CN114273150A - Insulation processing device is used in electromechanical device production - Google Patents

Insulation processing device is used in electromechanical device production Download PDF

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Publication number
CN114273150A
CN114273150A CN202210019842.6A CN202210019842A CN114273150A CN 114273150 A CN114273150 A CN 114273150A CN 202210019842 A CN202210019842 A CN 202210019842A CN 114273150 A CN114273150 A CN 114273150A
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China
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pipe
triode
resistor
capacitor
paint
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Granted
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CN202210019842.6A
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CN114273150B (en
Inventor
陈佳欣
陈红
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Hengda Electromechanical Technology Shenzhen Co ltd
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Chongqing Yubei Shaoxian Machinery Parts Processing Factory
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Publication of CN114273150A publication Critical patent/CN114273150A/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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Abstract

The invention belongs to the field of insulation treatment, and particularly relates to an insulation treatment device for electromechanical equipment production, which comprises a conveying mechanism, an insulation paint bucket, a guide frame, a paint replenishing mechanism and a clamping mechanism, wherein the conveying mechanism comprises a conveying roller, a chain wheel, a chain, a pinion gear, a main gear, a driving motor and a conveying frame, the conveying roller is arranged above the inner part of the conveying frame, the chain wheel is arranged on the outer side of a rotating shaft in front of the conveying roller, the chain is arranged on the outer side of the chain wheel, the pinion gear is arranged on the outer side of the rotating shaft of the conveying roller on one side, the main gear is arranged below the pinion gear, and an output shaft of the driving motor is arranged on the inner side of the main gear. By the paint repairing mechanism, the part which is not soaked in the insulating paint due to shielding of the frame can be repaired, so that the workpiece can be completely insulated, and the quality of the insulating treatment is improved.

Description

Insulation processing device is used in electromechanical device production
Technical Field
The invention belongs to the field of insulation treatment, and particularly relates to an insulation treatment device for electromechanical equipment production.
Background
Many electromechanical devices need to be insulated in production, and the insulation treatment used at present is generally realized by clamping a workpiece by a clamp and soaking insulating paint. But it is difficult to apply the insulating varnish to the portion of the clip that contacts the workpiece.
Disclosure of Invention
The invention aims to provide an insulation processing device for producing electromechanical equipment.
The technical scheme adopted by the invention is as follows:
the invention relates to an insulation processing device for electromechanical equipment production, which comprises a conveying mechanism, an insulation paint bucket, a guide frame, a paint supplementing mechanism and a clamping mechanism, wherein the conveying mechanism comprises a conveying roller, a chain wheel, a chain, a pinion, a main gear, a driving motor and a conveying frame, the conveying roller is arranged above the inner part of the conveying frame, the chain wheel is arranged on the outer side of a rotating shaft in front of the conveying roller, the chain is arranged on the outer side of the chain wheel, the pinion is arranged on the outer side of the rotating shaft of the conveying roller on one side, the main gear is arranged below the pinion, an output shaft of the driving motor is arranged on the inner side of the main gear, the insulation paint bucket is arranged on one side of the conveying mechanism, the guide frame is arranged above the insulation paint bucket, the paint supplementing mechanism comprises a paint pump, a pipeline, a spray nozzle and a spray nozzle clamping seat, the paint pump is arranged at the bottom of the inner part of the insulation paint bucket, one end of the pipeline is arranged at an output port of the paint pump, the spray head is arranged at the other end of the pipeline, the spray head clamping seat is arranged above the conveying frame and outside the spray head, the clamping mechanism comprises a left claw, a right claw, an electric push rod and a linkage rod, the left claw is arranged inside the guide frame, the right claw is arranged on one side of the left claw, which is far away from the insulating paint barrel, the electric push rod is arranged above the front part of the right claw, and the linkage rod is arranged above the rear part of the left claw; the electric push rod comprises a device main body, wherein a protective pipe is arranged at the upper end of the device main body, a limiting bolt is arranged on the outer side of the protective pipe, a nut is arranged on the surface of the other end of the limiting bolt, an oil supplementing pipe is arranged on the outer surface of the left side of the device main body, a sealing cap is arranged at the left end of the oil supplementing pipe, an anti-backflow pipe is arranged at the right end of the oil supplementing pipe, a power device is arranged at the right end of the device main body, a stepping motor is arranged inside the power device, a telescopic pipe is arranged inside the device main body, a limiting groove is arranged on the surface of the telescopic pipe, a base is arranged at the lower end of the device main body, and a transmission device is arranged inside the base; the oil supplementing pipe is made of an aluminum alloy material, the oil supplementing pipe is fixedly connected with the device main body, the sealing cap is made of a polyethylene material, the sealing cap is movably connected with the oil supplementing pipe, the backflow preventing pipe is fixedly connected with the device main body, and the backflow preventing pipe is fixedly connected with the oil supplementing pipe; the protective pipe is made of an aluminum alloy material, the protective pipe is fixedly connected with the device main body, the limiting bolt is made of a stainless steel material, the limiting bolt is movably connected with the protective pipe, the limiting bolt is movably connected with the telescopic pipe, the nut is made of a stainless steel material, the nut is movably connected with the limiting bolt, the limiting groove penetrates through the inner part of the telescopic pipe, and the telescopic pipe is movably connected with the device main body; be swing joint between transmission and the base, the inside of device main part is provided with the catch bar, be swing joint between catch bar and the transmission, be fixed connection between step motor and the power device, be swing joint between step motor and the transmission, the material of catch bar is aluminum alloy material, be swing joint between catch bar and the flexible pipe.
In the invention, the electric push rod in the clamping mechanism is stretched to drive the left claw and the right claw to rotate so as to clamp a workpiece, then the left claw moves transversely along the sliding groove of the guide frame to move the workpiece into the insulating paint bucket to soak the workpiece with insulating paint, when the soaking is finished, the clamping mechanism moves towards one side of the conveying frame along the sliding groove of the guide frame, then the workpiece is placed inside the paint replenishing mechanism above the conveying roller, the paint pump is operated to convey the insulating paint to the spray head through the pipeline, the spray head sprays and covers the area which is not soaked with the insulating paint because the left claw and the right claw are clamped after the insulating paint is materialized, the driving motor in the conveying mechanism operates to drive the main gear and the pinion to rotate, the auxiliary gear rotates to drive the chain wheel on one side to rotate, and the chain enables all the chain wheels to synchronously rotate, so that the conveying roller synchronously rotates to convey the workpiece to the next link.
Preferably: the conveying roller is connected with the conveying frame through a bearing, the chain wheel is in key connection with the conveying roller, the chain wheel is connected through the chain, the pinion is formed in front of the chain wheel, the main gear is meshed with the pinion, an output shaft of the driving motor is in key connection with the main gear, and the driving motor is connected with the conveying frame through a bolt.
Preferably: the inside shaping of guide frame has horizontal spout, the guide frame with insulating paint bucket passes through bolted connection.
Preferably: the paint pump is connected with the insulating paint bucket through a bolt, the pipeline is connected with an output port of the paint pump through a binding hoop, the spray head is connected with the pipeline through the binding hoop, the spray head clamping seat is connected with the conveying frame through a bolt, and the spray head clamping seat is connected with the spray head through a thread.
Preferably: the left claw is connected with the sliding groove of the guide frame in a sliding mode, the right claw is connected with the middle of the left claw in a rotating mode through the mandrel, the fixed portion of the electric push rod is connected with the right claw in a rotating mode, the linkage rod is connected with the left claw in a rotating mode, and the telescopic portion of the electric push rod is connected with the linkage rod in a rotating mode.
Preferably: be fixed connection between power device and the base, be fixed connection between device main part and the base, the main material of base is aluminium alloy material, through adopting above-mentioned technical scheme, can reach following technological effect: a supporting device body and a power device.
Preferably: a controller is further mounted at the control end of the stepping motor, the controller comprises a chip IC with the model number of HH-N05S, a first pin of the chip IC is respectively connected with one end of a capacitor C3 and the cathode of a diode D3, and the anode of the diode D3 is connected with a signal output end V2; the other end of the capacitor C3 is respectively connected with one end of a capacitor C2, one end of a resistor R2 and an emitter of a triode D2, the other end of the capacitor C2 is connected with a signal input end V1, a collector of the triode D2 is connected with the resistor R3 and then connected with the anode of a diode D7, a base of a triode D2 is connected with an emitter of a triode D1, a base of a triode D1 is respectively connected with the other end of the resistor R2, one end of a capacitor C1 and a sixth pin of the chip IC, a collector of the triode D1 is connected with a resistor R1 and then respectively connected with the other end of a capacitor C1, one end of a capacitor C4, one end of a capacitor C5, one end of a resistor R5 and a collector of a triode D6, the other end of the capacitor C4 is connected with a fifth pin of the chip IC, the other end of a capacitor C5 is connected with a collector of a triode D5, a base of a triode D5 is respectively connected with one end of a resistor R4 and a fourth pin of the chip IC, an emitter of the triode D5 is respectively connected with a third pin of the chip IC, the other end of the resistor R4 and the anode of the diode D4, and the cathode of the diode D4 is connected with the other end of the resistor R5; the base electrode of the triode D6 is connected with the resistor R6 and then connected to the second pin of the chip IC, and the emitter electrode of the triode D6 is connected with the resistor R7 and then connected to the cathode of the diode D7.
The invention has the beneficial effects that:
1. the insulation processing device adopts the paint repairing mechanism, can repair and coat the part which is not soaked in the insulation paint due to the shielding of the frame, can completely finish the insulation processing of the workpiece, and improves the quality of the insulation processing.
2. The special electric push rod is adopted in the invention, when the telescopic tube is pushed within a rated stroke, the limit bolt does not obstruct the extending movement of the telescopic tube, when the limit bolt exceeds the rated stroke, the limit bolt props against the end head of the limit groove, so that the telescopic tube is prevented from further extending, the telescopic tube is prevented from falling off, after the telescopic tube is used for a certain time, the sealing cap at the outer end of the oil supplementing tube can be unscrewed, lubricating oil is poured into the device, the lubricating oil flows into the device, the backflow prevention pipe prevents the lubricating oil from flowing back, thereby protecting parts and parts in the device, reducing the abrasion and prolonging the service life of the device.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
FIG. 1 is a perspective view of an insulation processing apparatus for manufacturing an electromechanical device according to the present invention;
FIG. 2 is a front view of an insulation processing apparatus for manufacturing an electromechanical device according to the present invention;
FIG. 3 is a schematic diagram of a conveying mechanism part of the insulation processing device for producing the electromechanical device according to the present invention;
FIG. 4 is a schematic diagram of parts of a paint repairing mechanism of an insulation processing device for producing electromechanical equipment according to the present invention;
FIG. 5 is a schematic view of a part of a clamping mechanism of the insulation processing device for producing the electromechanical device according to the present invention;
FIG. 6 is a schematic view of the electric putter of the present invention;
FIG. 7 is a side cross-sectional view of the power putter of the present invention;
FIG. 8 is a front cross-sectional view of the power putter of the present invention;
FIG. 9 is a partial cross-sectional front view of the power putter of the present invention;
fig. 10 is a schematic circuit diagram of a controller according to the present invention.
The reference numerals are explained below:
1. a conveying mechanism; 11. a conveying roller; 12. a sprocket; 13. a chain; 14. a pinion gear; 15. a main gear; 16. a drive motor; 17. a carriage; 2. an insulating paint bucket; 3. a guide frame; 4. a paint repair mechanism; 41. a paint pump; 42. a pipeline; 43. a spray head; 44. a nozzle clamping seat; 5. a clamping mechanism; 51. a left jaw; 52. a right jaw; 53. an electric push rod; 54. a linkage rod; 61. a device main body; 62. supplementing an oil pipe; 63. a protective tube; 64. a limit bolt; 65. a power plant; 66. a base; 67. a nut; 68. a telescopic pipe; 69. a limiting groove; 610. a transmission device; 611. a stepping motor; 612. a backflow prevention pipe; 613. a sealing cap; 614. a push rod.
Detailed Description
The invention is further illustrated by the following examples in conjunction with the accompanying drawings.
As shown in fig. 1-9, the invention relates to an insulation processing device for electromechanical device production, comprising a conveying mechanism 1, an insulation paint bucket 2, a guide frame 3, a paint repair mechanism 4 and a clamping mechanism 5, wherein the conveying mechanism 1 comprises a conveying roller 11, a chain wheel 12, a chain 13, a pinion 14, a main gear 15, a driving motor 16 and a conveying frame 17, the conveying roller 11 is arranged above the inside of the conveying frame 17, the chain wheel 12 is arranged outside the rotating shaft in front of the conveying roller 11, the chain 13 is arranged outside the chain wheel 12, the pinion 14 is arranged in front of the chain wheel 12 outside the rotating shaft of one side conveying roller 11, the main gear 15 is arranged below the pinion 14, the output shaft of the driving motor 16 is arranged inside the main gear 15, the driving motor 16 is used for driving the main gear 15 and the pinion 14 to rotate, the pinion 14 is used for driving one side chain wheel 12 to rotate, the chain 13 is used for enabling all the chain wheels 12 to rotate synchronously so as to enable the conveying roller 11 to rotate synchronously, the conveying roller 11 is used for conveying workpieces running through insulating paint to the next link, the insulating paint barrel 2 is arranged on one side of the conveying mechanism 1, the insulating paint barrel 2 is used for storing insulating paint and soaking the workpieces in the insulating paint barrel 2 in the construction period, the guide frame 3 is arranged above the insulating paint barrel 2, the paint supplementing mechanism 4 comprises a paint pump 41, a pipeline 42, a spray head 43 and a spray head clamping seat 44, the paint pump 41 is arranged at the bottom of the inside of the insulating paint barrel 2, one end of the pipeline 42 is arranged at an output port of the paint pump 41, the spray head 43 is arranged at the other end of the pipeline 42, the spray head clamping seat 44 is arranged above the conveying frame 17 and outside the spray head 43, the paint pump 41 is used for conveying the insulating paint to the spray head 43 through the pipeline 42 after pressurizing the insulating paint, the spray head 43 is used for spraying the insulating paint to the part of the workpieces which are not soaked in the insulating paint, the clamping mechanism 5 comprises a left claw 51, a right claw 52, an electric push rod 53 and a linkage rod 54, the left claw 51 is arranged inside the guide frame 3, the right claw 52 is arranged on one side, away from the insulating paint barrel 2, of the left claw 51, the electric push rod 53 is arranged above the front portion of the right claw 52, the linkage rod 54 is arranged above the rear portion of the left claw 51, the right claw 52 and the left claw 51 are used for mutually matching to clamp a workpiece, and the electric push rod 53 is used for pushing the linkage rod 54 to control the right claw 52 to rotate.
The electric push rod 53 comprises a device body 61, a protective pipe 63 is arranged at the upper end of the device body 61, a limiting bolt 64 is arranged on the outer side of the protective pipe 63, a nut 67 is arranged on the surface of the other end of the limiting bolt 64, an oil supplementing pipe 62 is arranged on the outer surface of the left side of the device body 61, a sealing cap 613 is arranged at the left end of the oil supplementing pipe 62, an anti-return pipe 612 is arranged at the right end of the oil supplementing pipe 62, a power device 65 is arranged at the right end of the device body 61, a stepping motor 611 is arranged inside the power device 65, an extension pipe 68 is arranged inside the device body 61, a limiting groove 69 is arranged on the surface of the extension pipe 68, a base 66 is arranged at the lower end of the device body 61, a transmission device 610 is arranged inside the base 66, and power transmission of the stepping motor 611 is achieved. The oil supply pipe 62 is made of an aluminum alloy material, the oil supply pipe 62 is fixedly connected with the device main body 61, the sealing cap 613 is made of a polyethylene material, the sealing cap 613 is movably connected with the oil supply pipe 62, the anti-return pipe 612 is fixedly connected with the device main body 61, the anti-return pipe 612 is fixedly connected with the oil supply pipe 62, and the anti-return pipe 612 prevents lubricating oil from returning and avoids waste. The protective pipe 63 is made of an aluminum alloy material, the protective pipe 63 is fixedly connected with the device main body 61, the limiting bolt 64 is made of a stainless steel material, the limiting bolt 64 is movably connected with the protective pipe 63, the limiting bolt 64 is movably connected with the extension pipe 68, the nut 67 is made of a stainless steel material, the nut 67 is movably connected with the limiting bolt 64, the limiting groove 69 penetrates through the interior of the extension pipe 68, the length of the limiting groove 69 is consistent with the rated stroke, when the extension pipe 68 extends and retracts in the rated stroke, the limiting bolt 64 does not block the extension pipe 68 from moving, when the extension pipe 68 exceeds the rated stroke, the limiting bolt 64 supports against the end of the limiting groove 69 to block the extension pipe 68 from moving, and the extension pipe 68 is movably connected with the device main body 61. The transmission device 610 is movably connected with the base 66, a push rod 614 is arranged in the device main body 61, the push rod 614 is movably connected with the transmission device 610, the stepping motor 611 is fixedly connected with the power device 65, the stepping motor 611 is movably connected with the transmission device 610, the push rod 614 is made of aluminum alloy materials, the push rod 614 is movably connected with the extension tube 68, and the push rod 614 drives the extension tube 68 to extend and retract.
The working principle of the invention is as follows: an electric push rod 53 in the clamping mechanism 5 is stretched to drive a left claw 51 and a right claw 52 to rotate to clamp a workpiece, then the left claw 51 moves transversely along a sliding groove of a guide frame 3 to move the workpiece into an insulating paint barrel 2 to soak the workpiece, when the soaking is finished, the clamping mechanism 5 moves towards one side of a conveying frame 17 along the sliding groove of the guide frame 3, then the workpiece is placed inside a paint repair mechanism 4 and is positioned above a conveying roller 11, a paint pump 41 operates to convey insulating paint to a spray head 43 through a pipeline 42, the spray head 43 sprays the insulating paint after the insulating paint is materialized to cover an area which is not soaked in the insulating paint due to the clamping of the left claw 51 and the right claw 52, a driving motor 16 in the conveying mechanism 1 operates to drive a main gear 15 and a secondary gear 14 to rotate, the secondary gear 14 rotates to drive a chain wheel 12 on one side to rotate, and a chain 13 enables all chain wheels 12 to rotate synchronously so that the conveying roller 11 rotates synchronously to convey the workpiece to a next link.
The conveying roller 11 is connected with a conveying frame 17 through a bearing, a chain wheel 12 is in key connection with the conveying roller 11, the chain wheel 12 is connected through a chain 13, a pinion 14 is formed in front of the chain wheel 12, a main gear 15 is meshed with the pinion 14, an output shaft of a driving motor 16 is in key connection with the main gear 15, and the driving motor 16 is connected with the conveying frame 17 through a bolt; a transverse sliding groove is formed on the inner side of the guide frame 3, and the guide frame 3 is connected with the insulating paint barrel 2 through a bolt; the paint pump 41 is connected with the insulating paint bucket 2 through a bolt, the pipeline 42 is connected with an output port of the paint pump 41 through a binding hoop, the spray head 43 is connected with the pipeline 42 through the binding hoop, the spray head clamping seat 44 is connected with the conveying frame 17 through a bolt, and the spray head clamping seat 44 is connected with the spray head 43 through a thread; the left claw 51 is connected with the sliding groove of the guide frame 3 in a sliding mode, the right claw 52 is connected with the middle of the left claw 51 in a rotating mode through a mandrel, the fixed portion of the electric push rod 53 is connected with the right claw 52 in a rotating mode, the linkage rod 54 is connected with the left claw 51 in a rotating mode, and the telescopic portion of the electric push rod 53 is connected with the linkage rod 54 in a rotating mode.
In the present invention, the power device 65 is fixedly connected to the base 66, the device body 61 is fixedly connected to the base 66, and the base 66 is made of an aluminum alloy material to support the device body 61 and the base 66. When the electric push rod 53 is used, the limit bolt 64 is inserted from the limit groove 69 of the extension tube 68 and is fixed through the nut 67, when the extension tube 68 is pushed within a rated stroke, the limit bolt 64 does not block the extension movement of the extension tube 68, when the rated stroke is exceeded, the limit bolt 64 abuts against the end of the limit groove 69 so as to block the extension tube 68 from further extending, the extension tube 68 is prevented from dropping, after the electric push rod is used for a certain time, the sealing cap 613 at the outer end of the oil supplementing tube 62 can be screwed off, lubricating oil is poured into the oil inflow device, the backflow prevention tube 612 prevents the lubricating oil from flowing back, and therefore spare and accessory parts inside the device are protected, abrasion is reduced, and the service life of the device is prolonged.
Referring to fig. 10, in the present invention, a controller is further installed at the control end of the stepping motor 611, the controller includes a chip IC with model number HH-N05S, a first pin of the chip IC is respectively connected to one end of a capacitor C3 and a cathode of a diode D3, and an anode of the diode D3 is connected to a signal output end V2; the other end of the capacitor C3 is respectively connected with one end of a capacitor C2, one end of a resistor R2 and an emitter of a triode D2, the other end of the capacitor C2 is connected with a signal input end V1, a collector of the triode D2 is connected with the resistor R3 and then connected with the anode of a diode D7, a base of a triode D2 is connected with an emitter of a triode D1, a base of a triode D1 is respectively connected with the other end of the resistor R2, one end of a capacitor C1 and a sixth pin of the chip IC, a collector of the triode D1 is connected with a resistor R1 and then respectively connected with the other end of a capacitor C1, one end of a capacitor C4, one end of a capacitor C5, one end of a resistor R5 and a collector of a triode D6, the other end of the capacitor C4 is connected with a fifth pin of the chip IC, the other end of a capacitor C5 is connected with a collector of a triode D5, a base of a triode D5 is respectively connected with one end of a resistor R4 and a fourth pin of the chip IC, an emitter of the triode D5 is respectively connected with a third pin of the chip IC, the other end of the resistor R4 and the anode of the diode D4, and the cathode of the diode D4 is connected with the other end of the resistor R5; the base electrode of the triode D6 is connected with the resistor R6 and then connected to the second pin of the chip IC, and the emitter electrode of the triode D6 is connected with the resistor R7 and then connected to the cathode of the diode D7. Since the installation of the controller belongs to the technology known by those skilled in the art, the controller is not shown in the figure, and the purpose of reducing power consumption and improving production efficiency can be achieved by adopting a special controller to accurately control the stepping motor.
It should be noted that the above-mentioned embodiments are only used for illustrating the technical solutions of the present invention and not for limiting the technical solutions, and although the applicant has described the invention in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions made on the technical solutions of the present invention can not be made within the spirit and scope of the technical solutions of the present invention and shall be covered by the claims of the present invention.

Claims (7)

1. The utility model provides an electromechanical device production is with insulating processing apparatus which characterized in that: including conveying mechanism (1), insulating paint bucket (2), guide frame (3), paint repair mechanism (4) and fixture (5), conveying mechanism (1) includes conveying roller (11), sprocket (12), chain (13), pinion (14), master gear (15), driving motor (16) and carriage (17), conveying roller (11) set up carriage (17) inside top, sprocket (12) set up the outside of conveying roller (11) the place ahead pivot, chain (13) set up the sprocket (12) outside, pinion (14) set up in one side the conveying roller (11) pivot outside the place ahead of sprocket (12), master gear (15) set up pinion (14) below, the output shaft of driving motor (16) sets up master gear (15) inboard, insulating paint bucket (2) set up conveying mechanism (1) one side, the guide frame (3) is arranged above the insulating paint barrel (2), the paint supplementing mechanism (4) comprises a paint pump (41), a pipeline (42), a spray head (43) and a spray head clamping seat (44), the paint pump (41) is arranged at the bottom inside the insulating paint barrel (2), one end of the pipeline (42) is arranged at an output port of the paint pump (41), the spray head (43) is arranged at the other end of the pipeline (42), the spray head clamping seat (44) is arranged above the conveying frame (17) and outside the spray head (43), the clamping mechanism (5) comprises a left claw (51), a right claw (52), an electric push rod (53) and a linkage rod (54), the left claw (51) is arranged inside the guide frame (3), the right claw (52) is arranged at the side, far away from the insulating paint barrel (2), of the left claw (51), the electric push rod (53) is arranged above the front part of the right claw (52), the linkage rod (54) is arranged above the rear part of the left claw (51); the electric push rod (53) comprises a device body (61), a protective pipe (63) is arranged at the upper end of the device body (61), a limiting bolt (64) is arranged on the outer side of the protective pipe (63), a nut (67) is arranged on the surface of the other end of the limiting bolt (64), an oil supplementing pipe (62) is arranged on the outer surface of the left side of the device body (61), a sealing cap (613) is arranged at the left end of the oil supplementing pipe (62), an anti-return pipe (612) is arranged at the right end of the oil supplementing pipe (62), a power device (65) is arranged at the right end of the device body (61), a stepping motor (611) is arranged in the power device (65), a telescopic pipe (68) is arranged in the device body (61), a limiting groove (69) is arranged on the surface of the telescopic pipe (68), and a base (66) is arranged at the lower end of the device body (61), a transmission device (610) is arranged inside the base (66); the oil supplementing pipe (62) is made of an aluminum alloy material, the oil supplementing pipe (62) is fixedly connected with the device main body (61), the sealing cap (613) is made of a polyethylene material, the sealing cap (613) is movably connected with the oil supplementing pipe (62), the anti-backflow pipe (612) is fixedly connected with the device main body (61), and the anti-backflow pipe (612) is fixedly connected with the oil supplementing pipe (62); the protection pipe (63) is made of aluminum alloy material, the protection pipe (63) is fixedly connected with the device main body (61), the limiting bolt (64) is made of stainless steel material, the limiting bolt (64) is movably connected with the protection pipe (63), the limiting bolt (64) is movably connected with the extension pipe (68), the nut (67) is made of stainless steel material, the nut (67) is movably connected with the limiting bolt (64), the limiting groove (69) penetrates through the interior of the extension pipe (68), and the extension pipe (68) is movably connected with the device main body (61); be swing joint between transmission (610) and base (66), the inside of device main part (61) is provided with catch bar (614), be swing joint between catch bar (614) and transmission (610), be fixed connection between step motor (611) and power device (65), be swing joint between step motor (611) and transmission (610), the material of catch bar (614) is the aluminum alloy material, be swing joint between catch bar (614) and flexible pipe (68).
2. The insulation processing apparatus for electromechanical device production according to claim 1, characterized in that: the conveying roller (11) is connected with the conveying frame (17) through a bearing, the chain wheel (12) is connected with the conveying roller (11) in a key mode, the chain wheel (12) is connected with the chain (13) in a penetrating mode, the auxiliary gear (14) is formed in the front of the chain wheel (12), the main gear (15) is meshed with the auxiliary gear (14), an output shaft of the driving motor (16) is connected with the main gear (15) in a key mode, and the driving motor (16) is connected with the conveying frame (17) through bolts.
3. The insulation processing apparatus for electromechanical device production according to claim 2, characterized in that: the inner side of the guide frame (3) is formed with a transverse sliding groove, and the guide frame (3) is connected with the insulating paint bucket (2) through bolts.
4. The insulation processing apparatus for electromechanical device production according to claim 3, characterized in that: paint pump (41) with insulating paint bucket (2) pass through bolted connection, pipeline (42) with the delivery outlet of paint pump (41) is connected through tieing the hoop, shower nozzle (43) with pipeline (42) are connected through tieing the hoop, shower nozzle cassette (44) with carriage (17) pass through bolted connection, shower nozzle cassette (44) with shower nozzle (43) pass through threaded connection.
5. The insulation processing apparatus for electromechanical device production according to claim 4, wherein: the left claw (51) is connected with the sliding groove of the guide frame (3) in a sliding mode, the right claw (52) is connected with the middle of the left claw (51) in a rotating mode through a mandrel, the fixed portion of the electric push rod (53) is connected with the right claw (52) in a rotating mode, the linkage rod (54) is connected with the left claw (51) in a rotating mode, and the telescopic portion of the electric push rod (53) is connected with the linkage rod (54) in a rotating mode.
6. The insulation processing apparatus for electromechanical device production according to claim 5, wherein: be fixed connection between power device (65) and base (66), be fixed connection between device main part (61) and base (66), the main material of base (66) is aluminium alloy material.
7. The insulation processing apparatus for electromechanical device production according to claim 6, wherein: a controller is further mounted at the control end of the stepping motor (611), the controller comprises a chip IC with the model number of HH-N05S, a first pin of the chip IC is respectively connected with one end of a capacitor C3 and the cathode of a diode D3, and the anode of the diode D3 is connected with a signal output end V2; the other end of the capacitor C3 is respectively connected with one end of a capacitor C2, one end of a resistor R2 and an emitter of a triode D2, the other end of the capacitor C2 is connected with a signal input end V1, a collector of the triode D2 is connected with the resistor R3 and then connected with the anode of a diode D7, a base of a triode D2 is connected with an emitter of a triode D1, a base of a triode D1 is respectively connected with the other end of the resistor R2, one end of a capacitor C1 and a sixth pin of the chip IC, a collector of the triode D1 is connected with a resistor R1 and then respectively connected with the other end of a capacitor C1, one end of a capacitor C4, one end of a capacitor C5, one end of a resistor R5 and a collector of a triode D6, the other end of the capacitor C4 is connected with a fifth pin of the chip IC, the other end of a capacitor C5 is connected with a collector of a triode D5, a base of a triode D5 is respectively connected with one end of a resistor R4 and a fourth pin of the chip IC, an emitter of the triode D5 is respectively connected with a third pin of the chip IC, the other end of the resistor R4 and the anode of the diode D4, and the cathode of the diode D4 is connected with the other end of the resistor R5; the base electrode of the triode D6 is connected with the resistor R6 and then connected to the second pin of the chip IC, and the emitter electrode of the triode D6 is connected with the resistor R7 and then connected to the cathode of the diode D7.
CN202210019842.6A 2022-01-10 2022-01-10 Insulation processing device for electromechanical equipment production Active CN114273150B (en)

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