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Shaanxi KeGu New Material Technology Co., Ltd

  • China,Chaoyang ,Shaanxi
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China Silicon Nitride Ceramic with Exceptional Thermal Stability, Superior Thermal
China Silicon Nitride Ceramic with Exceptional Thermal Stability, Superior Thermal

  1. China Silicon Nitride Ceramic with Exceptional Thermal Stability, Superior Thermal
  2. China Silicon Nitride Ceramic with Exceptional Thermal Stability, Superior Thermal
  3. China Silicon Nitride Ceramic with Exceptional Thermal Stability, Superior Thermal
  4. China Silicon Nitride Ceramic with Exceptional Thermal Stability, Superior Thermal

Silicon Nitride Ceramic with Exceptional Thermal Stability, Superior Thermal

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Density 3.20-3.26g/cm³
Apparent Porosity 0-0.1%
Bending Strength > 700MPa
Fracture Toughness > 8.0MPa*m¹⁄²
Vickers Hardness (HV0.5) 15-16GPa
Linear Expansion Coefficient 3.1-3.3x10⁻⁶/°C
Thermal Conductivity 20-25 W/(m*K)
Specific Resistivity 10¹⁴Ω*cm

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Product Specification

Density 3.20-3.26g/cm³ Apparent Porosity 0-0.1%
Bending Strength > 700MPa Fracture Toughness > 8.0MPa*m¹⁄²
Vickers Hardness (HV0.5) 15-16GPa Linear Expansion Coefficient 3.1-3.3x10⁻⁶/°C
Thermal Conductivity 20-25 W/(m*K) Specific Resistivity 10¹⁴Ω*cm
High Light Exceptional Thermal Stability Silicon Nitride CeramicSuperior Thermal Shock Resistance Si3N4 CeramicHigh Mechanical Strength Engineering Ceramic
Silicon Nitride Ceramics: The High-Performance Solution Behind Two Key Industries

In modern high-end manufacturing, where efficiency and reliability are paramount, silicon nitride ceramics offer a near-perfect combination of properties that make them indispensable engineering materials. These advanced ceramics are revolutionizing performance standards and delivering significant efficiency gains across the supply chain through exceptional durability in two core sectors: polysilicon for energy and fiber optic communications.

Polysilicon Industry: The Reliable Shield Guarding the Heart of Energy

Within polysilicon reduction furnaces and hydrogenation furnaces, components face extreme conditions including high temperature, high pressure, corrosive atmospheres, and severe thermal shock. Traditional alumina insulation parts often have limited lifespans in these environments, leading to costly production stoppages from frequent replacements.

Silicon nitride insulation parts—including high-voltage electrode insulation rings, heat shields, and exhaust hoods—are engineered to overcome these challenges through their intrinsic material properties:

  • Exceptional Thermal Stability & Mechanical Strength: Extremely low coefficient of thermal expansion (3.1-3.3 x10⁻⁶/°C) combined with high bending strength (>700 MPa) and compressive strength (>1500 MPa) ensures minimal deformation and maintained integrity under drastic temperature fluctuations.
  • Superior Thermal Shock Resistance: High thermal conductivity (20-25 W/(m*K)) combined with high strength allows rapid heat dissipation, resisting fracture caused by thermal cycling. This is crucial for preventing damage to critical electrodes from polysilicon "rod collapse" incidents.
  • Powerful Insulation & Corrosion Resistance: Volume resistivity as high as 10¹⁴ Ω*cm ensures insulation performance exceeding 20kV. Simultaneously, it exhibits excellent oxidation and corrosion resistance against various aggressive gases at high temperatures.

Silicon nitride parts produced via Gas Pressure Sintering show significantly improved toughness (Fracture toughness >8.0 MPa*m¹⁄²). Field applications demonstrate a service life over 10 times longer than traditional alumina counterparts. This translates to dramatic reductions in unplanned furnace downtime, replacement costs, and operational labor, boosting overall comprehensive efficiency by more than 3 times. It has become the preferred solution for polysilicon manufacturers aiming to reduce costs, enhance product stability, and improve efficiency.

Fiber Optic Communications Industry: The Precision Guardian of Light

In fiber optic manufacturing and connectivity, precision, stability, and long service life are paramount. From couplers and adapters used in the Outside Vapor Deposition (OVD) process for preform manufacturing to sleeves and ferrule balls in fiber optic connectors, silicon nitride ceramic components are playing an increasingly vital role.

Compared to traditional quartz materials, silicon nitride offers revolutionary advantages:

  • Extended Service Life & Stability: In prolonged high-temperature process environments, silicon nitride parts exhibit excellent dimensional stability, with a lifespan also more than 10 times longer than quartz. This greatly improves the reliability and consistency of fiber production.
  • Excellent Optical Compatibility: Its specific refractive index and dispersion characteristics meet the optical design requirements of fibers, ensuring low-loss and high-fidelity signal transmission.
  • Unique Self-Lubrication & High Mechanical Performance: With a Vickers hardness of 15-16 GPa and inherent self-lubricating properties, components like ceramic ferrules and sleeves exhibit exceptional wear resistance during repeated mating cycles, maintaining stable physical connections for long-term reliability in optical communication.
The Data Behind the Exceptional Performance

The outstanding performance of silicon nitride ceramics in these demanding fields is rooted in its top-tier physical and mechanical properties, as clearly reflected in its technical specifications:

Property Value Unit
Density 3.20-3.26 g/cm³
Apparent Porosity 0-0.1 %
Bending Strength > 700 MPa
Fracture Toughness > 8.0 MPa*m¹⁄²
Vickers Hardness (HV0.5) 15-16 GPa
Linear Expansion Coefficient 3.1-3.3 x10⁻⁶/°C
Thermal Conductivity 20-25 W/(m*K)
Specific Resistivity 10¹⁴ Ω*cm

Near-zero porosity indicates high density and resistance to permeation; a high Weibull modulus (11-13) represents excellent consistency in material properties; while high elastic modulus (300-320 GPa) and hardness together underpin its outstanding dimensional rigidity. These precise numbers collectively form the foundation for the "unbreakable" performance of silicon nitride ceramics in demanding industrial applications.

From polysilicon production at the source of solar energy to the physical backbone of the global information highway in fiber optics, silicon nitride ceramics, with its all-around performance—low expansion, high strength & toughness, thermal shock resistance, corrosion resistance, superior insulation, and optical stability—quietly underpins technological advancement and efficiency gains in these two major industries. It is more than just a material; it is a key enabler for high-end manufacturing striving for higher reliability and lower lifecycle costs. As processing technologies continue to advance, silicon nitride ceramics are poised to demonstrate their extraordinary value across an even broader industrial landscape.

Company Details

Bronze Gleitlager

,

Bronze Sleeve Bushings

 and 

Graphite Plugged Bushings

 from Quality China Factory
  • Business Type:

    Manufacturer

  • Year Established:

    2017

  • Total Annual:

    800-850

  • Employee Number:

    60~70

  • Ecer Certification:

    Verified Supplier

Founded in 2017, Kegu is a leading advanced materials developer based in China’s Xixian New District, Qinhan New City—strategically positioned near major transport links including the Xianyang East Expressway. With a registered capital of 35.5 million RMB (approx. 5 million USD), we o... Founded in 2017, Kegu is a leading advanced materials developer based in China’s Xixian New District, Qinhan New City—strategically positioned near major transport links including the Xianyang East Expressway. With a registered capital of 35.5 million RMB (approx. 5 million USD), we o...

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  • Shaanxi KeGu New Material Technology Co., Ltd
  • 5# Chaoyang Road,Weicheng Sub-district,Qinhan New City, Xixian New Area, Xi'an Shaanxi Province,China,712039
  • https://www.hitech-ceram.com/

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