CN211546698U - Electroplate with electrically conductive structure of holding tightly - Google Patents

Electroplate with electrically conductive structure of holding tightly Download PDF

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Publication number
CN211546698U
CN211546698U CN201921801069.9U CN201921801069U CN211546698U CN 211546698 U CN211546698 U CN 211546698U CN 201921801069 U CN201921801069 U CN 201921801069U CN 211546698 U CN211546698 U CN 211546698U
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Prior art keywords
bolt
conductive
piece
electrically conductive
extension section
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CN201921801069.9U
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Inventor
潘晓敏
韩徐凯
吴跃
邱海波
李旭东
田光俭
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Haitian Plastics Machinery Group
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Haitian Plastics Machinery Group
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Abstract

The utility model relates to the field of electroplating equipment, and discloses an electric conduction holding structure for electroplating, which comprises a conduction piece and an electric conduction contact piece which are arranged from top to bottom at an opening part of a self-moving electric conduction end, wherein the electric conduction contact piece comprises an arc-shaped clamping block and matching blocks which vertically extend outwards from two ends of the clamping block, an elastic laminating mechanism is arranged between the opposite matching blocks, the elastic laminating mechanism comprises an adjusting rod which horizontally penetrates through the matching blocks, a limiting block which is arranged at two ends of the adjusting rod and a spring which is arranged on the adjusting rod and is used for driving the clamping block to be elastically adhered to an electric conduction core shaft, the adjusting rod which is close to the conduction piece comprises a first bolt and a second bolt which are respectively penetrated and matched with the matching blocks at two sides and then are connected with each other, and an adjusting mechanism which can adjust the axial length of the first bolt and the second bolt at the opening part of the, this electroplate with electrically conductive structure of holding tightly just can adjust fast in the removal end outside that electrically conducts, labour saving and time saving and security are high.

Description

Electroplate with electrically conductive structure of holding tightly
Technical Field
The utility model relates to an electroplating device field especially relates to an electroplate with electrically conductive structure of holding tightly.
Background
The existing horizontal plating device with double-end conductive ends is generally set as a fixed conductive end and a movable conductive end, the fixed conductive end is arranged outside a aqueduct and is driven by a motor, the other end of the fixed conductive end is a driven conductive end, the driven conductive end floats in the aqueduct and can move along the axial direction of the aqueduct, so that the horizontal plating device is suitable for plating of workpieces with different lengths, a conductive mandrel A and a conductive mandrel B are respectively arranged in the fixed conductive end and the driven conductive end, the conductive mandrel A is driven by the motor to rotate, the conductive mandrel B extends to the outside of the driven conductive end from the inside of the driven conductive end, clamping mechanisms for clamping the workpieces are respectively arranged on the conductive mandrel A and the conductive mandrel B, two ends of the workpieces are fixed on the clamping mechanisms, and the workpieces and the conductive mandrel B synchronously rotate along with.
And when the power supply is switched on, the fixed conductive end and the movable conductive end simultaneously carry out electroplating on the workpiece, so that a conical coating on the workpiece is avoided, and the electroplating quality is ensured.
The existing conductive copper block is arranged to be blocky, the using amount is large, but the contact area with the conductive mandrel A or the conductive mandrel B is small, along with the rotation of the conductive mandrel A or the conductive mandrel B, the condition that the conductive copper block is in poor contact with the conductive mandrel A or the conductive mandrel B easily occurs, finally, the condition that the plating layer is uneven occurs, the quality of a product is influenced, and after the conductive copper block is in poor contact, the conductive copper block needs to be replaced again or the shape and the position of the conductive copper block need to be adjusted.
Because the movable conductive end is positioned in the aqueduct, in order to be connected with a power supply positioned outside the horizontal groove, an opening with a smaller area is formed in the upper end of the movable conductive end, so that the conductive copper sheet can stretch into the opening conveniently, and two ends of the conductive copper sheet are respectively connected with the copper block positioned inside the movable conductive end and the power supply. The regulation of current electrically conductive copper billet position needs to remove the whole regulation of taking apart of electrically conductive end, and when electrolyte was strong acid electrolyte or alkali electrolyte, the process danger coefficient of adjustment was high and wasted time and energy.
SUMMERY OF THE UTILITY MODEL
The utility model provides an electroplate with electrically conductive structure of holding tightly, accommodation process safety, convenient and quick in case the shortcoming of contact failure adjustment difficulty appears to current electrically conductive copper of prior art.
In order to solve the technical problem, the utility model discloses a following technical scheme can solve:
a conductive holding structure for electroplating comprises a conductive piece and a conductive contact piece which are arranged from top to bottom at an opening of a movable conductive end, wherein two ends of the conductive piece are connected with a power supply and the conductive contact piece, the conductive contact piece comprises an arc-shaped clamping block and a matching block which extends outwards from two ends of the clamping block, be equipped with elasticity laminating mechanism between relative cooperation piece, elasticity laminating mechanism includes that the level runs through the regulation pole of cooperation piece, be located the stopper at regulation pole both ends and on the regulation pole in stopper and cooperation piece between the spring of the clamp splice elasticity laminating in electrically conductive dabber of ordering about that sets up, the regulation pole that is close to the conduction piece includes first bolt and the second bolt of interlude cooperation back interconnect with both sides cooperation piece respectively, be equipped with on first bolt and the second bolt and just can adjust the adjustment mechanism of the axial length of first bolt and second bolt at the opening part that removes electrically conductive end.
Adopt above-mentioned scheme, because the continuous rotation of electrically conductive dabber, probably lead to the spring inefficacy, it needs to unpack the removal and leads to the electric end to change the spring apart, the operation is very inconvenient and dangerous, but be close to the regulation pole of conduction piece and set to the first bolt and the second bolt that can adjust each other, and can adjust the total length of first bolt and second bolt through adjustment mechanism, so, after the elasticity of spring diminishes, only need handheld spanner stretch into the removal and lead the opening part of electric end and lead the inside total length that shortens first bolt and second bolt through operation adjustment mechanism, just can make clamp splice elasticity laminating once more at electrically conductive dabber, this electroplate with electrically conductive structure of holding tightly simple operation, it is quick and safe.
Preferably, the adjusting mechanism comprises a first horizontal tangent plane which is symmetrically arranged on the first bolt in the circumferential direction of the first bolt and used for clamping the wrench, an extension section which is used for clamping the wrench and is provided with an internal thread matched with the first bolt at one end of the extension section close to the first bolt, wherein the outer diameter of the extension section, close to one end of the first bolt, of the second bolt is larger than that of the extension section of the second bolt.
Adopt above-mentioned scheme, through the rotation of spacing second bolt on the one hand, the total length of first bolt and second bolt can be adjusted to the rotatory first bolt of another hand, lead to the clamp splice to paste electrically conductive dabber after first stop nut is not hard up or spring elasticity weakens, the opening part that only needs the handheld spanner of two hands self-removal to lead to the end stretches into, spacing second bolt on the one hand, another hand rotate first bolt can, adjust very safe, need not to unpack the removal and lead to the end apart, operating time is shortened greatly.
Preferably, the extension section is a cylindrical extension section, and a second horizontal tangent plane for clamping a wrench is symmetrically arranged on the outer annular wall of the extension section around the circumference of the extension section.
Adopt above-mentioned scheme, when the extension section is cylindrical extension section, the setting of second horizontal tangent plane is convenient for the centre gripping of spanner to the rotation of spacing second bolt.
Preferably, the extension section is a regular polygon extension section which can be clamped by a wrench.
Adopt above-mentioned scheme, when the extension section is regular polygon extension section, can supply the direct centre gripping of spanner spacing, make things convenient for the handheld spanner of another hand to rotate the regulation to first bolt.
Preferably, the limiting block is arranged at one end of the first bolt, which is opposite to the second bolt, and the limiting block is a first limiting nut matched with the first bolt or the second bolt.
Adopt above-mentioned scheme, set up the stopper into first stop nut, and can increase the suitability after cooperating with first bolt and second bolt, be applicable to holding tightly of the electrically conductive dabber of different diameters, can adjust the interval of both sides stopper through first stop nut to adjust the interval of clamp splice, make the clamp splice ensure and keep the state of elasticity laminating with electrically conductive dabber.
As preferred, keep away from the regulation pole of conduction piece including the pole section that is located the centre and the screw thread section that is located both ends, be provided with the stopper on the screw thread section at both ends, the stopper be with screw thread section complex second spacing bolt.
By adopting the scheme, the round rod section and the matching blocks on the two sides are convenient to stably move after being alternately matched, and the distance between the clamping blocks can be adjusted by adjusting the position of the second limiting bolt after the matching of the threaded section and the second limiting bolt.
Preferably, a third horizontal tangent plane convenient for clamping by a wrench is symmetrically arranged on the round rod section around the circumference of the round rod section.
By adopting the scheme, the third horizontal tangent plane is arranged, so that the third horizontal tangent plane can be clamped by a wrench by one hand to form the rear limiting round rod, and the wrench is held by the other hand to rotate the second limiting nut, thereby facilitating adjustment.
Preferably, the conducting piece is formed by overlapping a plurality of layers of copper sheets, and comprises a horizontal part and a wavy buffer part, wherein two ends of the horizontal part are respectively connected with the matching block and the power supply positive electrode or the power supply negative electrode, and the buffer part is positioned between the horizontal parts and is wavy.
By adopting the scheme, the horizontal part is convenient for arranging the screw to connect other parts, the buffer part is arranged in a wavy shape and has certain deformation capacity, and when the horizontal part moves along with the movement of the matching part, the transmission piece cannot break due to the arrangement of the buffer part.
The utility model discloses owing to adopted above technical scheme, have following technological effect: 1. the clamping block of the conductive contact part is arc-shaped, so that the joint area between the clamping block and the conductive core shaft is effectively increased; 2. an elastic attaching mechanism is additionally arranged, and under the action of a limiting block and a spring, the clamping block is elastically attached to the conductive mandrel, so that the rotation smoothness of the conductive mandrel is not influenced, and the clamping block can be ensured to be always in contact with the conductive mandrel in the rotation process of the conductive mandrel; 3. the regulation pole that is close to the conduction piece sets to the first bolt and the second bolt of mutually supporting, set up first horizontal tangent plane on first bolt, with the extension cooperation back on the second bolt, can just can the total length of quick adjustment first bolt and second bolt in the outside of the electrically conductive end of activity through the spanner and ensure that the clamp splice is in suitable centre gripping dynamics, this electroplate with electrically conductive structure of holding tightly hold electrically conductive dabber all the time under the prerequisite that does not influence electrically conductive dabber rotation smoothness nature, keep good electric conductivity, and in case when the clamp splice is not hard up move electrically conductive end outside just can adjust fast, labour saving and time saving and security height.
Drawings
FIG. 1 is an isometric view of an electrically conductive hugging structure for electroplating according to the present invention;
FIG. 2 is a cross-sectional view of the conductive clasping structure for electroplating of the present invention after being engaged with the conductive mandrel;
FIG. 3 is an enlarged view of A in FIG. 2;
the names of the parts indicated by the numerical references in the above figures are as follows: 1. a clamping block; 2. a matching block; 3. a conductive member; 31. a horizontal portion; 32. a buffer section; 41. a round bar section; 42. a threaded segment; 43. a third horizontal section; 5. a spring; 6. a second limit nut; 7. a first bolt; 8. a first horizontal section; 9. a second bolt; 10. a first limit nut; 11. a conductive mandrel; 12. an extension section; 121. an internal thread.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
Example 1
A conductive holding structure for electroplating is disclosed, and shown in figures 1-3, and comprises a conductive piece 3 and a conductive contact piece which are arranged from top to bottom at an opening of a movable conductive end, wherein two ends of the conductive piece 3 are connected with a positive electrode and a negative electrode of a power supply and the conductive contact piece, the conductive contact piece is integrally made of copper, the conductive piece 3 is positioned under the opening of the movable conductive end, the conductive piece 3 is formed by overlapping multiple layers of copper sheets, and the conductive piece 3 comprises a horizontal part 31 and a buffering part 32, wherein two ends of the horizontal part 31 are respectively connected with a matching block 2 and the positive electrode or the negative electrode of the power supply, and the buffering part 32 is positioned between.
Electrically conductive contact includes with the outer rampart elastic attachment of electrically conductive dabber 11 and is curved clamp splice 1 and extends the cooperation piece 2 that sets up from the both ends of clamp splice 1 perpendicularly to the one end that is close to conduction piece 3 and the one end of keeping away from conduction piece 3, be provided with between relative cooperation piece 2 and order about clamp splice 1 and laminate the elasticity laminating mechanism at the outer rampart of electrically conductive dabber 11 all the time, elasticity laminating mechanism includes that the level runs through the regulation pole of cooperation piece 2, be located the stopper at regulation pole both ends and on adjusting the pole set up between stopper and cooperation piece 2 order about clamp splice 1 elasticity butt spring 5 on electrically conductive dabber 11 all the time.
Be provided with on cooperation piece 2 and supply the adjusting rod to alternate complex jack, the regulation pole that is close to conduction piece 3 includes first bolt 7 and second bolt 9 with the jack alternate cooperation of both sides cooperation piece 2 and interconnect respectively, the stopper be with first bolt 7 or the first stop nut 10 of second bolt 9 complex, first stop nut 10 is located the one end that first bolt 7 and second bolt 9 carried on the back mutually respectively, be provided with on first bolt 7 and second bolt 9 and stretch into the opening of the electrically conductive end of spanner self-removal and just can adjust the adjustment mechanism of the axial length of first bolt 7 and second bolt 9.
Adjustment mechanism includes on first bolt 7 around the first horizontal tangent plane 8 of the confession spanner centre gripping that first bolt 7 circumference symmetry set up, the external diameter that second bolt 9 is close to the one end extension of first bolt 7 is greater than the extension section 12 that second bolt 42 is used for supplying the spanner centre gripping, the external diameter of extension section 12 is greater than the diameter of jack, extension section 12 is regular polygon extension section 12, regular hexagon extension section 12 is adopted to this embodiment, be provided with at the one end that extension section 12 is close to first bolt 7 with first bolt 7 complex internal thread 121.
The adjusting rod far away from the conducting piece 3 comprises a round rod section 41 positioned in the middle and threaded sections 42 positioned at two ends, the threaded sections 42 at the two ends are provided with second limiting nuts 6, and third horizontal tangent planes 43 convenient for clamping by a wrench are symmetrically arranged on the round rod section 41 around the circumference of the round rod section 41.
The invention has the advantages that: 1. the clamping block 1 of the conductive contact part is arc-shaped, so that the joint area between the clamping block and the conductive mandrel 11 is effectively increased; 2. an elastic attaching mechanism is additionally arranged, under the action of a limiting block and a spring 5, the clamping block 1 is elastically attached to the conductive mandrel 11, the rotating fluency of the conductive mandrel 11 is not influenced, and the clamping block 1 can be ensured to be always in a contact state with the conductive mandrel 11 in the rotating process of the conductive mandrel 11; 3. be close to conducting piece 3 adjust the pole and set to mutually supporting first bolt 7 and second bolt 9, set up first horizontal tangent plane 8 on first bolt 7, with the cooperation of extension section 12 on the second bolt 9 after, thereby can be in the total length of quick adjustment first bolt 7 and second bolt 9 in the outside of the electrically conductive end of activity through the spanner, thereby ensure that clamp splice 1 is in suitable centre gripping dynamics, this electroplate with electrically conductive structure of holding tightly hold electrically conductive dabber 11 under the prerequisite that does not influence electrically conductive dabber 11 and rotate the smoothness all the time, keep good electric conductivity, and in case when clamp splice 1 is not hard up, just can adjust fast outside the electrically conductive end of removal, time saving and labor saving and security are high.
Example 2
Compared with the embodiment 1, the difference of the present embodiment is that the extension section 12 can be configured as a cylindrical extension section 12, and a second horizontal section for holding a wrench is symmetrically arranged on the outer annular wall of the extension section 12 around the circumference of the extension section 12.

Claims (8)

1. The utility model provides an electroplate with electrically conductive structure of holding tightly, includes from last conduction piece (3) and the electrically conductive touching part that down set up of opening part from the electrically conductive end of removal, the both ends and the power and the electrically conductive touching part of conduction piece (3) are connected its characterized in that: electrically conductive contact includes curved clamp splice (1) and from the cooperation piece (2) of the outside extension perpendicularly in both ends of clamp splice (1), be equipped with elasticity laminating mechanism between relative cooperation piece (2), elasticity laminating mechanism includes the level and runs through the regulation pole of cooperation piece (2), be located the stopper at regulation pole both ends and on the regulation pole in stopper and cooperation piece (2) between set up order about clamp splice (1) elasticity laminate in spring (5) of electrically conductive dabber (11), the regulation pole that is close to conduction piece (3) includes first bolt (7) and second bolt (9) of interlude cooperation back interconnect with both sides cooperation piece (2) respectively, be equipped with on first bolt (7) and second bolt (9) and just can adjust the adjustment mechanism of the axial length of first bolt (7) and second bolt (9) at the opening part that removes electrically conductive end.
2. An electroplating conductive clasping structure according to claim 1, wherein: the adjusting mechanism comprises a first horizontal tangent plane (8) which is arranged on the first bolt (7) in a circumferential symmetric mode around the first bolt (7) and used for clamping a wrench, an extension section (12) which is used for clamping the wrench and is arranged at one end, close to the first bolt (7), of the second bolt (9) and is larger than the extension section (12) of the second bolt (9), and an internal thread (121) matched with the first bolt (7) is arranged at one end, close to the first bolt (7), of the extension section (12).
3. An electroplating conductive clasping structure according to claim 2, wherein: the extension section (12) is a cylindrical extension section, and a second horizontal tangent plane for clamping a wrench is symmetrically arranged on the outer annular wall of the extension section (12) around the circumference of the extension section (12).
4. An electroplating conductive clasping structure according to claim 2, wherein: the extension section (12) is a regular polygon extension section which can be clamped by a wrench.
5. An electroplating conductive clasping structure according to claim 2, wherein: the limiting block is arranged at one end of the first bolt (7) and the second bolt (9) which are opposite to each other, and the limiting block is a first limiting nut (10) matched with the first bolt (7) or the second bolt (9).
6. An electroplating conductive clasping structure according to claim 1, wherein: the adjusting rod far away from the conducting piece (3) comprises a round rod section (41) located in the middle and thread sections (42) located at two ends, limiting blocks are arranged on the thread sections (42) at the two ends, and the limiting blocks are second limiting nuts (6) matched with the thread sections (42).
7. An electroplating conductive clasping structure according to claim 6, wherein: and a third horizontal tangent plane (43) convenient for clamping by a wrench is symmetrically arranged on the round rod section (41) around the circumference of the round rod section (41).
8. An electroplating conductive clasping structure according to claim 1, wherein: the conductive piece (3) is formed by overlapping a plurality of layers of copper sheets, and the conductive piece (3) comprises a horizontal part (31) and a buffer part (32), wherein two ends of the horizontal part (31) are respectively connected with the matching block (2) and a power supply positive electrode or a power supply negative electrode, and the buffer part is positioned between the horizontal parts (31) and is wavy.
CN201921801069.9U 2019-10-25 2019-10-25 Electroplate with electrically conductive structure of holding tightly Active CN211546698U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921801069.9U CN211546698U (en) 2019-10-25 2019-10-25 Electroplate with electrically conductive structure of holding tightly

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Application Number Priority Date Filing Date Title
CN201921801069.9U CN211546698U (en) 2019-10-25 2019-10-25 Electroplate with electrically conductive structure of holding tightly

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Publication Number Publication Date
CN211546698U true CN211546698U (en) 2020-09-22

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112359397A (en) * 2020-11-10 2021-02-12 泉州市先卓工业设计有限公司 Vertical continuous electroplating equipment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112359397A (en) * 2020-11-10 2021-02-12 泉州市先卓工业设计有限公司 Vertical continuous electroplating equipment
CN112359397B (en) * 2020-11-10 2021-11-12 衡阳恒全电镀有限公司 Vertical continuous electroplating equipment

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