YORCHOO

Pentaerythritol & Dipentaerythritol

UL94 V-0 Performance. Strength That Lasts.

Micronized Pentaerythritol and Dipentaerythritol for flame-retardant plastic compounds with preserved mechanical properties.

UL94

V-0

Flame Rating

High LOI

Up to 32%

Enhanced Flame Retardancy

Preserved

Strength

Outstanding Mechanical Performance

White powder and polymer pellets for flame-retardant plastics

The Dispersion Challenge

Agglomeration weakens performance.
Particle size makes the difference.

Poor dispersion leads to stress concentration, surface defects, and reduced mechanical and flame-retardant performance.

Agglomerated PE

D50 ~ 50-150 um

Irregular agglomerates, poor dispersion

Agglomerated PE
Poor dispersionWeak pointsProperty loss

Micronized PE

D50 ~ 2-10 um

Uniform particles, excellent dispersion

Micronized PE
Excellent dispersionStrong interfaceOptimal performance

Intumescent Flame-Retardant Mechanism

Synergistic Formula. Superior Protection.

Pentaerythritol (PER) works in synergy with APP and MEL to form a stable, intumescent carbon layer, effectively insulating the substrate and inhibiting heat and mass transfer.

APP

(Acid Source)

APP

Decomposes to generate polyphosphoric acid under heat.

Key Component

Pentaerythritol (PER)

(Carbon-Forming Agent)

Pentaerythritol (PER)

Dehydrates and forms a carbonaceous backbone, providing structural integrity to the char layer.

MEL

(Blowing Agent)

MEL

Releases non-flammable gases to expand the carbon layer.

Efficient Intumescent Carbon Layer

Efficient Intumescent Carbon Layer

Dense, continuous char layer is formed to protect the underlying polymer.

Heating

Acid formation

(from APP)

Dehydration & Carbonization

(from PER)

Blowing & Expansion

(from MEL)

Intumescent Char Layer

Four Core Benefits

Engineered for performance.
Proven in compounding.

Preserved Mechanical Properties
1

Preserved Mechanical Properties

Maintains high tensile strength and impact performance even at high loading.

Typical retention: >90% tensile strength, >80% impact strength

High Thermal Stability
2

High Thermal Stability

Withstands high processing temperatures without degradation.

Processing stability up to 280-300 C (depending on grade)

Anti-Blooming / Low Exudation
3

Anti-Blooming / Low Exudation

Excellent compatibility and low hygroscopicity minimize blooming and surface defects.

Cleaner surfaces, better aesthetics, fewer rejects.

Intact Char Formation
4

Intact Char Formation

Promotes cohesive char layer that insulates and protects the underlying polymer.

Improved flame retardancy and fire safety.

Polymer Compatibility Guide

Two optimized solutions.
Matching your polymer and performance needs.

Micronized Pentaerythritol

Optimized for polyolefins & flexible polymers

PPPEEVATPU

Benefits

  • Excellent dispersion in non-polar systems
  • High LOI and UL94 V-0 performance
  • Low density, minimal impact on compound formulation
Micronized Pentaerythritol

Dipentaerythritol

Engineered for engineering plastics

PAPBTPETOthers

Benefits

  • High thermal stability (>280 C)
  • Excellent compatibility with polar polymers
  • High performance in thin-wall applications
Dipentaerythritol

Our Partners

Trusted performance across industries

Modified Plastic Manufacturers

Modified Plastic Manufacturers

Uniform dispersion, consistent mechanical performance, and reliable UL94 V-0 compliance in every batch.

Plastic Compounders

Plastic Compounders

Excellent thermal stability and fine particle distribution for smooth, efficient twin-screw compounding.

Injection Molding Material Suppliers

Injection Molding Material Suppliers

Low blooming, clean surface finish, and minimal defects for high-quality molded parts.

Inquiry Support

Tell Us Your Needs. We'll Get Back Within 12 Hours

Share your application and performance targets. Our technical team will provide the most suitable grade recommendation and support.

12-hour response promise (working days)

Application-focused recommendations

Confidentiality assured