Select Page

China High Axial Load Thrust Ball Bearing bearing driver

Solution Description

Thrust Ball Bearing  51100-51320
High top quality GCr15 bearing metal is selected and refined by superior processing engineering.

 Thrust ball bearing is developed to endure thrust load when running at higher velocity and is composed of washer-like rings with ball rolling raceway groove.Due to the fact the ring is in the shape of seat, thrust ball bearings are divided into 2 varieties: flat base cushion kind and aligning spherical cushion kind.In addition, these bearings can endure axial loads but not radial loads.
    According to the drive, it is divided into unidirectional thrust ball bearing and bidirectional thrust ball bearing.
One – way thrust ball bearing, can bear 1 – way axial load.
Bidirectional thrust ball bearing, can endure bidirectional axial load, whereby shaft ring and shaft match.
The mounting area of the seat ring is spherical bearing with self-aligning overall performance, which can lessen the impact of set up error.

 

Bearing product d(mm) D(mm) T(mm) Load Rating(N) Weight (Kg)
Dynamic Static
51100 10 24 nine 10 fourteen .02
51101 12 26 nine 10.3 fifteen.4 .571
51102 fifteen 28 nine ten.five sixteen.eight .571
51103 seventeen 30 nine 10.8 eighteen.two .571
51104 twenty 35 ten fourteen.2 24.7 .04
51105 25 42 eleven 19.five 37.two .059
51106 thirty 47 eleven 20.four forty two.2 .068
51107 35 52 12 twenty.4 44.seven .09
51108 forty sixty thirteen 26.nine 62.eight .12
51109 forty five sixty five fourteen 27.eight 69.one .fifteen
51110 fifty 70 fourteen 28.8 75.four .16
51111 fifty five 78 sixteen .24
51112 60 eighty five seventeen 41.4 113 .29
51113 65 ninety seventeen 41.7 117 .34
51114 70 95 eighteen 43 127 .36
51115 75 a hundred 19 forty two.three 127 .42
51116 80 a hundred and five 19 44.six 141 .43
51117 eighty five 110 19 45.9 a hundred and fifty .forty six
51118 90 120 22 fifty nine.seven one hundred ninety .sixty eight
51120 one hundred one hundred thirty five 25 eighty five 268 .99
51122 one hundred ten 145 twenty five 87.one 288 one.08
51124 120 a hundred and fifty five 25 89 308 1.sixteen
51126 one hundred thirty one hundred seventy thirty 104 352 one.87
51128 140 180 31 107 377 2.2
51136 one hundred eighty 225 34 one hundred thirty five 528 three.39
51138 190 240 37 170 657 3.95
51140H two hundred 250 37 4.2
51144H 220 270 37 4.fifty six
51148 240 three hundred forty five 241 1571 seven.38
51152H 260 320 forty five 8.1
51156H 280 350 53 12.two
51160H 300 380 sixty two seventeen.5
51164 320 400 63 379 1760 19
51168 340 420 64 387 1860 20.5

 

US $0.15-0.23
/ Piece
|
50 Pieces

(Min. Order)

###

Contact Angle: 15°
Aligning: Aligning Bearing
Separated: Separated
Rows Number: Single
Load Direction: Thrust Bearing
Material: Stainless Steel

###

Customization:

###

Bearing model d(mm) D(mm) T(mm) Load Rating(N) Weight (Kg)
Dynamic Static
51100 10 24 9 10 14 0.02
51101 12 26 9 10.3 15.4 0.022
51102 15 28 9 10.5 16.8 0.024
51103 17 30 9 10.8 18.2 0.028
51104 20 35 10 14.2 24.7 0.04
51105 25 42 11 19.5 37.2 0.059
51106 30 47 11 20.4 42.2 0.068
51107 35 52 12 20.4 44.7 0.09
51108 40 60 13 26.9 62.8 0.12
51109 45 65 14 27.8 69.1 0.15
51110 50 70 14 28.8 75.4 0.16
51111 55 78 16 0.24
51112 60 85 17 41.4 113 0.29
51113 65 90 17 41.7 117 0.34
51114 70 95 18 43 127 0.36
51115 75 100 19 42.3 127 0.42
51116 80 105 19 44.6 141 0.43
51117 85 110 19 45.9 150 0.46
51118 90 120 22 59.7 190 0.68
51120 100 135 25 85 268 0.99
51122 110 145 25 87.1 288 1.08
51124 120 155 25 89 308 1.16
51126 130 170 30 104 352 1.87
51128 140 180 31 107 377 2.2
51136 180 225 34 135 528 3.39
51138 190 240 37 170 657 3.95
51140H 200 250 37 4.2
51144H 220 270 37 4.56
51148 240 300 45 241 1020 7.38
51152H 260 320 45 8.1
51156H 280 350 53 12.2
51160H 300 380 62 17.5
51164 320 400 63 379 1760 19
51168 340 420 64 387 1860 20.5
US $0.15-0.23
/ Piece
|
50 Pieces

(Min. Order)

###

Contact Angle: 15°
Aligning: Aligning Bearing
Separated: Separated
Rows Number: Single
Load Direction: Thrust Bearing
Material: Stainless Steel

###

Customization:

###

Bearing model d(mm) D(mm) T(mm) Load Rating(N) Weight (Kg)
Dynamic Static
51100 10 24 9 10 14 0.02
51101 12 26 9 10.3 15.4 0.022
51102 15 28 9 10.5 16.8 0.024
51103 17 30 9 10.8 18.2 0.028
51104 20 35 10 14.2 24.7 0.04
51105 25 42 11 19.5 37.2 0.059
51106 30 47 11 20.4 42.2 0.068
51107 35 52 12 20.4 44.7 0.09
51108 40 60 13 26.9 62.8 0.12
51109 45 65 14 27.8 69.1 0.15
51110 50 70 14 28.8 75.4 0.16
51111 55 78 16 0.24
51112 60 85 17 41.4 113 0.29
51113 65 90 17 41.7 117 0.34
51114 70 95 18 43 127 0.36
51115 75 100 19 42.3 127 0.42
51116 80 105 19 44.6 141 0.43
51117 85 110 19 45.9 150 0.46
51118 90 120 22 59.7 190 0.68
51120 100 135 25 85 268 0.99
51122 110 145 25 87.1 288 1.08
51124 120 155 25 89 308 1.16
51126 130 170 30 104 352 1.87
51128 140 180 31 107 377 2.2
51136 180 225 34 135 528 3.39
51138 190 240 37 170 657 3.95
51140H 200 250 37 4.2
51144H 220 270 37 4.56
51148 240 300 45 241 1020 7.38
51152H 260 320 45 8.1
51156H 280 350 53 12.2
51160H 300 380 62 17.5
51164 320 400 63 379 1760 19
51168 340 420 64 387 1860 20.5

Materials Used in Bearings

If you’re not familiar with the types of bearings, you may be interested in knowing more about the materials used to manufacture them. Here’s a look at what each type of bearing is made of, how it’s used, and how much they cost. To find the right bearing for your application, it’s important to choose a quality lubricant. The materials used in bearings are determined by their type and applications. Choosing the right lubricant will extend its life, and protect your machine’s parts from damage and premature wear.

Materials used in bearings

Bearings are made from a variety of materials. Stainless steel is a common material used for the components of bearings. It has a higher content of chromium and nickel. When exposed to oxygen, chromium reacts with it to form chromium oxide, which provides a passive film. For higher temperatures, teflon and Viton are also used. These materials offer excellent corrosion resistance and are often preferred by manufacturers for their unique properties.
Stainless steel is another material used in bearings. AISI 440C is a high-carbon stainless steel commonly used in rolling-contact bearings. It is widely used in corrosive environments, especially in applications where corrosion resistance is more important than load capacity. It can also be heat-treated and hardened to 60 HRC, but has lower fatigue life than SAE 52100. Stainless steel bearings may carry a 20-40% price premium, but their superior performance is worth the extra money.
Graphite and molybdenum disulfide are two of the most common materials used in bearings. While graphite is a popular material in bearings, it has very poor corrosion resistance and is unsuitable for applications where oil or grease is required. Graphite-based composite materials are another option. They combine the benefits of both graphite and ceramic materials. A variety of proprietary materials have been developed for high-temperature use, such as graphite and MoS2.
Wood bearings have been around for centuries. The oldest ones used wood and Lignum Vitae. These materials were lightweight, but they were incredibly strong and durable. Wood bearings were also lubricated with animal fats. During the 1700s, iron bearings were a popular choice. In 1839, Isaac Babbitt invented an alloy containing hard metal crystals suspended in a softer metal. It is considered a metal matrix composite.

Applications of bearings

bearing
Bearings are used in many different industries and systems to help facilitate rotation. The metal surfaces in the bearings support the weight of the load, which drives the rotation of the unit. Not all loads apply the same amount of force to bearings, however. Thrust and radial loads act in distinctly different ways. To better understand the different uses of bearings, let’s examine the various types of bearings. These versatile devices are essential for many industries, from automobiles to ships and from construction to industrial processes.
Cylindrical roller bearings are designed to support heavy loads. Their cylindrical rolling element distributes the load over a larger area. They are not, however, suited to handling thrust loads. Needle bearings, on the other hand, use small diameter cylinders and can fit into tighter spaces. The advantages of these types of bearings are numerous, and many leading producers are now leveraging the Industrial Internet of Things (IIoT) to develop connected smart bearings.
As a power generation industry, bearings play an essential role. From turbines to compressors, from generators to pumps, bearings are essential components of equipment. In addition to bearings, these components help move the equipment, so they can work properly. Typically, these components use ball bearings, although some roller bearings are used as well. In addition to being efficient and durable, these types of bearings also tend to be built to meet stringent internal clearance requirements and cage design requirements.
In addition to bearings for linear motion, bearings can also bear the weight of a rotary part. Depending on the application, they can be designed to minimize friction between moving parts. By constraining relative motion, bearings are used to reduce friction within a given application. The best-designed bearings minimize friction in a given application. If you’re in the market for a new bearing, NRB Industrial Bearings Limited is an excellent source to begin your search.

Types of bearings

bearing
The type of bearings you choose will have a significant impact on the performance of your machinery. Using the right bearings can increase efficiency, accuracy, and service intervals, and even reduce the cost of purchasing and operating machinery. There are several different types of bearings to choose from, including ball bearings and flexure bearings. Some types use a fluid to lubricate their surfaces, while others do not.
Plain bearings are the most common type of bearing, and are used for a variety of applications. Their cylindrical design allows for a relatively smooth movement. Often made of copper or other copper alloy, they have low coefficients of friction and are commonly used in the construction industry. Some types of plain bearings are also available with a gudgeon pin, which connects a piston to a connecting rod in a diesel engine.
Magnetic bearings are the newest type of bearing. They use permanent magnets to create a magnetic field around the shaft without requiring any power. These are difficult to design, and are still in the early stages of development. Electromagnets, on the other hand, require no power but can perform very high-precision positioning. They can be extremely durable and have a long service life. They are also lightweight and easy to repair.
Another type of bearing is needle roller. These are made of thin, long, and slender cylinders that are used in a variety of applications. Their slender size is ideal for a space-constrained application, and their small profile allows them to fit in tight places. These types of bearings are often used in automotive applications, bar stools, and camera panning devices. They have several advantages over ball bearings, including the ability to handle heavy axial loads.

Cost of bearings

A wide range of factors affect the cost of aerospace bearings, including the bearing material and its volatility. Manufacturers typically use high-grade steel for aircraft bearings, which are highly affected by fluctuations in the steel price. Government policies also play a part in the variation in trade price. The implementation of COVID-19 has changed the market dynamics, creating an uncertain outlook for supply and demand of aerospace bearings. New trade norms and transportation restrictions are expected to hamper the growth of this industry.
Demand for aerospace bearings is largely driven by aircraft manufacturers. In North America, aircraft manufacturers must meet extremely high standards of weight, performance, and quality. They also must be lightweight and cost-effective. This has resulted in a rising cost of aerospace bearings. The market for aerospace bearings is expected to grow at the highest CAGR over the next few years, driven by increasing investments in defense and aerospace infrastructure across Asia-Pacific.
Hub assemblies are also expensive. A wheel hub will cost between $400 and $500 for one set of bearings. In addition to this, the speed sensor will be included. The average cost of wheel bearings is between $400 and $500 for one side, including labor. But this price range is much lower if the bearing is a replacement of an entire wheel assembly. It is still worth noting that wheel hub bearings can be purchased separately for a lower price.
Replacement of one or two wheel bearings will depend on the model and year of the vehicle. For a small car, one rear wheel bearing can cost between $190 and $225, whereas two front wheel hubs can cost upwards of $1,000. Labor and parts prices will vary by location, and labor costs may also be covered under some warranty plans. If you decide to have it done yourself, be sure to ask multiple shops for estimates.

Inspection of bearings

bearing
To maintain bearing performance and prevent accidents, periodic inspections are essential. In addition to ensuring reliability, these inspections improve productivity and efficiency. Regular maintenance includes disassembly inspection, replenishment of lubricant and monitoring operation status. Here are some common ways to perform the necessary inspections. Keep reading to learn how to maintain bearings. After disassembly, you must clean the components thoroughly. Ensure that the bearings are free of burrs, debris, and corrosion.
Ultrasound technology is an excellent tool for monitoring slow-speed bearings. Most ultrasound instruments offer wide-ranging sensitivity and frequency tuning. Ultrasound can also be used to monitor bearing sound. Ultra-slow bearings are usually large and greased with high-viscosity lubricant. Crackling sounds indicate deformity. You can also listen for abnormal noise by plugging a vibration analyzer into the machine. Once the machine shows abnormal noise, schedule additional inspections.
Ultrasonic inspection involves using an ultrasound transducer to measure the amplitude of sound from a bearing. It is effective in early warnings of bearing failure and prevents over-lubrication. Ultrasound inspection of bearings is a cost-effective solution for early diagnosis of bearing problems. In addition to being a reliable tool, ultrasonic testing is digital and easy to implement. The following are some of the advantages of ultrasonic bearing inspection.
Dynamic quality evaluation involves the use of a special fixture for measuring bearing deformations under low shaft speed and light radial load. The size of the fixture influences the value of the deformations. A fixture should be sized between the diameter of the sensor and the roller to ensure maximum precision. The outer deformation signal is more sensitive with a larger sensor diameter. A vibration-acceleration sensor is used for the contrast test.

China High Axial Load Thrust Ball Bearing     bearing driverChina High Axial Load Thrust Ball Bearing     bearing driver
editor by czh 2023-01-20