Description
Zirconium Nitride (ZrN) Micron Powder, Purity: 99.9+%, Size: 1-5 μm, Cubic Phase
Zirconium Nitride (ZrN) Micron Powder is a high-purity ceramic material known for its exceptional hardness, thermal stability, chemical resistance, and metallic luster. This powder, with a particle size ranging from 1 to 5 µm and a cubic crystal structure, is ideal for a wide range of demanding applications across various advanced industries. Its excellent conductivity, corrosion resistance, and golden hue also make it a sought-after material in microelectronics, surface coatings, and decorative sectors.
ZrN exhibits impressive mechanical strength and high-temperature endurance, making it suitable for extreme-condition environments like aerospace and high-performance engine components. Its biocompatibility expands its utility to medical and dental implants, while its optical properties are beneficial for energy-related applications such as solar absorbers and thermophotovoltaics. Due to its versatility, ZrN powder plays a critical role in modern engineering and technological solutions.
Technical Properties:
Property | Value |
---|---|
Chemical Formula | ZrN |
Purity | ≥99.9% |
Particle Size | 1–5 μm |
Crystal Structure | Cubic |
Appearance | Yellowish Gold Powder |
Density | ~7.09 g/cm³ |
Hardness (Vickers) | ~2000 HV |
Electrical Conductivity | High |
Thermal Stability | Excellent |
Melting Point | ~2980 °C |
Thermal Conductivity | ~30 W/m·K |
Oxidation Resistance | Good |
Applications:
- Protective Coatings: Enhances cutting tools, molds, and dies with high wear and oxidation resistance.
- Microelectronics: Functions as a diffusion barrier and interconnect layer in advanced CMOS processes.
- Biomedical Devices: Used in implants and surgical tools for its durability and biocompatibility.
- Decorative Finishes: Offers a luxurious gold-like sheen for watches, jewelry, and electronics.
- Energy Systems: Utilized in thermophotovoltaics and solar absorbers for its optical and thermal properties.
- Aerospace and Automotive: Suitable for harsh environments due to its thermal and chemical resilience.