Magnesium Oxide Custom Parts

magnesium oxide custom parts

Magnesium Oxide Custom Parts

Magnesium oxide custom parts are high-performance ceramic components offering excellent electrical insulation, high thermal conductivity, and strong stability at elevated temperatures. Tailored to specific size, shape, and performance requirements, they are widely used in furnace linings, thermocouple protection tubes, semiconductor processing equipment, and aerospace components.NexusX Advanced Materials, as a premier manufacturer and supplier of high-quality Magnesium Oxide Custom Parts products, focuses on producing high-precision aluminum nitride silicon structural compenents through advanced technologies for diverse application fields.

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Magnesium Oxide Custom Parts Data Sheet

Color:White/Ivory
Chemical Formula:MgO
Refractoriness:Super high grade (Refractoriness > 2000°)
Density:3.20 g/cm3
Type:Dielectric ceramic
Dimension:customized
Shape:customized
Working temperature:2000°C
Compressive strength:1000 MPa
Flexural strength:300 MPa
Surface:Glass/Polished
Processing services:Bending, welding, punching, decoiling, cutting, molding

Magnesium Oxide Custom Parts Description

Magnesium Oxide (MgO) Custom Parts are high-performance ceramic components engineered for extreme conditions. Known for their exceptional thermal stability (melting point ~2852°C), high electrical insulation, and good thermal conductivity, they are tailored to specific applications such as high-temperature furnace linings, semiconductor processing equipment, thermocouple protection, and aerospace assemblies. Customization ensures precise dimensional and performance alignment with demanding operational requirements.

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Magnesium Oxide Custom Parts Features

  • Extreme Temperature Resistance: Exceptionally high melting point (~2852°C) ensures stability and structural integrity in ultra-high-temperature environments.
  • Superior Electrical Insulation: Excellent insulator, even at elevated temperatures, ideal for electrical and electronic applications.
  • Good Thermal Conductivity: Facilitates efficient heat transfer while providing electrical isolation.
  • High Chemical Inertness: Resists corrosion and reactions with many molten metals, salts, and harsh chemicals.
  • Customizability: Can be precision-engineered into complex shapes and sizes (e.g., crucibles, tubes, plates) to meet specific design and performance needs.

Magnesium Oxide Custom Parts Applications

  • High-Temperature Industry: Used as furnace linings, crucibles, and thermocouple protection tubes.
  • Semiconductor Manufacturing: Applied in diffusion furnace tubes, wafer carriers, and plasma etching components.
  • Aerospace & Defense: Employed in missile radomes, antenna windows, and thermal insulation components.
  • Research & Energy: Utilized in nuclear fuel sintering, laser system parts, and experimental reactor insulation.
  • Electronics & Sensors: Served as substrates for thick-film circuits and housings for high-temperature sensors.
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high temperatuer furnaces applications hm
metalurgy
chemical laboratories

Magnesium Oxide Ceramic Packaging

Magnesium oxide ceramic products are typically packaged in vacuum-sealed bags to prevent moisture or contamination and wrapped with foam to cushion vibrations and impacts during transport, ensuring the quality of products in their original condition.

packaging

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FAQ

What are Magnesium Oxide Custom Parts?

They are precision-engineered industrial components made from high-purity magnesium oxide ceramic, tailored to meet specific customer requirements for shape, size, and performance. They are custom solutions, not standard off-the-shelf products.

The core advantages are extreme temperature resistance (melting point ~2852°C), excellent electrical insulation at high temperatures, good thermal conductivity, and chemical inertness, ensuring stability in harsh environments.

They are often used as liners in diffusion furnaces and CVD equipment, wafer carriers, and insulating components in plasma etching chambers due to their resistance to high temperatures and corrosive process atmospheres.

 In no-load, inert, or vacuum environments, the maximum continuous use temperature can exceed 2200°C. However, the safe operating temperature in practice depends on mechanical load and specific chemical conditions.

You need to provide detailed drawings (with dimensions and tolerances), material purity requirements, operating environment (temperature, atmosphere, load), required properties (e.g., insulation strength, thermal conductivity), and quantity.

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