SKF 129 TN9 9 mm ID 2 Row Ball Bearing -, 26 mm OD

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SGD54.22

(exc. GST)

SGD59.10

(inc. GST)

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RS Stock No.:
209-1786
Mfr. Part No.:
129 TN9
Manufacturer:
SKF
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Brand

SKF

Inside Diameter

9mm

Product Type

Ball Bearing

Outside Diameter

26mm

Race Width

8mm

Cage Material

Non-Metallic

Ball Material

Steel

End Type

Open

Number of Rows

2

Static Load Rating

815kN

Internal Clearance

CN

Dynamic Load Rating

3.9kN

Standards/Approvals

No

Series

Self-aligning ball bearings

Bore Type

Parallel

Limiting Speed

38000rpm

Bearing Type

Self-Aligning

SKF Self Aligning Ball Bearing, 9mm Inside Diameter, 26mm Outside Diameter - 129 TN9


This self-aligning ball bearing is an essential component in various mechanical applications. With an inside diameter of 9mm and an outside diameter of 26mm, this open-type ball bearing is designed for effective load distribution and alignment within your machinery. It is constructed from steel, ensuring durability and efficient operation in various environments.

Features & Benefits


• Dual-row design enhances load-carrying capacity

• Open-type design allows for easy lubrication access

• Steel construction ensures longevity and robustness

• Suitable for angular misalignment up to 3 degrees

Applications


• Used in machinery where self-alignment is crucial

• Ideal for requiring minimal maintenance

• Effective in automated systems demanding precision

• Utilised in electrical and mechanical assembly projects

What is the significance of the dynamic load rating in this bearing?


The dynamic load rating of 3.9 kN indicates the maximum load the bearing can support while in motion, reflecting its suitability for high-stress applications in various industrial settings.

How does the open-type design benefit lubrication?


The open-type design simplifies the lubrication process, allowing for easy application of grease or oil, which is essential for reducing friction and extending the bearing's service life.

What is the impact of the dual-row configuration on performance?


The dual-row configuration significantly increases load-carrying capacity and stability, making it ideal for heavy machinery applications, thereby reducing the risk of misalignment.

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