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berita perusahaan tentang SSiC vs Recrystallized SiC (RSiC): Strength, Porosity and Performance

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Cina Shaanxi KeGu New Material Technology Co., Ltd Sertifikasi
Cina Shaanxi KeGu New Material Technology Co., Ltd Sertifikasi
Ulasan pelanggan
NGK menghargai kemitraan lama kami dengan Shaanxi Kegu. Keramik SSiC mereka unggul dalam kualitas dan inovasi, mendorong kesuksesan bersama kami.

—— NGK Thermal Technology Co.,Ltd

Di Huike, kami bangga dengan kemitraan jangka panjang kami dengan Shaanxi Kegu New Material Technology Co., Ltd., sebuah kolaborasi yang berakar pada kepercayaan, inovasi, dan keunggulan bersama. Keahlian mereka dalam keramik SSiC dan solusi yang andal secara konsisten mendukung proyek-proyek kami.

—— SuzhouHuike Technology Co.,Ltd

Kami di Keda sangat menghargai kemitraan lama kami dengan Shaanxi Kegu New Material Technology Co., Ltd.Solusi keramik SSiC berkualitas tinggi mereka telah menjadi bagian integral dari proyek kami dan kami berharap untuk melanjutkan kolaborasi dan kesuksesan bersama.

—— Keda Industrial Group Co., Ltd.

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perusahaan Berita
SSiC vs Recrystallized SiC (RSiC): Strength, Porosity and Performance
berita perusahaan terbaru tentang 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

Pub waktu : 2026-04-23 10:38:10 >> daftar berita
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Shaanxi KeGu New Material Technology Co., Ltd

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Tel: 8615517781293

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