Fixed Competitive Price Alumina Ceramic Bush - Self-lubricating Ceramic Shaft and Shaft seal – SEM Detail:
Product production steps
Advantages
Not only strong hardness (≥HV0.5N1300), excellent wear resistance, light weight
The material itself has high temperature resistance of 1600℃, corrosion resistance, no expansion (between 100-800℃), can be used in strong acid and alkali, high temperature and other environments
No magnetic, no dust absorption, low noise, and excellent self-lubrication characteristics
Application Introduction
High speed digital motor and ordinary high-speed motor.
All kinds of brushless motor pumps.
All kinds of motors with high resistance of temperature, acid, and alkali environment.
Tech specs
Main components: | Coffee-colored ceramic base self-lubricating composite materials |
Hardness: | ≥HV0.5N1300 |
Bending strength: | 330MPa |
Compressive strength: | 3000GPa |
Operating temperature: | 1000℃ |
Size and shape: | Dimensions and machining accuracy can be customized |
Note: As products are constantly updated, please contact us for latest specifications.
Applicable Industry
Product detail pictures:
Related Product Guide:
So that you can finest fulfill client's demands, all of our operations are strictly performed in line with our motto "High Excellent, Competitive Price, Fast Service" for Fixed Competitive Price Alumina Ceramic Bush - Self-lubricating Ceramic Shaft and Shaft seal – SEM, The product will supply to all over the world, such as: Victoria, Ecuador, Nigeria, Our company has already have pass the ISO standard and we are fully respect our customer 's patents and copyrights. If the customer provides their own designs, We will guarantee that they will be the only one can have that products. We hoping that with our good products can bring our customers a great fortune.
By Giselle from Bandung - 2017.09.22 11:32
The customer service staff's attitude is very sincere and the reply is timely and very detailed, this is very helpful for our deal,thank you.
By Gloria from South Africa - 2017.03.07 13:42