Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,

Product Details
Customization: Available
Type: Bearing
Application: Excavator
Manufacturer/Factory & Trading Company
Gold Member Since 2013

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Number of Employees
52
Year of Establishment
1999-06-15
  • Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
  • Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
  • Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
  • Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
  • Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
  • Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
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Basic Info.

Model NO.
Slewing Bearing Kato HD250SE
Certification
ISO9001: 2000
Condition
New
Excavator Model
Kato HD250se
Part Number
HD250se
Material
50mn
O.D
807mm
I.D
546mm
Total Height
76mm
Height of Outer Ring
72mm
Height of Inner Ring
72mm
Teeth No.
70
Hardness
56-62 HRC
Transport Package
Wooden Case
Specification
ISO
Trademark
LDB
Origin
China
HS Code
8482109000
Production Capacity
2000sets/Month

Product Description

LUOYANG LONGDA BEARING CO., LTD established in 1999, located in Yiyang bearing industrial park in Luoyang China, Covers area of 30 acreage, We owns more than 100 staffs and have nearly 60 all kinds of bearing manufacturing and testing facilities, LDB company specialized in designing, developing, manufacturing and selling slewing bearings application for excavators.
Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
LDB company manufactures excavator slewing bearing as per JB/T2300-2011 of Machinery Industry Standard and JB/T10839-2008 of Engineering Industry Standard and machine processing diameter range from 150 mm to 3500 mm, Covering all kind of standard and nonstandard design. LDB slewing bearing's structures include: Four-point contact ball slewing bearing, Double-row balls slewing bearing, Cross roller slewing bearing, Three-row cylindrical roller and ball-roller combination slewing bearing can match with both domestic and oversea famous excavators.
Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
LDB company has passed the ISO9001: 2000 quality system authentication and adopt strict process control from raw material into factory finished product out of factory to ensure 100% qualified rate of outgoing product.
Excavator Kato HD250se Swing Circle, Slewing Bearing for Excavator, Excavator Slewing Bearing,
LDB products exported countries include: USA, Canada, Indonesia, Mallaysia, Singapore, Germany, Spain, UK, Cezkh, Finland, Holland, Sweden, Ireland, Turkey and UAE etc.

LDB company owns strong technology, advanced processing equipments, complete testing method and perfect after-sales service, We insist on " Elaborate manufacturing, Serve the world" as our motto, supply sincerely high quality product and offer an all-round service, We are willing to cooperate with friends all over the world and build a beautiful and bright future together.

Excavator Slewing Bearing: Key Component and Market Insights

In the vast and dynamic world of construction machinery, the excavator slewing bearing stands as a pivotal component, silently but powerfully enabling the seamless operation of one of the most essential pieces of equipment - the excavator.

The Anatomy and Function of Excavator Slewing Bearing

An excavator slewing bearing is a complex mechanical assembly. At its core, it consists of inner and outer raceways. These raceways are precision - machined surfaces that provide the track for the rolling elements. The rolling elements, which can be either balls or rollers depending on the design and load requirements, are what facilitate the smooth rotation between the inner and outer rings. A retainer is also an integral part, keeping the rolling elements evenly spaced to ensure consistent and efficient operation.
Functionally, the slewing bearing is responsible for allowing the upper part of the excavator, which houses the cab, engine, and boom, to rotate freely relative to the lower chassis. This rotation is crucial for the excavator's ability to perform tasks such as digging at different angles, loading materials into trucks, and maneuvering in tight spaces. Without a properly functioning slewing bearing, an excavator's efficiency would be severely compromised, and the risk of breakdowns would increase significantly.

Quality and Durability: The Hallmarks of a Good Slewing Bearing

High - quality excavator slewing bearings are crafted from top - grade materials, with alloy steel being a popular choice. Alloy steel offers a combination of high strength, toughness, and wear resistance. This makes the slewing bearing capable of withstanding the extreme loads and harsh operating conditions typically encountered in construction and mining sites. For example, in large - scale mining operations where excavators are used to handle massive amounts of earth and minerals, the slewing bearing must endure high static and dynamic loads, as well as exposure to dust, dirt, and moisture.
The manufacturing process of a quality slewing bearing is also highly precise. Advanced machining techniques are employed to ensure that the raceways have the correct geometry and surface finish. This precision is essential for minimizing friction and wear, thereby extending the lifespan of the bearing. Additionally, proper heat treatment of the materials further enhances their mechanical properties, making the bearing more resistant to fatigue and deformation.

Market Trends and Competition

The market for excavator slewing bearings is a highly competitive one, driven by the continuous growth of the construction and mining industries globally. As construction projects become more complex and demanding, the need for high - performance excavators, and thus reliable slewing bearings, is on the rise.
New entrants and established players alike are constantly vying for market share. To stay competitive, companies are investing in research and development to introduce innovative designs. For instance, some manufacturers are developing slewing bearings with integrated sensors. These sensors can monitor parameters such as temperature, vibration, and load, providing real - time data that can be used for predictive maintenance. This not only helps in preventing unexpected breakdowns but also reduces maintenance costs in the long run.
Another trend in the market is the increasing demand for customized slewing bearings. Different excavator models and applications have unique requirements in terms of size, load capacity, and rotational speed. Manufacturers are now offering tailor - made slewing bearings to meet these specific needs, allowing for better integration with the overall excavator design.

Future Outlook

Looking ahead, the future of excavator slewing bearings is likely to be shaped by technological advancements and changing environmental regulations. In terms of technology, the development of more advanced materials, such as high - performance polymers and composites, may offer new possibilities for slewing bearing design. These materials could potentially provide better corrosion resistance, lower weight, and improved energy efficiency.
In response to environmental concerns, there will also be a push towards more sustainable manufacturing processes for slewing bearings. This may involve the use of recycled materials, energy - efficient production methods, and reduced waste generation. Additionally, as the construction and mining industries increasingly adopt electric and hybrid excavators, slewing bearings will need to be optimized for these new power sources, ensuring compatibility and high - performance operation.
In conclusion, the excavator slewing bearing is not just a simple mechanical part but a key enabler of the modern construction and mining industries. Its continuous evolution, driven by technological innovation and market demands, will play a crucial role in the future development of these industries.
 

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