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Brand Name: | BUGAO |
Model Number: | 6909ZZ, 6909,6909-2RS |
MOQ: | 1,000 sets |
Price: | Negotiable |
Delivery Time: | Negotiable |
Payment Terms: | T/T,L/C,Western Union |
6909ZZ Bearing ABEC-1 P0 Thin Section Ball Bearings for Robots Motors:
Parameter | Value |
---|---|
Inner Diameter (d) | 45 mm |
Outer Diameter (D) | 68 mm |
Width (B) | 12 mm |
Dynamic Load Rating (C) | Typically around 21.6 kN (varies by manufacturer) |
Static Load Rating (C₀) | Typically around 14.3 kN (varies by manufacturer) |
Maximum Speed | Depends on lubrication and operating conditions, but generally suitable for high-speed applications. |
Thin-walled bearings are characterized by their slim cross-section relative to their diameter. This compact design allows them to fit into tight spaces where standard bearings cannot, making them ideal for applications with limited installation space. Despite their reduced size, they maintain high performance and load-carrying capacity.
These bearings are significantly lighter than conventional bearings due to their thin walls and optimized material usage. This lightweight nature is particularly beneficial in weight-sensitive applications, such as aerospace, robotics, and automotive systems, where reducing overall weight is crucial for efficiency and performance.
Despite their thin design, thin-walled bearings are engineered to handle substantial radial, axial, and moment loads. This makes them versatile and suitable for a wide range of applications, from light-duty machinery to heavy-duty industrial equipment. Their ability to support multiple load types ensures reliable performance in dynamic and demanding environments.
Thin-walled bearings are manufactured to extremely high precision standards. This ensures smooth operation, minimal vibration, and accurate motion control, which are essential for applications requiring high levels of accuracy, such as robotics, medical devices, and optical systems.
These bearings are available in a variety of materials to suit different application requirements. Common materials include:
Stainless Steel: Offers corrosion resistance and durability, ideal for harsh environments.
Carbon Steel: Provides high strength and load capacity for industrial applications.
Ceramics: Used in high-temperature or electrically insulating applications.
The choice of material can be tailored to meet specific operational needs, such as corrosion resistance, high-temperature performance, or reduced weight.
Thin-walled bearings can be customized in terms of size, material, sealing options, and lubrication. This flexibility allows them to meet the unique requirements of various industries, including aerospace, medical, and renewable energy. Custom seals, coatings, and lubricants can further enhance their performance in specific environments.
The precise design and high-quality materials used in thin-walled bearings minimize friction during operation. This results in improved efficiency, reduced energy consumption, and lower operating temperatures, which contribute to longer bearing life and reduced maintenance costs.
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Brand Name: | BUGAO |
Model Number: | 6909ZZ, 6909,6909-2RS |
MOQ: | 1,000 sets |
Price: | Negotiable |
Packaging Details: | Single Packing, Industrial/Tube Packing, Custom Packing |
Payment Terms: | T/T,L/C,Western Union |
6909ZZ Bearing ABEC-1 P0 Thin Section Ball Bearings for Robots Motors:
Parameter | Value |
---|---|
Inner Diameter (d) | 45 mm |
Outer Diameter (D) | 68 mm |
Width (B) | 12 mm |
Dynamic Load Rating (C) | Typically around 21.6 kN (varies by manufacturer) |
Static Load Rating (C₀) | Typically around 14.3 kN (varies by manufacturer) |
Maximum Speed | Depends on lubrication and operating conditions, but generally suitable for high-speed applications. |
Thin-walled bearings are characterized by their slim cross-section relative to their diameter. This compact design allows them to fit into tight spaces where standard bearings cannot, making them ideal for applications with limited installation space. Despite their reduced size, they maintain high performance and load-carrying capacity.
These bearings are significantly lighter than conventional bearings due to their thin walls and optimized material usage. This lightweight nature is particularly beneficial in weight-sensitive applications, such as aerospace, robotics, and automotive systems, where reducing overall weight is crucial for efficiency and performance.
Despite their thin design, thin-walled bearings are engineered to handle substantial radial, axial, and moment loads. This makes them versatile and suitable for a wide range of applications, from light-duty machinery to heavy-duty industrial equipment. Their ability to support multiple load types ensures reliable performance in dynamic and demanding environments.
Thin-walled bearings are manufactured to extremely high precision standards. This ensures smooth operation, minimal vibration, and accurate motion control, which are essential for applications requiring high levels of accuracy, such as robotics, medical devices, and optical systems.
These bearings are available in a variety of materials to suit different application requirements. Common materials include:
Stainless Steel: Offers corrosion resistance and durability, ideal for harsh environments.
Carbon Steel: Provides high strength and load capacity for industrial applications.
Ceramics: Used in high-temperature or electrically insulating applications.
The choice of material can be tailored to meet specific operational needs, such as corrosion resistance, high-temperature performance, or reduced weight.
Thin-walled bearings can be customized in terms of size, material, sealing options, and lubrication. This flexibility allows them to meet the unique requirements of various industries, including aerospace, medical, and renewable energy. Custom seals, coatings, and lubricants can further enhance their performance in specific environments.
The precise design and high-quality materials used in thin-walled bearings minimize friction during operation. This results in improved efficiency, reduced energy consumption, and lower operating temperatures, which contribute to longer bearing life and reduced maintenance costs.