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Zhuzhou Sanxin Cemented Carbide Manufacturing Co., Ltd
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Super Strength Thermal Stability Cemented Carbide Mold Washer

Product Details:
Place of Origin: China
Brand Name: Sanxin
Certification: ISO
Model Number: SX1217
Payment & Shipping Terms:
Minimum Order Quantity: 1 piece
Price: Negotiable
Packaging Details: Safety Packing
Delivery Time: 15~45 Days
Payment Terms: L/C, T/T, Western Union
Supply Ability: 10-50000pcs/month
  • Detail Information
  • Product Description

Detail Information

Name: Cemented Carbide Mold Washer Material: 100% Virgin Solid Carbide
Surface: Mirror Polishing Hardness: High
Material Formula: Customized Application: Molding Industry
Service: OEM & ODM Customization: Available Upon Request
Highlight:

cold heading dies

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progressive punching die

Product Description

Super Strength Thermal Stability Cemented Carbide Mold Washer

Hard alloy cemented carbide mold washers are primarily used in injection molding applications. They are inserted between the mold and the molding machine to provide a wear-resistant and durable interface. The washer helps to distribute the clamping force evenly, protect the mold surface, and enhance the overall lifespan of the mold.

 

Product Features:

1.Wear resistance: Hard alloy materials have excellent wear resistance, allowing them to withstand the repeated friction and pressure encountered during the injection molding process.
2.High hardness: Tungsten carbide-based alloys are exceptionally hard, providing resistance against deformation or damage caused by the clamping forces.
3.Thermal stability: Hard alloys can withstand elevated temperatures encountered during the molding process without significant degradation or softening.
4.Corrosion resistance: Tungsten carbide-based alloys are generally resistant to corrosion, providing protection against chemical exposure.

 

Applications: 

Cutting Tools: Tungsten carbide blanks are widely used in the manufacturing of cutting tools such as inserts, drills, end mills, reamers, and saw blades. The high hardness and wear resistance of tungsten carbide make it ideal for cutting and machining operations in industries like automotive, aerospace, metalworking, and woodworking.
Wear Parts: Tungsten carbide blanks are used to produce wear parts that are subjected to high levels of abrasion, such as nozzles, seals, bearings, valve components, and pump parts. Tungsten carbide's exceptional hardness and resistance to wear make it suitable for applications in oil and gas, mining, chemical processing, and other industries where severe wear conditions are present.
Dies and Molds: Tungsten carbide blanks are utilized in the production of dies and molds for metal stamping, forging, and casting processes. Their high hardness and resistance to deformation allow for precise shaping and forming of materials, leading to consistent and accurate parts production.
Tooling Components: Tungsten carbide blanks are employed in tooling components like punches, dies, gauges, and fixtures. These components are used in various industries, including automotive, electronics, and medical device manufacturing, to ensure precise and repeatable production processes.
Wear-resistant Coatings: Tungsten carbide blanks can be used as a base material for wear-resistant coatings. These coatings are applied to surfaces that require enhanced wear resistance, such as cutting tools, machine components, and wear plates. The tungsten carbide coating provides a hard and durable surface that extends the lifespan of the coated parts.
Mining and Construction Tools: Tungsten carbide blanks are utilized in the production of tools for mining, drilling, and construction applications. Examples include drill bits, teeth for excavators and road milling machines, and wear parts for rock drilling tools. The exceptional hardness and toughness of tungsten carbide make it suitable for withstanding the demanding conditions encountered in these industries.
Aerospace and Defense Components: Tungsten carbide blanks are used in the production of components for aerospace and defense applications. These can include turbine blades, armor-piercing projectiles, missile components, and high-precision parts that require excellent strength, wear resistance, and dimensional stability.

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