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Seated Outer Spherical Bearing UCF 204 UCF 205 UCF 206 Bearing ABEC 7

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Province/State:zhejiang
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Seated Outer Spherical Bearing UCF 204 UCF 205 UCF 206 Bearing ABEC 7

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Brand Name :BUGAO
Model Number :UCF204 UCF205 UCF206
Certification :ISO9001:2015
Place of Origin :China
MOQ :Negotiatable
Price :Negotiable
Payment Terms :T/T,L/C,Western Union
Supply Ability :3000000 sets
Delivery Time :2-4 weeks
Packaging Details :Single Packing, Industrial/Tube Packing
Specification :Open, Z, ZZ, RZ, 2RZ, RS, 2RS
Noise &Vibration :Z1V1, Z2V2, Z3V3, Z4V4
Structure :Pillow Block Bearing/Insert Bearing
HS Code :8482102000
OEM Service :Customization Welcomed
Product Name :Outer Spherical Bearing
Material :Bearing Steel (GCr15), Stainless Steel, Ceramic, etc
Precision :P0, P6, P5, P4
Tolerance Class :ABEC-1, ABEC-3,ABEC-5,ABEC-7
Clearance :C2, C0, C3, C4
more
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View Product Description

UCP, UCT, and UCF bearings are common types of mounted bearings (also known as insert bearings), widely used in industrial equipment. Their main differences lie in the mounting method and structural design, making them suitable for different applications. Below is a detailed comparison of their features:



1. UCP Bearings

  • Mounting Method: UCP bearings are designed for pillow block mounting, with four mounting holes at the base, suitable for installation on horizontal surfaces.

  • Structural Features:

    • The housing has a square base, providing high stability and making it ideal for heavy loads.

    • Typically used for applications requiring vertical support.

  • Applications:

    • Conveyors, pumps, fans, and other equipment requiring horizontal installation.

    • Suitable for heavy-duty equipment needing stable support.



2. UCT Bearings

  • Mounting Method: UCT bearings use flange mounting, with four mounting holes on the side, suitable for installation on vertical surfaces.

  • Structural Features:

    • The housing has a circular flange design, compact and ideal for space-constrained applications.

    • Flange mounting allows for easy attachment to vertical or side surfaces.

  • Applications:

    • Motors, gearboxes, fans, and other equipment requiring vertical installation.

    • Suitable for applications with limited space or side mounting requirements.



3. UCF Bearings

  • Mounting Method: UCF bearings also use flange mounting, but unlike UCT, UCF bearings have a larger flange size, providing enhanced stability.

  • Structural Features:

    • The housing features an enlarged flange design, offering stronger support and stability.

    • Suitable for handling higher radial and axial loads.

  • Applications:

    • Heavy machinery, conveyor systems, agricultural equipment, and industrial applications.

    • Ideal for applications requiring high stability and load capacity.



4. Key Differences Comparison

Model Mounting Method Housing Design Applications Features
UCP Pillow block (base mounting) Square base Horizontal installation, e.g., conveyors, pumps, fans High stability, suitable for heavy-duty equipment
UCT Flange mounting (side mounting) Circular flange, compact design Vertical installation, e.g., motors, gearboxes, fans Compact structure, ideal for space-constrained applications
UCF Flange mounting (side mounting) Enlarged flange, enhanced stability Heavy machinery, e.g., agricultural equipment, conveyor systems High stability, suitable for high-load and high-vibration environments


5. Selection Recommendations

  • UCP: Suitable for horizontal installation and applications requiring high stability.

  • UCT: Suitable for vertical installation or space-constrained applications.

  • UCF: Suitable for heavy-duty equipment requiring high load capacity and stability.



6. Conclusion

The main differences between UCP, UCT, and UCF bearings lie in their mounting methods and housing designs, making them suitable for different applications. Choosing the right type of bearing can improve equipment efficiency and lifespan. For further details or specific model selection, refer to the manufacturer's technical manual or contact the supplier. Let me know if you need more assistance!

Seated Outer Spherical Bearing UCF 204 UCF 205 UCF 206 Bearing ABEC 7





Seated Outer Spherical Bearing UCF 204 UCF 205 UCF 206 Bearing ABEC 7


UCF Series Pillow Block Ball Bearings Parameters

Seated Outer Spherical Bearing UCF 204 UCF 205 UCF 206 Bearing ABEC 7


Wide Applications of Pillow Block Bearings

Seated Outer Spherical Bearing UCF 204 UCF 205 UCF 206 Bearing ABEC 7


Customization Welcomed:

  • We can printing your brand (logo,artwork)on the shield or laser engraving your brand on the shield.

  • We can custom your packaging according to your design.

  • All copyright owned by clients and we promised don't disclose any information.



Packing and Shipping:


  • The deep groove ball bearings will be securely packaged individually, or tube packing or packed as customization packing

  • Shipping method is negotiable.




Seated Outer Spherical Bearing UCF 204 UCF 205 UCF 206 Bearing ABEC 7




ABEC-1 Tolerance Class ABEC-1 (P0)

Inner Ring

Tolerance in um/s

d mm

Δdmp

9

Vdp²)0,1 Diameter Series

2,3,4

Vdmp

Kia

ΔBs

Vbs

over

including

high

low

max

max

max

high

low

max

1)0.6

2.5

0

-8

10

8

6

6

10

0

-40

12

2.5

10

0

-8

10

8

6

6

10

0

-120

15

10

18

0

-8

10

8

6

6

10

0

-120

20

18

30

0

-10

13

10

8

8

13

0

-120

20

30

50

0

-12

15

12

9

9

15

0

-120

20

50

80

0

-15

19

19

11

11

20

0

-150

25


Outer Ring

Tolerance in um/s

D mm

Δdmp

VDp2)4)Open Bearings Diameter Series

Capped Bearings2)3)

Vdmp

Kia

ΔBs

Vbs

9

0,1

2,3,4

2,3,4

over

including

high

low

max

max

max

high

low

max

1)2.5

6

0

-8

10

8

6

10

6

15

Identical to ΔBs and VBs of inner ring of same bearing

6

18

0

-8

10

8

6

10

6

15

18

30

0

-9

12

9

7

12

7

15

30

50

0

-11

14

11

8

16

8

20

50

80

0

-13

16

13

10

20

10

25

80

120

0

-15

19

19

11

26

11

35

120

150

0

-18

23

23

14

30

14

40



ABEC-3 Tolerance Class ABEC-3 (P6)

Inner Ring

Tolerance in um/s

d mm

Δdmp

9

Vdp²)0,1 Diameter Series

2,3,4

Vdmp

Kia

ΔBs

Vbs

over

including

high

low

max

max

max

high

low

max

11)0.6

2.5

0

-7

9

7

5

5

5

0

-40

12

2.5

10

0

-7

9

7

5

5

6

0

-120

15

10

18

0

-7

9

7

5

5

7

0

-120

20

18

30

0

-8

10

8

6

6

8

0

-120

20

30

50

0

-10

13

10

8

8

10

0

-120

20

50

80

0

-12

15

15

9

9

10

0

-150

25

Outer Ring

Tolerance in um/s

D mm

Δdmp

VDp2)4)Open Bearings Diameter Series

Capped Bearings2)3)

Vdmp

Kia

ΔBs

Vbs

9

0,1

2,3,4

2,3,4

over

including

high

low

max

max

max

high

low

max

1)2.5

6

0

-7

9

7

5

9

5

8

Identical to ΔBs and VBs of inner ring of same bearing

6

18

0

-7

9

7

5

9

5

8

18

30

0

-8

10

8

6

10

6

9

30

50

0

-9

11

9

7

13

7

10

50

80

0

-11

14

11

8

16

8

13

80

120

0

-13

16

16

10

20

10

18

120

150

0

-15

19

19

11

25

11

20



ABEC-5 Tolerance Class ABEC-5 (P5)

Inner Ring

Tolerance in um/s

d mm

Δdmp

Vdp²)Diameter Series

Vdmp

Kia

Sd

Sis3)

ΔBs

Vbs

9

0,1,2,3,4

over

including

high

low

max

3

max

max

max

High

Low

max

1)0.6

2.5

0

-5

5

4

3

4

7

7

0

-40

5

2.5

10

0

-5

5

4

3

4

7

7

0

-40

5

10

18

0

-5

5

4

3

4

7

7

0

-80

5

18

30

0

-6

6

5

3

4

8

8

0

-120

5

30

50

0

-8

8

6

4

5

8

8

0

-120

5

50

80

0

-9

9

7

5

5

8

8

0

-150

6

Outer Ring

Tolerance in um/s

D mm

Δdmp

Vdp²)Diameter Series

Vdmp

Kia

SD4) SD15)

Sea4)5)

ΔBs

Vbs

9

0,1,2,3,4

over

including

high

low

max


max

max

max

High

Low

max

1)2.5

6

0

-5

5

4

3

5

8

8


5

6

18

0

-5

5

4

3

5

8

8

5

18

30

0

-6

6

5

3

6

8

8

5

30

50

0

-7

7

5

4

7

8

8

5

50

80

0

-9

9

7

5

8

8

10

6

80

120

0

-10

10

8

5

10

9

11

8

120

150

0

-11

11

8

6

11

10

13

8



ABEC-7 Tolerance Class ABEC-7 (P4)

Inner Ring

Tolerance in um/s

d mm

Δdmp

Δds

Vdp²)Diameter Series

Vdmp

Kia

Sd

Sia

ΔBs

Vbs

7,8,9

1,7,2,3,4

over

including

high

low

high

low

max

max

max

max

max

High

low

Low

max

1)0.6

2.5

0

-4

0

-4

4

3

2

2.5

3

3

0

-40

-40

2.5

2.5

10

0

-4

0

-4

4

3

2

2.5

3

3

0

-40

-40

2.5

10

18

0

-4

0

-4

4

3

2

2.5

3

3

0

-80

-80

2.5

18

30

0

-5

0

-5

5

4

2.5

3

4

4

0

-120

-120

2.5

30

50

0

-6

0

-5

6

4

3

4

4

4

0

-120

-120

3

50

80

0

-7

0

-5

7

5

3.5

4

5

5

0

-150

-150

4

Outer Ring

Tolerance in um/s

D mm

Δdmp

Δds

Vdp²)Diameter Series

Vdmp

Kia

Sd

Sia

ΔBs

Vbs

7,8,9

1,7,2,3,4

over

including

high

low

high

low

max

max

max

max

max

High

low

max

1)2.5

6

0

-4

0

-4

4

3

2

3

4

5

Identical to ΔBs and VBs of inner ring of same bearing

2.5

6

18

0

-4

0

-4

4

3

2

3

4

5

2.5

18

30

0

-5

0

-5

5

4

2.5

4

4

5

2.5

30

50

0

-6

0

-6

6

5

3

5

4

5

2.5

50

80

0

-7

0

-7

7

5

3.5

5

4

5

3

80

120

0

-8

0

-8

8

6

4

6

5

6

4

120

150

0

-9

0

-9

9

7

5

7

5

7

5


Seated Outer Spherical Bearing UCF 204 UCF 205 UCF 206 Bearing ABEC 7





Tolerance Data for Vibration of Single Bearing

D

V

V1

V2

V3

V4

mm

Low

Medium

High

Low

Medium

High

Low

Medium

High

Low

Medium

High

Low

Medium

High

3,4

80

44

44

60

35

32

48

26

22

31

16

15

28

10

10

5,6

110

72

60

74

48

40

58

36

30

35

21

18

32

11

11

7,8,9

130

96

80

92

66

54

72

48

40

44

28

24

38

12

12

10,12

160

120

100

120

80

70

90

60

50

55

35

30

45

14

15

15

210

150

120

150

100

85

110

78

60

65

46

35

52

18

18

17

210

150

120

150

100

85

110

78

60

65

46

35

52

25

25

20

260

190

150

180

125

100

130

100

75

80

60

45

60

25

25

22,25

260

190

150

180

125

100

130

100

75

80

60

45

60

30

32

28

260

190

150

180

125

100

130

100

75

80

60

45

60

35

40

30,32

300

240

190

200

150

130

150

120

100

90

75

60

70

35

40

35

300

240

190

200

150

130

150

120

100

90

75

60

70

42

45

40

360

300

260

240

180

160

180

150

130

110

90

80

82

50

50

45

360

300

260

240

180

160

180

150

130

110

90

80

82

60

60

50

420

320

320

280

200

200

210

160

160

125

100

100

95

70

70


Maximum Vibration Acceleration of Single Bearing

D

Diameter Series(0)

Diameter Series(2) Diameter Series(3)

mm

Z

Z1

Z2

Z3

Z

Z1

Z2

Z3

Z4

Z

Z1

Z2

Z3

Z4

3

35

34

32

28

36

35

32

30

-

37

36

33

31

-

4

35

34

32

28

36

35

32

30

-

37

36

33

31

-

5

37

36

34

30

38

37

34

32

-

39

37

35

33

-

6

37

36

34

30

38

37

34

32

-

39

37

35

33

-

7

39

38

35

31

40

38

36

34

-

-

-

-

-

-

8

39

38

35

31

40

38

36

34

-

-

-

-

-

-

9

41

40

36

32

42

40

37

35

-

-

-

-

-

-

10

43

42

38

33

44

42

39

35

30

37

44

40

37

32

12

44

43

39

34

45

43

39

35

30

47

45

40

37

32

15

45

44

40

35

46

44

41

36

31

48

46

42

38

33

17

46

44

40

35

47

45

41

36

31

49

47

42

38

33

20

47

45

41

36

48

46

42

38

33

50

48

43

39

34

22

47

45

41

36

48

46

42

38

33

50

48

43

39

34

25

48

46

42

38

49

47

43

40

36

51

49

44

41

37

28

49

47

43

39

50

48

44

41

37

52

50

45

42

38

30

49

47

43

39

50

48

44

41

37

52

50

45

42

38

32

50

48

44

40

51

49

45

42

38

53

51

46

43

39

35

51

49

45

41

52

50

46

43

39

54

52

47

44

40

40

53

51

46

42

54

52

47

44

40

56

54

49

45

41

45

55

53

48

45

56

54

49

46

43

58

56

51

47

44

50

57

54

50

47

58

55

51

48

45

60

57

53

49

46

55

59

56

52

49

60

57

53

50

47

62

59

54

51

48

60

61

58

54

51

62

59

54

51

48


61

56

53

50


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