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LUOYANG MONTON BEARING SCIENCE & TECHNOLOGY CO.,LTD.
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china ceramic ball bearing factory 6202E deep groove ball bearing manufacturers

LUOYANG MONTON BEARING SCIENCE & TECHNOLOGY CO.,LTD.
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LUOYANG MONTON BEARING SCIENCE & TECHNOLOGY CO.,LTD.
City: Luoyang
Province/State: Henan
Country/Region: China
Tel: 86--13213639372
Contact Person:
Mr Dave-Lee

china ceramic ball bearing factory 6202E deep groove ball bearing manufacturers

Brand Name : MONTON
Model Number : 6202
Certification : ISO9001
Place of Origin : luoyang
MOQ : 1
Price : 4USD/pc
Payment Terms : TT
Delivery Time : 7days
Packaging Details : single box
Structure : Deep groove ball bearing
Material : Silicon Nitride (SiN4) Alumina Oxide (Al2O3) Zirconia Oxide (ZrO2) Silicon Carbide (SiC
Cage material : Ptfe or peek
Types : Open or sealed
Bearing range : 1mm~100mm
Samples : Available
Guarantee : 12 months
Market : Japan,USA,Germany,Italy,etc
Supply Ability : 1000/pcs/week
Contact Now

6202 Full Ceramic Deep Groove Ball Bearing Used For Fans , 12 Months Guarantee


Full ceramic ball bearings


Full Ceramic Bearings have races and balls that are made entirely of ceramic material and are superior to common steel bearings in many ways. Ceramic is the perfect material for any application seeking to achieve higher RPM’s, reduce overall weight or for extremely harsh environments where high temperatures and corrosive substances are present.


Full Ceramic Bearings are usually made of following materials:


  • Silicon Nitride (SiN4)
  • Alumina Oxide (Al2O3)
  • Zirconia Oxide (ZrO2)
  • Silicon Carbide (SiC)

Full Ceramic Bearing Benefits

  • Will not corrode or rust
  • 2/3 the weight of steel
  • Resistant to resist acids, alkali, blood, salt and water
  • Extremely low coefficient of friction and thermal expansion
  • Lower friction results in less energy consumed
  • Operating Temperature from as low as (-85°C) up to (+ 900°C)

Full Ceramic Bearing Applications

Full Ceramic bearings are used in specialty applications like chemical baths, vacuum environments, semiconductor manufacturing, food processing industries, radiotherapy, MRI, patient positioning systems and more. Any extreme environment that requires non-corrosive, non-conductive or non-magnetic bearings is ideal for full ceramic bearings.


Because ceramic is a glass like surface it has an extremely low coefficient of friction and is ideal for applications seeking to reduce friction. Ceramic balls require less lubrication and have a greater hardness than steel balls which will contribute to increased bearing life. Thermal properties are better than steel balls resulting in less heat generation at high speeds.


Radial Full Ceramic Bearings

Full Ceramic Bearings are made entirely of ceramic material and are superior to common steel bearings in many ways. Ceramic is the perfect material for any application seeking to achieve higher RPM's, reduce overall weight or for extremely harsh environments where high temperatures and corrosive substances are present.


Applications such as cryopumps, medical devices, semiconductors, machine tools, turbine flow meters, food processing equipment, robotics and optics. Ceramic materials commonly used for bearings are Silicon Nitride (Si3N4), Zirconia Oxide (ZrO2), Alumina Oxide (Al2O3) or Silicon Carbide (SiC.)


Because ceramic is a glass like surface it has an extremely low coefficient of friction and is ideal for applications seeking to reduce friction. Ceramic balls require less lubricant and have a greater hardness than steel balls which will contribute to increased bearing life. Thermal properties are better than steel balls resulting in less heat generation at high speeds. Full Ceramic bearings can have a retainer or full complement of balls, retainer materials used are PEEk and PTFE.


Full ceramic bearings can continue to operate under extremely high temperatures and are capable of operating up to 1800 Deg. F. Ceramic is much lighter than steel and many bearings are 1/3 the weight of a comparable steel bearing. Full ceramic bearings are highly corrosion resistant and will stand up to most common acids, they will not corrode in exposure to water or salt water. And finally full ceramic bearings are non-conductive.

The purpose of a radial bearing is to reduce rotational friction and support loads. This is achieved by using two races to hold the balls and to spread the load through the balls. As the bearing race rotates it causes the balls to rotate. The ball provides for substantially less rolling resistance and coefficient of friction than if two flat surfaces were rotating.


Single-row, deep groove radial ball bearings are the most common bearing type, having a wide range of applications. Radial bearings are made with very high levels of precision and used in applications where rotational performance and low torque is necessary, but load is a secondary issue. Deep-groove bearings however do have higher load ratings for their size than shallow-groove ball bearings, but are also less tolerant of misalignment.

Ceramic hybrid ball bearings use ceramic balls. Ceramic balls weigh up to 40% less than steel balls, depending on size. This reduces centrifugal loading and skidding, so hybrid ceramic bearings can operate up to 50% faster than conventional bearings. This means that the outer race groove exerts less force inward against the ball as the bearing spins. This reduction in force reduces the friction and rolling resistance. The lighter ball allows the bearing to spin faster, and uses less energy to maintain its speed. Ceramic hybrid ball bearings use these ceramic balls in place of steel balls. They are constructed with steel inner and outer rings, but ceramic balls so they are known as hybrids.

6000CE6200CE6300CEZrO2 6000ZrO2 6200ZrO2 6300Si3N4 6000Si3N4 6200Si3N4 6300
6001CE6201CE6301CEZrO2 6001ZrO2 6201ZrO2 6301Si3N4 6001Si3N4 6201Si3N4 6301
6002CE6202CE6302CEZrO2 6002ZrO2 6202ZrO2 6302Si3N4 6002Si3N4 6202Si3N4 6302
6003CE6203CE6303CEZrO2 6003ZrO2 6203ZrO2 6303Si3N4 6003Si3N4 6203Si3N4 6303
6004CE6204CE6304CEZrO2 6004ZrO2 6204ZrO2 6304Si3N4 6004Si3N4 6204Si3N4 6304
6005CE6205CE6305CEZrO2 6005ZrO2 6205ZrO2 6305Si3N4 6005Si3N4 6205Si3N4 6305
6006CE6206CE6306CEZrO2 6006ZrO2 6206ZrO2 6306Si3N4 6006Si3N4 6206Si3N4 6306
6007CE6207CE6307CEZrO2 6007ZrO2 6207ZrO2 6307Si3N4 6007Si3N4 6207Si3N4 6307
6008CE6208CE6308CEZrO2 6008ZrO2 6208ZrO2 6308Si3N4 6008Si3N4 6208Si3N4 6308
6009CE6209CE6309CEZrO2 6009ZrO2 6209ZrO2 6309Si3N4 6009Si3N4 6209Si3N4 6309
6010CE6210CE6310CEZrO2 6010ZrO2 6210ZrO2 6310Si3N4 6010Si3N4 6210Si3N4 6310
6011CE6211CE6311CEZrO2 6011ZrO2 6211ZrO2 6311Si3N4 6011Si3N4 6211Si3N4 6311
6012CE6212CE6312CEZrO2 6012ZrO2 6212ZrO2 6312Si3N4 6012Si3N4 6212Si3N4 6312
6013CE6213CE6313CEZrO2 6013ZrO2 6213ZrO2 6313Si3N4 6013Si3N4 6213Si3N4 6313
6014CE6214CE6314CEZrO2 6014ZrO2 6214ZrO2 6314Si3N4 6014Si3N4 6214Si3N4 6314
6015CE6215CE6315CEZrO2 6015ZrO2 6215ZrO2 6315Si3N4 6015Si3N4 6215Si3N4 6315
6016CE6216CE6316CEZrO2 6016ZrO2 6216ZrO2 6316Si3N4 6016Si3N4 6216Si3N4 6316
6017CE6217CE6317CEZrO2 6017ZrO2 6217ZrO2 6317Si3N4 6017Si3N4 6217Si3N4 6317
6018CE6218CE6318CEZrO2 6018ZrO2 6218ZrO2 6318Si3N4 6018Si3N4 6218Si3N4 6318
6019CE6219CE6319CEZrO2 6019ZrO2 6219ZrO2 6319Si3N4 6019Si3N4 6219Si3N4 6319
6020CE6220CE6320CEZrO2 6020ZrO2 6220ZrO2 6320Si3N4 6020Si3N4 6220Si3N4 6320



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