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Characteristics and Applications of Titanium Carbide, Silicon Carbide, and Cemented Carbide Materials

Characteristics and Applications of Titanium Carbide, Silicon Carbide, and Cemented Carbide Materials

Characteristics and Applications of Titanium Carbide, Silicon Carbide, and Cemented Carbide Materials

In the “material universe” of industrial manufacturing, titanium carbide (TiC), silicon carbide (SiC), and cemented carbide (typically based on tungsten carbide – cobalt, etc.) are three shining “star materials”. With their unique properties, they play pivotal roles in various fields. Today, we’ll take an in – depth look at the differences in properties among these three materials and the scenarios where they excel!

I. A Head – to – Head Comparison of Material Properties

Material TypeHardness (Reference Value)Density (g/cm³)Wear ResistanceHigh – Temperature ResistanceChemical StabilityToughness
Titanium Carbide (TiC)2800 – 3200HV4.9 – 5.3Excellent (dominated by hard phases)Stable at ≈1400℃Resistant to acids and alkalis (except strong oxidizing acids)Relatively low (brittleness is more prominent)
Silicon Carbide (SiC)2500 – 3000HV (for SiC ceramics)3.1 – 3.2Outstanding (bolstered by covalent bond structure)Stable at ≈1600℃ (in ceramic state)Extremely strong (resistant to most chemical media)Moderate (brittle in ceramic state; single crystals have toughness)
Cemented Carbide (WC – Co as an example)1200 – 1800HV13 – 15 (for WC – Co series)Exceptional (WC hard phases + Co binder)≈800 – 1000℃ (depends on Co content)Resistant to acids, alkalis, and abrasive wearRelatively good (Co binder phase enhances toughness)

Property Breakdown:

II. Application Fields in Full Swing

1. Cutting Tool Field

2. Wear – Resistant Component Field

3. Electronics/Semiconductor Field

III. How to Choose?

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