Product Description
Product Description
Rod end bearing DC7969C(5C) DC8334C DC8729A POSA PHSA POS PHS Industrial Bearing GB/T9161 standard Corrosion resistance, wear resistance, high quality
information:
The basic type of plain bearing is composed of inner and outer rings with spherical sliding spherical contact surface. The plain bearing is mainly composed of an inner ring with outer sphere and an outer ring with inner sphere, which can bear large load. According to its different types and structures, it can bear radial load, axial load or combined radial and axial load at the same time.
Self lubricating joint auxiliary bearing is used in water conservancy, professional machinery and other industries. Because the spherical sliding contact area of the joint bearing is large and the inclination angle is large, but also because most joint bearings adopt special process treatment methods, such as surface phosphating, galvanizing, chromium plating or outer sliding surface lining, pad inlay, spraying, etc. Therefore, it has large load capacity and impact resistance, and has the characteristics of corrosion resistance, wear resistance, self-aligning, good lubrication or self-lubrication without lubricating dirt pollution. Therefore, articulated bearings are widely used in swing motion, tilt motion and rotation motion with low speed.
Detailed Photos
Product Parameters
E series |
|||||||||||||||||||
|
/mm |
||||||||||||||||||
SI…E SI…ES
|
SA…E SA…ES
|
d |
|
|
|
||||||||||||||
D |
d1min |
B |
r1smin |
α ≈ |
d3 |
c1 max |
d2 max |
h |
l1 min |
l2 max |
h1 |
l3 min |
l4 max |
l5 max |
d4 max |
d5 max |
|||
SI5E |
SA5E |
5 |
14 |
7 |
6 |
0.3 |
13° |
M5 |
4.5 |
21 |
36 |
16 |
48 |
30 |
11 |
42 |
5.0 |
10 |
13 |
SI6E |
SA6E |
6 |
14 |
8 |
6 |
0.3 |
13° |
M6 |
4.5 |
21 |
36 |
16 |
48 |
30 |
11 |
42 |
5.0 |
11 |
13 |
SI8E |
SA8E |
8 |
16 |
10 |
8 |
0.3 |
15° |
M8 |
6.5 |
24 |
42 |
21 |
55 |
36 |
15 |
49 |
5.0 |
13 |
16 |
SI10E |
SA10E |
10 |
19 |
13 |
9 |
0.3 |
12° |
M10 |
7.5 |
29 |
48 |
26 |
63 |
43 |
15 |
58 |
5.5 |
16 |
19 |
SI12E |
SA12E |
12 |
22 |
15 |
10 |
0.3 |
10° |
M12 |
8.5 |
34 |
54 |
28 |
71 |
50 |
18 |
67 |
7.0 |
19 |
22 |
SI15ES |
SA15ES |
15 |
26 |
18 |
12 |
0.3 |
8° |
M14 |
10.5 |
40 |
63 |
34 |
83 |
61 |
21 |
81 |
8.0 |
22 |
26 |
SI17ES |
SA17ES |
17 |
30 |
20 |
14 |
0.3 |
10° |
M16 |
11.5 |
46 |
69 |
36 |
92 |
67 |
24 |
90 |
10.0 |
25 |
29 |
SI20ES |
SA20ES |
20 |
35 |
24 |
16 |
0.3 |
9° |
M20×1.5 |
13.5 |
53 |
78 |
43 |
105 |
77 |
30 |
104 |
10.0 |
28 |
34 |
SI25ES |
SA25ES |
25 |
42 |
29 |
20 |
0.6 |
7° |
M24×2.0 |
18.0 |
64 |
94 |
53 |
126 |
94 |
36 |
126 |
12.0 |
35 |
42 |
SI30ES |
SA30ES |
30 |
47 |
34 |
22 |
0.6 |
6° |
M30×2.0 |
20.0 |
73 |
110 |
65 |
147 |
110 |
45 |
147 |
15.0 |
42 |
50 |
SI35ES |
SA35ES |
35 |
55 |
39 |
25 |
0.6 |
6° |
M36×3.0 |
22.0 |
82 |
140 |
82 |
182 |
125 |
60 |
167 |
15.0 |
48 |
58 |
SI40ES |
SA40ES |
40 |
62 |
45 |
28 |
0.6 |
7° |
M39×3.0 |
24.0 |
92 |
150 |
86 |
198 |
142 |
65 |
180 |
18.0 |
52 |
65 |
SI45ES |
SA45ES |
45 |
68 |
50 |
32 |
0.6 |
7° |
M42×3.0 |
28.0 |
102 |
163 |
92 |
217 |
145 |
65 |
199 |
20.0 |
58 |
70 |
SI50ES |
SA50ES |
50 |
75 |
55 |
35 |
0.6 |
6° |
M45×3.0 |
31.0 |
112 |
185 |
104 |
246 |
160 |
68 |
221 |
20.0 |
62 |
75 |
SI60ES |
SA60ES |
60 |
90 |
66 |
44 |
1.0 |
6° |
M52×3.0 |
39.0 |
135 |
210 |
115 |
282 |
175 |
70 |
247 |
20.0 |
70 |
88 |
SI70ES |
SA70ES |
70 |
105 |
77 |
49 |
1.0 |
6° |
M56×4.0 |
43.0 |
160 |
235 |
125 |
318 |
200 |
80 |
283 |
20.0 |
80 |
98 |
SI80ES |
SA80ES |
80 |
120 |
88 |
55 |
1.0 |
6° |
M64×4.0 |
48.0 |
180 |
270 |
140 |
365 |
230 |
85 |
325 |
25.0 |
95 |
110 |
SA5E NHS5 NOS5 KR13 NUKR35X DC2222G
SA6E NHS6 NOS6 KR16 NUKR40X DC2776
SA8E NHS8 NOS8 KR19 NUKR47X DC3034
SA10E NHS10 NOS10 KR22 NUKR52X DC3175(3C)
SA12E NHS12 NOS12 KR26 NUKR62X DC4445A
SA15ES NHS14 NOS14 KR30 NUKR62XA DC4972(4C)
SA17ES NHS16 NOS16 KR32 PUKR62 DC5476A(4C)
SA20ES NHS18 NOS18 KR35 NUKR72X DC5476B(4C)
SA25ES NHS20 NOS20 KR40 NUKR80X DC5476C(4C)
SA30ES NHS22 NOS22 KR47 NUKR86KX DC5776A
SA35ES NHS25 NOS25 KR52 NUKR90X DC6334B
SA40ES NHS28 NOS28 KR62 NUKR100X DC7221(5C)
SA45ES NHS30 NOS30 KR72 NUKR120X DC72221B
SA50ES KR80 NUKR140X DC7221B(5C)
SA60ES KR85 NUKR150X DC7969C(5C)
SA70ES KR90 NUKR160X DC8334C
SA80ES NUKR170X DC8729A
NUKR180X DC10323A(3C)
DC12334C
DC12388C(11C)
Packaging & Shipping
Company Profile
Our Advantages
Our Advantages:
1. World-Class Bearing: We provide our customers with all types of indigenous bearing with world-class quality.
2. OEM or Non-Stand Bearings: Any requirement for Nonstandard bearings is Easily Fulfilled by us due to its vast knowledge and links in the industry.
3. Genuine products With Excellent Quality: The company has always proved the 100% quality products it provides with genuine intent.
4. After Sales Service and Technical Assistance: The company provides after-sales service and technical assistance as per the customer’s requirements and needs.
5. Quick Delivery: The company provides just-in-time delivery with its streamlined supply chain.
SAMPLES
1. Samples quantity: 1-10 PCS are available.
2. Free samples: It depends on the Model No., material and quantity. Some of the bearings samples need client to
pay samples charge and shipping cost.
3. It’s better to start your order with Trade Assurance to get full protection for your samples order.
CUSTOMIZED
The customized LOGO or drawing is acceptable for us.
MOQ
1. MOQ: 10 PCS standard bearings.
2. MOQ: 1000 PCS customized your brand bearings.
OEM POLICY
1. We can printing your brand (logo, artwork)on the shield or laser engraving your brand on the shield.
2. We can custom your packaging according to your design
3. All copyright own by clients and we promised don’t disclose any info.
FAQ
1.What is the minimum order quantity for this product?
Can be negotiated, we will try our best to meet customer needs.Our company is mainly based on wholesale sales,
most customers’orders are more than 1 ton.
2.What is your latest delivery time?
Most orders will be shipped within 7-15 days of payment being received.
3.Does your company have quality assurance?
Yes, for 1 years.
4.What is the competitiveness of your company’s products compared to other companies?
High precision, high speed, low noise.
5.What are the advantages of your company’s services compared to other companies?
Answer questions online 24 hours a day, reply in a timely manner, and provide various documents required by
customers for customs clearance or sales. 100% after-sales service.
6.Which payment method does your company support?
Do our best to meet customer needs, negotiable.
7.How to contact us quickly?
Please send us an inquiry or message and leave your other contact information, such as phone number,
account or account, we will contact you as soon as possible and provide the detailed information you need.
Please feel free to contact us, if you have any other question
/* 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(/(.*?):(.*)$/))&&1
Bearing Structure: | Rod End Bearing |
---|---|
Type of Lubricant: | Oil-Lubricated Bearing |
Lubricant & Load: | Hydrodynamic Bearing |
Bushing Material: | Self-Lubrication |
Bearing Direction: | Trust and Radial |
Lubricating Way: | Intermittent Fuel Control |
Samples: |
US$ 10/Piece
1 Piece(Min.Order) | |
---|
Customization: |
Available
| Customized Request |
---|
Selecting Size and Thread Type for Rod End Bearings
When choosing the appropriate size and thread type for a rod end bearing, several considerations are important:
1. Load Requirements: Determine the expected loads the rod end bearing will need to support. Choose a size and material that can handle these loads without deformation or premature wear.
2. Thread Direction: Consider whether you need left-hand or right-hand threads. This depends on the specific application and the direction in which the rod end bearing will be subject to forces or adjustments.
3. Thread Size and Pitch: Select the thread size and pitch that match the mating components or the mounting point. Ensure compatibility to avoid threading issues during installation.
4. Environmental Conditions: Consider the operating environment. If the rod end bearing will be exposed to moisture, chemicals, or extreme temperatures, choose a material and thread type that can withstand these conditions without corrosion or degradation.
5. Lubrication: Evaluate the lubrication method. Some rod end bearings have built-in lubrication features, while others require external lubrication. Ensure that the selected bearing and thread type align with your lubrication approach.
6. Misalignment Requirements: If the application involves misalignment, select a rod end bearing with appropriate articulation capabilities, which may require specific size and thread choices to allow for the necessary movement.
7. Compatibility: Ensure that the rod end bearing’s size and thread type are compatible with the connecting components, such as linkages, control arms, or push/pull rods.
8. Adjustability: In applications where adjustability is required, consider rod end bearings with male and female threads to allow for fine-tuning and alignment.
9. Regulations and Standards: Check if there are industry or safety regulations that dictate specific size or thread requirements for your application.
10. Maintenance: Consider ease of maintenance. Some rod end bearings have features that facilitate inspection and lubrication, which can be essential for extending their lifespan.
11. Cost and Availability: Finally, factor in the cost and availability of the chosen rod end bearing size and thread type. Ensure it fits within your budget and can be readily sourced when needed.
By carefully evaluating these considerations, you can select the most suitable rod end bearing size and thread type for your specific application, ensuring optimal performance and longevity.
Contribution of Rod End Bearings to Smooth Movement in Automotive Control Systems
Rod end bearings play a crucial role in ensuring the smooth movement of control systems in various automotive applications. Here’s how they contribute:
1. Steering Systems:
Rod end bearings are used in steering linkages and tie rod ends. They provide the necessary articulation and pivoting to allow the front wheels to turn smoothly, enabling precise steering control. The low friction and high load-bearing capacity of rod end bearings contribute to responsive and accurate steering in both manual and power steering systems.
2. Suspension Systems:
In suspension systems, rod end bearings are used in components like control arms and stabilizer links. They allow for controlled movement of the suspension, ensuring that the vehicle’s wheels maintain optimal contact with the road surface. This contributes to a smoother and more comfortable ride, improved handling, and better traction, especially when driving over uneven or bumpy terrain.
3. Throttle and Accelerator Linkages:
Rod end bearings are employed in throttle and accelerator linkages, where they assist in transmitting pedal inputs to the engine’s throttle body. The smooth articulation provided by rod end bearings ensures that drivers can easily modulate engine power, contributing to smooth acceleration and deceleration.
4. Gear Shift Linkages:
In manual transmissions, rod end bearings are used in gear shift linkages. They enable precise and smooth gear changes by allowing for the controlled movement of the shift lever. This ensures that gears engage smoothly, reducing drivetrain shock and vibration.
5. Convertible Roof Mechanisms:
In convertible cars, rod end bearings are used in the mechanisms that operate the folding and unfolding of the convertible roof. The smooth articulation of rod end bearings contributes to the seamless transition between open and closed roof positions, enhancing the overall driving experience.
Overall, rod end bearings are integral components in automotive control systems, ensuring the smooth and precise operation of various critical functions, including steering, suspension, throttle control, gear shifting, and convertible roof movement.
Design Principles and Functions of Rod End Bearings
Rod end bearings, also known as heim joints or rose joints, are essential components in various mechanical applications, where articulation and precise control of movement are required. These bearings are designed with specific principles and functions in mind:
Design Principles:
Rod end bearings consist of a spherical plain bearing, also known as a spherical plain bushing, within a housing. The design principles are as follows:
- Spherical Plain Bearing: The heart of a rod end bearing is a spherical plain bearing. This bearing allows the inner ring to tilt and rotate in multiple directions. It consists of an inner and outer ring with a sliding layer of material in between, often made from self-lubricating materials.
- Housing: The spherical plain bearing is housed within a protective casing, typically made of metal or other durable materials. The housing provides structural support and retains the bearing components.
- Threaded Shank: The outer part of the housing is often shaped as a threaded shank, allowing for easy attachment to various mechanical components, such as linkages or control arms.
- Lubrication Fittings: Many rod end bearings have provisions for lubrication fittings to ensure smooth articulation and reduce friction.
Functions:
Rod end bearings serve several crucial functions in mechanical systems:
- Articulation: Rod end bearings provide articulation, enabling components to pivot, swivel, and move in multiple directions. This function is vital in applications requiring flexibility and control over movement.
- Angular Misalignment Compensation: They can compensate for both static and dynamic angular misalignment. This is particularly useful in situations where components may not align perfectly due to varying factors like vibration or assembly tolerances.
- Load Transmission: Rod end bearings can transmit static and dynamic loads, making them suitable for applications involving force or load transfer. They are used in machinery and equipment where precise control of loads is essential.
- Precision Movement: These bearings provide precise control and movement, making them suitable for applications where accurate positioning of mechanical components is critical. This includes industries like aerospace and robotics.
- Corrosion Resistance: Many rod end bearings are designed with corrosion-resistant materials or coatings, making them suitable for use in harsh environments, such as marine and industrial settings.
- Durability: Rod end bearings are engineered for durability, allowing them to withstand challenging conditions and heavy-duty use. This ensures their reliability and longevity in demanding applications.
- Versatility: Rod end bearings are versatile components used across various industries, including automotive, aerospace, industrial machinery, and marine applications. Their adaptability and reliability make them valuable to engineers and designers.
These design principles and functions of rod end bearings make them indispensable in a wide range of mechanical systems where articulation, load-bearing capacity, and precise control are required.
editor by CX 2024-05-09