Gears
Spur, helical, bevel, worm and internal gears plus racks.
Also searched as: spur gearsbevel gearsworm gearhelical gearsgear rack
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0.5 Module Plastic Helical Worm Gear
Bore: 1.95mmDiameter: 6mmLength: 6/8/10mmModule: 0.5
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1.25M Steel Gear Rack
Dimensions: 22x25mmLength: 1400mm or 670mmModule: 1.25M
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1:1 Bevel Gear 2M 12 15 18 20 25 Teeth
Module: 2MPressure Angle: 20 degreesRatio: 1:1Teeth: 12, 15, 18, 20, 25
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1:1.5 Precision Bevel Gear 20-30 Teeth
Ratio: 1:1.5Teeth: 20-30
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1M 1Mod Internal Gear Rack
Length: 0.5mModule: 1M
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Bevel Gear 1.5M 12/16/18/20/25 Teeth Bore 6/8/10/12/
Bore: 6/8/10/12 mmModule: 1.5MTeeth: 12, 16, 18, 20, 25
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Bevel Gear S122.5A 0.5M 12 Teeth 2.5mm Shaft Hole
Module: 0.5MShaft Hole: 2.5 mmTeeth: 12
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Double Plastic Helical Gear 0.5/0.6M 16/41T 3mm
Bore: 3 mmModule: 0.5/0.6Teeth: 16/41Type: Double
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Electric Bike Helical Gears
Size: 47x12.5mm
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Helical Gear
Dimensions: 38.8x11mmTeeth: 36
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Left-Hand Helical Gears
Hand: LeftModule: 0.8
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Oblique Planetary Helical Gear
Dimensions: 41.5x11.5mmTeeth: 31
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Plastic Gear Rack
Module: 1MTeeth: 38T, 10T
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Right Helical Rack 1.25M 1400mm Steel Gear Set for CNC
Hand: RightLength: 1400 mmModule: 1.25
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Servo Steel Helical Gear 55kg Waterproof IP68
IP Rating: IP68Torque: 55 kg
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Spur Gear
Module: m 1Teeth: 32Type: Hubless
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Straight Bevel Gear 1M15T-60T 1.5M15T-60T
Ratio: 1:4
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Worm Gear Mini Helical Gear
Module: 0.5
About gears
Gears transmit rotary motion and torque between shafts, or convert rotary motion into linear motion. This category encompasses a range of gear types, including spur, helical, bevel, worm, and internal gears, as well as racks. Spur gears are the simplest and most common, used for parallel shaft applications. Helical gears offer smoother, quieter operation and higher load capacity due to their angled teeth. Bevel gears are designed for intersecting shafts, typically at 90 degrees. Worm gears provide high reduction ratios and self-locking capabilities. Internal gears have teeth on the inside circumference and are often used in planetary gear sets. Racks convert rotary motion from a pinion into linear motion. Key selection parameters include module or diametral pitch, number of teeth, pressure angle (commonly 14.5° or 20°), bore diameter, face width, and material. Common materials include steel (e.g., 1045, 4140, case-hardened alloys), stainless steel, brass, bronze, and engineering plastics like acetal or nylon. Surface treatments such as black oxide, nitriding, or case hardening are applied for wear resistance and corrosion protection.
How to choose
When selecting gears, first determine the required speed ratio and shaft orientation (parallel, intersecting, or non-intersecting non-parallel). This narrows the choice to spur, helical, bevel, or worm gears. Next, specify the torque or power to be transmitted, which, combined with the desired speed, dictates the required module/diametral pitch and face width. Consider the operating environment; noise constraints may favor helical gears over spur, while space limitations might lead to internal gears. Finally, select the material based on load, wear resistance, and cost, considering heat treatment or surface finishes for demanding applications. For linear motion, determine the required travel and force to specify the rack and pinion.