Fiber line correcting mechanism for extrusion opening of spinning machine

By designing a fiber thread straightening mechanism at the extrusion port of the spinning machine, and utilizing a motor-driven gear rack system and spring mechanism, the fiber thread deviation is automatically corrected, solving the problem of fiber thread deviation during spinning machine operation and ensuring stable fiber thread output.

CN224062965UActive Publication Date: 2026-03-31DONGPING JINMA TYRE CORD FABRIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

When the spinning machine is working, the fiber thread is prone to deviation, which is difficult to control and affects subsequent work.

Method used

A fiber yarn straightening mechanism for the extrusion port of a spinning machine was designed. It utilizes a motor-driven gear and rack system and a spring mechanism to automatically correct the deviation of the fiber yarn by having a straightening plate contact the fiber yarn.

Benefits of technology

It enables automatic correction of fiber threads, prevents deviation, and ensures the smooth progress of subsequent work.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of spinning machines, particularly relates to a fiber yarn correcting mechanism for an extrusion opening of a spinning machine, and aims to solve the problems that in the prior art, when a spinning machine works, fiber yarns are easy to deviate and are difficult to control when being extruded, and subsequent work is easy to influence. An extruding machine is arranged in the shell, and an extruding opening matched with the extruding machine is formed in the left side of the shell; the motor is fixedly connected to the top of the shell; the correcting plate is slidably connected to the left side of the shell; the device has the beneficial effects that when fiber lines are extruded from the extrusion opening, an output shaft of a motor is controlled to rotate circularly, and meanwhile, the output shaft is matched with a second spring, so that the effect of circularly controlling the correction plate to move is achieved, automatic correction control over the fiber lines is achieved, and the correction efficiency is improved. And deviation is prevented.
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Description

Technical Field

[0001] This utility model relates to the field of spinning machine technology, and in particular to a fiber straightening mechanism at the extrusion port of a spinning machine. Background Technology

[0002] In existing technology, spinning machines are the production means and material foundation of the textile industry. Their technical level, quality, and manufacturing cost are directly related to the development of the textile industry. Different types of spinning machines are suitable for different fiber materials and production needs. From synthetic fibers to natural fibers, all can be processed and handled by these machines. In existing technology, when spinning machines are working, the fiber yarn is prone to deviation during extrusion, which is difficult to control and can affect subsequent work.

[0003] Therefore, this application proposes a fiber straightening mechanism at the extrusion port of a spinning machine to solve the above-mentioned problems. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies where fiber threads tend to deviate during extrusion of a spinning machine, making them difficult to control and potentially affecting subsequent operations. Therefore, this invention proposes a fiber thread correction mechanism at the extrusion port of a spinning machine.

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

[0006] A fiber straightening mechanism for the extrusion port of a spinning machine includes a housing, and an extruder is provided inside the housing. An extrusion port that cooperates with the extruder is provided on the left side of the housing.

[0007] An electric motor, which is fixedly connected to the top of the housing;

[0008] A corrective plate, which is slidably connected to the left side of the outer casing;

[0009] The corrective mechanism includes a rack, a rotating plate, a control plate, a push plate, an auxiliary plate, and a mating plate. The rack is slidably connected to the top of the housing. The rotating plate is rotatably connected to the front side of the rack. The control plate is slidably connected to the front side of the housing, and the front side of the control plate is rotatably connected to the top of the rotating plate. The push plate is rotatably connected to the right side of the control plate. The auxiliary plate is slidably connected to the top of the housing, and the right side of the auxiliary plate is rotatably connected to the top of the push plate. The mating plate is rotatably connected to the left side of the auxiliary plate.

[0010] As a preferred embodiment of this utility model, a driving plate is slidably connected to the left side of the outer shell, and a rotating wheel is rotatably connected to the bottom of the driving plate. The left side of the driving plate is rotatably connected to the rear side of the mating plate.

[0011] In a preferred embodiment of this utility model, the output shaft of the motor is fixedly connected to a gear, and the gear meshes with a rack.

[0012] As a preferred embodiment of this utility model, a No. 1 spring is fixedly connected to the top of the control board, and one end of the No. 1 spring is fixedly connected to the front side of the outer shell.

[0013] In a preferred embodiment of this utility model, the top of the correction plate is inclined, and the inclined surface of the correction plate is in movable contact with the rotating wheel. A second spring is fixedly connected to the rear side of the correction plate, and one end of the second spring is fixedly connected to the left side of the outer shell.

[0014] As a preferred embodiment of this utility model, a vertical plate is fixedly connected to the left side of the outer shell, and the vertical plate cooperates with the correction plate.

[0015] Beneficial effects:

[0016] 1. When the fiber line is extruded from the extruder, the motor is controlled to work. The output shaft of the motor can control the gear to rotate. At the same time, the rotation of the gear can control the rack to move to the right through the tooth pattern. When the rack moves, it can push the rotating plate to move. When the rotating plate moves, it can push the control plate to rise.

[0017] 2. As the control plate moves, it can push the push plate to move. When the push plate moves, it can push the auxiliary plate to move backward. As the auxiliary plate moves, it can push the mating plate to move. At the same time, the movement of the mating plate can push the driving plate to descend. When the driving plate moves, it can drive the rotating wheel to contact the inclined surface of the straightening plate, thereby controlling the straightening plate to move forward and stretching the No. 2 spring, which then contacts the fiber thread and pushes the fiber thread to move, preventing deviation.

[0018] 3. By controlling the output shaft of the motor to rotate cyclically and cooperating with the second spring, the movement of the straightening plate is controlled cyclically, thereby automatically straightening and controlling the fiber thread and preventing it from going off-center.

[0019] In this invention, when the fiber thread is extruded from the extrusion port, the output shaft of the motor is controlled to rotate cyclically. Simultaneously, it cooperates with the second spring to achieve the effect of cyclically controlling the movement of the straightening plate, thereby automatically straightening and controlling the fiber thread and preventing it from deviating. Attached Figure Description

[0020] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0021] Figure 2 This is a three-dimensional view of the rear side of the present invention;

[0022] Figure 3 This is a three-dimensional structural diagram of the control board, push plate, and auxiliary board of this utility model;

[0023] Figure 4 This is an enlarged view of structure A of this utility model.

[0024] In the diagram: 1. Outer shell; 2. Motor; 3. Gear; 4. Rack; 5. Rotating plate; 6. Control plate; 7. Spring No. 1; 8. Push plate; 9. Auxiliary plate; 10. Matching plate; 11. Driving plate; 12. Correcting plate; 13. Spring No. 2; 14. Vertical plate. Detailed Implementation

[0025] 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.

[0026] Example

[0027] Reference Figures 1-4 A fiber straightening mechanism for the extrusion port of a spinning machine includes a housing 1, and an extruder is provided inside the housing 1. An extrusion port that cooperates with the extruder is provided on the left side of the housing 1.

[0028] Motor 2 is fixedly connected to the top of housing 1;

[0029] Correction plate 12 is slidably connected to the left side of the outer casing 1;

[0030] The correction mechanism includes a rack 4, a rotating plate 5, a control plate 6, a push plate 8, an auxiliary plate 9, and a mating plate 10. The rack 4 is slidably connected to the top of the housing 1. The rotating plate 5 is rotatably connected to the front side of the rack 4. The control plate 6 is slidably connected to the front side of the housing 1, and the front side of the control plate 6 is rotatably connected to the top of the rotating plate 5. The push plate 8 is rotatably connected to the right side of the control plate 6. The auxiliary plate 9 is slidably connected to the top of the housing 1, and the right side of the auxiliary plate 9 is rotatably connected to the top of the push plate 8. The mating plate 10 is rotatably connected to the left side of the auxiliary plate 9.

[0031] With the above structure: by setting the straightening plate 12, the straightening plate 12 comes into contact with the fiber thread and controls the fiber thread to prevent it from going off-center; by setting the motor 2, the output shaft of the motor 2 rotates, which facilitates the movement of the auxiliary rack 4.

[0032] As a preferred embodiment of this utility model, a driving plate 11 is slidably connected to the left side of the outer shell 1, and a rotating wheel is rotatably connected to the bottom of the driving plate 11. The left side of the driving plate 11 is rotatably connected to the rear side of the mating plate 10. When the mating plate 10 moves, the mating plate 10 can push the driving plate 11 to descend. At this time, the driving plate 11 can synchronously drive the rotating wheel to move.

[0033] As a preferred embodiment of this utility model, the output shaft of the motor 2 is fixedly connected to a gear 3, and the gear 3 meshes with the rack 4. When the output shaft of the motor 2 rotates, the output shaft of the motor 2 can control the gear 3 to rotate, thereby controlling the rack 4 to move laterally through the gear 3.

[0034] As a preferred embodiment of this utility model, a first spring 7 is fixedly connected to the top of the control plate 6, and one end of the first spring 7 is fixedly connected to the front side of the outer shell 1. By setting the first spring 7, the first spring 7 can push the control plate 6 to descend by its own elastic force.

[0035] As a preferred embodiment of this utility model, the top of the straightening plate 12 is inclined, and the inclined surface of the straightening plate 12 is in contact with the rotating wheel. A second spring 13 is fixedly connected to the rear side of the straightening plate 12, and one end of the second spring 13 is fixedly connected to the left side of the outer shell 1. When the rotating wheel contacts the inclined surface of the straightening plate 12, the rotating wheel can control the straightening plate 12 to move laterally. By setting the second spring 13, the second spring 13 can pull the straightening plate 12 back to its original position through its own elastic force.

[0036] As a preferred embodiment of this utility model, a vertical plate 14 is fixedly connected to the left side of the outer shell 1, and the vertical plate 14 cooperates with the correction plate 12. By setting the vertical plate 14, the vertical plate 14 cooperates with the correction plate 12 to assist in the correction effect.

[0037] It should be noted that the specific model of motor 2 used can be selected by those skilled in the art, and the above information about motor 2 is existing technology, so this solution will not elaborate on it.

[0038] The working principle of this invention is as follows: In actual operation, when fiber threads are extruded from the extruder, the motor 2 is controlled to operate. The output shaft of the motor 2 controls the gear 3 to rotate. Simultaneously, the rotation of the gear 3 controls the rack 4 to move to the right through its teeth. When the rack 4 moves, it pushes the rotating plate 5 to move. When the rotating plate 5 moves, it pushes the control plate 6 to rise. At this time, as the control plate 6 moves, it pushes the push plate 8 to move. When the push plate 8 moves, it pushes the auxiliary plate 9 to move backward. As the auxiliary plate 9 moves... The auxiliary plate 9 can push the mating plate 10 to move. At the same time, the movement of the mating plate 10 can push the driving plate 11 to descend. When the driving plate 11 moves, it can drive the rotating wheel to contact the inclined surface of the straightening plate 12, thereby controlling the straightening plate 12 to move forward and stretching the second spring 13, thereby contacting the fiber thread and pushing the fiber thread to move to prevent deviation. At this time, the output shaft of the motor 2 is controlled to rotate cyclically and cooperate with the second spring 13 to achieve the effect of cyclically controlling the movement of the straightening plate 12, realizing automatic straightening control of the fiber thread and preventing deviation.

[0039] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A fiber thread straightening mechanism for a spinning machine extrusion port, characterized by, Comprising The shell (1), and the shell (1) is equipped with extruder, the left side of shell (1) is equipped with extrusion port matched with extruder; Motor (2), the motor (2) is fixedly connected at the top of shell (1); Correcting plate (12), the correcting plate (12) is slidingly connected at the left side of shell (1); Correcting mechanism, the correcting mechanism includes rack (4), rotating plate (5), control plate (6), push plate (8), auxiliary plate (9) and cooperation plate (10), the rack (4) is slidingly connected at the top of shell (1), the rotating plate (5) is rotatably connected at the front side of rack (4), the control plate (6) is slidingly connected at the front side of shell (1), and the front side of control plate (6) is rotatably connected with the top of rotating plate (5), the push plate (8) is rotatably connected at the right side of control plate (6), the auxiliary plate (9) is slidingly connected at the top of shell (1), and the right side of auxiliary plate (9) is rotatably connected with the top of push plate (8), the cooperation plate (10) is rotatably connected at the left side of auxiliary plate (9).

2. A fiber thread straightening mechanism for a spinning machine extrusion port according to claim 1, characterized in that, The left side of shell (1) is slidingly connected with driving plate (11), and the bottom of driving plate (11) is rotatably connected with rotating wheel, the left side of driving plate (11) is rotatably connected with the rear side of cooperation plate (10).

3. A fiber thread straightening mechanism for a spinning machine extrusion port according to claim 1, characterized in that, The output shaft of motor (2) is fixedly connected with gear (3), and gear (3) is engaged with rack (4).

4. A fiber thread straightening mechanism for a spinning machine extrusion port according to claim 1, characterized in that, The top of control plate (6) is fixedly connected with a spring (7), and one end of spring (7) is fixedly connected with the front side of shell (1).

5. A fiber thread straightening mechanism for a spinning machine extrusion port according to claim 2, wherein The top of correcting plate (12) is inclined surface, and the inclined surface of correcting plate (12) is in movable contact with rotating wheel, the rear side of correcting plate (12) is fixedly connected with spring (13), and one end of spring (13) is fixedly connected with the left side of shell (1).

6. A fiber thread straightening mechanism for a spinning machine extrusion port according to claim 1, characterized in that, The left side of shell (1) is fixedly connected with vertical plate (14), and vertical plate (14) is matched with correcting plate (12).