CN211142214U - Conductive seat for electroplating - Google Patents

Conductive seat for electroplating Download PDF

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Publication number
CN211142214U
CN211142214U CN201921799422.4U CN201921799422U CN211142214U CN 211142214 U CN211142214 U CN 211142214U CN 201921799422 U CN201921799422 U CN 201921799422U CN 211142214 U CN211142214 U CN 211142214U
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China
Prior art keywords
block
inner sleeve
connecting block
hole
fixing shaft
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CN201921799422.4U
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Chinese (zh)
Inventor
吴仁杰
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Dongguan Puruide Hardware Plastic Products Co ltd
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Dongguan Puruide Hardware Plastic Products Co ltd
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Priority to CN201921799422.4U priority Critical patent/CN211142214U/en
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Abstract

The utility model relates to a conductive seat for electroplating. It includes: the thread fixing shaft is sleeved with an inner sleeve in the middle and is sleeved with an insulated adjusting wheel through the inner sleeve, the inner sleeve is provided with internal threads and is in threaded connection with the thread fixing shaft, the lower end of the inner sleeve is provided with an outer folded edge, and the outer folded edge is abutted against the adjusting wheel; the upper end of the inner sleeve is connected with a limiting nut, and the limiting nut is in threaded connection with the threaded fixing shaft; the upper end of the thread fixing shaft is connected with two fixing blocks which are arranged in parallel, an insulating connecting block is arranged between the two fixing blocks, one end of the insulating connecting block is provided with a through hole for the thread fixing shaft to pass through, and the other end of the insulating connecting block is connected with a conducting rod which is used for being in contact with a plated material belt. The utility model discloses a set up the direction of feed that insulating adjusting wheel adjusted the material area, the adjusting wheel can be adjusted from top to bottom to connect the conducting rod through insulating connecting block, thereby avoid the screw thread fixed axle electrically conductive and take place electrochemical reaction, keep apart electric conductor and plating solution completely.

Description

Conductive seat for electroplating
Technical Field
The utility model relates to an electroplate technical field, especially relate to a conductive seat for electroplate.
Background
At present, terminals on electronic interfaces of electronic products are mostly plated in multiple layers; during electroplating, a terminal is soaked in electroplating solution, metal in the electroplating bath is connected with an anode of a power supply, the terminal is connected with a cathode of the power supply, and the terminal is fixed on the material belt and moves along with the material belt; in order to conveniently and electrically connect the terminal with the cathode, a person skilled in the art is provided with a conductive seat near the electroplating bath, a conductive wheel is arranged on the conductive seat, the terminal moves along with the material belt and enters the electroplating bath, the material belt is abutted against the side surface of the conductive wheel before entering the electroplating bath, a threaded fixed shaft of the conductive wheel is electrically connected with the cathode, and the conductive wheel can adjust the advancing direction of the material belt besides providing cathode connection; because the conductive seat is arranged on the substrate positioned on the electroplating bath, when point plating and brush plating are carried out, part of electrolyte falls on the conductive seat, the electrolyte slides down along the conductive seat, and is gathered and stayed more at the joint of the conductive shaft and the conductive seat, so that the electrochemical reaction is easy to occur at the joint; resulting in loss of precious metals from the plating solution.
Disclosure of Invention
An object of the utility model is to provide a not enough to prior art for the electrically conductive seat of electroplating, this electrically conductive seat avoids the screw thread fixed axle to take place electrochemical reaction and causes the plating solution loss.
A conductive socket for electroplating, comprising: the thread fixing shaft is sleeved with an inner sleeve in the middle and is sleeved with an insulated adjusting wheel through the inner sleeve, the inner sleeve is provided with internal threads and is in threaded connection with the thread fixing shaft, the lower end of the inner sleeve is provided with an outer folded edge, and the outer folded edge is abutted against the adjusting wheel; the upper end of the inner sleeve is connected with a limiting nut, and the limiting nut is in threaded connection with the threaded fixing shaft; the upper end of screw thread fixed axle is connected with two parallel arrangement's fixed block, is equipped with insulating connecting block between two fixed blocks, the one end of insulating connecting block is equipped with the through-hole that is used for the screw thread fixed axle to pass, and the other end of insulating connecting block is connected with and is used for being plated the conducting rod that the material area contacted.
Furthermore, the upper end of the inner sleeve extends upwards to form a polygonal connecting block, the lower end of the limiting nut extends downwards to form a sleeving block, and the sleeving block is provided with a polygonal hole matched with the polygonal connecting block.
Preferably, the side surface of the sleeving block is connected with a limiting bolt.
The middle part of the fixed plate is provided with a moving groove, and a sliding block matched with the moving groove is arranged in the moving groove; a screw rod is arranged in the moving groove, two ends of the screw rod are respectively movably connected with two ends of the moving groove, and one end of the screw rod extends out of the fixing plate and is connected with an operating head; the movable groove is internally provided with a guide rod which is arranged in parallel with the screw rod, the sliding block is provided with a thread perforation which is matched with the screw rod and a guide hole which is matched with the guide rod, the sliding block is in threaded connection with the screw rod, the guide rod penetrates through the guide hole, the upper end of the sliding block is provided with a fixing hole which is matched with the thread fixing shaft, and the lower end of the thread fixing shaft is fixed in the fixing hole.
Furthermore, two springs are arranged in the moving groove and are respectively positioned on two sides of the sliding block, the springs are sleeved outside the guide rod, and two ends of each spring are respectively connected with one end face of the moving groove and the sliding block.
Furthermore, the fixed block is in a shape of a round cake, a fastening hole is formed in the side face of the fixed block, an internal thread is arranged in the fastening hole, the fastening hole is connected with an internal bolt, and the internal bolt is in threaded connection with the fixed block and abuts against the threaded fixing shaft.
Furthermore, the through hole on the insulating connecting block is a kidney-shaped hole.
Further, the conducting rod is in threaded connection with the insulating connecting block.
The utility model has the advantages that: the utility model discloses a set up the direction of feed that insulating adjusting wheel adjusted the material area, the adjusting wheel can be adjusted from top to bottom to connect the conducting rod through insulating connecting block, thereby avoid the screw thread fixed axle electrically conductive and take place electrochemical reaction, keep apart electric conductor and plating solution completely.
Drawings
Fig. 1 is a schematic structural diagram of the present embodiment.
Fig. 2 is a second perspective view of fig. 1.
Fig. 3 is a schematic view of a third viewing angle of fig. 2. .
Fig. 4 is a schematic diagram of the fixed plate and the slide block, screw rod, and guide rod.
Fig. 5 is a schematic view of an exploded structure of the present embodiment.
The reference numerals include:
1-a spring; 2-operating head; 3-a screw rod; 4-moving groove; 5-fixing plate; 6-conductive rod; 7-insulating connecting block; 8-kidney-shaped hole; 9-inner bolt; 10-fixed block; 12-an adjustment wheel; 13-threaded fixed shaft; 14-a slide block; 15-guide bar; 16-fixed hole; 17-a limit nut; 18-outer folding edge; 19-inner sleeve; 20-polygonal connecting block; 21-polygonal hole; 22-a sleeving connection block; 23-limit bolt.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings. As shown in fig. 1-5.
Example (b): a conductive socket for electroplating, comprising: the thread fixing shaft 13 is sleeved with an inner sleeve 19 in the middle of the thread fixing shaft 13 and is sleeved with an insulated adjusting wheel 12 through the inner sleeve 19, and the inner sleeve 19 is provided with internal threads and is in threaded connection with the thread fixing shaft 13; the lower end of the inner sleeve 19 is provided with an outer folded edge 18, and the outer folded edge 18 is abutted against the adjusting wheel 12; the upper end of the inner sleeve 19 is connected with a limit nut 17, and the limit nut 17 is in threaded connection with the threaded fixing shaft 13; the upper end of screw thread fixed axle 13 is connected with two parallel arrangement's fixed block 10, is equipped with insulating connecting block 7 between two fixed blocks 10, the one end of insulating connecting block 7 is equipped with the through-hole that is used for screw thread fixed axle 13 to pass, and the other end of insulating connecting block 7 is connected with and is used for being plated the conducting rod 6 that the material area contacted.
This technical scheme is at the during operation, is fixed in the base plate through thread tightening axle 13, and the side in material area offsets with the side of adjusting wheel 12, changes the direction of travel through adjusting wheel 12, simultaneously through rotatory insulating connecting block 7 for conducting rod 6 offsets with the material area, then is connected and will insulate connecting block 7 centre gripping fixed with thread tightening axle 13 through two fixed blocks 10. When the device is used, the cathode wire of the power supply is connected with the conducting rod 6, so that the connection between the material belt and the cathode is realized; since the insulating regulating wheel 12 is in contact with the material belt, the thread fixing shaft 13 and the like are not electrified, and even when the plating solution flows through the thread fixing shaft 13, the electrochemical reaction is not generated. Thereby avoiding loss of plating solution. Secondly, the height-adjustable of regulating wheel 12 is loosened through stop nut 17 with the upper end, then through the height of rotatory adjustment inner skleeve 19, regulating wheel 12, after adjusting, fixes stop nut 17 in the upper end of inner skleeve 19, when specifically setting up, the trend of material area can drive inner skleeve 19 rebound, consequently only need set up the stop nut who is located the top can.
Furthermore, the upper end of the inner sleeve 19 extends upwards to form a polygonal connecting block 20, the lower end of the limiting nut 17 extends downwards to form a socket block 22, and the socket block 22 is provided with a polygonal hole 21 matched with the polygonal connecting block 20.
The inner sleeve 19 is connected with the limit nut 17 through the polygonal connecting block 20, so that the inner sleeve 19 and the adjusting wheel 12 are synchronously moved, and the upward movement of the inner sleeve 19 and the adjusting wheel 12 is more effectively prevented.
Preferably, a limit bolt 23 is connected to a side surface of the socket block 22.
The stop screw 23 is provided to prevent the stop nut 17 from being separated from the inner sleeve 19.
Furthermore, the device also comprises a fixed plate 5, wherein a moving groove 4 is formed in the middle of the fixed plate 5, and a sliding block 14 matched with the moving groove 4 is arranged in the moving groove 4; a screw rod 3 is arranged in the moving groove 4, two ends of the screw rod 3 are respectively movably connected with two ends of the moving groove 4, and one end of the screw rod 3 extends out of the fixed plate 5 and is connected with an operating head 2; the moving groove 4 is also internally provided with a guide rod 15 which is arranged in parallel with the screw rod 3, the sliding block 14 is provided with a thread perforation which is matched with the screw rod 3 and a guide hole which is matched with the guide rod 15, the sliding block 14 is in threaded connection with the screw rod 3, the guide rod 15 penetrates through the guide hole, the upper end of the sliding block 14 is provided with a fixing hole 16 which is matched with the thread fixing shaft 13, and the lower end of the thread fixing shaft 13 is fixed in the fixing hole 16.
In the specific application process, the position of the adjusting wheel 12 needs to be changed according to the advancing direction of the material belt; according to the technical scheme, the fixing plate 5 is arranged, the fixing plate 5 is fixed on the base plate in a bolt fixing mode, when the position of the adjusting wheel 12 needs to be adjusted, the screw rod 3 is driven to rotate by rotating the operating head 2, and the slide block 14 is driven to move along the length direction of the moving groove 4 after the screw rod 3 rotates, so that the purpose of adjusting the position of the adjusting wheel 12 is achieved; secondly, set up guide bar 15, the guide hole is used for assisting the directional removal of slider 14, prevents that slider 14 from rocking.
Furthermore, two springs 1 are arranged in the moving groove 4 and are respectively located on two sides of the sliding block 14, the springs 1 are all sleeved outside the guide rod 15, and two ends of each spring 1 are respectively connected with one end face of the moving groove 4 and the sliding block 14.
The spring 1 can adopt a compression spring or a tension spring at the same time, so that the sliding block 14 always keeps thrust or tension acting on the sliding block 14 in the moving process, and the operating head 2 is prevented from rotating to drive the sliding block 14 to move due to collision of other objects. The arrangement of the spring 1 can increase the moving resistance of the sliding block 14, and secondly, because the two ends of the sliding block 14 are both provided with the spring 1, the resistance is kept unchanged, and the rotating hand feeling of the operating head 2 is kept unchanged.
Further, the fixing block 10 is in a shape of a round cake, a fastening hole is formed in the side face of the fixing block 10, an internal thread is formed in the fastening hole, the fastening hole is connected with an internal bolt 9, and the internal bolt 9 is in threaded connection with the fixing block 10 and abuts against the threaded fixing shaft 13.
Because the fixed block 10 is in threaded connection with the thread fixing shaft 13, the fixed block 10 can rotate relative to the thread fixing shaft 13; in the course of the work, conducting rod 6 and material area butt, the material area has a thrust to conducting rod 6, this thrust is used on insulating connecting block 7 and form a moment on screw thread fixed axle 13, insulating connecting block 7 probably takes place to rotate and drive fixed block 10 rotatory under the effect of this moment, for preventing this phenomenon from taking place, this technical scheme has set up the fastening hole in the side of fixed block 10, through the pressure that forms between internal bolt 9 and the screw thread fixed axle 13, stops fixed block 10 rotatory.
Further, the through hole on the insulating connecting block 7 is a kidney-shaped hole 8.
The through hole is set to be a waist-shaped hole 8, so that the insulating connecting block 7 can be adjusted to be fixed relative to the thread fixing shaft 13, and the position of the conducting rod 6 is adjusted. Secondly, when the fixing block 10 does not clamp the insulating connecting block 7, the insulating connecting block 7 can rotate relative to the thread fixing shaft 13, and the position of the conducting rod 6 can be further adjusted.
Further, the conductive rod 6 is screwed with the insulating connection block 7.
Through threaded connection's mode, can adjust the length that conducting rod 6 is located insulating connecting block 7 below to adapt to different material areas.
The above description is only for the preferred embodiment of the present invention, and for those skilled in the art, there are variations on the detailed description and the application scope according to the idea of the present invention, and the content of the description should not be construed as a limitation to the present invention.

Claims (8)

1. A conductive socket for electroplating, comprising: the screw thread fixed axle, its characterized in that: the middle part of the threaded fixing shaft is sleeved with an inner sleeve, and is sleeved with an insulated adjusting wheel through the inner sleeve, the inner sleeve is provided with internal threads and is in threaded connection with the threaded fixing shaft, the lower end of the inner sleeve is provided with an outer folded edge, and the outer folded edge is abutted against the adjusting wheel; the upper end of the inner sleeve is connected with a limiting nut, and the limiting nut is in threaded connection with the threaded fixing shaft; the upper end of screw thread fixed axle is connected with two parallel arrangement's fixed block, is equipped with insulating connecting block between two fixed blocks, the one end of insulating connecting block is equipped with the through-hole that is used for the screw thread fixed axle to pass, and the other end of insulating connecting block is connected with and is used for being plated the conducting rod that the material area contacted.
2. A conductive socket for electroplating according to claim 1, wherein: the upper end of the inner sleeve upwards extends to form a polygonal connecting block, the lower end of the limiting nut downwards extends to form a sleeving block, and the sleeving block is provided with a polygonal hole matched with the polygonal connecting block.
3. A conductive socket for electroplating according to claim 2, wherein: and the side surface of the sleeving connection block is connected with a limiting bolt.
4. A conductive socket for electroplating according to claim 1, wherein: the middle part of the fixed plate is provided with a moving groove, and a sliding block matched with the moving groove is arranged in the moving groove; a screw rod is arranged in the moving groove, two ends of the screw rod are respectively movably connected with two ends of the moving groove, and one end of the screw rod extends out of the fixing plate and is connected with an operating head; the movable groove is internally provided with a guide rod which is arranged in parallel with the screw rod, the sliding block is provided with a thread perforation which is matched with the screw rod and a guide hole which is matched with the guide rod, the sliding block is in threaded connection with the screw rod, the guide rod penetrates through the guide hole, the upper end of the sliding block is provided with a fixing hole which is matched with the thread fixing shaft, and the lower end of the thread fixing shaft is fixed in the fixing hole.
5. A conductive socket for electroplating according to claim 4, wherein: two springs are arranged in the moving groove and are respectively positioned on two sides of the sliding block, the springs are sleeved outside the guide rod, and two ends of each spring are respectively connected with one end face of the moving groove and the sliding block.
6. A conductive socket for electroplating according to claim 2, wherein: the fixing block is in a round cake shape, a fastening hole is formed in the side face of the fixing block, an internal thread is arranged in the fastening hole, the fastening hole is connected with an internal bolt, and the internal bolt is in threaded connection with the fixing block and abuts against the threaded fixing shaft.
7. A conductive socket for electroplating according to claim 1, wherein: the through hole on the insulating connecting block is a waist-shaped hole.
8. A conductive socket for electroplating according to any one of claims 1 to 7, wherein: the conducting rod is in threaded connection with the insulating connecting block.
CN201921799422.4U 2019-10-24 2019-10-24 Conductive seat for electroplating Active CN211142214U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921799422.4U CN211142214U (en) 2019-10-24 2019-10-24 Conductive seat for electroplating

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921799422.4U CN211142214U (en) 2019-10-24 2019-10-24 Conductive seat for electroplating

Publications (1)

Publication Number Publication Date
CN211142214U true CN211142214U (en) 2020-07-31

Family

ID=71767922

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921799422.4U Active CN211142214U (en) 2019-10-24 2019-10-24 Conductive seat for electroplating

Country Status (1)

Country Link
CN (1) CN211142214U (en)

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