3PP Coated Pipe

Three-layer polypropylene coating system — FBE + Adhesive + PP — delivering superior high-temperature corrosion protection up to 110 deg C for demanding oil & gas pipelines.

ISO 21809-1 DIN 30678 CSA Z245.21 Up to 110 deg C Deepwater Ready

3PP Coated Steel Pipe

3PP (Three-Layer Polypropylene) coating is a high-performance external anti-corrosion system designed for pipelines operating at elevated temperatures. Its structure mirrors 3PE but substitutes the outer polyethylene layer with polypropylene, significantly expanding the temperature envelope.

3PP is the preferred choice for deepwater offshore pipelines, steam-injection wells, and high-temperature onshore transmission lines where standard 3PE (max 80 deg C) is insufficient.

FBE Epoxy (100–250 μm)
Fusion-bonded epoxy provides corrosion protection and steel adhesion
Adhesive (170–250 μm)
Grafted polyolefin bonds the FBE to the PP outer layer
PP Outer Layer (1.5–4.0 mm)
Polypropylene delivers superior heat and chemical resistance

Technical Specifications & Performance

StandardScopeRegion
DIN 30678Polypropylene coatings of steel pipes and fittingsGermany / Europe
ISO 21809-1Polyolefin coatings (3-layer PE and 3-layer PP) for pipelinesInternational
CAN/CSA Z245.21External polyolefin (PE / PP) coating systems for pipeCanada
NFA 49-711Three-layer PP coating applied by extrusionFrance
SHELL DEP 31.40.30.31External PE / PP coatings for line pipe (project spec)International (oil majors)
ParameterSpecification
Outside Diameter33.4 mm – 1820 mm (1″ – 72″)
Wall Thickness2.0 – 40 mm
Pipe Length6 m / 12 m / up to 18 m custom
Total Coating Thickness2.0 – 4.5 mm (by diameter class, see Thickness tab)
Pipe TypesSeamless, ERW, LSAW, SSAW
Steel GradesAPI 5L Gr.B – X80 PSL1/PSL2, ASTM A53/A106, ISO 3183
Surface PreparationGrit-blast to Sa 2½ (ISO 8501-1), anchor profile 50–100 μm
Operating Temperature-20°C to +110°C (short-term peaks to 140°C)
LayerMaterialTypical ThicknessFunction
Layer 1Fusion-Bonded Epoxy (FBE)100–250 μmPrimary adhesion and corrosion barrier
Layer 2Maleic-Anhydride-Grafted Copolymer Adhesive170–250 μmChemical bond between FBE and PP
Layer 3Polypropylene (PP)1.5–4.0 mmMechanical protection, high-temperature resistance, UV stability

Application Process Parameters

ParameterValue
Pipe preheat temperature220–250°C (medium-frequency induction)
FBE applicationElectrostatic powder spray
Adhesive & PP applicationSide extrusion, within ~15 s of FBE spray
QuenchWater cooling after PP layer consolidation

Polypropylene’s higher melting point (~165°C vs ~130°C for PE) is what extends the service envelope to 110°C. PP also carries UV stabilizers for above-ground and offshore exposure.

Pipe DiameterNormal Type (min)Reinforced Type (min)
≤ 114.3 mm1.8 mm2.5 mm
114.3–323.9 mm2.0 mm3.0 mm
323.9–508.0 mm2.5 mm3.5 mm
508.0–762.0 mm3.0 mm4.0 mm
> 762.0 mm3.0 mm4.5 mm

Thickness classes per ISO 21809-1 / DIN 30678. PP systems are the only polyolefin option maintaining peel strength at extreme service temperatures.

PropertyRequirementTest Method
Cathodic DisbondmentAcceptance per standard, typically ≤ 8 mm radius after 28 days @ 65°CISO 21809-1 / DIN 30678
Peel Strength (23°C)≥ 70 N/cmISO 21809-1
Peel Strength (140°C)≥ 15 N/cmDIN 30678
Impact ResistanceNo coating damage to steel at specified impact energy (commonly ≥ 15 J at 23°C)ISO 21809-1
Bend / FlexibilityNo cracking at 2.5° per pipe diameterISO 21809-1
Hot Water ImmersionNo blistering after 1000 h @ 95°C (type test)ISO 21809-1
Operating Temperature-20°C to +110°C (continuous); 140°C short-termDesign based
Holiday Detection100% of pipe length, 5–25 kV DC by thickness classSpark test

100% Production Testing (every joint)

TestFrequency
Holiday (spark) test100% of length
Coating thicknessMultiple points per joint
Visual & dimensional inspectionEvery joint

Batch / Type Testing

TestFrequency
Peel strength (23°C and elevated), cathodic disbondment, impact, bendPer qualification / agreed lot schedule
Laboratory type tests (hot water, UV aging)Coating system qualification

Manufacturing Process

Advanced three-layer polypropylene coating process engineered for high-temperature pipeline protection up to 110 deg C.

1

Raw Material Inspection

Steel pipes are inspected for surface defects, dimensional tolerances, and mill certificates before coating begins

2

Shot Blasting

Pipe surface is grit-blasted to Sa 2.5 cleanliness with a 50-100 μm anchor profile for optimum adhesion

3

Surface Inspection & Preheating

Blasted surface is checked for cleanliness and dust, then pipes are induction-heated to 220-240°C

4

FBE Epoxy Primer Application

Fusion-bonded epoxy powder is electrostatically sprayed and melt-cured onto the hot steel surface

5

Adhesive Layer Extrusion

A copolymer adhesive is side-extruded to bond the FBE primer to the outer polypropylene layer

6

PP Outer Layer Extrusion

High-density polypropylene is extruded and roll-pressed into a dense, watertight protective shell

7

Water Quenching

The coated pipe passes through water cooling to solidify the three-layer structure and stabilize thickness

8

Cutback & End Preparation

Pipe ends are trimmed to the specified cutback length and beveled ready for field welding

9

Holiday Detection

100% electrical holiday testing detects any pinholes or discontinuities in the coating film

10

Thickness & Visual Inspection

Coating thickness and appearance are inspected for uniformity, bubbles, and surface defects

11

Performance Testing

Peel strength, cathodic disbondment, impact, and bending tests verify long-term coating performance

12

Marking, Packing & Dispatch

Pipes are marked, end-capped, strapped, and dispatched with complete QC documentation

FBE vs 3PE vs 3PP: Which Coating Do You Need?

All three systems protect steel pipes against corrosion — but they differ in structure, temperature capability, and mechanical performance. Here is how FBE, 3PE and 3PP compare:

Criteria FBE (Single-Layer) 3PE (3-Layer PE) 3PP (3-Layer PP)
Layer StructureFusion-bonded epoxy powder onlyFBE + adhesive + polyethyleneFBE + adhesive + polypropylene
Standard Thickness125–400 μm0.5–3.8 mm0.6–3.8 mm
Max Operating Temp.Up to 100°C (limited moisture barrier)Up to 80°C80–110°C (peaks to 140°C)
Corrosion ResistanceGood chemical resistanceExcellentExcellent
Mechanical StrengthHard but brittle; prone to impact damageHigh flexibility, good dampingHighest hardness & abrasion resistance
UV / WeatheringNeeds care in storageModerateExcellent (UV stabilizers)
Typical StandardsCSA Z245.20 / AWWA C213DIN 30670 / ISO 21809-1DIN 30678 / ISO 21809-1 & -3 / CSA Z245.21
Best ForWater lines, injection, light oil & gasOnshore buried oil & gas pipelinesOffshore, subsea, HPHT & high-temp lines
Relative Cost$ (most economical)$$$$$
FBE

Fusion Bonded Epoxy

A single thermofused epoxy layer applied electrostatically to the heated pipe. Excellent adhesion and chemical resistance at the lowest cost, but thin and vulnerable to mechanical damage — best for water injection and light hydrocarbon service.

3PE

Three-Layer Polyethylene

FBE primer + copolymer adhesive + PE outer layer. The industry standard for buried onshore pipelines: outstanding corrosion protection, flexibility and soil-stress resistance for service temperatures up to 80°C.

3PP

Three-Layer Polypropylene

Same structure as 3PE but with a polypropylene outer layer. Higher melting point, harder surface and better UV stability make it the choice for offshore, subsea and high-temperature (up to 110°C) pipelines.

THIS PRODUCT

Applications

Engineered for the most demanding environments — deepwater, HPHT flowlines, and high-temperature service beyond 3PE limits.

OFFSHORE

Deepwater Export & Trunk Pipelines

3PP is the coating of choice for subsea export lines: its harder, denser surface withstands installation stresses and seabed abrasion, and it stays stable at seabed and product temperatures far beyond 3PE limits.

✓ Continuous service to 110°C

EOR

Steam Injection (Thermal EOR) Wells

SAGD and cyclic steam projects inject steam at up to 110°C continuously. 3PP maintains peel strength and dimensional stability at these temperatures where PE would soften — the reason thermal projects specify 3PP.

✓ Peel strength retained at 140°C

HIGH TEMP

High-Temperature Onshore Lines

Desert and geothermal transmission lines where ground or product temperatures exceed 3PE’s 80°C ceiling rely on 3PP, including hot heavy-oil gathering systems in the Middle East and China.

✓ -20°C to +110°C envelope

INSTALLATION

Deepwater J-Lay / S-Lay

During offshore laying, the pipe passes over tensioners and rollers under high loads. 3PP’s superior hardness and abrasion resistance protect the coating through these high-contact-stress operations.

✓ Shore D hardness 64+ (vs PE ~60)

HPHT

Subsea Flowlines & Risers

High-pressure high-temperature (HPHT) flowlines and risers carrying hot production fluids use 3PP to combine FBE-level corrosion protection with a thermally stable outer jacket, including for pipe-in-pipe systems.

✓ Stable at 95°C water immersion

REFINERY

Refinery & Petrochemical Piping

Process and transfer lines operating at elevated temperatures — hot product runs, bitumen, and slop lines — use 3PP where ambient exposure plus heat would degrade PE-based coatings.

✓ UV-stabilized outer layer

Frequently Asked Questions

What is the main difference between 3PP and 3PE coating?+
3PP uses polypropylene (PP) as the outer layer instead of polyethylene (PE). PP has a higher melting point and superior mechanical strength, so 3PP operates reliably at temperatures up to 110°C, versus about 80°C for 3PE.
What is the maximum operating temperature for 3PP coated pipes?+
3PP coating is designed for continuous service temperatures of 80–110°C, and can tolerate short-term peaks of up to 140°C depending on the specification. This makes it ideal for high-temperature and steam-injection pipelines.
Which standards does your 3PP coating comply with?+
Our 3PP coating meets DIN 30678, ISO 21809-1, CAN/CSA Z245.21, NFA 49-711, and SHELL DEP 31.40.30.31, with full traceability and mill test certification.
What is the standard coating thickness for 3PP?+
Typically the FBE primer is 100–250 μm, the adhesive layer 170–250 μm, and the PP outer layer 1.5–4.0 mm, giving a total of roughly 2.0–4.5 mm depending on pipe diameter and specification.
What pipe sizes and steel grades can be 3PP coated?+
We coat pipes from 33.4 mm (1 inch) up to 1820 mm (72 inches) in diameter, in API 5L, ASTM A106, and other common pipeline grades.
What applications is 3PP coating best suited for?+
3PP is the preferred choice for subsea and offshore pipelines, steam-injection (thermal EOR) wells, and high-temperature onshore lines where standard 3PE cannot maintain performance.
How do you test and guarantee 3PP coating quality?+
Every joint receives 100% electrical holiday detection, plus thickness measurement, peel strength, cathodic disbondment, impact, and bend testing. Results are recorded and supplied with a full QC report.
Can I send my own bare pipes for 3PP coating?+
Yes. We offer toll-coating services and can apply 3PP to customer-supplied seamless, ERW, LSAW, or SSAW pipe, provided the surface is prepared to the required cleanliness before coating.
What is the lead time and minimum order quantity?+
The MOQ is typically 50 tons per size, and lead time depends on quantity, diameter, and current production schedule. Contact us with your specification for a firm quotation.
How should 3PP coated pipes be handled and stored on site?+
Use soft slings instead of steel chains, keep the end caps in place, and stack the pipes on padded or timber supports to avoid crushing or scratching the coating layer.

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