CN110885998A - Station system for automatic out-of-tank electroplating of cylinder body - Google Patents
Station system for automatic out-of-tank electroplating of cylinder body Download PDFInfo
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- CN110885998A CN110885998A CN201911245285.4A CN201911245285A CN110885998A CN 110885998 A CN110885998 A CN 110885998A CN 201911245285 A CN201911245285 A CN 201911245285A CN 110885998 A CN110885998 A CN 110885998A
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- station
- conveying mechanism
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- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D7/00—Electroplating characterised by the article coated
- C25D7/04—Tubes; Rings; Hollow bodies
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- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D17/00—Constructional parts, or assemblies thereof, of cells for electrolytic coating
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- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25D—PROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
- C25D5/00—Electroplating characterised by the process; Pretreatment or after-treatment of workpieces
- C25D5/08—Electroplating with moving electrolyte e.g. jet electroplating
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- Chemical Kinetics & Catalysis (AREA)
- Electrochemistry (AREA)
- Materials Engineering (AREA)
- Metallurgy (AREA)
- Organic Chemistry (AREA)
- Electroplating Methods And Accessories (AREA)
Abstract
The invention discloses a station system for automatic out-of-tank electroplating of a cylinder body, which comprises a conveying mechanism group, a feeding and discharging station, a pre-plating treatment station group, an electroplating station group and an exchange station, wherein the conveying mechanism group comprises a conveying mechanism group, a feeding and discharging station, a pre-plating treatment station group and an electroplating station group; the exchange station is positioned in the pre-plating treatment station group, the electroplating station group or/and between the pre-plating treatment station group and the electroplating station group; the conveying mechanism group comprises a feeding and discharging conveying mechanism and at least two groups of conveying mechanisms which independently receive and execute commands; the conveying mechanism of the conveying mechanism group conveys the incoming materials of the feeding and discharging stations to the head of the pre-plating treatment station group through the exchange position, conveys the workpieces at the head to the designated stations in sequence according to the working procedures, and finally conveys the workpieces to the feeding and discharging stations.
Description
Technical Field
The invention relates to a cylinder electroplating station system, in particular to an automatic out-of-tank electroplating station system for a cylinder.
Background
The cylinder body is used as a main part of equipment such as an engine, a plunger pump, a reciprocating compressor and the like and is used for forming a working space together with the piston and the cylinder head; taking an engine as an example, the engine forms a combustion chamber and provides a motion track for the piston assembly, so that a power conversion environment is formed. In the process of guiding the piston to continuously reciprocate, the inner wall of the cylinder and the piston rub against each other for a long time at a high frequency, so that the useful power of the cylinder is reduced, and a part of energy is consumed. In order to solve the problems, electroplating is carried out on the inner wall, and an electroplating coating is used for replacing the cylinder sleeve to solve the problems. In the prior art, the circulating electroplating outside the tank ensures that cations on a plating layer are replaced in real time due to the formation of a flowing electroplating environment, the concentration of the plating layer is not different, the fluidity of the plating layer is stable and uniform, the compactness of the plating layer is ensured, and the electroplating quality is ensured.
However, in the existing plating structure outside the bath, more processes need to be participated by people, for example, oil removal, feeding and blanking, completion of one process, entering of the next process and the like all need to be carried out by a manually operated travelling crane, and manpower and material resources are wasted.
Therefore, there is a need for an improved circulating electroplating system, which can automate the whole production line, reduce the participation of workers, improve the working efficiency and reduce the production cost.
Disclosure of Invention
In view of the above, the present invention provides a station system for automated plating outside a tank for a cylinder, which makes it possible to automate the entire production line, thereby reducing the degree of human involvement, improving the work efficiency, and reducing the production cost.
The invention discloses a station system for automatic out-of-tank electroplating of a cylinder body, which comprises a conveying mechanism group, a feeding and discharging station, a pre-plating treatment station group, an electroplating station group and an exchange station;
the exchange station is positioned in the pre-plating treatment station group, the electroplating station group or/and between the pre-plating treatment station group and the electroplating station group;
the conveying mechanism group comprises a feeding and discharging conveying mechanism and at least comprises two groups of conveying mechanisms which independently receive and execute commands.
Furthermore, the feeding station and the discharging station are positioned at the same station and are feeding and discharging stations, the conveying mechanism of the conveying mechanism group conveys incoming materials of the feeding and discharging stations to the head of the pre-plating treatment station group through the exchange position, conveys the workpieces at the head to the appointed station in sequence according to the working procedures, and finally conveys the workpieces to the feeding and discharging stations.
Further, the exchange stations comprise a first exchange station and a second exchange station which are arranged along the electroplating process, and the conveying mechanism group comprises a first conveying mechanism, a second conveying mechanism and a third conveying mechanism which are arranged along the electroplating process; the first conveying mechanism, the second conveying mechanism and the third conveying mechanism receive instructions to temporarily place the workpiece by using the first exchange station and the second exchange station and convey the workpiece to a specified position.
Further, the pre-plating treatment station group comprises an alkaline etching station, an acid etching station, an ash removal station, an activation station and a zinc conversion station; the electroplating station group comprises a nickel pre-plating station, a nickel plating station and a recovery station; the first exchange station is positioned between the ash removal station and the activation station, and the second exchange station is positioned behind the recovery station.
Further, the feeding and discharging conveying mechanism is used for receiving an instruction, conveying the workpiece to be processed to a feeding and discharging station, and conveying the electroplated workpiece to a specified position from the feeding and discharging station.
Further, the processing station group before plating still includes automatic deoiling station, automatic deoiling station includes:
the oil removing tank is filled with an oil removing agent;
the support frame is used for accommodating a workpiece;
the oil removing and conveying mechanism is used for receiving a command to convey the support frame with the workpiece to an oil removing groove and stay for a set time;
and the oil removal controller sends an instruction to the oil removal conveying mechanism, conveys the support frame with the workpiece to the oil removal groove, stays for a set time, and then conveys the support frame to a specified position.
Further, go up unloading conveying mechanism, first conveying mechanism, second conveying mechanism and third conveying mechanism and all transport the driving.
Further, the tracks of the feeding and discharging conveying mechanism, the first conveying mechanism, the second conveying mechanism and the third conveying mechanism are provided with encoders for detecting the positions of the encoders.
The invention has the beneficial effects that: according to the station system for automatic out-of-tank electroplating of the cylinder body, the whole production line is arranged on the station, so that automation is possible, the participation degree of manpower is finally reduced, the working efficiency is improved, and the production cost is reduced.
Drawings
The invention is further described below with reference to the figures and examples.
FIG. 1 is a diagram of a station layout of the present invention;
fig. 2 is a block diagram of an automated principle compatible with the present invention.
Detailed Description
Fig. 1 is a station layout diagram of the invention, and fig. 2 is an automation functional block diagram matched with the invention, as shown in the figure: the station system for automatic out-of-tank electroplating of the cylinder body comprises a conveying mechanism group, a feeding and discharging station, a pre-plating treatment station group, an electroplating station group and an exchange station;
the exchange station is positioned in the pre-plating treatment station group, the electroplating station group or/and between the pre-plating treatment station group and the electroplating station group;
the conveying mechanism group comprises a feeding and discharging conveying mechanism and at least two groups of conveying mechanisms which independently receive execution commands sent by the central processing unit;
and the conveying mechanism of the conveying mechanism group conveys the incoming materials of the feeding and discharging station to the head of the pre-plating treatment station group through the exchange position, conveys the workpieces at the head to the specified station in sequence according to the working procedures, and finally conveys the workpieces to the feeding and discharging station.
The feeding and discharging stations can feed and discharge materials at the same position, and the two ends of the process flow are respectively fed and discharged materials or discharged materials from the feeding tail end at the head end of the process flow and conveyed to the head end through a special travelling crane, so that the aim of the invention can be fulfilled; in this embodiment, the feeding station and the discharging station are located at the same station and are feeding and discharging stations, the conveying mechanism of the conveying mechanism group conveys incoming materials of the feeding and discharging stations to the head of the pre-plating treatment station group through the exchange position, conveys the workpieces at the head to the designated station in sequence according to the working procedures, and finally conveys the workpieces to the feeding and discharging stations;
in this embodiment, the feeding station and the discharging station are located at the same station and are feeding and discharging stations, the conveying mechanism of the conveying mechanism group conveys incoming materials of the feeding and discharging stations to the head of the pre-plating treatment station group through the exchange position, conveys the workpieces at the head to the designated station in sequence according to the working procedures, and finally conveys the workpieces to the feeding and discharging stations.
In this embodiment, the exchange stations include a first exchange station and a second exchange station arranged along the electroplating process, and the conveyor group includes a first conveyor, a second conveyor and a third conveyor arranged along the electroplating process; the first conveying mechanism, the second conveying mechanism and the third conveying mechanism receive instructions of the central processing unit, and the first exchange station and the second exchange station are used for temporarily placing the workpiece and conveying the workpiece to a specified position.
In this embodiment, the pre-plating treatment station group includes an alkaline etching station, an acid etching station, an ash removal station, an activation station, and a zinc conversion station; the electroplating station group comprises a nickel pre-plating station, a nickel plating station and a recovery station; the first exchange station is positioned between the ash removal station and the activation station, and the second exchange station is positioned behind the recovery station.
In this embodiment, the feeding and discharging conveying mechanism is used for receiving an instruction of the central processing unit, conveying a workpiece to be processed to the feeding and discharging station, and conveying the electroplated workpiece to a designated position from the feeding and discharging station;
an automatic feeding and discharging system is adopted, so that manual actions are reduced, the labor intensity is reduced, and an operator only needs to concentrate on filling and disassembling; the working range of the operator is greatly reduced.
In this embodiment, before plating processing station group still includes automatic deoiling station, automatic deoiling station includes:
the oil removing tank is filled with an oil removing agent;
the support frame is used for accommodating a workpiece;
the oil removing and conveying mechanism is used for receiving a command to convey the support frame with the workpiece to an oil removing groove and stay for a set time;
the oil removing controller sends an instruction to the oil removing conveying mechanism, conveys the support frame with the workpiece to an oil removing groove for a set time and then conveys the support frame to a specified position; the invention realizes automatic oil removal, and after the system is started, unnecessary manual actions are not needed for oil removal operation, the system can automatically finish oil removal/washing actions and return to the original position (if the oil removal effect is not satisfactory, the oil removal can be repeatedly carried out for many times), thereby solving the problems that in the prior art, a manual operation controller is needed to always control a walking motor to move workpieces into/out of each station groove, manpower is wasted, and the process consistency cannot be ensured.
In this embodiment, the feeding and discharging conveying mechanism, the first conveying mechanism, the second conveying mechanism and the third conveying mechanism are all conveying traveling vehicles.
The invention is used in the automatic production line, and an automatic control system is also needed;
the automatic control system includes:
the detection and input unit is used for inputting instructions related to the electroplating process and detecting parameters related to the electroplating process;
a central processing unit for storing data related to the electroplating process; the device is used for receiving the instruction sent by the detection and input unit and the parameters which are sent by the detection and input unit and are related to the electroplating process, and performing data comparison operation which is related to the electroplating process after processing;
and the execution unit is used for receiving the instruction of the central processing unit and executing the action related to electroplating.
In this embodiment, the instructions input by the detection and input unit at least include workpiece parameter selection, start and stop instructions, and the detected parameters related to the electroplating process at least include a position parameter of the workpiece, a time parameter of a station where the workpiece is located, a position parameter of the conveying mechanism, and a liquid level parameter of the electroplating solution.
In this embodiment, the data stored in the central processing unit at least includes electroplating process data determined according to the cylinder type;
the execution unit includes:
the pump set is used for receiving an instruction of the central processing unit, conveying electroplating pretreatment liquid, electroplating liquid and water for washing to a corresponding station to complete a process task, replenishing the electroplating liquid to an electroplating nickel solution tank, and stopping after the operation is completed;
and the conveying mechanism is used for conveying the workpiece to a specified position comprising a feeding, discharging and electroplating station.
In this embodiment, the execution unit further includes an ultrasonic wave generation mechanism for ultrasonic wave dust removal.
In this embodiment, the detecting and inputting unit includes:
the encoder is arranged on the traveling tracks of the feeding and discharging conveying mechanism, the first conveying mechanism, the second conveying mechanism and the third conveying mechanism and used for detecting positions of the workpieces, and the encoder is used for detecting position parameters of the workpieces;
the electroplating liquid level sensor is used for detecting the liquid level of the electroplating liquid; the automatic liquid supplementing system really realizes the maintenance-free liquid level, an operator only needs to concentrate on the filling and the dismounting of the workpiece, and does not need to periodically patrol the liquid level, the labor efficiency is improved, and the operation difficulty is reduced.
And inputting the command into the peripheral.
The invention adopts the design of 'unmanned mode' because of the automatic production line, when an operator needs to leave temporarily, the system can refresh the hanging basket reaching the hanging position to be 0000 only by setting the 'unmanned mode', and the hanging basket is taken as an empty basket and automatically hung again to keep the continuous operation of the production line. According to the above description, in a short time, one or more empty baskets are added, and the output is only slightly influenced due to the short time for the empty baskets to sign in; even if the operator does not return for a long time, the final system can finish the electroplating operation process of the products on all the hanging baskets on the line, all the products are changed into 0000 to operate in a quick check-in mode, and the risk of product quality or the waste of re-pretreatment can not be caused.
Due to the improvement of the degree of automation and intellectualization, the number of actual operators in each shift is only 2.
The plating outside the bath of the present invention refers to dynamic plating by circulating plating liquid outside the plating bath, and will not be described herein.
Finally, the above embodiments are only for illustrating the technical solutions of the present invention and not for limiting, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions may be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all of them should be covered in the claims of the present invention.
Claims (8)
1. The utility model provides a station system that is used for automatic extra-tank of cylinder body to electroplate which characterized in that: comprises a conveying mechanism group, a feeding station, a blanking station, a pre-plating treatment station group, an electroplating station group and an exchange station;
the exchange station is positioned in the pre-plating treatment station group, the electroplating station group or/and between the pre-plating treatment station group and the electroplating station group;
the conveying mechanism group comprises a feeding and discharging conveying mechanism and at least comprises two groups of conveying mechanisms which independently receive and execute commands.
And the conveying mechanism of the conveying mechanism group conveys the incoming materials of the feeding and discharging station to the head of the pre-plating treatment station group through the exchange position, conveys the workpieces at the head to the specified station in sequence according to the working procedures, and finally conveys the workpieces to the feeding and discharging station.
2. A station system for automated off-tank plating of cylinders according to claim 1, wherein: the feeding station and the discharging station are positioned at the same station and are feeding and discharging stations, the conveying mechanism of the conveying mechanism group conveys incoming materials of the feeding and discharging stations to the head of the pre-plating treatment station group through the exchange position, conveys workpieces at the head to the appointed station in sequence according to the working procedures, and finally conveys the workpieces to the feeding and discharging stations.
3. A station system for automated off-tank plating of cylinders according to claim 1, wherein: the exchange stations comprise a first exchange station and a second exchange station which are arranged along the electroplating process, and the conveying mechanism group comprises a first conveying mechanism, a second conveying mechanism and a third conveying mechanism which are arranged along the electroplating process; the first conveying mechanism, the second conveying mechanism and the third conveying mechanism receive instructions to temporarily place the workpiece by using the first exchange station and the second exchange station and convey the workpiece to a specified position.
4. A station system for automated off-tank plating of cylinders according to claim 3, wherein: the pre-plating treatment station group comprises an alkaline etching station, an acid etching station, a dust removing station, an activating station and a zinc conversion station; the electroplating station group comprises a nickel pre-plating station, a nickel plating station and a recovery station; the first exchange station is positioned between the ash removal station and the activation station, and the second exchange station is positioned behind the recovery station.
5. A station system for automated off-tank plating of cylinders according to claim 4, wherein: the feeding and discharging conveying mechanism is used for receiving an instruction to convey a workpiece to be processed to a feeding and discharging station and conveying the electroplated workpiece to a specified position from the feeding and discharging station.
6. A station system for automated off-tank plating of cylinders according to claim 1, wherein: the processing station group before plating still includes automatic deoiling station, automatic deoiling station includes:
the oil removing tank is filled with an oil removing agent;
the support frame is used for accommodating a workpiece;
the oil removing and conveying mechanism is used for receiving a command to convey the support frame with the workpiece to an oil removing groove and stay for a set time;
and the oil removal controller sends an instruction to the oil removal conveying mechanism, conveys the support frame with the workpiece to the oil removal groove, stays for a set time, and then conveys the support frame to a specified position.
7. A station system for automated off-tank plating of cylinders according to claim 5, wherein: and the feeding and discharging conveying mechanism, the first conveying mechanism, the second conveying mechanism and the third conveying mechanism are all conveying travelling cranes.
8. A station system for automated off-tank plating of cylinders according to claim 7, wherein: and encoders for detecting the positions of the feeding and discharging conveying mechanism, the first conveying mechanism, the second conveying mechanism and the third conveying mechanism are arranged on the tracks.
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CN201911245285.4A CN110885998A (en) | 2019-12-06 | 2019-12-06 | Station system for automatic out-of-tank electroplating of cylinder body |
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CN201911245285.4A CN110885998A (en) | 2019-12-06 | 2019-12-06 | Station system for automatic out-of-tank electroplating of cylinder body |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111962134A (en) * | 2020-08-25 | 2020-11-20 | 惠州市鑫华美机械有限公司 | Electroplating production equipment with high safety performance |
CN112210815A (en) * | 2020-10-17 | 2021-01-12 | 刘虎 | Intelligent electroplating device for surface of metal pipe fitting |
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CN107696016A (en) * | 2017-10-27 | 2018-02-16 | 东莞市希锐自动化科技股份有限公司 | A kind of puma manipulator of intelligent surface process for producing system |
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CN103194786A (en) * | 2013-04-03 | 2013-07-10 | 无锡市星亿涂装环保设备有限公司 | Scheduling control method for traveling crane for electroplating on production line |
CN103422143A (en) * | 2013-08-01 | 2013-12-04 | 黄海 | Automatic electroplating production line |
CN104451845A (en) * | 2014-11-13 | 2015-03-25 | 深圳国宝造币有限公司 | Automatic film coating system and method for precious metal coins |
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CN112210815A (en) * | 2020-10-17 | 2021-01-12 | 刘虎 | Intelligent electroplating device for surface of metal pipe fitting |
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