Guiding and positioning device of automatic cutting sleeve pre-assembling machine

By introducing a guiding and positioning device into the automatic ferrule pre-loading machine, and using components such as sliding blocks and guide rods to achieve precise clamping and transportation of materials, the problem of material transmission deviation is solved, and production efficiency and stability are improved.

CN224169152UActive Publication Date: 2026-04-28NINGBO KUNCHENG MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO KUNCHENG MASCH CO LTD
Filing Date
2025-05-06
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing automatic ferrule pre-loading machines lack precision in the material guiding process, leading to material transfer deviations. This can cause collisions between the processing equipment and the materials, increasing costs and reducing production efficiency.

Method used

The guiding and positioning device, which includes a fixed base plate, a pushing component, and a transport component, uses components such as sliding blocks, guide rods, and drive motors to achieve precise clamping, positioning, and transport of materials. Through the cooperation of sliding columns and guide rods, it ensures stable movement and precise processing of materials within the ferrule machine.

Benefits of technology

It achieves precise positioning and stable transportation of materials within the ferrule machine, avoiding material damage and equipment collisions, and improving the stability and efficiency of the production process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a guiding and positioning device of an automatic cutting sleeve pre-assembling machine, and belongs to the technical field of cutting sleeve machines. Comprising a pushing assembly, the pushing assembly is arranged at the top of a fixed bottom plate, the pushing assembly comprises a second sliding block arranged at the top of the fixed bottom plate, a fixed shell is fixed to the top of the second sliding block, an open groove is formed in the fixed shell, a sliding column is arranged on the fixed shell through the open groove, and a first connecting shaft is arranged at the other end of the sliding column; a second clamping plate is fixed to the first connecting shaft, a second sliding block can slide on the fixing bottom plate, a fixing shell at the top of the second sliding block supports other parts, a groove of the fixing shell is used for installing a sliding column, the sliding column can slide in the groove, and the sliding column is connected with the second clamping plate through the first connecting shaft. And the supporting plates are fixed to the two sides of the top of the second sliding block and provide installation positions for the third driving motor, and the third driving motor serves as a power source and drives the sliding column to slide in the open groove.
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Description

Technical Field

[0001] This utility model relates to the field of card sleeve machine technology, and in particular to a guide and positioning device for an automatic card sleeve pre-loading machine. Background Technology

[0002] The automatic ferrule pre-assembly machine can accurately and efficiently complete the ferrule pre-assembly task. Through an automated mechanical structure, it quickly grasps the ferrule and accurately installs it onto the corresponding component, significantly improving production efficiency and reducing the time and effort spent on manual operation. At the same time, its standardized operation ensures stable pre-assembly quality, reduces the defect rate, and lays a solid foundation for the production of related products.

[0003] However, existing automatic ferrule preloading machines have significant defects in the material guiding process. Their guiding mechanism is not precisely designed, making it prone to deviations during material transport. These deviations not only cause material misalignment during processing but also frequently lead to abnormal collisions between the processing equipment and the material, resulting in material damage, increased costs, and reduced production efficiency, severely impacting the stability and efficiency of the overall production process.

[0004] Therefore, this application provides a guide and positioning device for an automatic card sleeve pre-loading machine to meet the requirements. Utility Model Content

[0005] The purpose of this invention is to address the shortcomings of existing technologies by proposing a guiding and positioning device for an automatic card sleeve pre-loading machine.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: a guide and positioning device for an automatic pre-loading machine for card sleeves, comprising:

[0007] Fixed base plate;

[0008] A pushing component is placed on top of a fixed base plate. The pushing component includes a second sliding block disposed on top of the fixed base plate. A fixed shell is fixed on top of the second sliding block. A slot is provided on the fixed shell. A sliding column is disposed on the fixed shell through the slot. A first connecting shaft is disposed at the other end of the sliding column. A second clamping plate is fixed on the first connecting shaft. Support plates are fixed on both sides of the top of the second sliding block. A third drive motor is disposed on one side of the support plate.

[0009] A transport assembly is positioned on a fixed base plate away from the pushing assembly. The transport assembly includes a fixed block fixed to the top of the fixed base plate, a first guide rod disposed between the fixed blocks, a first connecting plate fixed to the side of the fixed block away from the first guide rod, a lead screw disposed on the first connecting plate, a first drive motor fixed to one end of the lead screw, a first sliding block slidably disposed on the first drive motor, a telescopic rod fixed to the top of the first sliding block, and a fixed seat fixed to the top of the telescopic rod.

[0010] Furthermore, a fixing shaft is fixed to the top of the fixing shell, a third connecting plate is fixed to one end of the fixing shaft, a second connecting shaft is fixed to the other end of the third connecting plate, and the other end of the second connecting shaft is fixed to both sides of the second clamping plate.

[0011] The beneficial effects of adopting the above-mentioned further solution are: the fixed shaft at the top of the fixed shell provides a support point for the third connecting plate. One end of the third connecting plate is connected to the fixed shaft, and the other end is connected to the second connecting shaft. The second connecting shaft is fixed on both sides of the second clamping plate, ensuring stable movement of the second clamping plate and achieving a precise clamping effect when the sliding column drives the second clamping plate to move.

[0012] Furthermore, a sliding groove is provided on the top of the fixed base plate, and a second guide rod is provided inside the sliding groove. A second drive motor is fixed to one end of the second guide rod, and the second sliding block is slidably disposed on the second guide rod.

[0013] The beneficial effects of adopting the above-mentioned further solution are: the sliding slot at the top of the fixed base plate accommodates the second guide rod, one end of the second guide rod is connected to the second drive motor, after the second drive motor starts, it drives the second guide rod to rotate, the second sliding block is sleeved on the second guide rod, and it rotates with the guide rod to achieve smooth sliding along the second guide rod, achieving the effect of precise displacement, so that the material can be transported into the ferrule machine for processing.

[0014] Furthermore, a snap-fit ​​soft pad is fixed to the top of the fixing base, a driving power supply is fixed to the outside of the fixing base, a push rod is provided on one side of the driving power supply, and a second connecting plate is provided on the other side of the push rod.

[0015] The advantages of adopting the above-mentioned further solution are: the snap-fit ​​soft pad on the top of the fixing base is used to gently contact the item to be fixed. The drive power supply powers the push rod. After the push rod is activated, it pushes the second connecting plate to achieve stable snap-fit ​​fixing of the item, ensuring the stability of the item's position during transportation.

[0016] Furthermore, a damping spring is provided on the other side of the second connecting plate, and a first clamping plate is provided on the other side of the damping spring.

[0017] The beneficial effects of adopting the above-mentioned further solution are: the second connecting plate connects the push rod and the damping spring, the damping spring buffers the transmission of force, and drives the first clamping plate to gently clamp the item, thereby stabilizing the item and preventing collision damage during transportation.

[0018] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0019] 1. The second sliding block can slide on the fixed base plate. The fixed shell on its top provides support for other components. The slot of the fixed shell is used to install the sliding column, so that the sliding column can slide in the slot. The sliding column is connected to the second clamping plate through the first connecting shaft. When the sliding column slides, it can drive the second clamping plate to move. The support plate is fixed on both sides of the top of the second sliding block to provide an installation position for the third drive motor. The third drive motor is used as a power source to drive the sliding column to slide in the slot, thereby enabling the second clamping plate to move. In this way, the second clamping plate can clamp or push the target object, achieving the effect of positioning, transporting or operating the object.

[0020] 2. The transport component is located on the side of the fixed base plate away from the push component. It is mainly used for transporting objects. The fixed block is fixed to the top of the fixed base plate and provides support. The first guide rod between them provides guidance for the movement of the first sliding block. The first connecting plate is fixed to one side of the fixed block and is used to install the lead screw. The lead screw is driven to rotate by the first drive motor, which drives the first sliding block to slide on the first guide rod. The telescopic rod at the top of the first sliding block can be adjusted in height. The fixed seat at the top is used to place the object to be transported. When in use, the first drive motor is started, which makes the lead screw rotate and drives the first sliding block to move along the first guide rod. At the same time, the telescopic rod can adjust the height of the fixed seat, thereby realizing the transport of objects at different positions and heights. Attached Figure Description

[0021] Figure 1 This is a front view of a guide and positioning device for an automatic card sleeve pre-loading machine according to the present invention;

[0022] Figure 2 This is a structural diagram of the pushing component in the guiding and positioning device of an automatic card sleeve pre-loading machine according to the present invention;

[0023] Figure 3 This is a structural diagram of the transport component in the guide and positioning device of an automatic card sleeve pre-loading machine according to the present invention;

[0024] Figure 4 This is a cross-sectional view of the transport component in the guide and positioning device of an automatic card sleeve pre-loading machine according to this utility model.

[0025] Figure Labels

[0026] 1. Fixed base plate; 2. Compression fitting machine;

[0027] 3. Transport components; 31. Fixing block; 32. First connecting plate; 33. First guide rod; 34. First sliding block; 35. Telescopic rod; 36. Fixing seat; 37. Snap-fit ​​pad; 38. First clamping plate; 39. Drive power supply; 310. Lead screw; 311. Damping spring; 312. First drive motor; 313. Push rod; 314. Second connecting plate;

[0028] 4. Sliding groove;

[0029] 5. Pushing component; 51. Second sliding block; 52. Second guide rod; 53. Second drive motor; 54. Support plate; 55. Fixed shell; 56. Sliding column; 57. First connecting shaft; 58. Second clamping plate; 59. Fixed shaft; 510. Second connecting shaft; 511. Third connecting plate; 512. Third drive motor. Detailed Implementation

[0030] 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.

[0031] like Figure 1 - Figure 4 As shown, this utility model provides a technical solution: a guide and positioning device for an automatic pre-loading machine for card sleeves, comprising: a fixed base plate 1;

[0032] Pushing component 5 is placed on top of fixed base plate 1. Pushing component 5 includes a second sliding block 51 disposed on top of fixed base plate 1. A fixed shell 55 is fixed to the top of the second sliding block 51. A slot is opened on the fixed shell 55, and a sliding post 56 is disposed through the slot. A first connecting shaft 57 is disposed at the other end of the sliding post 56. A second clamping plate 58 is fixed on the first connecting shaft 57. Support plates 54 are fixed on both sides of the top of the second sliding block 51. A third drive motor 512 is disposed on one side of the support plate 54. The second sliding block 51 can slide on the fixed base plate 1. The fixed shell 55 on its top provides support for other components. The slot of the fixed shell 55 is used to install the sliding column 56, so that the sliding column 56 can slide in the slot. The sliding column 56 is connected to the second clamping plate 58 through the first connecting shaft 57. When the sliding column 56 slides, it can drive the second clamping plate 58 to move. The support plate 54 is fixed on both sides of the top of the second sliding block 51, providing an installation position for the third drive motor 512. The third drive motor 512 serves as a power source to drive the sliding column 56 to slide in the slot, thereby enabling the second clamping plate 58 to move. In this way, the second clamping plate 58 can clamp or push the target object, achieving the effect of positioning, transporting or operating the object.

[0033] The transport component 3 is located on the side of the fixed base plate 1 away from the pushing component 5. The transport component 3 includes a fixing block 31 fixed to the top of the fixed base plate 1, a first guide rod 33 disposed between the fixing blocks 31, and a first connecting plate 32 fixed to the side of the fixing blocks 31 away from the first guide rod 33. A lead screw 310 is disposed on the first connecting plate 32, and a first drive motor 312 is fixed to one end of the lead screw 310. A first sliding block 34 is slidably disposed on the first drive motor 312, and a telescopic rod 35 is fixed to the top of the first sliding block 34. A fixing seat 36 is fixed to the top of the telescopic rod 35. The transport component 3 is located on the side of the fixed base plate 1 away from the pushing component 5 and is mainly used for transporting objects. The fixing block 31 is fixed... The first guide rod 33, fixed to the top of the fixed base plate 31, provides guidance for the movement of the first sliding block 34. The first connecting plate 32 is fixed to one side of the fixed block 31 and is used to install the lead screw 310. The lead screw 310 is driven to rotate by the first drive motor 312, which drives the first sliding block 34 to slide on the first guide rod 33. The telescopic rod 35 at the top of the first sliding block 34 is height adjustable. The fixed seat 36 at the top is used to place the object to be transported. When in use, the first drive motor 312 is started, causing the lead screw 310 to rotate, which drives the first sliding block 34 to move along the first guide rod 33. At the same time, the telescopic rod 35 can adjust the height of the fixed seat 36, thereby realizing the transport of the object at different positions and heights.

[0034] Furthermore, such as Figure 1 - Figure 3As shown: A fixed shaft 59 is fixed to the top of the fixed housing 55. A third connecting plate 511 is fixed to one end of the fixed shaft 59, and a second connecting shaft 510 is fixed to the other end of the third connecting plate 511. The other end of the second connecting shaft 510 is fixed to both sides of the second clamping plate 58. The fixed shaft 59 at the top of the fixed housing 55 provides a support point for the third connecting plate 511. One end of the third connecting plate 511 is connected to the fixed shaft 59, and the other end is connected to the second connecting shaft 510. The second connecting shaft 510 is fixed to both sides of the second clamping plate 58. When the sliding column 56 moves the second clamping plate 58, it ensures the stable movement of the second clamping plate 58 and achieves a precise clamping effect.

[0035] The above solutions also have issues with material transportation, such as... Figure 1 - Figure 4 As shown: In this solution, a sliding groove 4 is provided on the top of the fixed base plate 1. A second guide rod 52 is provided inside the sliding groove 4. A second drive motor 53 is fixed to one end of the second guide rod 52. A second sliding block 51 is slidably disposed on the second guide rod 52. The sliding groove 4 on the top of the fixed base plate 1 accommodates the second guide rod 52. One end of the second guide rod 52 is connected to the second drive motor 53. After the second drive motor 53 is started, it drives the second guide rod 52 to rotate. The second sliding block 51 is sleeved on the second guide rod 52 and rotates with it to achieve smooth sliding along the second guide rod 52, achieving the effect of precise displacement, so that the material can be transported to the ferrule machine 2 for processing.

[0036] like Figure 1 - Figure 4As shown, the second sliding block 51 slides on the fixed base plate 1, laying the foundation for adjusting the position of the pushing component 5. Its top fixed shell 55 supports other components. The fixed shell 55 has a slot for the sliding column 56 to slide. The sliding column 56 is connected to the second clamping plate 58 via the first connecting shaft 57, driving it to move. The support plate 54 is fixed on both sides of the top of the second sliding block 51 and a third drive motor 512 is installed. The third drive motor 512 drives the sliding column 56, allowing the second clamping plate 58 to move precisely to clamp or push objects for positioning, transportation, operation, etc. The fixed shaft 59 at the top of the fixed shell 55 supports the third connecting plate 511. The third connecting plate 511 is connected to the second connecting shaft 510. The second connecting shaft 510 is fixed on both sides of the second clamping plate 58 to ensure stable movement and precise clamping. The transportation component 3 is located on the side of the fixed base plate 1 away from the pushing component 5. The fixed block 31 is fixed on the top of the fixed base plate 1 to support the transportation component 3. The first guide rod 33 between the fixed blocks 31 guides the first sliding block 34. The first connecting plate 32 is equipped with a lead screw on one side of the fixed block 31. 310, the lead screw 310 is driven by the first drive motor 312, which drives the first sliding block 34 to slide on the first guide rod 33. The telescopic rod 35 at the top of the first sliding block 34 is height adjustable. The object to be transported is placed on the fixed seat 36 at its top. When the first drive motor 312 is started, the lead screw 310 rotates. Combined with the height adjustment of the telescopic rod 35, the object can be transported at different positions and heights. The top sliding slot 4 of the fixed base plate 1 accommodates the second guide rod 52. One end of the second guide rod 52 is connected to the second drive motor 53. When it rotates, it drives the sleeve The second sliding block 51 slides on it to achieve precise displacement, and the material is sent to the clamping machine 2 for processing. In the transport component 3, the top of the fixed seat 36 is clamped with a soft pad 37 to gently contact the item and prevent hard damage. The drive power supply 39 supplies power to the push rod 313. The push rod 313 pushes the second connecting plate 314 to achieve stable clamping and fixing of the item. The second connecting plate 314 connects the push rod 313 and the damping spring 311. The damping spring 311 buffers the force transmission and drives the first clamping plate 38 to gently clamp the item, stabilizing the item and preventing damage from transportation collisions.

[0037] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A guiding and positioning device for an automatic card sleeve pre-loading machine, characterized in that, include: Fixed base plate (1); A pushing component (5) is placed on top of a fixed base plate (1). The pushing component (5) includes a second sliding block (51) disposed on top of the fixed base plate (1). A fixed shell (55) is fixed on the top of the second sliding block (51). A slot is provided on the fixed shell (55). A sliding column (56) is provided on the fixed shell (55) through the slot. A first connecting shaft (57) is provided at the other end of the sliding column (56). A second clamping plate (58) is fixed on the first connecting shaft (57). Support plates (54) are fixed on both sides of the top of the second sliding block (51). A third drive motor (512) is provided on one side of the support plate (54). A transport component (3) is placed on the side of the fixed base plate (1) away from the push component (5). The transport component (3) includes a fixed block (31) fixed to the top of the fixed base plate (1). A first guide rod (33) is arranged between the fixed blocks (31). A first connecting plate (32) is fixed on the side of the fixed block (31) away from the first guide rod (33). A lead screw (310) is arranged on the first connecting plate (32). A first drive motor (312) is fixed at one end of the lead screw (310). A first sliding block (34) is slidably arranged on the first drive motor (312). A telescopic rod (35) is fixed at the top of the first sliding block (34). A fixed seat (36) is fixed at the top of the telescopic rod (35).

2. The guiding and positioning device for an automatic card sleeve pre-loading machine according to claim 1, characterized in that, The top of the fixed shell (55) is fixed with a fixed shaft (59), one end of the fixed shaft (59) is fixed with a third connecting plate (511), the other end of the third connecting plate (511) is fixed with a second connecting shaft (510), and the other end of the second connecting shaft (510) is fixed with both sides of the second clamping plate (58).

3. The guiding and positioning device for an automatic card sleeve pre-loading machine according to claim 1, characterized in that, The top of the fixed base plate (1) is provided with a sliding groove (4), and a second guide rod (52) is provided inside the sliding groove (4). A second drive motor (53) is fixed at one end of the second guide rod (52), and the second sliding block (51) is slidably disposed on the second guide rod (52).

4. The guiding and positioning device for an automatic card sleeve pre-loading machine according to claim 1, characterized in that, The top of the fixed base (36) is fixed with a snap-fit ​​soft pad (37), and the outside of the fixed base (36) is fixed with a drive power supply (39). A push rod (313) is provided on one side of the drive power supply (39), and a second connecting plate (314) is provided on the other side of the push rod (313).

5. The guiding and positioning device for an automatic card sleeve pre-loading machine according to claim 4, characterized in that, A damping spring (311) is provided on the other side of the second connecting plate (314), and a first clamping plate (38) is provided on the other side of the damping spring (311).

6. The guiding and positioning device for an automatic card sleeve pre-loading machine according to claim 1, characterized in that, The fixed base plate (1) is fixed with a ferrule machine (2) on the side away from the transport component (3).