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C Axis Synthetic Sapphire Glass Optical Grade 99.999% Sapphire Rod

Jingjing Technology (Hubei) Co., Ltd
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    Buy cheap C Axis Synthetic Sapphire Glass Optical Grade 99.999% Sapphire Rod from wholesalers
     
    Buy cheap C Axis Synthetic Sapphire Glass Optical Grade 99.999% Sapphire Rod from wholesalers
    • Buy cheap C Axis Synthetic Sapphire Glass Optical Grade 99.999% Sapphire Rod from wholesalers
    • Buy cheap C Axis Synthetic Sapphire Glass Optical Grade 99.999% Sapphire Rod from wholesalers

    C Axis Synthetic Sapphire Glass Optical Grade 99.999% Sapphire Rod

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    Brand Name : Jingjing
    Payment Terms : T/T,Western Union,
    Supply Ability : 100000 pcs/Month
    Delivery Time : 1-4 weeks
    Certification : ISO9001
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    C Axis Synthetic Sapphire Glass Optical Grade 99.999% Sapphire Rod

    Fine grinding C-axis Synthetic Sapphire single crystal for Industry

    Why choose Sapphire?
    One of the hardest materials available
    Superior IR & UV transmission compared to other optical materials
    Highly scratch & abradant resistant
    Highly chemical resistant
    Maximum temperature rating of almost 2000℃
    Excellent dielectric & loss tangent performance


    Sapphire is composed of alumina, and its crystal structure is hexagonal lattice structure.
    Synthetic sapphire common application facets are A-Plane,C-Plane, and R-Plane. Due to the wide optical penetration band of sapphire, it has good light transmission from near ultraviolet (190nm) to mid-infrared. Therefore, it is widely used in optical components, infrared devices, high-intensity laser lens materials.
    Sapphire also has the characteristics of high sound velocity, high temperature resistance, corrosion resistance, high hardness, high light transmittance, high melting point (2045℃), etc., so it is often used as a material for photoelectric components.



    Properties of Single Crystal Sapphire

    Chemical formulaAl₂O₃
    Purity99.999%
    Crystal structureHexagonal
    Hardness Mohs9
    Fusion point2045℃
    Boiling point2980℃
    Coefficient of Thermal Expansion5.8×10 -6 /K
    Specific heat0.418W.s/g/k
    Thermal conduction25.12W/m/k(@100°C)
    Refractive indexno=1.768 ne=1.760
    dn/dt13×10-6/K(@633nm)
    TransmissionT≈80%(0.3-5μm)
    Permittivity11.5(//c), 9.3(⊥c)

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