Product Description
CF-2 1/4-B Stud Type Track Rollers Cam Follower Bearing For Machine Tools
Application
Metals Mining, Mineral Processing and Cement
Railways Industrial Applications.
Material Handling Agriculture
Construction Machine Tools
Auto Parts Power Generators
Cam Followers Stud-Type Track Rollers are designed to run on all types of tracks and to be used in cam drives, conveyor systems, etc.
They are based on either needle or cylindrical roller bearings. Instead of an inner ring, they have a threaded CHINAMFG stud (pin)
CF B serial cam follower bearing Specification
| Product Name | CFVBR CFVBUUR Stud Type Track Rollers |
| Precision Rating | P6, P0, P5, P4, P2 |
| Material | Bearing Steel (GCr15) |
| Clearance | C1 C2 C3 |
| Vibration & Noisy | Z1, Z2, Z3 V1, V2, V3 |
| Features | With Axial Guidance, Axial Plain Washers on Both Sides,full complement needle roller set |
| CFVBR Features | Shiled Type |
| CFVBUUR Features | Sealed Type |
| Application | Machine Tools, Auto Parts, Power Generators,and other Industrial Applications |
| Certification | ISO 9001: 2008 |
| Packing | 1. Neutral Packing Bearing 2. Industrial Packing 3. Commercial Packing Bearing 4. Customize |
| Delivery Time | 30 – 45 Days After The Order is Confirmed |
| Shippment | 1. By Sea 2. By Air 3. By Express |
| CF | V | B | UU | R |
| Standard Type | Full Complement Type | Hexagon Socket | Sealed Type | Crowned Outer Ring |
CF B serial cam follower bearing Specification
| Bearing No. | Dimensions (mm) | Basic Load Rating(KN) | Limited Speed |
Mass | |||||||||
| Hexagon Hole | Sealed Type | D | d | C | B | B1 | B2 | G | G1 | C | Co | rpm | kg |
| CF-1/2-N-B | CF-1/2-N-SB | 12.70 | 4.83 | 8.73 | 22.23 | 12.70 | – | 10-32 | 6.35 | 3.44 | 3.84 | 12000 | 0.009 |
| CF-1/2-B | CF-1/2-SB | 12.70 | 4.83 | 9.53 | 26.19 | 15.88 | – | 10-32 | 6.35 | 3.84 | 4.40 | 12000 | 0.571 |
| CF-9/16-B | CF-9/16-SB | 14.29 | 4.83 | 9.53 | 26.19 | 15.88 | – | 10-32 | 6.35 | 4.30 | 5.30 | 10000 | 0.015 |
| CF-5/8-N-B | CF-5/8-N-SB | 15.88 | 6.35 | 10.32 | 26.99 | 15.88 | – | 1/4-28 | 7.94 | 4.72 | 6.24 | 8800 | 0.019 |
| CF-5/8-B | CF-5/8-SB | 15.88 | 6.35 | 11.11 | 30.96 | 19.05 | – | 1/4-28 | 7.94 | 5.20 | 7.00 | 8800 | 0.571 |
| CF-11/16-B | CF-11/16-SB | 17.46 | 6.35 | 11.11 | 30.96 | 19.05 | – | 1/4-38 | 7.94 | 6.50 | 8.50 | 8000 | 0.030 |
| CF-3/4-B | CF-3/4-SB | 19.05 | 9.53 | 12.70 | 35.72 | 22.23 | 6.35 | 3/8-24 | 9.53 | 7.12 | 10.00 | 6400 | 0.037 |
| CF-7/8-B | CF-7/8-SB | 22.23 | 9.53 | 12.70 | 35.72 | 22.23 | 6.35 | 3/8-24 | 9.53 | 7.12 | 10.00 | 6400 | 0.048 |
| CF-1-B | CF-1-SB | 25.40 | 11.11 | 15.88 | 42.07 | 25.40 | 6.35 | 7/16-20 | 12.70 | 10.64 | 18.50 | 5200 | 0.076 |
| CF-1 1/8-B | CF-1 1/8-SB | 28.58 | 11.11 | 15.88 | 42.07 | 25.40 | 6.35 | 7/16-20 | 12.70 | 10.64 | 18.50 | 5200 | 0.087 |
| CF-1 1/4-B | CF-1 1/4-SB | 31.75 | 12.70 | 19.05 | 51.59 | 31.75 | 7.94 | 1/2-20 | 15.88 | 19.20 | 25.90 | 4400 | 0.140 |
| CF-1 3/8-B | CF-1 3/8-SB | 34.93 | 12.70 | 19.05 | 51.59 | 31.75 | 7.94 | 1/2-20 | 15.88 | 19.20 | 25.90 | 4400 | 0.163 |
| CF-1 1/2-B | CF-1 1/2-SB | 38.10 | 15.88 | 22.23 | 61.12 | 38.10 | 9.53 | 5/8-18 | 19.05 | 23.00 | 32.70 | 3600 | 0.235 |
| CF-1 5/8-B | CF-1 5/8-SB | 41.28 | 15.88 | 22.23 | 61.12 | 38.10 | 9.53 | 5/8-18 | 19.05 | 23.00 | 32.70 | 3600 | 0.270 |
| CF-1 3/4-B | CF-1 3/4-SB | 44.45 | 19.05 | 25.40 | 70.64 | 44.45 | 11.11 | 3/4-16 | 22.23 | 28.70 | 45.40 | 3200 | 0.379 |
| CF-1 7/8-B | CF-1 7/8-SB | 47.63 | 19.05 | 25.40 | 70.64 | 44.45 | 11.11 | 3/4-16 | 22.23 | 28.70 | 45.40 | 3200 | 0.426 |
| CF-2-B | CF-2-SB | 50.80 | 22.23 | 31.75 | 83.34 | 50.80 | 12.70 | 7/8-14 | 25.40 | 37.30 | 65.80 | 2800 | 0.640 |
| CF-2 1/4-B | CF-2 1/4-SB | 57.15 | 22.23 | 31.75 | 83.34 | 50.80 | 12.70 | 7/8-14 | 25.40 | 37.30 | 65.80 | 2800 | 0.774 |
| CF-2 1/2-B | CF-2 1/2-SB | 63.50 | 25.40 | 38.10 | 96.04 | 57.15 | 14.29 | 1-14 | 28.58 | 54.00 | 102.30 | 1.126 | |
| CF-2 3/4-B | CF-2 3/4-SB | 69.85 | 25.40 | 38.10 | 96.04 | 57.15 | 14.29 | 1-14 | 28.58 | 54.00 | 102.30 | 1.316 | |
| CF-3-B | CF-3-SB | 76.20 | 31.75 | 44.45 | 108.70 | 63.50 | 15.88 | 1 1/4-12 | 31.75 | 72.30 | 155.00 | 1.905 | |
| CF-3 1/4-B | CF-3 1/4-SB | 82.55 | 31.75 | 44.45 | 108.70 | 63.50 | 15.88 | 1 1/4-12 | 31.75 | 72.30 | 155.00 | 2.170 | |
| CF-3 1/2-B | CF-3 1/2-SB | 88.90 | 34.93 | 50.80 | 121.40 | 69.85 | 17.46 | 1 3/8-12 | 34.93 | 104.80 | 196.70 | 2.878 | |
| CF-4-B | CF-4-SB | 101.60 | 38.10 | 57.15 | 146.80 | 88.90 | 19.05 | 1 1/2-12 | 38.10 | 138.00 | 278.00 | 4.253 | |
| CF-5-SB | 127.00 | 50.80 | 69.85 | 200.00 | 128.60 | 22.23 | 2-12 | 65.07 | 214.00 | 422.00 | |||
| CF-6-SB | 152.40 | 63.50 | 82.55 | 236.50 | 152.40 | 25.40 | 2 1/2-12 | 76.20 | 276.00 | 500.00 | |||
| CF-7-SB | 177.80 | 76.20 | 95.25 | 292.00 | 195.25 | 31.75 | 3-12 | 104.80 | 347.00 | 665.00 | |||
| CF-8-SB | 203.20 | 82.55 | 107.95 | 327.00 | 215.90 | – | 3 1/4-4 | 108.15 | 424.00 | 896.00 | |||
| CF-9-SB | 228.60 | 95.25 | 120.65 | 365.10 | 241.30 | – | 3 1/2-4 | 120.65 | 521.00 | 1140.00 | |||
| CF-10-SB | 254.00 | 107.95 | 133.35 | 390.50 | 254.00 | – | 3 1/2-4 | 120.65 | 605.00 | 1340.00 | |||
About Us
HENGLI Machinery Company is a well-established Chinese bearing supplier. We design, manufacture and wholesale bearings.
Our specialized manufacturer of Spherical Roller Bearing & Cylindrical Roller Bearing, XIHU (WEST LAKE) DIS. Rolling Bearing Co., Ltd was
established in 1970 and is accredited by the Chinese Ministry of Machine Building.
We invested in 2 additional specialized bearing factories, which allow us to provide our clients with top of the line products
such as Needle Roller Bearings, Cam Follower Bearings, Thrust Bearings, Spherical Plain Bearings, Rod Ends Bearings,
Ball Joint Bearings,Tapered Roller Bearings, Wheel Hub Bearings and Non-Standard Bearings.
FAQ
Q1 – What is our advantages?
A – Manufacturer – Do it only with the Best;
-Your Choice make different.
Q2 – Our Products
A – Spherical Roller Bearing, Cylindrical Roller Bearing, Needle Roller Bearing, Cam Followers, Thrust Bearing
– Spherical Plain Bearing, Rod End, Ball Joint, Wheel Hub, Tapered Roller Bearing
Q3 – Process of our production
A – Heat Treatment – Grinding – Parts Inspection – Assembly – Final Inspection – Packing
Q4 – How to customize bearing(non-standard) from your company?
A -We offer OEM, Customized(Non-standard) service and you need to provide drawing and detailed Technical Data.
Q5 – What should I care before installation?
A – Normally, the preservative with which new bearings are coated before leaving the factory does not need to be
Removed; It is only necessary to wipe off the outside cylindrical surface and bore, if the grease is not compatible
With the preservative, it is necessary to wash and carefully dry the bearing.
-Bearings should be installed in a dry, dust-free room away from metal working or other machines producing
Swarf and dust.
Q6 – How to stock and maintenance my bearings right?
A – Do not store bearings directly on concrete floors, where water can condense and collect on the bearing;
-Store the bearings on a pallet or shelf, in an area where the bearings will not be subjected to high humidity
Or sudden and severe temperature changes that may result in condensation forming;
-Always put oiled paper or, if not available, plastic sheets between rollers and cup races of tapered roller bearings.
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| Rolling Body: | Roller Bearings |
|---|---|
| The Number of Rows: | Single |
| Material: | Bearing Steel |
| Spherical: | Non-Aligning Bearings |
| Load Direction: | Radial Bearing |
| Separated: | Unseparated |
| Samples: |
US$ 1/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
|
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Are there innovations or advancements in cam roller technology that have emerged recently?
Yes, there have been several innovations and advancements in cam roller technology in recent years. These developments aim to improve performance, durability, efficiency, and versatility of cam rollers in various applications. Here are some notable innovations and advancements in cam roller technology:
- Advanced Materials: Manufacturers are continually exploring new materials and coatings to enhance the performance and durability of cam rollers. Advanced materials such as ceramic or composite materials with high strength-to-weight ratios and excellent wear resistance are being used to improve the longevity and efficiency of cam rollers. Additionally, specialized surface coatings, such as diamond-like carbon (DLC) coatings or low-friction coatings, are being applied to reduce friction, minimize wear, and optimize performance.
- Optimized Designs: Cam roller designs have evolved to optimize performance and functionality. Innovative design features, such as optimized cam profiles, improved roller geometries, and enhanced bearing arrangements, are being employed to reduce friction, increase load-carrying capacity, improve tracking accuracy, and minimize noise and vibration. These optimized designs help achieve smoother motion, higher efficiency, and improved overall performance of cam rollers.
- Lubrication Technologies: Advancements in lubrication technologies are contributing to the efficiency and longevity of cam rollers. Specialized lubricants with enhanced properties, such as higher temperature resistance, extended lubrication intervals, and reduced friction coefficients, are being developed. Self-lubricating cam rollers incorporating solid lubricants or oil-impregnated polymers are also gaining popularity, reducing the need for frequent maintenance and lubrication while ensuring smooth operation.
- Integrated Sensor Technology: Integration of sensors directly into cam rollers is an emerging trend in recent advancements. Position sensors, force sensors, or temperature sensors can be integrated within the cam roller assembly to provide real-time data on motion, load, or operating conditions. This information enables precise control, condition monitoring, and predictive maintenance of the cam roller system, improving overall performance and reliability.
- Smart and Connected Features: With the rise of Industry 4.0 and the Internet of Things (IoT), cam rollers are being equipped with smart and connected features. Wireless connectivity, embedded microcontrollers, and communication protocols enable real-time monitoring, remote control, and data exchange with other components or systems. These smart and connected features enhance the functionality, diagnostics, and integration capabilities of cam rollers in automated and interconnected environments.
- Simulation and Modeling: Advances in computer-aided design (CAD) and simulation tools have facilitated the optimization of cam roller systems. Virtual modeling and simulation techniques help engineers analyze and fine-tune the design parameters, kinematics, and performance characteristics of cam rollers before physical prototyping. This enables faster development cycles, improved performance predictions, and reduced time-to-market for innovative cam roller designs.
These recent innovations and advancements in cam roller technology are driving improvements in performance, efficiency, reliability, and functionality. They are expanding the capabilities of cam rollers and enabling their application in a wider range of industries and challenging environments.

What maintenance practices are recommended for cam rollers to ensure optimal functionality?
Proper maintenance is essential for ensuring the optimal functionality and longevity of cam rollers. Regular maintenance practices help prevent premature wear, minimize downtime, and maintain the performance of cam rollers in various applications. Here are some recommended maintenance practices for cam rollers:
- Cleaning: Regularly clean the cam rollers to remove dust, dirt, and debris that can accumulate on the rolling surfaces. Use a soft brush or compressed air to clean the cam rollers, ensuring that no contaminants hinder their smooth operation.
- Lubrication: Apply appropriate lubrication to the cam rollers to reduce friction and wear. Use lubricants recommended by the manufacturer, ensuring they are compatible with the materials and operating conditions of the cam rollers. Regularly check the lubrication levels and replenish as needed.
- Inspection: Perform routine visual inspections of the cam rollers to check for any signs of wear, damage, or misalignment. Look for excessive play, deformation, or any irregularities that may affect their performance. If any issues are identified, take appropriate measures such as adjustments, repairs, or replacements.
- Tightening: Check the fasteners, such as bolts or screws, that secure the cam rollers to the equipment or mounting surfaces. Ensure that they are properly tightened to prevent loosening during operation, which could lead to misalignment or reduced performance.
- Alignment: Check the alignment of the cam rollers periodically to ensure they are properly aligned with the cam or track they are following. Misalignment can lead to increased wear, reduced accuracy, and decreased lifespan of the cam rollers. Adjust the alignment as necessary to maintain optimal functionality.
- Load Distribution: Monitor the load distribution among the rolling elements of the cam rollers. Ensure that the load is evenly distributed to prevent overloading or excessive stress on individual rolling elements. Uneven load distribution can lead to premature wear or failure of the cam rollers.
- Environmental Considerations: Consider the specific environmental conditions in which the cam rollers operate. Take appropriate measures to protect the cam rollers from corrosive substances, extreme temperatures, excessive moisture, or other environmental factors that may affect their performance. Use protective coatings, seals, or covers as needed.
- Replacement: Cam rollers have a finite lifespan, and eventually, they will need to be replaced. Monitor the wear and performance of the cam rollers over time. When signs of significant wear, damage, or reduced functionality are observed, plan for timely replacement to avoid unexpected failures or disruptions in the operation.
It is important to note that maintenance practices may vary depending on the specific design, materials, and operating conditions of the cam rollers. Therefore, it is recommended to refer to the manufacturer’s guidelines and recommendations for maintenance specific to the cam rollers being used.
By following these maintenance practices and adopting a preventive maintenance approach, operators can ensure the optimal functionality, reliability, and longevity of cam rollers in various applications.

What is a cam roller, and how is it utilized in mechanical systems?
A cam roller, also known as a cam follower or track roller, is a specialized type of roller bearing used in mechanical systems. It is designed to follow the surface profile of a cam or track and transmit motion or force between the cam and a moving component. Here’s a detailed explanation of what a cam roller is and how it is utilized in mechanical systems:
A cam roller consists of a cylindrical roller, needle roller, or ball bearing that is mounted in a stud or yoke. The stud or yoke provides a means of attachment to the moving component of the mechanical system. The roller or bearing element is housed within a thick-walled outer ring, which serves as a guide and support for the roller. The outer ring has a profile that matches the shape of the cam or track over which the cam roller operates.
The primary function of a cam roller is to convert rotary motion into linear motion or vice versa. As the cam or track rotates, the cam roller follows the profile, causing the roller to move along the track. This motion can be utilized in various ways depending on the specific application. Here are some common uses of cam rollers in mechanical systems:
- Motion Transmission: Cam rollers are often used to transmit motion from a rotating cam to a reciprocating or oscillating component. For example, in engines, cam followers are used to transfer the motion of the camshaft to the valves, opening and closing them at the appropriate timing.
- Guiding and Support: Cam rollers can also provide guidance and support to moving components in a mechanical system. They help maintain proper alignment and prevent lateral movement or deflection. This is particularly useful in applications such as conveyor systems, where cam rollers guide the movement of belts or chains.
- Load Bearing: Cam rollers are designed to withstand high loads and provide support to heavy-duty applications. They are often used in machinery and equipment where there is a need for reliable load-bearing capabilities. Examples include construction machinery, material handling equipment, and industrial automation systems.
- Compensating for Misalignment: In some applications, cam rollers are utilized to compensate for misalignment between components. The rolling motion of the cam follower allows it to adjust and accommodate slight deviations in the cam or track profile, ensuring smooth operation even in imperfect conditions.
The choice of cam roller design, size, and material depends on the specific requirements of the application. Factors such as load capacity, speed, operating conditions, and precision requirements are taken into consideration when selecting the appropriate cam roller. Regular maintenance, including lubrication and inspection of the cam roller, is important to ensure its proper functioning and longevity in the mechanical system.
In summary, a cam roller is a specialized type of roller bearing used in mechanical systems to transmit motion, provide guidance and support, bear loads, and compensate for misalignment. Its ability to follow the profile of a cam or track allows for efficient conversion of rotary motion to linear motion or vice versa. Cam rollers find application in a wide range of industries and play a crucial role in ensuring the smooth and reliable operation of mechanical systems.


editor by CX 2024-04-04