Borides Series – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com Wed, 23 Apr 2025 01:22:52 +0000 en-US hourly 1 https://wordpress.org/?v=6.8.3 https://www.hi-tech-materials.com/wp-content/uploads/2025/05/cropped-微信图片_20240923152541-32x32.png Borides Series – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com 32 32 Tungsten Boride (W₂B) https://www.hi-tech-materials.com/product/nickel-boride-ni%e2%82%82b-copy https://www.hi-tech-materials.com/product/nickel-boride-ni%e2%82%82b-copy#respond Tue, 22 Apr 2025 09:14:51 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2316
Tungsten boride (W₂B) is a high-performance ceramic compound recognized for its exceptional hardness, thermal stability, and wear resistance. It is widely utilized in aerospace applications, cutting tools, refractory coatings, and high-temperature industrial processes. Due to its superior mechanical strength and oxidation resistance, tungsten boride plays a critical role in advanced engineering, specialized coatings, and precision manufacturing.
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Product Overview
Tungsten boride (W₂B) is a compound of tungsten and boron, known for its extremely high hardness and excellent high-temperature performance. It performs well under high temperature and high-pressure conditions, making it particularly suitable for applications in ultra-high-temperature ceramics, aerospace, and wear-resistant coatings. Its crystal structure is hexagonal (WB₂), and it also exhibits a strong metallic electrical resistivity.

Product Features

  • High Hardness:Tungsten boride exhibits a Vickers hardness ranging from 20 GPa to 30 GPa, providing exceptional wear resistance.
  • High Temperature Resistance:With a high melting point (W₂B’s melting point is 2670°C), it is suitable for high-temperature environments.
  • Oxidation Resistance:While oxidation occurs above 600°C, its oxidation products are stable, making it suitable for high-temperature applications.
  • Good Electrical Conductivity:It has metallic resistivity, making it useful for electronic material applications.

Applications

  • High-Temperature Technology and Vacuum Industry:Ideal for high-temperature and vacuum environments, such as in lightbulb manufacturing and nuclear energy industries.
  • Ultra-High Temperature Ceramics and Aerospace:Used in the production of ultra-high temperature ceramics, aerospace equipment, and high-speed aircraft.
  • Wear-Resistant Coatings:Due to its hardness and wear resistance, tungsten boride is widely used in wear-resistant coatings.
  • Electronic and Ceramic Materials:It has broad applications in electronic materials, ceramics, rare earth materials, and alloy materials.
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Nickel Boride (Ni₂B) https://www.hi-tech-materials.com/product/nickel-boride-ni%e2%82%82b https://www.hi-tech-materials.com/product/nickel-boride-ni%e2%82%82b#respond Tue, 22 Apr 2025 09:13:18 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2315
Nickel boride (Ni₂B) is a high-performance inorganic compound known for its excellent catalytic properties, thermal stability, and corrosion resistance. It is widely used in hydrogenation reactions, electrocatalysis, metallurgical processes, and advanced material research. Due to its superior conductivity and reactivity, nickel boride plays a crucial role in precision engineering, chemical synthesis, and specialized industrial applications.
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Product Overview
Nickel boride (Ni₂B) is an inorganic compound with a hexagonal crystal structure. It typically exists in the form of Ni₂B, representing a compound between nickel and boron. Nickel boride has exceptional catalytic and reductive properties, making it a highly efficient catalyst. It is widely used in heterogeneous hydrogenation reactions, particularly in chemical synthesis and petrochemical industries.

Product Features

  • Efficient Catalyst:Ni₂B is a highly efficient catalyst, especially in hydrogenation reactions.
  • Good Reducing Properties:It is also used as a reducing agent, effectively facilitating reaction processes.
  • Hexagonal Crystal Structure:The unique crystal structure of Ni₂B contributes to its enhanced catalytic performance.

Applications

  • Catalysts:Ni₂B is extensively used in catalytic reactions, especially as a heterogeneous hydrogenation catalyst.
  • Chemical Synthesis and Petrochemical Industries:Used in catalytic reactions for chemical synthesis, as well as in petroleum refining and hydrogenation processes.
  • Reduction Reactions:Acts as a reducing agent in various chemical reactions, improving reaction efficiency and product purity.

 

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Molybdenum Boride (Mo₂B) https://www.hi-tech-materials.com/product/molybdenum-boride-mo%e2%82%82b https://www.hi-tech-materials.com/product/molybdenum-boride-mo%e2%82%82b#respond Tue, 22 Apr 2025 09:12:08 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2314
Molybdenum boride (Mo₂B) is a high-performance ceramic compound recognized for its exceptional hardness, thermal stability, and wear resistance. It is widely used in aerospace applications, cutting tools, refractory coatings, and high-temperature industrial processes. Due to its superior mechanical strength and oxidation resistance, molybdenum boride plays a crucial role in advanced engineering, specialized coatings, and precision manufacturing.
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Product Overview
Molybdenum boride (Mo₂B) is a compound of molybdenum and boron that serves as a high melting point ceramic material. It offers excellent wear resistance, chemical stability, and thermal stability. It is commonly used as an additive in electronic tungsten and molybdenum alloys to enhance material performance, and it is widely applied in wear-resistant coatings, semiconductor films, and other high-performance applications.

Product Features

  • High Melting Point:Mo₂B has a high melting point, making it suitable for high-temperature environments.
  • Exceptional Wear Resistance:Mo₂B performs excellently as a wear-resistant coating material.
  • Chemical Stability:It has good chemical inertness, resisting chemical corrosion at high temperatures.
  • Wide Adaptability:It excels in various high-temperature, high-pressure, and harsh environments.

Applications

  • Electronics and Alloy Additive:Mainly used as an additive in electronic tungsten and molybdenum alloys, improving their physical properties.
  • Wear-Resistant Coating Materials:Used in the production of durable semiconductor films and coating materials, enhancing material durability.
  • High-Temperature Technology Applications:Applied in high-temperature environments, such as in high-temperature alloys and electronic device materials.
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Chromium Boride (CrB₂) https://www.hi-tech-materials.com/product/chromium-boride-crb%e2%82%82-2 https://www.hi-tech-materials.com/product/chromium-boride-crb%e2%82%82-2#respond Tue, 22 Apr 2025 09:07:28 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2313
Chromium boride (CrB₂) is a high-performance ceramic compound known for its exceptional hardness, thermal stability, and resistance to wear and corrosion. It is widely used in aerospace components, cutting tools, protective coatings, and high-temperature structural applications. Due to its superior mechanical strength and oxidation resistance, chromium boride plays a crucial role in advanced engineering, industrial processing, and specialized coatings.
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Product Overview
Chromium boride (CrB₂) is an ionically bonded compound with a hexagonal crystal structure and excellent physical properties. At very low temperatures, CrB₂ transitions into a superconductor. In powder form, it possesses high hardness, high strength, good electrical conductivity, high-temperature resistance, and oxidation resistance. CrB₂ has a wide range of industrial applications.

Product Features

  • High Hardness and Strength:Maintains excellent strength and hardness in high-temperature environments.
  • Good Electrical Conductivity:Suitable for electrical transmission systems.
  • High-Temperature and Oxidation Resistance:Stable for use in extreme temperature conditions.
  • Superconducting Properties:Exhibits superconducting behavior at low temperatures, making it ideal for magnets and magnetic field detectors.

Applications

  • Steelmaking Additive:Used to enhance the strength and durability of metals in the steelmaking process.
  • Corrosion and Thermal Shock Resistant Materials:Ideal for engineering materials requiring high-temperature and oxidation resistance.
  • High-Temperature Oxide Coatings:Applied as coating materials in high-temperature environments to protect surfaces from oxidation.
  • Superconducting Magnets and Power Transmission Lines:Performs excellently in superconducting applications and electrical transmission systems.
  • Sensitive Magnetic Field Detectors:Used in applications requiring high-sensitivity magnetic field detection.

 

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Hafnium Diboride (HfB₂) https://www.hi-tech-materials.com/product/chromium-boride-crb%e2%82%82 https://www.hi-tech-materials.com/product/chromium-boride-crb%e2%82%82#respond Tue, 22 Apr 2025 09:04:51 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2311
Hafnium diboride (HfB₂) is an ultra-high-temperature ceramic material known for its exceptional hardness, thermal stability, and oxidation resistance. It is widely used in aerospace applications, refractory coatings, cutting tools, and nuclear reactor components. Due to its superior mechanical strength and electrical conductivity, hafnium diboride plays a crucial role in advanced engineering, specialized coatings, and industrial manufacturing.
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Product Overview
Hafnium diboride (HfB₂) is an ultra-high temperature ceramic material composed of hafnium and boron. It has relatively high thermal and electrical conductivity and a hexagonal crystal structure. It is often combined with carbon, boron, silicon, silicon carbide, and nickel to enhance its sintering ability. HfB₂ is typically formed by hot pressing and is widely used in high-temperature applications.

Product Features

  • High Thermal and Electrical Conductivity:Like titanium diboride (TiB₂) and zirconium diboride (ZrB₂), HfB₂ demonstrates excellent thermal and electrical conductivity.
  • Ultra-High Temperature Ceramic:It has a very high melting point, making it suitable for high-temperature environments.
  • Strong Corrosion Resistance:HfB₂ has good chemical stability, allowing it to perform well in harsh environments.
  • Strong Structure:It offers high hardness and excellent oxidation resistance.

Applications

  • Hypersonic Reentry Vehicles:Used in high-temperature components for hypersonic reentry vehicles.
  • Nuclear Reactor Control Rods:Potentially used as a new material for control rods in nuclear reactors.
  • Microchip Diffusion Barriers:Applied as diffusion barriers in microchips, helping to enhance the stability of chips.
  • High-Temperature Alloys:Used in the manufacture of high-temperature alloys, especially in extreme temperature applications.
  • Pharmaceutical Industry:As an auxiliary pharmaceutical chemical, supporting certain chemical reactions.
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Zirconium Boride (ZrB₂) https://www.hi-tech-materials.com/product/zirconium-boride-zrb%e2%82%82 https://www.hi-tech-materials.com/product/zirconium-boride-zrb%e2%82%82#respond Tue, 22 Apr 2025 09:03:41 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2309
Zirconium boride (ZrB₂) is an ultra-high-temperature ceramic renowned for its exceptional hardness, thermal stability, and electrical conductivity. It is widely used in aerospace applications, cutting tools, refractory coatings, and advanced material manufacturing. Due to its superior oxidation resistance and wear durability, zirconium boride plays a critical role in high-performance engineering, industrial processing, and specialized coatings.
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Product Overview
Zirconium boride (ZrB₂) is an advanced engineering material widely used across multiple industries. It features an extremely high melting point (3040°C), hardness, stability, and excellent thermal conductivity, electrical conductivity, and oxidation resistance. ZrB₂ is an uncommon ceramic material often used to manufacture high-performance composite ceramics, especially in high-temperature, high-strength, and corrosion-resistant environments.

Product Features

  • High Melting Point and Hardness:Melting point reaches 3246°C, hardness is between 20-25 GPa, making it ideal for extreme conditions.
  • Excellent Thermal and Electrical Conductivity:Thermal conductivity exceeds 50 W/m·K, electrical conductivity is approximately 105 S/cm.
  • Superior Oxidation and Chemical Resistance:Exhibits excellent stability in high-temperature and corrosive environments.
  • Good Densification:ZrB₂ powder achieves high densification, making it suitable for high-performance ceramic material production.

Applications

  • Ultra-High Temperature Applications:Widely used in ceramic materials for environments that require high-temperature resistance.
  • Composite Ceramic Production:ZrB₂ is often combined with other materials like SiC to create high-temperature, corrosion-resistant composite materials.
  • Refractory Materials:Extensively used in high-temperature molten metal applications for its corrosion resistance.
  • Aerospace Industry:Used in thermal protection systems and other high-performance engineering materials to ensure reliability in extreme conditions.

 

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Vanadium Diboride (VB₂) https://www.hi-tech-materials.com/product/vanadium-diboride-vb%e2%82%82 https://www.hi-tech-materials.com/product/vanadium-diboride-vb%e2%82%82#respond Tue, 22 Apr 2025 09:01:37 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2307
Vanadium diboride (VB₂) is a high-performance ceramic compound recognized for its exceptional hardness, thermal stability, and electrical conductivity. It is widely used in aerospace applications, cutting tools, high-temperature structural components, and wear-resistant coatings. Due to its superior mechanical strength and resistance to oxidation, vanadium diboride plays a crucial role in advanced engineering, specialized coatings, and industrial manufacturing.
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Product Overview
Vanadium diboride (VB₂) is a hard compound with a hexagonal crystal structure, known for its extremely high hardness and outstanding oxidation resistance, with an oxidation temperature exceeding 1000°C. This material is widely used in high-temperature and conductive ceramic applications due to its stability and electrical conductivity.

Product Features

  • High Hardness:VB₂ has a high hardness, making it suitable for applications that require wear resistance and high-hardness materials.
  • Excellent Oxidation Resistance:VB₂ maintains excellent oxidation resistance at temperatures above 1000°C, ensuring good high-temperature stability.
  • Hexagonal Crystal Structure:The hexagonal crystal structure of VB₂ provides favorable physical properties and chemical stability.
  • Electrical Conductivity:As a conductive ceramic material, VB₂ exhibits good electrical conductivity, making it ideal for electrical applications.

Applications

  • Conductive Ceramic Materials:Due to its high electrical conductivity, VB₂ is widely used in the production of conductive ceramics, particularly in high-temperature and high-pressure environments.
  • Air Battery Applications:In the field of air batteries, VB₂ is used to enhance battery performance and extend the service life due to its stability and conductivity.
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Titanium Diboride Powder (TiB₂) https://www.hi-tech-materials.com/product/titanium-diboride-powder-tib%e2%82%82 https://www.hi-tech-materials.com/product/titanium-diboride-powder-tib%e2%82%82#respond Tue, 22 Apr 2025 08:59:34 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2305
Titanium diboride powder (TiB₂) is a high-performance ceramic material renowned for its exceptional hardness, thermal conductivity, and wear resistance. It is extensively used in aerospace applications, cutting tools, protective coatings, and high-temperature structural components. Due to its superior mechanical strength and electrical conductivity, titanium diboride powder plays a crucial role in advanced engineering, industrial processing, and material innovation.
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Product Overview
Titanium Diboride (TiB₂) powder exhibits a hexagonal crystalline structure with a gray or gray-black appearance. It possesses extremely high hardness and outstanding overall properties, including excellent thermal stability, oxidation resistance, and electrical conductivity. With a density of 4g/cm³ and bending strength up to 131.3×10⁶Pa, TiB₂ offers remarkable performance in high-temperature and harsh environments. The material can withstand oxidation temperatures up to 1,100°C, making it ideal for use in demanding applications.

Key Features

  • High Hardness: TiB₂ has exceptional hardness, making it ideal for wear-resistant and cutting tools.
  • Outstanding Thermal Stability: It maintains excellent performance under high temperatures, with oxidation resistance up to 1,100°C.
  • Superior Oxidation Resistance: TiB₂ demonstrates excellent oxidation resistance, even at elevated temperatures.
  • Good Electrical Conductivity: TiB₂ exhibits excellent electrical conductivity, suitable for electrical and electronic applications.
  • High Bending Strength: With its high bending strength, TiB₂ is ideal for applications subjected to significant pressure and impact.

Applications

  • Conductive Ceramic Materials: TiB₂ can be used as a raw material for high-performance conductive ceramics.
  • Composite Ceramic Materials: As part of composite ceramics, TiB₂ enhances material hardness and high-temperature resistance.
  • Armor Protection Materials: Due to its high hardness and oxidation resistance, TiB₂ is used in the manufacturing of armor protection materials.
  • Aluminum Electrolysis Cell Cathode Coatings: TiB₂ serves as a coating material for aluminum electrolysis cell cathodes, significantly extending the service life of the cell.
  • High-Temperature Equipment: TiB₂ is widely used in high-temperature metallurgy and aluminum electrolysis applications, where it can withstand extreme heat and harsh environmental conditions.
  • Aerospace and Military Applications: As a high-strength and wear-resistant material, TiB₂ is used in critical components for aerospace and military industries.
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Titanium Diboride (TiB₂) https://www.hi-tech-materials.com/product/titanium-diboride-tib%e2%82%82 https://www.hi-tech-materials.com/product/titanium-diboride-tib%e2%82%82#respond Tue, 22 Apr 2025 08:43:37 +0000 https://www.hi-tech-materials.com/?post_type=product&p=2303
Titanium diboride (TiB₂) is a high-performance ceramic material known for its exceptional hardness, thermal conductivity, and wear resistance. It is widely used in aerospace components, cutting tools, armor applications, and advanced material research. Due to its superior mechanical strength and high-temperature stability, titanium diboride plays a crucial role in precision engineering, specialized coatings, and industrial applications.
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Product Overview
Titanium Diboride (TiB₂) is a highly durable and oxidation-resistant compound with exceptional hardness. The crystals appear amber in color and turn gray-black after grinding. It is synthesized using high-temperature reactions and has a hexagonal crystal structure, with a melting point as high as 2980°C, making it highly resistant to extreme heat and corrosion. TiB₂ can withstand temperatures up to 1000°C in the air and exhibits excellent stability in hydrochloric (HCl) and hydrofluoric (HF) acid environments. Its unique physical and chemical properties make it an ideal material for high-performance, high-temperature, and corrosion-resistant ceramic composites.

Key Features

  • Extremely High Hardness: TiB₂ boasts one of the highest hardness ratings, making it ideal for manufacturing cutting tools and wear-resistant components.
  • Exceptional High-Temperature Performance: With a melting point of 2980°C, it maintains stability in extreme thermal environments.
  • Oxidation Resistance: TiB₂ can resist oxidation in the air up to 1000°C, ensuring durability in high-temperature, oxidative conditions.
  • Outstanding Chemical Stability: It is highly resistant to corrosive acids such as HCl and HF, making it suitable for aggressive chemical environments.
  • High Crystallinity: The product is produced via high-temperature reactions, ensuring high crystallinity, with single crystal particles that can reach up to 1 mm, providing superior mechanical properties.

Applications

  • Composite Ceramics: Used in the production of high-performance composite ceramics, particularly in applications requiring high hardness and high-temperature resistance.
  • Molten Metal Processing: Ideal for use in crucibles and evaporation boats for molten metals, offering corrosion resistance against molten metals.
  • Electrolytic Aluminum Industry: Used as a material for cathode plates in aluminum electrolysis, providing excellent corrosion resistance and high-temperature stability.
  • Cutting Tools and Molds: Employed in the manufacturing of ceramic cutting tools and molds, increasing tool lifespan due to its high hardness and wear resistance.
  • Aerospace Engine Parts: A critical material for high-temperature-resistant, corrosion-resistant composite components in aerospace engines, providing excellent mechanical strength.
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