Product Description
GE 4 FW Maintenance Free, Self Lubricating Steel-PTFE Fabric Spherical Plain Bearings
Application
Spherical Plain Bearings have an inner ring with a sphere convex outside surface and an outer ring with a correspondingly sphere,
but concave inside surface. Their design makes them particularly suitable for bearing arrangements where alignment movements
between shaft and housing have to accommodate, or where oscillating or recurrent tilting movements must be permitted at relatively
slow sliding speeds.
GE FW Series Radial Spherical Plain Bearing
| Product Name | Spherical Plain Bearing |
| Precision Rating | P6, P0, P5, P4, P2 |
| Material | Bearing Steel (GCr15) |
| Clearance | C0 C1 C2 C3 |
| Vibration & Noisy | Z1,Z2,Z3 V1,V2,V3 |
| Sliding Contact | STEEL-on-PTFE Fabric |
| Features | High Precision, High Speed, Long Life, High Reliability, Low Noise , Reduce Friction |
| 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 |
| Website | http://hlimachinery |
GE FW (2RS) Series Spherical Plain Bearing Specification
| Model | Dimensions (mm) | Load Ratings (KN) | Mass | ||||||||
| d | D | B | C | dk | r1 | r2 | α | C | C0 | kg | |
| min | min | ||||||||||
| GE 4 FW | 4 | 14 | 7 | 4 | 10 | 0.3 | 0.3 | 20 | 3.6 | 9.1 | 0.005 |
| GE 5 FW | 5 | 16 | 9 | 5 | 10 | 0.3 | 0.3 | 21 | 5.8 | 14 | 0.008 |
| GE 6 FW | 6 | 16 | 9 | 5 | 13 | 0.3 | 0.3 | 21 | 5.8 | 14 | 0.006 |
| GE 8 FW | 8 | 19 | 11 | 6 | 16 | 0.3 | 0.3 | 21 | 8.6 | 21 | 0.014 |
| GE 10 FW | 10 | 22 | 12 | 7 | 18 | 0.3 | 0.3 | 18 | 11 | 28 | 0.571 |
| GE 12 FW | 12 | 26 | 15 | 9 | 22 | 0.3 | 0.3 | 18 | 18 | 45 | 0.033 |
| GE 15 FW | 15 | 30 | 16 | 10 | 25 | 0.3 | 0.3 | 16 | 22 | 56 | 0.049 |
| GE 17 FW | 17 | 35 | 20 | 12 | 29 | 0.3 | 0.3 | 19 | 31 | 78 | 0.083 |
| GE 20 FW | 20 | 42 | 25 | 16 | 35.5 | 0.3 | 0.3 | 17 | 51 | 127 | 0.153 |
| GE 25 FW | 25 | 47 | 28 | 18 | 40.7 | 0.6 | 0.6 | 17 | 65 | 166 | 0.203 |
| GE 30 FW | 30 | 55 | 32 | 20 | 47 | 0.6 | 0.6 | 17 | 83 | 212 | 0.304 |
| above size without seal | |||||||||||
| GE 15 FW 2RS | 15 | 30 | 16 | 10 | 25 | 0.3 | 0.3 | 16 | 30 | 60 | 0.049 |
| GE 17 FW 2RS | 17 | 35 | 20 | 12 | 29 | 0.3 | 0.3 | 19 | 42 | 83 | 0.083 |
| GE 20 FW 2RS | 20 | 42 | 25 | 16 | 35.5 | 0.3 | 0.6 | 17 | 68 | 137 | 0.153 |
| GE 25 FW 2RS | 25 | 47 | 28 | 18 | 40.7 | 0.6 | 0.6 | 17 | 88 | 176 | 0.203 |
| GE 30 FW 2RS | 30 | 55 | 32 | 20 | 47 | 0.6 | 1 | 17 | 112 | 224 | 0.304 |
| GE 35 FW 2RS | 35 | 62 | 35 | 22 | 53 | 0.6 | 1 | 16 | 140 | 280 | 0.408 |
| GE 40 FW 2RS | 40 | 68 | 40 | 25 | 60 | 0.6 | 1 | 17 | 180 | 360 | 0.542 |
| GE 45 FW 2RS | 45 | 75 | 43 | 28 | 66 | 0.6 | 1 | 15 | 220 | 440 | 0.713 |
| GE 80 FW 2RS | 80 | 130 | 75 | 50 | 115 | 1 | 1 | 14 | 690 | 1370 | 3.64 |
| GE 90 FW 2RS | 90 | 150 | 85 | 55 | 130 | 1 | 1 | 15 | 858 | 1730 | 5.22 |
| GE 100 FW 2RS | 100 | 160 | 85 | 55 | 140 | 1 | 1 | 14 | 924 | 1860 | 6.05 |
| GE 110 FW 2RS | 110 | 180 | 100 | 70 | 160 | 1 | 1 | 12 | 1340 | 2700 | 9.68 |
| GE 120 FW 2RS | 120 | 210 | 115 | 70 | 180 | 1 | 1 | 16 | 1500 | 3000 | 14.01 |
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, 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 Element: | Single Row |
|---|---|
| Structure: | To The Heart |
| Material: | Bearing Steel |
| Load Direction: | Radial Spherical Plain Bearing |
| Add Lubricant: | Self-lubricating |
| Outer Structure: | Whole Outer Ring |
| Samples: |
US$ 1/Piece
1 Piece(Min.Order) | |
|---|
| Customization: |
Available
| Customized Request |
|---|

Differences Between Plain Sliding Bearings and Self-Lubricating Bearings
Plain sliding bearings and self-lubricating bearings are two distinct types of bearings used in various applications. Here are the key differences between them:
Plain Sliding Bearings:
- Plain sliding bearings, also known as bushings, are simple bearing components that consist of a cylindrical sleeve made of a bearing material.
- These bearings require external lubrication, such as grease or oil, to reduce friction and wear between the bearing and the shaft.
- Regular maintenance and lubrication are essential to ensure proper operation and longevity.
- Plain sliding bearings are cost-effective and suitable for applications where lubrication can be easily provided.
- They are commonly used in low-speed and low-load applications, where the shaft slides within the bearing.
Self-Lubricating Bearings:
- Self-lubricating bearings, also known as maintenance-free bearings, are designed to operate without the need for external lubrication.
- These bearings incorporate solid lubricants, such as graphite, PTFE (polytetrafluoroethylene), or other additives, directly into the bearing material.
- The solid lubricants are released gradually as the bearing operates, reducing friction and providing a consistent lubricating film.
- Self-lubricating bearings are ideal for applications where frequent maintenance or lubrication is impractical or not feasible.
- They are suitable for both low-load and high-load applications, as the self-lubricating properties help extend the bearing’s service life.
In summary, plain sliding bearings require external lubrication and are suitable for applications where lubrication can be provided, while self-lubricating bearings incorporate solid lubricants and operate without the need for regular maintenance. The choice between these two types depends on factors such as the application’s operating conditions, maintenance requirements, and budget considerations.

Enhancing Efficiency of Marine Propulsion Systems with Sliding Bearings
Sliding bearings play a crucial role in enhancing the efficiency of marine propulsion systems and various ship components. Here’s how sliding bearings contribute to the efficiency of maritime applications:
Reduced Friction: Sliding bearings are designed to minimize friction between moving parts. In marine propulsion systems, such as propeller shafts and stern tubes, reduced friction results in less energy loss and improved fuel efficiency.
Smooth Operation: Sliding bearings provide smooth and controlled movement of rotating or linear components. In marine applications, this smooth operation translates to improved maneuverability, reduced vibrations, and enhanced overall performance.
Load Distribution: Sliding bearings distribute loads evenly across bearing surfaces. This even distribution helps prevent localized wear and reduces the risk of premature failure, ensuring reliable operation of ship components.
Resistance to Harsh Environments: Marine environments expose equipment to corrosive saltwater, extreme temperatures, and harsh weather conditions. Sliding bearings are often designed with materials and coatings that offer corrosion resistance and durability, ensuring longevity even in challenging maritime settings.
Enhanced Lubrication: Lubrication is vital for reducing wear and friction in sliding bearings. Many marine applications use advanced lubrication systems that optimize the distribution of lubricants, further reducing friction and improving efficiency.
Space Efficiency: Sliding bearings are compact and require minimal space, making them suitable for marine systems where space is limited. This efficient use of space is particularly important in ship design and layout.
Customization for Specific Needs: Sliding bearings can be tailored to meet the specific requirements of different ship components. This customization ensures that bearings are optimized for their intended functions, further contributing to efficiency.
Reduced Maintenance: Properly designed sliding bearings require less maintenance compared to some other types of bearings. This reduced maintenance need translates to less downtime and increased operational efficiency for marine vessels.
Optimized Performance: Overall, the efficient and reliable performance of sliding bearings in marine propulsion systems and ship components leads to improved energy efficiency, reduced operational costs, and extended service life of the equipment.
By incorporating sliding bearings into marine applications, shipbuilders and operators can achieve enhanced efficiency, reliability, and sustainability in their operations.

Advantages of Sliding Bearings Compared to Other Bearings
Sliding bearings, also known as plain bearings or journal bearings, offer several advantages compared to other types of bearings. These advantages make them suitable for specific applications where their characteristics are beneficial:
- High Load-Carrying Capacity: Sliding bearings can handle high loads due to their larger contact area and distribution of pressure, making them suitable for heavy machinery and industrial equipment.
- Low Friction: Sliding bearings operate on the principle of sliding friction, which can result in lower frictional losses and energy consumption compared to rolling element bearings.
- Simplicity: Sliding bearings have a straightforward design with fewer components, reducing complexity and potential points of failure.
- Cost-Effectiveness: The simpler design and manufacturing process of sliding bearings can lead to lower production costs and maintenance expenses.
- Shock and Vibration Absorption: Sliding bearings can dampen shocks and vibrations due to their ability to accommodate misalignments and absorb dynamic forces.
- High-Temperature Applications: Some sliding bearings are capable of operating in high-temperature environments where other types of bearings might fail.
- Self-Lubrication: Some sliding bearings are designed with self-lubricating materials, reducing the need for external lubrication and maintenance.
- Noisiness: Sliding bearings often produce less noise than rolling element bearings, which can be advantageous in noise-sensitive applications.
- Corrosion Resistance: Sliding bearings made from materials such as bronze or plastic can offer better corrosion resistance in certain environments.
- Adaptability to Dirty Environments: Sliding bearings can perform well in dirty or contaminated environments where rolling element bearings might be more prone to failure due to debris.
However, it’s important to note that sliding bearings also have limitations, such as higher frictional heat generation, potential for stick-slip behavior, and limited suitability for high-speed applications. The choice between sliding bearings and other types of bearings depends on the specific requirements of the application and the trade-offs that need to be considered.


editor by CX 2024-04-16