Product Details
Place of Origin: China
Brand Name: Krieit
Model Number: KRT-106
Payment & Shipping Terms
Minimum Order Quantity: 500
Packaging Details: packed in cartons
Delivery Time: 5days
Payment Terms: D/A,D/A,D/P,T/T
Supply Ability: 1000pcs/day
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Name:
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Automatic Clamping Component For Aluminum Surface Treatment Lines
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Type:
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Pneumatic-driven Industrial Clamp For Automated Production Systems
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Main Application:
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Aluminum Anodizing, Electrophoresis, And Surface Treatment Lines
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Clamping Structure:
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Dual-side Jaw Clamping Structure
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Jaw Design:
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Toothed Anti-slip Clamping Jaws
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|
Name:
|
Automatic Clamping Component For Aluminum Surface Treatment Lines
|
|
Type:
|
Pneumatic-driven Industrial Clamp For Automated Production Systems
|
|
Main Application:
|
Aluminum Anodizing, Electrophoresis, And Surface Treatment Lines
|
|
Clamping Structure:
|
Dual-side Jaw Clamping Structure
|
|
Jaw Design:
|
Toothed Anti-slip Clamping Jaws
|
For standard aluminum extrusions, conventional anodizing clamps may provide adequate racking performance. However, irregular profiles, thin-wall sections, restricted gripping areas, and customer-specific extrusions often create a different engineering problem.
The issue is not simply whether the clamp is large enough. The real question is whether the jaw geometry, contact position, opening path, and installation space match the workpiece.
This Custom Aluminum Anodizing Fixture uses a non-standard structure developed for customer-specific applications. The visible product configuration includes two opposing jaws, two serrated contact sections, and one central mechanical pivot, making it suitable for special aluminum profiles used in anodizing and surface treatment lines.
Aluminum extrusion geometry can vary considerably.
Architectural profiles, industrial extrusions, solar frame components, and custom extruded parts may have similar overall dimensions but completely different usable gripping areas.
Common problems include:
For this reason:
A sufficient maximum opening does not automatically mean the clamp is suitable.
Maximum Jaw Opening answers only one question:
Can the workpiece enter the clamp?
It does not answer:
Can the clamp establish the correct mechanical contact after insertion?
A complete evaluation should also include:
The current fixture uses two serrated contact sections, one on each jaw.
Instead of relying only on a smooth friction surface, the serrated geometry creates multiple local mechanical engagement points.
For some aluminum profiles, this can help reduce the risk of relative movement during racking and handling.
However:
Serrated jaws should not be interpreted as a zero-slip guarantee.
Actual holding performance still depends on clamping force, workpiece weight, contact angle, jaw geometry, and material condition.
A clamp may fit perfectly in its resting position but still interfere with surrounding equipment when opened.
Potential interference points include:
Therefore, a non-standard fixture should also be designed around the actual movement envelope.
The purpose of customization is not simply to make a standard clamp larger or smaller.
Instead, the gripping relationship is redesigned around the actual workpiece.
The confirmed configuration of this fixture includes:
| Technical Item | Confirmed Configuration | Engineering Function |
|---|---|---|
| Product Type | Custom Aluminum Anodizing Fixture | For non-standard anodizing racking |
| Number of Jaws | 2 | Opposing mechanical contact |
| Serrated Contact Sections | 2 | Multiple engagement points |
| Central Pivot | 1 | Mechanical opening reference |
| Jaw Type | Serrated Jaw | Defined gripping contact |
| Structure | Non-Standard Design | Adapted to customer geometry |
| Application | Aluminum Anodizing / Surface Treatment | Workpiece racking and holding |
The fixture uses two opposing jaws.
Rather than pressing from only one side, the structure establishes mechanical contact from both sides of the workpiece.
For irregular profiles, the design can be adjusted through:
The objective is to place the contact points on mechanically suitable areas of the extrusion.
The fixture contains two serrated gripping areas.
Compared with fully smooth jaws, serrations create several local contact points between the fixture and the profile.
This structure may be useful for:
For cosmetic profiles, the permitted gripping area must be confirmed before jaw geometry is finalized.
The product includes one central mechanical pivot.
Its location influences:
Therefore, the fixture should be evaluated as a moving mechanical system rather than only as a static clamp.
Profiles with grooves, thin walls, curved edges, or complex reinforcement ribs may provide very limited gripping areas.
A custom jaw structure can be developed from the profile cross-section.
Profiles produced from proprietary customer dies often have no universal fixture solution.
A profile-specific anodizing fixture can therefore be designed around the extrusion instead of forcing the extrusion to fit an existing standard clamp.
Some aluminum products allow contact only in hidden areas or sections that will later be removed.
Custom fixtures allow the gripping point to be positioned around those restrictions.
Where multiple profiles are mounted close together, the opening movement of the clamp is just as important as its closed dimensions.
The following should be checked together:
Maximum Opening + Opening Path + Installation Clearance
For non-standard fixture development, the most useful information includes:
This information is normally more useful than simply specifying a required maximum opening.
Resting Jaw Opening defines the initial clamp geometry.
Maximum Jaw Opening determines whether the workpiece can be inserted.
Both values must be evaluated together.
Long profiles can experience additional movement during transportation and tank processing.
The gripping position should therefore be selected according to:
Serrated jaws create direct mechanical contact.
For appearance-critical products, customers should clearly identify:
The fixture must fit not only the workpiece but also the production line.
Useful installation information includes:
A custom fixture should be considered when a standard jaw cannot contact the correct area, when gripping marks cannot be placed on the visible surface, when the opening path interferes with the line, or when the workpiece has a customer-specific extrusion geometry.
The key question is whether the standard fixture can establish the correct mechanical contact.
Because maximum opening only determines whether the workpiece can enter the clamp.
Actual compatibility also depends on jaw geometry, wall thickness, gripping direction, contact position, and clamping force.
The current fixture contains two serrated contact sections.
These sections create multiple localized mechanical engagement points and can help reduce relative movement under suitable gripping conditions.
They should not, however, be interpreted as a guarantee of zero slipping.
Yes, if the profiles share a sufficiently similar gripping dimension and contact geometry.
If their cross-sections differ significantly, one universal fixture may require compromises in contact position or holding conditions.
A photograph is useful for preliminary assessment but is usually insufficient for final engineering.
A CAD cross-section, key dimensions, workpiece weight, permitted gripping areas, and installation conditions provide a much more reliable design basis.
No.
Deeper teeth may increase local mechanical engagement, but they may also increase surface marks or localized stress.
Serration geometry should be selected according to the material, surface requirements, and permitted contact area.
The most important parameters generally include:
Resting Jaw Opening, Maximum Jaw Opening, Jaw Geometry, Workpiece Thickness, Gripping Position, and Installation Clearance.
These parameters work together to determine whether the fixture actually matches the application.