CN205318959U - High -power permanent magnetism tombarthite motor is with centre gripping conveying mechanism that magnetizes - Google Patents

High -power permanent magnetism tombarthite motor is with centre gripping conveying mechanism that magnetizes Download PDF

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Publication number
CN205318959U
CN205318959U CN201620081589.7U CN201620081589U CN205318959U CN 205318959 U CN205318959 U CN 205318959U CN 201620081589 U CN201620081589 U CN 201620081589U CN 205318959 U CN205318959 U CN 205318959U
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CN
China
Prior art keywords
fixed
top board
rotor
block
conveying
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Expired - Fee Related
Application number
CN201620081589.7U
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Chinese (zh)
Inventor
卢丽娟
张新华
鲁志康
何绍木
尹黎明
张苏敏
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University of Shaoxing
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University of Shaoxing
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Priority to CN201620081589.7U priority Critical patent/CN205318959U/en
Application granted granted Critical
Publication of CN205318959U publication Critical patent/CN205318959U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a high -power permanent magnetism tombarthite motor is with centre gripping conveying mechanism that magnetizes, which comprises a frame, the roof middle part top of frame is equipped with the supporting disk, the front portion and the rear portion of roof all are fixed with two transport connecting plates, screw conveyor's both ends articulate on two transport connecting plates that correspond at the front portion and the rear portion of roof, carry the both ends of guide bar to fix on two transport connecting plates that correspond at the front portion and the rear portion of roof, carry the piece spiro union on the screw conveyor who corresponds and the plug bush on the transport guide bar that corresponds, the top of transport piece is fixed with snatchs the motor, the top of snatching the output shaft of motor has the screw, adjust the pole spiro union in the screw, the tip both sides of adjusting the pole are fixed with the locating plate, be fixed with the location body of rod on the locating plate, be fixed with the position sleeve on the transport piece. On it can be automatically carries the supporting disk with the rotor, its greatly reduced hand labor volume improved installation effectiveness and security to guarantee that the rotor can not be impaired, guarantee its life.

Description

A kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes
Technical field:
This utility model relates to magnetizing equipment technical field, more specifically to a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes.
Background technology:
In existing magnetizing equipment, its rotor magnetizes and is usually artificial loading installation, which increases the artificial amount of labour, and easily make hands or rotor and adjacent component produce to collide with when feeding, making hands injured or make rotor injured, impact uses, and has potential safety hazard.
Utility model content:
The purpose of this utility model is to overcome the deficiencies in the prior art, a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes is provided, rotor can be transported on a support plate by automatically, it is substantially reduced manual labor amount, improve installation effectiveness and safety, and ensure that rotor is not damaged, it is ensured that its service life.
This utility model solves the scheme of described technical problem:
A kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes, including frame, a support plate it is arranged in the middle part of the top board of described frame, the front and rear of top board is respectively and fixedly provided with two conveying connecting plates, the two ends of conveying screw rod are hinged on two conveying connecting plates that the front and rear of top board is corresponding, the two ends of conveying guide post are fixed on two conveying connecting plates that the front and rear of top board is corresponding, transfer block is screwed onto on the conveying screw rod of correspondence and sleeve is on corresponding conveying guide post, the top of transfer block is fixed with crawl motor, the top of the output shaft capturing motor has screw, adjusting rod is screwed onto in screw, the both sides, end of adjusting rod are fixed with location-plate, location-plate is fixed with the location body of rod, transfer block is fixed with positioning sleeve, location body of rod sleeve is in positioning sleeve, the end of adjusting rod is fixed with grip block, two grip block grip rolls,
Being fixed with conveying motor on corresponding conveying connecting plate on described top board, the output shaft of conveying motor is splined shaft, and splined shaft sleeve is in the splined hole that the end of corresponding conveying screw rod has.
The left and right sides in the middle part of the end face of the top board of described frame is fixed with rotation screw rod contiguous block, rotates on screw rod contiguous block and is fixed with proximity switch, and the inductive head of proximity switch is straight up and corresponding with the sensor block being fixed with on the sidewall of transfer block.
Being fixed with two charging limit switches on the end face at the rear portion of the top board of described frame, the induction end of charging limit switch is corresponding with the sensor block being fixed with on the sidewall of transfer block.
The middle part base plate of described top board is fixed with promotion cylinder, the push rod promoting cylinder passes top board straight up and is fixed with a support plate, prop up, in the middle part of the end face of support plate, there is upwardly extending middle part lobe, the bottom of the rotating shaft of rotor is nested in the locating groove that has of middle part of middle part lobe, and the bottom face of rotor is pressed against the end face of middle part lobe;
Conveying screw rod and conveying guide post are in above the edge of a support plate.
Having multiple vertical jack on described top board, guide post sleeve is in vertical jack, and the upper end of guide post is fixed on the bottom surface of a support plate, and the bottom surface of top board is fixed with multiple fairlead, and guide post sleeve is in fairlead.
The middle part of described top board has detent, and the bottom surface, middle part of a support plate has the lower convex portion downwardly extended, and lower convex portion faces toward detent.
Described grip block is arc block, grip block have facing to the bottom of curved wall of rotor to rotor close radially extend limit, grip block is fixed with cushion on the curved wall of rotor.
Prominent effect of the present utility model is:
Compared with prior art, rotor can be transported on a support plate by automatically, and it is substantially reduced manual labor amount, improves installation effectiveness and safety, and ensures that rotor is not damaged, it is ensured that its service life.
Accompanying drawing illustrates:
Fig. 1 is structural representation of the present utility model;
Fig. 2 is partial top view of the present utility model;
Fig. 3 is the partial enlarged drawing of Fig. 2.
Detailed description of the invention:
Embodiment, see as shown in Figure 1 to Figure 3, a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes, including frame 10, a support plate 60 it is arranged in the middle part of the top board 11 of described frame 10, the front and rear of top board 11 is respectively and fixedly provided with two conveying connecting plates 80, the two ends of conveying screw rod 81 are hinged on two conveying connecting plates 80 that the front and rear of top board 11 is corresponding, the two ends of conveying guide post 82 are fixed on two conveying connecting plates 80 that the front and rear of top board 11 is corresponding, transfer block 83 is screwed onto on the conveying screw rod 81 of correspondence and sleeve is on corresponding conveying guide post 82, the top of transfer block 83 is fixed with crawl motor 84, the top of the output shaft capturing motor 84 has screw, adjusting rod 85 is screwed onto in screw, the both sides, end of adjusting rod 85 are fixed with location-plate 86, location-plate 86 is fixed with the location body of rod 87, transfer block 83 is fixed with positioning sleeve 88, the location body of rod 87 sleeve is in positioning sleeve 88, the end of adjusting rod 85 is fixed with grip block 89, two grip block 89 grip rolls 70,
Being fixed with conveying motor 90 on corresponding conveying connecting plate 80 on described top board 11, the output shaft of conveying motor 90 is splined shaft, and splined shaft sleeve is in the splined hole that the end of corresponding conveying screw rod 81 has.
Further, the left and right sides in the middle part of the end face of the top board 11 of described frame 10 is fixed with rotation screw rod contiguous block 19, rotating on screw rod contiguous block 19 and be fixed with proximity switch 1, the inductive head of proximity switch 1 is straight up and corresponding with the sensor block 831 being fixed with on the sidewall of transfer block 83.
Further, the end face at the rear portion of the top board 11 of described frame 10 being fixed with two charging limit switches 2, the induction end of charging limit switch 2 is corresponding with the sensor block 831 being fixed with on the sidewall of transfer block 83.
Further, the middle part base plate of described top board 11 is fixed with promotion cylinder 14, the push rod promoting cylinder 14 passes top board 11 straight up and is fixed with a support plate 60, prop up, in the middle part of the end face of support plate 60, there is upwardly extending middle part lobe 61, the bottom of the rotating shaft of rotor 70 is nested in the locating groove 62 that has of middle part of middle part lobe 61, and the bottom face of rotor 70 is pressed against the end face of middle part lobe 61;
Conveying screw rod 81 and conveying guide post 82 are in above the edge of a support plate 60.
Further, having multiple vertical jack 15 on described top board 11, guide post 16 sleeve is in vertical jack 15, and the upper end of guide post 16 is fixed on the bottom surface of a support plate 60, the bottom surface of top board 11 is fixed with multiple fairlead 17, and guide post 16 sleeve is in fairlead 17.
Further, the middle part of described top board 11 has detent 18, and the bottom surface, middle part of a support plate 60 has the lower convex portion 63 downwardly extended, and lower convex portion 63 faces toward detent 18.
Further, described grip block 89 is arc block, grip block 89 have facing to the bottom of the curved wall of rotor 70 to rotor 70 close radially extend limit 891, grip block 89 is fixed with cushion 892 on the curved wall of rotor 70.
Operation principle: first two transfer block 83 are in the rear portion of top board 11, the induction end of two charging limit switches 2 is corresponding with the sensor block 831 being fixed with on the sidewall of transfer block 83, then, rotor 70 is placed between two grip blocks 89, by two grip blocks 39, rotor 70 is clamped, and the lower surface of rotor 70 is pressed against and radially extends on limit 891, then, conveying motor 90 runs, conveying screw rod 81 is rotated, thus transfer block 83 is moved to a support plate 60, when sensor block 831 is facing to proximity switch 1, induced signal is flowed to control main frame by proximity switch 1, control main frame just to control to carry motor 90 out of service, now, rotor 70 is in above the middle part of a support plate 60, then, the push rod promoting cylinder 14 promotes, a support plate 60 is promoted, so that the bottom of the rotating shaft of rotor 70 to be magnetized is nested in the locating groove 62 that has of middle part of middle part lobe 61, then, capture motor 84 to rotate, make grip block 89 away from rotor 70, thus unclamping rotor 70, then rotor 70 is carried out upper clamping by the clamping device on the upper plate above top board 11, then, can magnetize, after having magnetized, clamping device promotes, capture motor 84 to rotate, grip block 89 is made to be pressed against on rotor 70, so that rotor 70 is clamped on two grip blocks 89, then, the push rod promoting cylinder 14 declines, the bottom making the rotating shaft of rotor 70 separates with a support plate 60, by carrying motor 70 to run, conveying screw rod 81 is rotated, two transfer block 83 can be moved rearwards by, thus the rotor 70 magnetized is removed, very convenient.
Finally; embodiment of above is merely to illustrate this utility model; and be not limitation of the utility model; those of ordinary skill about technical field; when without departing from spirit and scope of the present utility model; can also making a variety of changes and modification, therefore all equivalent technical schemes fall within category of the present utility model, and scope of patent protection of the present utility model should be defined by the claims.

Claims (7)

1. the high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes, including frame (10), it is characterized in that: top board (11) middle part of described frame (10) is arranged over a support plate (60), the front and rear of top board (11) is respectively and fixedly provided with two conveyings connecting plate (80), the two ends of conveying screw rod (81) are hinged on two conveyings connecting plate (80) that the front and rear of top board (11) is corresponding, the two ends of conveying guide post (82) are fixed on two conveyings connecting plate (80) that the front and rear of top board (11) is corresponding, transfer block (83) is screwed onto the upper also sleeve of conveying screw rod (81) of correspondence on corresponding conveying guide post (82), the top of transfer block (83) is fixed with crawl motor (84), the top of the output shaft capturing motor (84) has screw, adjusting rod (85) is screwed onto in screw, the both sides, end of adjusting rod (85) are fixed with location-plate (86), location-plate (86) is fixed with the location body of rod (87), transfer block (83) is fixed with positioning sleeve (88), the location body of rod (87) sleeve is in positioning sleeve (88), the end of adjusting rod (85) is fixed with grip block (89), two grip blocks (89) grip roll (70),
Corresponding conveying connecting plate (80) on described top board (11) is fixed with conveying motor (90), the output shaft of conveying motor (90) is splined shaft, and splined shaft sleeve is in the splined hole that the end of corresponding conveying screw rod (81) has.
2. a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes according to claim 1, it is characterized in that: the left and right sides in the middle part of the end face of the top board (11) of described frame (10) is fixed with rotation screw rod contiguous block (19), rotating and be fixed with proximity switch (1) on screw rod contiguous block (19), the inductive head of proximity switch (1) is straight up and corresponding with the sensor block (831) being fixed with on the sidewall of transfer block (83).
3. a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes according to claim 2, it is characterized in that: being fixed with two charging limit switches (2) on the end face at the rear portion of the top board (11) of described frame (10), the induction end of charging limit switch (2) is corresponding with the sensor block (831) being fixed with on the sidewall of transfer block (83).
4. a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes according to claim 2, it is characterized in that: the middle part base plate of described top board (11) is fixed with promotion cylinder (14), the push rod promoting cylinder (14) passes top board (11) straight up and is fixed with a support plate (60), prop up, in the middle part of the end face of support plate (60), there is upwardly extending middle part lobe (61), the bottom of the rotating shaft of rotor (70) is nested in the locating groove (62) that has of middle part at middle part lobe (61), the bottom face of rotor (70) is pressed against the end face at middle part lobe (61),
Conveying screw rod (81) and conveying guide post (82) are in above the edge of a support plate (60).
5. a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes according to claim 4, it is characterized in that: described top board (11) has multiple vertical jack (15), guide post (16) sleeve is in vertical jack (15), the upper end of guide post (16) is fixed on the bottom surface of a support plate (60), the bottom surface of top board (11) is fixed with multiple fairlead (17), and guide post (16) sleeve is in fairlead (17).
6. a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes according to claim 5, it is characterized in that: the middle part of described top board (11) has detent (18), the bottom surface, middle part of support plate (60) has the lower convex portion (63) downwardly extended, and lower convex portion (63) is facing to detent (18).
7. a kind of high-power permanent magnet rare-earth electric motor gripping conveyor structure that magnetizes according to claim 1, it is characterized in that: described grip block (89) is arc block, grip block (89) have facing to the bottom of the curved wall of rotor (70) to rotor (70) close radially extend limit (891), grip block (89) is fixed with cushion (892) on the curved wall of rotor (70).
CN201620081589.7U 2016-01-27 2016-01-27 High -power permanent magnetism tombarthite motor is with centre gripping conveying mechanism that magnetizes Expired - Fee Related CN205318959U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620081589.7U CN205318959U (en) 2016-01-27 2016-01-27 High -power permanent magnetism tombarthite motor is with centre gripping conveying mechanism that magnetizes

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620081589.7U CN205318959U (en) 2016-01-27 2016-01-27 High -power permanent magnetism tombarthite motor is with centre gripping conveying mechanism that magnetizes

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CN205318959U true CN205318959U (en) 2016-06-15

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105923368A (en) * 2016-06-16 2016-09-07 东莞市联洲知识产权运营管理有限公司 Frame type moving and conveying mechanism for communication accessories
CN107176452A (en) * 2017-06-07 2017-09-19 广州中国科学院工业技术研究院 Material clamping device, material mounting and clamping system and its clamping method
CN108482752A (en) * 2016-08-22 2018-09-04 于正华 A kind of working method of cosmetics box body clamp moving mechanism
CN108689155A (en) * 2018-05-28 2018-10-23 河南华洋发动机制造有限公司 A kind of cylinder body drill autofeeder

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105923368A (en) * 2016-06-16 2016-09-07 东莞市联洲知识产权运营管理有限公司 Frame type moving and conveying mechanism for communication accessories
CN108482752A (en) * 2016-08-22 2018-09-04 于正华 A kind of working method of cosmetics box body clamp moving mechanism
CN108502265A (en) * 2016-08-22 2018-09-07 于正华 A kind of cosmetics box body carrying mechanism
CN107176452A (en) * 2017-06-07 2017-09-19 广州中国科学院工业技术研究院 Material clamping device, material mounting and clamping system and its clamping method
CN107176452B (en) * 2017-06-07 2019-03-08 广州中国科学院工业技术研究院 Material clamping device, material mounting and clamping system and its clamping method
CN108689155A (en) * 2018-05-28 2018-10-23 河南华洋发动机制造有限公司 A kind of cylinder body drill autofeeder

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20160615

Termination date: 20170127