CN209608435U - Electric machine rotor iron core tinertoy auxiliary hydraulic device - Google Patents

Electric machine rotor iron core tinertoy auxiliary hydraulic device Download PDF

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Publication number
CN209608435U
CN209608435U CN201920182224.7U CN201920182224U CN209608435U CN 209608435 U CN209608435 U CN 209608435U CN 201920182224 U CN201920182224 U CN 201920182224U CN 209608435 U CN209608435 U CN 209608435U
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China
Prior art keywords
iron core
plate
rotor
rotor iron
wall
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Active
Application number
CN201920182224.7U
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Chinese (zh)
Inventor
王春雷
潘伟
施建锋
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Jiangsu Fusson Mould Technology Co Ltd
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Jiangsu Fusson Mould Technology Co Ltd
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Priority to CN201920182224.7U priority Critical patent/CN209608435U/en
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Publication of CN209608435U publication Critical patent/CN209608435U/en
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  • Manufacture Of Motors, Generators (AREA)

Abstract

Electric machine rotor iron core tinertoy auxiliary hydraulic device, it is related to rotor equipment technical field.It includes that motor base upper surface is fixedly connected with bottom plate, plate upper surface is fixedly connected with buffering plate, buffering plate upper end is bonded with mounting plate fixation, mounting plate upper surface is fixedly connected with protective plate, side is fixedly connected with shell between protective plate, outer casing inner wall is equipped with servo motor, and servo motor inner wall is equipped with rotor assembly.It is convenient and practical, it can reduce air drag, accelerate rotor speed, save production cost, overall processing is high-efficient, is suitble to high-volume automated production.

Description

Electric machine rotor iron core tinertoy auxiliary hydraulic device
Technical field
The utility model relates to rotor equipment technical fields, and in particular to the hydraulic auxiliary of electric machine rotor iron core tinertoy Device.
Background technique
Rotor is the rotary part in motor.Motor is made of rotor and stator two parts, it is for realizing electricity It can be with the conversion equipment of mechanical energy and mechanical energy and electric energy.Rotor is divided into motor rotor and generator amature, and motor turns Son is divided into internal rotor rotating manner and two kinds of outer rotor rotating manner.Internal rotor rotating manner is that the core among motor is rotation Body rotor, output torque or income energy.Outer rotor rotating manner is i.e. using motor ectosome as rotary body rotor, general large-scale electricity Machine uses the outer rotor kind of drive, and micro-machine uses the internal rotor kind of drive.
Conventional motors rotor auxiliary device input cost is high, increases human cost, and increase quality control cost, Whole efficiency is low, is not suitable for high-volume automated production.
Utility model content
The purpose of this utility model is that it is in view of the drawbacks of the prior art and insufficient, electric machine rotor iron core tinertoy liquid is provided Auxiliary device is pressed, it can solve current electric machine rotor auxiliary device input cost height, increase human cost, and increase The problem of quality control cost, whole efficiency is low, is not suitable for high-volume automated production.
To achieve the above object, the utility model is using following technical scheme: it includes motor base 1, bottom plate 2, delays Rush pedestal 3, mounting plate 4, protective plate 5, shell 6, servo motor 7, rotor assembly 8,1 upper surface of motor base and bottom plate 2 It is fixedly connected, 2 upper surface of bottom plate is fixedly connected with buffering plate 3,3 upper end of buffering plate and the fixed patch of mounting plate 4 It closes, 4 upper surface of mounting plate is fixedly connected with protective plate 5, and side is fixedly connected with shell 6 between the protective plate 5, described 6 inner wall of shell is equipped with servo motor 7, and 7 inner wall of servo motor is equipped with rotor assembly 8.
The rotor assembly 8 includes rotor core 81, shaft 82, limit plate 83, radiating subassembly 84, locating shaft 85, described Through connection, 82 side of shaft is equipped with limit plate 83 for 81 outer wall of rotor core and shaft 82, outside the rotor core 81 Wall and radiating subassembly 84 are through connection, and radiating subassembly side outer wall is with locating shaft 85 through connection.
The radiating subassembly 84 includes outer cylinder 841, cooling fin 842, rotor iron core lamination 843, sleeve 844, the outer cylinder 841 outer walls and cooling fin 842 are around connection, and 841 outer wall of outer cylinder is fixedly connected with rotor iron core lamination 843, the rotor 843 one end of core stamping, which with sleeve is passed through 844 and worn, to be connect.
By shaft 82 and servo motor through connection, the rotor core 81 runs through the rotor core 81 with shaft 82 Connection.User-friendly and installation.
The fin collar specifically uses aluminum member, and cooling fin quantity around outer drum outer wall, the cooling fin is mounted on For 20-30 group.Convenient for playing heat dissipation effect when equipment is run.
The motor base 1 specifically uses plank, and motor base 1 is used cooperatively by buffering plate 3 with mounting plate 4. It is user-friendly to be conducive to raising working efficiency.
4 upper surface of mounting plate offers multiple groups threaded hole, and mounting plate 4 specifically uses carbon steel component.Being conducive to can To reduce air drag, accelerate rotor speed.
After adopting the above technical scheme, the utility model has the beneficial effect that it is convenient and practical, air drag can reduce, Accelerate rotor speed, save production cost, overall processing is high-efficient, is suitble to high-volume automated production.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only It is some embodiments of the utility model, for those of ordinary skill in the art, before not making the creative labor property It puts, is also possible to obtain other drawings based on these drawings.
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the structural schematic diagram of rotor assembly 8 in the utility model;
Fig. 3 is the structural schematic diagram of radiating subassembly 84 in the utility model.
Wherein, motor base 1, bottom plate 2, buffering plate 3, mounting plate 4, protective plate 5, shell 6, servo motor 7, rotor set Part 8, rotor core 81, shaft 82, limit plate 83, radiating subassembly 84, outer cylinder 841, cooling fin 842, rotor iron core lamination 843, Sleeve 844, locating shaft 85.
Specific embodiment
Referring to shown in Fig. 1-Fig. 3, present embodiment the technical solution adopted is that: it include motor base 1, bottom plate 2, Buffering plate 3, mounting plate 4, protective plate 5, shell 6, servo motor 7, rotor assembly 8,1 upper surface of motor base and bottom plate 2 are fixedly connected, and 2 upper surface of bottom plate is fixedly connected with buffering plate 3,3 upper end of buffering plate and the fixed patch of mounting plate 4 It closes, 4 upper surface of mounting plate is fixedly connected with protective plate 5, and side is fixedly connected with shell 6 between the protective plate 5, described 6 inner wall of shell is equipped with servo motor 7, and 7 inner wall of servo motor is equipped with rotor assembly 8.
The rotor assembly 8 includes rotor core 81, shaft 82, limit plate 83, radiating subassembly 84, locating shaft 85, described Through connection, 82 side of shaft is equipped with limit plate 83 for 81 outer wall of rotor core and shaft 82, outside the rotor core 81 Wall and radiating subassembly 84 are through connection, and radiating subassembly side outer wall is with locating shaft 85 through connection.
The radiating subassembly 84 includes outer cylinder 841, cooling fin 842, rotor iron core lamination 843, sleeve 844, the outer cylinder 841 outer walls and cooling fin 842 are around connection, and 841 outer wall of outer cylinder is fixedly connected with rotor iron core lamination 843, the rotor 843 one end of core stamping, which with sleeve is passed through 844 and worn, to be connect.
By shaft 82 and servo motor through connection, the rotor core 81 runs through the rotor core 81 with shaft 82 Connection.User-friendly and installation.
The fin collar specifically uses aluminum member, and cooling fin quantity around outer drum outer wall, the cooling fin is mounted on For 20-30 group.Convenient for playing heat dissipation effect when equipment is run.
The motor base 1 specifically uses plank, and motor base 1 is used cooperatively by buffering plate 3 with mounting plate 4. It is user-friendly to be conducive to raising working efficiency.
4 upper surface of mounting plate offers multiple groups threaded hole, and mounting plate 4 specifically uses carbon steel component.Being conducive to can To reduce air drag, accelerate rotor speed.
Working principle of the utility model is: when work, it can be to setting by motor base, bottom plate, buffering plate and protective plate It is standby to play protection and damping effect, be conducive to save production cost by limit plate and rotor core, overall processing is high-efficient, It is suitble to high-volume automated production, slipping phenomenon can reduce by cooling fin and rotor iron core lamination, facilitate reality to reach With can reduce air drag, accelerate rotor speed, save production cost, overall processing is high-efficient, is suitble to high-volume automatic Metaplasia produces.
The above is merely intended for describing the technical solutions of the present application, but not for limiting the present application, those of ordinary skill in the art couple The other modifications or equivalent replacement that the technical solution of the utility model is made, without departing from technical solutions of the utility model Spirit and scope should all cover in the scope of the claims of the utility model.

Claims (7)

1. electric machine rotor iron core tinertoy auxiliary hydraulic device, it is characterised in that: it includes motor base (1), bottom plate (2), delays Rush pedestal (3), mounting plate (4), protective plate (5), shell (6), servo motor (7), rotor assembly (8), the motor base (1) Upper surface is fixedly connected with bottom plate (2), and bottom plate (2) upper surface is fixedly connected with buffering plate (3), the buffering plate (3) upper end is bonded with mounting plate (4) fixation, and mounting plate (4) upper surface is fixedly connected with protective plate (5), the protective plate (5) side is fixedly connected with shell (6) between, and shell (6) inner wall is equipped with servo motor (7), the servo motor (7) Inner wall is equipped with rotor assembly (8).
2. electric machine rotor iron core tinertoy auxiliary hydraulic device according to claim 1, it is characterised in that: the rotor set Part (8) includes rotor core (81), shaft (82), limit plate (83), radiating subassembly (84), locating shaft (85), the rotor iron Through connection, shaft (82) side is equipped with limit plate (83), the rotor core for core (81) outer wall and shaft (82) (81) outer wall and radiating subassembly (84) are through connection, and radiating subassembly side outer wall and locating shaft (85) are through connection.
3. electric machine rotor iron core tinertoy auxiliary hydraulic device according to claim 2, it is characterised in that: the heat dissipation group Part (84) includes outer cylinder (841), cooling fin (842), rotor iron core lamination (843), sleeve (844), outer cylinder (841) outer wall With cooling fin (842) around connection, outer cylinder (841) outer wall is fixedly connected with rotor iron core lamination (843), the rotor iron Core punching (843) one end and sleeve (844) are through connection.
4. electric machine rotor iron core tinertoy auxiliary hydraulic device according to claim 2, it is characterised in that: the rotor iron Core (81) is by shaft (82) and servo motor (7) through connection, and the rotor core (81) and shaft (82) are through connection.
5. electric machine rotor iron core tinertoy auxiliary hydraulic device according to claim 3, it is characterised in that: the cooling fin (842) it is fitted around in outer cylinder (841) outer wall, the cooling fin (842) specifically uses aluminum member, and cooling fin (842) number Amount is 20-30 group.
6. electric machine rotor iron core tinertoy auxiliary hydraulic device according to claim 1, it is characterised in that: the motor bottom Seat (1) specifically uses plank, and motor base (1) is used cooperatively by buffering plate (3) with mounting plate (4).
7. electric machine rotor iron core tinertoy auxiliary hydraulic device according to claim 1, it is characterised in that: the mounting plate (4) upper surface offers multiple groups threaded hole, and mounting plate (4) specifically uses carbon steel component.
CN201920182224.7U 2019-02-01 2019-02-01 Electric machine rotor iron core tinertoy auxiliary hydraulic device Active CN209608435U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920182224.7U CN209608435U (en) 2019-02-01 2019-02-01 Electric machine rotor iron core tinertoy auxiliary hydraulic device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920182224.7U CN209608435U (en) 2019-02-01 2019-02-01 Electric machine rotor iron core tinertoy auxiliary hydraulic device

Publications (1)

Publication Number Publication Date
CN209608435U true CN209608435U (en) 2019-11-08

Family

ID=68401804

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920182224.7U Active CN209608435U (en) 2019-02-01 2019-02-01 Electric machine rotor iron core tinertoy auxiliary hydraulic device

Country Status (1)

Country Link
CN (1) CN209608435U (en)

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