Independent weighing mechanism for wire body stator

By designing a linear stator independent weighing mechanism and using the coordinated work of multiple components, the problems of low stator weighing efficiency and poor stability in the prior art are solved, and the automated weighing of the stator is realized, and efficiency and stability are improved.

CN222882132UActive Publication Date: 2025-05-16邓权
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Patent Information

Application Number
CN202421690680.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-05-16
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

When the existing weighing devices are used on an automated production line to detect whether the stator is missing phase number, the structure is complex, the operation remains unchanged, the cost is high, and the efficiency is low, and manual operation is required.

Method used

A linear stator independent weighing mechanism is designed, including an outer support assembly, an inner support assembly, a weighing assembly, an auxiliary mounting assembly, a lifting power assembly, a lifting guide assembly, a top mounting assembly, a lateral movement assembly, an auxiliary support assembly and a stator limit assembly, and the automatic weighing of the stator is achieved through the collaborative work of these components.

Benefits of technology

Automatic weighing operation of the stator is realized, weighing efficiency and stability are improved, and the cost and complexity of manual operation are reduced.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222882132U_ABST
    Figure CN222882132U_ABST
Patent Text Reader

Abstract

The utility model discloses a line body stator independent weighing mechanism which comprises an outer supporting assembly, an inner supporting assembly is arranged in the outer supporting assembly, a weighing assembly is arranged on the inner supporting assembly, auxiliary installation assemblies are arranged on the two sides of the inner supporting assembly, lifting power assemblies are arranged on the auxiliary installation assemblies, and the lifting power assemblies are arranged on the lifting power assemblies. Lifting guide assemblies are arranged on the portions, located on the two sides of the lifting power assembly, of the auxiliary mounting assembly, a top mounting assembly is arranged at the output end of the lifting power assembly, a transverse moving assembly is arranged on the top mounting assembly, and an auxiliary supporting assembly is arranged at the output end of the transverse moving assembly. A stator limiting assembly is arranged on the auxiliary supporting assembly. According to the technical scheme, the independent weighing mechanism for the wire body stator is ingenious in structural design, high in practicability and stable in work and operation, automatic weighing operation of the stator is achieved by applying the independent weighing mechanism for the wire body stator, the weighing efficiency of the stator is effectively improved, and the weighing stability of the stator is also improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of weighing, in particular to a linear stator independent weighing mechanism. Background Art

[0002] The fixed part of the motor is called the stator, on which pairs of stationary main magnetic poles with DC excitation are installed; the rotating part, the rotor, is called the armature core, on which the armature winding is installed. When energized, it generates an induced electromotive force, which acts as a rotating magnetic field. Electromagnetic torque is then generated for energy conversion. The stator winding can be divided into two types: centralized and distributed, depending on the shape and embedding method of the stator winding.

[0003] On the automated production line, after the stator core is wound and embedded in the coil, it is necessary to detect whether the phase is missing. This process requires judging whether the phase is missing by weight, and a weighing device is required for weighing judgment. The existing weighing device has a complex structure, unchanged operation, high weighing cost, and requires manual operation, and has low weighing efficiency. For this reason, an independent weighing mechanism for the line stator is designed. Utility Model Content

[0004] The utility model aims to solve the above problems and designs a line body stator independent weighing mechanism.

[0005] To achieve the above-mentioned purpose, the technical solution of the utility model is as follows: a line body stator independent weighing mechanism comprises an outer support assembly, an inner support assembly is arranged in the outer support assembly, a weighing assembly is arranged on the inner support assembly, auxiliary mounting assemblies are arranged on both sides of the inner support assembly, a lifting power assembly is arranged on the auxiliary mounting assembly, lifting guide assemblies are arranged on both sides of the lifting power assembly on the auxiliary mounting assembly, a top mounting assembly is arranged at the output end of the lifting power assembly, a lateral movement assembly is arranged on the top mounting assembly, an auxiliary support assembly is arranged at the output end of the lateral movement assembly, and a stator limit assembly is arranged on the auxiliary support assembly.

[0006] As a further description of the present technical solution, the external support assembly includes a bottom support frame, a top support frame is arranged on the bottom support frame, a connecting arm is arranged on the top support frame, an operation control screen is arranged on the connecting arm, a plurality of balance adjustment feet are arranged at the bottom of the bottom support frame, and an internal support assembly is arranged inside the bottom support frame.

[0007] As a further description of the technical solution, the inner support assembly includes an inner support frame arranged in the outer support assembly, a weighing assembly is arranged on the inner support frame, and auxiliary installation assemblies are arranged on both sides of the inner support frame.

[0008] As a further description of the technical solution, a weighing sensor is provided on the weighing assembly.

[0009] As a further description of the technical solution, the auxiliary mounting assembly includes auxiliary mounting plates arranged on both sides of the inner support assembly, and a lifting power assembly is arranged on the auxiliary mounting plates.

[0010] As a further description of the technical solution, the lifting power assembly includes a lifting power cylinder arranged on an auxiliary mounting assembly, and a top mounting assembly is arranged at the output end of the lifting power cylinder.

[0011] As a further description of the technical solution, the lifting guide assembly includes a guide sleeve arranged on the auxiliary mounting assembly on both sides of the lifting power assembly, a guide rod is arranged in the guide sleeve, and the top end of the guide rod is connected to the top mounting assembly.

[0012] As a further description of the technical solution, the top mounting assembly includes a top mounting plate arranged at the output end of the lifting power assembly, and a lateral movement assembly is arranged on the top mounting plate.

[0013] As a further description of the technical solution, the lateral movement assembly includes a lateral movement module arranged on the top mounting assembly, and an auxiliary support assembly is arranged at the output end of the lateral movement module.

[0014] As a further description of the technical solution, the auxiliary support assembly includes an auxiliary tray arranged at the output end of the lateral movement assembly, and the stator limiting assembly includes a positioning limiting plate arranged on the auxiliary tray, and the stator limiting plate is provided with a stator limiting groove.

[0015] The beneficial effect is that the independent weighing mechanism of the wire stator of the technical solution has an ingenious structural design, strong practicality, and stable working operation. By using this independent weighing mechanism of the wire stator, automatic weighing operation of the stator is realized, which effectively improves the weighing efficiency of the stator and also improves the stability of the stator weighing. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0017] Figure 2 It is a schematic diagram of the installation structure of the weighing component of the utility model.

[0018] In the figure, 1. outer support assembly; 2. inner support assembly; 3. weighing assembly; 4. auxiliary installation assembly; 5. lifting power assembly; 6. lifting guide assembly; 7. top installation assembly; 8. lateral movement assembly; 9. auxiliary support assembly; 10. stator limit assembly; 11. bottom support frame; 12. top support frame; 13. connecting arm; 14. operation control panel; 15. balance adjustment foot; 16. inner support frame; 17. auxiliary installation plate; 18. lifting power cylinder; 19. guide sleeve; 20. guide rod; 21. top installation plate; 22. lateral movement module; 23. auxiliary tray; 24. positioning limit plate; 25. stator limit groove. DETAILED DESCRIPTION

[0019] First of all, the design intention of the utility model is explained. On an automated production line, after the stator core is wound and embedded in the coil, it is necessary to detect whether the phase number is missing. This process requires judging whether the phase is missing by weight, and a weighing device is required for weighing judgment. The existing weighing device has a complex structure, unchanged operation, high weighing cost, and requires manual operation, and has low weighing efficiency. Therefore, the utility model designs an independent weighing mechanism for the line stator.

[0020] The utility model is described in detail below in conjunction with the accompanying drawings. Figure 1-Figure 2 As shown, the line body stator independent weighing mechanism includes an outer support component 1, and the outer support component 1 will be described in detail below. The outer support component 1 includes a bottom support frame 11, and a top support frame 12 is arranged on the bottom support frame 11, and a connecting arm 13 is arranged on the top support frame 12. An operation control screen 14 is arranged on the connecting arm 13, and a plurality of balance adjustment feet 15 are arranged at the bottom of the bottom support frame 11, and an inner support component 2 is arranged in the bottom support frame 11.

[0021] An inner support assembly 2 is arranged in the outer support assembly 1. The inner support assembly 2 will be described in detail below. The inner support assembly 2 includes an inner support frame 16 arranged in the outer support assembly 1, a weighing assembly 3 is arranged on the inner support frame 16, and auxiliary installation assemblies 4 are arranged on both sides of the inner support frame 16.

[0022] In order to facilitate the weighing of the stator, a weighing assembly 3 is arranged on the inner support assembly 2 , and a weighing sensor is arranged on the weighing assembly 3 .

[0023] In order to facilitate the installation of the lifting power assembly 5, auxiliary installation assemblies 4 are arranged on both sides of the inner support assembly 2. The auxiliary installation assembly 4 will be described in detail below. The auxiliary installation assembly 4 includes auxiliary installation plates 17 arranged on both sides of the inner support assembly 2, and the lifting power assembly 5 is arranged on the auxiliary installation plate 17.

[0024] In order to facilitate the control of the lifting and lowering of the stator limit assembly 10, a lifting power assembly 5 is arranged on the auxiliary installation assembly 4. The lifting power assembly 5 will be described in detail below. The lifting power assembly 5 includes a lifting power cylinder 18 arranged on the auxiliary installation assembly 4, and a top installation assembly 7 is arranged at the output end of the lifting power cylinder 18.

[0025] In order to facilitate the guidance of the given sub-limiting assembly 10 during the lifting process, a lifting guide assembly 6 is arranged on both sides of the lifting power assembly 5 on the auxiliary installation assembly 4. The lifting guide assembly 6 will be described in detail below. The lifting guide assembly 6 includes a guide sleeve 19 arranged on the auxiliary installation assembly 4 on both sides of the lifting power assembly 5, and a guide rod 20 is arranged in the guide sleeve 19. The top end of the guide rod 20 is connected to the top installation assembly 7.

[0026] In order to facilitate the installation of the lateral movement component 8, a top mounting component 7 is arranged at the output end of the lifting power component 5. The top mounting component 7 will be described in detail below. The top mounting component 7 includes a top mounting plate 21 arranged at the output end of the lifting power component 5, and the lateral movement component 8 is arranged on the top mounting plate 21.

[0027] In order to facilitate moving the stator to above the weighing component 3, a lateral moving component 8 is arranged on the top mounting component 7. The lateral moving component 8 will be described in detail below. The lateral moving component 8 includes a lateral moving module 22 arranged on the top mounting component 7, and an auxiliary support component 9 is arranged at the output end of the lateral moving module 22.

[0028] In order to facilitate the installation of the stator limiting assembly 10 , an auxiliary support assembly 9 is provided at the output end of the lateral moving assembly 8 . The auxiliary support assembly 9 will be described in detail below. The auxiliary support assembly 9 includes an auxiliary tray 23 provided at the output end of the lateral moving assembly 8 .

[0029] In order to facilitate the limiting of the stator, a stator limiting assembly 10 is provided on the auxiliary support assembly 9. The stator limiting assembly 10 will be described in detail below. The stator limiting assembly 10 includes a positioning limiting plate 24 provided on the auxiliary tray 23, and a stator limiting groove 25 is provided on the stator limiting plate.

[0030] The above describes in detail the specific structure of the utility model. The working principle of the utility model will be described below: the stator is placed in the stator limit groove 25 on the stator limit plate, and the auxiliary tray 23 is driven to move above the weighing assembly 3 by the lateral moving assembly 8, and the lateral moving assembly 8 is driven to descend by the lifting power assembly 5, so that the auxiliary tray 23 falls on the weighing assembly 3 for weighing. After weighing, the lateral power assembly is lifted by the lifting power assembly 5, so that the lateral power assembly catches the auxiliary tray 23, and the lateral power assembly drives the auxiliary tray 23 to enter the next process. This process is controlled by the operation control panel 14. The independent weighing mechanism of the linear stator of the present technical solution has a clever structural design, strong practicality, and stable working operation. The use of this independent weighing mechanism of the linear stator realizes the automatic weighing operation of the stator, effectively improves the weighing efficiency of the stator, and also improves the stability of the stator weighing.

[0031] The above technical solutions only reflect the preferred technical solutions of the technical solutions of the utility model. Some changes that may be made to certain parts thereof by technicians in this technical field all reflect the principles of the utility model and fall within the protection scope of the utility model.

Claims

1. The line body stator independent weighing mechanism is characterized by: The invention comprises an outer support component (1), wherein an inner support component (2) is arranged inside the outer support component (1), a weighing component (3) is arranged on the inner support component (2), auxiliary installation components (4) are arranged on both sides of the inner support component (2), a lifting power component (5) is arranged on the auxiliary installation component (4), lifting guide components (6) are arranged on both sides of the lifting power component (5) on the auxiliary installation component (4), a top installation component (7) is arranged at the output end of the lifting power component (5), a lateral movement component (8) is arranged on the top installation component (7), an auxiliary support component (9) is arranged at the output end of the lateral movement component (8), and a stator limit component (10) is arranged on the auxiliary support component (9).

2. The linear stator independent weighing mechanism according to claim 1, characterized in that: The outer support assembly (1) comprises a bottom support frame (11), a top support frame (12) is arranged on the bottom support frame (11), a connecting arm (13) is arranged on the top support frame (12), an operation control screen (14) is arranged on the connecting arm (13), a plurality of balance adjustment feet (15) are arranged at the bottom of the bottom support frame (11), and an inner support assembly (2) is arranged inside the bottom support frame (11).

3. The linear stator independent weighing mechanism according to claim 1, characterized in that: The inner support component (2) comprises an inner support frame (16) arranged inside the outer support component (1), a weighing component (3) being arranged on the inner support frame (16), and auxiliary installation components (4) being arranged on both sides of the inner support frame (16).

4. The linear stator independent weighing mechanism according to claim 1, characterized in that: The weighing component (3) is provided with a weighing sensor.

5. The linear stator independent weighing mechanism according to claim 1, characterized in that: The auxiliary mounting assembly (4) comprises auxiliary mounting plates (17) arranged on both sides of the inner support assembly (2), and a lifting power assembly (5) is arranged on the auxiliary mounting plates (17).

6. The linear stator independent weighing mechanism according to claim 1, characterized in that: The lifting power assembly (5) comprises a lifting power cylinder (18) arranged on the auxiliary mounting assembly (4), and a top mounting assembly (7) is arranged at the output end of the lifting power cylinder (18).

7. The linear stator independent weighing mechanism according to claim 1, characterized in that: The lifting guide assembly (6) comprises a guide sleeve (19) arranged on the auxiliary installation assembly (4) and located on both sides of the lifting power assembly (5); a guide rod (20) is arranged in the guide sleeve (19); and the top end of the guide rod (20) is connected to the top installation assembly (7).

8. The linear stator independent weighing mechanism according to claim 1, characterized in that: The top mounting assembly (7) comprises a top mounting plate (21) arranged at the output end of the lifting power assembly (5), and a lateral movement assembly (8) is arranged on the top mounting plate (21).

9. The linear stator independent weighing mechanism according to claim 1, characterized in that: The lateral movement component (8) comprises a lateral movement module (22) arranged on a top mounting component (7), and an auxiliary support component (9) is arranged at the output end of the lateral movement module (22).

10. The linear stator independent weighing mechanism according to claim 1, characterized in that: The auxiliary support assembly (9) comprises an auxiliary tray (23) arranged at the output end of the lateral movement assembly (8), and the stator limiting assembly (10) comprises a positioning limiting plate (24) arranged on the auxiliary tray (23), and a stator limiting groove (25) is arranged on the stator limiting plate.

Citation Information

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