Product Description
Housed external spherical bearings are a kind of bearing unit that combines rolling bearings with housings. Most of the outer spherical bearings are made into spherical outer diameter, and with a spherical bore imported bearing housing installed together, the structure of various forms, generality and interchangeability is good.
Specification
Bearing No |
ID (mm) |
OD (mm) |
Width (mm) |
Bearing No |
ID (mm) |
OD (mm) |
Width (mm) |
UCP203 |
17 |
27.4 |
129 |
UC213 |
65 |
120 |
65.1 |
UCP204 |
20 |
30 |
134 |
UC214 |
70 |
125 |
74.6 |
UCP205 |
25 |
34.1 |
142 |
UC215 |
75 |
130 |
77.8 |
UCP206 |
30 |
38.1 |
167 |
UC216 |
80 |
140 |
82.6 |
UCP207 |
35 |
42.9 |
172 |
UC217 |
85 |
150 |
85.7 |
UCP208 |
40 |
49.2 |
186 |
UC218 |
90 |
160 |
96 |
UCP209 |
45 |
49.2 |
192 |
UCHA203 |
17 |
64 |
96 |
UCP210 |
50 |
51.6 |
208 |
UCHA204 |
20 |
64 |
96 |
UCP211 |
55 |
55.6 |
233 |
UCHA205 |
25 |
78 |
103 |
UCP212 |
60 |
65.1 |
243 |
UCHA206 |
30 |
78 |
103 |
UCP213 |
65 |
65.1 |
268 |
UCHA207 |
35 |
92 |
116 |
UCP214 |
70 |
74.6 |
274 |
UCHA208 |
40 |
96 |
121 |
UCP215 |
75 |
77.8 |
300 |
UCHA209 |
45 |
108 |
136 |
UCP216 |
80 |
82.6 |
305 |
UC305 |
25 |
62 |
38 |
UCP217 |
85 |
85.7 |
330 |
UC306 |
30 |
72 |
43 |
UCP218 |
90 |
96 |
356 |
UC307 |
35 |
80 |
48 |
UCP220 |
100 |
108 |
390 |
UC308 |
40 |
90 |
52 |
UC203 |
17 |
40 |
27.4 |
UC309 |
45 |
100 |
57 |
UC204 |
20 |
47 |
31 |
UC310 |
50 |
110 |
61 |
UC205 |
25 |
52 |
34.1 |
UC311 |
55 |
120 |
66 |
UC206 |
30 |
62 |
38.1 |
UC312 |
60 |
130 |
71 |
UC207 |
35 |
72 |
42.9 |
UC313 |
65 |
140 |
75 |
UC208 |
40 |
80 |
49.2 |
UC314 |
70 |
150 |
78 |
UC209 |
45 |
85 |
49.2 |
UC315 |
75 |
160 |
82 |
UC210 |
50 |
90 |
51.6 |
UC316 |
80 |
170 |
86 |
UC211 |
55 |
100 |
55.6 |
UC317 |
85 |
180 |
96 |
UC212 |
60 |
110 |
65.1 |
UC318 |
90 |
190 |
96 |
Bearing No |
ID (mm) |
Thickness (mm) |
Bearing No |
ID (mm) |
Thickness (mm) |
Bearing No |
ID (mm) |
Thickness (mm) |
UCFL203 |
17 |
33.3 |
UCT210 |
50 |
51.6 |
UCFC218 |
90 |
78.3 |
UCFL204 |
20 |
33.3 |
UCT211 |
55 |
55.6 |
UCFB203 |
17 |
31 |
UCFL205 |
25 |
35.7 |
UCT212 |
60 |
65.1 |
UCFB204 |
20 |
31 |
UCFL206 |
30 |
40.2 |
UCT213 |
65 |
65.1 |
UCFB205 |
25 |
34.1 |
UCFL207 |
35 |
44.1 |
UCT214 |
70 |
74.6 |
UCFB206 |
30 |
38.1 |
UCFL208 |
40 |
51.2 |
UCT215 |
75 |
77.8 |
UCFB207 |
35 |
42.9 |
UCFL209 |
45 |
52.2 |
UCT216 |
80 |
82.6 |
UCFB208 |
40 |
49.2 |
UCFL210 |
50 |
54.6 |
UCT217 |
85 |
85.7 |
UCFB209 |
45 |
49.2 |
UCFL211 |
55 |
58.4 |
UCT218 |
90 |
96 |
UCFB210 |
50 |
51.6 |
UCFL212 |
60 |
68.7 |
UCPH203 |
17 |
31 |
UCP305 |
25 |
38 |
UCF203 |
17 |
33.3 |
UCPH204 |
20 |
31 |
UCP306 |
30 |
43 |
UCF204 |
20 |
33.3 |
UCPH205 |
25 |
34.1 |
UCP307 |
35 |
48 |
UCF205 |
25 |
35.7 |
UCPH206 |
30 |
38.1 |
UCP308 |
40 |
52 |
UCF206 |
30 |
40.2 |
UCPH207 |
35 |
42.9 |
UCP309 |
45 |
57 |
UCF207 |
35 |
44.4 |
UCPH208 |
40 |
49.2 |
UCP310 |
50 |
61 |
UCF208 |
40 |
51.2 |
UCPH209 |
45 |
49.2 |
UCP311 |
55 |
66 |
UCF209 |
45 |
52.2 |
UCPH210 |
50 |
51.6 |
UCP312 |
60 |
71 |
UCF210 |
50 |
54.6 |
UCPH211 |
55 |
55.6 |
UCP313 |
65 |
75 |
UCF211 |
55 |
58.4 |
UCPH212 |
60 |
65.1 |
UCP314 |
70 |
78 |
UCF212 |
60 |
68.7 |
UCFA203 |
17 |
32.04 |
UCP315 |
75 |
82 |
UCF213 |
65 |
69.7 |
UCFA204 |
20 |
32.04 |
UCP316 |
80 |
86 |
UCF214 |
75.4 |
70 |
UCFA205 |
25 |
35.7 |
UCP317 |
85 |
96 |
UCF215 |
78.5 |
75 |
UCFA206 |
30 |
40.2 |
UCP318 |
90 |
96 |
UCF216 |
83.3 |
80 |
UCFA207 |
35 |
44.4 |
UCF305 |
25 |
38 |
UCF217 |
87.6 |
85 |
UCFA208 |
40 |
51.2 |
UCF306 |
30 |
43 |
UCF218 |
97.3 |
90 |
UCFA209 |
45 |
52.2 |
UCF307 |
35 |
48 |
UCPA203 |
17 |
31 |
UCFC203 |
17 |
28.3 |
UCF308 |
40 |
52 |
UCPA204 |
20 |
31 |
UCFC204 |
20 |
28.3 |
UCF309 |
45 |
57 |
UCPA205 |
25 |
34.1 |
UCFC205 |
25 |
29.8 |
UCF310 |
50 |
61 |
UCPA206 |
30 |
38.1 |
UCFC206 |
30 |
32.2 |
UCF311 |
55 |
66 |
UCPA207 |
35 |
42.9 |
UCFC207 |
35 |
36.4 |
UCF312 |
60 |
71 |
UCPA208 |
40 |
49.2 |
UCFC208 |
40 |
41.2 |
UCF313 |
65 |
75 |
UCPA209 |
45 |
49.2 |
UCFC209 |
45 |
40.2 |
UCF314 |
70 |
78 |
UCPA210 |
50 |
51.6 |
UCFC210 |
50 |
42.6 |
UCF315 |
75 |
82 |
UCT203 |
17 |
31 |
UCFC211 |
55 |
46.4 |
UCF316 |
80 |
86 |
UCT204 |
20 |
31 |
UCFC212 |
60 |
56.7 |
UCF317 |
85 |
96 |
UCT205 |
25 |
34 |
UCFC213 |
65 |
55.7 |
UCF318 |
90 |
96 |
UCT206 |
30 |
38.1 |
UCFC214 |
70 |
61.4 |
|
|
|
UCT207 |
35 |
42.9 |
UCFC215 |
75 |
62.5 |
|
|
|
UCT208 |
40 |
49.2 |
UCFC216 |
80 |
67.3 |
|
|
|
UCT209 |
45 |
49.2 |
UCFC217 |
85 |
69.6 |
|
|
|
ZheJiang Haina Bearing Co., Ltd. is an integrated company of industry and trade. Since its establishment, it has been committed to the research and development, production, and sales of high-end 7 types of tapered roller bearings, British non-standard bearings, deep groove ball bearings, and outer spherical bearings. We can customize and adjust various types of bearings according to customer needs. The products are widely applicablein fields such as automobiles, mines, chemicals, metallurgy, reducers, engineering machinery, agricultural machinery, and electric motors.
Our company has advanced testing equipment, forming a production model of product serialization and mass production. We have a group of experienced and skilled management personnel, who have introduced advanced production equipment and measuringand testing equipment. From the purchase of bearing raw materials to the delivery of finished products, we strictly control the entire process, ensuring the quality of the products.The products have the characteristics of precision, low noise, high load-bearing capacity and long service life.
1. Your factory how to control the quality?
A: All bearing parts before the production and the production process, strict inspection by 100%, including crack detection, roundness, hardness,
roughness,and the geometry size, all bearing meet ISO international standard.
2. Can you tell me the bearing material?
A: We have chrome steel GCR15, stainless steel, ceramics and other materials.
3. How long is your delivery time?
A: If the goods are in stock, usually 5 to 10 days, if the goods are no stock for 15 to 20 days, according to the quantity to determine the time.
4. OEM and custom you can receive?
A: Yes, accept OEM, can also be customized according to samples or drawings for you.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Aligning: | Aligning Bearing |
---|---|
Separated: | Separated |
Feature: | Vacuum, Magnetically, Low Temperature, Corrosion Resistant, High Temperature, High Speed |
Rows Number: | Single |
Raceway: | Deep Groove Raceway |
Material: | Bearing Steel |
Samples: |
US$ 10.99/Piece
1 Piece(Min.Order) | |
---|
How do I maintain and lubricate block bearings?
Maintaining and lubricating block bearings is essential to ensure their optimal performance, prevent premature wear, and extend their service life. Here’s a detailed explanation of how to maintain and lubricate block bearings:
- Regular Inspection: Perform regular visual inspections of the block bearings to check for any signs of damage, wear, or contamination. Look for cracks, rust, excessive play, or abnormal noise. If any issues are detected, take appropriate action, such as cleaning, lubricating, or replacing the bearing.
- Cleanliness: Keep the surrounding area clean to prevent the ingress of dirt, dust, or debris into the bearing housing. Clean the housing and the surrounding components regularly using a soft cloth or brush. Avoid using harsh chemicals or excessive water, as it can damage the bearing or its lubrication.
- Lubrication: Lubrication is crucial for smooth operation and to reduce friction and wear in block bearings. Follow the manufacturer’s recommendations for the type and quantity of lubricant to be used. Some block bearings have grease fittings or seals that allow for easy lubrication. Apply the lubricant according to the manufacturer’s guidelines, ensuring that it reaches all the necessary areas, such as the bearing insert and rolling elements.
- Lubrication Frequency: The frequency of lubrication depends on various factors, such as the bearing type, operating conditions, and manufacturer’s recommendations. In general, block bearings should be lubricated regularly, especially in high-speed or high-load applications. However, excessive lubrication can cause overheating or leakage, so it’s important to follow the recommended lubrication intervals.
- Monitor Temperature: During operation, monitor the temperature of the block bearings regularly. Excessive heat can indicate insufficient lubrication or other issues. If the temperature rises significantly or exceeds the manufacturer’s recommendations, investigate and address the root cause to prevent bearing damage.
- Sealing: Check the sealing arrangements of the block bearings to ensure they are intact and functioning properly. Seals help protect the bearing from contaminants and retain the lubricant. If seals are damaged or worn, replace them promptly to maintain the integrity of the bearing’s lubrication system.
- Training and Expertise: If you are not familiar with block bearing maintenance, consider seeking training or guidance from the manufacturer or a qualified professional. They can provide you with specific instructions and best practices for maintaining and lubricating block bearings in your particular application.
Following these maintenance and lubrication practices can help ensure the proper functioning and longevity of block bearings. Remember to consult the manufacturer’s documentation and guidelines specific to your block bearing model for detailed instructions and recommendations.
What are the signs of a failing block bearing?
A failing block bearing can exhibit various signs and symptoms that indicate potential issues. Recognizing these signs is crucial for timely maintenance or replacement to prevent further damage to the machinery. Here’s a detailed explanation of the common signs of a failing block bearing:
- Abnormal Noise: Unusual noises coming from the machinery, such as grinding, squealing, or rumbling sounds, can be indicative of a failing block bearing. These noises may occur during operation or when the machinery is under load.
- Vibration: Excessive vibration in the machinery can be a sign of a failing block bearing. If you notice increased levels of vibration during operation, especially in conjunction with other symptoms, it may indicate bearing wear or misalignment.
- Increased Temperature: A failing block bearing can generate excessive heat due to increased friction. If you observe abnormally high temperatures in the bearing housing or around the bearing area, it could be a sign of impending bearing failure.
- Irregular Operation: Changes in the smoothness or regularity of the machinery’s operation, such as intermittent or irregular motion, can be a result of a failing block bearing. This can manifest as jerky movements, sticking, or hesitation during operation.
- Loss of Lubrication: Insufficient or loss of lubrication can lead to bearing failure. If you notice signs of inadequate lubrication, such as dry or discolored lubricant, or if the bearing is running dry, it can accelerate wear and contribute to bearing failure.
- Visible Damage: Physical damage to the block bearing or its components, such as cracks, dents, or corrosion, can indicate a failing bearing. Additionally, if you observe excessive play or movement in the bearing, it may be a sign of wear or damage.
- Inconsistent Performance: A failing block bearing can result in inconsistent or reduced performance of the machinery. This may include decreased speed, reduced load-carrying capacity, or compromised precision in applications that require high accuracy.
- Increased Friction: If you notice an increase in friction or resistance when rotating or moving the machinery by hand, it may suggest a failing block bearing. Difficulty in turning the shaft or a feeling of roughness can indicate excessive wear or damage in the bearing.
It’s important to note that these signs can also be indicative of other issues in the machinery. Therefore, a thorough inspection by a qualified technician or engineer is recommended to accurately diagnose the problem. Regular maintenance, including visual inspections and monitoring of operating conditions, can help identify early signs of bearing failure and allow for timely intervention.
If you observe any of the mentioned signs, it’s crucial to address the issue promptly to prevent further damage to the machinery. Timely maintenance or replacement of failing block bearings can help ensure the continued reliable operation of the machinery and prevent costly breakdowns.
What are the standard dimensions for block bearings?
The dimensions of block bearings, also known as pillow block bearings, can vary depending on the specific design and manufacturer. However, there are standard dimensions that are commonly used in the industry. Here’s a detailed explanation of the standard dimensions for block bearings:
Block bearings consist of a bearing insert (also called an inner ring) and a housing (also called an outer ring or pillow block). The housing is typically a solid or split housing with mounting holes for attachment to a support structure. The bearing insert is designed to fit inside the housing and supports the rotating shaft. The dimensions of block bearings are typically specified using the following parameters:
- Shaft Diameter (d): This refers to the diameter of the shaft that will be inserted into the bearing. The standard shaft diameters for block bearings range from a few millimeters up to several inches, depending on the application requirements. Common shaft diameter sizes include 1/2″, 5/8″, 3/4″, 1″, 1-1/4″, 1-1/2″, and 2″.
- Housing Length (L): The housing length refers to the distance between the mounting surfaces of the housing. It determines the overall length of the block bearing assembly. The housing length can vary depending on the bearing size and design, but common lengths range from around 2 inches to several inches or more.
- Housing Width (B): The housing width refers to the width of the housing, perpendicular to the shaft. It determines the overall width of the block bearing assembly. The housing width can vary depending on the bearing size and design, but common widths range from around 1 inch to several inches or more.
- Mounting Hole Spacing (Bolt Hole Centers): Block bearings typically have multiple mounting holes for attachment to the support structure. The mounting hole spacing refers to the distance between the centers of these mounting holes. The standard mounting hole spacing is often specified using a bolt hole center-to-center distance, such as 2-bolt, 3-bolt, or 4-bolt configurations. The specific dimensions can vary depending on the bearing size and design.
- Bearing Insert Width (Bearing Width): The bearing insert width refers to the width of the bearing insert itself. It determines the amount of support and contact area for the rotating shaft. The bearing insert width can vary depending on the bearing size and design, but common widths range from around 0.5 inch to several inches or more.
It’s important to note that these are general standard dimensions, and variations may exist depending on the specific manufacturer and bearing type. Additionally, some block bearings may have additional features or variations in dimensions to cater to specific applications or industry requirements.
When selecting a block bearing, it’s crucial to consider the specific dimensions required for your application, including the shaft diameter, housing length and width, and mounting hole spacing. Consulting the manufacturer’s specifications and guidelines is recommended to ensure the correct dimensions are chosen for your specific needs.
editor by CX 2024-05-09