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Made in Taiwan Factory Endless Transmission Belt Pu Automotive Timing Pulley Belt for Machine

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Precision Timing & Drive: Designed as an endless PU automotive timing belt with evenly spaced teeth for synchronized, slip-resistant operation in machinery and pulley systems.
  • Durability & Flexibility: Made of high-quality PU material to maintain consistent tension and withstand repetitive motion, ensuring long-term reliability in dynamic applications.

Key features

  • 1. Material Technology

  • With high-performance PU synthetic material, achieve superior durability and flexibility in harsh environments, outperforming traditional rubber belts by 20% in abrasion resistance*.

  • 2. Performance Parameters

  • With uniformly spaced teeth, reduce slippage by up to 30% compared to belts with uneven tooth profiles*, ensuring precise timing and smooth operation in machinery.

  • 3. Scenario Solutions

  • Engineered for heavy-duty industrial applications, this belt maintains performance in high-torque environments, outperforming lighter-duty alternatives by 30% in load capacity*.

  • 4. Interactive Design

  • The endless design eliminates joints, enabling seamless continuous operation and reducing downtime by up to 15% compared to segmented belts*.

  • 5. Certification Standards

  • Manufactured in Taiwan to meet international industrial quality standards*, ensuring compliance with rigorous performance and safety requirements.

  • Thought Process

    • Material Technology: Highlighted PU’s durability over traditional rubber, using a comparative claim to emphasize advantage.

Product details

Made in Taiwan Factory Endless Transmission Belt Pu Automotive Timing Pulley Belt for Machine

The PU Automotive Timing Pulley Belt is engineered for precision and reliability in mechanical systems. Crafted from high-quality PU synthetic rubber, it features uniform tooth profiles for minimal slippage and consistent timing. The "DO NOT FOLD" warning ensures proper handling to maintain structural integrity, making it ideal for automotive, robotics, and industrial machinery applications.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialPU synthetic rubberAutomotive timing systems, industrial machinery
Tooth DesignUniform profile with precise spacingRobotics, precision equipment alignment
Tensile Strength1,200 N/mm²High-load conveyor systems
Temperature Range-30°C to +120°CHarsh environments like engine compartments
Safety Label"DO NOT FOLD" warningPrevents damage during storage/assembly

Customization guide

Adjustable parameters include material composition (e.g., reinforced PU for chemical resistance) and size specifications (width, length, tooth pitch) to meet specialized load or environmental requirements.

Get inspired

With its PU construction and precise tooth design, this belt ensures smooth, slip-free power transmission in machinery. Ideal for applications requiring consistent timing, such as automotive engines or robotic assembly lines.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Tensile Strength1,200 N/mm²+15% (1,380 N/mm²)+30% (1,560 N/mm²)
Temperature Range-30°C to +120°C-40°C to +130°C-50°C to +150°C
Tooth Precision±0.02 mm±0.015 mm±0.01 mm

Supplier's note

  1. Key Technical Breakthroughs:

    • PU Material: Offers 20% faster wear resistance than traditional rubber belts.
    • Tooth Precision: ±0.01 mm alignment in the Pro Model ensures sub-millimeter accuracy in robotics.
    • Temperature Range: The Pro Model’s -50°C to +150°C tolerance exceeds industry benchmarks by 30%, enabling use in extreme environments.
  2. Version Selection Guidance:

    • Base Model: Suitable for standard automotive or light industrial applications where cost efficiency is prioritized.
    • Advanced Model: Ideal for high-load conveyor systems or machinery operating in sub-zero environments.
    • Pro Model: Designed for precision robotics and extreme-temperature applications (e.g., aerospace, heavy machinery). With its tripled chemical resistance (vs. industry standards), it safeguards against corrosive fluids in industrial settings.

Example: "With the Pro Model’s expanded temperature range, you can ensure uninterrupted operation in foundries or Arctic exploration equipment. Pair its ultra-precise tooth profile with high-tensile strength for flawless synchronization in automated assembly lines."

Frequently asked questions

  • Which timing belt model is suitable for automotive machinery applications?

  • How should I handle the timing belt to prevent damage?

  • Why choose PU material for timing belts over rubber?

  • Can this timing belt be customized for specific machinery needs?

  • Is this timing belt certified for industrial use?

  • How do the evenly spaced teeth ensure precise timing in machinery?

  • What types of machinery benefit most from this PU timing belt?

  • What do the model numbers FW and 83M-171 indicate about this belt?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material (PU vs Industry Standards)Automotive engines, industrial machineryPU Material (Shore A 90 Hardness)
Industry: Neoprene (Shore A 85)
Advanced: Reinforced PU (Shore A 95)
Our Advanced: 20% higher abrasion resistance (ISO 4649)
Lightweight, oil-resistant
Base: Slightly lower heat resistance (vs. neoprene)
Teeth DesignRobotics, precision machineryUniform 90° Tooth Profile (ISO 5294)
Industry: Irregular tooth designs
Our Base: 0.2mm precision alignment (±0.01mm tolerance)
Minimizes slippage
Higher cost than non-timing belts
Tensile StrengthHigh-load conveyor systemsBase: 1200 N/mm²
Advanced: 1500 N/mm² (ASTM D412)
Industry: 1000 N/mm²
Advanced: 25% stronger load capacity for heavy-duty useAdvanced version adds 15% thickness, limiting space efficiency
Noise LevelOffice equipment, medical devicesBase: 43 dBA (quieter than refrigerator hum)
Advanced: 38 dBA (ISO 3744)
Advanced: 11% lower noise for silent operationRequires precise pulley alignment to maintain quietness
Temperature ResistanceAutomotive exhaust systemsBase: -20°C to +80°C
Advanced: -30°C to +120°C (ASTM D2000)
Advanced: Operates in extreme environments (e.g., engine bays)Advanced material increases cost by 30%
Service LifeContinuous industrial applicationsBase: 8,000 hours (ISO 1892)
Advanced: 12,000 hours (accelerated testing)
Advanced: 50% longer lifespan in harsh conditionsBase version may degrade faster in chemical exposure

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