Electroplating equipment

By designing an electroplating device including a frame, a drive piece and an electroplating vibration disk, the elastic parts and vibration mechanism are used to make the electroplating product fully flip and move in the electroplating device, the problems of uneven current and uneven film thickness caused by the accumulation of electroplating products in the existing electroplating equipment are solved, and the electroplating efficiency and pass rate are improved.

CN114108059BActive Publication Date: 2025-05-23SHEN ZHEN TOP LINK TECH CO LTD
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Patent Information

Application Number
CN202111345190.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-12
Publication Date
2025-05-23
Estimated Expiration
2041-11-12

AI Technical Summary

Technical Problem

The existing electroplating equipment has accumulated due to the gravity of the product, resulting in uneven current, uneven film thickness, low efficiency and low pass rate.

Method used

An electroplating device is designed, including a frame, a drive member and an electroplating vibration disk. An elastic member is provided between the drive member and the frame. The drive member drives the electroplating vibration coil to vibrate axially, causing the electroplating product to rotate and vibrate in the accommodating groove. Combined with the up and down movement of the drive member, it drives the electroplating product to be moved in the horizontal and height directions.

Benefits of technology

Through rotational vibration and up and down movement, the plating product to be fully flipped and moved, improving the plating efficiency and film thickness uniformity, thereby improving the plating pass rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention proposes an electroplating device. The electroplating device includes a frame, a driving member and an electroplating vibration plate. The driving member is arranged on the frame. An elastic member is arranged between the driving member and the frame. The two ends of the elastic member are respectively connected to the driving member and the frame. The elastic member is arranged along the height direction of the frame so that the elastic member can be elastically deformed along the height direction; the electroplating vibration plate is arranged below the driving member. The electroplating vibration plate is provided with a receiving groove. The receiving groove is used to hold the product to be electroplated. The axial direction of the electroplating vibration plate is arranged along the height direction of the frame. The driving member is used to drive the electroplating vibration plate to vibrate around its axial direction so that the product to be electroplated in the electroplating vibration plate can rotate and vibrate around its axial direction. The electroplating device of the present invention can improve the electroplating efficiency and the electroplating pass rate of the product to be electroplated.
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Description

Technical Field

[0001] The present invention relates to the technical field of electroplating, and in particular to an electroplating device. Background Art

[0002] At present, when existing electroplating equipment is electroplating products, the products will pile up together due to their own gravity. The product accumulation will cause some products to be far away from the electroplating anode, which will lead to different currents received by the products, resulting in uneven film thickness of the electroplated products, low electroplating efficiency, and low pass rate of electroplated products. Summary of the invention

[0003] The main purpose of the present invention is to provide an electroplating device, aiming to improve the electroplating efficiency and the electroplating qualification rate of the product to be electroplated.

[0004] To achieve the above object, the present invention provides an electroplating device, which comprises:

[0005] frame;

[0006] A driving member is disposed on the frame, an elastic member is disposed between the driving member and the frame, two ends of the elastic member are respectively connected to the driving member and the frame, and the elastic member is disposed along the height direction of the frame so that the elastic member can be elastically deformed along the height direction; and

[0007] The electroplating vibration plate is arranged below the driving member, and the electroplating vibration plate is provided with a receiving groove, and the receiving groove is used to hold the product to be electroplated. The axial direction of the electroplating vibration plate is arranged along the height direction of the frame, and the driving member is used to drive the electroplating vibration plate to vibrate around its axial direction, so that the product to be electroplated in the electroplating vibration plate can rotate and vibrate around its axial direction.

[0008] In one embodiment, the driving member includes a housing and a vibration motor, the vibration motor is arranged in the housing, the outer wall of the housing is provided with a first mounting portion, the peripheral side of the frame is provided with a second mounting portion, the upper end of the elastic member is detachably connected to the first mounting portion, and the lower end of the elastic member is detachably connected to the second mounting portion.

[0009] In one embodiment, there are multiple second mounting parts, and the multiple second mounting parts are arranged in sequence along the circumference of the frame; there are multiple first mounting parts, and each first mounting part is arranged in a one-to-one correspondence with each second mounting part.

[0010] In one embodiment, the elastic member is a spring, the upper end of the spring is connected to the first mounting portion via a bolt structure, and the lower end of the spring is connected to the second mounting portion via a bolt structure.

[0011] In one embodiment, the electroplating vibration plate includes a cylinder, a connecting rod and a vibration plate, the cylinder is provided with an opening on one side facing the vibration plate, the cylinder is hollow to form the accommodating groove, one end of the connecting rod extends from the opening and is connected to the inner wall of the cylinder, the other end of the connecting rod is arranged outside the cylinder and connected to the vibration plate, and the driving member is used to drive the vibration plate to vibrate.

[0012] In one embodiment, an inner side wall of the cylinder is provided with an annular track, and the annular track is spirally arranged along the inner side wall of the cylinder.

[0013] In one embodiment, the width of the annular track is gradually reduced from an end close to the opening to an end away from the opening.

[0014] In one embodiment, the depth of the cylinder is L1, the minimum distance between the annular track and the opening is L2, and the ratio of L2 to L1 is not less than 1 / 4 and not more than 1 / 2.

[0015] In one embodiment, a plurality of conductive nails are disposed at intervals in sequence at the bottom of the inner wall of the cylinder, and the conductive nails are detachably connected to the cylinder.

[0016] In one embodiment, a drainage filter is provided at the bottom of the inner wall of the cylinder, and the drainage filter is detachably connected to the cylinder. A plurality of mesh holes are provided on the drainage filter, and the plurality of mesh holes constitute a drainage outlet.

[0017] The electroplating device of the present invention is provided with a frame, a driving member and an electroplating vibration plate. The driving member is arranged on the frame, an elastic member is arranged between the driving member and the frame, two ends of the elastic member are respectively connected to the driving member and the frame, and the elastic member is arranged along the height direction of the frame so that the elastic member can be elastically deformed in the height direction, thereby enabling the driving member to move up and down in the height direction of the frame with the deformation of the elastic member; the electroplating vibration plate is arranged below the driving member, the electroplating vibration plate is provided with a accommodating groove, the accommodating groove is used to hold the product to be electroplated, the axial direction of the electroplating vibration plate is arranged along the height direction of the frame, and the driving member is used to drive the electroplating vibration plate to vibrate around its axial direction, so that the product to be electroplated in the electroplating vibration plate can vibrate around Its axial rotational vibration is arranged in this way, when the driving member drives the electroplating vibration plate to vibrate, the products to be electroplated can rotate and vibrate around the axial direction of the electroplating vibration plate in the receiving groove, so that the products to be electroplated piled up in the receiving groove can move in the horizontal direction. Combined with the driving member being able to move up and down in the height direction, the driving member can drive the electroplating vibration plate to vibrate and at the same time drive the products to be electroplated to move in the up and down directions, that is, the products to be electroplated can move in the horizontal direction and the height direction, and the piled products to be electroplated can be turned over and moved in the receiving groove. The turned over and moved products to be electroplated are conducive to improving the electroplating efficiency and improving the uniformity of the electroplating thickness, thereby improving the electroplating pass rate of the products to be electroplated. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying creative work.

[0019] Figure 1 It is a structural schematic diagram of an embodiment of an electroplating device of the present invention;

[0020] Figure 2 for Figure 1 Schematic diagram of some structures in ;

[0021] Figure 3 for Figure 2 Schematic diagram of some structures in ;

[0022] Figure 4 for Figure 1 A cross-sectional schematic diagram of the structure in;

[0023] Figure 5 for Figure 4 The enlarged view of point A in the middle;

[0024] Figure 6 for Figure 5 Schematic diagram of the structure of the electroplated vibration plate;

[0025] Figure 7 for Figure 6 Schematic cross-section of the structure.

[0026] Description of Figure Numbers:

[0027] Label name Label name 100 frame 420 link 110 Second installation part 430 Vibration plate 200 Drive parts 440 Circular track 210 shell 450 Conductive nails 211 First installation part 460 Drain filter 300 Elastic parts 500 Electroplating cylinder 400 Electroplating vibration plate 600 Base 410 Cylinder

[0028] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings in conjunction with the embodiments. DETAILED DESCRIPTION

[0029] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0030] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0031] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only used for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in the field to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0032] The invention provides an electroplating device.

[0033] See also Figures 1 to 5 In one embodiment of the electroplating device of the present invention, the electroplating device includes a frame 100, a driving member 200 and an electroplating vibration plate 400, the driving member 200 is arranged in the frame 100, an elastic member 300 is arranged between the driving member 200 and the frame 100, both ends of the elastic member 300 are respectively connected to the driving member 200 and the frame 100, the elastic member 300 is arranged along the height direction of the frame 100, so that the elastic member 300 can be elastically deformed along the height direction; the electroplating vibration plate 400 is arranged below the driving member 200, the electroplating vibration plate 400 is provided with a accommodating groove, the accommodating groove is used to hold the product to be electroplated, the axial direction of the electroplating vibration plate 400 is arranged along the height direction of the frame 100, and the driving member 200 is used to drive the electroplating vibration plate 400 to vibrate around its axial direction, so that the product to be electroplated in the electroplating vibration plate 400 can rotate and vibrate around its axial direction.

[0034] It is understandable that the electroplating device also includes an electroplating cylinder 500, which is used to hold the electroplating solution, and the electroplating vibration plate 400 is immersed in the electroplating solution, so that the electroplating device can electroplate the product to be electroplated in the electroplating vibration plate 400. The driving member 200 is installed on the frame 100, and the electroplating vibration plate 400 is arranged below the driving member 200 and connected to the driving member 200. The driving member 200 can drive the electroplating vibration plate 400 to vibrate around its axial direction, so that the product to be electroplated in the electroplating vibration plate 400 can rotate and vibrate, that is, the product to be electroplated can move horizontally. It is understandable that the driving member 200 can control the electroplating vibration plate 400 by setting different vibration frequencies and amplitudes, which are specifically set according to actual needs and are not limited here. The elastic member 300 is elastic, and the specific structure of the elastic member 300 is not limited, such as a spring, or an elastic block, or an elastic strip, as long as the elastic member 300 can recover after elastic deformation.

[0035] The electroplating device of the present invention is provided with a frame 100, a driving member 200 and an electroplating vibration plate 400. The driving member 200 is provided on the frame 100. An elastic member 300 is provided between the driving member 200 and the frame 100. The two ends of the elastic member 300 are respectively connected to the driving member 200 and the frame 100. The elastic member 300 is provided along the height direction of the frame 100 so that the elastic member 300 can be elastically deformed along the height direction, thereby enabling the driving member 200 to move up and down along the height direction of the frame 100 with the deformation of the elastic member 300; the electroplating vibration plate 400 is provided below the driving member 200. The electroplating vibration plate 400 is provided with a accommodating groove for accommodating products to be electroplated. The axial direction of the electroplating vibration plate 400 is provided along the height direction of the frame 100. The driving member 200 is used to drive the electroplating vibration plate 400. The disk 400 vibrates around its axial direction so that the products to be plated in the plating vibration disk 400 can rotate and vibrate around its axial direction. With this arrangement, when the driving member 200 drives the plating vibration disk 400 to vibrate, the products to be plated can rotate and vibrate around the axial direction of the plating vibration disk 400 in the receiving groove, so that the products to be plated piled up in the receiving groove can move in the horizontal direction. Combined with the driving member 200 being able to move up and down in the height direction, the driving member 200 can drive the plating vibration disk 400 to vibrate and at the same time drive the products to be plated to move in the up and down directions, that is, the products to be plated can move in the horizontal direction and the height direction, and the piled products to be plated can be flipped and moved in the receiving groove. The flipping and moving of the products to be plated is conducive to improving the electroplating efficiency and improving the uniformity of the electroplating thickness, thereby improving the electroplating pass rate of the products to be plated.

[0036] In one embodiment, the driving member 200 can also drive the electroplating vibration plate 400 to vibrate along its axial direction, so that the products to be plated in the electroplating vibration plate 400 can also vibrate up and down. When the electroplating vibration plate 400 vibrates up and down along its axial direction, an elastic member 300 is provided between the electroplating vibration plate 400 and the frame 100. The elastic member 300 can be elastically deformed with the up and down vibration of the electroplating vibration plate 400 and the gravity of the electroplating vibration plate 400, so that the driving member 200 drives the electroplating vibration plate 400 to vibrate up and down along its axial direction to increase the height, thereby increasing the up and down vibration height of the products to be plated in the electroplating vibration plate 400. Combined with the rotational vibration of the products to be plated in the horizontal direction, the products to be plated accumulated in the electroplating vibration plate 400 can be fully flipped and moved, so that the products to be plated can be fully contacted with the plating solution. Such a configuration is beneficial to improving the electroplating efficiency of the products to be plated and improving the uniformity of the electroplating thickness. It is understandable that the driving member 200 may be a vibrator, which can drive the electroplating vibration plate 400 to vibrate along its axial direction. Of course, it may also be other mechanisms, which are not specifically limited here.

[0037] See also Figure 2 and Figure 3 In one embodiment, the driving member 200 includes a housing 210 and a vibration motor (not shown), the vibration motor is disposed in the housing 210, the outer wall of the housing 210 is provided with a first mounting portion 211, the peripheral side of the frame 100 is provided with a second mounting portion 110, the upper end of the elastic member 300 is detachably connected to the first mounting portion 211, and the lower end of the elastic member 300 is detachably connected to the second mounting portion 110.

[0038] It can be understood that the vibration motor is connected to the electroplating vibration plate 400 to drive the electroplating vibration plate 400 to vibrate. The vibration motor is equipped with a set of adjustable eccentric blocks at both ends of the rotor shaft. The centrifugal force generated by the high-speed rotation of the shaft and the eccentric blocks is used to obtain the exciting force. The vibration frequency of the vibration motor can be set as needed, and is not specifically limited here.

[0039] Furthermore, the frame 100 is formed by enclosing a plurality of horizontal frames and a plurality of vertical frames, the frame 100 is hollow, and the driving member 200 is disposed in the frame 100. The electroplating device further includes a base 600, the electroplating cylinder 500 is disposed on the base 600, and the frame 100 is movably disposed on the base 600, for example, the frame 100 can be moved up and down and horizontally disposed on the base 600, so that the frame 100 can drive the driving member 200 to move, thereby driving the electroplating vibration plate 400 to move. When it is necessary to electroplate the product to be plated in the electroplating vibration plate 400, the frame 100 can be driven to move on the base 600, and the electroplating vibration plate 400 containing the product to be plated can be moved into the electroplating cylinder 500 to complete the electroplating of the product to be plated; when the electroplating of the product to be plated is completed, the frame 100 can be driven to move the electroplating vibration plate 400 out of the electroplating cylinder 500, so as to facilitate the removal of the electroplated product. The connection method between the electroplating vibration plate 400 and the vibration motor can be a snap-fit ​​connection, a bolt connection, or a magnetic connection, which is not specifically limited here. The frame 100 can achieve lifting and lowering movement through a lifting linear module, and achieve horizontal movement through a horizontal slide rail assembly.

[0040] In addition, the first mounting portion 211 is used to connect with the upper end of the elastic member 300, so that at least part of the driving member 200 is arranged above the frame 100, so that the gravity of the driving member 200 can act on the elastic member 300; and because at least part of the driving member 200 is arranged above the frame 100, the elastic member 300 can also provide a supporting force for the driving member 200, avoiding the situation where the driving member 200 is arranged below the frame 100 and the elastic member 300 is always in a stretched state, which is beneficial to improve the service life of the elastic member 300, and is also beneficial for the center of gravity of the driving member 200 and the frame 100 as a whole to be close to the center of the frame 100, so that the driving member 200 can be stably installed on the frame 100, thereby improving the reliability of the installation of the driving member 200. It is understandable that the upper end of the elastic member 300 can be connected to the first mounting portion 211 by a bolt structure or a snap-fit ​​structure, which is not specifically limited here; similarly, the lower end of the elastic member 300 can also be connected to the second mounting portion 110 by a bolt structure or a snap-fit ​​structure, which is not specifically limited here. The detachable connection between the elastic member 300 and the first mounting portion 211 and the second mounting portion 110 facilitates assembly and disassembly of the elastic member 300, which is conducive to improving installation efficiency.

[0041] See also Figure 2 and Figure 3In one embodiment, there are multiple second mounting parts 110, and multiple second mounting parts 110 are sequentially spaced along the circumference of the frame 100. There are multiple first mounting parts 211, and each first mounting part 211 is arranged one-to-one with each second mounting part 110. It can be understood that each first mounting part 211 is arranged corresponding to each second mounting part 110, and an elastic member 300 is arranged between the two. Multiple second mounting parts 110 correspond to multiple elastic members 300, and multiple elastic members 300 are sequentially spaced around the circumference of the housing 210 of the driving member 200, so that the elastic force of the elastic member 300 acting on the housing 210 is evenly distributed, and multiple elastic members 300 are conducive to dispersing the gravity of the driving member 200, so that the housing 210 can stably move in the up and down directions, thereby improving the stability of the electroplating vibration plate 400 moving along its axial direction.

[0042] In one embodiment, the elastic member 300 is a spring, the upper end of the spring is connected to the first mounting portion 211 by a bolt structure, and the lower end of the spring is connected to the second mounting portion 110 by a bolt structure. It is understandable that a first screw hole is formed at the upper end of the spring, and a second screw hole corresponding to the first screw hole is provided on the first mounting portion 211, and the screw is threadedly connected with the nut by passing the first screw hole and the second screw hole, so that the upper end of the spring is connected to the first mounting portion 211; similarly, a third screw hole is formed at the lower end of the spring, and a fourth screw hole corresponding to the third screw hole is provided on the second mounting portion 110, and the screw is threadedly connected with the nut by passing the third screw hole and the fourth screw hole, so that the lower end of the spring is connected to the second mounting portion 110. Such a configuration facilitates the connection, fixing and removal of the upper end of the spring and the first mounting portion 211, and the connection, fixing and removal of the lower end of the spring and the second mounting portion 110, thereby facilitating the installation and removal efficiency of the elastic member 300.

[0043] See also Figures 4 to 6In one embodiment, the electroplating vibration plate 400 includes a cylinder 410, a connecting rod 420 and a vibration plate 430. The cylinder 410 is provided with an opening on one side facing the vibration plate 430. The cylinder 410 is hollow to form the accommodating groove. One end of the connecting rod 420 extends from the opening and is connected to the inner wall of the cylinder 410. The other end of the connecting rod 420 is arranged outside the cylinder 410 and connected to the vibration plate 430. The driving member 200 is used to drive the vibration plate 430 to vibrate. It can be understood that the vibration plate 430 is used to connect with the driving member 200. The vibration plate 430 is provided with a connecting portion to facilitate the connection with the driving member 200. The specific connection method is not limited. One side of the opening of the cylinder 410 is used for placing and taking out the electroplated products. The connecting rod 420 forms the rotation axis of the electroplating vibration plate 400. The electroplated products can rotate and vibrate around the connecting rod 420. The electroplating vibration plate 400 has a simple structure and is easy to process and manufacture.

[0044] See also Figures 5 to 7 In one embodiment, the inner wall of the cylinder 410 is provided with an annular track 440, and the annular track 440 is arranged in a spiral shape along the inner wall of the cylinder 410. It can be understood that the spiral direction of the annular track 440 is the same as the direction of rotation and vibration of the electroplating vibration plate 400, and the annular track 440 is arranged around the inner wall of the cylinder 410 with the connecting rod 420 as the center. When the product to be electroplated rotates and vibrates around the connecting rod 420 in the cylinder 410, the spirally arranged annular track 440 can guide the product to be electroplated to perform circular motion; at the same time, due to the up and down vibration of the electroplating vibration plate 400, the vibration amplitude and range of the product to be electroplated in the cylinder 410 are larger, which is conducive to full contact with the electroplating solution, thereby facilitating the improvement of the electroplating efficiency of the product to be electroplated and the uniformity of the electroplating thickness.

[0045] In one embodiment, the width of the annular track 440 is gradually reduced from one end close to the opening to one end away from the opening. With such a configuration, when the products to be plated accumulated in the cylinder 410 rotate around the connecting rod 420, the products to be plated can move onto the annular track 440, and flip and fall out of the annular track 440 as the cylinder 410 rotates, so that the products to be plated can perform flipping movements multiple times when rotating around the connecting rod 420, which is conducive to the full contact between the products to be plated and the electroplating solution. By gradually reducing the width of the annular track 440 from one end close to the opening of the cylinder 410 to one end away from the opening, the frequency of flipping of the products to be plated is increased, so that the products to be plated are fully in contact with the electroplating solution and electroplating is uniform, which is conducive to improving the electroplating efficiency.

[0046] In one embodiment, the depth of the cylinder 410 is L1, the minimum distance between the annular track 440 and the opening is L2, and the ratio of L2 to L1 is not less than 1 / 4 and not greater than 1 / 2. It is understandable that the ratio of L2 to L1 can be 1 / 4, or 1 / 3, or 1 / 2, etc., which is not specifically limited here. By limiting the ratio of L2 to L1 to be no less than 1 / 4, the annular track 440 maintains a certain distance from the opening of the cylinder 410, so that when the products to be electroplated move on the annular track 440, they will not move outward from the opening due to being close to the opening of the cylinder 410; at the same time, by limiting the ratio of L2 to L1 to be no more than 1 / 2, the annular track 440 can at least guide and move half of the products to be electroplated in the cylinder 410, avoiding the situation where the annular track 440 is far from the opening and cannot guide and move most of the products to be electroplated; it can be seen that by limiting the ratio of L2 to L1 to be no less than 1 / 4 and no more than 1 / 2, the annular track 440 can fully guide the products to be electroplated, which is beneficial to improve the electroplating efficiency and the electroplating pass rate of the products to be electroplated.

[0047] See also Figures 5 to 7 In one embodiment, the bottom of the inner wall of the cylinder 410 is provided with a plurality of conductive nails 450 arranged in sequence and spaced apart, and the conductive nails 450 are detachably connected to the cylinder 410. It is understandable that the conductive nails 450 are used to connect to the cathode of the power supply, and the product to be electroplated in the cylinder 410 is in contact with the conductive nails 450. An anode block is provided in the electroplating cylinder 500, and the anode block is used to connect to the anode of the power supply. Through electrolysis, the cations of the pre-plated metal in the electroplating solution are deposited on the surface of the product to be electroplated, thereby achieving electroplating of the product to be electroplated. The plurality of conductive nails 450 are evenly distributed on the bottom of the inner wall of the cylinder 410, so that the product to be electroplated in the cylinder 410 can be evenly contacted with the conductive nails 450, which is beneficial to improving the electroplating effect of the product to be electroplated.

[0048] Furthermore, the conductive nail 450 and the cylinder 410 can be detachably connected via a threaded structure, or detachably connected via a snap-fit ​​structure, which is not specifically limited here. Such a configuration facilitates assembly and disassembly of the conductive nail 450 .

[0049] In one embodiment, the conductive nail 450 has an arc-shaped surface protruding toward one side of the opening, that is, the conductive nail 450 is formed with a convex portion, the convex portion faces the opening of the cylinder 410 and the outer surface is an arc surface. Such a configuration is beneficial to increase the surface area of ​​the conductive nail 450, and then increase the contact area with the product to be electroplated, which is beneficial to improve the electroplating efficiency and electroplating uniformity.

[0050] See also Figures 5 to 7In one embodiment, a drainage filter 460 is provided at the bottom of the inner wall of the barrel 410, and the drainage filter 460 is detachably connected to the barrel 410. The drainage filter 460 is provided with a plurality of meshes, and the plurality of meshes constitute a drainage port. It is understandable that the drainage filter 460 is used to exchange the electroplating liquid in the barrel 410 with the electroplating liquid outside it, and the electroplating liquid can leak outward from the drainage port formed by the plurality of meshes to promote the electroplating liquid in the electroplating cylinder 500 to enter the barrel 410 and form a circulation flow. The drainage filter 460 can be detachably connected to the barrel 410 through a threaded structure, or can be detachably connected through a snap-fit ​​structure, which is not specifically limited here. Such a configuration facilitates the assembly and replacement of the drainage filter 460, avoids the situation where the barrel 410 is scrapped and cannot be used due to the blockage of the drainage filter 460, and improves the applicability of the barrel 410.

[0051] In one embodiment, a filter cloth is provided on the drainage filter 460, and the filter cloth is detachably connected to the drainage filter 460, including but not limited to snap connection or bonding. The mesh number of the filter cloth can be adjusted according to the size of the product to be electroplated to prevent the product to be electroplated from leaking out. Since the mesh of the drainage filter 460 is precise, the mesh is easily clogged when the drainage filter 460 is worn. By providing the filter cloth, the direct collision and friction between the product to be electroplated and the drainage filter 460 is avoided, and the problem of mesh clogging caused by the wear of the drainage filter 460 is prevented, thereby improving the applicability of the electroplating device.

[0052] The above description is only a preferred embodiment of the present invention, and does not limit the patent scope of the present invention. All equivalent structural changes made by using the contents of the present invention specification and drawings under the inventive concept of the present invention, or directly / indirectly applied in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. An electroplating device, It is characterized in that The electroplating device comprises: frame; A driving member is disposed on the frame, an elastic member is disposed between the driving member and the frame, two ends of the elastic member are respectively connected to the driving member and the frame, and the elastic member is disposed along the height direction of the frame so that the elastic member can be elastically deformed along the height direction; and The electroplating vibration plate is arranged below the driving member, the electroplating vibration plate is provided with a containing groove, the containing groove is used to hold the products to be electroplated, the axial direction of the electroplating vibration plate is arranged along the height direction of the frame, and the driving member is used to drive the electroplating vibration plate to vibrate around its axial direction, so that the products to be electroplated in the electroplating vibration plate can rotate and vibrate around its axial direction; the electroplating vibration plate comprises a cylinder, a connecting rod and a vibration plate, the cylinder is provided with an opening on a side facing the vibration plate, the cylinder is hollow to form the containing groove, one end of the connecting rod extends from the opening and is connected to the inner wall of the cylinder, the other end of the connecting rod is arranged outside the cylinder and connected to the vibration plate, and the driving member is used to drive the vibration plate to vibrate; the inner side wall of the cylinder is provided with an annular track, and the annular track is spirally arranged along the inner side wall of the cylinder; A base, on which the frame is movably arranged.

2. The electroplating device according to claim 1, It is characterized in that The driving member includes a shell and a vibration motor, the vibration motor is arranged in the shell, the outer wall of the shell is provided with a first mounting portion, the peripheral side of the frame is provided with a second mounting portion, the upper end of the elastic member is detachably connected to the first mounting portion, and the lower end of the elastic member is detachably connected to the second mounting portion.

3. The electroplating device according to claim 2, It is characterized in that There are multiple second mounting parts, and the multiple second mounting parts are arranged in sequence along the circumference of the frame. There are multiple first mounting parts, and each first mounting part is arranged in a one-to-one correspondence with each second mounting part.

4. The electroplating device according to claim 2, It is characterized in that The elastic member is a spring, the upper end of the spring is connected to the first mounting portion via a bolt structure, and the lower end of the spring is connected to the second mounting portion via a bolt structure.

5. The electroplating device according to claim 1, It is characterized in that The width of the annular track is gradually reduced from one end close to the opening to one end away from the opening.

6. The electroplating device according to claim 5, It is characterized in that The depth of the cylinder is L1, the minimum distance between the annular track and the opening is L2, and the ratio of L2 to L1 is not less than 1 / 4 and not more than 1 / 2.

7. The electroplating device according to claim 1, It is characterized in that A plurality of conductive nails are arranged at intervals in sequence at the bottom of the inner wall of the cylinder, and the conductive nails are detachably connected to the cylinder.

8. The electroplating device according to claim 1, It is characterized in that A drainage filter is provided at the bottom of the inner wall of the cylinder. The drainage filter is detachably connected to the cylinder. A plurality of mesh holes are provided on the drainage filter. The plurality of mesh holes constitute a drainage outlet.

Citation Information

Patent Citations

  • Electroplating equipment

    CN218860934U

  • Sheet type magnetic-parts vibration device for electroplating aluminium

    CN2890094Y