Stator casing feeding device
By designing a stator housing feeding device that includes multiple components, the problems of complex structure and poor stability of existing devices are solved, and stable feeding of stator housings and efficiency improvement are achieved.
Patent Information
- Application Number
- CN202520138663.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-01-21
AI Technical Summary
The existing stator housing feeding device has a complex structure, is inconvenient to operate, and has poor working stability.
A stator housing feeding device is designed, comprising a main mounting component, a side mounting component, a tilting power component, a bottom mounting component, an auxiliary mounting component, an auxiliary guiding component, a moving component, a floating support component, and a fixed support component. The stable feeding of the stator housing is achieved through the coordinated work of these components.
This achieved stable feeding of the stator housing, improved feeding efficiency, and reduced the labor intensity of workers.
Smart Images

Figure CN223928205U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of machine housing feeding technology, and in particular to a stator machine housing feeding device. Background Technology
[0002] The stationary part of an electric motor is called the stator, on which a pair of DC-excited stationary main magnetic poles are installed. The rotating part, the rotor, is called the armature core, on which armature windings are installed. When energized, it generates an induced electromotive force, which acts as a rotating magnetic field. This generates electromagnetic torque for energy conversion. Based on the shape and mounting method of the stator windings, stator windings can be divided into two categories: centralized and distributed.
[0003] In the process of motor production, the stator housing needs to be transported and loaded. This process requires the introduction of a loading device. Existing loading devices are complex in structure, inconvenient to operate, and have poor working stability. Therefore, it is necessary to design a stator housing loading device. Utility Model Content
[0004] The purpose of this invention is to solve the above-mentioned problems by designing a stator housing feeding device.
[0005] To achieve the above objectives, the technical solution of this utility model is as follows: a stator housing feeding device, comprising a main mounting assembly, a side mounting assembly on the main mounting assembly, a tilting power assembly on the side mounting assembly, a rotatable bottom mounting assembly at the bottom end of the main mounting assembly, an output end of the tilting power assembly connected to the bottom mounting assembly, an auxiliary mounting assembly on the bottom mounting assembly, an auxiliary power cylinder at the top end of the auxiliary mounting assembly, an auxiliary guide assembly on the auxiliary mounting assembly, a moving assembly at the moving part of the auxiliary guide assembly, a floating support assembly on the moving assembly, a fixed support assembly at the bottom end of the auxiliary mounting assembly, and an output end of the auxiliary power cylinder connected to the moving assembly.
[0006] As a further description of this technical solution, the main mounting assembly includes a main mounting column, a connecting flange at the top of the main mounting column, a rotatable bottom mounting assembly at the bottom of the main mounting column, and a side mounting assembly on the main mounting column.
[0007] As a further description of this technical solution, the side mounting assembly includes a side mounting lug disposed on the main mounting assembly, and a tilting power assembly is disposed on the side mounting lug.
[0008] As a further description of this technical solution, the tilting power assembly includes a tilting power cylinder disposed on the side mounting assembly. The tilting power cylinder is connected to the side mounting assembly via a pin, and the output end of the tilting power cylinder is connected to the bottom mounting assembly.
[0009] As a further description of this technical solution, the bottom mounting assembly includes a bottom mounting base disposed at the bottom end of the main mounting assembly, and the bottom mounting base is connected to the main mounting assembly via a pin.
[0010] As a further description of this technical solution, the auxiliary mounting assembly includes an auxiliary mounting bracket disposed on the bottom mounting assembly, and an auxiliary power cylinder is disposed at the top of the auxiliary mounting bracket.
[0011] As a further description of this technical solution, the auxiliary guide assembly includes an auxiliary guide rail disposed on the auxiliary mounting assembly, a movable slider disposed on the auxiliary guide rail, and a movable component disposed on the movable slider.
[0012] As a further description of this technical solution, the moving component includes a moving frame disposed on the moving part of the auxiliary guide component, and the floating support component includes a floating support bracket disposed on the moving frame, and the floating support bracket is provided with a plurality of anti-slip components.
[0013] As a further description of this technical solution, the fixing and tightening assembly includes a fixing bracket disposed at the bottom of the auxiliary installation assembly, and the fixing bracket is provided with a plurality of anti-slip components.
[0014] Its beneficial effects are that the feeding device of this technical solution has a clever structural design, strong practicality, and stable operation. Using this feeding device, stable feeding of the stator housing is achieved, which effectively improves the feeding efficiency of the stator housing and reduces the labor intensity of workers. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 This is a schematic diagram of the overall structure of this utility model from another perspective.
[0017] In the diagram, 1. Main mounting assembly; 2. Side mounting assembly; 3. Tilting power assembly; 4. Bottom mounting assembly; 5. Auxiliary mounting assembly; 6. Auxiliary power cylinder; 7. Auxiliary guide assembly; 8. Moving assembly; 9. Floating support assembly; 10. Fixed support assembly; 11. Main mounting column; 12. Connecting flange; 13. Side mounting lug; 14. Tilting power cylinder; 15. Bottom mounting base; 16. Auxiliary mounting bracket; 17. Auxiliary guide rail; 18. Moving slider; 19. Moving frame; 20. Floating support bracket; 21. Anti-slip assembly; 22. Fixed bracket. Detailed Implementation
[0018] First, let me explain the design intention of this utility model. In the process of motor production, it is necessary to transport and load the stator housing. This process requires the introduction of a loading device. Existing loading devices are complex in structure, inconvenient to operate, and have poor working stability. Therefore, this utility model designs a stator housing loading device.
[0019] The present invention will now be described in detail with reference to the accompanying drawings, such as... Figures 1-2 As shown, a stator housing feeding device includes a main mounting assembly 1. The main mounting assembly 1 will be described in detail below. The main mounting assembly 1 includes a main mounting column 11. A connecting flange 12 is provided at the top of the main mounting column 11. A rotatable bottom mounting assembly 4 is provided at the bottom of the main mounting column 11. A side mounting assembly 2 is provided on the main mounting column 11.
[0020] To facilitate the installation of the tilting power assembly 3, a side mounting assembly 2 is provided on the main mounting assembly 1. The side mounting assembly 2 will be described in detail below. The side mounting assembly 2 includes a side mounting lug 13 provided on the main mounting assembly 1, and the tilting power assembly 3 is provided on the side mounting lug 13.
[0021] To facilitate the control of the rotation of the bottom mounting assembly 4, a flipping power assembly 3 is provided on the side mounting assembly 2. The output end of the flipping power assembly 3 is connected to the bottom mounting assembly 4. The flipping power assembly 3 will be described in detail below. The flipping power assembly 3 includes a flipping power cylinder 14 provided on the side mounting assembly 2. The flipping power cylinder 14 is connected to the side mounting assembly 2 through a pin, and the output end of the flipping power cylinder 14 is connected to the bottom mounting assembly 4.
[0022] To facilitate the installation of the auxiliary mounting component 5, a rotatable bottom mounting component 4 is provided at the bottom end of the main mounting component 1. The bottom mounting component 4 will be described in detail below. The bottom mounting component 4 includes a bottom mounting base 15 provided at the bottom end of the main mounting component 1. The bottom mounting base 15 is connected to the main mounting component 1 by a pin.
[0023] To facilitate the installation of the auxiliary power cylinder 6, an auxiliary mounting component 5 is provided on the bottom mounting component 4. The auxiliary mounting component 5 will be described in detail below. The auxiliary mounting component 5 includes an auxiliary mounting bracket 16 provided on the bottom mounting component 4, and the auxiliary power cylinder 6 is provided at the top of the auxiliary mounting bracket 16.
[0024] In order to facilitate the control of the floating support assembly 9 to support the stator housing, an auxiliary power cylinder 6 is provided at the top of the auxiliary installation assembly 5, and the output end of the auxiliary power cylinder 6 is connected to the moving assembly 8.
[0025] To facilitate the movement and guidance of the movable component 8, an auxiliary guide component 7 is provided on the auxiliary mounting component 5. The auxiliary guide component 7 will be described in detail below. The auxiliary guide component 7 includes an auxiliary guide rail 17 provided on the auxiliary mounting component 5, a movable slider 18 provided on the auxiliary guide rail 17, and a movable component 8 provided on the movable slider 18.
[0026] To facilitate the installation of the floating support assembly 9, a movable assembly 8 is provided at the movable part of the auxiliary guide assembly 7. The movable assembly 8 will be described in detail below. The movable assembly 8 includes a movable frame 19 disposed at the movable part of the auxiliary guide assembly 7.
[0027] To facilitate the tensioning of the positioning housing, a floating tensioning component 9 is provided on the moving component 8. The floating tensioning component 9 will be described in detail below. The floating tensioning component 9 includes a floating tensioning bracket 20 provided on the moving frame 19. The floating tensioning bracket 20 is provided with a plurality of anti-slip components 21.
[0028] A fixing and tensioning component 10 is provided at the bottom of the auxiliary installation component 5. The fixing and tensioning component 10 will be described in detail below. The fixing and tensioning component 10 includes a fixing bracket 22 provided at the bottom of the auxiliary installation component 5. A plurality of anti-slip components 21 are provided on the fixing bracket 22.
[0029] The specific structure of this utility model has been described in detail above. The working principle of this utility model will be explained below: In use, the fixed support component 10 and the floating support component 9 are inserted into the stator housing. The auxiliary power cylinder 6 drives the moving frame 19 to move, thereby driving the floating support component 9 to support the stator housing. This feeding device is raised and lowered to a certain height under the control of the external lifting mechanism. Then, the bottom mounting component 4 is rotated by the flipping power component 3, thereby controlling the stator housing to flip. The feeding device of this technical solution has a clever structural design, strong practicality, and stable operation. Using this feeding device, stable feeding of the stator housing is achieved, effectively improving the feeding efficiency of the stator housing and reducing the labor intensity of workers.
[0030] The above technical solution only embodies the preferred technical solution of this utility model. Any changes that may be made by those skilled in the art to certain parts of it embody the principle of this utility model and fall within the protection scope of this utility model.
Claims
1. A stator housing loading device, characterized by, The utility model provides a kind of installation assembly, including main installation component (1), side installation component (2) is provided on the main installation component (1), turnover power component (3) is provided on the side installation component (2), rotatable bottom installation component (4) is provided at the bottom of the main installation component (1), the output end of the turnover power component (3) is connected with bottom installation component (4), auxiliary installation component (5) is provided on the bottom installation component (4), auxiliary power cylinder (6) is provided at the top of the auxiliary installation component (5), auxiliary guide component (7) is provided on the auxiliary installation component (5), the mobile part of the auxiliary guide component (7) is provided with mobile component (8), floating bracing component (9) is provided on the mobile component (8), fixed bracing component (10) is provided at the bottom of the auxiliary installation component (5), the output end of the auxiliary power cylinder (6) is connected with mobile component (8).
2. A stator housing loading device according to claim 1, wherein The main installation component (1) includes a main installation column (11), a connecting flange (12) is provided at the top of the main installation column (11), and a rotatable bottom installation component (4) is provided at the bottom of the main installation column (11). The main installation column (11) is provided with a side installation component (2).
3. A stator housing loading device according to claim 1, wherein The side installation component (2) includes a side installation ear seat (13) provided on the main installation component (1), and a turnover power component (3) is provided on the side installation ear seat (13).
4. The stator housing loading device of claim 1, wherein The turnover power component (3) includes a turnover power cylinder (14) provided on the side installation component (2), the turnover power cylinder (14) is connected with the side installation component (2) through a pin shaft, and the output end of the turnover power cylinder (14) is connected with the bottom installation component (4).
5. The stator housing loading device of claim 1, wherein, The bottom installation component (4) includes a bottom mounting seat (15) provided at the bottom of the main installation component (1), and the bottom mounting seat (15) is connected with the main installation component (1) through a pin shaft.
6. A stator housing loading device according to claim 1, wherein The auxiliary installation component (5) includes an auxiliary mounting frame (16) provided on the bottom installation component (4), and an auxiliary power cylinder (6) is provided at the top of the auxiliary mounting frame (16).
7. A stator housing loading device according to claim 1, wherein The auxiliary guide component (7) includes an auxiliary guide rail (17) provided on the auxiliary installation component (5), a moving slider (18) is provided on the auxiliary guide rail (17), and a moving component (8) is provided on the moving slider (18).
8. A stator housing loading device according to claim 1, wherein The moving component (8) includes a moving frame (19) provided at the moving part of the auxiliary guide component (7), the floating bracing component (9) includes a floating bracing support (20) provided on the moving frame (19), and a plurality of anti-slip components (21) are provided on the floating bracing support (20).
9. The stator housing loading device of claim 1, wherein, The fixed bracing component (10) includes a fixed support (22) provided at the bottom of the auxiliary installation component (5), and a plurality of anti-slip components (21) are provided on the fixed support (22).