BOTON PYROGUARD™ SERIES

Built For Heat.
Engineered to Outlast.

BOTON heat-resistant conveyor systems are engineered for continuous thermal stress, heavy-duty impact, and high-temperature conveying environments.

Hybird Carcass Systems

Low-Elongation Structures

Thermal Barrier Design

Continous Heat Conveying

High-Impact Applications

ENGINEERED FOR
CONTINUOUS HEAT.

  • Low elongation
  • Thermal stability
  • Long-cycle performance
180℃-500℃
Built For Heat.<br/>Engineered to Outlast.

BUILT FOR THE WORLD'S
TOUGHEST HEAT.

From steel and cement to coke and sinter operations, BOTON conveyor systems operate in some of the world’s most thermally demanding conveying environments.

Designed for continuous heat exposure, abrasive material flow, and long-cycle industrial operation where thermal degradation, impact loading, and downtime become critical operational risks.

  • Continuous Thermal Exposure
  • Thermal Shock
  • Continuous Heat Exposure
  • Abrasive Material Flow
  • Long-Cycle Operation
  • Heavy Impact Loading Zone
  • Extreme Environments

STEEL & METALLURGY

Typical Material Temperature 300–600°C

Continuous conveying under red-hot material flow and heavy impact loading.

CEMENT & CLINKER

Typical Material Temperature 150–400°C

Built for abrasive clinker conveying and long-cycle kiln operation.

PORT & BULK HANDLING

Continuous Heavy-Duty Operation

Reliable conveying performance for high-throughput bulk material systems operating under heat, dust, and structural stress.

METALLURGICAL PROCESSING

High-Temperature Material Handling

Optimized for coke, carbon materials, hot minerals, and demanding thermal conveying applications across metallurgical operations.

HEAT DOESN’T JUST WEAR BELTS OUT.
IT BREAKS THEM DOWN.

Heat damage is driven by transfer, exposure time, impact, and particle size — not temperature alone.

HEAT
INPUT

  • Hot material impact
  • Thermal shock

THERMAL
TRANSFER

  • Continuous heat exposure
  • Structural stress

STRUCTURAL
FATIGUE

  • Thermal aging
  • Long-cycle operation
  • Engineered For Extreme Heat
  • Belt Surface Est. Temp
  • Hot Spot Detected

THERMAL PENETRATION

0~30mm Low Penetration
30~100mm Thermal Transfer
100 mm+ Deep Saturation

ENGINEERING SOLUTIONS

ENGINEERED TO CONTROL
THERMAL DEGRADATION.

HEAT-STABLE COMPOUNDS

Resist thermal aging under continuous heat.

REINFORCED CARCASS SYSTEMS

Maintain dimensional stability and reduce elongation.

THERMAL BARRIER DESIGN

Reduce internal heat transfer and improve system thermal stability.

HIGH-IMPACT PROTECTION

Built for impact loading zones where abrasion and thermal stress occur.

Engineered to reduce heat penetration, maintain structural stability, and support continuous high-temperature conveying.

ENGINEERING SOLUTIONS

ENGINEERED FOR HIGH-TEMPERATURE
STRUCTURE SELECTION.

  • 01

    MODERATE HEAT
    ≤180°C

  • 02

    CONTINUOUS HEAT
    180–350°C

  • 03

    LONG-DISTANCE HEAT
    ≤220°C

  • 04

    HIGH IMPACT & HEAT
    250–400°C

  • 05

    EXTREME THERMAL SHOCK
    500°C+

Select a condition to explore recommended structure.

EP / NN FABRIC STRUCTURES

Built for standard thermal conveying applications with stable operation and flexible troughability.

EP STRUCTURE

  • Stable operational performance
  • Good flexibility and troughability
  • Suitable for general heat applications

NN STRUCTURE

  • Reliable impact resistance
  • Stable carcass strength
  • Good dimensional stability

TYPICAL APPLICATIONS

  • General Cement Handling
  • Power Generation
  • Moderate Bulk Conveying
  • Standard Clinker Transfere

KEY BENEFITS

  • Reliable moderate heat resistance
  • Stable daily conveying operation
  • Cost-effective structure solution
  • Flexible conveyor adaptation

PX / DPP HEAT STRUCTURES

Engineered for continuous thermal exposure with enhanced dimensional stability and reduced thermal fatigue.

PX STRUCTURE

  • Reduced delamination risk
  • Improved heat aging resistance
  • Stable under continuous heat

DPP ARAMID STRUCTURE

  • Lightweight high-strength carcass
  • Lower elongation
  • Better thermal stability
  • Energy-saving performance

TYPICAL APPLICATIONS

  • Sinter Conveying
  • Coke Handling
  • Continuous Clinker Systems
  • Long-Cycle High-Temperature Conveying

KEY BENEFITS

  • Enhanced dimensional stability under heat
  • Lower thermal fatigue for longer service life
  • Reliable continuous operation in high-heat environments
  • Reduced energy consumption

STEEL CORD HEAT SYSTEMS

Designed for long-distance conveying systems requiring high tensile strength and low elongation under heat exposure.

STEEL CORD STRUCTURE

  • Ultra-low elongation
  • High tensile strength
  • Stable long-distance conveying
  • Suitable for large conveyor systems

TYPICAL APPLICATIONS

  • Overland Conveyors
  • Long-Distance Clinker Conveying
  • Mining Operations
  • Port Bulk Systems

KEY BENEFITS

  • Excellent long-distance stability
  • Reduced belt stretch under heat
  • High operational efficiency
  • Reliable performance in large conveyor systems

IW REINFORCED STRUCTURES

Engineered for extreme impact loading and thermal stress conditions where standard fabric systems may fail.

TYPICAL APPLICATIONS

  • Primary Crushing Zones/li>
  • Hot Ore Handling/li>
  • Steel Plants/li>
  • High-Drop Transfer Points

KEY BENEFITS

  • Excellent impact resistance
  • Improved structural reliability
  • Reduced risk of belt damage
  • Stable operation under combined heat and impact stress

CERAMIC HEAT SYSTEMS

Built for ultra-short-distance conveying under extreme thermal shock and red-hot material exposure.

CERAMIC HEAT STRUCTURE

  • Flash heat resistance
  • Extreme surface temperature protection
  • Reduced thermal penetration
  • Designed for severe thermal shock environments

TYPICAL APPLICATIONS

  • Furnace Outlet Systems
  • Red-Hot Slag Conveying
  • Steel Discharge Lines
  • Extreme Transfer Zones

KEY BENEFITS

  • Maximum thermal protection
  • Excellent flash heat resistance
  • Reduced structural heat damage
  • Reliable operation in extreme thermal environments

Need More Product Details?

Download the product brochure for key features, applications, and solution highlights.

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