CN206364697U - Electroplating power supply both positive and negative polarity conversion equipment - Google Patents

Electroplating power supply both positive and negative polarity conversion equipment Download PDF

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Publication number
CN206364697U
CN206364697U CN201720027805.4U CN201720027805U CN206364697U CN 206364697 U CN206364697 U CN 206364697U CN 201720027805 U CN201720027805 U CN 201720027805U CN 206364697 U CN206364697 U CN 206364697U
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CN
China
Prior art keywords
conduction panel
fracture
output end
positive
pressing plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201720027805.4U
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Chinese (zh)
Inventor
刘海梅
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Dongguan Kehong Electrical Equipment Co Ltd
Original Assignee
Dongguan Kehong Electrical Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Dongguan Kehong Electrical Equipment Co Ltd filed Critical Dongguan Kehong Electrical Equipment Co Ltd
Priority to CN201720027805.4U priority Critical patent/CN206364697U/en
Application granted granted Critical
Publication of CN206364697U publication Critical patent/CN206364697U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a kind of electroplating power supply both positive and negative polarity conversion equipment, including electrode input end, negative input, first output end, second output end, conductive plate and pole are to switching mechanism, conductive plate between first output end and electrode input end is provided with the first fracture, conductive plate between second output end and negative input is provided with the second fracture, conductive plate between second output end and electrode input end is provided with the 3rd fracture, conductive plate between first output end and negative input is provided with the 4th fracture, the pole includes the first conduction panel to switching mechanism, second conduction panel, 3rd conduction panel and the 4th conduction panel, first drive mechanism and the second drive mechanism.Have the beneficial effect that:It is more convenient for controlling, the contact surface of conduction panel and the conductive plate at fracture two ends is bigger, and output voltage is more stable.

Description

Electroplating power supply both positive and negative polarity conversion equipment
Technical field
The utility model is related to technical field of plating equipment, more particularly to a kind of electroplating power supply both positive and negative polarity conversion equipment.
Background technology
It is known to be inverted at a terrific speed there is provided the current polarity to plating load in plating.When positive pole electricity When stream is provided to plating load, electroplate;When cathodal current is provided to the load, plating is interrupted or formed plating The part metals of layer are broken down into electrolyte, and the crystalline solid for being consequently formed electrodeposited coating is made more fine so that the object can Equably electroplated.Therefore need to increase a both positive and negative polarity conversion equipment between electroplating power supply and electroplating device.
Both positive and negative polarity conversion equipment on the market realizes the conversion of both positive and negative polarity typically by side pressure mode at present, so holds The situation for easily occurring causing circuit to disconnect because not pressing tightly occurs, it is not easy to control both positive and negative polarity to change.
Utility model content
The utility model is in view of the existing deficiencies of the prior art there is provided a kind of electroplating power supply both positive and negative polarity conversion equipment, and it is more It is easy to control, the contact area of conduction panel and fracture two ends conductive plate is bigger, and output voltage is more stable.
To achieve the above object, the utility model is using following technical scheme:
A kind of electroplating power supply both positive and negative polarity conversion equipment, including electrode input end, negative input, the first output end, second Output end, conductive plate and pole to switching mechanism, first output end by conductive plate respectively with electrode input end and negative pole Input is connected, and second output end is connected with electrode input end and negative input respectively by conductive plate, and described first Conductive plate between output end and electrode input end is provided with the first fracture, between second output end and negative input Conductive plate is provided with the second fracture, and the conductive plate between second output end and electrode input end is provided with the 3rd fracture, institute State conductive plate between the first output end and negative input and be provided with the 4th fracture, the pole to switching mechanism include can above and below Mobile the first conduction panel, the second conduction panel, the 3rd conduction panel and the 4th conduction panel, for driving the first conduction panel and second to lead The first drive mechanism that logical plate is moved up and down simultaneously and for driving the 3rd conduction panel and the 4th conduction panel while moving up and down Second drive mechanism, first conduction panel, the second conduction panel, the 3rd conduction panel and the 4th conduction panel are respectively correspondingly arranged in first Fracture, the second fracture, the top of the 3rd fracture and the 4th fracture.
As a kind of preferred scheme, the pole also includes support frame to switching mechanism, and support frame as described above includes a supporting plate, The middle part and two ends of the supporting plate are equipped with lead.
As a kind of preferred scheme, first drive mechanism includes the first pressing plate and the first pressing plate of driving is moved up and down The first oil hydraulic cylinder, the upper end of first oil hydraulic cylinder is connected with supporting plate, lower end and the first pressing plate of first oil hydraulic cylinder Connection, first conduction panel and the second conduction panel spacing are installed on the lower surface of the first pressing plate.
As a kind of preferred scheme, second drive mechanism includes the second pressing plate and the second pressing plate of driving is moved up and down The second oil hydraulic cylinder, the upper end of second oil hydraulic cylinder is connected with supporting plate, lower end and the second pressing plate of second oil hydraulic cylinder Connection, the 3rd conduction panel and the 4th conduction panel spacing are installed on the lower surface of the second pressing plate.
As a kind of preferred scheme, first conduction panel and the second conduction panel are installed on the first pressing plate by an insulation board Lower surface, the 3rd conduction panel and the 4th conduction panel are installed on the lower surface of the second pressing plate by an insulation board.
As a kind of preferred scheme, the two ends of first pressing plate and the second pressing plate are installed with connecting plate respectively, institute State connecting plate and be provided with the groove being adapted to lead.
As a kind of preferred scheme, the electroplating power supply both positive and negative polarity conversion equipment also includes an oil pump, and the oil pump passes through Oil pipe is connected with the first oil hydraulic cylinder and the second oil hydraulic cylinder respectively.
When first drive mechanism drive the first conduction panel and the second conduction panel push simultaneously and respectively with the first fracture Contacted with the conductive plate at the second fracture two ends, second drive mechanism drives the 3rd conduction panel and the 4th conduction panel to move up When, first output end is connected with electrode input end, and second output end is connected with negative input;When the described second drive Motivation structure drive the 3rd conduction panel and the 4th conduction panel push simultaneously and respectively with the 3rd fracture and the conduction at the 4th fracture two ends Plate is contacted, when first drive mechanism drives the first conduction panel and the second conduction panel to move up, first output end with Negative input is connected, and second output end is connected with electrode input end.
The utility model compared with prior art, with advantages below and advantage, specifically, by way of above pushing The traditional side pressure mode of substitution is so avoided that the feelings for causing circuit to disconnect because not pressing tightly to realize the conversion between both positive and negative polarity Condition occurs, and both positive and negative polarity conversion is become easier to control, user-friendly;On the other hand under gravity, the conducting The contact surface of plate and the conductive plate at fracture two ends is big compared with side pressure mode, and voltage output is relatively more stablized.
For the specific purposes and work(for more clearly illustrating architectural feature of the present utility model, technological means and its being reached Can, the utility model is described in further detail with specific embodiment below in conjunction with the accompanying drawings:
Brief description of the drawings
Fig. 1 is the principle schematic of the embodiment of the utility model;
Fig. 2 is first drive mechanism and the second driving mechanism structure schematic diagram of the utility model;
Fig. 3 is the pressing plate and the side schematic view of fracture cooperation of the utility model.
Accompanying drawing identifier declaration:
1- electrode input ends, 2- negative inputs, the output ends of 3- first, the output ends of 4- second, 5- conductive plates, 6- poles to turn Converting mechanism, the conduction panels of 61- first, the conduction panels of 62- first, the conduction panels of 63- first, the conduction panels of 64- first, the driving machines of 65- first Structure, the pressing plates of 651- first, the oil hydraulic cylinders of 652- first, the drive mechanisms of 66- second, the pressing plates of 661- second, the oil hydraulic cylinders of 662- second, 7- First fracture, the fractures of 8- second, the fractures of 9- the 3rd, the fractures of 10- the 4th, 11- support frames, 111- supporting plates, 112- leads, 12- insulation boards, 13- connecting plates.
Embodiment
As Figure 1-3, a kind of electroplating power supply both positive and negative polarity conversion equipment, including electrode input end 1, negative input 2, One output end 3, the second output end 4, conductive plate 5 and pole are distinguished to switching mechanism 6, first output end 3 by conductive plate 5 Be connected with electrode input end 1 and negative input 2, second output end 4 by conductive plate 5 respectively with electrode input end 1 and Negative input 2 is connected, and the conductive plate 5 between first output end 3 and electrode input end 1 is provided with the first fracture 7, described Conductive plate 5 between second output end 4 and negative input 2 is provided with the second fracture 8, and second output end 4 and positive pole are defeated The conductive plate 5 entered between end 1 is provided with the 3rd fracture 9, the conductive plate 5 between first output end 3 and negative input 2 Provided with the 4th fracture 10, the pole includes the first conduction panel 61 moving up and down, the second conduction panel 62, the to switching mechanism 6 Three conduction panels 63 and the 4th conduction panel 64, first moved up and down simultaneously for the first conduction panel 61 of driving and the second conduction panel 62 Drive mechanism 65 and the second drive mechanism 66 for driving the 3rd conduction panel 63 and the 4th conduction panel 64 to move up and down simultaneously, institute State the first conduction panel 61, the second conduction panel 62, the 3rd conduction panel 63 and the 4th conduction panel 64 be respectively correspondingly arranged in the first fracture 7, The top of second fracture 8, the 3rd fracture 9 and the 4th fracture 10.When first drive mechanism 65 drives the He of the first conduction panel 61 Second conduction panel 62 is pushed simultaneously and the conductive plate 5 with the first fracture 7 and the two ends of the second fracture 8 is contacted respectively, and described second drives When the 3rd conduction panel 63 of driving of motivation structure 66 and the 4th conduction panel 64 are moved up, first output end 3 and electrode input end 1 Connection, second output end 4 is connected with negative input 2;When second drive mechanism 66 drives the He of the 3rd conduction panel 63 4th conduction panel 64 is pushed simultaneously and the conductive plate 5 with the 3rd fracture 9 and the two ends of the 4th fracture 10 is contacted respectively, and described first drives When the first conduction panel 61 of driving of motivation structure 65 and the second conduction panel 62 are moved up, first output end 3 and negative input 2 Connection, second output end 4 is connected with electrode input end 1.The pole is additionally provided with support frame 11, the branch to switching mechanism 6 Support 11 includes a supporting plate 111, and the middle part and two ends of the supporting plate 111 are equipped with lead 112.First driving machine Structure 65 includes the first oil hydraulic cylinder 652 that the first pressing plate 651 and the first pressing plate 651 of driving are moved up and down, first oil hydraulic cylinder 652 upper end is connected with supporting plate 111, and the lower end of first oil hydraulic cylinder 652 is connected with the first pressing plate 651, and described first leads The plate of 61 and second conduction panel of logical plate 62 is installed on the lower surface of the first pressing plate 651 by the spacing of an insulation board 12.Described second drives Motivation structure 66 includes the second oil hydraulic cylinder 662 that the second pressing plate 661 and the second pressing plate 661 of driving are moved up and down, second oil The upper end of cylinder pressure 662 is connected with supporting plate 111, and the lower end of second oil hydraulic cylinder 662 is connected with the second pressing plate 661, and described Three conduction panels 63 and the 4th conduction panel 64 are installed on the lower surface of the second pressing plate 661 by the spacing of an insulation board 12.Described first The two ends of the pressing plate 661 of pressing plate 651 and second are installed with connecting plate 13 respectively, and the connecting plate 13 is provided with suitable with lead The groove matched somebody with somebody.The electroplating power supply both positive and negative polarity conversion equipment also includes an oil pump, and the oil pump is oily with first respectively by oil pipe The oil hydraulic cylinder 662 of cylinder pressure 652 and second is connected.
It is described above, only it is preferred embodiment of the present utility model, not to limit the utility model, thus it is every Any modification, equivalent substitution and improvements actually made according to technology of the present utility model to above example etc., still fall within this In the range of utility model technical scheme.

Claims (7)

1. a kind of electroplating power supply both positive and negative polarity conversion equipment, it is characterised in that:Including electrode input end, negative input, first defeated Go out end, the second output end, conductive plate and pole to switching mechanism, first output end is inputted with positive pole respectively by conductive plate End and negative input connection, second output end are connected with electrode input end and negative input respectively by conductive plate, Conductive plate between first output end and electrode input end is provided with the first fracture, and second output end is inputted with negative pole Conductive plate between end is provided with the second fracture, and the conductive plate between second output end and electrode input end is provided with the 3rd Fracture, conductive plate between first output end and negative input is provided with the 4th fracture, and the pole is to switching mechanism bag Include the first conduction panel moving up and down, the second conduction panel, the 3rd conduction panel and the 4th conduction panel, for driving the first conduction panel With the second conduction panel the first drive mechanism for moving up and down and for driving the 3rd conduction panel and the 4th conduction panel simultaneously simultaneously Second drive mechanism of lower movement, first conduction panel, the second conduction panel, the 3rd conduction panel and the 4th conduction panel are corresponded to respectively Located at the top of the first fracture, the second fracture, the 3rd fracture and the 4th fracture.
2. electroplating power supply both positive and negative polarity conversion equipment according to claim 1, it is characterised in that:The pole to switching mechanism also Including support frame, support frame as described above includes a supporting plate, and the middle part and two ends of the supporting plate are equipped with lead.
3. electroplating power supply both positive and negative polarity conversion equipment according to claim 2, it is characterised in that:The first drive mechanism bag The first oil hydraulic cylinder that the first pressing plate and the first pressing plate of driving are moved up and down is included, upper end and the supporting plate of first oil hydraulic cylinder connect Connect, the lower end of first oil hydraulic cylinder is connected with the first pressing plate, first conduction panel and the second conduction panel spacing are installed on The lower surface of one pressing plate.
4. electroplating power supply both positive and negative polarity conversion equipment according to claim 3, it is characterised in that:The second drive mechanism bag The second oil hydraulic cylinder that the second pressing plate and the second pressing plate of driving are moved up and down is included, upper end and the supporting plate of second oil hydraulic cylinder connect Connect, the lower end of second oil hydraulic cylinder is connected with the second pressing plate, the 3rd conduction panel and the 4th conduction panel spacing are installed on The lower surface of two pressing plates.
5. electroplating power supply both positive and negative polarity conversion equipment according to claim 4, it is characterised in that:First conduction panel and Two conduction panels are installed on the lower surface of the first pressing plate by an insulation board, and the 3rd conduction panel and the 4th conduction panel are exhausted by one Listrium is installed on the lower surface of the second pressing plate.
6. electroplating power supply both positive and negative polarity conversion equipment according to claim 5, it is characterised in that:First pressing plate and second The two ends of pressing plate are installed with connecting plate respectively, and the connecting plate is provided with the groove being adapted to lead.
7. electroplating power supply both positive and negative polarity conversion equipment according to claim 6, it is characterised in that:Also include an oil pump, it is described Oil pump is connected with the first oil hydraulic cylinder and the second oil hydraulic cylinder respectively by oil pipe.
CN201720027805.4U 2017-01-10 2017-01-10 Electroplating power supply both positive and negative polarity conversion equipment Expired - Fee Related CN206364697U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720027805.4U CN206364697U (en) 2017-01-10 2017-01-10 Electroplating power supply both positive and negative polarity conversion equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720027805.4U CN206364697U (en) 2017-01-10 2017-01-10 Electroplating power supply both positive and negative polarity conversion equipment

Publications (1)

Publication Number Publication Date
CN206364697U true CN206364697U (en) 2017-07-28

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720027805.4U Expired - Fee Related CN206364697U (en) 2017-01-10 2017-01-10 Electroplating power supply both positive and negative polarity conversion equipment

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109268354A (en) * 2018-11-09 2019-01-25 佛山市杰创科技有限公司 A kind of hydraulic commutator high frequency switch power with pressure holding function

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109268354A (en) * 2018-11-09 2019-01-25 佛山市杰创科技有限公司 A kind of hydraulic commutator high frequency switch power with pressure holding function

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170728

Termination date: 20220110