully automatic positioning spinning machine device is described. By moving the abutment plate, the spring begins to compress. Then, the second block is placed in the interlayer between the abutment plate and one side of the base plate. The movement of the abutment plate is stopped. Under the force of the spring, the round material can be simply clamped by the abutment plate. Then, the fourth motor is started, causing the second screw to start rotating. This causes the moving plate to slide inside the base plate, which causes the inclined bar to move and drive the two clamping plates to move closer to each other. Although the spring clamps the round material from both sides at this time, the elastic coefficient of the spring itself can satisfy the short displacement of the round material itself when the clamping plates clamp the round material. At this time, the round material can be fixed. Then, the controller is used to start the first motor. Since the round material is round, the user can input the size parameter of the round material into the controller. The ratio of the round material to the second block when their centers coincide is determined.

[0013] In this utility model, a fully automatic positioning spinning machine device is described. The controller operates a first motor, causing the first screw to rotate. This causes the base plate to move vertically. When the base plate moves to a suitable height, the center of the circular material completely coincides with the second block, thus completing the automatic positioning of the device. Then, the electric push rod is activated, causing the vacuum suction cup to approach and fix the circular material. At this point, the circular material is completely fixed between the vacuum suction cup and the second block. Furthermore, the user removes the fixing plates and clamps, restoring the material to its original position. Next, the second and third motors are activated, causing the circular material to rotate. Then, the spinning machine body is activated, using the spinning machine body to control the abutment joint to process the circular material. The spinning machine body is a common spinning machine model found on the market.

[0014] This utility model has a reasonable structural design. Through the cooperation between the inclined bar, the moving plate, the spring and the No. 2 screw, the round material can be automatically positioned during processing. This eliminates the need for repeated trial processing of the material, thereby saving costs. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of a fully automatic positioning spinning machine device proposed in this utility model;

[0016] Figure 2 This is a cross-sectional structural schematic diagram of a fully automatic positioning spinning machine device proposed in this utility model;

[0017] Figure 3 This is a schematic diagram of the No. 2 screw and inclined bar structure proposed in this utility model.

[0018] In the diagram: 1. Base; 2. Block 1; 3. Spinning machine body; 4. Abutment joint; 5. Motor 2; 6. Electric push rod; 7. Vacuum suction cup; 8. Round material; 9. Block 2; 11. Motor 3; 12. Rotating plate; 13. Motor 1; 14. Screw 1; 15. Base plate; 16. Controller; 17. Motor 4; 18. Screw 2; 19. Moving plate; 20. Diagonal bar; 21. Clamping plate; 22. Abutment plate. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0020] Reference Figure 1-3A fully automatic positioning spinning machine device includes: a base 1, a spinning machine body 3 and a vertical block fixedly connected to the top of the base 1, and an abutment 4 fixedly connected to one side of the spinning machine body 3; a base plate 15 slidably connected to the outer side of the vertical block; a movable plate 19 slidably connected to the inner wall of the bottom of the base plate 15; two inclined bars 20 slidably connected to the inner side of the movable plate 19, and clamping plates 21 fixedly connected to the other ends of the two inclined bars 20; and an abutment plate 22 slidably connected to the inner side of the base plate 15. Two springs are fixedly connected to one side, and both springs are fixedly connected to one side of the base plate 15. The top of the base plate 15 is provided with a sliding groove that matches the clamping plate 21. The outer sides of the two clamping plates 21 are slidably connected to the inner side of the sliding groove. A No. 4 motor 17 is fixedly connected to one side of the base plate 15. The output end of the No. 4 motor 17 is fixedly connected to a No. 2 screw 18. The outer side of the No. 2 screw 18 is rotatably connected to the inner wall of one side of the base plate 15. The outer side of the No. 2 screw 18 is threadedly connected to the inner side of the moving plate 19.

[0021] In this embodiment, a first block 2 is fixedly connected to the top of the base 1. A third motor 11 is fixedly connected to one side of the first block 2. A rotating plate 12 is fixedly connected to the output end of the third motor 11. The outer side of the rotating plate 12 is rotatably connected to the inner side of the first block 2. A second block 9 is provided on the top of the base 1. The second block 9 is threadedly connected to the inner side of the rotating plate 12 by multiple bolts. A circular material 8 is provided on one side of the second block 9. A second motor 5 is fixedly connected to the top of the base 1. A flat plate is fixedly connected to the output end of the second motor 5. An electric push rod 6 is fixedly connected to one side of the flat plate. A vacuum suction cup 7 is fixedly connected to the output end of the electric push rod 6, which can fix the circular material 8.

[0022] In this embodiment, a No. 1 motor 13 is fixedly connected to one side of the vertical block, and a No. 1 screw 14 is fixedly connected to the output end of the No. 1 motor 13. The outer side of the No. 1 screw 14 is threadedly connected to the inner side of the base plate 15, and the outer side of the No. 1 screw 14 is rotatably connected to the inner side of the base 1. A measuring ruler is fixedly connected to one side of the vertical block, and a controller 16 is fixedly connected to one side of the base 1. The controller 16 is electrically connected to the No. 1 motor 13, the vacuum suction cup 7, the No. 2 motor 5, and the No. 3 motor 11, so that the user can control the device.

[0023] In this embodiment, during use, by moving the abutment plate 22, the spring begins to compress. Then, the second block 9 is placed in the interlayer between the abutment plate 22 and one side of the base plate 15. Moving the abutment plate 22 stops. Under the force of the spring, the circular material 8 can be simply clamped by the abutment plate 22. Then, the fourth motor 17 is started, causing the second screw 18 to rotate. This causes the moving plate 19 to slide inside the base plate 15, causing the inclined bar 20 to move and move the two clamping plates 21 closer together. Although the spring clamps the circular material 8 left and right at this moment, the spring's elastic coefficient is sufficient to allow the circular material 8 to undergo a brief displacement when the clamping plates 21 clamp it. After the circular material 8 is fixed in place, the controller 16 is used to start the first motor 13. Since the circular material 8 is circular, the user can input the size parameter of the circular material 8 into the controller 16. The ratio at which the center of the circular material 8 coincides with that of the second block 9 is determined by the controller 16, which controls the first motor 13 to rotate the first screw 14. This causes the base plate 15 to move vertically. When the base plate 15 moves to the appropriate height, the center of the circular material 8 completely coincides with that of the second block 9, thus completing the automatic positioning of the device. Subsequently, the electric push rod 6 is activated, causing the vacuum suction cup 7 to approach the circular material 8 and fix it in place. At this point, the circular material 8 is completely fixed between the vacuum suction cup 7 and the second block 9. Furthermore, the user removes the fixing provided by the abutment plate 22 and the clamping plate 21, restoring it to its original position. Then, the second motor 5 and the third motor 11 are activated, causing the circular material 8 to start rotating. Subsequently, the spinning machine body 3 is activated, and the abutment joint 4 is controlled by the spinning machine body 3 to process the circular material 8. The spinning machine body 3 is a common spinning machine model on the market.

[0024] The above provides a detailed description of the fully automatic positioning spinning machine device provided by this utility model. Specific embodiments have been used to illustrate the principle and implementation of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the method and core idea of ​​this utility model. It should be noted that those skilled in the art can make several improvements and modifications to this utility model without departing from the principle of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.

Claims

1. A fully automatic positioning spinning machine device, characterized in that, include: A base (1) is fixedly connected to the top of the base (1) with a spinning machine body (3) and a vertical block. A stop joint (4) is fixedly connected to one side of the spinning machine body (3). A base plate (15) is slidably connected to the outside of the vertical block. A movable plate (19) is slidably connected to the inner wall of the bottom of the base plate (15). Two diagonal strips (20) are slidably connected to the inner side of the movable plate (19). A clamping plate (21) is fixedly connected to the other end of each of the two diagonal strips (20). An abutment plate (22) is slidably connected to the inner side of the base plate (15). A stop joint (22) is fixedly connected to one side of the abutment plate (22). There are two springs, and one side of each spring is fixedly connected to one side of the base plate (15). The top of the base plate (15) is provided with a sliding groove that matches the clamping plate (21). The outer sides of the two clamping plates (21) are slidably connected to the inner side of the sliding groove. A fourth motor (17) is fixedly connected to one side of the base plate (15). The output end of the fourth motor (17) is fixedly connected to a second screw (18). The outer side of the second screw (18) is rotatably connected to the inner wall of one side of the base plate (15). The outer side of the second screw (18) is threadedly connected to the inner side of the moving plate (19).

2. The fully automatic positioning spinning machine device according to claim 1, characterized in that, A first block (2) is fixedly connected to the top of the base (1). A third motor (11) is fixedly connected to one side of the first block (2). A rotating plate (12) is fixedly connected to the output end of the third motor (11). The outer side of the rotating plate (12) is rotatably connected to the inner side of the first block (2). A second block (9) is provided on the top of the base (1). The second block (9) is threadedly connected to the inner side of the rotating plate (12) by multiple bolts. A circular material (8) is provided on one side of the second block (9).

3. The fully automatic positioning spinning machine device according to claim 1, characterized in that, A second motor (5) is fixedly connected to the top of the base (1). A flat plate is fixedly connected to the output end of the second motor (5). An electric push rod (6) is fixedly connected to one side of the flat plate. A vacuum suction cup (7) is fixedly connected to the output end of the electric push rod (6).

4. The fully automatic positioning spinning machine device according to claim 1, characterized in that, A motor (13) is fixedly connected to one side of the vertical block. A screw (14) is fixedly connected to the output end of the motor (13). The outer side of the screw (14) is threaded to the inner side of the base plate (15), and the outer side of the screw (14) is rotatably connected to the inner side of the base (1).

5. The fully automatic positioning spinning machine device according to claim 1, characterized in that, A measuring ruler is fixedly connected to one side of the vertical block.

6. The fully automatic positioning spinning machine device according to claim 1, characterized in that, A controller (16) is fixedly connected to one side of the base (1), and the controller (16) is electrically connected to the first motor (13), the vacuum suction cup (7), the second motor (5) and the third motor (11).