Details
Brief Introduction
Chemical-Resistant Coated Basalt Fabrics is basalt fabric coated with polymer systems selected for chemical, abrasion or handling requirements. It provides overseas buyers with a practical basalt-based solution for chemical processing barriers, industrial covers, ducts, flexible connectors and fabricated protective products. The product combines the inherent thermal and corrosion resistance of basalt fiber with a construction selected for handling, conversion and end-use performance.
The quoted grade should always be matched to the actual service environment. Buyers should identify the required dimensions, construction, continuous and peak temperatures, contact medium, mechanical load, installation method and applicable test standard. The final construction, surface treatment and packaging can then be adjusted to the approved purchasing specification.

Product Advantages
-Selectable chemical resistance.
-Low-friction or abrasion options.
-Reduced fraying.
-Colorability.
-Basalt-based construction provides a non-asbestos, corrosion-resistant alternative for appropriate industrial applications.
-The product can be supplied in OEM dimensions and packaging when production capability and minimum order quantity are confirmed.

Types by Construction or Weave Pattern
PTFE-Coated Basalt Fiber Fabric: Low-friction coated fabric for release and compatible chemical service.
Buyer note: PTFE-coated basalt fiber fabric is selected for low friction, release and compatible chemical exposure. Specify the chemical, concentration, temperature, pressure and flexing cycle rather than relying on a generic chemical-resistance claim.
PU-Coated Basalt Fiber Fabric: Flexible abrasion barrier for covers and ducts.
Buyer note: PU-coated basalt fiber fabric provides a flexible, abrasion-resistant barrier for covers, ducts and fabricated parts. It is a handling and protection coating, not automatically a high-temperature coating.
Acrylic-Coated Basalt Fiber Fabric: Economical stabilizing finish for cutting and fabrication.
Buyer note: Acrylic-coated basalt fiber fabric improves edge stability, surface cohesion and fabrication handling at a practical cost. Confirm the coating temperature limit when the product will remain in a hot zone.
Product Classification
-Product family: Chemical-Resistant Coated Basalt Fabrics.
-Construction or product form: PTFE-Coated Basalt Fiber Fabric, PU-Coated Basalt Fiber Fabric or Acrylic-Coated Basalt Fiber Fabric.
-Surface condition: uncoated or product-specific treatment as stated in the product name and approved specification.
-Supply grade: standard industrial grade, converter grade, OEM grade or custom grade.
-Commercial size range: finished mass 250-1500 g/m2 as a preliminary sourcing range.

Product Performance
The principal commercial benefit of Chemical-Resistant Coated Basalt Fabrics is selectable chemical resistance, low-friction or abrasion options, reduced fraying, colorability. Performance depends on yarn grade, construction density, surface treatment, dimensions and the severity and duration of exposure. Basalt fiber normally provides useful heat stability and resistance to many corrosive environments, but compatibility must be confirmed with the actual chemical, pressure, abrasion and thermal cycle.
-Thermal performance: specify continuous service temperature, short-term peak temperature, exposure duration and whether radiant heat or direct flame is present.
-Mechanical performance: Selectable chemical resistance; verify tensile, tear, compression, abrasion or flex data appropriate to the product form.
-Fire performance: test the finished product because sizing, binder, coating, adhesive, foil and sewing materials can change flame spread, smoke and after-flame behavior.
-Chemical performance: verify resistance to the named acid, alkali, oil, fuel, steam, salt, solvent or process gas at the specified concentration and temperature.
-Quality consistency: control appearance, dimensions, mass, construction, treatment add-on, roll or coil length and batch traceability.
Technical Data Parameters
The following items should appear on the final technical data sheet or purchase specification:
-Primary size range: finished mass 250-1500 g/m2 as a preliminary sourcing range.
-Construction: PTFE-Coated Basalt Fiber Fabric, PU-Coated Basalt Fiber Fabric or Acrylic-Coated Basalt Fiber Fabric.
-Material composition: basalt fiber content plus complete identification of sizing, binder, coating, adhesive, film, foil, core or sewing thread where applicable.
-Dimensional data: nominal width, diameter, section, thickness, length and the agreed tolerance for each relevant dimension.
-Physical data: mass per unit area or length, density, coating add-on, porosity or air permeability when relevant.
-Mechanical data: tensile strength, tear strength, compression recovery, abrasion resistance, peel strength or burst strength as applicable.
-Thermal data: continuous temperature, short-term peak, linear shrinkage, thermal conductivity or radiant-heat performance when required.
-Finished color and appearance: natural basalt color or coating-dependent color, with an agreed visual acceptance standard.
-Supply form: roll, reel, coil, bag, carton or pallet, including unit length, joints policy, core size and labeling.

SPECIFICATION
Product name | Chemical-Resistant Coated Basalt Fabrics |
Product classification | PTFE-Coated Basalt Fiber Fabric, PU-Coated Basalt Fiber Fabric or Acrylic-Coated Basalt Fiber Fabric |
Primary size range | finished mass 250-1500 g/m2 as a preliminary sourcing range |
Construction or weave pattern | PTFE-Coated Basalt Fiber Fabric, PU-Coated Basalt Fiber Fabric or Acrylic-Coated Basalt Fiber Fabric |
Material and treatment | Basalt fiber plus the approved sizing, coating, adhesive, foil, binder or core system |
Dimensions and tolerance | Width, diameter, thickness, length or section and tolerance to be confirmed in the approved purchase specification |
Temperature rating | Continuous service, short-term peak, exposure duration and direct-flame condition to be stated separately |
Mechanical data | Tensile, tear, compression, abrasion, peel or burst properties as applicable to the product form |
Supply form | Roll, reel, coil, bag, carton or pallet; unit length and joints policy to be agreed |
Customization | Dimensions, treatment, color, packaging, labeling and private label subject to capability and MOQ |
Specifications are for reference only. For exact dimensions, performance requirements, customization, testing and project-specific recommendations, please contact us.

Applications
-Chemical processing barriers: use chemical-resistant coated basalt fabrics where its construction and verified performance match the operating conditions.
-Industrial covers: use chemical-resistant coated basalt fabrics where its construction and verified performance match the operating conditions.
-Ducts: use chemical-resistant coated basalt fabrics where its construction and verified performance match the operating conditions.
-Flexible connectors and fabricated protective products: use chemical-resistant coated basalt fabrics where its construction and verified performance match the operating conditions.
-OEM fabrication: Chemical-Resistant Coated Basalt Fabrics may be cut, sewn, wrapped, laminated, molded or assembled into finished thermal or reinforcement components when the selected grade supports the process.
-Maintenance and retrofit projects: useful for replacement, localized protection and upgrade work where installation access and shutdown time are important selection factors.
Transport and Storage
-Transport chemical-resistant coated basalt fabrics in dry, covered vehicles and protect it from rain, crushing, puncture and contamination.
-Keep the original label and batch identification intact; do not drag rolls, reels or coils across rough floors.
-Store indoors in the original sealed packaging, ideally at 5-35 C and below 70% relative humidity.
-Keep away from incompatible chemicals, direct sunlight and ignition sources. Apply FIFO and confirm shelf life for treated or coated grades.

FAQ
Q: What information is required to quote Chemical-Resistant Coated Basalt Fabrics?
A: Specify finished mass 250-1500 g/m2 as a preliminary sourcing range, required construction, operating temperature, exposure medium, installation method, quantity, destination and applicable test standard.
Q: How should a buyer select the correct type of Chemical-Resistant Coated Basalt Fabrics?
A: Select first by function, then by construction, dimensions, mechanical demand, thermal cycle and chemical exposure. A sample trial is recommended when replacing another material.
Q: What continuous and peak temperatures can Chemical-Resistant Coated Basalt Fabrics withstand?
A: The values must be confirmed for the complete finished construction. Continuous service, short-term peak, radiant exposure and direct flame are different conditions, and the lowest-rated component controls the product rating.
Q: Can Chemical-Resistant Coated Basalt Fabrics be customized for OEM orders?
A: Yes. Dimensions, construction, surface treatment, color, unit length, packaging and private labeling can be discussed, subject to manufacturing capability and MOQ.
Q: How is Chemical-Resistant Coated Basalt Fabrics installed or processed?
A: The method depends on the product form and may include wrapping, clamping, sewing, bonding, molding or mechanical fastening. The buyer should approve installation instructions and accessory compatibility before use.
Q: Does Chemical-Resistant Coated Basalt Fabrics contain asbestos?
A: Basalt fiber products are normally manufactured as non-asbestos materials. A supplier declaration or third-party report should support any formal compliance claim.
Q: Which Chemical-Resistant Coated Basalt Fabrics types are available?
A: The available product names are PTFE-Coated Basalt Fiber Fabric, PU-Coated Basalt Fiber Fabric, Acrylic-Coated Basalt Fiber Fabric. Selection depends on the required structure, drape, compression, surface behavior or fabrication method.
Q: Can different Chemical-Resistant Coated Basalt Fabrics types be supplied under one project?
A: Yes. A project may use more than one Chemical-Resistant Coated Basalt Fabrics type, but every type should have its own item code, dimensions, acceptance criteria and packaging label.
Q: What is the specific advantage of PTFE-Coated Basalt Fiber Fabric?
A: PTFE-coated basalt fiber fabric is selected for low friction, release and compatible chemical exposure. Specify the chemical, concentration, temperature, pressure and flexing cycle rather than relying on a generic chemical-resistance claim. The final choice should be confirmed against the buyer's temperature, chemical, mechanical and installation requirements.
Q: What is the specific advantage of PU-Coated Basalt Fiber Fabric?
A: PU-coated basalt fiber fabric provides a flexible, abrasion-resistant barrier for covers, ducts and fabricated parts. It is a handling and protection coating, not automatically a high-temperature coating. The final choice should be confirmed against the buyer's temperature, chemical, mechanical and installation requirements.
Q: What is the specific advantage of Acrylic-Coated Basalt Fiber Fabric?
A: Acrylic-coated basalt fiber fabric improves edge stability, surface cohesion and fabrication handling at a practical cost. Confirm the coating temperature limit when the product will remain in a hot zone. The final choice should be confirmed against the buyer's temperature, chemical, mechanical and installation requirements.
Q: How should the coating or lamination on Chemical-Resistant Coated Basalt Fabrics be specified?
A: State coating chemistry, coated side, color, add-on or finished mass, adhesion requirement, flexibility, operating temperature and the exact chemical or weather exposure.
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