Product Description
CFH-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)
CFH-…B/CFH-…SB Stud Type Track Rollers Specification
| Product Name | 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 | Inch Size, with Hexagon Hole |
| 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 |
| 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 |
| CFH-1/2-B | CFH-1/2-SB | 12.70 | 6.35 | 9.53 | 26.19 | 15.88 | – | 1/4-28 | 6.35 | 3.84 | 4.40 | 12000 | 0.012 |
| CFH9/16B | CFH9/16-SB | 14.29 | 6.35 | 9.53 | 26.19 | 15.88 | – | 1/4-28 | 6.35 | 4.30 | 5.30 | 10000 | 0.015 |
| CFH-5/8-B | CFH-5/8-SB | 15.88 | 7.94 | 11.11 | 30.96 | 19.05 | – | 5/16-24 | 7.94 | 5.20 | 7.00 | 8800 | 0.571 |
| CFH11/16-B | CFH-11/16-SB | 17.46 | 7.94 | 11.11 | 30.96 | 19.05 | – | 5/16-24 | 7.94 | 6.50 | 8.50 | 8000 | 0.571 |
| CFH-3/4-B | CFH-3/4-SB | 19.05 | 11.11 | 12.70 | 35.72 | 22.23 | 6.35 | 7/16-20 | 9.53 | 7.12 | 10.00 | 6400 | 0.039 |
| CFH-7/8-B | CFH-7/8-SB | 22.23 | 11.11 | 12.70 | 35.72 | 22.23 | 6.35 | 7/16-20 | 9.53 | 7.12 | 10.00 | 6400 | 0.049 |
| CFH-1-B | CFH-1-SB | 25.40 | 15.88 | 15.88 | 42.07 | 25.40 | 6.35 | 5/8-18 | 12.70 | 10.64 | 18.50 | 5200 | 0.093 |
| CFH-1 1/8-B | CFH-1 1/8-SB | 28.58 | 15.88 | 15.88 | 42.07 | 25.40 | 6.35 | 5/8-18 | 12.70 | 10.64 | 18.50 | 5200 | 0.109 |
| CFH-1 1/4-B | CFH-1 1/4-SB | 31.75 | 19.05 | 19.05 | 51.59 | 31.75 | 7.94 | 3/4-16 | 15.88 | 19.20 | 25.90 | 4400 | 0.176 |
| CFH-1 3/8-B | CFH-1 3/8-SB | 34.93 | 19.05 | 19.05 | 51.59 | 31.75 | 7.94 | 3/4-16 | 15.88 | 19.20 | 25.90 | 4400 | 0.200 |
| CFH-1 1/2-B | CFH-11/2SB | 38.10 | 22.23 | 22.23 | 61.12 | 38.10 | 9.53 | 7/8-14 | 19.05 | 23.00 | 32.70 | 3600 | 0.296 |
| CFH-1 5/8-B | CFH-1 5/8-SB | 41.28 | 22.23 | 22.23 | 61.12 | 38.10 | 9.53 | 7/8-14 | 19.05 | 23.00 | 32.70 | 3600 | 0.329 |
| CFH-1 3/4-B | CFH-1 3/4-SB | 44.45 | 25.40 | 25.40 | 70.64 | 44.45 | 11.11 | 1-14 | 22.23 | 28.70 | 45.40 | 3200 | 0.463 |
| CFH-1 7/8-B | CFH-1 7/8-SB | 47.63 | 25.40 | 25.40 | 70.64 | 44.45 | 11.11 | 1-14 | 22.23 | 28.70 | 45.40 | 3200 | 0.508 |
| CFH-2-B | CFH-2-SB | 50.80 | 28.58 | 31.75 | 83.34 | 50.80 | 12.70 | 1 1/8-12 | 25.40 | 37.30 | 65.80 | 2800 | 0.722 |
| CFH-2 1/4-B | CFH-2 1/4-SB | 57.15 | 28.58 | 31.75 | 83.34 | 50.80 | 12.70 | 1 1/8-12 | 25.40 | 37.30 | 65.80 | 2800 | 0.858 |
| CFH-2 1/2-B | CFH-2 1/2-SB | 63.50 | 31.75 | 38.10 | 96.04 | 57.15 | 14.29 | 1 1/4-12 | 28.58 | 54.00 | 102.30 | 1.260 | |
| CFH-2 3/4-B | CFH-2 3/4-SB | 69.85 | 31.75 | 38.10 | 96.04 | 57.15 | 14.29 | 1 1/4-12 | 28.58 | 54.00 | 102.30 | 1.460 | |
| CFH-3-B | CFH-3-SB | 76.20 | 38.10 | 44.45 | 108.70 | 63.50 | 15.88 | 1 1/2-12 | 31.75 | 72.30 | 155.00 | 2.031 | |
| CFH-3 1/4-B | CFH-3 1/4-SB | 82.55 | 38.10 | 44.45 | 108.70 | 63.50 | 15.88 | 1 1/2-12 | 31.75 | 72.30 | 155.00 | 2.291 | |
| CFH-3 1/2-B | CFH-3 1/2-SB | 88.90 | 44.45 | 50.80 | 121.40 | 69.85 | 17.46 | 1 3/4-12 | 34.93 | 104.80 | 196.70 | 3.130 | |
| CFH-4-B | CFH-4-SB | 101.60 | 50.80 | 57.15 | 146.80 | 88.90 | 19.05 | 2-12 | 38.10 | 138.00 | 278.00 | 4.750 | |
| CFH-5-SB | 127.00 | 63.50 | 69.85 | 200.00 | 128.60 | 22.23 | 2 1/2-12 | 65.07 | 214.00 | 422.00 | 9.540 | ||
| CFH-6-SB | 152.40 | 76.20 | 82.55 | 236.50 | 152.40 | 25.40 | 3-12 | 76.20 | 276.00 | 500.00 | 16.200 | ||
| CFH-7-SB | 177.80 | 88.90 | 95.25 | 292.00 | 195.25 | 31.75 | 3 1/2-12 | 104.80 | 347.00 | 665.00 | 24.600 | ||
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 |
| Outer Dimension: | 26.19mm-292mm |
| Material: | Bearing Steel |
| Spherical: | Non-Aligning Bearings |
| Load Direction: | Radial Bearing |
| Samples: |
US$ 1/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
|
|
|---|

How do electronic or computer-controlled components integrate with cam rollers in modern applications?
In modern applications, electronic or computer-controlled components play a significant role in integrating with cam rollers to enhance functionality, precision, and automation. The integration of electronic or computer-controlled components with cam rollers enables advanced control, monitoring, and synchronization of the motion system. Here’s a detailed explanation of how electronic or computer-controlled components integrate with cam rollers in modern applications:
- Sensor Integration: Electronic sensors can be integrated with cam rollers to provide real-time feedback on various parameters such as position, speed, acceleration, and load. Position sensors, such as encoders or linear displacement sensors, can be used to precisely determine the position of the cam rollers and the objects or components they are tracking. This information can then be used for closed-loop control, ensuring accurate tracking and motion control.
- Control Systems: Electronic or computer-controlled systems can be employed to manage the operation of cam rollers. These control systems can receive input from sensors and use algorithms to calculate the desired motion profiles. They can then generate signals to drive motors or actuators that control the movement of the cam rollers. By integrating control systems, precise motion control, synchronization, and programmability can be achieved, enabling complex motion sequences and adaptive tracking capabilities.
- Communication Protocols: Electronic or computer-controlled components can utilize various communication protocols to exchange data and commands with other system components. For example, in industrial automation applications, cam rollers may be integrated into a larger control network using protocols such as Modbus, CAN bus, or Ethernet. This integration enables seamless communication, coordination, and synchronization with other components or systems, enhancing overall system performance and functionality.
- Human-Machine Interface (HMI): In applications where human interaction is involved, electronic or computer-controlled components can provide a user interface for monitoring and controlling the cam rollers. This interface can include touch screens, graphical displays, or control panels that allow operators to set parameters, monitor performance, and adjust settings as needed. The integration of HMIs with cam rollers simplifies operation, facilitates troubleshooting, and enhances user experience.
- Data Logging and Analysis: Electronic or computer-controlled components can capture and log data related to the operation of cam rollers and the overall tracking system. This data can include parameters such as position, speed, acceleration, forces, and system status. By analyzing this data, performance trends, anomalies, and optimization opportunities can be identified. The integration of data logging and analysis capabilities enables proactive maintenance, performance optimization, and continuous improvement of the cam roller system.
- Integration with Automation Systems: In automated systems, electronic or computer-controlled components can integrate cam rollers into the overall automation framework. This integration allows for seamless coordination with other automated processes, robotics, or material handling systems. By integrating cam rollers with automation systems, precise tracking, synchronized motion, and efficient production workflows can be achieved.
The integration of electronic or computer-controlled components with cam rollers brings advanced capabilities to modern applications. It enables precise control, adaptive tracking, real-time monitoring, data-driven optimization, and seamless integration with automation systems. This integration enhances the functionality, flexibility, and efficiency of cam roller systems, opening up possibilities for a wide range of applications in industries such as manufacturing, robotics, packaging, material handling, and more.

How do cam rollers contribute to precise and controlled motion in machinery?
Cam rollers play a significant role in ensuring precise and controlled motion in various machinery applications. Their design and functionality contribute to accurate tracking, smooth operation, and controlled movement. Here’s a detailed explanation of how cam rollers contribute to precise and controlled motion in machinery:
- Cam Profile Following: Cam rollers are specifically designed to follow the profile of a cam or track. The outer ring of the cam roller is shaped to match the contour of the cam surface. As the cam rotates or moves, the cam roller maintains contact with the cam profile, ensuring precise tracking and controlled motion along the desired path. This cam profile following capability enables machinery to achieve accurate and repeatable motion.
- Rolling Motion: Cam rollers utilize rolling motion to traverse the cam profile. The rolling motion reduces friction compared to sliding or rubbing contact, resulting in smoother operation and improved energy efficiency. The rolling action of cam rollers allows for controlled movement with minimal resistance, ensuring precise motion and minimizing wear and tear.
- Load Distribution: Cam rollers are designed to distribute the applied load evenly among the rolling elements. This load distribution capability minimizes stress concentrations and prevents excessive wear on individual rollers. By distributing the load effectively, cam rollers contribute to maintaining precise and controlled motion without compromising performance or causing premature failure.
- High Rigidity: Cam rollers are constructed to provide high rigidity, which is vital for precise and controlled motion. The materials and design of cam rollers ensure minimal deformation or flexing during operation, allowing for accurate positioning and controlled movement. The high rigidity of cam rollers enables machinery to maintain tight tolerances and achieve the desired motion without unwanted deviations.
- Roller Retainers: Some cam roller designs incorporate roller retainers or cages that hold the rolling elements in place and maintain proper spacing. These retainers prevent roller skewing and ensure controlled movement by guiding the rollers along the cam profile. The use of roller retainers enhances precision and eliminates the risk of roller misalignment, contributing to precise and controlled motion in machinery.
- Precision Bearings: Cam rollers are equipped with precision bearings that provide smooth rolling motion and reduce internal friction. These bearings are designed to handle both radial and axial loads, ensuring stable and controlled motion in various directions. The precision bearings in cam rollers contribute to the overall precision and controlled movement of the machinery.
By incorporating these design features and functionalities, cam rollers contribute to precise and controlled motion in machinery. They enable accurate tracking of cam profiles, utilize rolling motion with reduced friction, distribute loads evenly, provide high rigidity, use roller retainers for proper alignment, and utilize precision bearings for smooth operation. All these factors work together to ensure precise positioning, controlled movement, and reliable performance in a wide range of machinery applications.
In summary, cam rollers contribute to precise and controlled motion in machinery through their cam profile following capability, rolling motion, load distribution, high rigidity, roller retainers, and precision bearings. These features enable machinery to achieve accurate positioning, smooth operation, and controlled movement, resulting in improved performance and productivity.

Can you explain the primary functions and roles of cam rollers in various applications?
Cam rollers, also known as cam followers or track rollers, serve a variety of functions and play crucial roles in various applications across different industries. These specialized roller bearings are designed to follow the surface profile of a cam or track, enabling them to transmit motion, provide guidance, support, and handle loads. Here’s a detailed explanation of the primary functions and roles of cam rollers in various applications:
- Motion Transmission: One of the primary functions of cam rollers is to transmit motion from a rotating cam to a reciprocating or oscillating component. They are commonly used in applications such as engines, where they transfer the motion of the camshaft to the valves, controlling the opening and closing of the valves at the appropriate timing. Cam rollers ensure precise and reliable motion transmission in these systems.
- Guidance and Support: Cam rollers are frequently utilized to provide guidance and support to moving components in mechanical systems. They help maintain proper alignment and prevent lateral movement or deflection. In conveyor systems, for example, cam rollers guide the movement of belts or chains, ensuring smooth and controlled operation.
- Load Bearing: Cam rollers are designed to bear high loads and provide support in heavy-duty applications. They are commonly found in machinery and equipment where there is a need for reliable load-bearing capabilities. Construction machinery, material handling equipment, and industrial automation systems often rely on cam rollers to handle substantial loads and ensure stable and efficient operation.
- Compensating for Misalignment: In some applications, cam rollers are employed 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. This feature ensures smooth operation even when there are minor misalignments, improving the overall performance and reliability of the system.
- Application-Specific Functions: Cam rollers can also serve application-specific functions based on the requirements of a particular system. For example, in printing and packaging machinery, cam rollers may be used to control the tension and guide the movement of printing substrates or packaging materials. In textile machinery, cam rollers may play a role in controlling the feeding and positioning of fabrics. The versatility of cam rollers allows them to be tailored to the specific needs of diverse applications.
The choice of cam roller design, size, and material depends on the specific demands of the application. Factors such as load capacity, speed, operating conditions, precision requirements, and environmental factors are taken into consideration when selecting the appropriate cam roller. Regular maintenance, including lubrication and inspection, is vital to ensure optimal performance and longevity of cam rollers in various applications.
In summary, cam rollers fulfill essential functions and play significant roles in a wide range of applications. They enable motion transmission, provide guidance and support, bear heavy loads, compensate for misalignment, and serve application-specific functions. Cam rollers contribute to the efficiency, reliability, and smooth operation of mechanical systems across diverse industries.


editor by CX 2024-01-24