14M Series Double Sided HTD High Torque Drive Timing Belt
Heavy-Duty Bidirectional Power for Synchronous Industrial Drives
The 14M Series Double Sided HTD (High Torque Drive) timing belt is engineered for extreme industrial applications requiring high torque, precise synchronization, and reliable bidirectional power transmission. Featuring a 14 mm pitch and curvilinear HTD tooth geometry on both sides, this belt ensures smooth, slip-free engagement with pulleys in dual-shaft or multi-axis drive systems. Its robust construction makes it ideal for complex mechanical layouts where timing accuracy and durability are essential.
Specifications of 14M Series Double Sided HTD Belts
Built for Maximum Strength, Flexibility, and Service Life
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Tooth Pitch: 14 mm (HTD profile)
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Tooth Configuration: Curvilinear HTD teeth on both sides for synchronous bidirectional driving
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Materials: Neoprene or polyurethane body with high-strength fiberglass or aramid tensile cords
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Standard Widths: 20 mm, 40 mm, 55 mm, 85 mm, and wider custom options
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Operating Temperature Range: -30°C to +100°C
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Performance: High torque capacity with minimal backlash
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Resistance: Excellent resistance to oils, chemicals, abrasion, and environmental wear
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Engagement: Positive tooth-to-pulley fit eliminates slippage and maintains precise timing
The dual-sided tooth profile maximizes versatility, allowing simultaneous power transmission on both belt surfaces without compromising accuracy or load capacity.
Applications of 14M Double Sided HTD Belts
Ideal for Complex, High-Load Synchronous Systems
This belt is widely used in demanding applications such as:
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Automated conveyor and material handling systems
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Mining, aggregate, and heavy industrial machinery
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Textile equipment and high-speed production lines
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Precision printing and packaging machinery
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Robotics and multi-axis automation systems
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Large-scale mechanical platforms requiring coordinated shaft movement
Precision and Power for the Toughest Industrial Demands
The 14M Series Double Sided HTD timing belt offers unparalleled performance in bidirectional synchronous drives, delivering high torque, long service life, and exceptional stability. Its ability to handle complex mechanical layouts while maintaining perfect timing makes it the preferred solution for engineers designing high-load, high-precision industrial systems.