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Sapphire Tube 99.999% AL2O3 Polished High Hardness Ion Source Customization EFG KY
Sapphire tubes are the best high-pressure containers and transport plumbing for many high-pressure systems. A sapphire tube can handle extreme pressures while allowing for safe observation and spectral analysis of fluids and gasses. Sapphire tubes can be used in hostile environments to house sensitive sensors, protecting the sensors against pressure and mechanical abuse. Sapphire rods are superior for rod bearing and standoff applications that involve high abrasion and wear while maintaining dimensional stability.
A sapphire tube is the ideal lamp material for UV and IR lamps because it can go far deeper into the UV and IR than any other lamp material. With its thermal robustness, a sapphire lamp can be exposed to extreme plasmas and temperatures, far greater than any other material, and continue to transmit high-powered UV, visible, and IR for years with no degradation.
Hardness: Sapphire is one of the hardest materials, second only to
diamond, making it highly scratch-resistant and durable.
Transparency: Sapphire has excellent optical properties, allowing
light to pass through with high clarity. This makes sapphire tubes
ideal for applications requiring optical transmission.
Chemical Resistance: Sapphire is highly resistant to chemical
corrosion, making it suitable for use in harsh environments.
Temperature Resistance: Sapphire can withstand high temperatures,
making it suitable for applications where heat resistance is
important.
Electrical Insulation: Sapphire is an excellent electrical
insulator, which is beneficial in various electronic and
semiconductor applications.
Compound Formula | Al2O3 |
---|---|
Molecular Weight | 101.96 |
Appearance | Translucent tubes |
Melting Point | 2050 °C (3720 °F) |
Boiling Point | 2,977° C (5,391° F) |
Density | 4.0 g/cm3 |
Morphology | Trigonal (hex), R3c |
Solubility in H2O | 98 x 10-6 g/100g |
Refractive Index | 1.8 |
Electrical Resistivity | 17 10x Ω-m |
Poisson's Ratio | 0.28 |
Specific Heat | 760 J Kg-1 K-1 (293K) |
Tensile Strength | 1390 MPa (Ultimate) |
Thermal Conductivity | 30 W/m-K |
Thermal Expansion | 5.3 µm/m-K |
Young's Modulus | 450 GPa |
Exact Mass | 101.948 g/mol |
Monoisotopic Mass | 101.94782 Da |
1. Optics: Sapphire tubes are used in optics for their high optical
clarity and transparency. They are employed in lenses, windows, and
other optical components where durability and scratch resistance
are essential.
2. Lasers: Sapphire tubes are utilized in laser systems as laser
rod housings or optical components due to their high thermal
conductivity and resistance to laser damage.
3. Semiconductor Industry: Sapphire tubes are used in semiconductor
manufacturing processes for their excellent insulating properties
and resistance to high temperatures and corrosive chemicals.
4. Medical Devices: In medical equipment, sapphire tubes are used
for endoscopes, probes, and other applications where
biocompatibility, durability, and optical clarity are crucial.
5. High-Pressure and High-Temperature Environments: Sapphire tubes
are employed in high-pressure and high-temperature applications,
such as in extreme industrial environments or research settings.
6. Chemical Processing: Sapphire tubes are resistant to many
chemicals and are used in chemical processing equipment where
resistance to corrosion is necessary.
7. Aerospace and Defense: Sapphire tubes find applications in
aerospace and defense industries for various purposes, including
missile guidance systems, sensor protection, and optical equipment.
8. Research and Scientific Instruments: Sapphire tubes are used in
research and scientific instruments where high precision,
durability, and optical performance are required.
1.Q:What is the pressure in the sapphire tube?
A:Strong material stiffness allows sapphire tubes to bear high pressures even at high temperatures. Sapphire capillaries can hold up to a couple of hundred bar.
2. Q: Why sapphire tube is the ideal lamp material for UV and IR lamps?
A: Because it can go far deeper into the UV and IR than any other lamp material. With its thermal robustness, a sapphire lamp can be exposed to extreme plasmas and temperatures, far greater than any other material, and continue to transmit high-powered UV, visible, and IR for years with no degradation.
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