CN209001766U - A kind of rotor shaft-inlet tooling - Google Patents

A kind of rotor shaft-inlet tooling Download PDF

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Publication number
CN209001766U
CN209001766U CN201821750306.9U CN201821750306U CN209001766U CN 209001766 U CN209001766 U CN 209001766U CN 201821750306 U CN201821750306 U CN 201821750306U CN 209001766 U CN209001766 U CN 209001766U
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CN
China
Prior art keywords
turntable
rotor shaft
rotor
pressing mechanism
pedestal
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Active
Application number
CN201821750306.9U
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Chinese (zh)
Inventor
毛瑞区
郭湘
陈武林
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhongshan Hanji Electric Appliance Co Ltd
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Zhongshan Hanji Electric Appliance Co Ltd
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Priority to CN201821750306.9U priority Critical patent/CN209001766U/en
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Abstract

The utility model discloses a kind of rotor shaft-inlet toolings, comprising: pedestal;Turntable;Pressing mechanism, the pressing mechanism are set to the top on the pedestal and being located at the extrusion position;Control system, the control system are electrically connected with the rotary drive mechanism and pressing mechanism simultaneously.By using above-mentioned structure, realize the automatic shaft entering of rotor, abandoned it is traditional by manually convey it is to be extruded enter axis rotor and manually control pressing mechanism movement and squeeze rotor and enter the mode of axis, both the labor intensity of worker had been greatly reduced, the production efficiency that rotor can be improved again improves the competitiveness of society of enterprise.

Description

A kind of rotor shaft-inlet tooling
Technical field
The utility model relates to motor production field, especially a kind of rotor shaft-inlet tooling.
Background technique
It is well known that needing to prepare rotor subject when production rotor, armature spindle being then inserted into the rotor master again On body, finally armature spindle is completely forced into rotor subject using rotor shaft tooling again.Referring to Fig.1, traditional rotor enters axis Tooling is generally used with flowering structure, including a pedestal 10 ', and a feeding for placing workpiece to be pressed is provided on the pedestal 10 ' Station 11 ' and one is additionally provided on the pedestal 10 ' for squeezing the extrusion position 12 ' of workpiece positioned at the extruding work Then pressing mechanism 20 ' above position 12 ' manually will after the workpiece wait be pressed is placed in the feeding station 11 ' by worker Workpiece to be pressed pushes to 12 ' place of extrusion position from feeding station 11 ', and the Manual press rotor enters axis to worker again later The control button of tooling, pressing mechanism 20 ' moves down extruding workpiece at this time, to armature spindle is pressed into rotor subject, pressure After dress, worker again removes the workpiece at 12 ' place of extrusion position, repeats above-mentioned movement later, and so circulation is continuous, on Although the rotor shaft tooling stated can be realized rotor and enter to turn, but the movement of worker's riveting is more, and employee's operation intensity is big, is easy tired Labor, and above-mentioned rotor shaft tooling is high to requiring Job Operations personnel technical ability and proficiency, and worker's riveting time It is longer, increase the processing cost of enterprise, additionally needs manually control pressing mechanism 20 ' and squeezed, there are certain wind Danger, is easy to appear industrial accident;Simultaneously because pushing workpiece to be pressed to extrusion position 12 ' to squeeze manually by worker Pressure is easy to make armature spindle and rotor subject not coaxial because pushing position inaccuracy, so that there are one for the rotor of production The decentraction of certainty ratio influences the quality of product.
Utility model content
To solve the above-mentioned problems, the purpose of this utility model is to provide a kind of structure is simple, worker can both be reduced Labor intensity, and can be with the rotor shaft-inlet tooling of automatic shaft entering.
The utility model be solve its technical problem and the technical solution adopted is that:
A kind of rotor shaft-inlet tooling, comprising:
Pedestal;
Turntable, the turntable are movably set on the pedestal and can rotate relative to the pedestal, the rotation The feeding station for installing workpiece, the extrusion position for squeezing workpiece and the blankers for removing workpiece are provided on platform Position, while the turntable is also connected with the rotary drive mechanism of its rotation of driving;
Pressing mechanism, the pressing mechanism are set to the top on the pedestal and being located at the extrusion position;
Control system, the control system are electrically connected with the rotary drive mechanism and pressing mechanism simultaneously, the control System processed can control the rotary drive mechanism and drive the turntable rotation, at the same the control system can also control it is described Pressing mechanism squeezes workpiece.
As an improvement of the above technical solution, the turntable is provided at least three for installing the fixture of workpiece.
As a further improvement of the above technical scheme, eight fixtures are provided on the turntable, eight fixtures are along shy The periphery of the turntable is uniformly distributed.
Preferably, the pressing mechanism includes bracket, and the bracket is set on the pedestal, the middle and upper part of the bracket It is provided with the compression bar being located above the extrusion position, while the compression bar is connected with the linear drives dress of its vertical lift of driving It sets, the linear drive apparatus and the control system are electrically connected.
In the present invention, the bracket includes two round bars being vertically arranged on the pedestal, two round bars Top is provided with a cross bar, and the linear drive apparatus is set on the cross bar, and also movable sleeve is connected to simultaneously on two round bars One guide runner that can be moved up and down along the round bar, the guide runner are socketed on the periphery wall of the compression bar.
Herein, the linear drive apparatus is a cylinder or hydraulic cylinder.
Specifically, the rotary drive mechanism is a motor.
Further, the rotary drive mechanism is a servo motor.
The beneficial effects of the utility model are: since the utility model passes through the rotation that setting one can rotate on the base Platform is provided with feeding station, extrusion position and discharge station on the turntable, which is also connected with driving its rotation Rotary drive mechanism, while the pressing mechanism above the extrusion position is additionally provided on pedestal, the rotary driving machine Structure and pressing mechanism are electrically connected with a control system simultaneously, therefore, worker can by it is to be extruded enter axis rotor be placed in it is described On the feeding station of turntable, by control system control turntable by it is to be extruded enter axis rotor rotation be delivered to extrusion position Place, then control system controls pressing mechanism again and squeezes the rotor being placed at extrusion position automatically, realizes entering automatically for rotor Axis, abandoned it is traditional by manually convey it is to be extruded enter axis rotor and manually control pressing mechanism movement squeeze rotor enter The mode of axis, had not only greatly reduced the labor intensity of worker, but also the production efficiency of rotor can be improved, and the society for improving enterprise is competing Power is striven, and since by turntable conveying workpieces, transfer position is accurate and reliable, so that pressing mechanism, which squeezes rotor, enters axis When, armature spindle can be concentric with rotor, improves the quality of product, meets the needs of users.
Detailed description of the invention
Utility model will be further described in detail below with reference to the attached drawings and specific embodiments.
Fig. 1 is the structural schematic diagram of traditional rotor shaft tooling;
Fig. 2 is the structural schematic diagram of one preferred embodiment of the utility model.
Specific embodiment
Referring to Fig. 2, a kind of rotor shaft-inlet tooling, an including pedestal 10 is movably set with one turn on the pedestal 10 Dynamic platform 20, the turntable 20 can be rotated relative to the pedestal 10, be provided on the turntable 20 for installing workpiece Expect station 21, the extrusion position 22 for squeezing workpiece and the discharge station 23 for removing workpiece, while the turntable 20 is also It is connected with the rotary drive mechanism (not being painted in figure) of its rotation of driving, in the present invention, it is preferable that the rotation driving Mechanism is a motor.Further preferably, the rotary drive mechanism is a servo motor;One is provided on the pedestal 10 to be located at The pressing mechanism 30 of the top of the extrusion position 22, the rotary drive mechanism and pressing mechanism 30 are electrically connected with one simultaneously Control system, the control system can control the rotary drive mechanism and the turntable 20 is driven to rotate, while the control System can also control the pressing mechanism 30 and squeeze workpiece.
Since the utility model on pedestal 10 by being arranged a turntable 20 that can be rotated, set on the turntable 20 It is equipped with feeding station 21, extrusion position 22 and discharge station 23, which is also connected with the rotation driving of its rotation of driving Mechanism, while the pressing mechanism 30 above the extrusion position 22, the rotary drive mechanism are additionally provided on pedestal 10 With pressing mechanism 30 simultaneously be electrically connected with a control system, therefore, worker can by it is to be extruded enter axis rotor 40 be placed in institute State on the feeding station 21 of turntable 20, by control system control turntable 20 by it is to be extruded enter axis rotor 40 rotate conveying To extrusion position 22, then control system controls pressing mechanism 30 again and squeezes the rotor being placed at extrusion position 22 automatically 40, realize rotor 40 automatic shaft entering, abandoned it is traditional by manually convey it is to be extruded enter axis rotor and manually control Pressing mechanism movement squeezes the mode that rotor enters axis, has not only greatly reduced the labor intensity of worker, but also the life of rotor can be improved Efficiency is produced, improves the competitiveness of society of enterprise, and since by 20 conveying rotor 40 of turntable, transfer position is accurate and reliable, So that armature spindle can be concentric with rotor, improves the quality of product when the extruding rotor 40 of pressing mechanism 30 enters axis, meet The demand of user.
Wherein, in order to enable the rotor shaft-inlet tooling of the utility model can be produced continuously, as this reality With a novel preferred embodiment, the turntable 20 is provided at least three for installing the fixture 200 of workpiece.Further It is preferred that being provided with eight fixtures 200 on the turntable 20, eight fixtures 200 uniformly divide along the periphery of the shy turntable 20 Cloth.Therefore, worker only needs to place the rotor of axis to be pressed into the fixture 200 being located at the feeding station 21, and will Rotor on the fixture 200 at discharge station 23 is removed, simple, convenient and fast, may be implemented continuously into Row rotor enters axis, greatly increases the efficiency of the production rotor of enterprise.
Wherein, in order to enable the structure of the rotor shaft-inlet tooling of the utility model is simpler, it is preferable that described to squeeze Press mechanism 30 includes bracket 31, and the bracket 31 is set on the pedestal 10, and the middle and upper part of the bracket 31, which is provided with, to be located at The compression bar 32 of 22 top of extrusion position, while the compression bar 32 is connected with the linear drive apparatus 33 of its vertical lift of driving, The linear drive apparatus 33 is electrically connected with the control system.
Further preferably, the bracket 31 includes two round bars 310 being vertically arranged on the pedestal 10, two circles The top of bar 310 is provided with a cross bar 311, and the linear drive apparatus 33 is set on the cross bar 311, two round bars 310 It is upper that also movable sleeve is connected to a guide runner 312 that can be moved up and down along the round bar 310, the guide runner 312 simultaneously It is socketed on the periphery wall of the compression bar 32.The compression bar 32 is guided to move up and down lifting by using guide runner 312, it can be with It effectively prevent compression bar 32 to shift in lifting process, ensure that the extruding precision of compression bar 32.
Wherein, in order to enable pressure ram 32, which can more effectively squeeze rotor, enters axis, herein, it is preferable that described straight Line driving device 33 is a cylinder or hydraulic cylinder.Certainly, above-mentioned linear drive apparatus 33 is matched for one by motor and screw body The structure being combined into, it is also possible.
The foregoing is merely the preferred embodiments of the utility model, as long as realizing the utility model with essentially identical means The technical solution of purpose belongs within the protection scope of the utility model.

Claims (8)

1. a kind of rotor shaft-inlet tooling characterized by comprising
Pedestal (10);
Turntable (20), the turntable (20) are movably set on the pedestal (10) and being capable of the relatively described pedestals (10) turn It is dynamic, feeding station (21), the extrusion position for squeezing workpiece for installing workpiece are provided on the turntable (20) (22) discharge station (23) and for removing workpiece, while the turntable (20) is also connected with the rotation driving of its rotation of driving Mechanism;
Pressing mechanism (30), the pressing mechanism (30) are set on the pedestal (10) and are located at the extrusion position (22) Top;
Control system, the control system are electrically connected with the rotary drive mechanism and pressing mechanism (30) simultaneously, the control System processed can control the rotary drive mechanism and drive turntable (20) rotation, while the control system can also control The pressing mechanism (30) squeezes workpiece.
2. a kind of rotor shaft-inlet tooling according to claim 1, it is characterised in that:
The turntable (20) is provided at least three for installing the fixture (200) of workpiece.
3. a kind of rotor shaft-inlet tooling according to claim 2, it is characterised in that:
Eight fixtures (200) are provided on the turntable (20), eight fixtures (200) are along the periphery of the shy turntable (20) It is uniformly distributed.
4. a kind of rotor shaft-inlet tooling according to claim 1, which is characterized in that the pressing mechanism (30) includes Bracket (31), the bracket (31) are set on the pedestal (10), and the middle and upper part of the bracket (31) is provided with positioned at described Compression bar (32) above extrusion position (22), while the compression bar (32) is connected with the linear drive apparatus of its vertical lift of driving (33), the linear drive apparatus (33) and the control system are electrically connected.
5. a kind of rotor shaft-inlet tooling according to claim 4, it is characterised in that:
The bracket (31) includes two round bars (310) being vertically arranged on the pedestal (10), two round bars (310) it is upper Portion is provided with a cross bar (311), and the linear drive apparatus (33) is set on the cross bar (311), on two round bars (310) Also simultaneously movable sleeve be connected to one can be along the guide runner (312) that the round bar (310) move up and down, the guide runner (312) it is socketed on the periphery wall of the compression bar (32).
6. a kind of rotor shaft-inlet tooling according to claim 4 or 5, it is characterised in that:
The linear drive apparatus (33) is a cylinder or hydraulic cylinder.
7. a kind of rotor shaft-inlet tooling according to claim 1, it is characterised in that:
The rotary drive mechanism is a motor.
8. a kind of rotor shaft-inlet tooling according to claim 7, it is characterised in that:
The rotary drive mechanism is a servo motor.
CN201821750306.9U 2018-10-26 2018-10-26 A kind of rotor shaft-inlet tooling Active CN209001766U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821750306.9U CN209001766U (en) 2018-10-26 2018-10-26 A kind of rotor shaft-inlet tooling

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821750306.9U CN209001766U (en) 2018-10-26 2018-10-26 A kind of rotor shaft-inlet tooling

Publications (1)

Publication Number Publication Date
CN209001766U true CN209001766U (en) 2019-06-18

Family

ID=66805730

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821750306.9U Active CN209001766U (en) 2018-10-26 2018-10-26 A kind of rotor shaft-inlet tooling

Country Status (1)

Country Link
CN (1) CN209001766U (en)

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