Guide sleeve assembly feeding assembly for nozzle assembly

By designing the limiting mechanism during the nozzle assembly process, the problem of inaccurate clamping of the guide sleeve is solved, resulting in the inability to accurately clamp the jaws, and a more efficient and accurate assembly process is achieved.

CN222831090UActive Publication Date: 2025-05-06SICHUAN ZHENGDIXIN TECH CO LTD
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Patent Information

Application Number
CN202421507783.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-05-06
Estimated Expiration
2034-06-28

AI Technical Summary

Technical Problem

During the nozzle assembly process, the guide sleeve will tilt when it is not limited to both sides, resulting in the clamping jaws being unable to be accurately clamped, affecting assembly efficiency and accuracy.

Method used

A feeding assembly for nozzle assembly is designed, including a vibration disc, feeding track and limiting mechanism. The limiting mechanism consists of a directional guide rod, a movable connecting plate, a limiting plate, a bidirectional threaded screw and a handle. By adjusting the position of the limiting plate, limiting the two sides of the guide sleeve is achieved.

Benefits of technology

Through the design of the limiting mechanism, the position of the limiting plate can be adjusted according to the size of the guide sleeve, preventing the guide sleeve from tipping, ensuring that the jaws can be accurately clamped, and improving assembly efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of nozzle assembling, and discloses a guide sleeve assembly feeding assembly for nozzle assembling, which comprises a vibration disc, a feeding track and a limiting mechanism, the feeding track is in bolted connection with the outer wall of a discharge port of the vibration disc, the limiting mechanism is arranged on the feeding track, and the feeding track is in bolted connection with the outer wall of the discharge port of the vibration disc. The limiting mechanism comprises a trend guide rod arranged on the feeding track, a movable connecting plate connected to the trend guide rod in a sliding mode and limiting plates welded to the movable connecting plate, the limiting plates are arranged below the trend guide rod, and the limiting plates are arranged on the two sides of the interior of the feeding track. By arranging the feeding track, the trend guide rod, the movable connecting plate and the limiting plate, the positions of the limiting plate on the two sides of the interior of the feeding track are adjusted according to the sizes of the batch of guide sleeves in the stable guide sleeve conveying process of the feeding track, and therefore it is guaranteed that the two sides of the guide sleeves are limited in the guide sleeve moving process; therefore, the toppling phenomenon is avoided.
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Description

Technical Field

[0001] The present application relates to the technical field of nozzle assembly, and in particular to a guide sleeve assembly feeding component for nozzle assembly. Background Art

[0002] Nozzle assembly machines are special equipment used for automatic or semi-automatic assembly of nozzles. These machines are usually characterized by high precision and high efficiency, and can accurately assemble the various components of the nozzle according to preset procedures and parameters, so as to achieve fast, accurate and reliable assembly of the nozzle. The specific functions and features of nozzle assembly machines may vary depending on different models and manufacturers, but in general, they all include the following main parts: Feeding system: responsible for feeding the various components of the nozzle (such as nozzle body, nozzle core, sealing ring, etc.) into the assembly station in sequence. Positioning and clamping device: ensure that each component can be accurately positioned during the assembly process and fixed by a clamping device to prevent movement or misalignment. Assembly mechanism: includes various drive devices and actuators used to assemble the components together. This may involve operations such as pressing, rotating, and clamping. Detection and control system: through sensors and control systems, the assembly process is monitored and adjusted in real time to ensure assembly quality and efficiency. In addition, some advanced nozzle assembly machines may also be equipped with auxiliary functions such as visual recognition systems and automatic cleaning devices to further improve the accuracy and efficiency of assembly.

[0003] When loading the guide sleeve part in the nozzle, the material is stably transported to the specified position through the vibration plate, and then clamped by the clamp. Finally, the movement of the clamp drives the guide sleeve to load stably. When assembling the nozzle, the nozzle has different sizes and models. During the conveying process of the guide sleeve, the guide sleeve will fall over when it is not limited on both sides, resulting in the inability of the subsequent clamp to clamp accurately. Utility Model Content

[0004] The purpose of the present application is to provide a guide sleeve assembly feeding component for nozzle assembly, so as to solve the problem raised in the above background technology that when the nozzles are assembled, the nozzles have different sizes and models. During the conveying process of the guide sleeve, the guide sleeve will tip over when it is not limited on both sides, resulting in the inability of subsequent clamps to clamp accurately.

[0005] To achieve the above-mentioned objectives, the present application provides the following technical solutions: a guide sleeve assembly feeding component for nozzle assembly, comprising: a vibration plate, a feeding track and a limiting mechanism, the feeding track is bolted to the outer wall of the discharge port of the vibration plate, the limiting mechanism is arranged on the feeding track, the limiting mechanism comprises a direction guide rod arranged on the feeding track, a movable connecting plate slidably connected to the direction guide rod and a limiting plate welded to the movable connecting plate, a horizontal threaded hole is opened in the central part of the movable connecting plate, the limiting plate is arranged below the direction guide rod, and the limiting plate is arranged on both sides of the inside of the feeding track.

[0006] By adopting the above technical solution, the two sides of the guide sleeve can be limited according to the size of the guide sleeve.

[0007] Preferably, the limiting mechanism also includes connecting guide columns connected to both sides of the outer wall of the feeding track through flange bolts and an installation fixing plate connected to the other end of the connecting guide columns through flange bolts, the installation fixing plates are arranged on both sides of the outer wall of the feeding track, the direction guide rod is welded to the inner side of the installation fixing plate, and a circular hole is opened in the center part of the installation fixing plate.

[0008] By adopting the above technical solution, a stable connection between structures is achieved.

[0009] Preferably, the limiting mechanism also includes a bidirectional threaded screw arranged in the circular hole of the mounting fixed plate, which is used to make the bidirectional threaded screw rotate around its axis, and the bidirectional threaded screw is arranged in the horizontal threaded hole of the movable connecting plate, and the bidirectional threaded screw is on the same horizontal line as the direction guide rod.

[0010] By adopting the above technical solution, the structure on the rod can be driven to stably move.

[0011] Preferably, the limiting mechanism further comprises a handle which is fixedly engaged with the central part of the bidirectional threaded screw, and the handle is arranged on the inner side of the movable connecting plate.

[0012] By adopting the above technical solution, the handle is held and rotated, thereby driving the structure connected to the handle to rotate synchronously.

[0013] Preferably, the guide sleeve assembly feeding component for nozzle assembly further includes: a direct vibration feeder, which is arranged below the feeding track, and a support rod including a base is bolted below the direct vibration feeder.

[0014] By adopting the above technical solution, the material can be moved out of the container by utilizing the vibration principle, and then the material can be transported to another container through the rotating bearing.

[0015] Preferably, the guide sleeve assembly feeding component for nozzle assembly also includes: an offset cylinder, which is arranged at the other end of the feeding track, and the bottom bolt of the offset cylinder is connected to a support rod including a base.

[0016] By adopting the above technical solution, after feeding the material to the feeding port through direct vibration, it can be pushed by the front, rear, left and right cylinders to achieve the purpose of dislocation material distribution.

[0017] Preferably, the guide sleeve assembly feeding component for nozzle assembly also includes: a movable jaw, which is arranged at the discharge port of the offset cylinder, and the movable jaw is composed of a "Y" axis drive mechanism, a vertical drive mechanism on the "Y" axis drive mechanism and an electric jaw at the bottom of the vertical drive mechanism.

[0018] By adopting the above technical solution, the guide sleeve clamped below can be driven to move synchronously during the displacement process by means of clamping.

[0019] In summary, the present application includes at least one of the following beneficial effects; by providing a feeding track, a guide rod, a movable connecting plate and a limit plate, during the stable transmission of the guide sleeve by the feeding track, the position of the limit plate on both sides of the feeding track is adjusted according to the size of the batch of guide sleeves, thereby ensuring that during the movement of the guide sleeve, the two sides of the guide sleeve are limited so that tipping does not occur. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 A schematic diagram of the three-dimensional structure of this application;

[0021] Figure 2 This is a schematic diagram of the three-dimensional structure of the limit mechanism of the present application;

[0022] Figure 3 For this application Figure 1 A partial enlarged structural diagram of point A;

[0023] Figure 4 This is a schematic diagram of the three-dimensional structure of the limiting mechanism of this application.

[0024] In the figure: 1. Vibrating plate; 2. Straight vibration feeder; 3. Feeding track; 4. Offset cylinder; 5. Movable clamping claw; 6. Limiting mechanism; 601. Connecting guide column; 602. Mounting fixing plate; 603. Walking guide rod; 604. Movable connecting plate; 605. Bidirectional threaded screw; 606. Handle; 607. Limiting plate. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.

[0026] The following is combined with Figure 1-4 The embodiments of the present application are described in further detail.

[0027] Example 1

[0028] See also Figure 1-Figure 4 , the utility model provides a technical solution: a guide sleeve assembly feeding component for nozzle assembly, comprising: a vibration plate 1, a feeding track 3 and a limiting mechanism 6;

[0029] Vibrating plate 1, the vibrating plate is a feeding device with automatic directional sorting. Its working principle is: using the electromagnetic vibrator to generate vibration, the material in the hopper moves forward on the spiral track, and automatically oriented and sorted, and finally the material is sent to the discharge port. The feeding track 3 is bolted to the outer wall of the discharge port of the vibrating plate 1. The vibrating plate 1 can stably transport the guide sleeve to the inside of the feeding track 3, so as to realize the subsequent output of the guide sleeve.

[0030] The limiting mechanism 6 is arranged on the feeding track 3. The limiting mechanism 6 can prevent the guide sleeve in the feeding track 3 from tipping over during the transportation process. The limiting mechanism 6 includes a connecting guide column 601 connected to both sides of the outer wall of the feeding track 3 by flange bolts. The connecting guide column 601 can provide the structure at the other end to be stably fixed on the outer wall of the feeding track 3. The mounting and fixing plate 602 is connected to the other end of the connecting guide column 601 by flange bolts. The mounting and fixing plate 602 can provide the inner structure to be stably connected and fixed above the feeding track 3, and a circular hole is opened in the center of the mounting and fixing plate 602, which can provide the internal structure to stably rotate inside the circular hole of the mounting and fixing plate 602. The direction guide rod 603 welded on the mounting and fixing plate 602 can be stably fixed on one side of the mounting and fixing plate 602, and the direction guide rod 603 can provide the structure outside the rod to be stably moved.

[0031] The movable connecting plate 604 is slidably connected to the walking guide rod 603. The movable connecting plate 604 can stably move in the horizontal direction through the walking guide rod 603, and in the process of displacement of the movable connecting plate 604, it can synchronously drive the lower structure to move. A horizontal threaded hole is provided in the central part of the movable connecting plate 604, which can drive the movable connecting plate 604 to stably move in the horizontal direction through the walking guide rod 603 during the subsequent rotation of the internal structure. The limit plate 607 welded on the movable connecting plate 604 can be synchronously displaced through the movable connecting plate 604, and in the process of displacement of the limit plate 607, the inner guide sleeve can be limited. The bidirectional threaded screw 605 is arranged in the circular hole of the mounting fixed plate 602. During the rotation process, the bidirectional threaded screw 605 can drive the movable connecting plate 604 to move stably by moving toward the guide rod 603, so as to make the bidirectional threaded screw 605 rotate around its axis. The bidirectional threaded screw 605 can limit the rotation when rotating, thereby improving the stability. The handle 606 is fixed in the middle part of the bidirectional threaded screw 605, and the handle 606 is arranged on the inner side of the movable connecting plate 604. During the rotation process, the handle 606 can synchronously drive the bidirectional threaded screw 605 to rotate.

[0032] According to the size of the guide sleeves of this batch, the position of the limit plate 607 on the feeding track 3 is adjusted, and the operator holds the handle 606 and rotates it. During the rotation of the handle 606, it can synchronously drive the bidirectional threaded screw 605 to stably rotate in the mounting plate 602 fixed by the connecting guide column 601. At this time, when the bidirectional threaded screw 605 rotates, it can drive the movable connecting plate 604 to move stably by moving toward the guide rod 603, so that the limit plate 607 at the bottom of the movable connecting plate 604 is adjusted to a suitable limit position, and a large number of guide sleeves are placed inside the vibration plate 1, and the guide sleeves are orderly and stably transported to the outside through the feeding track 3 through the vibration plate 1.

[0033] Example 2

[0034] See also Figure 1-Figure 4 , the utility model provides a technical solution: a guide sleeve assembly feeding component for nozzle assembly, comprising: a straight vibration feeder 2, a dislocation cylinder 4 and a movable clamping claw 5;

[0035] The direct vibration feeder 2 is arranged below the feeding track 3, and the direct vibration feeder 2 is composed of a vibration generator, a vibrator, a bracket and a conveying mechanism. The vibration generator is composed of a motor and a turbine, and the motor drives the turbine to rotate through a driving shaft. The eddy current generated by the turbine is transported to the vibrator. When the eddy current acts on the vibrator, the vibrator vibrates and generates a vibration force, thereby conveying the material out of the container. A support rod including a base is bolted to the bottom of the direct vibration feeder 2, which plays a role in stably supporting the direct vibration feeder 2 above. The offset cylinder 4 is arranged at the other end of the feeding track 3. The offset cylinder 4 refers to a special cylinder mechanism that can realize the function of offset material distribution. After the offset cylinder 4 passes through the straight vibration feeder 2 to the feeding port, it is pushed by the front, rear, left and right cylinders to achieve the purpose of offset material distribution, and the bottom bolt of the offset cylinder 4 is connected with a support rod including a base, which plays a role in stably supporting the upper offset cylinder 4. The movable clamp 5 is arranged at the discharge port of the offset cylinder 4. After the offset cylinder 4 transports the guide sleeve individually, the movable clamp 5 can conveniently drive the guide sleeve to perform feeding work, and the movable clamp 5 is composed of a "Y" axis driving mechanism, a vertical driving mechanism on the "Y" axis driving mechanism and an electric clamp at the bottom of the vertical driving mechanism. The movable clamp 5 can clamp the guide sleeve when displacing in the vertical direction, and then move in the "Y" axis direction to drive the guide sleeve to perform subsequent feeding work.

[0036] When the vibration plate 1 is working, it can transport the guide sleeve to the inside of the feeding track 3. At this time, the feeding track 3 is affected by the direct vibration feeder 2 below, so that the guide sleeve inside the feeding track 3 is transported in an orderly manner. At this time, the guide sleeve inside the feeding track 3 can be transported individually through the offset cylinder 4, and finally the movable clamp 5 is moved and clamped to drive the guide sleeve to move and load.

[0037] The implementation principle of a guide sleeve assembly feeding component for nozzle assembly of the present application is:

[0038] First, when using the guide sleeve assembly feeding component for the nozzle assembly, an external power supply is connected. Then, according to the size of the guide sleeves in this batch, the position of the limit plate 607 on the feeding track 3 is adjusted. The operator holds the handle 606 and rotates it. During the rotation of the handle 606, the bidirectional threaded screw 605 can be synchronously driven to stably rotate in the mounting plate 602 fixed by the connecting guide column 601. At this time, when the bidirectional threaded screw 605 rotates, it can drive the movable connecting plate 604 to move stably by moving toward the guide rod 603, thereby adjusting the limit plate 607 at the bottom of the movable connecting plate 604 to a suitable limit position, and placing a large number of guide sleeves into the interior of the vibration plate 1. The guide sleeves are stably transported to the outside through the feeding track 3 in an orderly manner through the vibration plate 1.

[0039] Secondly, when the vibration plate 1 is working, it can transport the guide sleeve to the inside of the feeding track 3. At this time, the feeding track 3 is affected by the direct vibration feeder 2 below, so that the guide sleeve inside the feeding track 3 is transported in an orderly manner.

[0040] Finally, at this time, the guide sleeve inside the feeding track 3 can be transported individually through the offset cylinder 4, and finally the movable clamping claw 5 is moved to clamp and drive the guide sleeve to move and load.

[0041] It is obvious to those skilled in the art that the present application is not limited to the details of the exemplary embodiments described above, and that the present application can be implemented in other specific forms without departing from the spirit or essential features of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting in all respects, and the scope of the present application is defined by the appended claims rather than the above description, and it is intended that all changes falling within the meaning and scope of the equivalent elements of the claims be included in the present application. Any reference numeral in a claim should not be regarded as limiting the claim to which it relates.

Claims

1. A guide sleeve assembly feeding component for nozzle assembly, characterized in that: include: Vibrating plate; A feeding track, wherein the feeding track is bolted to the outer wall of the discharge port of the vibration plate; A limiting mechanism is arranged on the outside of the feeding track, and the limiting mechanism includes a direction guide rod arranged directly above the feeding track, a movable connecting plate slidably connected to the direction guide rod, and a limiting plate welded to the movable connecting plate. A horizontal threaded hole is opened in the central part of the movable connecting plate, the limiting plate is arranged below the direction guide rod, and the limiting plates are arranged on both sides of the inside of the feeding track.

2. The guide sleeve assembly feeding component for nozzle assembly according to claim 1, characterized in that: The limiting mechanism also includes connecting guide columns connected to both sides of the outer wall of the feeding track through flange bolts and an installation fixing plate connected to the other end of the connecting guide columns through flange bolts. The installation fixing plates are arranged on both sides of the outer wall of the feeding track, the direction guide rod is welded to the inner side of the installation fixing plate, and a circular hole is opened in the center part of the installation fixing plate.

3. The guide sleeve assembly feeding component for nozzle assembly according to claim 2, characterized in that: The limiting mechanism also includes a bidirectional threaded screw arranged in the circular hole of the mounting plate, which is used to make the bidirectional threaded screw rotate around its axis. The bidirectional threaded screw is arranged in the horizontal threaded hole of the movable connecting plate, and the bidirectional threaded screw and the direction guide rod are on the same horizontal line.

4. The guide sleeve assembly feeding component for nozzle assembly according to claim 3, characterized in that: The limiting mechanism also includes a handle which is clamped and fixed on the central part of the bidirectional threaded screw rod, and the handle is arranged on the inner side of the movable connecting plate.

5. The guide sleeve assembly feeding component for nozzle assembly according to claim 1, characterized in that: The guide sleeve assembly feeding component for nozzle assembly also includes: A straight vibration feeder is arranged below a feeding track, and a support rod including a base is bolted below the straight vibration feeder.

6. The guide sleeve assembly feeding component for nozzle assembly according to claim 1, characterized in that: The guide sleeve assembly feeding component for nozzle assembly also includes: The offset cylinder is arranged at the other end of the feeding track, and the bottom bolt of the offset cylinder is connected with a support rod including a base.

7. The guide sleeve assembly feeding component for nozzle assembly according to claim 1, characterized in that: The guide sleeve assembly feeding component for nozzle assembly also includes: The movable clamp is arranged at the discharge port of the offset cylinder, and the movable clamp is composed of a "Y" axis driving mechanism, a vertical driving mechanism on the "Y" axis driving mechanism and an electric clamp at the bottom of the vertical driving mechanism.