Electroplating tank with convenient addition of anode material
By designing an automated electroplating box structure, automatic addition of anode materials and circulation filtration of electrolyte in two rows of titanium basket electroplating boxes are realized, which solves the problems of difficulty in adding copper balls and waste of electrolyte in the existing technology, improves electroplating efficiency and reduces labor intensity.
Patent Information
- Application Number
- CN202210178312.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-25
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2042-02-25
AI Technical Summary
In existing electroplating equipment, adding copper balls is difficult, especially for electroplating boxes with two rows of titanium baskets. The labor intensity is high, the efficiency is low, and there is a risk of copper balls falling into the electroplating tank, resulting in serious waste of electrolyte.
An electroplating tank comprising an electroplating chamber, a feeding device, a circulation cylinder, a reflux tank, and a filtration and circulation device was designed. The anode material is automatically added through a feeding sliding mechanism and a titanium basket sliding mechanism, and the electrolyte is circulated, filtered, and reused through a filter pump assembly and an inclined surface, reducing manual labor intensity and electrolyte waste.
The automated addition of anode materials to two rows of titanium basket electroplating boxes is realized, which reduces manual labor intensity, improves electroplating efficiency, reduces electrolyte waste, and ensures electroplating quality.
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Figure CN114318475B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electroplating equipment, in particular to an electroplating tank facilitating the addition of anode materials. BACKGROUND
[0002] In the existing electroplating production equipment for circuit boards, due to the limitations of the structure and working properties of the electroplating equipment, the copper balls to be added are manually transported and added, which is labor-intensive, particularly laborious, requires a large number of workers, and consumes a large amount of production time.
[0003] To solve the above technical problems, a copper ball adding device for an electroplating tank is disclosed in Chinese Patent No. 201110063929.5, published on September 19, 2012, which is composed of a flying target square steel on the upper side of the electroplating tank and a copper ball adding vehicle. The copper ball adding vehicle is positioned on the flying target square steel on the bottom surface of the storage seat and is in sliding cooperation with the flying target square steel. The copper ball adding vehicle is used to replace manual transportation of copper balls, thereby reducing labor intensity and saving production time. The copper balls are placed on the copper ball adding vehicle and only need to be added into the electroplating tank, thereby avoiding the phenomenon of the whole package of copper balls falling into the electroplating tank due to manual transportation and addition.
[0004] However, according to the technical solution disclosed in the patent document, the copper ball adding device for the electroplating tank can only add copper balls to the horizontal electroplating tank or the vertical electroplating tank provided with only one row of titanium baskets. For the electroplating tank provided with titanium baskets on the upper side and the lower side of the workpiece, such as the titanium basket fastening device described in Application No. CN201820490408.5, the copper ball adding device cannot add copper balls to the titanium baskets on the lower side of the electroplating tank. SUMMARY
[0005] The present application provides an electroplating tank facilitating the addition of anode materials, which can facilitate the addition of anode materials to the horizontal electroplating tank provided with two rows of titanium baskets and can simultaneously circulate and filter the electrolyte in the electroplating tank to maintain the electroplating quality.
[0006] To achieve the above object, the technical scheme of the present application is: a plating tank with convenient anode material adding function, comprising a plating tank body and a feeding device arranged on the plating tank body, the plating tank body comprising a plating cylinder, a circulating cylinder arranged on the lower side of the plating cylinder, a reflux tank arranged on one side of the plating cylinder and located above the circulating cylinder, and a filtering circulating device; the filtering circulating device comprising a filtering pump assembly and a filtering tank for filtering electrolyte in the circulating cylinder and conveying the electrolyte into the plating cylinder; the plating cylinder is in communication with the circulating cylinder, the plating tank body is provided with a reflux port at the bottom of the reflux tank, and the reflux port is in communication with the circulating cylinder; a connecting port is arranged between the circulating cylinder and the filtering tank, and the filtering tank is connected to the filtering tank through the connecting port; an inclined surface extending downward from the other end of the circulating cylinder to the filtering tank is arranged on the bottom of the circulating cylinder, and the inclined surface extends to the connecting port.
[0007] A titanium basket body and a titanium basket sliding mechanism are arranged on the plating cylinder, the titanium basket body is slidably arranged in the plating cylinder through the titanium basket sliding mechanism, the plating cylinder is provided with a plurality of through holes for arranging the titanium basket body on the side wall close to the reflux tank, and the titanium basket sliding mechanism is arranged in the plating cylinder body.
[0008] The feeding device comprises a feeding cylinder and a feeding sliding mechanism, and the feeding cylinder is slidably arranged on the plating tank body through the feeding sliding mechanism.
[0009] When it is necessary to supplement the anode material in the electroplating tank, the electrolyte in the electroplating cylinder can be discharged, the feeding cylinder is moved to the side of the titanium basket body that needs to be supplemented with anode material through the feeding sliding mechanism, the titanium basket body is pulled out of the electroplating tank at one side of the reflux tank, and the titanium basket body is slid out of the through hole through the titanium basket sliding mechanism. At this time, the anode material is injected into the pulled-out titanium basket body through the feeding cylinder. In addition, even if the copper balls accidentally fly out of the titanium basket body during the process of adding the anode material copper balls, they will fall into the reflux tank and stay at the reflux port under the action of the reflux guide part, facilitating the recovery of the flying copper balls by the staff. In this way, the labor intensity of manual handling can be greatly reduced. After the feeding is completed, the electrolyte is re-injected into the electroplating cylinder. If there is electrolyte leakage between the titanium basket body and the through hole or electrolyte accumulation in the reflux tank at this time, the electrolyte in the reflux tank can enter the circulating cylinder through the reflux port under the guidance of the reflux guide part, and then the electrolyte in the circulating cylinder enters the filter tank through the connecting port, thereby solving the problems of electrolyte dripping when the titanium basket body is pulled out or electrolyte leakage or accumulation between the titanium basket body and the through hole when the electroplating tank is working. In this way, the anode material can be conveniently added to the two rows of titanium basket bodies, the electrolyte outside the electroplating tank can also be recovered and filtered for reuse, and the production cost is reduced. In addition, the electrolyte in the electroplating tank and the reflux tank can enter the circulating cylinder, and the electrolyte and impurities in the circulating cylinder enter the filter tank through the connecting port under the action of the filter pump assembly and the inclined surface at the bottom of the circulating cylinder. The electrolyte in the filter tank is re-delivered into the electroplating tank through the filter pump assembly, so that the impurities in the electrolyte re-entering the electroplating tank are at a low level, thereby ensuring that the electroplating efficiency is at a high level and preventing excessive impurities from affecting the electroplating quality.
[0010] Further, the feeding sliding mechanism includes a feeding limiting groove and a feeding sliding piece. The feeding sliding piece is connected with the feeding cylinder and is slidingly arranged in the feeding limiting groove. The feeding limiting groove is arranged on the electroplating tank body. When the feeding cylinder slides along the feeding limiting groove through the feeding sliding piece, the feeding limiting groove can limit the feeding cylinder to prevent the feeding cylinder from tilting or shaking.
[0011] Further, the filter pump assembly includes a filter assembly and an electric pump. The filter assembly is used for filtering the electrolyte in the circulating cylinder, and the electric pump is used for re-inputting the electrolyte filtered by the filter pump assembly into the electroplating cylinder. In this way, the utilization rate of the electroplating liquid can be improved, and the production cost can be reduced. At the same time, the impurity content of the electroplating liquid in the electroplating cylinder is reduced, and the electroplating efficiency of the electroplated part is prevented from being affected and reduced by impurities.
[0012] Further, the electroplating cylinder is provided with a locking mechanism for locking the titanium basket body on the side close to the reflux tank. In this way, the titanium basket body is convenient to take out and lock.
[0013] Further, the through hole and the titanium basket body are provided with a sealing element, the sealing element is provided corresponding to the inner side wall of the through hole and extends away from the electroplating tank; in this way, the sealing property between the titanium basket body and the through hole can be improved, preventing or reducing liquid leakage between the titanium basket body and the through hole.
[0014] Further, the titanium basket sliding mechanism comprises a guide rail and a plurality of equidistantly arranged guide wheels, when the titanium basket body is dragged, the titanium basket body slides along the length direction of the guide rail through the action of the guide wheels.
[0015] Further, the feeding device further comprises a feeding support, the feeding cylinder is fixedly connected with the feeding support, one end of the feeding sliding mechanism is arranged on the electroplating tank body, and the other end of the feeding sliding mechanism is connected with the feeding support.
[0016] Further, the electroplating tank is further provided with a water jet for strengthening the electroplating effect, the water jet sprays the electrolyte on the electroplated workpiece in the form of a jet through pressurization; thereby strengthening the electroplating effect.
[0017] Further, the feeding driving device is further arranged, the feeding driving device comprises a driving mechanism and a transmission member, the transmission member is driven by the feeding driving device, and the feeding cylinder is driven to slide along the feeding sliding mechanism; in this way, the feeding device can be moved by the feeding driving device, and the labor intensity of workers is further reduced.
[0018] Further, the bottom of the titanium basket body is provided with a feeding guide part, the feeding guide part is gradually inclined upward from the end away from the reflux groove to the end close to the reflux groove; the above arrangement can improve the feeding efficiency and reduce the labor intensity of workers when the copper ball material needs to be added, the copper ball in the titanium basket body can roll to the end away from the reflux groove under the guidance of the feeding guide part. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a cross-sectional structure diagram of the present application.
[0020] Figure 2 It is a front view structure diagram of the electroplating tank in the present application.
[0021] Figure 3 It is Figure 1 It is a local enlarged diagram of A in the present application.
[0022] Figure 4 It is Figure 2 It is a local enlarged diagram of B in the present application.
[0023] Figure 5 It is a structure diagram of one embodiment of the feeding driving device in the present application.
[0024] Figure 6 Schematic diagram of the structure of another embodiment of the titanium basket body of the present invention.
[0025] Figure numerals: 1. electroplating box; 2. electroplating cylinder; 21. titanium basket body; 211. end; 212. accommodating portion; 213. feeding guide portion; 22. titanium basket sliding mechanism; 221. guide rail; 222. guide wheel; 231. rotating portion; 232. fixing portion; 233. inclined surface; 24. seal; 25. water jet; 3. circulation cylinder; 31. inclined surface; 4. reflux groove; 41. reflux port; 42. reflux guide portion; 5. filter pump assembly; 51. filter box; 510. connecting port; 52. infusion tube; 6. electroplating workpiece; 7. fixture; 8. feeding device; 81. feeding barrel; 82. feeding bracket; 83. feeding sliding mechanism; 831. feeding limit groove; 832. feeding sliding member; 841. driving mechanism; 842. transmission member. DETAILED DESCRIPTION
[0026] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0027] like Figures 1-6 As shown, an electroplating box for conveniently adding anode materials includes an electroplating box body 1 and a feeding device 8 arranged on the electroplating box body 1.
[0028] The electroplating box 1 includes an electroplating cylinder 2, a circulation cylinder 3 arranged on the lower side of the electroplating cylinder 2, a reflux tank 4 arranged on one side of the electroplating cylinder 2 and located above the circulation cylinder 3, and a filtering circulation device; the filtering circulation device includes a filtering pump assembly 5 and a filter box 51 for filtering the electrolyte in the circulation cylinder 3 and transporting it to the electroplating cylinder 2; the electroplating cylinder 2 is connected to the circulation cylinder 3, and the electroplating box 1 is provided with a reflux port 41 at the bottom of the reflux tank 4, and the reflux port 41 is connected to the circulation cylinder 3; a connecting port 510 is provided between the circulation cylinder 3 and the filter box 51, and the filter box 51 is connected to the filter box 51 through the connecting port 510; an inclined surface 31 is provided on the bottom of the circulation cylinder 3, which extends downward from the other end of the circulation cylinder 3 to the filter box 51, and the inclined surface 31 extends to the connecting port 510.
[0029] A fixture 7 for clamping the electroplating workpiece 6 is provided in the electroplating cylinder 2 .
[0030] The filter pump assembly 5 comprises a filter assembly (not shown in the figure) and an electric pump (not shown in the figure), the filter assembly is arranged in the electric pump, and both the filter assembly and the electric pump are prior arts. The filter assembly is used for filtering the electrolyte in the filter box 51, and the electric pump is used for inputting the electrolyte filtered by the filter pump assembly 5 into the electroplating tank 2 again. In the embodiment, the filter pump assembly 5 further comprises a transfusion pipe 52, one end of the filter pump assembly 5 is arranged in the filter box 51, and the other end of the filter pump assembly 5 is connected to the transfusion pipe 52. The transfusion pipe 52 is communicated with the electroplating tank 2 at the end away from the filter pump assembly 5. The electrolyte extracted by the electric pump is filtered by the filter assembly and then output from the transfusion pipe 52 to the electroplating tank 2 under the action of the electric pump. In this way, the utilization rate of the electroplating solution can be improved, the production cost can be reduced, the impurity content in the electroplating solution in the electroplating tank 2 can be reduced, and the electroplating efficiency of the electroplated part can be prevented from being reduced due to the influence of impurities.
[0031] The electroplating tank 2 is provided with a titanium basket body 21 and a titanium basket sliding mechanism 22, the titanium basket body 21 is arranged in the electroplating tank 2 through the titanium basket sliding mechanism 22, the electroplating tank 2 is provided with a plurality of through holes for arranging the titanium basket body 21 on one side wall close to the reflux tank 4, and the titanium basket sliding mechanism 22 is arranged in the electroplating tank 2.
[0032] The titanium basket body 21 comprises an end portion 211 and a containing portion 212 for placing an anode material, the end portion 211 is fixedly connected with the containing portion 212, the end portion 211 is arranged corresponding to the through hole, and when the titanium basket body 21 is arranged in the electroplating tank 2, the end portion 211 is clamped on the side of the electroplating tank 2 close to the reflux tank 4.
[0033] The feeding device 8 comprises a feeding cylinder 81, a feeding support 82 and a feeding sliding mechanism 83, the feeding cylinder 81 is fixedly connected with the feeding support 82, one end of the feeding sliding mechanism 83 is arranged on the electroplating tank body 1, and the other end of the feeding sliding mechanism 83 is connected with the feeding support 82.
[0034] The feeding cylinder 81 comprises a containing cylinder and a hopper, both ends of the containing cylinder are provided with openings, the hopper is arranged corresponding to the opening of the containing cylinder at the side with a larger opening, and the side with the larger opening of the hopper is connected with the opening of the containing cylinder. The feeding sliding mechanism 83 comprises a feeding limiting groove 831 and a feeding sliding piece 832, the feeding sliding piece 832 is connected with the feeding support, the feeding sliding piece 832 is arranged in the feeding limiting groove 831 in a sliding mode, and the feeding limiting groove 831 is arranged on the electroplating tank body 1. When the feeding cylinder 81 slides along the feeding limiting groove 831 through the feeding sliding piece 832, the feeding limiting groove 831 can limit the feeding cylinder 81, so that the inclination or shaking of the feeding cylinder 81 is prevented.
[0035] In another embodiment, the bottom of the titanium basket body 21 is provided with a feeding guide 213, which in this embodiment is an inclined surface gradually inclined upward from the end away from the reflux tank 4 to the end close to the reflux tank 4; with the above arrangement, when it is necessary to add copper ball materials, the worker only needs to pull out the titanium basket body 21 below the feeding cylinder 81 to perform feeding, and the copper balls entering the titanium basket body 21 can roll away from the end of the reflux tank under the guiding action of the feeding guide 213, which can improve the efficiency of feeding and reduce the labor intensity of workers.
[0036] In this embodiment, the reflux tank 4 is provided with a switchable door structure (not shown in the figure) on the side wall away from the electroplating tank 2, which is a door structure that can be opened by rotating away from the electroplating tank 2; in this way, when it is necessary to use the feeding device 8 to add materials, the door structure on the reflux tank 4 can be opened, and the titanium basket body 21 can be pulled out of the electroplating tank 2 to facilitate feeding; after the feeding is completed, the door structure can be closed to prevent the electrolyte from splashing out of the electroplating tank body 1.
[0037] The feeding limiting groove 831 is provided with two, which are fixedly connected with the feeding support 82 on both sides of the feeding cylinder 81, one feeding limiting groove 831 is installed on the top of the electroplating tank 2 and located on the side close to the reflux tank 4; the other feeding limiting groove 831 is installed on the top of the side wall of the reflux tank 4.
[0038] The feeding limiting groove 831 is a T-shaped groove, and the feeding limiting groove 831 limits the feeding sliding member 832 to stably slide the feeding cylinder 81.
[0039] The electroplating tank 2 is provided with a locking mechanism for locking the titanium basket body 21 on the side close to the reflux tank 4; in this embodiment, the locking mechanism includes a rotating part 231 and a fixed part 232, the rotating part 231 is rotationally arranged on the end of the titanium basket body 21 close to the reflux tank 4, and the fixed part 232 is fixedly arranged on the side wall of the electroplating tank 2 close to the reflux tank 4; when it is necessary to lock the titanium basket body 21, the rotating part 231 is rotated and clamped on the fixed part 232 to lock the titanium basket body 21; in this way, the titanium basket body 21 is convenient to take out and lock.
[0040] In this embodiment, the fixed part 232 is provided with an inclined surface 233, which is gradually inclined upward corresponding to the direction of rotation of the rotating part 231, and the friction between the fixed part 232 and the rotating part 231 increases as the rotating part 231 rotates.
[0041] A sealing member 24 is arranged between the through hole and the titanium basket body 21, the sealing member 24 is arranged corresponding to the inner side wall of the through hole and extends away from the electroplating tank 2; wherein the sealing member 24 is a sealing ring, so that the sealing property between the titanium basket body 21 and the through hole can be improved, and the liquid leakage between the titanium basket body 21 and the through hole can be prevented or reduced.
[0042] The titanium basket sliding mechanism 22 includes a guide rail 221 and a plurality of equidistantly arranged guide wheels 222, when the titanium basket body 21 is dragged, the titanium basket body 21 slides along the length direction of the guide rail 221 through the action of the guide wheels 222; in this embodiment, the guide rail 221 is fixedly connected at one end to one side of the through hole, and the guide wheels 222 are equidistantly arranged on the guide rail 221; two slide rails are arranged on each side of the through hole; the titanium basket sliding mechanism 22 is made of anticorrosive material such as titanium.
[0043] Wherein, Figure 1 Only one side of the titanium basket sliding mechanism 22 is shown in the figure;
[0044] The electroplating tank 2 is also provided with a water jet 25 for strengthening the electroplating effect, the water jet 25 sprays the electrolyte in the form of jet to the electroplated workpiece 6 through pressurization, so as to strengthen the electroplating effect.
[0045] The feeding device 8 further includes a feeding driving device for driving the feeding device 8 to slide, the feeding driving device includes a driving mechanism 841 and a transmission member 842, the transmission member 842 is driven by the feeding driving device to drive the feeding cylinder 81 to slide along the feeding sliding frame; in this way, the feeding device 8 can be moved by the feeding driving device, and the labor intensity of manual work is further reduced.
[0046] As Figure 5 shown, in an embodiment, the driving mechanism 841 is a motor, and the transmission member 842 is a chain, the chain is fixedly connected with the feeding device 8, the chain is driven by the motor to drive the feeding cylinder 81 to slide in the feeding limiting slot 831.
[0047] In another embodiment, the driving mechanism 841 can also be a rodless cylinder, the rodless cylinder is fixedly connected with the feeding support 82 through the transmission member 842, and the feeding cylinder 81 is driven by the rodless cylinder to slide in the feeding limiting slot 831.
[0048] The working principle of the present application is as follows: when it is necessary to supplement the anode material in the electroplating tank 1, the electrolyte in the electroplating cylinder 2 can be discharged, the feeding device 8 is driven to move by the feeding driving device, the feeding sliding piece 832 slides along the feeding limiting groove 831, so that the feeding cylinder 81 is moved to the side of the titanium basket body 21 which needs to be supplemented with anode material through the feeding sliding mechanism 83, the titanium basket body 21 is pulled out of the electroplating tank at one side of the reflux tank 4, and the titanium basket body 21 slides out of the through hole through the titanium basket sliding mechanism 22, at this time, the anode material is injected into the pulled-out titanium basket body 21 through the feeding cylinder 81; in addition, even if the copper ball accidentally flies out of the titanium basket body 21 during the process of adding the anode material copper ball, it will also fall into the reflux tank 4 and stay at the reflux port 41 under the action of the reflux guide portion 42, so as to facilitate the worker to recover the flying copper ball; in this way, the labor intensity of manual carrying can be greatly reduced; after the feeding is completed, the electrolyte is injected into the electroplating cylinder 2 again, if there is electrolyte leakage between the titanium basket body 21 and the through hole or electrolyte accumulation in the reflux tank 4 at this time, the electrolyte in the reflux tank 4 can enter the circulating cylinder 3 through the reflux port under the guiding action of the reflux guide portion 42, and then the electrolyte in the circulating cylinder 3 enters the filter box 51 through the connecting port 510, so as to solve the problems of electrolyte dripping when the titanium basket body 21 is pulled out, or electrolyte leakage or accumulation between the titanium basket body 21 and the through hole when the electroplating tank 2 is working, in this way, the anode material can be conveniently added to the two rows of titanium basket bodies 21, at the same time, the electrolyte outside the electroplating tank 21 can also be recovered, filtered and reused, thereby reducing the production cost; in addition, the electrolyte in the electroplating tank 21 and the reflux tank 4 can enter the circulating cylinder 3, the electrolyte and impurities in the circulating cylinder 3 enter the filter box 51 through the connecting port 510 under the action of the filter pump assembly 5 and the inclined surface at the bottom of the circulating cylinder 3, the electrolyte in the filter box 51 is re-transported into the electroplating tank 2 through the filter pump assembly 5, so that the impurities in the electrolyte re-entering the electroplating tank 2 are at a relatively low level, so as to ensure that the electroplating efficiency is at a relatively high level, and prevent too many impurities from affecting the electroplating quality.
Claims
1. An electroplating tank for facilitating the addition of an anode material, comprising an electroplating tank body and a charging device provided on the electroplating tank body, characterized in that: The electroplating box body comprises an electroplating cylinder, a circulating cylinder arranged at the lower side of the electroplating cylinder, a reflux tank arranged at one side of the electroplating cylinder and above the circulating cylinder, and a filtering circulating device; the filtering circulating device comprises a filtering pump assembly and a filtering box for filtering and conveying electrolyte in the circulating cylinder into the electroplating cylinder; the electroplating cylinder is in communication with the circulating cylinder, the electroplating box body is provided with a reflux port at the bottom of the reflux tank, the reflux port is in communication with the circulating cylinder, the bottom of the reflux tank is provided with a reflux guide portion gradually inclined downward to the reflux port; a connecting port is arranged between the circulating cylinder and the filtering box, and the filtering box is connected to the filtering box through the connecting port; an inclined surface is arranged on the bottom of the circulating cylinder and extends downward from the other end of the circulating cylinder to the filtering box; and the inclined surface extends to the connecting port. A titanium basket body and a titanium basket sliding mechanism are arranged on the electroplating cylinder, and the titanium basket body is slidingly arranged in the electroplating cylinder through the titanium basket sliding mechanism; a plurality of through holes for arranging the titanium basket body are arranged on the side wall of the electroplating cylinder close to the reflux tank; and the titanium basket sliding mechanism is arranged in the electroplating cylinder body. The feeding device comprises a feeding cylinder and a feeding sliding mechanism, and the feeding cylinder is slidingly arranged on the electroplating box body through the feeding sliding mechanism. The electroplating cylinder is provided with a locking mechanism for locking the titanium basket body on the side close to the reflux tank; a sealing element is arranged between the through hole and the titanium basket body, and the sealing element is arranged to extend away from the electroplating cylinder corresponding to the inner side wall of the through hole.
2. The electroplating cell for facilitating the addition of anode material according to claim 1, wherein: The feeding sliding mechanism comprises a feeding limiting groove and a feeding sliding piece, the feeding sliding piece is connected with the feeding cylinder, and the feeding sliding piece is slidingly arranged in the feeding limiting groove, and the feeding limiting groove is arranged on the electroplating box body.
3. The electroplating cell for convenient addition of anode material according to claim 1, wherein: The pump assembly comprises a filtering assembly and an electric pump, the filtering assembly is used for filtering electrolyte in the circulating cylinder, and the electric pump is used for inputting the electrolyte filtered by the pump assembly into the electroplating cylinder.
4. The electroplating cell for convenient addition of anode material according to claim 1, wherein: The titanium basket sliding mechanism comprises a guide rail and a plurality of equidistantly arranged guide wheels, when the titanium basket body is dragged, the titanium basket body slides along the length direction of the guide rail through the action of the guide wheels.
5. The electroplating cell for convenient addition of anode material according to claim 1, wherein: The feeding device further comprises a feeding support, the feeding cylinder is fixedly connected with the feeding support, one end of the feeding sliding mechanism is arranged on the electroplating box body, and the other end of the feeding sliding mechanism is connected with the feeding support.
6. The electroplating cell for convenient addition of anode material according to claim 1, wherein: The electroplating cylinder is further provided with a water jet for strengthening the electroplating effect, the water jet sprays electrolyte in the form of jet flow onto the electroplated workpiece through pressurization.
7. The electroplating cell for convenient addition of anode material according to claim 1, wherein: The feeding driving device further comprises a driving mechanism and a transmission piece, the transmission piece is driven by the feeding driving device to drive the feeding cylinder to slide along the feeding sliding mechanism.
8. The electroplating cell for convenient addition of anode material according to claim 1, wherein: The bottom of the titanium basket body is provided with a feeding guide portion, and the feeding guide portion is gradually inclined upward from the end away from the reflux tank to the end close to the reflux tank.
Citation Information
Patent Citations
Copper ball feeding device for plating tank
CN102677136A
Titanium basket fastener
CN208201161U
Electroplating box convenient for adding anode material
CN216738597U