CN109041567B - Safe and fast installation device for safety capacitor - Google Patents
Safe and fast installation device for safety capacitor Download PDFInfo
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- CN109041567B CN109041567B CN201810767881.8A CN201810767881A CN109041567B CN 109041567 B CN109041567 B CN 109041567B CN 201810767881 A CN201810767881 A CN 201810767881A CN 109041567 B CN109041567 B CN 109041567B
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
- H05K13/00—Apparatus or processes specially adapted for manufacturing or adjusting assemblages of electric components
- H05K13/04—Mounting of components, e.g. of leadless components
- H05K13/0404—Pick-and-place heads or apparatus, e.g. with jaws
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05K—PRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
- H05K13/00—Apparatus or processes specially adapted for manufacturing or adjusting assemblages of electric components
- H05K13/04—Mounting of components, e.g. of leadless components
- H05K13/046—Surface mounting
Abstract
The invention discloses a safe and quick installation device for an safety capacitor, which comprises a machine body, wherein an auxiliary installation device is installed in the machine body, a support frame is arranged below the machine body, and a heat dissipation port and a dustproof belt are arranged on one side of the machine body; the auxiliary installation device comprises an auxiliary installation shell, a driving assembly is arranged in the auxiliary installation shell, an elasticity fixing assembly is connected below the driving assembly, a positioning fixing assembly is arranged below the elasticity fixing assembly, the left side and the right side of the positioning fixing assembly are respectively connected with a left extrusion assembly and a right extrusion assembly, and an adjusting assembly is connected below the positioning fixing assembly. The circuit board fixing device can automatically and quickly fix the circuit board, ensures that the central position of the fixed circuit board is unchanged, and simultaneously adjusts the position of the safety capacitor and accurately and efficiently takes and places the safety capacitor, so that two pins of the safety capacitor can be directly inserted into corresponding pin holes on the circuit board, the production efficiency is improved, and the working intensity of workers is reduced.
Description
Technical Field
The invention relates to the technical field of installation processing of safety capacitors, in particular to a safe and quick installation device for a safety capacitor.
Background
The safety capacitor is a safety capacitor which can not cause electric shock and does not endanger personal safety after the capacitor fails, the safety capacitor is usually only used for filtering in an anti-interference circuit, the safety capacitor is used in a power supply filter and plays a role in power supply filtering and filtering common-mode interference and differential-mode interference respectively, and the safety capacitor is generally recommended to be added at a power supply inlet for safety consideration and EMC consideration. The safety capacitor discharges differently from the normal capacitor, which remains charged for a long time after the external power source is turned off and is electrically charged if touched by hand, but the safety capacitor does not have this problem. With the rapid development of economy in China, the living standard of people is continuously improved, a large number of electronic products enter families, the devices usually comprise integrated circuit boards, and safety capacitors are mounted on the integrated circuit boards, so that the use safety of the electronic products is improved. At present, a shell of a safety capacitor commonly used in the market is rectangular, two pins are fixed on the shell, two pin holes corresponding to the two pins are formed in a circuit board, and when the safety capacitor is installed, the two pins of the safety capacitor are inserted into the corresponding pin holes and then fixed.
When the auxiliary installation mechanism in the current safety-regulation capacitor installation equipment is used for installation, the installation efficiency is not high enough, the two pins can be inserted into the corresponding pin holes only by adjusting the positions of the circuit board and the safety-regulation capacitor, and the work efficiency is reduced.
Disclosure of Invention
The invention mainly aims to overcome the defects of the prior art and provide a safe and quick installation device for a safety capacitor, so as to solve the problems that when an auxiliary installation mechanism in the conventional safety capacitor installation equipment is installed, the installation efficiency is not high enough, two pins can be inserted into respective corresponding pin holes only by adjusting the positions of a circuit board and the safety capacitor, and the working efficiency is low.
The invention is realized by adopting the following technical scheme: a safe and quick installation device for a safety capacitor comprises a machine body, wherein an auxiliary installation device is installed in the machine body, a support frame is arranged below the machine body, a moving wheel is connected below the support frame, a control panel is arranged on the machine body, and a heat dissipation opening and a dustproof belt are arranged on one side of the machine body; the auxiliary installation device comprises a driving assembly and an auxiliary installation shell, the driving assembly is arranged in the auxiliary installation shell, an elastic fixing assembly is connected below the driving assembly, a positioning fixing assembly is arranged below the elastic fixing assembly, the left side and the right side of the positioning fixing assembly are respectively connected with a left extrusion assembly and a right extrusion assembly, and an adjusting assembly is connected below the positioning fixing assembly.
Preferably, the driving assembly comprises a fixed block, a chute, a rack, a transmission gear, a driving gear, a connecting moving rod, a first rotating shaft, a first motor, a second motor, a slider, a first bearing, a threaded sleeve block, a limiting block and a threaded rod, the fixed block and the auxiliary installation shell are connected through the inner wall, the chute is arranged on one side of the upper portion of the fixed block, the slider is connected in the chute in a sliding manner, the second motor and the first motor are sequentially arranged on the slider, the rack is connected to the other side of the upper portion of the fixed block, the transmission gear is meshed on the rack and connected with the second motor through the connecting moving rod, the first bearing connected with the connecting moving rod is arranged on the transmission gear, the driving gear is meshed with the driving gear, the driving gear is connected with the first motor through the first rotating shaft, and the output, the threaded rod is sleeved with a threaded sleeve block in a threaded manner, and the other end of the threaded rod is connected with a limiting block.
Preferably, the fixed subassembly of elasticity includes electric telescopic rod, lift pulling force pole, pulling force pipe barrel, movable claw connecting block, left movable claw, right movable claw and middle elevator, the electric telescopic rod upper end is connected with the screw thread nest block, electric telescopic rod both sides are provided with the lift pulling force pole of being connected with the screw thread nest block, be provided with the pulling force pipe barrel under the lift pulling force pole, be connected with the movable claw connecting block under the pulling force pipe barrel, movable claw connecting block both sides are provided with left movable claw and right movable claw respectively, electric telescopic rod's flexible end runs through the movable claw connecting block and is connected with middle elevator, left movable claw and right movable claw are connected respectively to middle elevator both ends through the second axis of rotation hub connection.
Preferably, a cavity is arranged in the tension tube barrel, a sliding sheet is arranged in the cavity, the tension tube barrel is connected with the lifting tension rod through the sliding sheet, and a first spring connected with the inner bottom wall of the tension tube barrel is connected below the sliding sheet.
Preferably, left side extrusion subassembly includes dwang, T shape frame, pull rod, carrier, location leading wheel, connecting plate, parallel spring, chassis and pulling force rope, pull rod right-hand member and dwang top fixed connection, the inside swing joint in pull rod top trailing flank and T shape frame bottom, pull rod left end and location leading wheel bottom fixed connection, pulling force rope one end is connected to carrier bottom, and the other end is walked around the location leading wheel and is connected to the connecting plate top, the connecting plate bottom is connected with the parallel spring top is perpendicular, parallel spring bottom and chassis top fixed connection, T shape frame right-hand member is connected with the fixed subassembly left end of location is perpendicular.
Preferably, the adjusting part includes driving motor, vertical transmission band, location transfer line, driving gear dish, synthesizes drive belt, first gear and second gear, vertical transmission band both ends are connected to driving motor right-hand member side and location transfer line left end side respectively, location transfer line right-hand member trailing flank meshes with driving gear dish left end front side mutually, driving gear dish rear end side carries out the transmission through synthesizing the drive belt and carrying out the transmission with first gear, second gear rear end side and is connected, first gear, second gear side and the fixed subassembly bottom of location are inside carries out the transmission and is connected.
Preferably, the fixed subassembly in location includes right shrink frame, spring, central locating rack, circuit board, left spring and left shrink frame, left side shrink frame bottom side meshes with first gear, second gear top side mutually, first gear, second gear bottom side mesh with right shrink frame left end top side mutually, left side spring one end is connected to left shrink frame top right side, and the other end is fixed in central locating rack left side, spring one end is connected to right shrink frame top left side, and the other end is fixed in central locating rack right side, the laminating of circuit board bottom and central locating rack top is connected.
Preferably, the right extrusion assembly comprises a right translation frame, a positioning steering rod, a linkage rod, a right gear frame, a right positioning wheel, a fixed underframe, a tension spring, a tension connecting plate and a linkage rope, the left end of the linkage rod is fixedly connected with the top end of the positioning steering rod, the rear side face of the left end of the positioning steering rod is movably connected with the inner part of the bottom end of the right translation frame, the right end of the positioning steering rod is fixedly connected with the bottom end of the right gear frame, one end of the linkage rope is connected to the bottom end of the right gear frame, the other end of the linkage rope bypasses the right positioning wheel to be connected to the top of the tension connecting plate, the top of the tension spring is vertically connected with the bottom of the tension connecting plate.
Compared with the prior art, the invention has the beneficial effects that: the circuit board fixing device can automatically and quickly fix the circuit board, ensures that the central position of the fixed circuit board is unchanged, and simultaneously adjusts the position of the safety capacitor and accurately and efficiently takes and places the safety capacitor, so that two pins of the safety capacitor can be directly inserted into corresponding pin holes on the circuit board, the production efficiency is improved, and the working intensity of workers is reduced.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
FIG. 1 is a schematic structural diagram of a safe and quick installation device for a safety capacitor according to the present invention;
fig. 2 is a schematic structural diagram of an auxiliary installation device of the installation device for the safety and fast installation of the safety capacitor of the invention.
In the figure: an auxiliary installation device-1, a moving wheel-2, a support frame-3, a machine body-4, a control panel-5, a heat dissipation opening-6, a dustproof belt-7, a driving component-11, an auxiliary installation shell-12, an elastic fixing component-13, a left extrusion component-14, an adjusting component-15, a positioning fixing component-16, a right extrusion component-17, a fixing block-110, a chute-111, a rack-112, a transmission gear-113, a driving gear-114, a connecting transmission rod-115, a first rotating shaft-116, a first motor-117, a second motor-118, a sliding block-119, a first bearing-1110, a thread sleeve block-1111, a limit block-1112, a threaded rod-1113, an electric telescopic push rod-130, a motor body-4, a control panel, A lifting tension rod-131, a tension tube barrel-132, a movable claw connecting block-133, a left movable claw-134, a right movable claw-135, a middle lifting block-136, a rotating rod-141, a T-shaped frame-142, a tension rod 143, a gear frame-144, a positioning guide wheel-145, a connecting plate-146, a parallel spring-147, a chassis-148, a tension rope-149, a driving motor-151, a longitudinal transmission belt-152, a positioning transmission rod-153, a driving gear disc-154, a comprehensive transmission belt-155, a first gear-156, a second gear-157, a right contraction frame-161, a spring-162, a central positioning frame-163, a circuit board-164, a left spring-165, a left contraction frame-166, a right translation frame-171, a positioning steering rod-172, a right contraction frame-166, a left translation frame-171, a positioning, A linkage rod-173, a right gear frame-174, a right positioning wheel-175, a fixed underframe-176, a tension spring-177, a tension connecting plate-178 and a linkage rope-179.
Detailed Description
The technical solutions in the embodiments of the present invention are clearly and completely described below, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
A safe and quick installation device for an safety capacitor comprises a machine body 4, wherein an auxiliary installation device 1 is installed in the machine body 4, a support frame 3 is arranged below the machine body 4, a moving wheel 2 is connected below the support frame 3, a control panel 5 is arranged on the machine body 4, and a heat dissipation port 6 and a dustproof belt 7 are arranged on one side of the machine body 4; supplementary installation device 1 includes drive assembly 11 and supplementary installation casing 12, is provided with drive assembly 11 in the supplementary installation casing 12, is connected with elasticity fixed component 13 under the drive assembly 11, is provided with location fixed component 16 under the elasticity fixed component 13, and location fixed component 16 left side and right side are connected with left extrusion subassembly 14 and right extrusion subassembly 17 respectively, are connected with adjusting part 15 under the fixed component 16 of location.
The driving assembly 11 comprises a fixed block 110, a chute 111, a rack 112, a driving gear 113, a driving gear 114, a connecting link 115, a first rotating shaft 116, a first motor 117, a second motor 118, a slider 119, a first bearing 1110, a threaded sleeve 1111, a limiting block 1112 and a threaded rod 1113, the fixed block 110 is connected with the inner wall of the auxiliary mounting shell 12, the chute 111 is arranged on one side of the upper portion of the fixed block 110, the slider 119 is connected in the chute 111 in a sliding manner, the second motor 118 and the first motor 117 are sequentially arranged on the slider 119, the rack 112 is connected with the other side of the upper portion of the fixed block 110, the driving gear 113 is engaged on the rack 112, the driving gear 113 is connected with the second motor 118 through the connecting link 115, the first bearing 1110 connected with the connecting link 115 is arranged on the driving gear 113, the driving gear 114 is engaged on the driving gear 113, the output of second motor 118 is connected with threaded rod 1113, and threaded rod 1113 goes up the screw thread cover and has connect with screw sleeve piece 1111, and the threaded rod 1113 other end is connected with stopper 1112.
The elastic fixing assembly 13 comprises an electric telescopic push rod 130, a lifting tension rod 131, a tension tube barrel 132, a movable claw connecting block 133, a left movable claw 134, a right movable claw 135 and a middle lifting block 136, the upper end of the electric telescopic push rod 130 is connected with a thread sleeve block 1111, the two sides of the electric telescopic push rod 130 are provided with the lifting tension rod 131 connected with the thread sleeve block 1111, the tension tube barrel 132 is arranged below the lifting tension rod 131, the tension tube barrel 132 is connected with the movable claw connecting block 133 below, the two sides of the movable claw connecting block 133 are respectively provided with the left movable claw 134 and the right movable claw 135, the telescopic end of the electric telescopic push rod 130 penetrates through the movable claw connecting block 133 and is connected with the middle lifting block 136, and the two ends of the middle lifting block 136 are connected with the left movable claw 134 and the right movable.
A cavity is arranged in the tension tube barrel 132, a sliding sheet is arranged in the cavity, the tension tube barrel 132 is connected with the lifting tension rod 131 through the sliding sheet, and a first spring connected with the inner bottom wall of the tension tube barrel 132 is connected below the sliding sheet, so that the phenomenon that the elastic fixing component 13 is damaged due to the fact that the electric telescopic push rod 130 in the elastic fixing component 13 excessively extends and retracts is avoided.
The left extrusion component 14 comprises a rotating rod 141, a T-shaped frame 142, a tension rod 143, a left gear frame 144, a positioning guide wheel 145, a connecting plate 146, a parallel spring 147, a bottom frame 148 and a tension rope 149, wherein the right end of the tension rod 143 is fixedly connected with the top end of the rotating rod 141, the rear side face of the top end of the tension rod 143 is movably connected with the inside of the bottom end of the T-shaped frame 142, the left end of the tension rod 143 is fixedly connected with the bottom end of the positioning guide wheel 145, one end of the tension rope 149 is connected to the bottom end of the left gear frame 144, the other end of the tension rope bypasses the positioning guide wheel 145 and is connected to the top of the connecting plate 146, the bottom of the connecting plate 146 is vertically connected with the top of the parallel spring 147, the.
The adjusting assembly 15 comprises a driving motor 151, a longitudinal transmission belt 152, a positioning transmission rod 153, a driving gear disc 154, an integrated transmission belt 155, a first gear 156 and a second gear 157, two ends of the longitudinal transmission belt 152 are respectively connected to the right end side face of the driving motor 151 and the left end side face of the positioning transmission rod 153, the rear side face of the right end of the positioning transmission rod 153 is meshed with the front side of the left end of the driving gear disc 154, the rear end side face of the driving gear disc 154 is in transmission connection with the rear end side faces of the first gear 156 and the second gear 157 through the integrated transmission belt 155, and the side faces of the first gear 156 and the second gear 157 are in transmission connection with the inside of the bottom end.
The positioning and fixing assembly 16 comprises a right shrinkage frame 161, a spring 162, a central positioning frame 163, a circuit board 164, a left spring 165 and a left shrinkage frame 166, wherein the bottom side of the left shrinkage frame 166 is meshed with the top sides of the first gear 156 and the second gear 157, the bottom sides of the first gear 156 and the second gear 157 are meshed with the top side of the left end of the right shrinkage frame 161, one end of the left spring 165 is connected to the right side of the top end of the left shrinkage frame 166, the other end of the left spring is fixed to the left side of the central positioning frame 163, one end of the spring 162 is connected to the left side of the top end of the right shrinkage frame 161, the other end of the spring is fixed to the right.
The right extrusion assembly 17 comprises a right translation frame 171, a positioning steering rod 172, a linkage rod 173, a right gear frame 174, a right positioning wheel 175, a fixed underframe 176, a tension spring 177, a tension connecting plate 178 and a linkage rope 179, the left end of the linkage rod 173 is fixedly connected with the top end of the positioning steering rod 172, the rear side face of the left end of the positioning steering rod 172 is movably connected with the inside of the bottom end of the right translation frame 171, the right end of the positioning steering rod 172 is fixedly connected with the bottom end of the right gear frame 174, one end of the linkage rope 179 is connected to the bottom end of the right gear frame 174, the other end of the linkage rope bypasses the right positioning wheel 175 and is connected to the top of the tension connecting plate 178, the top of the tension spring 177 is vertically connected with the.
When the device is used, a driving torque is generated by the second motor 118 to drive the threaded rod 1113 to rotate, so that the threaded sleeve block 1111 which is in threaded sleeve connection with the threaded rod 1113 moves left and right, the elastic fixing component 13 is connected below the threaded sleeve block 1111, the threaded sleeve block 1111 moves left and right to drive the elastic fixing component 13 to move, if the elastic fixing component 13 is required to move back and forth, the first motor 117 is started to drive the first rotating shaft 116 and the driving gear 114 to rotate, the transmission gear 113 is driven to move back and forth along the rack, the transmission gear 113 is connected with the second motor 118 through the connecting movable rod 115, the transmission gear 113 is provided with the first bearing 1110 connected with the connecting movable rod 115, so that the second motor 118 and the connecting movable rod 115 do not rotate but move back and forth, the sliding block 119 is slidably connected in the sliding groove 111, the sliding block 119 is arranged on the sliding block 119, the sliding block 119 connected, the second motor 118 is connected with a threaded rod 1113, a threaded sleeve block 1111 is sleeved on the threaded rod 1113 in a threaded manner, the elastic fixing component 13 is connected below the threaded sleeve block 1111, so that the elastic fixing component 13 moves back and forth, the electric telescopic push rod 130 is started to contract, the electric telescopic push rod 130 contracts to drive the middle lifting block 136 to ascend, the left movable jaw 134 and the right movable jaw 135 contract to fix the safety capacitor, if the electric telescopic push rod 130 is started to extend, the electric telescopic push rod 130 extends to drive the middle lifting block 136 to descend, so that the fixed safety capacitor can be loosened by the left movable jaw 134 and the right movable jaw 135, the vertical track where the safety capacitor is placed cannot be changed, meanwhile, the driving motor 151 generates driving torque to pull the positioning transmission rod 153 to rotate through the longitudinal transmission belt 152, the positioning transmission rod 153 can drive the driving gear disc 154 to rotate, the driving gear disc 154 pulls the first gear 156 and the second gear 157 to rotate through the comprehensive transmission belt, first gear 156 can drive left shrink frame 166 when rotating with second gear 157, right shrink frame 161 is the shrink inwards simultaneously, just so can be fixed in central point with the circuit board and put, the position that circuit board and two pins of ann rule electric capacity correspond just can not change like this, two pins of ann rule electric capacity just can the disect insertion, the device can quick replacement circuit board simultaneously, and the work efficiency is improved, the moving direction and the position of the fixed subassembly 13 of drive assembly 11 control elasticity, be convenient for the fixed subassembly 13 of elasticity correctly effectual unclamp with contract like this control ann rule electric capacity, left side extrusion subassembly 14 and right extrusion subassembly 17 can provide the effort of buffering when the fixed subassembly 16 of location resets, adjusting part 15 can fix the circuit board by fast control fixed subassembly 16 of location.
The circuit board fixing device can automatically and quickly fix the circuit board, ensures that the central position of the fixed circuit board is unchanged, and simultaneously adjusts the position of the safety capacitor and accurately and efficiently takes and places the safety capacitor, so that two pins of the safety capacitor can be directly inserted into corresponding pin holes on the circuit board, the production efficiency is improved, and the working intensity of workers is reduced.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.
Claims (6)
1. The utility model provides a safe swift installation device of ann's rule electric capacity, includes the organism, its characterized in that: the auxiliary installation device is installed in the machine body, a support frame is arranged below the machine body, a moving wheel is connected below the support frame, a control panel is arranged on the machine body, and a heat dissipation port and a dustproof belt are arranged on one side of the machine body; the auxiliary mounting device comprises a driving assembly and an auxiliary mounting shell, wherein the driving assembly is arranged in the auxiliary mounting shell, an elastic fixing assembly is connected below the driving assembly, a positioning fixing assembly is arranged below the elastic fixing assembly, the left side and the right side of the positioning fixing assembly are respectively connected with a left extrusion assembly and a right extrusion assembly, and an adjusting assembly is connected below the positioning fixing assembly;
the driving assembly comprises a fixed block, a sliding groove, a rack, a transmission gear, a driving gear, a connecting moving rod, a first rotating shaft, a first motor, a second motor, a sliding block, a first bearing, a threaded sleeve block, a limiting block and a threaded rod, wherein the fixed block is connected with the inner wall of the auxiliary installation shell, one side of the upper part of the fixed block is provided with the sliding groove, the sliding block is connected in the sliding groove in a sliding manner, the second motor and the first motor are sequentially arranged on the sliding block, the other side of the upper part of the fixed block is connected with the rack, the transmission gear is meshed on the rack, the transmission gear is connected with the second motor through the connecting moving rod, the transmission gear is provided with the first bearing connected with the connecting moving rod, the transmission gear is meshed with the driving gear, the driving gear is connected with, a threaded sleeve block is sleeved on the threaded rod in a threaded manner, and the other end of the threaded rod is connected with a limiting block;
the fixed subassembly of elasticity includes electric telescopic rod, lift pulling force pole, pulling force bobbin, movable claw connecting block, left movable claw, right movable claw and middle elevator, the electric telescopic rod upper end is connected with the screw thread nest block, electric telescopic rod both sides are provided with the lift pulling force pole of being connected with the screw thread nest block, be provided with the pulling force bobbin under the lift pulling force pole, be connected with the movable claw connecting block under the pulling force bobbin, movable claw connecting block both sides are provided with left movable claw and right movable claw respectively, electric telescopic rod's flexible end runs through the movable claw connecting block and is connected with middle elevator, left movable claw and right movable claw are connected respectively to middle elevator both ends through the second axis of rotation hub connection.
2. The safe and quick installation device for the safety capacitor as claimed in claim 1, wherein: the tension tube barrel is internally provided with a cavity, a sliding sheet is arranged in the cavity, the tension tube barrel is connected with a lifting tension rod through the sliding sheet, and a first spring connected with the inner bottom wall of the tension tube barrel is connected below the sliding sheet.
3. The safe and quick installation device for the safety capacitor as claimed in claim 1, wherein: left side extrusion subassembly includes dwang, T shape frame, pull rod, left-hand gear frame, location leading wheel, connecting plate, parallel spring, chassis and pulling force rope, pull rod right-hand member and dwang top fixed connection, the inside swing joint in pull rod top trailing flank and T shape frame bottom, pull rod left end and location leading wheel bottom fixed connection, pulling force rope one end is connected to left-hand gear frame bottom, and the other end is walked around the location leading wheel and is connected to the connecting plate top, the connecting plate bottom is connected with the parallel spring top is perpendicular, parallel spring bottom and chassis top fixed connection, T shape frame right-hand member is connected with the fixed subassembly left end is perpendicular.
4. The safe and quick installation device for the safety capacitor as claimed in claim 1, wherein: the adjusting part includes driving motor, vertical transmission band, location transfer line, driving gear dish, synthesizes drive belt, first gear and second gear, vertical transmission band both ends are connected to driving motor right-hand member side and location transfer line left end side respectively, location transfer line right-hand member trailing flank meshes with driving gear dish left end front side mutually, driving gear dish rear end side carries out the transmission through synthesizing the drive belt and carrying out the transmission with first gear, second gear rear end side and is connected, first gear, second gear side and the inside transmission that carries out in the fixed subassembly bottom of location are connected.
5. The safe and quick installation device for the safety capacitor as claimed in claim 1, wherein: the fixed subassembly in location includes right shrink frame, spring, central locating rack, circuit board, left spring and left shrink frame, left side shrink frame bottom side meshes with first gear, second gear top side mutually, first gear, second gear bottom side mesh with right shrink frame left end top side mutually, left side spring one end is connected to left shrink frame top right side, and the other end is fixed in central locating rack left side, spring one end is connected to right shrink frame top left side, and the other end is fixed in central locating rack right side, the laminating of circuit board bottom and central locating rack top is connected.
6. The safe and quick installation device for the safety capacitor as claimed in claim 1, wherein: the right side extrusion subassembly includes right translation frame, location steering column, gangbar, right gear frame, right locating wheel, fixed chassis, tension spring, pulling force connecting plate and linkage rope, the gangbar left end and location steering column top end fixed connection, location steering column left end trailing flank and the inside swing joint of right translation frame bottom, location steering column right-hand member and right gear frame bottom fixed connection, linkage rope one end is connected to right gear frame bottom, and right locating wheel is walked around to the other end and is connected to the pulling force connecting plate top, the tension spring top is connected perpendicularly with pulling force connecting plate bottom, tension spring bottom and fixed chassis top fixed connection.
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CN201810767881.8A CN109041567B (en) | 2018-07-13 | 2018-07-13 | Safe and fast installation device for safety capacitor |
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CN201810767881.8A CN109041567B (en) | 2018-07-13 | 2018-07-13 | Safe and fast installation device for safety capacitor |
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CN109041567B true CN109041567B (en) | 2020-12-15 |
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