Milky White Quartz Apparatus Quartz Products Terminal Base For Semiconductor

Place of Origin China
Brand Name ZKTD
Certification SGS, ISO 9001
Model Number ZKTD
Minimum Order Quantity 1Pcs
Price USD 50-150 Pcs or as negotiated
Packaging Details Wooden box, Pearl cotton, Carton
Delivery Time 5-8 Workdays
Payment Terms L/C,D/A,D/P,T/T
Supply Ability 100 Pcs / day
Product Details
Material Required Tolerance ±0.1
MOQ 1PCS Shape Customized
Hot Work Temperature 1750~2050℃
Highlight

milky white quartz products

,

quartz products tel base

,

semiconductor quartz products

Leave a Message
Product Description

Milky White Quartz Apparatus Quartz Products Terminal Base For Semiconductor 


Semiconductor: Quartz glass is an indispensable material in the production process of semiconductor materials and devices, such as crucibles for growing germanium, silicon single crystals, boat furnace core tubes and bell jars, etc., all need to be used.


Products features:

Clear and clean,

High homogeneity

High temperature resistant

High light transmission

Anti chemistry attack


Working temperature:

Regular working temperature: 1000°C

Working temperature for short term:1100°C

instant working max temperature:1300°C


Mechanical Property:

Mechanical Property Reference Value Mechanical Property Reference Value
Density 2.203g/cm3 Refractive Index 1.45845
Compressive Strength >1100Mpa Coefficient of thermal expansion 5.5×10-7cm/cm.°C
Bending Strength 67Mpa Hot work temperature 1750~2050°C
Tensile Strength 48.3Mpa The temperature for a short time 1300°C
Poisson's Ratio 0.14~0.17 The temperature for a long time 1100°C
Elastic Modulus 71700Mpa Resistivity 7×107Ω.cm
Shearing Modulus 31000Mpa Dielectric Strength 250~400Kv/cm
Moths Hardness 5.3~6.5(Moths Scale) Dielectric Constant 3.7~3.9
Deformation Point 1280°C Dielectric absorption coefficient <4×104
Specific Heat(20~350°C) 670J/kg °C Dielectric loss coefficient <1×104
Thermal Conductivity(20°C) 1.4W/m °C

Milky White Quartz Apparatus Quartz Products Terminal Base For Semiconductor 0