China High-Quality FVT95 Fabric Viscoelastic Tape from China Suppliers | Durable Corrosion Protection Factory Solutions Manufacturers, Supplier

Introducing the CYCT FVT95 Fabric Viscoelastic Tape, a top-tier solution for corrosion prevention, offered from our factory in China. This advanced, amorphous, apolar, viscoelastic, and semi-solid polyolefin coating features a paintable backing, making it suitable for both underground and aboveground substrates. As one of the leading suppliers in the industry, we provide a comprehensive viscoelastic coating system that includes a corrosion protective sealant or mastic, complemented by a robust mechanical protective outer layer and optional epoxy coating. This innovative coating system ensures exceptional corrosion resistance and waterproofing for a wide range of substrates, making it an ideal choice for your protective needs

Product Description

Features

  • Simple surface preparation and directly applied on steel, PE, PP, FBE without primer.
  • Excellent impermeability to water and oxygen.
  • Perfect chemical resistance.
  • Resistant to aggressive soil conditions such as water, acid, salts, or soil organics.
  • Contains no solvents, no carcinogens, non-toxic, non-flammable.
  • Flexible, pliable, conforms to irregular shapes easily.
  • Ability to fill voids and anomalies of substrate.
  • Wide applicable temperature -45℃~95℃.
  • Controllable construction quality and seldom affected by environment and operator skill.

Uniform Aesthetics: When applied to exposed equipment like storage tanks and pipelines, it can be painted to match the main equipment coating.

Double Protection: Adding a coating protective layer over the viscoelastic tape anticorrosion layer further improves weather resistance and chemical corrosion resistance, extending the protection durability.

Flexible Identification: Enables color differentiation and warning sign marking through painting.

Technical Performance

Property Test temp Unit Requirements CYCT Value Test Method
Minimum thickness 23 °C mm ≥Specified minimum value 1.8 Annex B
Glass transition temperature - °C At least 20°C below minimum application temperature ≤-56℃ ISO 11357-2
Crystallization temperature - °C No evidence of crystallization No evidence of crystallization ISO 11357-3
Holiday detection at 5 kV/mm + 5 kV, max. 25 kV - -- no holiday no holiday Annex C
Drip Resistance 115 °C -- No Dropping of compound No Dropping of compound Annex K
Adhesion test of reinforced compound with respect to steel and to plant coating (23 °C) 23 °C N/mm ≥0.04 (Cohesive separation mode Coverage ≥ 95 %) 0.40 (Cohesive separation mode Coverage > 95 %) Annex H (and M.3 and Annex I)
Adhesion test of reinforced compound with respect to steel and to plant coating (95°C) 95°C N/mm ≥0.02 (Cohesive separation mode Coverage ≥ 95 %) 0.05 (Cohesive separation mode Coverage > 95 %) Annex H (and M.3 and Annex I)
Adhesion test after thermal ageing, for 100 days at Tmax + 20 °C (23 °C) 23 °C N/mm ≥0.04 (Cohesive separation mode Coverage ≥ 95 %) 0.38 (Cohesive separation mode Coverage > 95 %) Annex H (and M.3 and Annex I)
Adhesion test after thermal ageing, for 100 days at Tmax + 20 °C (95°C) 95°C N/mm ≥0.02 (Cohesive separation mode Coverage ≥ 95 %) 0.04 (Cohesive separation mode Coverage > 95 %) Annex H (and M.3 and Annex I)
Adhesion test after hot-water immersion, for 100 days at Tmax + 20 °C (23 °C) 23 °C N/mm ≥0.04 (Cohesive separation mode Coverage ≥ 95 %) 0.35 (Cohesive separation mode Coverage > 95 %) Annex H (and M.3 and Annex I)
Adhesion test after hot-water immersion, for 100 days at Tmax + 20 °C (95°C) 95°C N/mm ≥0.02 (Cohesive separation mode Coverage ≥ 95 %) 0.04 (Cohesive separation mode Coverage > 95 %) Annex H (and M.3 and Annex I)
Lap shear resistance (23 °C) 23 °C N/mm² ≥0.004 (Cohesive separation mode Coverage ≥95 %) 0.04 (Cohesive separation mode Coverage ≥95 %) Annex I
Lap shear resistance (95°C) 95°C N/mm² ≥0.002 (Cohesive separation mode Coverage ≥95 %) 0.003 (Cohesive separation mode Coverage ≥95 %) Annex I
Specific electrical insulation resistance RS100 23 °C Ω⋅m² ≥10⁸ 1.0x10¹¹ Annex F
Specific electrical insulation resistance RS100/RS70 23 °C - ≥0.8 0.90 Annex F
Complete coating
Impact resistance 23 °C J ≥15 > 15 Annex D
Indentation resistance - FJC Type 23 °C and 95°C N/mm² 13A 13A-3 Annex E
Indentation resistance - Test pressure 23 °C and 95°C N/mm² 1.0 1.0 Annex E
Indentation resistance - Residual thickness 23 °C and 95°C mm ≥0.6 1.2 Annex E
Cathodic disbondment resistance at 28 days 23 °C and 95°C mm 0 mm, no holiday 0 mm, no holiday Annex G (and Annex C and 13.5.7)

Specification

Tape Thickness: 1.3mm/1.5mm /1.8mm / 2.0 mm

Tape Width: 100mm or according to your requirements

Tape Length: 10 m/Roll or according to your requirements.

FVT95 Fabric Viscoelastic Tape

Frequently Asked Questions

What surfaces can FVT95 Fabric Viscoelastic Tape be applied to?
FVT95 can be directly applied to steel, PE, PP, and FBE surfaces without requiring a primer. Simple surface preparation is sufficient for proper adhesion.
What is the operating temperature range for this tape?
The tape has a wide applicable temperature range from -45℃ to 95℃, making it suitable for various environmental conditions and climates.
Is FVT95 tape safe to use and environmentally friendly?
Yes, FVT95 contains no solvents, no carcinogens, is non-toxic, and non-flammable, making it safe for workers and the environment.
Can the tape conform to irregular shapes?
Absolutely. The tape is flexible and pliable, allowing it to conform easily to irregular shapes and fill voids and anomalies of the substrate.
What thicknesses are available for FVT95 tape?
FVT95 is available in multiple thicknesses: 1.3mm, 1.5mm, 1.8mm, and 2.0mm. The standard width is 100mm with a length of 10m per roll, though custom dimensions can be provided according to your requirements.
How does FVT95 perform in aggressive soil conditions?
FVT95 offers excellent resistance to aggressive soil conditions including water, acid, salts, and soil organics. It provides perfect chemical resistance and excellent impermeability to water and oxygen, ensuring long-term protection.

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