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Flame Retardant Silicone Foam with 5-10 MPa Tensile Strength, 100-200% Elongation, and Less Than 10% Compression Set

Flame Retardant Silicone Foam with 5-10 MPa Tensile Strength, 100-200% Elongation, and Less Than 10% Compression Set

Marchio: Ohory Electric
MOQ: 1000 Pcs
Prezzo: Confirm Price Based On Product
Dettagli dell' imballaggio: According To Requirement
Condizioni di pagamento: TT/LC
Informazione dettagliata
Certificazione:
ISO 9001/UL/IEC/CNAS/CMA
Resistenza ai raggi UV:
Bene
Resistenza alla trazione:
5-10 MPa
Materiale:
silicone
Allungamento a rottura:
100-200%
Spessore:
0.5-30 mm
Insieme di compressione:
Meno del 10%
Proporzione:
0.45+0.03
Conducibilità termica:
0,1-0,2 W/mK
Evidenziare:

5-10 MPa Tensile Strength Silicone Foam

,

100-200% Elongation Flame Retardant Foam

,

Less Than 10% Compression Set Silicone Rubber Foam

Descrizione di prodotto
High Temperature Resistance Up To 200°C Flame Retardant Silicone Foam
Product Description
Our Flame Retardant Silicone Foam is a premium-grade material designed for demanding applications requiring fire-resistant expanding foam. Available in thickness options from 0.5-30 mm, this silicone foam delivers exceptional thermal insulation performance in high-temperature environments up to 200°C.
The material features low thermal conductivity (0.1-0.2 W/mK) for effective heat retention, a uniform structure (proportion 0.45±0.03) for consistent performance, and excellent elongation at break (100-200%) for flexibility under mechanical stress. With a compression set below 10%, it maintains its shape and insulating properties even under prolonged compression.
Key Features
  • Product Name: Flame Retardant Silicone Foam
  • Width: <910mm
  • Compression Set: Less Than 10%
  • Temperature Resistance: Up To 200°C
  • Thermal Conductivity: 0.1-0.2 W/mK
  • Elongation At Break: 100-200%
Technical Specifications
Parameter Value
Tensile Strength 5-10 MPa
Material Silicone
Proportion 0.45±0.03
Thickness 0.5-30 mm
Environmental Standards ROHS 2.0
Color White
Foam Type Closed Cell
Applications
Ohory Electric's Flame Retardant Silicone Foam is ideal for industries requiring fire-resistant insulation solutions. Its certifications (ISO 9001, UL, IEC, CNAS, CMA) ensure compliance with international safety standards. Applications include:
  • Electrical component insulation
  • Protection for sensitive equipment
  • Flame-retardant barriers
  • High-temperature environments
Frequently Asked Questions
What is the brand name of this Flame Retardant Silicone Foam product?
The brand name is Ohory Electric.
Where is this product manufactured?
Manufactured in Dongguan, China.
What certifications does this product have?
Certified with ISO 9001, UL, IEC, CNAS, and CMA.
What is the minimum order quantity?
Minimum order quantity is 1000 pieces.
What payment terms are accepted?
Accepted payment terms: TT (Telegraphic Transfer) and LC (Letter of Credit).
Buon prezzo  in linea

Dettagli dei prodotti

Casa > prodotti >
Materiali resistenti al fuoco
>
Flame Retardant Silicone Foam with 5-10 MPa Tensile Strength, 100-200% Elongation, and Less Than 10% Compression Set

Flame Retardant Silicone Foam with 5-10 MPa Tensile Strength, 100-200% Elongation, and Less Than 10% Compression Set

Marchio: Ohory Electric
MOQ: 1000 Pcs
Prezzo: Confirm Price Based On Product
Dettagli dell' imballaggio: According To Requirement
Condizioni di pagamento: TT/LC
Informazione dettagliata
Marca:
Ohory Electric
Certificazione:
ISO 9001/UL/IEC/CNAS/CMA
Resistenza ai raggi UV:
Bene
Resistenza alla trazione:
5-10 MPa
Materiale:
silicone
Allungamento a rottura:
100-200%
Spessore:
0.5-30 mm
Insieme di compressione:
Meno del 10%
Proporzione:
0.45+0.03
Conducibilità termica:
0,1-0,2 W/mK
Minimum Order Quantity:
1000 Pcs
Prezzo:
Confirm Price Based On Product
Packaging Details:
According To Requirement
Delivery Time:
Depends On Total Quantity
Payment Terms:
TT/LC
Evidenziare:

5-10 MPa Tensile Strength Silicone Foam

,

100-200% Elongation Flame Retardant Foam

,

Less Than 10% Compression Set Silicone Rubber Foam

Descrizione di prodotto
High Temperature Resistance Up To 200°C Flame Retardant Silicone Foam
Product Description
Our Flame Retardant Silicone Foam is a premium-grade material designed for demanding applications requiring fire-resistant expanding foam. Available in thickness options from 0.5-30 mm, this silicone foam delivers exceptional thermal insulation performance in high-temperature environments up to 200°C.
The material features low thermal conductivity (0.1-0.2 W/mK) for effective heat retention, a uniform structure (proportion 0.45±0.03) for consistent performance, and excellent elongation at break (100-200%) for flexibility under mechanical stress. With a compression set below 10%, it maintains its shape and insulating properties even under prolonged compression.
Key Features
  • Product Name: Flame Retardant Silicone Foam
  • Width: <910mm
  • Compression Set: Less Than 10%
  • Temperature Resistance: Up To 200°C
  • Thermal Conductivity: 0.1-0.2 W/mK
  • Elongation At Break: 100-200%
Technical Specifications
Parameter Value
Tensile Strength 5-10 MPa
Material Silicone
Proportion 0.45±0.03
Thickness 0.5-30 mm
Environmental Standards ROHS 2.0
Color White
Foam Type Closed Cell
Applications
Ohory Electric's Flame Retardant Silicone Foam is ideal for industries requiring fire-resistant insulation solutions. Its certifications (ISO 9001, UL, IEC, CNAS, CMA) ensure compliance with international safety standards. Applications include:
  • Electrical component insulation
  • Protection for sensitive equipment
  • Flame-retardant barriers
  • High-temperature environments
Frequently Asked Questions
What is the brand name of this Flame Retardant Silicone Foam product?
The brand name is Ohory Electric.
Where is this product manufactured?
Manufactured in Dongguan, China.
What certifications does this product have?
Certified with ISO 9001, UL, IEC, CNAS, and CMA.
What is the minimum order quantity?
Minimum order quantity is 1000 pieces.
What payment terms are accepted?
Accepted payment terms: TT (Telegraphic Transfer) and LC (Letter of Credit).