CN203242493U - Automatic E-shaped silicon steel piece insertion machine for inductive ballast transformer - Google Patents
Automatic E-shaped silicon steel piece insertion machine for inductive ballast transformer Download PDFInfo
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- CN203242493U CN203242493U CN 201320159800 CN201320159800U CN203242493U CN 203242493 U CN203242493 U CN 203242493U CN 201320159800 CN201320159800 CN 201320159800 CN 201320159800 U CN201320159800 U CN 201320159800U CN 203242493 U CN203242493 U CN 203242493U
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Abstract
The utility model relates to an automatic insertion machine, in particular to an automatic E-shaped silicon steel piece insertion machine for an inductive ballast transformer. The insertion machine comprises a worktable, an E-shaped silicon steel piece beating assembly, an E-shaped silicon steel piece positioning device, a coil expansion feeding device, an E-shaped silicon steel piece coil mixing shaping device, a PLC (programmable logic controller) and an oblique slideway; the E-shaped silicon steel piece beating assembly is horizontally arranged at the worktable; the coil expansion feeding device is longitudinally arranged on the worktable; the E-shaped silicon steel piece positioning device and the E-shaped silicon steel piece coil mixing shaping device are arranged at the crossing position of the E-shaped silicon steel piece beating assembly and the coil expansion feeding device on the worktable; and the oblique slideway is arranged at the side face of the E-shaped silicon steel piece coil mixing shaping device. The automatic E-shaped silicon steel piece insertion machine for the inductive ballast transformer can finish the assembly and the shaping of the E-shaped silicon steel piece and a coil in a full-automatic mode, and is capable of saving manpower, high in production efficiency and high in product percent of pass.
Description
Technical field
The utility model relates to a kind of automatic slice inserting machine, is specifically related to a kind of E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer.
Background technology
At present, the topmost processing mode of assembling E type silicon steel sheet and coil is manual processing in ballast, the transformer, need a large amount of manual labor of labor expense, and this mode of production efficient is low, and labour intensity is large, and production cost is high, and the production cycle is long.And manual operation, the operator is tired easily, and error rate is high.
Summary of the invention
The deficiency that the utility model exists in order to overcome prior art provides a kind of E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer.
In order to solve the existing problem of background technology, the utility model is by the following technical solutions: it comprises that workbench, E type silicon steel sheet beat chip module, E type positioning device for silicon steel plate, coil expander feeder, E type silicon steel sheet coil mixing apparatus for shaping, PLC controller and inclined ramp; Described E type silicon steel sheet is beaten chip module and laterally is located on the workbench, described coil expander feeder vertically is located on the workbench, and described E type positioning device for silicon steel plate, E type silicon steel sheet coil mixing apparatus for shaping all are located at E type silicon steel sheet on the workbench and are beaten the position that chip module and coil expander feeder are reported to the leadship after accomplishing a task; Described inclined ramp is positioned at E type silicon steel sheet coil mixing apparatus for shaping side.
Preferably, described E type silicon steel sheet is beaten chip module and is comprised that E type silicon steel sheet stocker groove, E type silicon steel sheet release cylinder, E type silicon steel sheet positioning fixture, E type silicon steel sheet and contain material cylinder, the first servo-positioning mechanism, electromagnet and inhale the sheet piece; Described E type silicon steel sheet stocker groove is vertically fixed in workbench one side, the piece mouth of described E type silicon steel sheet stocker groove links to each other with E type silicon steel sheet positioning fixture, described E type silicon steel sheet is released the lower end that cylinder is fixed on E type silicon steel sheet stocker groove, described E type silicon steel sheet contains the telescopic arm of expecting cylinder and is fixedly connected with electromagnet suction sheet piece, and E type silicon steel sheet contains the top of expecting cylinder and is fixedly connected with the first servo-positioning mechanism; Described the first servo-positioning mechanism laterally is located at bench-top, and described E type silicon steel sheet release cylinder, E type silicon steel sheet contain expects that cylinder, the first servo-positioning mechanism, electromagnet suction sheet piece all are electrically connected with the PLC controller.
Preferably, positioning cylinder and front and back positioning U type anchor clamps before and after described E type positioning device for silicon steel plate comprises, described front and back positioning cylinder symmetry is placed on the workbench, on the telescopic arm of positioning cylinder, described front and back positioning cylinder all was electrically connected with the PLC controller before and after location, described front and back U anchor clamps were located at respectively.
Preferably, described coil expander feeder comprises that storage coil groove, coil release rise material cylinder, coil location cylinder, coil of cylinder, coil positioning clamp device, backgauge cylinder, coil and contain material cylinder, coil pusher cylinder, electromagnet and inhale circle piece, the second servo-positioning mechanism; Described storage coil groove laterally is located at the workbench front end, described coil is released the lower end that cylinder is fixed on storage coil groove, the discharging opening of described storage coil groove links to each other with coil positioning clamp device, one side of described coil positioning clamp device also is provided with the backgauge cylinder, and rise material cylinder, coil location cylinder of described coil is located at workbench top, coil positioning clamp device bottom; Described the second servo-positioning mechanism is horizontally set at bench-top, described coil contains the material cylinder head and is fixedly connected with the second servo-positioning mechanism, described coil pusher cylinder is positioned at coil and contains material cylinder and electromagnet and inhale circle piece top, and described coil is released rise material cylinder, coil location cylinder, coil of cylinder, backgauge cylinder, coil and contained that material cylinder, electromagnet are inhaled the circle piece, the second servo-positioning mechanism all is electrically connected with the PLC controller.
Preferably, described E type silicon steel sheet coil mixing apparatus for shaping comprises left and right sides integer cylinder, E type silicon steel sheet material ejection cylinder and electromagnet suction piece, be fixed with electromagnet suction piece on the telescopic arm of described right integer cylinder, described E type silicon steel sheet material ejection cylinder is positioned at integer cylinder bottom, the left and right sides, and described left and right sides integer cylinder, E type silicon steel sheet material ejection cylinder, electromagnet suction piece all are electrically connected with the PLC controller.
Preferably, described E type silicon steel sheet is beaten and also is provided with fiber sensor and photoelectric sensor on the chip module, described fiber sensor and photoelectric sensor are electrically connected with the PLC controller respectively, described fiber sensor is used for confirming that E type silicon steel sheet is folded thick, and described photoelectric sensor is used for confirming that E type silicon steel sheet contains the material cylinder and risen to specified altitude assignment.
Preferably, also be provided with fiber sensor and photoelectric sensor on the described coil expander feeder, described fiber sensor and photoelectric sensor are electrically connected with the PLC controller respectively, described fiber sensor is used for confirming that coil is positioned at the assigned address of coil positioning clamp device, and described photoelectric sensor is used for confirming that coil contains the material cylinder and risen to specified altitude assignment.
The utility model has the advantages that the utility model provides a kind of E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer, the assembling integer of finishing E type silicon steel sheet and coil that can be full-automatic, saved the labour, production efficiency is high, and product percent of pass is high.
Description of drawings:
Fig. 1 is left view of the present utility model;
Fig. 2 is vertical view of the present utility model;
Fig. 3 is pneumatic system schematic diagram of the present utility model;
Fig. 4 is E type silicon steel sheet and loop construction schematic diagram.
In the drawings: the 1-workbench; 21-E type silicon steel sheet stocker groove; 22-E type silicon steel sheet is released cylinder; 23-E type silicon steel sheet positioning fixture; 24-E type silicon steel sheet contains the material cylinder; 25-the first servo-positioning mechanism; The 26-electromagnet is inhaled the sheet piece; 31-prelocalization cylinder; Positioning cylinder behind the 32-; The U-shaped anchor clamps of 33-prelocalization; Positioning U type anchor clamps behind the 34-; 41-storage coil groove; The 42-coil is released cylinder; The 43-coil positioning clamp device; 44-backgauge cylinder; The 45-coil material cylinder that rises; 46-coil location cylinder; The 47-coil contains the material cylinder; The 48-electromagnet is inhaled the circle piece; 49-the second servo-positioning mechanism; 411-coil pusher cylinder; The left integer cylinder of 51-; The right integer cylinder of 52-; 53-electromagnet suction piece; 54-E type silicon steel sheet material ejection cylinder.
Embodiment:
Referring to Fig. 1-Fig. 4, the utility model by the following technical solutions: it comprises that workbench 1, E type silicon steel sheet beat chip module, E type positioning device for silicon steel plate, coil expander feeder, E type silicon steel sheet coil mixing apparatus for shaping, PLC controller and inclined ramp; Described E type silicon steel sheet is beaten chip module and laterally is located on the workbench, described coil expander feeder vertically is located on the workbench, and described E type positioning device for silicon steel plate, E type silicon steel sheet coil mixing apparatus for shaping all are located at E type silicon steel sheet on the workbench and are beaten the position that chip module and coil expander feeder are reported to the leadship after accomplishing a task; Described inclined ramp is positioned at E type silicon steel sheet coil mixing apparatus for shaping side.
Preferably, described E type silicon steel sheet is beaten chip module and is comprised that E type silicon steel sheet stocker groove 21, E type silicon steel sheet release cylinder 22, E type silicon steel sheet positioning fixture 23, E type silicon steel sheet and contain material cylinder 24, the first servo-positioning mechanism 25, electromagnet and inhale sheet piece 26; Described E type silicon steel sheet stocker groove 21 is vertically fixed in workbench one side, the piece mouth of described E type silicon steel sheet stocker groove 21 links to each other with E type silicon steel sheet positioning fixture 23, described E type silicon steel sheet is released the lower end that cylinder 22 is fixed on E type silicon steel sheet stocker groove 21, described E type silicon steel sheet contains the telescopic arm of expecting cylinder 24 and is fixedly connected with electromagnet suction sheet piece 26, and E type silicon steel sheet contains the top of expecting cylinder 24 and is fixedly connected with the first servo-positioning mechanism 25; Described the first servo-positioning mechanism 25 laterally is located at bench-top, and described E type silicon steel sheet release cylinder 22, E type silicon steel sheet contain expects that cylinder 24, the first servo-positioning mechanism 24, electromagnet suction sheet piece 26 all are electrically connected with the PLC controller.
Preferably, positioning cylinder (31 before and after described E type positioning device for silicon steel plate comprises, 32) and front and back positioning U type anchor clamps (33,34), described front and back positioning cylinder (31,32) symmetry is placed on the workbench 1, described front and back location U anchor clamps (33,34) are located at respectively on the telescopic arm of front and back positioning cylinders (31,32), described front and back positioning cylinders (31,32) all are electrically connected with the PLC controller.
Preferably, described coil expander feeder comprises that storage coil groove 41, coil release rise material cylinder 45, coil location cylinder 46, coil of cylinder 42, coil positioning clamp device 43, backgauge cylinder 44, coil and contain material cylinder 47, coil pusher cylinder 411, electromagnet and inhale circle piece 48, the second servo-positioning mechanism 49; Described storage coil groove 41 laterally is located at workbench 1 front end, described coil is released the lower end that cylinder 42 is fixed on storage coil groove 41, the discharging opening of described storage coil groove 41 links to each other with coil positioning clamp device 43, one side of described coil positioning clamp device 43 also is provided with backgauge cylinder 44, and rise material cylinder 45, coil location cylinder 46 of described coil is located at workbench 1 top, coil positioning clamp device 43 bottoms; Described coil pusher cylinder 411 is positioned at coil and contains material cylinder 47 and electromagnet suction circle piece 48 tops, described the second servo-positioning mechanism 49 is horizontally set at bench-top, described coil contains material cylinder 47 tops and is fixedly connected with the second servo-positioning mechanism 49, described coil contains the telescopic arm of expecting cylinder 47 and is provided with electromagnet and inhales circle piece 48, and described coil is released rise material cylinder 45, coil location cylinder 46, coil of cylinder 42, backgauge cylinder 44, coil and contained that material cylinder 47, electromagnet are inhaled circle piece 48, the second servo-positioning mechanism 49 all is electrically connected with the PLC controller.
Preferably, described E type silicon steel sheet coil mixing apparatus for shaping comprises left and right sides integer cylinder (51,52), E type silicon steel sheet material ejection cylinder 54 and electromagnet suction piece 53, be fixed with electromagnet suction piece 53 on the telescopic arm of described right integer cylinder 52, described E type silicon steel sheet material ejection cylinder 54 is positioned at left and right sides integer cylinder (51,52) bottom, described left and right sides integer cylinder (51,52), E type silicon steel sheet material ejection cylinder 54, electromagnet suction piece 53 all are electrically connected with the PLC controller.
Preferably, described E type silicon steel sheet is beaten and also is provided with fiber sensor and photoelectric sensor on the chip module, described fiber sensor and photoelectric sensor are electrically connected with the PLC controller respectively, described fiber sensor is used for confirming that E type silicon steel sheet is folded thick, and described photoelectric sensor is used for confirming that E type silicon steel sheet contains material cylinder 24 and risen to specified altitude assignment.
Preferably, also be provided with fiber sensor and photoelectric sensor on the described coil expander feeder, described fiber sensor and photoelectric sensor are electrically connected with the PLC controller respectively, described fiber sensor is used for confirming that coil is positioned at the assigned address of coil positioning clamp device 43, and described photoelectric sensor is used for confirming that coil contains material cylinder 47 and risen to specified altitude assignment.
Compressed air for each cylinder is provided by the scene.If water content of compressed air is many and messy, the user can dispose at the compressed air inlet place of main website an air cleaner again.Preferably, air cleaner comprises air cleaner (having automatic drainage function), pressure-reducing valve, pressure switch and Pressure gauge.
The course of work of the present utility model:
Turn on the power supply and gas supply , E-type silicon steel cylinder 22 will be launched from the E -type E-type silicon steel sheet silicon steel storage tank 21 is introduced into the E-type silicon steel positioning fixture 23 → silicon steel fiber optic sensors to adjust film stack thickness confirmation → E -type silicon steel cylinder 24 containing material decline → E -type silicon steel material containing the lower side of the cylinder 24 photoelectric sensors sensing clamp the material in place → → E -type material containing silicon steel cylinder 24 E-type grip silicon steel → solenoid pull pieces 26 electromagnetic absorption by the PLC controller type E → E -type silicon steel, silicon steel cylinder 24 containing materials rose → E-type photoelectric sensors sensing material containing silicon steel cylinder 24 rising place → first servo positioning mechanism 25 driven by the E-type silicon steel cylinder containing material 24 is moved into place → E → servo -type silicon steel cylinder 24 containing material dropped down to the lower side → photoelectric sensors before and after induction into place → positioning cylinder ( 31, 32 ) front and rear U-shaped clamps positioned to promote ( 33,34 ) clamp type E → E -type silicon steel, silicon steel cylinder 24 containing material on the solenoid pull pieces 26 by the PLC controller demagnetization → retire after positioning cylinder ( 31 , 32) → E -type silicon steel cylinders containing materials rose → photoelectric sensor 24 senses the E-type silicon steel cylinder 24 containing materials rose in place → first servo positioning mechanism 25 is driven by the E-type silicon steel cylinders containing materials before and after 24 moves → positioning cylinder ( 31, 32 ) E-type silicon steel clamp → wait → coil launch cylinder 42 of the coil winding groove 41 from the reservoir to the coil positioning fixture 43 launched on → fiber Optic Sensors induction coil in place → feed cylinder 44 into the file block top of the coil coil positioning cylinder 46 → → coil rose rose rose material feed cylinder 45 → 44 → coil cylinder downshift feed material containing cylinder 47 to move to the coil just above → coil material cylinder 47 containing the lower side of photoelectric sensors sensing coil is positioned back in place → back coil cylinder 46 → 45 → back up material cylinder coil cylinder 47 → coil containing material containing material cylinder 47 above the photoelectric sensor senses place → second servo positioning mechanism 49 driven coil cylinder 47 containing material moves to the E-type silicon steel coil mixed shaping device above the coil -containing feed cylinder 47 → → photoelectric sensor senses down to the coil -containing material around the cylinder 47 → integer cylinder ( 51, 52 ) Actions → coil pusher cylinder 411 Actions → while E-type silicon steel cylinder containing material 24 → E-type silicon steel coil and plastic finish → photoelectric sensors induction coil back into place → 411 → coil cylinder pusher pusher cylinder 411 side photoelectric sensors sensing coil back into place → 47 → coil cylinder containing feed material containing cylinder 47 photoelectric sensors on the side of the sensor in place → second servo positioning mechanism 49 driven coil cylinder 47 containing feed back → back after positioning cylinder (31,32) → back left integer suction cylinder 51 → electromagnet block 53 is controlled by a PLC controller Right back from magnetic → integer integer cylinder 52 → to the right rear side of the cylinder 52 photoelectric sensor senses the right place → reset → integer cylinder 52 automatic cycle operation .
Should be noted that at last; above content is only in order to illustrate the technical solution of the utility model; but not to the restriction of the utility model protection range; the simple modification that those of ordinary skill in the art carries out the technical solution of the utility model or be equal to replacement does not all break away from essence and the scope of technical solutions of the utility model.
Claims (7)
1. the E type silicon steel sheet automatic slice inserting machine that is used for the Inductive ballast transformer, it is characterized in that, comprise that workbench, E type silicon steel sheet beat chip module, E type positioning device for silicon steel plate, coil expander feeder, E type silicon steel sheet coil mixing apparatus for shaping, PLC controller and inclined ramp; Described E type silicon steel sheet is beaten chip module and laterally is located on the workbench, described coil expander feeder vertically is located on the workbench, and described E type positioning device for silicon steel plate, E type silicon steel sheet coil mixing apparatus for shaping all are located at E type silicon steel sheet on the workbench and are beaten the position that chip module and coil expander feeder are reported to the leadship after accomplishing a task; Described inclined ramp is positioned at E type silicon steel sheet coil mixing apparatus for shaping side.
2. the E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer according to claim 1, it is characterized in that described E type silicon steel sheet is beaten chip module and comprised that E type silicon steel sheet stocker groove, E type silicon steel sheet release cylinder, E type silicon steel sheet positioning fixture, E type silicon steel sheet contain material cylinder, the first servo-positioning mechanism, electromagnet suction sheet piece; Described E type silicon steel sheet stocker groove is vertically fixed in workbench one side, the piece mouth of described E type silicon steel sheet stocker groove links to each other with E type silicon steel sheet positioning fixture, described E type silicon steel sheet is released the lower end that cylinder is fixed on E type silicon steel sheet stocker groove, described E type silicon steel sheet contains the telescopic arm of expecting cylinder and is fixedly connected with electromagnet suction sheet piece, and E type silicon steel sheet contains the top of expecting cylinder and is fixedly connected with the first servo-positioning mechanism; Described the first servo-positioning mechanism laterally is located at bench-top, and described E type silicon steel sheet release cylinder, E type silicon steel sheet contain expects that cylinder, the first servo-positioning mechanism, electromagnet suction sheet piece all are electrically connected with the PLC controller.
3. the E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer according to claim 1, it is characterized in that, positioning cylinder and front and back positioning U type anchor clamps before and after described E type positioning device for silicon steel plate comprises, described front and back positioning cylinder symmetry is placed on the workbench, on the telescopic arm of positioning cylinder, described front and back positioning cylinder all was electrically connected with the PLC controller before and after location, described front and back U anchor clamps were located at respectively.
4. the E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer according to claim 1, it is characterized in that described coil expander feeder comprises that storage coil groove, coil release rise material cylinder, coil location cylinder, coil of cylinder, coil positioning clamp device, backgauge cylinder, coil and contain material cylinder, coil pusher cylinder, electromagnet and inhale circle piece, the second servo-positioning mechanism; Described storage coil groove laterally is located at the workbench front end, described coil is released the lower end that cylinder is fixed on storage coil groove, the discharging opening of described storage coil groove links to each other with coil positioning clamp device, one side of described coil positioning clamp device also is provided with the backgauge cylinder, and rise material cylinder, coil location cylinder of described coil is located at workbench top, coil positioning clamp device bottom; Described the second servo-positioning mechanism is horizontally set at bench-top, described coil contains the material cylinder head and is fixedly connected with the second servo-positioning mechanism, described coil contains the telescopic arm of expecting cylinder and is provided with electromagnet suction circle piece, described coil pusher cylinder is positioned at coil and contains material cylinder and electromagnet and inhale circle piece top, and described coil is released rise material cylinder, coil location cylinder, coil of cylinder, backgauge cylinder, coil and contained that material cylinder, electromagnet are inhaled the circle piece, the second servo-positioning mechanism all is electrically connected with the PLC controller.
5. the E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer according to claim 1, it is characterized in that, described E type silicon steel sheet coil mixing apparatus for shaping comprises left and right sides integer cylinder, E type silicon steel sheet material ejection cylinder and electromagnet suction piece, be fixed with electromagnet suction piece on the telescopic arm of described right integer cylinder, described E type silicon steel sheet material ejection cylinder is positioned at integer cylinder bottom, the left and right sides, and described left and right sides integer cylinder, E type silicon steel sheet material ejection cylinder, electromagnet suction piece all are electrically connected with the PLC controller.
6. the E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer according to claim 2, it is characterized in that, described E type silicon steel sheet is beaten and also is provided with fiber sensor and photoelectric sensor on the chip module, described fiber sensor and photoelectric sensor are electrically connected with the PLC controller respectively, described fiber sensor is used for confirming that E type silicon steel sheet is folded thick, and described photoelectric sensor is used for confirming that E type silicon steel sheet contains the material cylinder and risen to specified altitude assignment.
7. the E type silicon steel sheet automatic slice inserting machine for the Inductive ballast transformer according to claim 4, it is characterized in that, also be provided with fiber sensor and photoelectric sensor on the described coil expander feeder, described fiber sensor and photoelectric sensor are electrically connected with the PLC controller respectively, described fiber sensor is used for confirming that coil is positioned at the assigned address of coil positioning clamp device, and described photoelectric sensor is used for confirming that coil contains the material cylinder and risen to specified altitude assignment.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201320159800 CN203242493U (en) | 2013-04-02 | 2013-04-02 | Automatic E-shaped silicon steel piece insertion machine for inductive ballast transformer |
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Application Number | Priority Date | Filing Date | Title |
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CN 201320159800 CN203242493U (en) | 2013-04-02 | 2013-04-02 | Automatic E-shaped silicon steel piece insertion machine for inductive ballast transformer |
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CN 201320159800 Expired - Fee Related CN203242493U (en) | 2013-04-02 | 2013-04-02 | Automatic E-shaped silicon steel piece insertion machine for inductive ballast transformer |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN103559998A (en) * | 2013-10-29 | 2014-02-05 | 东莞市大忠电子有限公司 | Sheet inserting machine applied to inductor |
CN104476159A (en) * | 2014-12-11 | 2015-04-01 | 重庆和平自动化工程股份有限公司 | Electric wafer inserting machine applied to manufacturing of transformer |
CN105269301A (en) * | 2015-11-10 | 2016-01-27 | 中国科学院合肥物质科学研究院 | Press fitting detection device for motor magnetic block |
CN105945572A (en) * | 2016-06-27 | 2016-09-21 | 温州天球电器有限公司 | Steel cable winding device of vehicle lifter |
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2013
- 2013-04-02 CN CN 201320159800 patent/CN203242493U/en not_active Expired - Fee Related
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103559998A (en) * | 2013-10-29 | 2014-02-05 | 东莞市大忠电子有限公司 | Sheet inserting machine applied to inductor |
CN103559998B (en) * | 2013-10-29 | 2016-01-20 | 东莞市大忠电子有限公司 | A kind of plug-in sheet machine for inductor |
CN104476159A (en) * | 2014-12-11 | 2015-04-01 | 重庆和平自动化工程股份有限公司 | Electric wafer inserting machine applied to manufacturing of transformer |
CN104476159B (en) * | 2014-12-11 | 2016-08-24 | 重庆和平自动化工程股份有限公司 | A kind of electronic plug-in sheet machine in transformer manufacturing |
CN105269301A (en) * | 2015-11-10 | 2016-01-27 | 中国科学院合肥物质科学研究院 | Press fitting detection device for motor magnetic block |
CN105945572A (en) * | 2016-06-27 | 2016-09-21 | 温州天球电器有限公司 | Steel cable winding device of vehicle lifter |
CN105945572B (en) * | 2016-06-27 | 2017-12-26 | 温州天球电器有限公司 | A kind of automobile lifter around rope elongation arrangment |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20131016 Termination date: 20140402 |