Electric Fused Quartz Ingot for Semiconductor, Optics and High Temperature Applications

The Electric Fused Quartz Ingot is a high-purity fused quartz material produced by electric fusion technology. It is designed for applications requiring low hydroxyl content, high chemical purity, excellent thermal stability, and reliable performance in high-temperature environments.

The Electric Fused Quartz Ingot is a high-purity fused quartz material produced by electric fusion technology. It is designed for applications requiring low hydroxyl content, high chemical purity, excellent thermal stability, and reliable performance in high-temperature environments.

This material is commonly supplied as a quartz ingot, cylinder, ring blank, or machined quartz blank. It can be further processed into quartz windows, rings, discs, plates, flanges, viewports, semiconductor quartz parts, and customized precision components.

With low metallic impurity levels, good dimensional stability, and strong resistance to thermal stress, electric fused quartz ingots are widely used in semiconductor diffusion, annealing, etching, microelectronics, aerospace, optics, laser systems, and other high-end technical fields.

Características principales

High Purity Fused Quartz Material

The material has controlled metallic impurity content and is suitable for demanding thermal, optical, and semiconductor-related applications.

Low Hydroxyl Content

Low OH content helps improve material stability during high-temperature use, especially in processes involving repeated heating cycles.

Excellent High Temperature Resistance

Electric fused quartz provides strong resistance to elevated temperatures and maintains good structural stability under proper operating conditions.

Good Optical and Thermal Stability

The material offers reliable thermal behavior, low thermal expansion, and good optical consistency, making it suitable for precision optical and industrial components.

Suitable for Precision Machining

Quartz ingots can be cut, ground, polished, drilled, and machined into customized quartz components according to drawings or samples.

Standard Product Information

Artículo Especificación
Nombre del producto Electric Fused Quartz Ingot
Material High-purity electric fused quartz
Product Forms Quartz ingot, quartz cylinder, quartz ring blank, quartz block, custom quartz blank
Appearance Translucent to semi-transparent fused quartz
Production Process Electric fusion
Processing Methods Cutting, grinding, polishing, drilling, CNC machining, fire polishing
Customization Diameter, height, thickness, flatness, surface finish, holes, grooves, steps, and special shapes
Campos de aplicación Semiconductor, microelectronics, optics, laser, aerospace, high-temperature equipment

Typical Chemical Purity

Element High Purity Grade Enhanced Low-Impurity Grade
Al 8 ppm 0.1 ppm
Li 0.5 ppm 0.4 ppm
B 0.1 ppm 0.1 ppm
Na 0.6 ppm 0.09 ppm
Mg 0.1 ppm 0.01 ppm
K 0.5 ppm 0.03 ppm
Ca 0.6 ppm 0.45 ppm
Ti 0.1 ppm 0.08 ppm
Fe 0.35 ppm 0.2 ppm
Co 0 ppm 0 ppm
Ni 0.1 ppm 0.1 ppm
Mn 0.05 ppm 0.03 ppm
Cu 0.5 ppm 0.01 ppm
OH 15 ppm 10 ppm

The values above are typical reference data. Actual impurity levels may vary by batch and can be confirmed by inspection report or material certificate when required.

Typical Physical Properties

Category Propiedad Valor típico
Mechanical Properties Densidad Approx. 2.2 g/cm³
Mechanical Properties Dureza Mohs 6 a 7
Mechanical Properties Poisson’s Ratio Approx. 0.17
Mechanical Properties Resistencia a la tracción Approx. 4.9 × 10⁷ Pa
Mechanical Properties Resistencia a la compresión >1,1 × 10⁹ Pa
Mechanical Properties Resistencia a la flexión Approx. 65–95 MPa
Mechanical Properties Resistencia a la torsión Approx. 30 MPa
Propiedades eléctricas Constante dieléctrica Approx. 3.74
Propiedades eléctricas Loss Factor <1 × 10⁻³
Propiedades eléctricas Resistividad a 20°C Approx. 1 × 10¹⁶ Ω·m
Propiedades térmicas Coefficient of Thermal Expansion Approx. 5.2–5.8 × 10⁻⁷/K
Propiedades térmicas Specific Heat at 20°C Approx. 749 J/kg·K
Propiedades térmicas Thermal Conductivity at 20°C Approx. 1.38 W/m·K
Propiedades térmicas Punto de deformación Approx. 1070°C
Propiedades térmicas Punto de recocido Approx. 1150°C
Propiedades térmicas Punto de ablandamiento Approx. 1670°C

These values are typical reference properties of fused quartz. Actual performance depends on size, machining condition, surface finish, thermal history, and operating environment.

Main Applications

Application Area Uso típico
Procesado de semiconductores Quartz parts for diffusion, annealing, etching, and thermal processing
Microelectronics High-purity quartz components for precision process environments
Optical Industry Quartz windows, plates, lenses, discs, and optical support parts
Sistemas láser Heat-resistant and optically stable quartz components
Aeroespacial High-temperature quartz parts and precision insulating components
Equipos de laboratorio Viewports, reaction parts, and high-temperature observation components
Precision Machining Raw material for quartz rings, flanges, cylinders, blocks, and custom parts

Product Advantages

The Electric Fused Quartz Ingot is suitable for customers requiring high-purity quartz material with low hydroxyl content and strong high-temperature performance. Its low impurity profile helps reduce contamination risk in sensitive thermal and optical applications.

Compared with ordinary quartz material, electric fused quartz offers better consistency for precision machining and high-temperature use. It can be processed into a wide range of customized quartz parts, including rings, windows, discs, plates, blocks, flanges, viewports, and complex machined quartz components.

For semiconductor applications, final material selection should consider impurity limits, OH content, surface finish, cleaning method, packaging requirements, and actual process environment.

Custom Processing Options

Custom Item Available Options
Shape Customization Ingot, cylinder, ring blank, block, disc, plate, window, flange, special shape
Dimensional Processing Diameter, height, thickness, inner hole, groove, step, chamfer, flatness
Acabado superficial Ground surface, polished surface, frosted surface, fire-polished surface
Machining Method Cutting, drilling, grinding, polishing, CNC machining, thermal processing
Drawing Support OEM fabrication according to drawings or samples
Inspection Support Dimensional inspection, visual inspection, impurity data, OH content, material certificate

Quality Control

Inspection Item Descripción
Appearance Inspection Check visible bubbles, inclusions, cracks, chips, scratches, and surface defects
Inspección dimensional Diameter, height, thickness, inner diameter, flatness, and tolerance control
Material Verification Chemical impurity data and OH content can be confirmed when required
Processing Inspection Surface finish, edge quality, hole position, groove structure, and special machining details
Packaging Inspection Protective packaging according to product size, surface condition, and cleanliness requirements

PREGUNTAS FRECUENTES

1. What is an electric fused quartz ingot?

An electric fused quartz ingot is a high-purity quartz material produced by electric fusion. It is usually supplied as an ingot, cylinder, ring blank, or block and can be further machined into precision quartz components.

2. What are the main advantages of electric fused quartz?

Its main advantages include high purity, low hydroxyl content, excellent high-temperature resistance, low thermal expansion, good electrical insulation, and suitability for precision machining.

3. What applications is this material suitable for?

It is suitable for semiconductor diffusion, annealing, etching, optical components, laser systems, microelectronics, aerospace parts, laboratory equipment, and customized quartz components.

4. Can it be machined into custom quartz parts?

Yes. It can be processed into quartz rings, windows, discs, plates, flanges, cylinders, blocks, viewports, and special-shaped quartz parts according to drawings or samples.

5. Is this material suitable for semiconductor processes?

Yes, it can be used for semiconductor-related quartz components. For contamination-sensitive wafer processes, impurity level, OH content, surface condition, cleaning method, and packaging standard should be confirmed before selection.

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