111.32.1600

Inner diameter:
1460 mm
Outer diameter:
1740 mm
Width:
91 mm

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111.32.1600

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Rolling element type : Roller
Measurement system : Metric
Outer diameter (D) : 1740 mm
Inner diameter (d) : 1460 mm
Overall height (H) : 91 mm
Center circle diameter-outer ring (D1) : 1687 mm
Center circle diameter-inner ring (D2) : 1513 mm
Diameter of through holes (dn1&dn2) : 26 mm
Diameter of threaded holes (dm1&dm2) : M24
Depth (L) : 48 mm
Number of holes : 45
Number of grease holes : 5
Outer diameter of inner ring (D3) : 1598 mm
Inner diameter of outer ring (d1) : 1602 mm
Width of outer ring (H1) : 81 mm
Width difference at bottom (h) : 10 mm
Gear tooth width (b) : 75 mm
Module : 14 mm
Tip diameter (da) : 1817.2 mm
Number of teeth (z) : 127
Gear type : External Gear
Temperature : -20℃ to +120℃
Seal type : Closed Type
111.32.1600
Outer diameter (D), Inner diameter (d), Overall height (H), Center circle diameter-outer ring (D1), Center circle diameter-inner ring (D2), Diameter of through holes (dn1&dn2), Diameter of threaded holes (dm1&dm2), Depth (L), Number of holes, Number of grease holes, Outer diameter of inner ring (D3), Inner diameter of outer ring (d1), Width of outer ring (H1), Width difference at bottom (h), Gear tooth width (b), Module , Tip diameter (da), Number of teeth (z), Gear type,

QIBR - 111.32.1600 Advantages and Applications

111.32.1600 , small friction coefficient, high precision, good transmission performance, Inner diameter (d) is 1460 mm, Outer diameter (D) is 1740 mm, Overall height (H) is 91 mm, suitable for cranes, hoists, radar systems and steel furnaces, etc., is the most widely used bearing under working conditions that require high bearing transmission performance.

Outer diameter (D), Inner diameter (d), Overall height (H), Center circle diameter-outer ring (D1), Center circle diameter-inner ring (D2), Diameter of through holes (dn1&dn2), Diameter of threaded holes (dm1&dm2), Depth (L), Number of holes, Number of grease holes, Outer diameter of inner ring (D3), Inner diameter of outer ring (d1), Width of outer ring (H1), Width difference at bottom (h), Gear tooth width (b), Module , Tip diameter (da), Number of teeth (z), Gear type,

QIBR - 111.32.1600 Characteristics

111.32.1600 , high working efficiency, simple maintenance, easy installation, strong durability. 111.32.1600 , can bear certain axial force, radial force and overturning moment at the same time, suitable for precision machinery.

111.32.1600 Slewing Bearing Features and Advantages

Compact design: Compact structure, it can be installed in space-constrained environments, and has a wider range of applications.

High load capacity: It can withstand axial, radial and overturning moments at the same time, suitable for heavy-duty applications.

Superior precision: Maintain high precision during use and reduce errors in equipment operation.

High temperature and wear resistance: Made of high-temperature bearing steel, with good wear resistance and strength.

Application: Widely used in lifting machinery, engineering machinery, transportation machinery, mining machinery, metallurgical machinery, medical equipment, ships, warships, radar, wind power generation and other fields.

QIBR - 111.32.1600 Slewing Bearing Optimization

Grease replacement: Replace grease with other greases such as SFK, Mobil, Krupp, etc. to optimize the working performance and use conditions of the bearing.

Coating optimization: Provide other coatings such as zinc plating or nickel plating to enhance corrosion resistance and wear resistance and extend its service life in harsh environments.

Process optimization: Optimize the bearing production process, increase the bearing operating temperature range, and improve the bearing accuracy and stability.

More customization: QIBR can optimize the bearing structure design according to customers’ drawings or equipment requirements to meet equipment needs.

QIBR - 111.32.1600 Slewing support bearing quality control

Dimension measurement: Use a variety of professional high-precision instruments to measure multiple dimensions of the bearing, with the highest accuracy up to 0.01mm.

Rotation accuracy: Use a dial indicator to measure small flaws or deviations on the bearing surface, with a measurement accuracy of up to 0.01mm.

Hardness measurement: Use a Leeb hardness tester to measure the bearing surface hardness, with a measurement accuracy of ±6HLD.

Metallographic analysis: Use a professional metallographic microscope to analyze the internal metallographic structure of the metal.

Geometric tolerance: Use a roundness meter to measure the bearing geometry and relative position.

Noise monitoring: Use a vibration meter to monitor the vibration during operation and obtain noise data.

111.32.1600
The outer ring has excellent mechanical performance, with high strength and toughness. After quenching and tempering (Q+T), it exhibits fatigue resistance, impact resistance, and excellent low-temperature impact toughness.
The inner ring has excellent mechanical performance, with high strength and toughness. After quenching and tempering (Q+T), it exhibits fatigue resistance, impact resistance, and excellent low-temperature impact toughness.
Rollers and balls are both types of rolling elements, which are the most crucial components of rotary support bearings and the most commonly used rolling elements in the bearing industry.
It is located between the outer raceway, inner raceway, and rollers/balls of the bearing. It is a isolator block that serves as a cage.
Its role serves two purposes: Firstly, to prevent the loss of lubricating grease or oil inside the bearing, ensuring proper lubrication. Secondly, to shield the bearing from external dust or harmful gases, thus preventing damage.
To ensure the smooth operation of the bearing, it is necessary to inject lubricating grease or oil between the inner and outer rings of the bearing. The function of lubricating grease or oil is to reduce friction coefficient and wear, minimize bearing heat and friction losses, and enhance bearing lifespan.
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