CONCRETE MICRO-REINFORCEMENT FIBER

PP Fiber

Crack Control · Distributed Micro-Reinforcement · Corrosion-Free Performance

POLYVIA™ PP Micro Fiber is a fine monofilament polypropylene fiber for concrete and mortar, engineered for uniform dispersion throughout the cementitious matrix. It helps control plastic shrinkage cracking and early-age microcracking, while providing distributed micro-reinforcement without corrosion risk.
Designed for concrete, precast products, dry-mix mortar and other cement-based systems, it provides a practical fiber solution for improved crack control and matrix integrity.

pp fiber plastic shrinkage crack control concrete
Plastic Shrinkage Crack Control Helps reduce early-age cracking caused by plastic shrinkage.
pp fiber 3d micro reinforcement fiber dispersion
3D Micro-Reinforcement Fine fibers distribute throughout the cementitious matrix.
pp fiber improved matrix integrity crack control
Improved Matrix Integrity Helps restrict microcrack development and crack propagation.
pp fiber easy mix integration concrete mixing
Easy Mix Integration Designed for direct incorporation into concrete and mortar production.

PRODUCT SNAPSHOT

What Is Polypropylene (PP) Micro Fiber?

PP Micro Fiber is a fine monofilament polypropylene fiber used for distributed micro-reinforcement in concrete, mortar and other cementitious materials.

Its fine filaments disperse throughout the matrix to help control plastic shrinkage cracking and early-age microcracking, providing multidirectional crack control without corrosion risk.

Product Type Polypropylene Monofilament Fiber
Material 100% Virgin Polypropylene
Fiber Form Monofilament
Typical Length 3mm / 6mm / 9mm / 12-36mm (Customized)
Color Natural White
Density 0.91 g/cm³
Functions Crack Control / Plastic Shrinkage
Primary Systems Concrete / Mortar / Cementitious Systems
Packing 1kg/Plastic bag, 20kg/Kraft bag or customized

SOLVE THE PERFORMANCE CHALLENGE

pp fiber plastic shrinkage crack control concrete

Plastic Shrinkage Cracking

Rapid surface moisture loss can cause fresh concrete and mortar to crack before sufficient strength develops.

Recommended: Length: 6–12 mm
pp fiber 3d micro reinforcement fiber dispersion

Fine Surface Cracking

Plaster, render, screed and mortar can develop fine cracks during drying and early dimensional movement.

Recommended: Length: 3–9 mm
pp fiber impact resistance concrete performance

Early-Age Crack Development

Temperature variation, settlement and restrained movement can initiate small cracks during the early stages of concrete hardening.

Recommended: Length: 6-12 mm
pp fiber improved toughness concrete performance

Crack-Related Durability

Early microcracks can reduce matrix integrity and provide additional pathways for moisture and aggressive substances.

Recommended: Length: 6–19 mm

HOW PP FIBER WORKS

From Fiber Dispersion to Crack Control Performance

Fiber Dispersion.

Uniform Distribution Within the Concrete Matrix

PP fibers disperse throughout fresh concrete and mortar, creating a three-dimensional reinforcement effect within the cementitious matrix.

Uniform Distribution Within the Concrete Matrix
3D Fiber Network.

Creating Distributed Micro-Reinforcement

Randomly distributed fibers form a three-dimensional network that helps control internal stress development and improves crack resistance.

Creating Distributed Micro-Reinforcement
Crack Bridging.

Restricting Micro-Crack Development

Fibers cross developing micro-cracks and help limit crack width and propagation caused by plastic shrinkage and early-age volume changes.

Restricting Micro-Crack Development
Crack Control Performance.

Improving Concrete Durability and Surface Quality

The distributed fiber network helps reduce plastic shrinkage cracking, improve toughness and support more durable concrete and mortar performance.

Improving Concrete Durability and Surface Quality

TECHNICAL DATA SHEET

Property Value
Material 100% Virgin Polypropylene
Shape Net-like structure or monofilaments
Density, g/cm3 0.91±0.01
Length, mm 3-36 (Customized)
Diameter, um 20-35
Elastic Modulus, MPa > 3500
Elongation at Break, % > 10
Tensile Strength, Mpa ≥ 450
Melting Point, °C 160-180
Acid & alkali resistance Strong

APPLICATIONS

POLYVIA™ PP Fiber is a micro synthetic fiber for concrete and mortar systems, designed for applications requiring crack control, improved surface quality and distributed reinforcement.

Concrete Applications

Ready-Mix Concrete

Ready-Mix Concrete

Supports early-age performance in ready-mix concrete exposed to rapid moisture loss, placement and finishing conditions that can promote plastic shrinkage cracking.

Industrial Flooring

Industrial Flooring

Helps manage early-age cracking in large floor slabs exposed to evaporation, surface finishing and restraint during setting and initial curing.

Precast Concrete

Precast Concrete

Provides distributed micro-reinforcement for precast elements where casting, early curing, demolding and handling can contribute to fine crack development.

Shotcrete

Shotcrete

Provides distributed micro-reinforcement in sprayed concrete for tunnels, slopes and underground works where early-age cracking and localized movement require additional control.

Specialty Construction Systems

Tunnel & Underground Structures

Tunnel & Underground Structures

Suitable for tunnel linings and underground concrete where restrained movement, temperature variation and demanding exposure conditions can affect concrete integrity.

Repair Mortar

Repair Mortar

Supports thin-section repair and patching mortars where rapid moisture loss, substrate restraint and dimensional movement can promote localized cracking.

Waterproof Concrete

Waterproof Concrete

Helps limit early-age cracks that may create preferential paths for water ingress, supporting the integrity of properly designed watertight concrete systems.

Cement-Based Dry-Mix Systems

Cement-Based Dry-Mix Systems

Suitable for screeds, renders, plasters and specialty mortars requiring uniform micro-reinforcement, dimensional stability and reliable fiber distribution.

FIBER SELECTION GUIDE

Different Fiber Technologies for Different Reinforcement Requirements

Fiber performance depends on material, geometry, dosage and the surrounding cementitious system. Select the fiber technology according to the required crack-control and reinforcement performance.

Fiber Type Fiber Geometry Primary Role Typical Applications
PP Micro Fiber Fine Monofilament Plastic shrinkage & early-age microcrack control Concrete, mortar, screed, precast
PP Twisted Bundle Fiber Twisted / Bundled Distributed crack control & toughness support Concrete, flooring, precast, infrastructure
PP Macro Fiber Macro Synthetic Post-crack toughness & residual performance Industrial floors, precast, shotcrete
PVA Fiber Fine Monofilament High-ductility cementitious reinforcement ECC, specialty mortar
Micro Steel Fiber Short High-Tensile Steel High-performance reinforcement UHPC, RPC

POLYVIA™ Fiber Selection Approach

Crack Type → Performance Requirement → Application → Fiber Solution

POLYVIA™ helps customers select suitable fiber technologies based on concrete system requirements, application conditions and targeted performance objectives.

PERFORMANCE IN CONCRETE

From Fiber Reinforcement to More Controlled Concrete Performance

 

pp fiber plastic shrinkage crack control concrete

Distributed Reinforcement

Fibers create reinforcement throughout the concrete matrix rather than acting only at isolated locations.

pp fiber 3d micro reinforcement fiber dispersion

Crack Width Control

Fiber bridging helps restrict crack development and crack opening under appropriate loading and restraint conditions.

pp fiber improved toughness concrete performance

Matrix Integrity

Controlled crack development helps maintain continuity within the surrounding cementitious matrix

pp fiber impact resistance concrete performance

Performance According to Fiber Type

Micro, twisted-bundle and macro PP fibers address different stages and levels of crack-control and reinforcement performance.

NON-CORROSIVE REINFORCEMENT
Polypropylene fibers do not corrode, providing distributed reinforcement without introducing the corrosion risk associated with metallic fibers.

PERFORMANCE BY FIBER TYPE
PP micro, twisted-bundle and macro fibers are designed for different crack-control and reinforcement requirements. Final performance depends on fiber geometry, dosage and concrete mix design.

DOSAGE & MIXING

Practical Guidance for PP Fiber Addition

PP Fiber dosage and mixing conditions should be selected according to fiber type, geometry, concrete mix design and required performance. Uniform dispersion is essential for consistent fiber performance.

Typical Starting Dosage
For PP Micro Fiber used for plastic shrinkage crack control in conventional concrete, 0.6–0.9 kg/m³ is a practical starting range. PP Twisted Bundle Fiber and PP Macro Fiber require grade-specific dosage selection.

Addition
Introduce PP Fiber during batching according to the plant mixing sequence. Avoid adding the full fiber quantity as a concentrated mass where this may cause localized accumulation.

Mixing
Continue mixing until the fibers are uniformly dispersed throughout the concrete with no visible clumping. Required mixing time depends on mixer type, batch size, fiber geometry and dosage.

Workability
Fiber addition can influence fresh-concrete rheology as fiber length or dosage increases. Where adjustment is required, optimize the mix or admixture system rather than adding uncontrolled extra water.

 

Technical Note: Final dosage should be verified through trial batching according to the concrete mix, application conditions and required performance.

PP FIBER VS STEEL FIBER

Choosing the Right Fiber Solution for Concrete Performance Requirements

PP Fiber and steel fiber are designed for different reinforcement purposes. The optimal choice depends on application requirements, crack control objectives, structural performance targets and project conditions.

Performance FactorPP FiberSteel Fiber
MaterialPolypropylene Synthetic FiberSteel Fiber
DensityLow DensityHigher Density
Corrosion ResistanceNon-Corrosive and Stable in Alkaline Concrete EnvironmentsCorrosion Protection May Be Required Depending on Exposure Conditions
Fiber DistributionThree-Dimensional Micro-Reinforcement DistributionFiber Distribution Depends on Geometry, Orientation and Mixing Conditions
Primary FunctionEarly-Age Crack Control and Plastic Shrinkage Crack ReductionStructural Reinforcement and Post-Crack Toughness
Reinforcement MechanismMicro-Crack Control Through Distributed Fiber NetworkLoad Transfer and Residual Strength After Cracking
Typical ApplicationsConcrete Crack Control, Mortar, Shotcrete and Cement-Based SystemsStructural Fiber Reinforced Concrete, Industrial Floors and Heavy-Duty Applications
Handling & MixingLightweight, Easy Handling and Efficient DispersionHigher Weight and Different Mixing Considerations

Technical Note: PP Fiber and steel fiber are complementary reinforcement solutions rather than direct substitutes. PP Fiber is commonly selected for early-age crack control, plastic shrinkage reduction and distributed micro-reinforcement, while steel fiber is typically selected for structural toughness and post-crack load-bearing performance. Fiber selection should be based on concrete design requirements, application conditions and target performance.

TECHNICAL SUPPORT

From Fiber Selection To Concrete Performance

POLYVIA™ provides technical support beyond fiber supply, helping customers select suitable fiber types, optimize dosage, evaluate compatibility with concrete mix designs and admixtures, and validate performance through laboratory testing and application trials.

FREQUENTLY ASKED QUESTIONS

What is polypropylene fiber? +

POLYVIA™ Polypropylene Fiber is a synthetic micro-reinforcement fiber designed for concrete and mortar systems. After mixing, PP fibers distribute throughout the cementitious matrix and create a three-dimensional reinforcement effect that helps control plastic shrinkage cracking, reduce micro-crack development and improve concrete durability.

Where is PP Monofilament Fiber commonly used? +

PP Fiber is widely used in concrete and mortar applications requiring crack control and improved durability. Typical applications include ready-mix concrete, industrial flooring, precast concrete, shotcrete, repair mortar and cement-based dry-mix systems where early-age crack reduction and surface quality improvement are required.

Does PP Fiber replace steel reinforcement? +

PP Micro Fiber is generally used for plastic shrinkage and early-age crack control and should not be treated as a direct replacement for structural steel reinforcement unless the structural design and tested fiber system specifically permit it.

What benefits does PP fiber provide? +

Polypropylene Fiber provides multiple performance benefits in concrete and mortar systems, including plastic shrinkage crack control, improved crack resistance, enhanced toughness, better surface quality and corrosion-free reinforcement. The actual performance depends on fiber type, dosage, concrete mix design and application conditions.

What is the recommended PP fiber dosage in concrete? +

The typical dosage of polypropylene fiber in concrete is generally 0.6–1.0 kg/m³ for plastic shrinkage crack control applications. The required dosage may vary depending on fiber type, fiber length, concrete mix design, aggregate characteristics and targeted crack control performance. For specific applications such as shotcrete, precast concrete or specialty mortar systems, the optimum PP fiber dosage should be determined through formulation evaluation and performance testing.

What is the difference between PP fiber and steel fiber? +

PP Fiber and steel fiber provide different reinforcement mechanisms for concrete. PP Fiber is mainly used for early-age crack control, plastic shrinkage reduction and distributed micro-reinforcement, while steel fiber is typically selected for structural reinforcement, toughness and post-crack performance. The suitable fiber solution depends on project requirements and performance objectives.

Which PP fiber should I choose? +

The appropriate PP Fiber grade depends on application requirements, concrete mix design, crack control objectives and construction conditions. POLYVIA™ provides different polypropylene fiber solutions for concrete, mortar and shotcrete applications, helping customers select suitable fiber types based on performance targets.

How does PP fiber perform in concrete and mortar systems? +

PP Fiber improves concrete and mortar performance by creating a distributed micro-reinforcement structure within the cementitious matrix. It helps control shrinkage-related cracking, improve cohesion and support more stable performance in ready-mix concrete, repair mortar, shotcrete and other cement-based systems.

Need the Right PP Monofilament Fiber for Your Mix?

Fiber performance is not determined by length alone. Share your application, mix design, aggregate size, mixing process and crack-control requirement with POLYVIA. Our technical team can help you determine the appropriate: Fiber Length → Starting Dosage → Addition Method → Mixing Time → Trial Direction

PP Fiber