| Sign In | Join Free | My infospaceinc.com |
|
| Categories | Copper Base |
|---|---|
| Model Number: | cooper base |
| Material: | Copper Construction |
| Place of Origin: | China |
| Structure Type: | Multi-Point Contact Fixture Design |
| Supply Ability: | 1000pcs/day |
| Mounting Method: | Bottom Plate Mounting Holes |
| Payment Terms: | D/A,D/P,T/T |
| Base Structure: | Integrated Copper Base Plate |
| Customization: | Custom Contact Layout Available |
| Delivery Time: | 5 |
| Manufacturing Structure: | Copper Plate Bending & Assembly Structure |
| MOQ: | 500 |
| Contact Design: | Multiple Copper Contact Fingers |
| Packaging Details: | Packed in cartons |
| Application: | Electroplating & Metal Surface Treatment |
| Brand Name: | Krieit |
| Product Name: | Copper Electroplating Hanger |
| Company Info. |
| Jiangyin Rongjun Hardware Co. Ltd |
| Verified Supplier |
| View Contact Details |
| Product List |
In a vertical aluminum anodizing line, the copper hanger sits between the production line beam and the vertical anodizing clamps.
It performs two important functions at the same time:
mechanical clamp mounting and electrical current transmission.
A typical hanger length is approximately 980–1000 cm, or 9.8–10 m, while the actual structure can be customized according to beam length, clamp quantity, clamp spacing, and mounting-hole layout.
The current path can be understood as:
Power Supply → Beam → Copper Hanger → Vertical Anodizing Clamp → Aluminum Profile
This means the hanger is not simply a support bracket. It is part of the electrical connection system.
In many vertical anodizing lines, the problem does not come from the clamp itself.
It comes from the connection between:
Common issues include:
On a long beam approaching 10 meters, small connection differences between multiple clamp positions can become more significant.
The connection surfaces between the beam, copper hanger, and vertical clamp are critical electrical interfaces.
If the effective contact area becomes too small, conductivity can be affected by:
Reliable conductivity therefore depends not only on copper material, but also on maintaining sufficient and stable contact surfaces.
Mechanical fixing pressure directly affects electrical contact.
Loose mounting may create small gaps between conductive surfaces.
Under repeated production cycles, vibration, and thermal changes, these gaps may increase.
This is why mechanical mounting and electrical conductivity must be considered together.
Vertical anodizing lines operate in environments involving:
Contamination can reduce the effective conductive area.
Routine inspection should therefore focus on:
A typical copper hanger may be approximately:
980–1000 cm
or:
9.8–10 m
Across such a long structure, inconsistent clamp spacing or mounting direction can create different contact conditions between positions.
A unified copper hanger provides a common mounting reference.
The copper hanger should be designed as both a structural and electrical interface.
Multiple vertical anodizing clamps can be installed on one predefined hanger layout.
This helps create:
Copper provides high electrical conductivity and is suitable for conductive connections in anodizing systems.
The hanger forms the interface:
Beam → Copper Hanger → Vertical Clamp
However, copper material alone does not guarantee stable conductivity.
The design must also control:
Typical length:
980–1000 cm
Customization can be based on:
This allows each clamp position to have a clearly defined mechanical and conductive connection.
| Specification | Details |
|---|---|
| Product Name | Conductive Copper Hanger for Vertical Anodizing Line |
| Material | Copper |
| Typical Length | 980–1000 cm |
| Length Conversion | 9.8–10 m |
| Installation Position | Vertical Anodizing Line Beam |
| Matching Product | Vertical Anodizing Clamp |
| Main Function | Clamp Mounting + Conductive Connection |
| Customization | Length, holes, clamp quantity, spacing, mounting structure |
During continuous production, the hanger must maintain:
Routine maintenance should focus on connection conditions rather than only visual appearance.
Automated lines require consistent clamp positions.
A customized copper hanger can provide predefined mounting locations and uniform center distances for multiple clamps.
For beams approximately 9.8–10 m long, small installation errors may accumulate across many clamp positions.
A unified hanger design allows engineers to control:
Copper hangers can also be redesigned when existing lines suffer from:
Check:
The typical 980–1000 cm length is only a reference.
Final length should be based on the usable installation area.
The complete layout should include:
Provide:
Different clamp models may have different contact structures.
A good hanger design should allow operators to inspect:
without unnecessary disassembly.
Because the hanger is not only a mechanical support component.
It also forms part of the conductive path between the beam and the vertical clamp.
The final material selection should still match the actual electrical and process requirements.
No.
Copper improves the conductive connection, but performance also depends on:
Loose mounting reduces the effective contact area.
This can make electrical transmission less stable.
Yes.
Important inspection items include:
The maintenance interval should depend on production frequency and process environment.
Length alone cannot guarantee consistency.
The design must also control:
The entire connection path should be inspected:
Beam → Copper Hanger → Vertical Clamp → Aluminum Profile
Any interface in this path can affect current transmission.
|