Automatic assembly device for stepping motor housing

By designing the automatic assembly device of stepper motor housing, the power cycle assembly and automatic assembly assembly are used to achieve precise synchronous assembly of the bottom cover, housing and end cover, solving the problems of low assembly efficiency and large errors, and improving assembly quality and efficiency.

CN120033932BActive Publication Date: 2025-08-12CHANGZHOU LIANSHENG ELECTRIC CO LTD
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Patent Information

Application Number
CN202510285749.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2025-08-12
Estimated Expiration
2045-03-11

AI Technical Summary

Technical Problem

The prior art has problems such as low assembly efficiency and easy assembly errors in the assembly process of stepper motor housing.

Method used

An automatic assembly device for the stepper motor housing is designed, including assembly power box, housing positioning seat, cross material collection box and automatic assembly assembly. The cycle assembly plate and material collection jaw assembly are driven by the power cycle assembly to realize the precise positioning and synchronous assembly of the bottom cover, housing and end cover, and automatic tightening is achieved using multiple torsion screwdrivers.

Benefits of technology

It improves the assembly efficiency and quality of the motor case, avoids the untightened screws or omissions, and ensures the accuracy and consistency of assembly.

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Abstract

The present invention relates to the technical field of parts assembly, and proposes an automatic assembly device for a stepper motor casing, comprising an assembly power box, a casing positioning seat, a cross-feeding box, and an automatic assembly component. The assembly power box is provided with a feeding rod, a circulating assembly disk is rotatably provided on the feeding rod, the circulating assembly disk is located above the assembly power box, and a power circulation component for rotating the circulating assembly disk is provided in the assembly power box. A plurality of casing positioning seats are provided, and the casing positioning seats are arranged at equal angles on the circulating assembly disk. The casing positioning seats are provided with limiting grooves for fixing the end cover, the housing, and the bottom cover in sequence from top to bottom, and positioning through holes corresponding to the fixing bolts on the bottom cover are provided on the casing positioning seat and the circulating assembly disk. The above technical solution solves the problems of low assembly efficiency and easy occurrence of assembly errors in the prior art when assembling the stepper motor casing.
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Description

Technical Field

[0001] The present invention relates to the technical field of parts assembly, and in particular to an automatic assembly device for a stepping motor casing. Background Art

[0002] The stepper motor casing is an important component of the stepper motor and is usually made of metal materials such as cast iron, aluminum alloy, etc. Its main function is to wrap the stator and rotor inside the motor to protect them from the influence of the external environment, such as dust, water vapor, debris, etc., to prevent these impurities from entering the motor and affecting the normal operation and service life of the motor. The casing of the stepper motor is mostly composed of a shell, a front cover and a rear cover. The assembly process is relatively simple, that is, the rear cover with the rotor and stator installed is connected to the shell and the front cover in turn, and then the circuit is connected through the shell to complete the assembly of the stepper motor.

[0003] In the prior art, when assembling a stepper motor housing, a robot is mostly programmed to pre-set a program to complete the grabbing, transporting, and placing of the housing and end cover. The worker then connects the bolts on the end cover to the housing to complete the assembly of the motor housing. However, during the actual assembly process, although the power tools used by the workers have a torque detection function, the long labor time not only results in low processing efficiency, but also easily causes tightening deviation problems, which affects the service life of the stepper motor. Summary of the Invention

[0004] The present invention provides an automatic assembly device for a stepper motor housing, which is used to solve the problems mentioned in the background art, namely, low assembly efficiency and easy occurrence of assembly errors when assembling a stepper motor housing in the prior art.

[0005] The technical solution of the present invention is as follows: an automatic assembly device for a stepping motor housing, comprising an assembly power box, a housing positioning seat, a cross-feeding box and an automatic assembly component;

[0006] The assembly power box is provided with a material taking rod running through it, and a circulating assembly disk is rotatably provided on the material taking rod. The circulating assembly disk is located above the assembly power box, and a power circulation component for rotating the circulating assembly disk is provided in the assembly power box;

[0007] There are multiple casing positioning seats, and the casing positioning seats are arranged at equal angles on the circulation assembly disk. The casing positioning seats are sequentially provided with limiting grooves for fixing the end cover, the shell and the bottom cover from top to bottom, and the casing positioning seats and the circulation assembly disk are both provided with positioning through holes corresponding to the fixing bolts on the bottom cover, and the positioning through holes are connected to the limiting grooves;

[0008] The cross-shaped material picking box is arranged on the material picking rod, and four material picking assemblies are arranged at equal angles in the cross-shaped material picking box. The four material picking assemblies are used for the material picking and placing operations of the bottom cover, the shell, the end cover and the whole machine in sequence;

[0009] The automatic assembly component includes a top assembly part and a bottom assembly part, which are used for the synchronous assembly operation of the bottom cover and the end cover. The top assembly part is arranged on one side of the material taking component used for taking and placing the end cover, and the bottom assembly part is arranged on the assembly power box.

[0010] Based on the above solution, the power circulation assembly includes a circulation pipe and a circulation power part;

[0011] The circulation pipe is passed through and rotatably arranged on the assembly power box, one end of the circulation pipe is connected to the circulation assembly disk, and the material taking rod is located in the circulation pipe;

[0012] The circulating power unit is arranged in the assembly power box, and the circulating power unit is connected to the circulating pipe.

[0013] On the basis of the above scheme, the circulating power unit includes a power motor, a power gearbox, a bevel gear 1 and a bevel gear 2;

[0014] The power motor is installed in the assembly power box;

[0015] The power gearbox is installed in the assembly power box, and the input end of the power gearbox is connected to the output end of the power motor;

[0016] The bevel gear 1 is arranged on the output end of the power transmission box;

[0017] The second bevel gear is arranged on the circulation pipe, and the second bevel gear is meshed with the first bevel gear.

[0018] As a preferred technical solution of the present application, the material taking assembly includes a transverse adjustment portion, a longitudinal adjustment portion and a material taking clamping claw group;

[0019] The transverse positioning portion is arranged in the cross-taking box;

[0020] The longitudinal position adjusting portion is arranged on the transverse position adjusting portion;

[0021] The material taking clamping claw group is arranged on the longitudinal adjustment part.

[0022] Further on the basis of the above solution, the lateral adjustment part includes a lateral adjustment electric cylinder and a lateral adjustment frame;

[0023] The horizontal adjustment electric cylinder is installed in the cross material box;

[0024] The horizontal adjustment frame is arranged on the output end of the horizontal adjustment electric cylinder, and the longitudinal position adjustment part is arranged on the horizontal adjustment frame.

[0025] Further on the basis of the above solution, the longitudinal position adjustment unit includes a longitudinal adjustment electric cylinder and a longitudinal adjustment frame;

[0026] The longitudinal adjustment electric cylinder is installed on the horizontal adjustment frame;

[0027] The longitudinal adjustment frame is arranged on the output end of the longitudinal adjustment electric cylinder, the material taking clamping claw group is installed on the longitudinal adjustment frame, and the top assembly part is arranged on one side of the longitudinal adjustment frame.

[0028] On the basis of the above solution, the top assembly part includes an assembly box, an assembly motor and a fastening group;

[0029] The assembly box is arranged on one side of the longitudinal adjustment frame;

[0030] The assembly motor is mounted on the assembly box, and the output end of the assembly box passes through the assembly box and is provided with an assembly main gear;

[0031] There are a plurality of fastening groups, each of which is rotatably arranged on the assembly box and meshes with the assembly main gear.

[0032] Further on the basis of the above solution, the fastening group includes a torque screwdriver and an assembly slave gear;

[0033] The torque screwdriver is inserted through and rotatably arranged on the assembly box, and the torque screwdriver is adapted to the fixing bolt on the bottom cover;

[0034] The assembly slave gear is arranged on the torque screwdriver, and the assembly slave gear is meshed with the assembly master gear.

[0035] Further on the basis of the above solution, the bottom end assembly part includes a bottom end assembly group and a bottom end positioning cylinder;

[0036] The bottom assembly group has the same structure as the top assembly part;

[0037] The bottom end positioning cylinder is installed on the assembly power box, and the output end of the bottom end positioning cylinder is connected to the assembly box in the bottom end assembly group.

[0038] On the basis of the above solution, a position detection sensor is further provided on the assembly power box, and a position detection block adapted to the position detection sensor is provided on one side of each housing positioning seat.

[0039] The beneficial effects of the present invention are:

[0040] 1. In the present invention, when assembling a stepper motor housing, a feeding system for loading the bottom cover, housing, and end cover is installed on one side of a retrieving assembly for the retrieving and placing operations of the bottom cover, housing, and end cover. By activating the horizontal adjustment electric cylinder and the vertical adjustment electric cylinder in the retrieving assembly and the power motor in the power circulation assembly, the retrieving jaw assembly sequentially places the bottom cover, housing, and end cover on the feeding system into the positioning holes in the housing positioning seat. Under the limit of the positioning holes, the pre-assembly operation of the bottom cover, housing, and end cover can be completed.

[0041] 2. According to the present invention, after the motor casing is pre-assembled, the pre-assembled motor casing is positioned at the automatic assembly component, that is, below the material-picking component for the end cover picking and unpicking operation, with the cooperation of the position detection sensor and the position detection block. By starting the assembly motor in the automatic assembly component, the output end of the assembly motor drives multiple torque screwdrivers to rotate, and by starting the corresponding longitudinal adjustment electric cylinder and the bottom adjustment cylinder, the torque screwdrivers can be driven to move toward the fixing screws on the end cover and the bottom cover. The fixing screws on the end cover and the bottom cover are threadedly connected to the housing by the rotating torque screwdriver, thereby realizing the assembly operation of the motor casing. Compared with the traditional manual tightening of the fixing screws to complete the assembly of the motor casing, by providing multiple synchronously moving torque screwdrivers, not only the assembly efficiency is high, but also the phenomenon of untightened or missed screws will not occur, thereby greatly improving the assembly efficiency and assembly quality of the motor casing.

[0042] 3. In the present invention, after the motor casing is assembled, the power circulation assembly moves the motor casing to the material taking assembly for the whole machine taking and placing operation, and then the whole machine in the casing positioning seat can be taken out by the material taking assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0044] Figure 1 It is a schematic structural diagram of the present invention as a whole;

[0045] Figure 2 For the present invention Figure 1 Schematic diagram of the local enlarged structure at A in the middle;

[0046] Figure 3 It is a structural schematic diagram of the casing positioning seat in the present invention;

[0047] Figure 4 It is a partial cross-sectional structural diagram of the assembly of the power box, the material taking rod, the circulation assembly plate, the power circulation component and the bottom assembly part in the present invention;

[0048] Figure 5 For the present invention Figure 4Schematic diagram of the local enlarged structure at B in the middle;

[0049] Figure 6 It is a partial cross-sectional structural diagram of the cross-reclaiming box, the reclaiming assembly and the top assembly part in the present invention;

[0050] Figure 7 For the present invention Figure 6 Schematic diagram of the local enlarged structure at C in the middle;

[0051] Figure 8 It is a schematic diagram of the structure of the present invention in cooperation with the bottom cover, shell and end cover.

[0052] In the figure: 001, power cycle component; 002, material retrieving component; 003, automatic assembly component;

[0053] 1. Assembly of power box; 2. Retrieving rod; 3. Circulation assembly plate; 4. Casing positioning seat; 5. Cross retrieving box; 6. Circulation pipe; 7. Power motor; 8. Power gearbox; 9. Bevel gear 1; 10. Bevel gear 2; 11. Retrieving clamping jaw assembly; 12. Horizontal adjustment electric cylinder; 13. Horizontal adjustment frame; 14. Vertical adjustment electric cylinder; 15. Vertical adjustment frame; 16. Assembly box; 17. Assembly motor; 18. Assembly of main gear; 19. Torque screwdriver; 20. Assembly of slave gear; 21. Bottom adjustment cylinder; 22. Position detection sensor; 23. Position detection block; 24. Bottom cover; 25. Casing; 26. End cover. DETAILED DESCRIPTION

[0054] The following will be combined with the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0055] like Figures 1 to 8 As shown, this embodiment proposes an automatic assembly device for a stepping motor housing, including an assembly power box 1, a housing positioning seat 4, a cross-feeding box 5 and an automatic assembly component 003.

[0056] As mentioned above, a feeding rod 2 is provided through the assembly power box 1, and a circulation assembly disk 3 is rotatably provided on the feeding rod 2. The circulation assembly disk 3 is located above the assembly power box 1, and a power circulation component 001 for rotating the circulation assembly disk 3 is provided in the assembly power box 1. The power circulation component 001 includes a circulation pipe 6 and a circulation power part. The circulation pipe 6 passes through and is rotatably provided on the assembly power box 1. One end of the circulation pipe 6 is connected to the circulation assembly disk 3. The feeding rod 2 is located in the circulation pipe 6. The circulation power part is provided in the assembly power box 1, and the circulation power part is connected to the circulation pipe 6.

[0057] Among them, the circulating power part includes a power motor 7, a power gearbox 8, a bevel gear 1 9 and a bevel gear 2 10. The power motor 7 is installed in the assembly power box 1, the power gearbox 8 is installed in the assembly power box 1, the input end of the power gearbox 8 is connected to the output end of the power motor 7, the bevel gear 1 9 is arranged on the output end of the power gearbox 8, the bevel gear 2 10 is arranged on the circulation pipe 6, and the bevel gear 2 10 is meshed with the bevel gear 1 9.

[0058] Specifically, the power motor 7 is started, and the output end of the power motor 7 drives the input end of the power gearbox 8 to rotate. Through the deceleration and torque increase of the power gearbox 8, the output end of the power gearbox 8 drives the bevel gear 1 9 to rotate, and the rotation of the bevel gear 1 9 drives the bevel gear 2 10 to rotate. The rotation of the bevel gear 2 10 drives the circulation pipe 6 to rotate, and the rotation of the circulation pipe 6 drives the rotation of the circulation assembly disk 3. The rotation of the circulation assembly disk 3 drives the casing positioning seat 4 to move.

[0059] As mentioned above, a position detection sensor 22 is further provided on the assembled power box 1 , and a position detection block 23 adapted to the position detection sensor 22 is provided on one side of each housing positioning seat 4 .

[0060] Specifically, when the circulating assembly disk 3 drives the housing positioning seat 4 to rotate, the position of the housing positioning seat 4 can be accurately positioned by detecting the position of the position detection sensor 22 and the corresponding position detection block 23.

[0061] As mentioned above, there are multiple casing positioning seats 4, and the casing positioning seats 4 are arranged at equal angles on the circulation assembly disk 3. The casing positioning seats 4 are sequentially provided with limiting grooves for fixing the end cover 26, the shell 25 and the bottom cover 24 from top to bottom, and the casing positioning seat 4 and the circulation assembly disk 3 are both provided with positioning through holes corresponding to the fixing bolts on the bottom cover 24, and the positioning through holes are connected to the limiting grooves.

[0062] Among them, the shape of the limiting groove does not need to be exactly the same as the shape of the end cover 26, the shell 25 and the bottom cover 24. It only needs to be placed in the limiting groove so that part of the limiting groove can contact the end cover 26, the shell 25 or the bottom cover 24 to limit the end cover 26, the shell 25 and the bottom cover 24. The opened limiting groove only needs to not affect the normal material taking and placing operations of the material taking component 002.

[0063] As mentioned above, the cross material picking box 5 is arranged on the material picking rod 2, and four material picking components 002 are arranged at equal angles in the cross material picking box 5. The four material picking components 002 are used for the picking and unpicking operations of the bottom cover 24, the shell 25, the end cover 26 and the whole machine in sequence. The material picking component 002 includes a horizontal adjustment part, a longitudinal adjustment part and a material picking claw group 11. The horizontal adjustment part is arranged in the cross material picking box 5, the longitudinal adjustment part is arranged on the horizontal adjustment part, and the material picking claw group 11 is arranged on the longitudinal adjustment part.

[0064] Among them, the material picking claw group 11 is a commonly used mechanical equipment in the prior art for clamping the end cover 26, shell 25 and bottom cover 24 for material picking operations. The specific structure is not the main innovation of this application. It is sufficient as long as the end cover 26, shell 25 and bottom cover 24 can be stably picked up and placed in the limiting groove.

[0065] Among them, the horizontal adjustment part includes a horizontal adjustment electric cylinder 12 and a horizontal adjustment frame 13. The horizontal adjustment electric cylinder 12 is installed in the cross-feeding box 5, and the horizontal adjustment frame 13 is set on the output end of the horizontal adjustment electric cylinder 12. The longitudinal adjustment part is set on the horizontal adjustment frame 13. When the horizontal adjustment electric cylinder 12 is started, the output end of the horizontal adjustment electric cylinder 12 drives the horizontal adjustment frame 13 to move.

[0066] Among them, the longitudinal adjustment part includes a longitudinal adjustment electric cylinder 14 and a longitudinal adjustment frame 15. The longitudinal adjustment electric cylinder 14 is installed on the horizontal adjustment frame 13. The longitudinal adjustment frame 15 is arranged on the output end of the longitudinal adjustment electric cylinder 14. The material picking claw group 11 is installed on the longitudinal adjustment frame 15, and the top assembly part is arranged on one side of the longitudinal adjustment frame 15.

[0067] Specifically, the longitudinal adjustment electric cylinder 14 is started, and the longitudinal adjustment electric cylinder 14 drives the longitudinal adjustment frame 15 to move. The movement of the longitudinal adjustment frame 15 can drive the material retrieving claw group 11 and the top assembly part to move.

[0068] As mentioned above, the automatic assembly component 003 includes a top assembly part and a bottom assembly part, which are used for the synchronous assembly operation of the bottom cover 24 and the end cover 26. The top assembly part is arranged on one side of the material picking component 002 for picking up and placing the end cover 26, and the bottom assembly part is arranged on the assembly power box 1. The top assembly part includes an assembly box 16, an assembly motor 17 and a fastening group. The assembly box 16 is arranged on one side of the longitudinal adjustment frame 15, and the assembly motor 17 is installed on the assembly box 16. The output end of the assembly box 16 passes through the assembly box 16 and is provided with an assembly main gear 18. There are multiple fastening groups, and the fastening groups are rotatably arranged on the assembly box 16, and the fastening groups are engaged with the assembly main gear 18.

[0069] Among them, the fastening group includes a torque screwdriver 19 and an assembly slave gear 20. The torque screwdriver 19 is penetrated and rotatably set on the assembly box 16. The torque screwdriver 19 is adapted to the fixing bolt on the bottom cover 24. The assembly slave gear 20 is set on the torque screwdriver 19, and the assembly slave gear 20 is engaged with the assembly master gear 18.

[0070] Among them, the bottom assembly part includes a bottom assembly group and a bottom positioning cylinder 21. The bottom assembly group has the same structure as the top assembly part. The bottom positioning cylinder 21 is installed on the assembly power box 1, and the output end of the bottom positioning cylinder 21 is connected to the assembly box 16 in the bottom assembly group.

[0071] Specifically, when assembling the stepper motor casing, a feeding system for loading the bottom cover 24, the shell 25 and the end cover 26 is installed on one side of the material picking component 002 for the material picking and unloading operations of the bottom cover 24, the shell 25 and the end cover 26. By starting the horizontal adjustment electric cylinder 12 and the vertical adjustment electric cylinder 14 in the material picking component 002, and starting the power motor 7 in the power circulation component 001, the material picking claw group 11 places the bottom cover 24, the shell 25 and the end cover 26 on the conveying system in the positioning through holes in the casing positioning seat 4 in sequence. Under the limit of the positioning through holes, the pre-assembly operation of the bottom cover 24, the shell 25 and the end cover 26 can be completed.

[0072] After the motor casing is pre-assembled, with the cooperation of the position detection sensor 22 and the position detection block 23, the pre-assembled motor casing is placed at the automatic assembly component 003, that is, below the material picking component 002 for the end cover 26 picking and unloading operation, by starting the assembly motor 17 in the automatic assembly component 003, the output end of the assembly motor 17 drives the assembly main gear 18 to rotate, and the rotation of the assembly main gear 18 drives the assembly slave gear 20 to rotate, and the rotation of the assembly slave gear 20 drives multiple torque screwdrivers 19 to rotate synchronously, and by starting the corresponding longitudinal adjustment electric cylinder 14 and the bottom end adjustment cylinder 21, the torque screwdriver 19 can be driven to move toward the fixing screws on the end cover 26 and the bottom cover 24, and the fixing screws on the end cover 26 and the bottom cover 24 are threadedly connected to the housing 25 by the rotating torque screwdriver 19, thereby realizing the assembly operation of the motor casing.

[0073] Among them, the torque screwdriver 19 is a common device in the prior art that has automatic torque adjustment and is used to tighten bolts. The specific torque adjustment function is not the main innovation of this application. As long as it can tighten the bolts required for assembly with a specified torque when assembling the stepper motor housing, it will be sufficient.

[0074] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An automatic assembly device for a stepper motor housing, characterized in that: include: An assembly power box (1), wherein a material taking rod (2) is provided through the assembly power box (1), a circulating assembly disk (3) is rotatably provided on the material taking rod (2), the circulating assembly disk (3) is located above the assembly power box (1), and a power circulation component (001) for rotating the circulating assembly disk (3) is provided in the assembly power box (1); A casing positioning seat (4), wherein a plurality of casing positioning seats (4) are provided, and the casing positioning seats (4) are arranged at equal angles on the circulation assembly disk (3), and the casing positioning seat (4) is provided with limiting grooves for fixing the end cover (26), the housing (25) and the bottom cover (24) in sequence from top to bottom, and positioning through holes corresponding to the fixing bolts on the bottom cover (24) are provided on the casing positioning seat (4) and the circulation assembly disk (3), and the positioning through holes are communicated with the limiting grooves; A cross-type material taking box (5), the cross-type material taking box (5) is arranged on the material taking rod (2), and four material taking assemblies (002) are arranged at equal angles in the cross-type material taking box (5), and the four material taking assemblies (002) are used in sequence for the material taking and placing operations of the bottom cover (24), the shell (25), the end cover (26) and the entire machine; An automatic assembly component (003) includes a top assembly portion and a bottom assembly portion, and is used for synchronous assembly of a bottom cover (24) and an end cover (26). The top assembly portion is arranged on one side of the material taking component (002) for taking and placing the end cover (26), and the bottom assembly portion is arranged on the assembly power box (1).

2. The automatic assembly device for a stepping motor housing according to claim 1, characterized in that: The power cycle component (001) comprises: A circulation pipe (6), the circulation pipe (6) is penetrated and rotatably arranged on the assembly power box (1), one end of the circulation pipe (6) is connected to the circulation assembly disk (3), and the material taking rod (2) is located in the circulation pipe (6); A circulating power unit is provided in the assembly power box (1), and is connected to the circulating pipe (6).

3. The automatic assembly device for a stepping motor housing according to claim 2, characterized in that: The circulating power unit includes: A power motor (7), the power motor (7) being installed in the assembly power box (1); A power transmission gearbox (8), the power transmission gearbox (8) being installed in the assembly power box (1), the input end of the power transmission gearbox (8) being connected to the output end of the power motor (7); Bevel gear one (9), the bevel gear one (9) being arranged on the output end of the power transmission box (8); Bevel gear 2 (10), the bevel gear 2 (10) is arranged on the circulation pipe (6), and the bevel gear 2 (10) is meshed with the bevel gear 1 (9).

4. The automatic assembly device for a stepping motor housing according to claim 3, characterized in that: The material taking component (002) comprises: A transverse positioning portion, the transverse positioning portion being arranged in the cross-taking box (5); a longitudinal position adjusting portion, the longitudinal position adjusting portion being arranged on the transverse position adjusting portion; A material taking clamping claw group (11), wherein the material taking clamping claw group (11) is arranged on the longitudinal adjustment portion.

5. The automatic assembly device for a stepping motor housing according to claim 4, characterized in that: The lateral position adjustment portion includes: A horizontal adjustment electric cylinder (12), wherein the horizontal adjustment electric cylinder (12) is installed in the cross material taking box (5); A horizontal adjustment frame (13) is provided on the output end of the horizontal adjustment electric cylinder (12), and the longitudinal position adjustment portion is provided on the horizontal adjustment frame (13).

6. The automatic assembly device for a stepping motor housing according to claim 5, characterized in that: The longitudinal position adjustment portion includes: A longitudinal adjustment electric cylinder (14), wherein the longitudinal adjustment electric cylinder (14) is mounted on the transverse adjustment frame (13); A longitudinal adjustment frame (15) is provided on the output end of the longitudinal adjustment electric cylinder (14); the material taking clamping claw group (11) is installed on the longitudinal adjustment frame (15); and the top assembly portion is provided on one side of the longitudinal adjustment frame (15).

7. The automatic assembly device for a stepping motor housing according to claim 6, characterized in that: The top assembly portion includes: An assembly box (16), the assembly box (16) being arranged on one side of the longitudinal adjustment frame (15); An assembly motor (17), the assembly motor (17) being mounted on the assembly box (16), the output end of the assembly box (16) passing through the assembly box (16) and being provided with an assembly main gear (18); A fastening group is provided, wherein the fastening group is rotatably arranged on the assembly box (16) and meshes with the assembly main gear (18).

8. The automatic assembly device for a stepping motor housing according to claim 7, characterized in that: The fastening group includes: A torque screwdriver (19), the torque screwdriver (19) is penetrated and rotatably arranged on the assembly box (16), and the torque screwdriver (19) is adapted to the fixing bolt on the bottom cover (24); An assembling slave gear (20) is provided on the torque screwdriver (19), and the assembling slave gear (20) is meshed with the assembling master gear (18).

9. The automatic assembly device for a stepping motor housing according to claim 8, characterized in that: The bottom assembly portion includes: A bottom assembly group having the same structure as the top assembly part; A bottom end positioning cylinder (21) is installed on the assembly power box (1), and an output end of the bottom end positioning cylinder (21) is connected to the assembly box (16) in the bottom end assembly group.

10. The automatic assembly device for a stepping motor housing according to claim 9, characterized in that: A position detection sensor (22) is also provided on the assembly power box (1), and a position detection block (23) adapted to the position detection sensor (22) is provided on one side of each casing positioning seat (4).

Citation Information

Patent Citations

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    CN115800665A

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