14M Series HTD High Torque Drive Belt
Heavy-Duty Synchronous Power for High-Torque Industrial Applications
The 14M Series HTD (High Torque Drive) timing belt is built for extreme industrial environments where maximum torque, precise synchronization, and long-term durability are essential. With a 14 mm pitch and a curvilinear HTD tooth profile, this belt provides superior load carrying capacity and smoother engagement than traditional trapezoidal timing belts. Its advanced design reduces stress concentrations, minimizes wear, and ensures consistent, slip-free performance—even under the heaviest loads.
Specifications of the 14M HTD Timing Belt
Engineered for Strength, Stability, and Long Service Life
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Tooth Pitch: 14 mm (HTD curvilinear profile)
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Belt Material: High-strength neoprene rubber for flexibility and durability
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Tensile Cords: Reinforced fiberglass cords provide dimensional stability and minimal stretch
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Tooth Facing: Wear-resistant nylon fabric for quiet operation and extended tooth life
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Standard Widths: 40 mm, 55 mm, 85 mm (custom widths available)
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Temperature Range: -30°C to +100°C
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Resistance: Oil, grease, chemical, and abrasion resistant
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Performance: Designed for high torque loads and smooth synchronous movement
The robust HTD tooth geometry ensures maximum power transmission efficiency, ideal for heavy-duty, continuous-duty machinery.
Applications of 14M Series HTD Belts
Built for the Toughest Industrial Demands
14M HTD belts are widely used in high-load, high-precision environments such as:
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Heavy industrial equipment and machinery
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Mining and aggregate processing systems
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Large compressors, blowers, and industrial fans
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Construction and earthmoving machinery
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Steel mills and processing lines
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Paper mills and high-speed printing equipment
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CNC machining centers and industrial robotics
High-Torque Precision You Can Rely On
The 14M Series HTD timing belt delivers exceptional power transmission, accuracy, and durability, making it the preferred choice for engineers and maintenance professionals. Designed to withstand shock loads, high speeds, and harsh operating conditions, it ensures reliable performance and reduced downtime in mission-critical applications.