F-559465 Factory Cylindrical Roller bearing F-559465.RNN Gearbox Bearing F559465 57×92.6x48mm Cylindrical roller bearings can provide axial guidance of the world.This can be carried out by implies of axial washers and retaining rings organized on the two sides of the rolling component .The bearings are accessible as one row and double row locating bearings. They can assist not only large radial forces but also axial forces in each directions and can as a result CZPT shafts axially in each directions.The bearings are supplied in an open up design. They are not greased and can be lubricated with oil or grease.The rolling elements are secured from damage and reduction in the course of transport by means of a plastic sleeve.
Bearing Design
F-559465
Structure
Double Row Cylindrical Roller Bearing
(dxDxB)
57×92.64×48 mm
Weight /
1.25KG
HS CODE
84825
E-Mail
lbc Reducer Bearing F-559465.RNN Cylindrical Roller Bearing F 559465 F559465 Germany roller bearing F559465.RNN entire enhance Cylindrical Roller Bearing F 559465 with no outer ring full complement cylindrical roller beaing F-559465 Model display /Gearbox Roller Bearing if have any item of this type bearings.pls examine as pursuing:
Bearing No.
Weight(kg)
d(mm)
Dr(mm)
B(mm)
F-227932
0.twelve
20
36
30
F-219593
0.a hundred and forty four
25
42
30
F-204045
0.27
30
49
34
F-219590
0.28
35
55
36
F-123243
0.4
45
66
40
F-210408
0.forty six
50
72
40
HS-262
0.86
55
83
46
RNNX22AV
0.895
60
86
46
F-24*forty.3*26
0.94
65
93
46
RNN3
1.35
75
107
54
F-210304
1.eight
80
116
60
RNN306X3V
1.85
85
121
60
F-32*forty six.6*28
2.6
90
130
67
F-208098
2.6
1
4.fifty two
120
167
80
HS-263
6.seven
130
183
95
RNNX10V
7.914
140
197
95
F-237.one
11.09
160
224
109
567079B
15.6
170
242
122
F-229070
RSL185
RSL185
RSL185
RSL185
RSL185
RSL185571
RSL183571
RSL182210
RSL182310
F-208098
RSL185011
RSL183011
RSL182211
RSL182311
F-208099
RSL185012
RSL183012
RSL182212
RSL182312
F-2 0571 3
RSL185013
RSL183013
RSL182213
RSL182313
F-2 0571 one
RSL185014
RSL183014
RSL182214
RSL182314
F-2 0571 two
RSL185015
RSL183015
RSL182215
RSL182315
F-217411
RSL185016
RSL183016
RSL182216
RSL182316
F-213617
RSL185017
RSL183017
RSL182217
RSL182317
F-210408
RSL185018
RSL183018
RSL182218
RSL182318
F-2389
RSL185571
RSL183571
RSL182222
RSL182323
CPM2518
RSL185571
RSL183571
RSL182224
RSL182324
1056-25
RSL185026
RSL183026
RSL182226
RSL182326
RNNX22V
RSL185571
RSL183571
RSL182228
RSL182328
RNN50x69.67×32
RSL185050
RSL183030
RSL182222
RSL182323
RNN40x61.74×32
RSL185032
RSL183032
RSL182232
RSL182332
RNN40x57.81×34
RSL185034
RSL183034
RSL182234
RSL182334
RNN55x77.07×41
RSL185036
RSL183036
RSL182236
RSL182336
RNN50x72.33×39
RSL185038
RSL183038
RSL182238
RSL182338
RNN50x72.33×42
RSL185040
RSL183040
RSL182240
RSL182340
total complement cylindrical roller bearings CPM sequence.
d/mm
D/mm
B/mm
Cr kN
Cor kN
Bearing
18
32.three hundred
20.5
24.1
25.seven
CPM 2699
22
36.two hundred
30.
47.five
68.8
CPM 2435
22
38.750
22.5
34.6
38.1
CPM 2535
22
38.750
22.5
34.6
38.one
CPM 2834
24
40.250
26.
44.
59.eight
CPM 2400
24
40.250
34.
53.3
76.four
CPM 2597
25
40.250
26.
44.
59.eight
CPM 2686
25
40.250
32.
53.three
76.four
CPM 2613
28
44.450
34.
70.8
99.eight
CPM 2776
30
46.400
32.
73.2
105.7
CPM 2594
30
48.250
40.
85.eight
131.six
CPM 2687
30
49.600
26.
57.
70.3
CPM 2510
30
49.600
24.
50.8
60.six
CPM 2178
30
49.600
25.
50.8
60.6
CPM 2651
30
49.600
26.
57.1
70.four
CPM 2198
30
49.600
30.
69.1
90.
CPM 2683
32
46.600
25.
54.3
82.5
CPM 2508
32
46.600
28.
54.three
82.five
CPM 2183
32
46.600
28.
54.3
82.5
CPM 2439
32
48.240
34.
76.
112.
CPM 2668
32
51.750
25.
59.one
74.seven
CPM 2496
32
51.750
29.
71.five
95.five
CPM 2579
34
50.two hundred
29.
66.7
96.6
CPM 2634
35
49.800
28.
56.8
89.seven
CPM 2434
35
52.090
26.5
56.6
79.4
CPM 2723
35
55.520
36.
83.6
113.6
CPM 2470
35
55.520
36.
83.6
113.six
CPM 2520
35
55.520
36.
83.6
113.six
CPM 2706
35
59.190
27.
68.4
85.5
CPM 2721
35
64.three hundred
26.5
72.9
95.seven
CPM 2528
38
52.950
28.
59.2
97.
CPM 2164
38
52.950
29.five
59.two
97.
CPM 2504
38
52.950
29.five
59.2
97.
CPM 2806
38
54.686
29.five
56.nine
86.seven
CPM 2464
38
54.690
29.5
63.
99.
CPM 2458
38
57.910
38.
106.
156.
CPM 2669
40
57.810
34.
96.
141.
CPM 2827
40
60.680
31.
80.eight
118.1
CPM 2729
40
61.740
28.
70.six
90.six
CPM 2188
40
61.740
35.5
100.
140.
CPM 2650
42
60.750
37.
100.7
156.9
CPM 2412
42
60.750
37.
107.2
169.7
CPM 2777
44
61.600
34.
90.one
153.
CPM 2592
44
62.970
37.
103.5
164.4
CPM 2401
45
61.550
32.
77.3
125.7
CPM 2559
45
61.550
36.
90.
153.
CPM 2425
45
65.571
34.
94.3
140.four
CPM 2647
45
66.850
37.five
105.eight
156.seven
CPM 2722
45
66.850
37.5
123.
157.
CPM 2828
45
83.880
85.
268.
393.9
CPM 2619
46
69.five hundred
45.
145.
207.
CPM 2807
50
67.280
32.
75.seven
145.2
CPM 2530
50
67.360
40.
109.
201.
CPM 2720
50
69.580
40.
118.
202.
CPM 2719
50
69.670
32.
89.1
141.
CPM 2492
50
69.670
37.five
111.two
186.nine
CPM 2609
50
72.050
37.
111.seven
172.5
CPM 2466
50
72.330
40.
130.9
194.3
CPM 2190
50
72.330
40.
130.9
194.three
CPM 2465
Certifications Primary Goods Product packaging Packing :1. Industrial packing 2. One box +carton +pallets /case3. In accordance to consumers demand Shipping and delivery time : 1. Usually soon after payment: inside of 3 times . 2. If need to have produce , about thirty days PaymentA much less USD1000 , HXHV LMB8 UU 12 Inch Linear Bushing Ball Bearing With Dimension 12.7×22.225×31.75mm a hundred% T/T in progress .1. More USD1000 , 30% T/T in progress , 70%T/T before shipment Delivery : by sea/by air/by convey like EMS FEDEX TNT DHL… Application Manufacturing unit Company introduction LANDLION BEARING CO., Minimal Iron Reduction Good Magnetic Conductivity Stator Exterior Motor Rotor LTD is an export-oriented organization, specializing in producing and marketing several sorts of bearings for far more than 10 many years. We can make the bearings accordingly to the customers’ samples or drawings.LANDLION has a huge prime brand bearing CZPT UBC ASAHI CZPT CZPT CZPT in stock.
Choosing the Right Ball Bearing for Your Application
When choosing a Ball Bearing, there are several things to consider. These factors include: the size, lubricant type, presence of corrosive agents, stray electrical currents, and more. It can be challenging to choose the right type, size, and type of ball bearing for your application. You should also carefully calculate the loads to determine the right size. Here are some tips for choosing the right Ball Bearing for your application.
Single-row
The single-row ball bearing is one of the most popular types of bearings. The inner and outer ring are designed with raceway grooves that are shaped slightly larger than the balls. This type of bearing has a low torque and can handle high-speed applications with minimal power loss. The radial dimensions of single-row ball bearings also vary, so it is possible to find one that fits your specific application. Besides the above-mentioned advantages, single-row ball bearings are also available with varying grease levels and are widely applicable to applications where the space is limited. Single-row ball bearings are also called angular-contact ball bearings. Because of their single-row design, they are not separable and can accommodate a high-speed, heavy-duty application. Single-row angular-contact ball bearings can only handle axial load in one direction, and they must be installed in pairs for pure radial loads. Single-row ball bearings are a popular type of rolling bearings and can be used for a wide range of applications.
Self-aligning
The self-aligning ball bearing was invented by Sven Wingquist, a plant engineer for a textile company in Sweden. While he was responsible for making production as efficient as possible, he soon realized that the machinery he had in place wasn’t working as efficiently as it could. Although ball bearings are great for reducing friction, they were not flexible enough to compensate for misalignments in the machine. Self-aligning ball bearings have two rows of balls and a common sphered raceway. The inner ring is curved and combines the two rows of balls into one cage. These bearings can tolerate shaft misalignment and compensate for static angular defects. They can be used in simple woodworking machinery, ventilators, and conveying equipment. They are often the preferred choice for applications where shaft alignment is an issue.
Ceramic
A Ceramic ball bearing is a type of high-performance bearing that is available in both full-ceramic and hybrid forms. The main differences between ceramic and steel ball bearings are their construction, lubrication, and mobility. High-quality ceramic ball bearings are durable, and they are ideal for corrosive and high-temperature applications. The material used to create these bearings helps prevent electrolytic corrosion. They are also ideal for reducing the friction and lubrication requirements. Ceramic balls are harder and less brittle than steel balls, which gives them a higher degree of rigidity. Ceramics also have a higher hardness, with a hardness of Rc75-80 compared to Rc58-64 for steel balls. Their high compressive strength is approximately 5 to 7 times greater than steel. In addition, they have a very low coefficient of friction, which allows them to spin at higher speeds and with less friction. This increases their lifespan and durability, and decreases the energy needed to turn cranks.
Steel
Unlike traditional bearings, steel balls have a relatively uniform hardness. Carbon steel, for instance, is 2.1% carbon by weight. According to the American Iron and Steel Institute, copper content must be no more than 0.40% and manganese content should not be more than 1.65 g/cm3. After carbonizing, steel balls undergo a process called sizing, which improves their roundness geometry and hardness. The main differences between steel ball bearings and ceramic ball bearings can be traced to their different materials. Ceramic balls are made from zirconium dioxide or silicon nitride. Silicon nitride is harder than steel and resists shocks. The result is increased speed and longer service life. Polyoxymethylene acetal (PMMA) bearing balls are known for their stiffness, strength, and tolerance, but are not as common as steel ball bearings.
Plastic
The most popular types of plastic ball bearings are made of polypropylene or PTFE. These bearings are used in applications requiring higher chemical resistance. Polypropylene is a structural polymer that offers excellent physical and chemical properties, including excellent resistance to organic solvents and degreasing agents. Its lightweight, low moisture absorption rate, and good heat resistance make it an excellent choice for high-temperature applications. However, plastic bearings are not without their drawbacks, especially when operating at very high temperatures or under heavy loads. Compared to metal bearings, plastic ball-bearings do not require lubrication. They also are highly corrosion-resistant, making them an excellent choice for wash-down applications. They are also post-, autoclave-, and gamma sterilizable. Many conventional steel ball-bearings cannot handle the high temperatures of food processing or swimming pools. In addition to high temperature applications, plastic ball bearings are resistant to chemicals, including chlorine.
Glass
Plastic sliding bearings are molded bearings made of engineering plastic. With self-lubricating modification technology, these bearings can be produced by injection molding of plastic beads. They are widely used in various industries such as office equipment, fitness and automotive equipment. In addition to plastic bearings, glass balls are used in a variety of other applications, including medical equipment. Glass ball bearings have excellent corrosion resistance, excellent mechanical properties, and are electrically insulators. Plastic ball bearings are made of all-plastic races and cages. These bearings are suitable for applications that are exposed to acids and alkalis. Because they are cheaper than glass balls, plastic ball bearings are popular in chemical-exposed environments. Stainless steel balls are also resistant to heat and corrosion. But the main disadvantage of plastic ball bearings is that they are not as strong as glass balls. So, if weight and noise is your main concern, consider using plastic balls instead.
Miniature
The global miniature ball bearing market is expected to reach US$ 2.39 Billion by 2027, at a CAGR of 7.2%. Growth in the region is attributed to technological advancement and government initiatives. Countries such as India and China are attracting FDIs and emphasizing the establishment of a global manufacturing hub. This is boosting the market for miniature ball bearings. The miniscule ball bearings are manufactured in small quantities and are very small. Some manufacturers produce miniature ball bearings in different materials and designs. Chrome steel is the most popular material for miniature ball bearings because of its high load capacity, low noise properties, and lower cost. But the cost of stainless steel miniature bearings is low, since the amount of steel used is minimal. Stainless steel miniature bearings are the smallest in size. Therefore, you can choose stainless steel mini ball bearings for high-speed applications.
Angular-contact
Angular-contact ball bearings have three components: a cage, inner ring, and balls. Angular-contact ball bearings can support high axial and radial loads. Various design and manufacturing attributes make angular-contact ball bearings suitable for a variety of applications. Some features of this bearing type include a special lubricant, different cage materials, and different coatings. The size of an angular-contact ball bearing is determined by the design units: outer ring width, axial load, and radial load. Depending on the type of application, an angular-contact ball bearing may be manufactured in double-row, triple-row, or quadruple-row configurations. Angular contact ball bearings can be classified according to their design units, which range from metric to imperial. A higher ABEC number means tighter tolerances. To determine the tolerance equivalent of a particular bearing, consult a standard Angular-contact ball bearing table. Angular-contact ball bearings feature high and low-shoulder configurations. They have two-dimensional races that accommodate axial and radial loads. They are available in self-retaining units with solid inner and outer rings, and ball and cage assemblies. Cages made of cast and wrought brass are the most popular, but lightweight phenolic cages are also available. The latter is a better choice because it doesn’t absorb oil and has lower rolling friction.
Materials
When it comes to the construction of a ball bearing, high-quality raw materials are a crucial component. These materials not only affect the overall quality of a ball bearing, but also influence the cost. That’s why you should pay close attention to raw material quality. In addition to that, raw materials should be tested several times before the manufacturing process to ensure quality. Read on for some information about the different types of materials used to make ball bearings. Steel is the most common material for ball bearings. Most ball bearings contain stainless steel balls, which are remarkably corrosion-resistant. They are also resistant to saltwater and alkalis. However, stainless steel balls are heavier than plastic ones, and they are also magnetic, which may be a drawback in some applications. If you’re looking for a metal-free option, glass balls are the way to go. They’re sturdy, lightweight, and resistant to a wide range of chemicals.