High Temperature Resistant Silicone Rubber Disk For Zamak Centrifuge Press Mould

Basic Properties
Place of Origin: Guangdong, China
Brand Name: Yunding
Model Number: YD-S1
Trading Properties
Minimum Order Quantity: 25kg
Price: $11.5-$16.8
Payment Terms: T/T
Supply Ability: 500kg
Specifications
Tear Strength: 8.15MPa Maximum Temperature Resistance: 210℃
Elongation Performance: 97% Hardness after Vulcanization: 15-55
Vulcanization Temperature: 165℃
Product Description

High Temperature Resistant Silicone Rubber Disk for Zamak Centrifuge Press Mould

Product Introduction

This high-temperature resistant silicone rubber disk is specially developed for Zamak centrifugal casting and press moulding applications. It offers excellent heat resistance, flexibility, and dimensional stability, allowing the production of high-quality silicone moulds with consistent performance and long service life.

Applications

Widely used for manufacturing moulds for Zamak badges, medals, lapel pins, jewelry, brooches, souvenir coins, keychains, fishing lures, decorative hardware, garment accessories, and other precision metal products.

Compatible Equipment

Suitable for silicone rubber press moulding machines and manual, semi-automatic, and fully automatic centrifugal casting machines. It is compatible with various mould frame sizes commonly used in spin casting production.

High Temperature Resistant Silicone Rubber Disk For Zamak Centrifuge Press Mould 0

High Temperature Resistant Silicone Rubber Disk For Zamak Centrifuge Press Mould 1

High Temperature Resistant Silicone Rubber Disk For Zamak Centrifuge Press Mould 2

Product Features

  • Excellent high-temperature resistance for repeated vulcanization.
  • Superior elasticity for easy mould release and reduced deformation.
  • High tear strength and wear resistance for extended mould life.
  • Outstanding detail reproduction for sharp patterns and smooth surfaces.
  • Stable dimensions to improve casting consistency and reduce defects.
  • Ideal for both sample production and mass manufacturing.