Stainless,Aluminum Clevis Threaded Plain End Rod Bearing

  • Description
Product Detail

Product description of  Stainless,Aluminum Clevis Threaded Plain End Rod Bearing

Rod end joint bearing is mainly composed of an inner ring with spherical outer surface and an outer ring with spherical inner ring, and can bear a large load. According to different types and structures, the rod end joint bearings can bear radial loads, axial loads or both radial and axial loads. Rod end joint bearings are generally used in low speed swing motion, and can also tilt in a certain angle range. According to their different types and structures, they can bear radial loads, axial loads or both radial and axial loads. Rod end joint bearings are widely used in engineering hydraulic oil cylinders, forging machine tools, construction machinery, automation equipment, automobile shock absorbers, water conservancy machinery and other industries.


The temperature of rod end joint bearing is generally predicted by means of the temperature outside the rod end joint bearing room; it will be more appropriate if the temperature of rod end joint bearing outer ring can be directly measured by using an oil hole. Usually, the temperature of rod end joint bearing will begin to rise slowly as the rod end joint bearing runs, and it will become steady after 1 to 2 hours. The normal temperature of rod end joint bearing is different due to the heat capacity, heat dissipating capacity, rotational speed and load of the machine. If the lubricating and installation parts are appropriate, the temperature of rod end joint bearing will rise sharply, leading to unusually high temperature; the machine must be stopped at this moment, while the necessary precautions need to be taken. The working temperature of rod end joint bearing can be monitored using a thermal senor, and thus, automatic alarm will take place or the machine will stop to prevent the accident of excessively heated axle when the temperature exceeds the prescribed value.


Advantage of Stainless,Aluminum Clevis Threaded Plain End Rod Bearing

1.  High quality and High precision

2.  Reasonable price

3.  Low friction; low vibration and low noise

4.  Long life


XM: (race: Nylon) (Cases: XM6, XML6)

??3.jpg

??2.jpg1). Material: Housing - 4130 Chrome-Moly; Heat Treatment: 1570°F for 1 hours, then water quench,
then temper at 900°F for 2 hours. Must test to 108 Rockwell B.
Finish: Bright Polished Chrome Plated
Race - Nylon Molded, J-4-30-TF-13-SI-2; 6-12 Short Fiber, Black (PTFE = 8.6%, Short glass 34%)
Bail-52100 Bearing Steel, Precision ground, Heat Treated. Finish: Hard Chrome Piated
2). Do not scale drawing.
3). Unless otherwise specified, all dims are in inches.
4). NO pressed in COM Bearing.
5). Must have minimum radial static load of as listed in chart.
6). Ball must be centered after molding within ±.002 of the center line axis of the housing.
7). Slotted Nylon Design; NO Teflon allowed.
8). Breakaway torque for ball must be as listed in the chart.
9). Dimensions apply after plating.
Plating must withstand 96hr of salt spray test per ASTM B117 without any visible red rust.

Product specification:

-L-16-12

1-12- LH

.751

1.875

1.878

4.125

2.125

1.000

1.375

2.750

.200

50.0

134000

240~800

-16-12

1-12

.751

1.875

1.878

4.125

2.125

1.000

1.375

2.750

.200

50.0

134000

240~800

-L-16

1-12- LH

1.001

1.875

1.878

4.125

2.125

1.000

1.375

2.750

.200

40.0

134000

240~800

-16

1-12

1.001

1.875

1.878

4.125

2.125

1.000

1.375

2.750

.200

40.0

134000

240~800

-14-12

7/8-14

.751

1.312

1.315

3.375

1.875

.687

.875

2.000

.137

40.0

40000

240~600

L-14-12

7/8-14-LH

.751

1.312

1.315

3.375

1.875

.687

.875

2.000

.137

40.0

40000

240~600

-12-1

3/4-16

.757

1.312

1.315

2.875

1.750

.593

.875

1.759

.119

44.0

32000

40~400

-L-12-10

3/4-16-LH

.626

1.312

1.315

2.875

1.750

.593

.875

1.755

.119

50.0

30000

40~400

-12-10

3/4-16

.626

1.312

1.315

2.875

1.750

.593

.875

1.755

.119

50.0

30000

40~400

-12-8

3/4-16

.501

1.312

1.315

2.375

1.750

.593

.875

1.755

.119

50.0

32000

40~400

-L-12

3/4-16-LH

.751

1.3*i2

1.315

2.875

1.750

.593

.875

1.755

.119

44.0

32000

40~400

-12

3/4-16

.751

1.312

1.315

2.875

1.750

.593

.875

1.755

.119

44.0

32000

40~400

-10-8

5/8-18

.501

1.125

1.128

2.625

1.625

.484

.750

1.500

.097

50.0

23000

40~200

-L-10-8

5/8-18-LH

.501

1.125

1.128

2.625

1.625

.484

.750

1.500

.097

50.0

23000

40~200

-L-10

5/8-18-LH

.626

1.125

1.128

2.625

1.625

.484

.750

1.500

.097

44.0

23000

40~200

-10

5/3-18

.626

1.125

1.128

2.625

1.625

.484

.750

1.500

.097

44.0

23000

40~200

-L-8

1/2-20-LH

.501

.937

.940

2.438

1.500

.453

.625

1.312

.091

44.0

21000

40~180

-8

1/2-20

.501

.937

.940

2.438

1.500

?453

.625

1.312

.091

44.0

21000

40~180

-L-7

7/16-20-LH

.4385

.812

.815

2.125

1.375

.437

.562

1.125

.087

40.0

17500

40~150

-7

7/16-20

.4385

.812

.815

2.125

1.375

.437

.562

1.125

.087

40.0

17500

40~150

-L-6

3/8-24-LH

.376

.718

.721

1.938

1.250

?406

.500

1.000

.081

44.0

13000

32~150 *

-6

3/8-24

.376

.718

?721

1.938

1.250

.406

.500

1.000

.081

44.0

13000

32~150

Desc.

Thread

A

E

F+.003

G

H

M

N

J

K


Min cone

Min Radial

Breakaway Torque


Class 2A

±.001

±.001

-.001

±.015

Min

±.010

±.005

±.010

±.003

Angle

Static Load

oz-in.


XF: (race: Nylon) (Cases: XF3, XFL3)

Desc.

Housing Thread
 Class 2B

A±.001

C±.060

E±.001

D±.010

G±.030

H±.060

J±.010

M±.005

N±005

0±.060

P±.030

T±.030

a Min

Radial State
Load (lb)

Breakaway
Torque (oz-in)

MXF-3

10-32

.190

1.375

.438

.332

1.062

.582

.625

.250

.312

.406

.312

.218

50

4000

32~75

MXFL-3

10-32 LH

.190

1.375

.438

.332

1.062

.562

.625

.250

.312

.406

.312

.218

50

4000

32~75

MXF-4

1/4-28

.251

1.687

.509

.395

1.312

.750

.750

.281

.375

.469

.375

.218

50

6000

32~75

MXFL-4

1/4-28 LH

.251

1.687

.509

.395

1.312

.750

.750

.281

.375

.469

.375

.218

50

6000

32~75

MXF-5

5/16-24

.3135

1.813

.616

.457

1.375

.750

.875

.344

.437

.500

.437

.218

48

8800

32~100

MXFL-5

5/16-24 LH

.3135

1.813

.616

.457

1.375

.750

.875

.244

.437

.500

.437

.218

43

8800

32~100

MXF-6

3/8-24

.376

2.125

.713

.520

1.625

.937

1.000

.406

.500

.687

.562

.218

44

13000

32~150

MXFL-6

3/8-24 LH

.376

2.125

.713

.520

1.625

.937

1.000

.406

.500

.687

.562

.218

44

13000

32~150

MXF-8

1/2-20

.501

2.781

.931

.545

2.125

1.187

1.312

.500

.625

.875

.750

.312

40

21000

40~180

MXFL-8

1/2-20 LH

.501

2.781

.931

.645

2.125

1.187

1.312

.500

.625

.375

.750

.312

40

21000

40~180

MXF-10

5/8-18

.626

3.250

1.125

.770

2.500

1.500

1.500

.484

.750

1.000

.875

.312

44

23000

40~200

MXFL-10

5/8-18 LH

.626

3.250

1.125

.770

2.500

1.500

1.500

.484

.750

1.000

.875

.312

44

23000

40~200

MXF-12

3/4-16

.751

3.750

1.312

.895

2.875

1.562

1.750

.593

.875

1.125

1.000

.312

36

35000

40~400

MXFL-12

3/4-16 LH

.751

3.750

1.312

.895

2.875

1.562

1.750

.593

.875

1.125

1.000

.312

36

35000

40~400

MXF-16

1-14

1.001

5.500

1.875

1.395

4.125

2.125

2.750

1.000

1.375

1.625

1.500

.500

48

76500

240~800

MXFL-16

1-14 LH

1.001

5.500

1.875

1.395

4.125

2.125

2.750

1.000

1.375

1.625

1.500

.500

43

76500

240~800



??6.jpg

-A = BALL I.D
-D = Nylon Slot Height
-E = Ball O.D
-a - Minimum Cone Angle of Ball.


Wuxi Jinwei Precision Machinery Co., Ltd
Mob: 0086-13906170913
Tel: 0086-510-83951313
Fax: 0086-510-83958913
Add: Yangshan Town, Huishan District, WuxiCity, Jiangsu Province
Email: sales@wxjinwei.com
Website: http: //www.wxjwbearing.com

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Wuxi Jinwei Precision Machinery Co.,Ltd

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