RKS.160.14.0544

RKS.160 Types ring bearing
  • RKS.160 Types ring bearing
  • RKS.160 Types ring bearing
  • RKS.160 Types ring bearing

RKS.160.14.0544-RKS.160 Types ring bearing

The single-row crossed roller slewing bearing series is a precision-engineered rotational component designed for applications that demand high accuracy, superior rigidity, and the flexibility to accommodate external drive systems. This gearless configuration features cylindrical rollers arranged in a crossed pattern, delivering exceptional performance for precision-critical equipment where integral gearing is unnecessary or undesirable.



Application Areas:

Robotics and automation equipment

Precision rotary tables and indexing systems

Radar and antenna positioning systems

Medical imaging and radiotherapy equipment

High-accuracy solar tracking systems

Machine tools and coordinate measuring equipment



High load-carrying capacity
Resistance to high and low temperatures
Noise-free operation
Strictly controlled tolerances and appropriate internal clearance
Long service life and low maintenance requirements
Prevention of unexpected downtime (avoiding bearing fracture, seizure, and safety incidents caused by such failures, with anti-tilting capability)

Dimension and Parameters

RKS.160 Types ring bearing
Bearing Type :RKS.160.14.0544
Brand :LYMC
Drawing No. :614
Main Dimensions
De[mm] :544
Dm[mm] :474
Di[mm] :590
Fixing Holes
Fe[mm] :14
he[mm] :32
Ne :498
Fi[mm] :14
hi[mm] :32
Ni :38
Mass
KG :K
Basic Load Ratin Curves
Axial dyn.C [kN] :270
Axial stat.Co [kN] :680
Raceways (r) :2r
Bolt(b) :2b

Characteristics

✦ Roller orientation – Rollers are arranged with their axes perpendicular to adjacent rollers, creating a compact load-bearing matrix.

✦ Ring surface condition – Both rings are finished with smooth, uninterrupted cylindrical faces, devoid of any gear tooth features.

✦ Manufacturing route – Rings are produced via open-die forging followed by rough and finish turning, with no welded or bolted joints.

✦ Raceway geometry – Rolling paths are ground with a logarithmic profile to optimize contact stress distribution.

✦ Hardening method – Surface hardening is achieved through a single-shot induction process, producing a uniform hardened layer.

✦ Seal groove configuration – Grooves are machined with a trapezoidal cross-section to accommodate standard profile seals.


Features

✦ Accommodates angular deflection – The logarithmic raceway profile allows limited angular misalignment without edge loading.

✦ Eliminates gear wear concerns – Smooth ring surfaces remove the risk of gear tooth pitting or breakage.

✦ Reduces lubricant contamination – The plain ring design prevents debris entrapment, keeping lubricant cleaner for longer.

✦ Allows high-frequency oscillation – Low inertia of the compact roller arrangement supports rapid start-stop cycles.

✦ Simplifies integration with existing drives – Toothless rings directly accept chain, belt, or friction wheel drives.

✦ Enables oil-based lubrication – The open ring geometry permits oil bath or circulating oil systems.


Further Reading