Enquire on WhatsApp

Application guide

FRP for Corrosive Service With a Fire Requirement

Some equipment has to resist chemicals and meet a fire requirement at the same time. Why that combination has its own grade, and what to establish before specifying it.

Two requirements at once, and one grade built for both.

Most FRP equipment has one governing requirement. A storage tank has to resist what is inside it. A wall panel has to meet a fire requirement. A smaller set of equipment has both at once: extract ducting carrying a corrosive vapour through an occupied building, scrubber components, process equipment in a plant with its own fire regime. That combination is the reason a separate grade exists, because meeting one requirement with a resin chosen for the other is where specifications come apart.

What manufacturers build

Fabricators in this category produce ducting and extract systems handling corrosive vapour, scrubber and process equipment, tanks and vessels in plants with a fire requirement, and structural or enclosure components in chemically loaded environments. The defining feature is that two separate requirements have to be satisfied by one laminate, and both have to be evidenced separately.

Why this material suits the work

ISO Fire Retardant Resin is published by Samrat Poly Resins, India as an unsaturated polyester resin with a halogen-free, ATH-filled fire-retardant formulation, a room-temperature cure with an MEKP catalyst, a viscosity of 400 cPs, a gel time of 5.5 minutes, a styrene content of 35% and a specific gravity of 1.18 g/cm³. The "ISO" refers to isophthalic resin chemistry and not to an ISO certification. The isophthalic backbone is the part that addresses wet and chemically loaded service, and the halogen-free filled formulation is the part that addresses the fire input. As with any fire-retardant grade, the classification describes the resin rather than the fire performance of a finished laminate.

Required resin characteristics

  • An isophthalic backbone, for laminates that stay wet or meet chemicals over a long service life
  • A documented fire-retardant formulation, so the fire input to a specification can be evidenced
  • A halogen-free route, which some projects and some clients require explicitly
  • Room-temperature cure, so the work does not require different equipment from ordinary lamination
  • Chemical-resistance guidance for the specific service condition, obtained from the manufacturer rather than inferred

Process context

The lamination itself follows ordinary room-temperature practice: a prepared and released mould or mandrel, reinforcement placed and wetted out with catalysed resin, layers built to the specified schedule, cure, release and trim. Where this work differs is in what has to be established first. The chemical, its concentration and its service temperature decide whether an isophthalic laminate is the right answer at all, or whether the duty belongs to vinyl ester. The fire requirement decides which standard governs and what construction has to be tested. Both need settling before fabrication. Laminate schedule, catalyst dosage and cure conditions belong to the current supplier documentation and your own approved procedure, and none is published here.

Advantages

  • One documented grade addresses both the chemical and the fire input rather than compromising on one
  • A halogen-free formulation, which is a requirement in its own right on some projects
  • An isophthalic backbone, the route the industry specifies for wet and chemically loaded service
  • The supplier Technical Data Sheet and Safety Data Sheet are both on file and linked from the product page

Common products

  • Ducting and extract systems handling corrosive vapour
  • Scrubber and process equipment components
  • Tanks and vessels in plants with a fire requirement
  • Enclosures and structural components in chemically loaded environments

Common questions

Does the "ISO" mean this resin is ISO certified?

No. It refers to isophthalic resin chemistry, which is a description of what the resin is made from. It is not a certification and it is unrelated to ISO 9001. There is a fuller explainer on that naming, because it is the single most common misreading in this part of the range.

Why choose a halogen-free formulation?

Some projects and some clients require it explicitly, and where that is the case it is a specification requirement rather than a preference. Where a project does not rule out halogenated systems, the Fire Retardant Resin grade is the other documented route and there is a comparison guide covering both.

Is this enough for an aggressive chemical duty?

It depends entirely on the chemical, its concentration and its temperature. An isophthalic laminate handles a great deal but not everything, and above a certain severity the conversation moves to vinyl ester. Send the service condition rather than a resin name and the question can be answered properly.

Does this grade give my ducting a fire rating?

No. A fire-retardant classification describes the resin. A rating belongs to a finished construction and is established by testing it against a named standard. Establish which standard applies before fabrication, since the test covers the construction that was tested rather than the resin on its own.

Can I use it for the whole laminate, or just a barrier layer?

Both approaches exist in the industry, and which is appropriate is a design decision for whoever specifies the laminate, settled against the governing standard rather than by analogy. We supply the material and the manufacturer documentation; we do not approve a laminate schedule.

Specifying for chemical and fire service together?

Tell us the equipment, the chemical, its concentration and temperature, the fire standard your project names and the documentation you have to produce, and we will review the grade and the current supplier documentation with you.

Contact Samrat FRP Traders