Flexible Ceramic Fiber

Starshield Armor T-series
A / H

  • Excellent Thermal Stability
  • Superior Mechanical Performance
  • Ultra-Low Thermal Conductivity
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The T-Series non-intumescent inorganic thermal insulation coating demonstrates outstanding overall product performance.

The T-Series non-intumescent inorganic thermal-insulation coating achieves ultra-thin thermal protection. Excelling in key indicators such as mechanical strength, thermal stability, durability, and fire-resistant insulation, it successfully overcomes the thickness and performance limitations of conventional insulation materials.

Starshield Armor T-Series Model A — Instantaneous Application Temperature

600 ℃

With its non-intumescent structure, it readily withstands instantaneous temperatures of 600 °C.
When temperatures surge instantaneously to 600 °C, conventional materials face the twin challenges of deformation and failure. Leveraging its uniquely stable structure, the T-Series non-intumescent insulation material exhibits excellent dimensional and performance stability under severe thermal fluctuations, maintaining consistent and close adhesion to protected surfaces. Its ultra‑thin design aims to create a reliable thermal barrier within limited spaces while offering good mechanical flexibility, thermal stability, and durability, delivering dependable protection under repeated thermal shocks. It provides a lightweight, high‑reliability high‑temperature protection solution for applications such as high‑temperature industrial kilns, new‑energy batteries, aerospace equipment, and major infrastructure projects.
Starshield Armor T-Series Model H — Instantaneous Application Temperature

1,200 ℃

Featuring a non-intumescent, stable structure, it withstands the severe test of instantaneous 1,200 °C flames.
Under instantaneous temperatures of 1,200 °C, most conventional materials struggle to maintain structural and performance integrity. Relying on its inherently stable ceramic framework and dense nanoporous structure, the T-Series non-intumescent inorganic insulation coating resists expansion, cracking, and pulverization under extreme heat, consistently retaining its geometry and insulation performance. Its ultra‑thin design builds a reliable thermal barrier under stringent space constraints, combining good mechanical properties with high‑temperature insulation performance. It ensures continuous adhesion to complex surfaces under dramatic temperature fluctuations, providing long‑lasting protection. With its excellent high‑temperature stability and lightweight advantages, the T‑Series material offers a dependable solution for extreme thermal environments.

Internationally Pioneered Turbulence-Assisted Electrospinning Technology

Our proprietary gas-turbulence-assisted electrospinning process successfully produces semi-crystalline nano-ceramic fibers, breaking through the physical limitation of conventional electrospinning, which could previously fabricate only two-dimensional films. This achievement marks a revolutionary leap toward high-performance, three-dimensional, macro-scale materials.
One Technology, Infinite Possibilities

We explore not only the temperature limits of materials but also the breadth and depth of safe, reliable technological application.

From the depths of space to the vastness of the earth, from harsh industrial environments to sophisticated electronic devices, we are committed to translating the exceptional performance of our materials into core solutions that address thermal management challenges across industries.

We not only offer standardized safety solutions but also possess strong capabilities in collaborative R&D and rapid customization. Tailoring designs to meet the unique operating conditions, safety regulations, and specific requirements of different sectors, we develop specialized models and application processes that balance superior performance with inherent safety.

This cross-industry exploration capability stems from our profound understanding of the fundamental principles of materials science and our rigorous commitment to quality and safety systems. We are bringing aerospace-grade, rigorously validated insulation technologies and safety standards into broader fields such as high-temperature industrial kilns, new-energy batteries, aerospace equipment, and major infrastructure projects. By building robust barriers for every innovative application, we enable transformative materials science to empower the advancement of countless industries, safely and reliably.

Quality Safety

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    Ceramic Nanofiber Aerogel

    High-Entropy Nanofiber Aerogel

    Service Temperature: 1,600 ℃

    High-Temperature Thermal Conductivity < 0.08 W/(m·K)

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    High-Entropy Nanofiber Aerogel

    Highly Flexible & Large Deformation

    Service Temperature: 1,800  ℃

    High Temperature Thermal Conductivity < 0.05 W/(m·K)

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    Ceramic Nanosheet Aerogel

    Flexible & Super-Elastic

    Service Temperature: 1,200  ℃

    Room Temperature Thermal Conductivity < 0.02 W/(m·K)

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    Stretchable Ceramic Aerogel

    Elongation up to 150%

    Highly Flexible & High Temperature Resistant

    Strain-Insensitive Thermal Insulation

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    Graphene Aerogel

    Highly Flexible & Large Deformation

    Service Temperature (Vacuum): 2,500  ℃

    Room-Temperature Thermal Conductivity < 0.02 W/(m·K)

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    High-Temperature-Resistant Nanoporous Aerogel

    Room-Temperature Thermal Conductivity < 0.02 W/(m·K)

    Low-Cost Drying at Ambient Temperature & Pressure

    Breakthrough Service Temperature up to 1,000  ℃

Starshield Armor T-Series - Model A Product Specifications
  • Instantaneous (Transient) Application Temperature

    600 ℃

  • Long-Term Service Temperature

    90 ℃

  • Dry Density

    240-300 mg/cm³

  • Wet Density

    500-600 mg/cm³

  • Single-Coat Thickness

    6 mm

  • Curing Time (at room temperature)

    12h

  • Bending Angle

    120~150°

  • Bonding Strength

    3-5 MPa

  • Thermal Conductivity (at 25 °C)

    0.03-0.04 W/(m·K)

  • Thermal Conductivity (at 100 °C)

    ≤0.05 W/(m·K)

  • Initial Drying Crack Resistance (3 h)

    Crack-Free

Starshield Armor T-Series - Model H Product Specifications
  • Instantaneous (Transient) Application Temperature

    1,200 ℃

  • Long-Term Service Temperature

    900 ℃

  • Dry Density

    440-500 mg/cm³

  • Wet Density

    600-800 mg/cm³

  • Single-Coat Thickness

    3 mm

  • Curing Time (at room temperature)

    5 d; 80 ℃: 2 h

  • Compressive Strength

    120-150°

  • Bonding Strength

    ~1 MPa

  • 25 ℃ Thermal Conductivity (at 25  ℃)

    0.04-0.07 W/(m·K)

  • 100 ℃ Thermal Conductivity (at 100  ℃)

    ≤0.20 W/(m·K)

  • Initial Drying Crack Resistance (3 h)

    Crack-Free

Application Scenarios

In response to high-temperature challenges that conventional insulation materials struggle to handle, new ceramic fiber materials are redefining thermal-management standards with their exceptional high-temperature resistance. Whether in demanding industrial high-temperature environments or specialized extreme-heat applications, they reliably fulfill multiple roles, including fire-resistant insulation, thermal insulation and energy conservation, and sound absorption and noise reduction.

  • High-Temperature Kilns
    High-Temperature Kilns
  • New Energy Batteries
    New Energy Batteries
  • Aerospace Equipment
    Aerospace Equipment
  • Major Infrastructure
    Major Infrastructure

Pursuing Excellence, Leading the Future