Angle Pins

  • Precision Alignment: Ensures exact positioning of mold slides for seamless operation.
  • Durability: Withstands high pressures and repeated cycles without wear or deformation.
  • Versatility: Available in various sizes and configurations to fit diverse mold designs.
  • Efficiency: Enhances mold performance by reducing friction and optimizing slide movement.

Expert Craftsmanship

20+ Years of Expertise

Tailored Solutions

Custom designs

Rigorous Quality Control

ISO 9001-Certified Quality

Competitive Pricing

Cost-effective solutions

Global Support

Reliable delivery & technical assistance

ISO 9001:2015 Certified Processes

ISO 13485: 2016 Medical Device

IATF 16949: 2016 Automotive

No Minimum Order Quantities

In-Process Inspection with CMM

Angle Pins for Mold Components: Precision Alignment & Durability

Angle pins are critical components in injection molding, specifically designed to drive the movement of mold slides. These precision-engineered parts ensure accurate alignment and smooth operation, enhancing the efficiency and quality of the molding process. By facilitating the lateral core pulling of sliders, angle pins allow for the creation of complex part geometries while minimizing defects.

Our angle pins are crafted for durability and precision, making them a trusted choice for industries such as automotive, consumer goods, and electronics.

Key Functions

✔️ Drives the lateral movement of sliders to release undercuts in molded parts.
✔️ Prevents misalignment to ensure defect-free production.
✔️ Supports complex mold designs with reliable slide operation.
✔️ Optimizes cycle times by ensuring smooth and efficient mold movement.

Processing Materials

We use high-quality materials selected for their strength and precision:

Hardened Tool Stee

  • Offers exceptional hardness and toughness for long-lasting performance (e.g., H13, D2).

Stainless Steel

  • Provides corrosion resistance for demanding environments (e.g., 420, 440C).

Custom Alloys

  • Available for specialized applications requiring unique properties.

Post-Processing & Surface Treatments

To maximize longevity and functionality, our angle pins undergo:

Heat Treatment

Achieves optimal hardness (58-62 HRC) for wear resistance.

Optional Coating

TiN or DLC layers reduce friction and extend service life.

Nitriding

Enhances surface toughness and fatigue strength.

Precision Grinding

Delivers a smooth surface finish (Ra ≤ 0.2 μm) for reduced friction.

Technical Specs for Locating Rings

At Fecision, we design and create precise custom mold components from high-quality materials.
Our processes ensure unmatched consistency and repeatability at fast lead times and affordable pricing.
ParameterSpecification
Hardness
58-62 HRC (varies by material)
Dimensional Tolerance
±0.002 mm (tighter tolerances available)
Surface Finish
Precision ground to Ra ≤ 0.2 μm
Diameter Range6 mm to 50 mm (custom sizes available)
Length50 mm to 500 mm (custom lengths available)
Angle Range
0° to 25° (custom angles available)
Lead Time
2-4 weeks (standard); expedited options available
Contact us for tailored specifications to match your project needs.

Selection Suggestions

When choosing angle pins for your mold, consider the following factors:

Mold Size

Larger molds may require longer or thicker pins for stability.

Slide Travel Distance

Ensure the pin length accommodates the required slider movement.

Material Compatibility

Select materials that match the molding environment (e.g., corrosive plastics may require stainless steel).

Angle Requirements:

Choose an angle that optimizes slide movement without exceeding 25° for standard applications.

Our team is available to assist with personalized recommendations based on your mold design.

Fecision Mold Component Tooling Network

In response to different service types and diverse business needs, we have deployed suppliers with different manufacturing capabilities.

Why Fecision for Mold Components?

Precision and Accuracy

Using state-of-the-art CNC machining, EDM, and other advanced manufacturing techniques, Fecision ensures all mold components meet tight tolerances and high-quality standards.

Customization

Fecision understands the unique needs of each project. Our team works closely with customers to provide tailored solutions, ensuring that each component fits perfectly within the target mold system.

Rapid Prototyping

Fecision offers rapid prototyping for mold components, enabling customers to test and refine designs quickly before moving into full production.

End-to-End Services

From initial design and DFM (Design for Manufacturability) analysis to final mold assembly and testing, Fecision handles every aspect of the mold component manufacturing process.

Process for Manufacturing Mold Components

The process of making a mold component involves several stages, from design to manufacturing and finishing.
The specific steps can vary depending on the type of mold component being created, but the general steps remain consistent across most types of mold components.
 

Manufacturability Evaluation

The initial step involves assessing the manufacturablity of the mold component. If it's deemed feasible, we proceed with production immediately. If not, we will provide a detailed DFM (Design for Manufacturability) report to the customer. If necessary, mold flow analysis is performed to simulate the flow of molten material within the mold.

Material Selection

Next, choose the right material for mold parts. Common materials for mold components include steel alloys, aluminum, stainless steel, specialty alloys, etc. If needed, a prototype may be made using rapid prototyping techniques (e.g., 3D printing, CNC machining) to test the design for fit, function, and manufacturability.

Mold Components Manufacturing

Once the design and materials are finalized, the mold component undergoes CNC machining. If required, the mold component may undergo heat treatment, depending on the material and intended application. For certain components, surface hardening methods such as nitriding or carburizing are applied to increase wear resistance.

Shipping

For molds with multiple components, such as multi-cavity molds or molds with inserts, the individual components are carefully assembled into the final mold system. Once our engineers confirm the product meets all requirements, it will be shipped. We maintain ongoing communication to ensure the customer is fully satisfied with the product they receive.

Let's Start!

Ready to optimize your mold performance with high-quality angle pins?

Get in touch today to discuss your requirements or request a quote. Our team is dedicated to delivering precision solutions that drive your success.

Other Services

Mold Tooling

Plastic Part Production

Metal Part Production

CNC Machining

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