Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy

Product Details
Customization: Available
Warranty: 1 Year
Application: Mold
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  • Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
  • Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
  • Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
  • Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
  • Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
  • Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
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  • Overview
  • Product Description
  • Detailed Photos
  • Company Profile
  • Our Advantages
Overview

Basic Info.

Model NO.
CSX2003
Material
Hard Alloy and Steel Bonded Carbide
Processing Method
Punching and Shearing Mould
Technics
Forming Die
Process Combination
Composite Mould
Manufacturing Technology
Automation Technology
Driving Motor Type
Hybrid
Mold Cavity Technology
CNC Milling
Milling Speed
High Speed
Parts Detection Method
Measurement of Three Axis NC
After-sales Service
1 Year
Mateiral
Tungsten Carbide
Grade
Yg6, Yg8, Yg10 or Others
Features
High Hardness
Size
Customizable
Shape
Customizable
Product Name
Carbide Punch
Transport Package
Carton
Specification
Customizable
Trademark
Customizable
Origin
China
Production Capacity
10000 PCS/Month

Product Description

Product Description


Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy

The High Hardness Tungsten Carbide Alloy Shear Notch Punch, manufactured by Zhuzhou Sanxin Cemented Carbide Manufacturing Co., Ltd., is designed to meet the specific drawing requirements of customers. Unlike conventional carbide punches, this notch punch features a unique design for precision cutting in hardware and plastic operations. The notch serves as the cutting edge, ensuring continuous, stable performance with exceptional accuracy and a long service life.

With high wear resistance and durability, this tungsten carbide punch is ideal for precision stamping molds, especially in long-term collaborative operations with mechanical equipment like progressive dies and multi-station dies. The high hardness, strength, and wear resistance of tungsten carbide make it the preferred material for stamping dies, providing reliable performance over extended periods. Customized to meet individual drawing specifications, this notch punch guarantees quality and precision in production operations.

Detailed Photos

 
Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy
 

Company Profile

Zhuzhou Sanxin Cemented Carbide Manufacturing Co., Ltd.

Our product line includes a wide range of cemented carbide products such as nozzles, bushings & sleeves, sealing rings, molds, inserts, mill rollers, and customized components. Cemented carbide is a composite hard alloy material made of refractory metal bonded by a metallic binder through powder metallurgy. Its exceptional properties include high hardness, wear resistance, strength, and toughness, making it ideal for use in industrial parts and tools in harsh environments. Tungsten carbide and tungsten alloy are commonly recognized as the best materials for cemented carbide, also known as metal ceramic.

Ultra-Sharp Tungsten Carbide Alloy Punch for Accuracy

Our Advantages

Our company is specializing in producing and manufacturing hard alloy insert pins for precision mold customers. It is used with electronic ceramic injection molds. The precision requirements are very high, and the perfect consistency of products is the primary standard of this set of products. The tungsten carbide punching pin equipped in electronic ceramic precision mold is used in large number, and each insert pin is required to maintain good consistency. This requires that the finishing process must strictly control each processing procedure. Our company can produce the hard alloy insert pins according to the requirements of the precision mold manufacturer. The consistency of the products can be guaranteed, and the tolerance requirements are +0.002. The finish of the punch needles is required to be 0.2, which meets the highest requirements of applications in electronic ceramic injection molds.
 

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