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| SIZE |
38.1 mm 1-1/2" |
| GRADE | G25 |
| MATERIAL | Chrome Steel |
| WEIGHT |
8.018 ounces 227.3217 g |
Additional Information
PGN’s Chrome Steel Balls are extremely precise, and smooth surface guarantees you won't find any defects, such as flats, pits, soft spots, and cuts.
PGN Chrome Steel Bearing Balls are designed for applications that require a large spherical component with durable material properties, consistent geometry, and a smooth surface finish. Featuring a 1-1/2 inch diameter, these chrome steel balls provide a reliable solution for mechanical systems, replacement components, and custom applications where dependable spherical performance is required.
Manufactured from chrome steel, these bearing balls offer the durability and wear resistance characteristics commonly associated with bearing-grade steel materials. The smooth surface quality and consistent spherical shape make them suitable for applications involving mechanical contact, positioning, and controlled movement.
The larger 1-1/2 inch diameter makes this chrome steel ball a practical option for heavy-duty mechanical designs, industrial assemblies, and specialized projects requiring a substantial precision spherical component. With its combination of size, material strength, and consistent finish, it provides flexibility for engineers, manufacturers, and maintenance professionals.
1-1/2 inch chrome steel bearing ball designed for industrial assemblies, replacement components, and custom mechanical applications requiring a durable spherical component with a smooth surface finish and reliable performance.
Chrome steel is widely used for bearing balls due to its durability, wear resistance, and ability to maintain a smooth surface during mechanical contact. This material provides a dependable option for applications where consistent performance and long-term component reliability are important.
The chrome steel construction makes this bearing ball suitable for compatible systems requiring a strong and durable spherical component.
The 1-1/2 inch diameter provides a larger spherical component designed for applications where size and mechanical presence are important factors. Compared with smaller bearing balls, this format offers a more substantial option for custom assemblies and industrial applications.
Its larger dimensions make it suitable for projects requiring a durable spherical element with reliable integration into compatible designs.
A smooth spherical surface helps support consistent contact between components in systems involving movement, positioning, or rolling interaction.
When properly specified for the application, chrome steel bearing balls can contribute to reliable mechanical operation. Final performance depends on the complete system design, operating conditions, and compatibility with surrounding components.
Chrome steel bearing balls are used in a variety of applications where accurate sizing, durable materials, and dependable spherical geometry are required.
From industrial replacement components to custom engineering projects, these balls provide a versatile solution for applications that require a reliable mechanical element.
The 1-1/2 inch chrome steel bearing ball combines durable material construction, large-scale spherical design, and consistent surface quality to support a variety of compatible applications.
Proper selection should always consider equipment specifications, environmental conditions, and intended use requirements to ensure the correct component choice.
This bearing ball is made from chrome steel, a material commonly selected for applications requiring durability, smooth surface quality, and reliable mechanical performance.
This bearing ball has a 1-1/2 inch diameter, equivalent to approximately 38.1 mm.
Chrome steel bearing balls may be used in compatible applications such as mechanical assemblies, industrial equipment, replacement components, positioning systems, and custom engineering projects.
Chrome steel is commonly selected for bearing applications because of its durability and wear-resistant characteristics. Actual performance depends on the application environment and operating conditions.
It may be suitable as a replacement component when the required diameter, material, and application specifications match the original component requirements.
Load performance depends on the complete assembly design, operating conditions, and engineering requirements. Compatibility should be validated before use in critical applications.