CN221141913U - Polar plate mount and electroplating frock - Google Patents

Polar plate mount and electroplating frock Download PDF

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Publication number
CN221141913U
CN221141913U CN202322846477.9U CN202322846477U CN221141913U CN 221141913 U CN221141913 U CN 221141913U CN 202322846477 U CN202322846477 U CN 202322846477U CN 221141913 U CN221141913 U CN 221141913U
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China
Prior art keywords
plate
deformation
bottom plate
polar
conductive
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CN202322846477.9U
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Chinese (zh)
Inventor
戴军
罗银兵
顾正亚
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RoboTechnik Intelligent Technology Co Ltd
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RoboTechnik Intelligent Technology Co Ltd
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Priority to CN202322846477.9U priority Critical patent/CN221141913U/en
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Abstract

The utility model relates to a polar plate fixing frame and an electroplating tool, which comprises the following components: the base comprises a first bottom plate and a second bottom plate connected with the first bottom plate; the fixed subassembly, including with the fixed plate that the second bottom plate is connected, the fixed plate with first bottom plate is parallel, the fixed plate is connected with the first deformation board that stretches out to first bottom plate direction, first deformation board is connected with the second deformation board, the second deformation board with first bottom plate parallel arrangement, first deformation board with can crooked after the second deformation board receives pressure, the second deformation board with constitute the electrically conductive foot's of polar plate insertion space between the first bottom plate, the fixed plate is equipped with the screw hole, the screw hole axis with the second deformation board is crossing. The polar plate fixing frame and the electroplating tool can increase the attaching area of the polar plate and the conductive plate and improve the conductive efficiency.

Description

Polar plate mount and electroplating frock
Technical Field
The utility model relates to the technical field of electroplating, in particular to a polar plate fixing frame and an electroplating tool.
Background
In the copper electroplating process, the anode plate and the conductive plate coated with titanium and copper are fixed and attached. Currently, the fixing is realized through a pressing plate with a hinge structure, specifically, the anode plate and the conductive plate are stacked between the rotatable pressing plate and the fixing plate, and the end part of the pressing plate is connected with the fixing plate through a screw, so that the anode plate and the conductive plate are fixed. However, due to the fact that a certain included angle exists between the pressing plate and the anode plate, and the stress points are arranged at the end portions of the pressing plate, the anode plate and the conducting plate are stressed unevenly after being fixed, the stress on the portion, close to the screw, of the anode plate is larger, the portion, far away from the screw, of the anode plate is possibly tilted, the anode plate cannot be attached to the conducting plate, and therefore the conducting efficiency of the anode plate and the conducting plate is poor.
Disclosure of utility model
Therefore, the technical problem to be solved by the utility model is to provide the polar plate fixing frame and the electroplating tool, which can increase the bonding area of the polar plate and the conductive plate and improve the conductive efficiency.
In order to solve the technical problems, the utility model provides a polar plate fixing frame, which comprises: the base comprises a first bottom plate and a second bottom plate connected with the first bottom plate; the fixed subassembly, including with the fixed plate that the second bottom plate is connected, the fixed plate with first bottom plate is parallel, the fixed plate is connected with the first deformation board that stretches out to first bottom plate direction, first deformation board is connected with the second deformation board, the second deformation board with first bottom plate parallel arrangement, first deformation board with can crooked after the second deformation board receives pressure, the second deformation board with constitute the electrically conductive foot's of polar plate insertion space between the first bottom plate, the fixed plate is equipped with the screw hole, the screw hole axis with the second deformation board is crossing.
In one embodiment of the present utility model, an included angle between the first deformable plate and the second deformable plate is an obtuse angle.
In one embodiment of the utility model, the fixing plates are arranged in a plurality of same planes, and the fixing plates are not attached.
In one embodiment of the utility model, the first bottom plate is provided with a first through hole.
The utility model also provides an electroplating tool, which comprises the polar plate fixing frame.
In one embodiment of the utility model, the conductive plate is included, the conductive pin is attached to the conductive plate, and the conductive plate and the conductive pin are located between the second deformation plate and the first bottom plate.
In one embodiment of the utility model, the device further comprises a mounting frame, wherein the mounting frame comprises a first end plate and a second end plate, the second end plate is provided with a clamping groove for accommodating a polar plate, the polar plate is positioned between the first end plate and the second end plate, and an opening is arranged on the first end plate corresponding to the polar plate.
In one embodiment of the utility model, the second end plate is provided with a supporting foot extending towards the first end plate, and the first end plate abuts against the supporting foot.
In one embodiment of the utility model, a supporting plate is arranged between the polar plate and the first end plate, the supporting plate is provided with a plurality of second through holes, the first end plate is provided with a buckle extending towards the direction of the second end plate, and the buckle is clamped in the clamping groove.
In one embodiment of the present utility model, the mounting frames are provided in plurality, and the second end plates are connected by a connecting frame.
Compared with the prior art, the technical scheme of the utility model has the following advantages:
According to the polar plate fixing frame, the screws are abutted against the second deformation plates, so that the second deformation plates can be completely attached to the conductive pins, the conductive pins and the conductive plates are uniformly stressed, the attachment area is increased, and the conductive efficiency is improved. The first deformation plate and the second deformation plate can be bent and deformed, so that the second deformation plate can be suitable for the conductive feet with radians on the surfaces, and the polar plate fixing frame is wider in applicability. Through the setting of installing the frame, can provide support and protection to the polar plate. Through the setting of link, make a plurality of polar plates can be equidistant and more stable with the laminating of current conducting plate.
Drawings
In order that the utility model may be more readily understood, a more particular description of the utility model will be rendered by reference to specific embodiments thereof that are illustrated in the appended drawings, in which
FIG. 1 is a schematic view of a pole plate holder according to the present utility model;
FIG. 2 is a side view of FIG. 1;
FIG. 3 is a schematic structural view of an electroplating tool according to the present utility model;
FIG. 4 is a schematic view of a portion of the structure of FIG. 3;
FIG. 5 is a schematic view of a mounting frame structure;
fig. 6 is a schematic diagram of a connector mounting structure.
Description of the specification reference numerals: 1. polar plate fixing frame; 2. a conductive plate; 3. a mounting frame; 4. a polar plate; 5. a connecting frame; 11. a first base plate; 12. a second base plate; 13. a fixing plate; 14. a threaded hole; 15. a first deformable plate; 16. a second deformation plate; 17. a first through hole; 21. a conductive connection portion; 31. a support plate; 32. a first end plate; 33. a buckle; 34. an opening; 35. a second end plate; 36. a clamping groove; 37. supporting feet; 41. a first conductive sheet; 42. a second conductive sheet; 51. a first connection plate; 52. and a second connecting plate.
Detailed Description
The present utility model will be further described with reference to the accompanying drawings and specific examples, which are not intended to be limiting, so that those skilled in the art will better understand the utility model and practice it.
Example 1
Referring to fig. 1 and 2, a plate holder 1 of the present utility model includes: a base including a first base plate 11 and a second base plate 12 connected to the first base plate 11; the fixed subassembly, including with fixed plate 13 that second bottom plate 12 is connected, fixed plate 13 with first bottom plate 11 is parallel, fixed plate 13 is connected with the first deformation board 15 that stretches out to first bottom plate 11 direction, first deformation board 15 is connected with second deformation board 16, second deformation board 16 with first bottom plate 11 parallel arrangement, first deformation board 15 with second deformation board 16 receives the pressure after can crooked, second deformation board 16 with constitute the space of inserting of the conductive foot of polar plate 4 between the first bottom plate 11, fixed plate 13 is equipped with screw hole 14, the screw hole 14 axis with second deformation board 16 crossing.
According to the polar plate fixing frame 1 disclosed by the utility model, the conductive pins and the conductive plates 2 of the polar plates 4 are stacked between the second deformation plate 16 and the first bottom plate 11, so that only a small distance gap exists between the conductive pins and the second deformation plate 16, and then the screw is rotated towards the second deformation plate 16 through the threaded hole 14, so that the end parts of the screw are abutted against the second deformation plate 16, and the first deformation plate 15 and the second deformation plate 16 can deform under stress, so that the second deformation plate 16 is attached to the conductive pins after being subjected to the pressure of the screw. Compared with the fixing mode of a hinge structure, the polar plate fixing frame 1 provided by the utility model is propped against the second deformation plate 16 through the screws, so that the second deformation plate 16 can be completely attached to the conductive pins, further the conductive pins are uniformly stressed with the conductive plate 2, the conductive pins can be completely attached, the attaching area is increased, and the conductive efficiency is improved.
The base includes a first base plate 11 and a second base plate 12 connected to the first base plate 11. Specifically, the first bottom plate 11 is vertically connected to the second bottom plate 12, and the connection portion between the first bottom plate 11 and the second bottom plate 12 is arc-shaped. The first base plate 11 is provided with a plurality of first through holes 17, thereby reducing the overall weight of the plate holder 1.
The fixing assembly includes a fixing plate 13 connected to the second base plate 12. Specifically, the fixing plates 13 are parallel to the first bottom plate 11 and are vertically connected with the second bottom plate 12, the connection part between the fixing plates 13 and the second bottom plate 12 is arc-shaped, the fixing plates 13 are provided with a plurality of fixing plates and are located on the same plane, the fixing plates 13 are not attached, and preferably, the fixing plates 13 are parallel and equidistant along the edge position of the second bottom plate 12, which is far away from one side of the first bottom plate 11. The fixed plate 13 is connected with a first deformation plate 15 extending towards the direction of the first bottom plate 11, and the first deformation plate 15 is connected with a second deformation plate 16. Specifically, the thickness of the first deforming plate 15 and the second deforming plate 16 is smaller than that of the fixing plate 13, and a material with elastic deformation is adopted, so that the first deforming plate 15 and the second deforming plate 16 can bend after being pressed. The first deformation board 15 is connected with one side of the fixed plate 13, which is close to the first bottom plate 11, and the included angle between the first deformation board 15 and the second deformation board 16 is an obtuse angle, so that the first deformation board 15 can be prevented from blocking the screw to rotate towards the second deformation board 16. The fixing plate 13 is provided with a threaded hole 14, and the central axis of the threaded hole 14 is intersected with the second deformation plate 16, so that a screw which is screwed into the threaded hole 14 can be abutted against the second deformation plate 16. Preferably, the threaded holes 14 can be provided with a plurality of screws to make the screws prop against the second deformation plate 16, so that the second deformation plate 16 has higher fitting degree with the conductive pins, the stress is more uniform, and the conductive pins and the conductive plate 2 are more firmly fixed with the polar plate fixing frame 1. The second deformable plate 16 is disposed parallel to the first bottom plate 11, so that an insertion space for the conductive pins of the electrode plate 4 is formed between the second deformable plate 16 and the first bottom plate 11.
Example two
Referring to fig. 3, 4 and 5, the present embodiment provides an electroplating tool, which includes a pole plate fixing frame 1 in the first embodiment. The electroplating tooling further comprises a mounting frame 3, the mounting frame 3 comprises a first end plate 32 and a second end plate 35, the second end plate 35 is provided with a clamping groove 36 for accommodating the polar plate 4, the polar plate 4 is positioned between the first end plate 32 and the second end plate 35, and an opening 34 is arranged on the first end plate 32 corresponding to the polar plate 4. Specifically, a support plate 31 is further arranged between the polar plate 4 and the first end plate 32, the support plate 31 is attached to the polar plate 4, the support plate 31 is used for supporting the polar plate 4 and preventing the polar plate 4 from bending and deforming, a plurality of second through holes are formed in the support plate 31, and the polar plate 4 is communicated with the outside through the second through holes and the openings 34 in the first end plate 32, so that the polar plate 4 is in contact with a solution, and electroplating, electrolysis and other processes are realized. The second end plate 35 is provided with a supporting leg 37 extending toward the first end plate 32, and the supporting leg 37 is L-shaped as a whole and is attached to the pole plate 4, the first end plate 32 and one side of the supporting plate 31 near the pole plate fixing frame 1, thereby functioning as a supporting member. The polar plate 4 is positioned in the clamping groove 36 of the second end plate 35, and one side of the polar plate 4 close to the polar plate fixing frame 1 is attached to the bottom of the clamping groove 36. Preferably, an L-shaped fixing buckle can be disposed in the clamping groove 36, so that the pole plate 4 can be clamped between the fixing buckle and the bottom of the clamping groove 36, and further the fixing of the pole plate 4 is more stable. The conductive pin of the polar plate 4 passes through the bottom of the clamping groove 36 and extends out of the mounting frame 3, the conductive pin is L-shaped and comprises a first conductive sheet 41 and a second conductive sheet 42, the first conductive sheet 41 is connected with the polar plate main body and is positioned on the same plane with the polar plate main body, the second conductive sheet 42 is perpendicular to the first conductive sheet 41, and the second conductive sheet 42 is used for being attached to the conductive plate 2. The first end plate 32 is provided with a buckle 33 extending towards the direction of the second end plate 35, the buckle 33 is L-shaped, the end part of the buckle 33 extends into the clamping groove 36 from the top end of the clamping groove 36, and the supporting plate 31 is attached to the buckle 33, so that the supporting plate 31 is fixed.
The end of the conductive plate 2 is vertically provided with a conductive connection portion 21, and the end of the conductive connection portion 21 is provided with a connection hole for communicating with an external circuit.
Referring to fig. 6, when the mounting frame 3 is provided in plurality, the second end plates 35 are connected by the connection frame 5. Specifically, the connecting frame 5 includes a first connecting plate 51 and a second connecting plate 52, a plurality of equidistant second connecting plates 52 are vertically connected with the first connecting plate 51, and the second connecting plates 52 are detachably connected with the side walls of the second end plates 35 through screws, so that a plurality of mounting frames 3 are fixed at equal intervals.
During installation, firstly, a plurality of assembled installation frames 3 are sequentially fixed through the connecting frame 5, then the conductive plates 2 and the conductive pins are sequentially inserted between the second deformation plate 16 and the first bottom plate 11, the second conductive sheets 42 are stacked with the conductive plates 2, and only a small distance gap exists between the second conductive sheets 42 and the second deformation plate 16; then the screw is rotated to the direction of the second deformation plate 16 through the threaded hole 14, so that the end of the screw is propped against the second deformation plate 16, the second deformation plate 16 is attached to the conductive pin after being pressed by the screw, and the conductive pin is fixed and attached to the conductive plate 2.
According to the polar plate fixing frame and the electroplating tool, the screws are abutted against the second deformation plate 16, so that the second deformation plate 16 can be completely attached to the conductive pins, the conductive pins are uniformly stressed with the conductive plate 2, the attachment area can be increased, and the conductive efficiency is improved. Through the first deformation plate 15 and the second deformation plate 16, the second deformation plate 16 can be bent and deformed, so that the applicability of the polar plate fixing frame 1 is wider, and the second deformation plate 16 can be suitable for conductive feet with radians on the surfaces. By the arrangement of the mounting frame 3, support and protection can be provided for the pole plate 4. Through the setting of link 5, make a plurality of polar plates 4 can the equidistance and more stable laminating with current conducting plate 2.
It is apparent that the above examples are given by way of illustration only and are not limiting of the embodiments. Other variations and modifications of the present utility model will be apparent to those of ordinary skill in the art in light of the foregoing description. It is not necessary here nor is it exhaustive of all embodiments. And obvious variations or modifications thereof are contemplated as falling within the scope of the present utility model.

Claims (10)

1. A pole plate holder, comprising:
The base comprises a first bottom plate and a second bottom plate connected with the first bottom plate;
The fixed subassembly, including with the fixed plate that the second bottom plate is connected, the fixed plate with first bottom plate is parallel, the fixed plate is connected with the first deformation board that stretches out to first bottom plate direction, first deformation board is connected with the second deformation board, the second deformation board with first bottom plate parallel arrangement, first deformation board with can crooked after the second deformation board receives pressure, the second deformation board with constitute the electrically conductive foot's of polar plate insertion space between the first bottom plate, the fixed plate is equipped with the screw hole, the screw hole axis with the second deformation board is crossing.
2. The plate holder of claim 1, wherein: the included angle between the first deformation plate and the second deformation plate is an obtuse angle.
3. The plate holder of claim 1, wherein: the fixed plates are provided with a plurality of fixing plates and are positioned on the same plane, and the fixing plates are not attached to each other.
4. The plate holder of claim 1, wherein: the first bottom plate is provided with a first through hole.
5. An electroplating tool comprising the polar plate fixing frame according to any one of claims 1-4.
6. The electroplating tool of claim 5, wherein: the conductive plate is arranged in a fitting manner, and the conductive plate and the conductive pin are located between the second deformation plate and the first bottom plate.
7. The electroplating tool of claim 5, wherein: still include the installing frame, the installing frame includes first end plate and second end plate, the second end plate is equipped with the draw-in groove that is used for holding the polar plate, the polar plate is located first end plate with between the second end plate, correspond on the first end plate the polar plate position is equipped with the opening.
8. The electroplating tool of claim 7, wherein: the second end plate is provided with supporting feet extending towards the first end plate, and the first end plate abuts against the supporting feet.
9. The electroplating tool of claim 7, wherein: the pole plate and be equipped with the backup pad between the first end plate, the backup pad is equipped with a plurality of second through-holes, first end plate is equipped with the buckle that stretches out to second end plate direction, the buckle card is in the draw-in groove.
10. The electroplating tool of claim 7, wherein: the installation frame is provided with a plurality of second end plates which are connected through connecting frames.
CN202322846477.9U 2023-10-23 2023-10-23 Polar plate mount and electroplating frock Active CN221141913U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322846477.9U CN221141913U (en) 2023-10-23 2023-10-23 Polar plate mount and electroplating frock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322846477.9U CN221141913U (en) 2023-10-23 2023-10-23 Polar plate mount and electroplating frock

Publications (1)

Publication Number Publication Date
CN221141913U true CN221141913U (en) 2024-06-14

Family

ID=91383217

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322846477.9U Active CN221141913U (en) 2023-10-23 2023-10-23 Polar plate mount and electroplating frock

Country Status (1)

Country Link
CN (1) CN221141913U (en)

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