Ceramic Materials – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com/zh Wed, 07 May 2025 05:35:56 +0000 zh-Hans hourly 1 https://wordpress.org/?v=6.9 https://www.hi-tech-materials.com/wp-content/uploads/2025/05/cropped-微信图片_20240923152541-32x32.png Ceramic Materials – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com/zh 32 32 Titanium Oxide Ceramic Structural Components https://www.hi-tech-materials.com/zh/product/titanium-oxide-ceramic-structural-components https://www.hi-tech-materials.com/zh/product/titanium-oxide-ceramic-structural-components#respond Wed, 07 May 2025 05:29:16 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4883
Titanium oxide ceramic structural components offer exceptional mechanical strength, optimized thermal stability, and superior wear resistance. Designed for high-performance applications, they ensure precise structural integrity, extended durability, and reliable functionality.
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Product Overview

Titanium oxide ceramic structural components are advanced, high-performance materials primarily composed of high-purity titanium dioxide (TiO₂). These ceramics are known for their excellent corrosion resistance, strength, and high-temperature stability. The unique properties of titanium oxide ceramics make them widely applicable across various industries, particularly in environments that require resistance to high temperatures, strong corrosion, and complex mechanical loads. Through precision machining, titanium oxide ceramic components can be customized to meet the specific needs of industrial applications, ensuring compliance with strict operational requirements.

Features

  • High Strength and Hardness: Titanium oxide ceramics have high compressive strength and hardness, making them ideal for high-strength environments.
  • Excellent Corrosion Resistance: Titanium oxide ceramics maintain stability in a wide range of acidic, alkaline, and other corrosive environments, making them ideal for use in chemical equipment.
  • High-Temperature Stability: These ceramics can withstand high temperatures, making them suitable for high-temperature work environments.
  • Good Electrical Insulation: As an electrical insulator, titanium oxide ceramics have extensive applications in electrical equipment.
  • Strong Oxidation Resistance: They exhibit strong resistance to oxidation, making them suitable for use in highly oxidative environments.

Applications

  • Chemical and Petrochemical Industry: Titanium oxide ceramics are widely used in chemical reactors, pipes, pumps, valves, and other equipment, providing resistance to strong acids and alkalis.
  • Electronics and Electrical Industry: As electrical insulators, titanium oxide ceramics are used in electronic components, electrical insulation devices, and high-temperature electrical appliances.
  • Aerospace Industry: With high strength and thermal stability, titanium oxide ceramics are used in the manufacturing of aerospace components and equipment.
  • Medical Devices: The biocompatibility of titanium oxide ceramics makes them suitable for medical instruments and related fields.
  • High-Temperature Metallurgy and Industrial Equipment: Titanium oxide ceramic structural components excel as high-temperature materials in applications such as high-temperature smelting and heat exchangers.

 

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Beryllium Oxide Ceramic Traveling Wave Tube https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-traveling-wave-tube https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-traveling-wave-tube#respond Wed, 07 May 2025 05:24:22 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4881
Beryllium oxide ceramic traveling wave tubes offer exceptional thermal conductivity, optimized electrical insulation, and superior mechanical stability. Designed for high-frequency applications, they ensure efficient signal amplification, extended durability, and reliable operational performance.
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Product Overview

Beryllium Oxide Ceramic Traveling Wave Tubes are made from high-purity beryllium oxide (BeO), offering exceptional thermal conductivity and electrical insulation properties. These ceramics are especially suitable for high-frequency, high-power electronic devices. Beryllium oxide’s thermal conductivity significantly surpasses that of traditional materials, effectively addressing heat dissipation issues in high-frequency circuits and improving device performance and stability. These traveling wave tubes are widely used in microwave technology, vacuum electronics, nuclear technology, and other advanced electronic fields.

Features

  • Excellent Thermal Conductivity: Beryllium oxide ceramics have thermal conductivity several orders of magnitude higher than ordinary ceramics, making them ideal heat dissipation materials.
  • Low Dielectric Constant and Low Dielectric Loss: For high-frequency and microwave technologies, beryllium oxide ceramics offer low dielectric loss and stable performance.
  • High Strength and High-Temperature Stability: In high-temperature environments, beryllium oxide ceramics outperform metals in strength and maintain excellent performance.
  • Chemical Stability: Beryllium oxide ceramics exhibit superior chemical stability in extreme conditions, making them suitable for harsh operating environments.
  • Electrical Insulation: They provide excellent electrical insulation, making them ideal for electronic components and high-frequency circuits.

Applications

  • Microwave and RF Equipment: Beryllium oxide ceramic traveling wave tubes are essential for thermal management in microwave technology and are widely used in high-frequency circuit designs.
  • Vacuum Electronics: In vacuum electronic devices, beryllium oxide ceramics are used as traveling wave tubes and other heat dissipation components, ensuring stable operation of the equipment.
  • Nuclear Technology: As heat exchangers and control components in nuclear reactors, beryllium oxide ceramics offer excellent thermal conductivity and chemical stability, suitable for extreme environments.
  • High-Power Electronic Devices: Used in high-power electronics, providing efficient thermal management to prevent overheating of the devices.
  • Medical and X-ray Technology: Beryllium oxide ceramics are used as transmission materials in X-ray tubes, widely applied in medical imaging equipment and structural analysis.
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Beryllium Oxide Ceramic Sheets https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-sheets https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-sheets#respond Wed, 07 May 2025 03:18:01 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4879
Beryllium oxide ceramic sheets offer exceptional thermal conductivity, optimized electrical insulation, and superior mechanical stability. Designed for high-temperature applications, they ensure reliable heat dissipation, extended durability, and precision engineering adaptability.
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Product Overview

Beryllium Oxide Ceramic Sheets are high-performance ceramic materials made primarily from beryllium oxide (BeO). These sheets are widely used in microwave power circuits and integrated circuits. By employing tungsten-manganese or molybdenum-manganese active metallization methods to achieve thick-film metallization, followed by nickel plating and graphic etching processes to form circuits, they exhibit excellent solderability and stable electrical properties. The high tensile strength and thermal stability of beryllium oxide ceramic sheets make them a critical material in high-tech applications.

Features

  • Good Solderability: After nickel plating, beryllium oxide ceramic sheets exhibit excellent solderability, with minimal bubble formation during the soldering process.
  • High Tensile Strength: The tensile strength exceeds 20 MPa after nickel plating, ensuring mechanical stability.
  • High-Temperature Stability: The material does not bubble when nickel is fired at approximately 800°C in a reducing atmosphere, making it suitable for high-temperature applications.
  • Excellent Electrical Properties: Through specialized metallization and nickel plating processes, the ceramic sheets can be used in high-frequency and microwave circuits, offering excellent electrical conductivity.

Applications

  • Microwave Power Circuits: Used as substrates in microwave circuits, they are extensively applied in radar, satellite communications, and electronic devices.
  • Integrated Circuits: Employed as substrates for integrated circuits, ensuring the stability and efficient operation of electronic components.
  • High-Frequency Electronic Devices: Suitable for various high-frequency, high-power electronic components, ensuring long-term reliable operation.
  • Electronic Packaging: Used as circuit board material, providing excellent thermal conductivity and electrical conductivity, enhancing the stability and heat dissipation capacity of packaging materials.
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Beryllium Oxide Ceramic Structural Components https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-structural-components https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-structural-components#respond Wed, 07 May 2025 03:15:22 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4876
Beryllium oxide ceramic structural components offer exceptional thermal conductivity, optimized mechanical strength, and superior electrical insulation. Designed for high-performance applications, they ensure reliable durability, precise engineering adaptability, and efficient heat dissipation.
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Product Overview

Beryllium Oxide Ceramic Structural Components are high-performance ceramic materials known for their outstanding thermal conductivity and electrical insulation properties. With a thermal conductivity of up to 325 W/(m·K), these components are widely used in high-power electronic devices, high-frequency circuits, semiconductor manufacturing, and advanced defense technologies. The superior properties of beryllium oxide ceramics make them ideal for applications requiring significant heat dissipation and stability. Thanks to their low thermal expansion coefficient and high chemical stability, beryllium oxide ceramic components also serve as intermediate thermal management materials between silicon and metals, providing reliable support in extreme working environments.

Features

  • Excellent Thermal Conductivity: Beryllium oxide ceramic components have exceptionally high thermal conductivity, making them ideal for heat dissipation applications.
  • Good Thermal Stability: They can withstand high-temperature environments while maintaining stable performance.
  • Electrical Insulation: These components possess excellent electrical insulation properties, making them suitable for use in electronic components and high-frequency circuits.
  • Low Thermal Expansion Coefficient: Ideal for high-power electronic devices as an intermediate heat sink, supporting more robust component designs.
  • Chemical Stability: They exhibit superior stability in oxidative chemical environments, offering better chemical corrosion resistance than other materials, such as aluminum nitride.

Applications

  • High-Power Electronic Devices: Used in heat dissipation for equipment such as base stations, resistive networks, transistors, and power amplifiers.
  • Semiconductor Manufacturing: In semiconductor production, beryllium oxide ceramics provide excellent heat management to ensure the stable operation of devices.
  • Wireless Communications: Widely used in wireless communication equipment to provide both thermal management and electrical insulation support.
  • Defense Applications: In defense electronics, beryllium oxide ceramics are used in thermal exchange, heat dissipation, and high-frequency circuits.
  • Energy Equipment: Applied in energy devices that require high thermal conductivity and thermal stability.
  • Medical Equipment: In high-end medical devices such as DNA sequencers and defibrillators, they provide thermal management and heat dissipation solutions.

 

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Beryllium Oxide Ceramic Rings https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-crucible-copy https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-crucible-copy#respond Wed, 07 May 2025 03:14:06 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4874
Beryllium oxide ceramic rings offer exceptional thermal conductivity, optimized electrical insulation, and superior mechanical strength. Designed for high-temperature applications, they ensure reliable performance, extended durability, and precision engineering adaptability.
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Product Overview

Beryllium Oxide Ceramic Rings are high-performance ceramic materials known for their excellent thermal conductivity and electrical insulation properties. With a thermal conductivity of up to 325 W/(m·K), these rings are ideal for applications requiring efficient heat dissipation. Beryllium oxide ceramic rings are widely used in high-power semiconductor devices, heat exchangers, and electronic equipment, where they help dissipate localized heat, ensuring the long-term stability of the devices.

Features

  • Excellent Thermal Conductivity: Beryllium oxide ceramic rings feature a very high thermal conductivity, allowing for effective heat dissipation and maintaining the thermal stability of the equipment.
  • Good Thermal Stability: Beryllium oxide materials exhibit outstanding thermal stability, making them suitable for extreme operating conditions.
  • Electrical Insulation: Despite their excellent thermal conductivity, beryllium oxide ceramic rings retain good electrical insulation properties, making them ideal for applications requiring electrical isolation.
  • Corrosion Resistance: Beryllium oxide ceramic rings maintain high stability and durability in corrosive environments, suitable for use in harsh conditions.

Applications

  • High-Power Semiconductor Devices: Beryllium oxide ceramic rings are widely used in high-power semiconductor devices such as transistors and power amplifiers, where they aid in heat dissipation and enhance thermal stability.
  • Radio Frequency Devices: Used in high-performance radio frequency devices, they improve the heat dissipation efficiency and overall performance of the equipment.
  • Heat Exchangers: As fillers and interface materials in heat exchangers, beryllium oxide ceramic rings effectively improve heat transfer efficiency.
  • Microwave Devices and Lasers: In high-performance microwave devices, vacuum tubes, magnetrons, and gas lasers, beryllium oxide ceramic rings provide excellent thermal management capabilities.
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Beryllium Oxide Ceramic Crucible https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-crucible https://www.hi-tech-materials.com/zh/product/beryllium-oxide-ceramic-crucible#respond Wed, 07 May 2025 03:12:14 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4872
Beryllium oxide ceramic crucibles offer exceptional thermal conductivity, optimized chemical stability, and superior mechanical strength. Designed for high-temperature applications, they ensure efficient heat transfer, extended durability, and reliable performance in demanding environments.
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Product Overview

The Beryllium Oxide Ceramic Crucible is made from high-purity beryllium oxide (BeO), a material known for its excellent thermal conductivity and thermal stability. It is widely used in high-temperature melting, metal processing, and other high-precision industrial applications. Due to its superior thermal conductivity, beryllium oxide ceramic crucibles are ideal for melting rare and high-purity metals, such as beryllium (Be), zirconium (Zr), platinum (Pt), and vanadium (V). This crucible plays a crucial role in industries such as defense, nuclear energy, metallurgy, and electronics.

Features

  • High Thermal Conductivity: Rapidly conducts heat, effectively reducing temperature fluctuations and ensuring stability in high-temperature environments.
  • Excellent Thermal Stability: Maintains outstanding chemical stability and physical structure under high temperatures, making it suitable for high-temperature melting and chemical reactions.
  • High Purity Material: Made from high-purity beryllium oxide, ensuring the precision and durability of the crucible.
  • Good Chemical Stability: Resistant to high temperatures and corrosion, suitable for processing high-melting-point metals.

Applications

  • Military Manufacturing: Used for manufacturing high-precision components, particularly for material processing in high-temperature environments.
  • Nuclear Energy: Serves as a neutron moderator and a key component in other nuclear-related equipment.
  • Metallurgical Engineering: Used for melting high-melting-point metals and rare metals, providing stable support during high-temperature smelting processes.
  • Electronics Industry: Used in integrated circuit substrates, heat sinks, and other critical components, ensuring efficient heat dissipation and stability of electronic devices.
  • Rocket Manufacturing: Employed in material processing and precision equipment manufacturing in high-temperature and high-pressure environments.

 

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Round Alumina Electric Furnace Plate https://www.hi-tech-materials.com/zh/product/round-alumina-electric-furnace-plate https://www.hi-tech-materials.com/zh/product/round-alumina-electric-furnace-plate#respond Wed, 07 May 2025 03:10:49 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4870
Round alumina electric furnace plates offer exceptional thermal stability, optimized heat resistance, and superior mechanical durability. Designed for high-temperature applications, they ensure reliable performance, extended lifespan, and efficient heat distribution.
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Product Overview:
The Round Alumina Electric Furnace Plate, also known as the Heating Furnace Ceramic Base, is specifically designed for high-temperature industrial applications. Its unique spiral shape and porous design facilitate uniform heat distribution in extreme temperature environments, optimizing heating efficiency and ensuring long-term equipment stability. The electric furnace plate maintains excellent thermal stability under extreme heat conditions, making it ideal for industries requiring precise temperature control and high-temperature operations.

Product Features:

  • Spiral Shape Design:The unique spiral shape not only enhances aesthetics but also promotes the even distribution of heat, ensuring uniform heating across the entire plate surface and optimizing heating efficiency.
  • Porous Properties:The multiple small holes arranged on the surface assist in the uniform distribution of heat flow, ensuring balanced temperatures within the equipment and enhancing the heating effect.
  • Central Mounting Hole:The small central hole design allows for easy fixation of the electric furnace plate to specific equipment, offering flexibility and stability during installation.
  • High Temperature Resistance:The superior thermal stability of alumina (with a maximum operating temperature of up to 1650°C) ensures the furnace plate maintains outstanding durability under continuous high-temperature operation.
  • Physical and Chemical Stability:With excellent chemical corrosion resistance and mechanical strength, the alumina ceramic plate ensures long-term use even in harsh environments.

Applications:

  • Industrial Heating Equipment:Widely used in industrial heating devices such as heat treatment furnaces, sintering furnaces, and other high-temperature processing equipment for metals, ceramics, and other materials.
  • Chemical Processing:Used in chemical processing equipment to maintain reaction temperatures, ensuring the efficiency and safety of chemical processes.
  • Material Testing:Commonly employed in materials science research and quality control laboratories for high-temperature material performance testing.

 

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Custom-Shaped Alumina Ceramic Structural Components https://www.hi-tech-materials.com/zh/product/custom-shaped-alumina-ceramic-structural-components https://www.hi-tech-materials.com/zh/product/custom-shaped-alumina-ceramic-structural-components#respond Wed, 07 May 2025 03:09:03 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4868
Custom-shaped alumina ceramic structural components offer exceptional mechanical strength, optimized wear resistance, and superior thermal stability. Designed for specialized applications, they ensure precise structural integrity, extended durability, and high-performance adaptability.
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Product Overview:
Custom-Shaped Alumina Ceramic Structural Components, also known as porous ceramic bases, are made from high-performance alumina (Al₂O₃) material. Their unique custom and porous design enables them to offer support, fixation, and heat dissipation functions in a variety of specific applications. These components are widely used in automated machinery, electronic devices, precision instruments, and chemical processing, offering exceptional thermal stability, electrical insulation, and mechanical strength to withstand extreme conditions such as high temperatures, pressure, and wear.

Product Features:

  • High Hardness and Exceptional Wear Resistance:With a Vickers hardness of up to 15.7 GPa, alumina ceramic ensures outstanding durability in high-wear environments.
  • Excellent Thermal Stability and Electrical Insulation:Able to withstand temperatures up to 1650°C and offering a breakdown strength of over 10 KV/mm, these components are ideal for high-temperature and electrically insulated applications.
  • Complex Structural Design Capability:Customizable in various complex shapes and sizes to meet application-specific requirements, such as porous support platforms or fixation mounts.
  • Optimized Thermal and Fluid Management:The porous design not only supports but also optimizes heat management and the flow of fluids and gases.
  • High Mechanical Strength and Compression Resistance:With a bending strength of up to 330 MPa and a compressive strength of 2000 MPa, these components maintain stability and durability under physical loads.

Applications:

  • Automated Machinery:Used as connectors or support components for robotic arms, joints, or other mechanical systems, offering the necessary mechanical strength and precision.
  • Electronic Devices:Serve as support or mounting platforms for electronic components, providing solutions for electrical insulation and heat management.
  • Precision Instruments:Used in scientific instruments and medical devices as precision parts, such as sensor supports or mounting fixtures, ensuring the stability and reliability of the equipment.
  • Chemical Processing and Environmental Technology:Applied in chemical reactors or filtration systems where resistance to high temperatures and corrosive substances is required, suitable for harsh working environments.
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Special-Shaped Al₂O₃ Ceramic Parts https://www.hi-tech-materials.com/zh/product/special-shaped-al%e2%82%82o%e2%82%83-ceramic-parts https://www.hi-tech-materials.com/zh/product/special-shaped-al%e2%82%82o%e2%82%83-ceramic-parts#respond Wed, 07 May 2025 03:07:43 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4866
Special-shaped Al₂O₃ ceramic parts offer exceptional mechanical strength, optimized wear resistance, and superior thermal stability. Designed for customized applications, they ensure precise structural integrity, extended durability, and high-performance functionality.
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Product Overview:
Special-shaped Al₂O₃ ceramic parts are made from high-purity aluminum oxide materials and precisely processed into various complex shapes. With their exceptional physical properties, these parts excel in multiple applications, particularly in industries requiring high wear resistance, high-temperature stability, and corrosion resistance. These ceramic parts are widely used in mechanical, chemical, and electronics industries, effectively enhancing equipment lifespan and performance stability.

Product Features:

  • High Hardness:Rockwell hardness of HRA 80-90, second only to diamond, superior to wear-resistant steel and stainless steel in wear resistance.
  • Outstanding Wear Resistance:Wear resistance is 266 times that of manganese steel and 171.5 times that of high-chromium cast iron, significantly extending equipment lifespan.
  • Lightweight Design:Density of 3.5g/cm³, half that of steel, reducing equipment load.
  • High-Temperature Resistance:Can withstand extremely high temperatures while maintaining stable performance.
  • Corrosion Resistance:Strong resistance to a variety of chemical corrosion agents.

Applications:

  • Mechanical Engineering:Used to manufacture high-wear, corrosion-resistant mechanical components, such as special parts in transmission systems.
  • Chemical Industry:Applied in the manufacture of corrosion-resistant equipment, such as reactors, pipeline linings, and more.
  • Electronics Industry:Used as supporting and insulating materials for electronic components.
  • Energy and Metallurgy:Utilized in high-temperature working components, such as furnace equipment and wear-resistant devices.
  • Aerospace:Suitable for parts and components with special performance requirements, capable of withstanding high-temperature and high-pressure environments.
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Irregular Alumina Ceramic Plate https://www.hi-tech-materials.com/zh/product/irregular-alumina-ceramic-plate https://www.hi-tech-materials.com/zh/product/irregular-alumina-ceramic-plate#respond Wed, 07 May 2025 03:06:19 +0000 https://www.hi-tech-materials.com/?post_type=product&p=4864
Irregular alumina ceramic plates offer exceptional mechanical strength, optimized wear resistance, and superior thermal stability. Designed for custom applications, they ensure precise structural integrity, extended durability, and high-performance adaptability.
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Product Overview:
The Irregular Alumina Ceramic Plate is crafted from high-purity alumina material, known for its exceptional hardness, wear resistance, and lightweight characteristics. Thanks to its superior physical properties, it is widely used in various industrial applications, providing high strength and durability, particularly in fields that demand high precision and long service life.

Product Features:

  • High Hardness:Rockwell hardness of HRA 80-90, close to diamond hardness, significantly higher than common wear-resistant steels and stainless steel.
  • Outstanding Wear Resistance:Wear resistance is 266 times higher than manganese steel and 171.5 times higher than high-chromium cast iron, greatly extending equipment lifespan.
  • Lightweight Design:Density is only half that of steel, reducing equipment load and improving performance.
  • High-Temperature Resistance:Excellent high-temperature resistance, ensuring stability in high-temperature environments.
  • Corrosion Resistance:Good chemical corrosion resistance, adaptable to harsh working conditions.

Applications:

  • Mechanical Manufacturing:Used in components of various mechanical equipment, especially in high-wear and high-load environments.
  • Electronics Industry:Applied in electronic components, sensors, and other applications requiring high-strength support.
  • Chemical Industry:Suitable for reactors, equipment protection, and other high-wear and corrosion-resistant applications.
  • Metallurgical Industry:Used in high-temperature, heavy-load environments such as smelting furnaces and heat treatment equipment.
  • Aerospace:Applied in high-strength, high-precision components, especially under high-temperature and high-pressure conditions.

 

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