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Created with Pixso. Quartz Ingot for Optical, Semiconductor & High-Temperature Applications

Quartz Ingot for Optical, Semiconductor & High-Temperature Applications

الاسم التجاري: ZMSH
الـ MOQ: 10
وقت التسليم: 2-4 أسابيع
شروط الدفع: تي/تي
معلومات مفصلة
مكان المنشأ:
شنغهاي، الصين
الكثافة (جم / سم مكعب):
2.2
صلابة موس:
6-7
قوة الضغط (ميغاباسكال):
1100
قوة الشد (ميغاباسكال):
50
قوة الانحناء (MPA):
65
قوة الالتواء (MPA):
30
معامل يونغ (MPa):
7.5 × 10⁴
نسبة بواسون:
0.17
معامل التمدد الحراري (20-320 درجة مئوية):
5.5 × 10⁻⁷ ك⁻¹
نقطة السلالة:
1080 درجة مئوية
وصف المنتج

Quartz Ingot for Optical, Semiconductor & High-Temperature Applications


Product Overview


ZMSH high-purity Quartz Ingots are manufactured using premium silica raw materials and advanced melting technology to achieve exceptional optical clarity, structural uniformity, and outstanding thermal and chemical stability.


With extremely low bubble content, high transmission, and precise geometry, our quartz ingots are ideal for demanding applications in semiconductors, solar energy, optics, and high-temperature processing environments.



Quartz Ingot for Optical, Semiconductor & High-Temperature Applications 0Quartz Ingot for Optical, Semiconductor & High-Temperature Applications 1



Material Description


Quartz is a hard, crystalline mineral composed of silica (SiO₂). Its internal structure forms a stable three-dimensional Si-O network, giving quartz glass its unique combination of:

  • Excellent optical transparency

  • High thermal stability

  • Low thermal expansion

  • Strong chemical resistance

  • High mechanical strength


These properties make quartz ingots suitable for precision optical components and high-performance industrial applications.


Specifications


1. Mechanical Properties


Property Value
Density (g/cm³) 2.2
Mohs Hardness 6–7
Compressive Strength (MPa) 1100
Tensile Strength (MPa) 50
Bending Strength (MPa) 65
Torsional Strength (MPa) 30
Young’s Modulus (MPa) 7.5 × 10⁴
Poisson Ratio 0.17


2. Thermal Properties


Property Value
Thermal Expansion Coefficient (20–320°C) 5.5 × 10⁻⁷ K⁻¹
Thermal Conductivity (20°C) 1.4 W·m⁻¹·K⁻¹
Specific Heat (20°C) 670 J·kg⁻¹·K⁻¹
Softening Point 1630°C
Annealing Temperature 1180°C
Strain Point 1080°C


3. Electrical Properties


Property Value
Resistivity (20°C) 1 × 10²⁰ Ω·m
Resistivity (1000°C) 1 × 10⁸ Ω·m
Dielectric Constant (10 GHz) 3.74
Dielectric Loss Factor (10 GHz) 0.0002
Dielectric Strength 3.7 × 10⁷ V·m⁻¹


Key Features


  • Ultra-low bubble content for superior optical performance

  • High transparency across UV–Visible–IR ranges

  • Excellent geometric precision and consistency

  • High utilization rate for further processing

  • Outstanding thermal and chemical stability


Applications


ZMSH Quartz Ingots are widely used in:

  • Solar & Photovoltaic Components

  • Optical Coating and Thin-Film Processing

  • Laboratory & Analytical Instruments

  • Chemical and High-Temperature Industries

  • Semiconductor Manufacturing & Fabrication


Packaging & Handling


ZMSH Quartz Ingots are packaged with reinforced protection materials and handled under strict quality protocols to prevent contamination, surface damage, or thermal stress during storage and shipping.


FAQ


1. What is the purity level of ZMSH Quartz Ingots?


Our quartz ingots are produced from high-purity silica materials with extremely low metallic and hydroxyl (OH) content. Purity levels can be customized depending on application requirements, especially for semiconductor and optical-grade use.


2. Can the quartz ingots be customized in size or shape?


Yes. ZMSH supports custom diameters, lengths, and geometry, as well as machining services such as slicing, polishing, drilling, and coating to meet specific process needs.


3. Are quartz ingots resistant to high temperatures?


Absolutely. Quartz ingots exhibit excellent thermal stability, featuring:

  • Softening point: ≈1630°C

  • Strain point: ≈1080°C
    This makes them ideal for high-temperature industrial processes, semiconductor furnace parts, and optical thermal environments.


4. What industries typically use quartz ingots?


Quartz ingots are widely used in:

  • Semiconductor manufacturing

  • Solar & photovoltaic components

  • Optical coating / thin film deposition

  • High-purity laboratory equipment

  • Chemical & thermal processing systems


5. How are quartz ingots packaged to ensure safe delivery?


Each ingot is packed using shock-resistant foam, dust-free wraps, and rigid wooden or reinforced cartons. All packaging is designed to protect against vibration, contamination, thermal stress, and surface scratches during transportation.



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