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notícias da empresa sobre SSiC vs Recrystallized SiC (RSiC): Strength, Porosity and Performance

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China Shaanxi KeGu New Material Technology Co., Ltd Certificações
China Shaanxi KeGu New Material Technology Co., Ltd Certificações
Revisões do cliente
NGK valoriza a nossa parceria de longa data com Shaanxi Kegu. As suas cerâmicas SSiC se destacam em qualidade e inovação, impulsionando o nosso sucesso mútuo.

—— NGK Thermal Technology Co.,Ltd

Na Huike, orgulhamo-nos da nossa longa parceria com a Shaanxi Kegu New Material Technology Co., Ltd., uma colaboração enraizada na confiança, inovação e excelência partilhada. A sua experiência em cerâmica SSiC e soluções confiáveis têm consistentemente apoiado os nossos projetos.

—— SuzhouHuike Technology Co.,Ltd

Nós, da Keda, apreciamos muito nossa longa parceria com a Shaanxi Kegu New Material Technology Co., Ltd. Suas soluções cerâmicas SSiC de alta qualidade têm sido parte integrante de nossos projetos e esperamos uma colaboração contínua e sucesso compartilhado.

—— Keda Industrial Group Co.,Ltd.

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empresa Notícias
SSiC vs Recrystallized SiC (RSiC): Strength, Porosity and Performance
últimas notícias da empresa sobre SSiC vs Recrystallized SiC (RSiC): Strength, Porosity and Performance
What is the Key Difference Between SSiC and RSiC?

The core difference is porosity

  • RSiC: ~15% porosity
  • SSiC: ~0 (near fully dense)

Porosity determines strength, corrosion resistance, and lifetime

Microstructure Difference (Why It Matters)
Material Structure
RSiC Large grains + high porosity (~15%)
SSiC Dense fine grains
  • RSiC = large grains + open pores
  • SSiC = fine grains + dense structure

Porosity acts as:

  • crack initiation sites
  • diffusion channels
  • stress concentrators
Why Porosity is Critical in Real Applications

High porosity leads to:

  • Lower mechanical strength (load cannot be transferred effectively)
  • Faster corrosion (gas/liquid penetration)
  • Accelerated creep deformation
  • Reduced service life

Porosity is not just a structure feature—it is a failure origin

Mechanical & High-Temperature Performance
Property SSiC RSiC
Bending Strength ~380 MPa ~100 MPa
High-temp strength Stable Significant drop
  • SSiC ≈ 3–4* strength of RSiC
  • Difference increases at high temperature

At elevated temperatures, porous structures degrade faster due to grain boundary weakening.

Creep Resistance 

RSiC:

  • porous → stress concentration
  • grain boundary sliding
  • deformation under load

SSiC:

  • dense structure
  • higher modulus (~420–430 GPa)
  • better creep resistance

Creep deformation is strongly controlled by density and grain bonding

Application Differences
RSiC

Suitable for:

  • lightweight structures
  • low load applications
  • thermal shock environments

Not suitable for:

  • long-span beams
  • high mechanical load
SSiC

Suitable for:

  • kiln rollers / beams
  • lithium battery furnaces
  • chemical environments

Especially critical for:

  • long-term operation (>1000 h)
  • high temperature (>1400°C)
Engineering Selection Guide

Use SSiC if:

✔ High load
✔ Long span
✔ Corrosive atmosphere
✔ Long service life required

Use RSiC if:

✔ Lightweight is priority
✔ Mechanical load is low

Final Takeaway

RSiC → lightweight but limited by porosity
SSiC → dense structure → stable performance

For demanding applications, SSiC is the safer engineering choice

Tempo do bar : 2026-04-23 10:38:10 >> lista da notícia
Contacto
Shaanxi KeGu New Material Technology Co., Ltd

Pessoa de Contato: Ms. Yuki

Telefone: 8615517781293

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