What Is Slew Drive?
The vertical slewing drive is a full-cycle rotary reduction transmission mechanism integrated with a driving power source. The slewing bearing is used as a transmission follower and a mechanism
attachment member, and an active member and a driving source are attached to one of the inner and outer rings of the slewing ring. And the casing, and the other ring is regarded as both the
transmission follower and the connecting base of the driven working part, so that the slewing bearing itself is a feature of the full-circle rotary connecting member, and the driving power source
and the main transmission are efficiently configured. The part such as ve series slewing drive makes it a general-purpose reduction transmission mechanism that integrates the functions of rotation,
deceleration and drive, while having a simple structure and convenient manufacture and maintenance.
Bearing & Drive Solutions
VE Vertically-Mounted Slewing Drive
The VE Series Slew Drive is a vertical mounted design for low-speed (<1 RPM) outdoor applications.
SE Helical Tooth Slewing Drive
The SE Series Slew drive adopts enveloping worm gearing, more contact and higher torque.
WE Worm Drive Slewing Gear
The WE Series Slew drive adopts curved gear teeth which leads to more contact and higher torque.
Heavy Duty Vehicle Series
The double-drive Heavy duty vehicle series can achieve 2 times the tooth contact on the single drive base, which makes it can produce nearly double the output torque in the same volume and
installatio...
Precision PE Series
When you want the accuracy of the drive to be controlled between 0.05 and 0.15 degrees, there is no doubt that the precision type has a unique advantage in the high-end transmission field.Precision
PE...
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Types of Worm Gear Slewing Drive
According to the form of the variable speed transmission of the slewing ring drive, it can be divided into a tooth type slewing drive and a slew worm drive type slewing drive, inheriting the
respective characteristics of the gear drive and the worm gear drive, and the two slewing drives can be adapted to medium and high speed and low speed applications respectively. In terms of
carrying capacity, the worm-and-worm type performs better than the gear type, and its load carrying capacity, deformation resistance and transmission rigidity are further improved when using an
envelope worm drive, but the efficiency of the worm-gear type slewing drive is Inferior to the toothed rotary drive. According to the openness of the slewing drive transmission mechanism, the
slewing drive can be divided into open type and closed type. Generally, the open structure is mostly used in slewing drive applications where the environment is too harsh, the maintenance and
maintenance cycle is short, and the open structure is more convenient for the machine. Inspection, maintenance and maintenance are also easier to replace. Closed structures provide a longer
maintenance lifecycle where environmental conditions do not change much and are below the level of environmental pollution below medium.
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