Flame Fused High Purity Quartz Ingot for Semiconductor and High Temperature Applications

The Flame Fused High Purity Quartz Ingot is a high-purity quartz material designed for semiconductor-related processing, high-temperature viewports, optical components, and precision quartz machining. With low metallic impurities, low alkali content, minimal visible bubbles and inclusions, and strong high-temperature resistance, it is a reliable raw material for customized quartz components used in demanding industrial and technical applications.

Flame Fused High Purity Quartz Ingot for Semiconductor and High Temperature ApplicationsThe Flame Fused High Purity Quartz Ingot is produced from high-purity quartz sand and formed into quartz ingots or quartz cylinders through a flame fusion process. It is designed for applications that require high material purity, low metallic impurity levels, excellent thermal stability, and reliable optical or structural performance.

This material features low aluminum content, low alkali metal content, minimal visible bubbles and inclusions, and strong resistance to high-temperature environments. It is suitable for high-temperature viewports, semiconductor etching processes, precision quartz components, optical parts, and other applications where purity and thermal stability are important.

The quartz ingot can be further processed into quartz plates, rings, windows, cylinders, discs, flanges, and customized quartz components according to customer drawings.

Belangrijkste kenmerken

High Purity Quartz Material

The material is made from high-purity quartz sand, with controlled metallic impurities. This makes it suitable for applications where contamination control and material stability are important.

Low Aluminum and Low Alkali Content

Low aluminum, sodium, potassium, lithium, and other alkali-related impurities help improve material reliability in optical, thermal, and semiconductor-related environments.

Minimal Bubbles and Inclusions

The flame fused process can produce quartz material with low visible bubble and inclusion levels, making it suitable for precision machining, viewports, and optical-related components.

Strong High Temperature Resistance

The material maintains good structural stability under elevated-temperature conditions when used within proper operating limits.

Suitable for Custom Machining

Quartz ingots and cylinders can be machined into customized quartz parts, including windows, rings, discs, plates, holders, and special-shaped components.

Standard Product Forms

Item Beschrijving
Productnaam Flame Fused High Purity Quartz Ingot
Materiaal High-purity fused quartz
Production Process Flame fusion
Typical Forms Quartz ingot, quartz cylinder
Appearance Translucent to semi-transparent quartz material
Processing Options Cutting, grinding, polishing, drilling, CNC machining, fire polishing
Customization Diameter, height, thickness, flatness, surface finish, special shapes and drawings

Typical Chemical Purity

Element Typische waarde
Al 8 ppm
Li 0.03 ppm
B 0 ppm
Na 0.2 ppm
Mg 0.1 ppm
K 0.15 ppm
Ca 0.2 ppm
Ti 0.12 ppm
Fe 0.3 ppm
Co 0 ppm
Ni 0 ppm
Mn 0.01 ppm
Cu 0.01 ppm
OH 200 ppm

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

Typical Physical Properties

Category Eigendom Typische waarde
Mechanical Properties Dichtheid Approx. 2.2 g/cm³
Mechanical Properties Mohs hardheid 6 tot 7
Mechanical Properties Poisson’s Ratio Approx. 0.16
Mechanical Properties Treksterkte Approx. 49 MPa
Mechanical Properties Druksterkte Approx. 1100 MPa
Mechanical Properties Buigsterkte Approx. 65 MPa
Mechanical Properties Torsiesterkte Approx. 30 MPa
Elektrische eigenschappen Diëlektrische constante Approx. 3.74
Elektrische eigenschappen Loss Factor Approx. 0.0002
Elektrische eigenschappen Weerstand bij 20°C Approx. 1 × 10¹⁶ Ω·m
Thermische eigenschappen Coefficient of Thermal Expansion Approx. 5.2–5.8 × 10⁻⁷/K
Thermische eigenschappen Specific Heat at 20°C Approx. 749 J/kg·K
Thermische eigenschappen Thermal Conductivity at 20°C Approx. 1.38 W/m·K
Thermische eigenschappen Spanningspunt Approx. 1080°C
Thermische eigenschappen Verzachtingspunt Approx. 1700°C
Thermische eigenschappen Gloeipunt Approx. 1180°C

These values are typical reference properties of fused quartz materials. Actual performance depends on material size, processing method, surface condition, thermal history, and operating environment.

Main Applications

Application Area Typisch gebruik
Halfgeleiderverwerking Quartz parts for etching, thermal processing, and clean process environments
High Temperature Viewports Transparent or semi-transparent quartz windows for high-temperature observation
Optische componenten Quartz windows, plates, discs, and optical support parts
Laboratoriumapparatuur High-temperature observation windows, reaction parts, and quartz fixtures
Precision Quartz Machining Raw material for customized quartz rings, flanges, cylinders, and special-shaped parts
Industrial Thermal Equipment Heat-resistant quartz components for demanding thermal environments

Flame Fused High Purity Quartz Ingot for Semiconductor and High Temperature ApplicationsProduct Advantages

The Flame Fused High Purity Quartz Ingot is suitable for customers who require high-purity quartz material with reliable thermal stability and controlled impurity levels. Its low alkali content and low metallic impurity profile make it suitable for semiconductor-related and high-temperature applications.

Compared with ordinary quartz materials, this product is more suitable for precision machining and demanding thermal environments. It can be processed into a wide range of customized quartz components according to drawings, including quartz windows, rings, plates, cylinders, discs, flanges, holders, and other special parts.

Custom Processing Options

Custom Item Available Options
Shape Customization Ingot, cylinder, plate, ring, disc, window, flange, special shape
Dimensional Processing Diameter, height, thickness, hole position, groove, step structure
Afwerking oppervlak Ground surface, polished surface, fire-polished surface
Machining Method Cutting, drilling, grinding, polishing, CNC machining
Drawing Support OEM fabrication according to technical drawings or samples
Inspection Support Dimensional inspection, visual inspection, impurity data, material certificate

Quality Control

Inspection Item Beschrijving
Appearance Inspection Check visible bubbles, inclusions, cracks, chips, and surface defects
Dimensional Inspection Diameter, height, thickness, flatness, and tolerance control
Material Verification Chemical impurity data and OH content can be confirmed when required
Processing Inspection Surface finish, edge condition, holes, grooves, and special structures
Packaging Inspection Protective packaging according to product size and cleanliness requirements

FAQ

1. What is a flame fused high purity quartz ingot?

A flame fused high purity quartz ingot is a quartz material produced by melting high-purity quartz sand through a flame fusion process and forming it into ingots or cylinders. It can be further machined into customized quartz components.

2. What are the main advantages of this material?

Its main advantages include high purity, low alkali content, low aluminum content, minimal visible bubbles and inclusions, good high-temperature resistance, and excellent suitability for precision machining.

3. What applications is this quartz ingot suitable for?

It is suitable for semiconductor etching processes, high-temperature viewports, optical quartz parts, laboratory equipment, precision quartz machining, and customized industrial quartz components.

4. Can it be machined into custom quartz parts?

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

5. Is this material suitable for semiconductor applications?

It can be used for semiconductor-related quartz components, especially where high purity and low metallic impurities are required. For highly contamination-sensitive processes, impurity level, OH content, surface finish, cleaning method, and packaging standard should be confirmed before selection.

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