FRP Deck Pultrusion Mould 150*18mm

150*18mm FRP Deck Pultrusion Mould
  • 150*18mm FRP Deck Pultrusion Mould
  • FRP Deck Pultrusion Mould
  • FRP Deck Pultrusion MouldTube Pulrrusion Mould

FRP Deck Pultrusion Mould 150*18mm

This FRP pultrusion mould produces profiles including flat strip, FRP board, FRP deck, rod, round tube, rectangular tube, beam, frame, and more. It mounts directly onto the pultrusion line, where continuous fiber roving and resin are drawn through the die to form the finished profile.

Executive standard

Straightness: 0.02mm Smoothness: Ra=0.025~0.012 Cavity surface hardness: < 0.02mm Boundary tolerances: ±0.3mm Plating thickness: 0.04-0.05mm Provide Customized Services

DescribeFAQContact us

FRP Deck Pultrusion Die is precision tooling used to shape FRP (Fiber Reinforced Plastic) tube. The pultrusion process pulls resin-saturated fiber continuously through a heated die, forming a continuous profile with a fixed cross-sectional shape and size. FRP tube offers a favorable strength-to-weight ratio along with corrosion resistance, electrical insulation, and fire retardance, which is why it is widely used across the power, chemical processing, construction, and transportation industries.

How FRP Deck Pultrusion Die Works

1. Glass fiber, carbon fiber, or another reinforcement is drawn off the creel and guided into the resin bath for impregnation.
2. The resin-saturated fiber then passes through a preformer that shapes it into the target profile before it enters the die.
3. Inside the heated die, the fiber is subjected to heat and pressure as the resin turns from liquid to gel and finally cures into a rigid composite.
4. A pulling unit draws the cured FRP profile out of the die, after which a cut-off saw trims it to the required length.

What Determines FRP Deck Pultrusion Die Performance and Parameters

Fiber reinforcement: The type and content of fiber used affects the finished profile’s strength, stiffness, and weight — generally, a higher fiber content means greater strength and less weight. Glass fiber, carbon fiber, and aramid fiber are the reinforcements most commonly used.
Resin system: The resin type and mix ratio determine chemical performance, including heat resistance, corrosion resistance, and resistance to aging; a more stable resin formulation generally means better durability. Polyester, vinyl ester, and epoxy resins are the systems most often specified.
Die design: The shape and size of the die set the profile’s cross-section and dimensions, as well as forming speed and quality. A more precisely made die generally produces more uniform parts and higher output efficiency.

Pultrusion Die Parameters and Execution Standards

Mold name FRP Deck Pultrusion Mold
Specification 150*18mm (Can be customized)
Material 40Cr, P20, Cr12, 38CrMoAI, H13 (optional)
Cavity Surface Treatment Quenching and tempering, quenching, hard chrome plating, nitriding
Cavity hardness HRC55-60
Applicable resin Unsaturated polyester, vinyl resin, epoxy resin, phenolic resin, polyurethane
Straightness 0.02mm
Smoothness Ra=0.025~0.012
Cavity surface hardness < 0.02mm
Boundary tolerances ±0.3mm
Plating thickness 0.04-0.05mm

Tooling Specifications & Engineering Insights

Tooling Executive Summary: 150*18mm FRP Deck Pultrusion Mould, engineered by Guangdong Haikuo, is a high-precision composite deck plank-forming pultrusion die manufactured from premium-grade tool steels including H13, Cr12MoV, and P20. Featuring a precision cavity hardness of HRC 55-60, a straightness tolerance of 0.02mm, and a mirror-polished surface roughness of Ra 0.012-0.025 μm, this die minimizes pull resistance for uninterrupted continuous extrusion of 150*18mm sections. Wrapped in a 0.04-0.05mm hard chrome-plated wear layer for heavy-duty protection against abrasive glass and carbon fibers, it runs seamlessly with polyester, vinyl ester, epoxy, and polyurethane resin systems — backed by Haikuo’s in-house CNC mold fabrication for fast prototyping and cost-efficient tooling.
Die Steel Grade Material H13 Tool Steel (Premium) Cr12MoV Die Steel (Standard) P20 Mold Steel (Economical)
Core Working Lifespan Excellent (Over 50,000+ meters with fiberglass) High (Around 30,000 – 40,000 meters) Moderate (Best for short-run prototyping)
Thermal Fatigue Resistance Ultra-High (Maintains HRC hardness at high temperature) Moderate (Good for polyester matrices) Poor (Prone to dimensional wear under continuous PU)
Internal Mirror Polish Cap Perfect (Achieves Ra 0.012 μm easily) Excellent (Achieves Ra 0.025 μm) Standard (Achieves Ra 0.040 μm)
Best Application Profiles deck plank runs requiring maximum tool life and dimensional stability Standard-volume deck plank production Low-volume prototyping or trial runs of deck plank

Precision Mold Engineering Q&A

Q1: Why is a 0.04-0.05mm hard chrome plating thickness critical for 150*18mm FRP Deck Pultrusion Mould?

Answer: Glass fiber rovings and mats are highly abrasive. During continuous pultrusion, the reinforced matrix creates significant scratching friction against the cavity walls of 150*18mm FRP Deck Pultrusion Mould. A precise 0.04-0.05mm hard chrome layer raises surface micro-hardness and protects the underlying tool steel, extending die lifespan by over 40% while maintaining consistent 150*18mm geometry run after run.

Q2: How does internal mirror polishing to Ra 0.012-0.025 μm affect pull force on 150*18mm FRP Deck Pultrusion Mould?

Answer: A mirror-polished cavity dramatically reduces the dynamic coefficient of friction inside the deck plank shaping channel. Lower friction means the pultrusion machine needs less clamping/traction force to advance the curing composite, which cuts down on line stiction, prevents surface fiber blooming, and reduces energy consumption over long production runs.

Q3: Which steel grade should be specified for high-volume production with 150*18mm FRP Deck Pultrusion Mould?

Answer: For high-volume, continuous manufacturing, H13 tool steel or Cr12MoV die steel is recommended. H13 delivers the longest working lifespan and best thermal fatigue resistance, while Cr12MoV offers strong performance at a lower cost for standard-volume runs — P20 mold steel remains a cost-effective option for prototyping or short trial batches.

Q4: Can 150*18mm FRP Deck Pultrusion Mould be customized to non-standard dimensions or OEM specifications?

Answer: Yes. As with all our pultrusion tooling, dimensions, cavity count, and surface treatment can be engineered to your exact drawing or sample — our in-house CNC mold fabrication team supports both standard catalog sizes and fully custom OEM tooling requests.

Q5: Which resin systems is 150*18mm FRP Deck Pultrusion Mould compatible with?

Answer: The die is compatible with the full range of resin systems used in FRP pultrusion, including unsaturated polyester, vinyl ester, epoxy, and phenolic resins. Let us know your target resin and cure profile and we can confirm the optimal cavity finish and heating zone setup.

Production Process

  • Engineer mould design

    Engineer mould design

  • Profile mould debugging

    Profile mould debugging

  • Rough embryo leveling

    Rough embryo leveling

  • Mold CNC machining

    Mold CNC machining

  • Mould punching

    Mould punching

  • Surface grinding

    Surface grinding

  • Cavity inner wall polishing

    Cavity inner wall polishing

  • Mold chrome

    Mold chrome

Certificate

  • Guangdong Haikuo Business License
  • ISO 9001 Quality Management Certificate
  • SGS Test Report — RoHS Compliance
  • SGS Test Report — RoHS Compliance
  • SGS Test Report — ASTM F963 / Prop 65
  • SGS Test Report — ASTM F963 / Prop 65
  • Fiberglass Rebar CNAS Test Report

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