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Sapphire Rods Tips Customized Polished Optical Rods Premium Micro Sapphire Rods

Product Details

Place of Origin: CHINA

Brand Name: ZMSH

Certification: rohs

Model Number: Sapphire rods

Payment & Shipping Terms

Price: by case

Delivery Time: 2-4weeks

Payment Terms: T/T

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customized polished optical rods

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premium micro sapphire rods

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customized polished sapphire rods

Material::
Monocrystalline Al2O3
Density::
3.98 G/cm3
Hardness::
9 (Mohs)
Color::
Transparent
Size::
Customized
Growth Method::
Ky
Material::
Monocrystalline Al2O3
Density::
3.98 G/cm3
Hardness::
9 (Mohs)
Color::
Transparent
Size::
Customized
Growth Method::
Ky
Sapphire Rods Tips Customized Polished Optical Rods Premium Micro Sapphire Rods

Sapphire Rods Tips Customized Polished Optical Rods Premium Micro Sapphire Rods 0

Sapphire rods abstract

 
 

Sapphire rods tips customized polished optical rods premium micro sapphire rods
 
 
Sapphire rod is a cylindrical material made of high purity single crystal sapphire (Al₂O₃), which is widely used in semiconductor, photoelectric and scientific research fields due to its excellent physical and chemical properties. Its high hardness, high temperature resistance, corrosion resistance and excellent optical properties make it an ideal material for semiconductor manufacturing and high-end devices.
 

 

 

Sapphire rods Features

Sapphire Rods Tips Customized Polished Optical Rods Premium Micro Sapphire Rods 1
1. High hardness and wear resistance: sapphire has a Mohs hardness of 9, second only to diamond, which can resist mechanical wear and prolong service life.
 
 
2. High temperature resistance: sapphire rod can work stably in high temperature environment below 2000°C, suitable for semiconductor high temperature process.
 
 
3. Excellent chemical stability: Strong corrosion resistance to acids, alkalis and most chemical solvents, suitable for harsh chemical environments.
 
 
4. High transmittance: Excellent optical transmittance in the ultraviolet to infrared band, suitable for optical and photoelectric applications.
 
 
5. Low coefficient of thermal expansion: Low coefficient of thermal expansion ensures dimensional stability in high temperature environment and reduces deformation caused by thermal stress.
 
 


 

Sapphire rods data

 

Chemical formulaAl2O3
Crystal classHexagonal system, rhomboidal class 3m
Density, g/cm33.98
Melting point, °K2303
Optical transmission range, µm0.17 - 5.5
Refractive index at 0.532 µmn0=1.7717, ne=1.76355
Water absorptionnil
Young Modulus, Gpa345
Shear Modulus, Gpa145
Bulk Modulus, Gpa240

 

 


 

Sapphire rods application

Sapphire Rods Tips Customized Polished Optical Rods Premium Micro Sapphire Rods 2
 
1. Semiconductor manufacturing:
 
· Wafer processing: Support rods for wafer cutting, grinding and polishing to ensure high precision machining.
· High temperature furnace tube: as a support or guide rod in high temperature furnace, resistant to high temperature and corrosive gases.
 
 
2. Photoelectric equipment:
 
· LED manufacturing: Used for substrate support rods in MOCVD equipment to ensure uniform epitaxial growth.
· Laser: As a support rod for optical components in lasers, providing high stability and optical performance.
 
 
3. Scientific research experiments:
 
· High temperature experiment: as a sample support rod under high temperature environment, to ensure the stability and accuracy of the experiment.
· Vacuum equipment: Support or guide rods used in vacuum chambers to withstand extreme environments.
 
 


 

Sapphire rods display

 
Sapphire Rods Tips Customized Polished Optical Rods Premium Micro Sapphire Rods 3Sapphire Rods Tips Customized Polished Optical Rods Premium Micro Sapphire Rods 4

 

 


 

Q&A​

 
1. Q: What are sapphire rods used for?
    A: Sapphire rods are used in semiconductor manufacturing, LED production, and high-temperature experiments due to their high hardness, thermal stability, and chemical resistance.

 
2. Q: Why are sapphire rods preferred in high-temperature applications?
    A: Sapphire rods are preferred for high-temperature applications because they can withstand temperatures up to 2000°C while maintaining structural stability and chemical inertness.

 
 
 
 
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