Lizhou

2026-04-08

Carbide Saw Blade Tips – Lizhou Carbide

Lizhou carbide saw blade segments feature high hardness, excellent wear and high-temperature resistance, and are suitable for a wide range of applications including metalworking, woodworking, and construction. Customization is available, and we provide solutions to common issues such as chipping and reduced blade life.

More +

2026-04-01

Comparative Analysis of Mohs Hardness and Vickers Hardness of Tungsten Carbide

Lizhou Cemented Carbide systematically analyzes the hardness advantages and application value of tungsten carbide in industrial machining, mining, and other applications, starting with the tungsten carbide hardness scale (Mohs, Vickers, HRA/HRC), testing principles, industry comparisons, and common issues.

More +

2026-03-31

What is the melting point of tungsten carbide? – Lizhou Cemented Carbide

This comprehensive analysis of Lizhou Cemented Carbide covers the melting point of tungsten carbide (2,870°C), a performance comparison, and industrial applications, explaining in detail why its high melting point makes cemented carbide highly resistant to high temperatures, wear, and deformation—making it ideally suited for tools, mining, steelmaking, and other demanding applications.

More +

2026-03-28

How to Choose Positive and Negative Turning Inserts | LiZhou ISO Turning Tool Code Analysis

A Must-Read for Beginners! Lizhou Cemented Carbide Shows You How to Decode ISO Codes for Turning Inserts, Distinguish Between Positive- and Negative-Rake Inserts, Master the Three Key Selection Principles, and Resolve Common Issues Such as Poor Finish in Precision Turning and Work-Hardening When Machining Stainless Steel.

More +

2026-03-25

LiZhou Cemented Carbide Turning Tool Usage Guide

Lizhou Cemented Carbide Turning Insert Selection Guide: A detailed explanation of how to select inserts for rough turning, semi-finish turning, and finish turning, covering insert geometry, nose radius, grade analysis, and answers to frequently asked questions.

More +

< 1...678...37 > proceed page