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Since 2002

HPM PP Mesh fibers
HPM PP Mesh fibrillated polypropylene fibers

HPM® PP Mesh

Fibrillated Polypropylene Fibers Mesh

Network-Form Fiber Reinforcement

Since 2002, we have specialized in concrete crack resistance, waterproofing, and anti-corrosion technologies.

HPM® PP Mesh Fibrillated Polypropylene Fiber

Network-Form PP Fiber for Concrete and Shotcrete

HPM® PP Mesh is a fibrillated polypropylene fiber designed to open into a network-like structure during mixing and distribute throughout the concrete matrix. It is used in selected floors, slabs, pavements, shotcrete and precast applications where fibrillated fiber distribution, cohesion and early-age crack control are required.

HPM® PP Mesh Introduction

HPM® PP Mesh is a fibrillated polypropylene fiber designed to open into a network-like structure during mixing. This geometry creates a different fiber distribution pattern from conventional monofilament polypropylene microfiber and is suited to selected concrete and shotcrete applications where crack control, cohesion and fibrillated reinforcement are required.

Use this page to review HPM® PP Mesh specifications, dosage, applications, mixing guidance and technical documents before confirming project suitability.

Manufacturer Supply

Quality Guaranteed

Close-up of PIONEER® HPM® PP Mesh fibrillated polypropylene fibers

Technical Specifications

Discover the engineered properties of our polypropylene fiber mesh that enhance workability and reinforce concrete effectively.

  • Material: 100% virgin polypropylene

  • Type: Fibrillated micro synthetic fiber

  • Specific Gravity: 0.91 g/cm³

  • Diameter: 0.03 mm

  • Lengths: 12 mm, 19 mm, 38 mm

  • Tensile Strength: 400–450 MPa

  • Modulus of Elasticity: 4500 MPa

  • Melt Point: 162°C (324°F)

  • Chemical Resistance: Excellent alkali and acid resistance

  • Color: White

  • Standards & References: ASTM C1116/C1116M, EN 14889-2

Refer to the current HPM® PP Mesh Technical Data Sheet for product-specific values, tolerances and applicable test methods.

How Fibrillated Polypropylene Fibers Work in Concrete

During mixing, HPM® PP Mesh opens from a fibrillated form into a network-like fiber structure that distributes throughout the concrete matrix. This geometry provides a different reinforcement pattern from individual monofilament fibers and can support early-age crack control, cohesion and fiber distribution in suitable applications.

Final performance depends on fiber length, dosage, mix design, application and project requirements.

fibrillated polypropylene fiber used in concrete floor

Suitable for industrial concrete floors

Pioneer engineers on-site during HPM PP Mesh reinforced concrete

Our engineers are on-site

Key Benefits of HPM® PP Mesh

Fibrillated Network Geometry : Fibers open into a network-like structure during mixing, creating a different distribution pattern from conventional monofilament fibers.

Distributed Micro Reinforcement : The fibrillated form distributes throughout the concrete matrix and provides reinforcement across the mix.

Plastic Shrinkage Crack Control : Helps reduce early-age cracking when the selected dosage and application are appropriate.

Improved Cohesion : Fiber distribution can support concrete cohesiveness and help reduce segregation.

Practical Batchin : HPM® PP Mesh can be added directly during concrete batching using the recommended mixing procedure.

Fibrillated fibers improve bonding through mesh structures.

Request Technical Support

Recommended Applications

Floors and Slabs : For selected floor and slab applications requiring fibrillated fiber distribution and early-age crack control.

Pavements : For concrete pavements where shrinkage control, cohesion and distributed fiber reinforcement are required.

Shotcrete : For selected shotcrete applications where fibrillated polypropylene fiber is specified for crack-control or cohesion objectives.

Precast Concrete : For selected precast applications where network-form fiber distribution is compatible with production, surface finish and project requirements.

Selected PIONEER® Project Experience

Examples of PIONEER® fiber technologies used across concrete infrastructure and construction applications. Product selection varies by project.

Hong Kong-Zhuhai-Macao Bridge constructed with polypropylene macro fiber-reinforced shotcrete

Hong Kong-Zhuhai-Macao Bridge

Da Nang Pier in Vietnam built with steel fiber-reinforced concrete

Da Nang Pier, Vietnam

Hangzhou Olympic Sports Center utilizes polypropylene microfibers to control plastic cracking.

Hangzhou Olympic Center

Dosage and Mixing Guidelines

Application / Requirement

Typical Guidance

General dosage

0.9–1.8 kg/m³

Available lengths

12 / 19 / 38 mm

Mixing

Add during batching and mix sufficiently for dispersion

Refer to the current HPM® PP Mesh TDS for final dosage and mixing instructions.

Packaging and Supply Options

Available Lengths : Multiple fiber lengths are available according to product and application requirements.

Packaging : Bulk packaging and smaller dosing packs are available depending on order and market requirements.

Distributor / Private Label : OEM/ODM options may be available for distributor and private-label projects.

Alternative to Light-Gauge Wire Mesh

HPM® PP Mesh may be considered as an alternative to light-gauge wire mesh in selected non-structural or secondary reinforcement applications where project specifications and required performance support the substitution.

It should not be presented as a universal replacement for structural reinforcement.

HPM® PP Mesh vs HPM® PP

Feature

HPM® PP Mesh

HPM® PP

Fiber Structure

Fibrillated network

Individual monofilaments

Main Selection Focus

Network-form distribution

Fine micro-reinforcement

Typical Applications

Floors, pavements, shotcrete

Concrete, mortar, plaster

Product Role

Fibrillated PP fiber

Monofilament PP microfiber

Choose by fiber geometry, application, dosage, workability and project requirements rather than treating the two products as interchangeable.

Request HPM® PP Mesh Quote & Dosage

Request Quote & Dosage
PIONEER® engineers inspecting FRC construction at the construction site

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Why Choose Us?

Proven Expertise & Greater Savings

24 years of focus

on fiber reinforcement solutions.

5,000 tons yearly

from advanced manufacturing.

20+ countries served

with global product distribution.

1,000 projects proven

 in diverse applications worldwide.

FAQ

  • A fibrillated polypropylene fiber opens into a network-like structure during mixing, creating a different distribution pattern from conventional monofilament fibers.

  • HPM® PP Mesh is fibrillated and forms a network-like structure, while HPM® PP consists of individual monofilament fibers. Their geometry, application focus, and dosage differ.

  • Typical applications include concrete floors, slabs, pavements, shotcrete, and selected precast applications where fibrillated fiber distribution and crack control are required.

  • It may replace light-gauge wire mesh in selected non-structural or secondary reinforcement applications where the project specification and required performance support the substitution.

  • Dosage depends on the application, concrete mix, fiber length, and required performance. Refer to the current HPM® PP Mesh TDS for the recommended range.

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Why Choose PIONEER® Technologies

1. Product-Specific Technical Documentation

Technical data, dosage guidance, available laboratory testing and applicable certificates are provided by product.

2. Manufacturing Capability

HPM® PP Mesh is supplied through PIONEER® concrete fiber manufacturing and quality-control systems.

3. International Supply Experience

PIONEER® supplies concrete fiber products across multiple international markets and applications.

4. Technical Support

Product selection support, dosage guidance and technical documents are available for project-specific requirements.

Aerial view of PIONEER® production facility in Nanjing, showcasing the company's modern factory and large-scale concrete fiber manufacturing capabilities.

26,500m² production base

Synthetic fibers manufacturing production line for fiber reinforced concrete, producing concrete fibers and fiber mesh reinforcement to reduce cracks and improve durability.

Advanced fiber dispersibility

Concrete fibers production line manufacturing reinforcement fiber for concrete and improving fiber reinforced concrete performance.

Exceptional tensile strength

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