Characteristics of PM Planetary Motor DC Wholesale

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1. PM planetary motor DC wholesale with high torque and impact resistance; However, traditional gears only rely on a very small number of contact surfaces between two gears to press and drive, and all loads are concentrated on the few gear surfaces in contact, which can easily cause friction and fracture between gears. Planetary gears have a large area of uniform 360 degree load on the gear contact surface, and multiple gear surfaces jointly and uniformly bear impact loads, which can better withstand higher torque forces and impacts.

2. The planetary gearbox motor has a small volume and light weight; The design of traditional gears involves multiple sets of large and small gears that are inclined towards staggered transmission reduction. Due to the fact that the reduction ratio needs to be generated by multiplying the number of two gears, there must be a certain distance between the large and small gears for meshing. Therefore, the gearbox has a huge storage space, especially when combining high-speed ratios, which requires more than two reduction gearboxes to be connected and combined. The structural strength is relatively weakened, and the length of the gearbox is lengthened, resulting in a relatively large volume and weight. The structure of planetary gears can be repeatedly connected according to the required number of segments, and multiple segments can be combined separately, resulting in small size, light weight, lightweight appearance, and greater value.

3. PM planetary motor DC wholesale with high efficiency and low backlash; Due to the fact that each set of gears in a regular gear reducer only has a single tooth surface meshing contact during gear reduction transmission, greater tooth surface stress is required when the transmission torque is equal. Therefore, larger module and thickness must be used in gear design. The larger the gear module, the greater the gear clearance tolerance value, resulting in relatively higher gear clearance. The cumulative backlash between each reduction ratio increases accordingly. The unique multi-point uniform tight fit in planetary gear combinations and the circular arc enveloping structure of the outer gear ring. By tightly integrating the outer gear ring with the planetary gears, the high degree of fit between the gears not only improves the efficiency of the gearbox, but also achieves high-precision positioning in the design itself.

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