Prod Model: |
non-standard |
Markets: |
North America,South America,Eastern Europe,Southeast Asia,Africa,Oceania,Mid East,Eastern Asia,Western Europe |
Sample: |
Available |
Drawing: |
Available |
Material: |
Stellite 6 Alloy |
ODM: |
Available |
OEM: |
Available |
Markings: |
Acceptable |
Impeller Number: |
Multistage Pump |
Working Pressure: |
High Pressure Pump |
Influent Type Of Impeller: |
Double-Suction Pump |
Position Of Pump Shaft: |
Horizontal Pump |
Product Description
stellite 6 alloy well logging impeller
Stellite 6 is the most widely used of the wear resistant cobalt-based alloys and show good all-round performance. It is regarded as the industry standard for general-purpose wear resistance applications, has excellent resistance to many forms of mechanical and chemical degradation over a wide temperature range, and retains a reasonable level of hardness up to 500°C (930°F). It also has good resistance to impact and cavitation erosion.Stellite6 is ideally suited to a variety of hardfacing processes and can be turned with carbide tooling. Examples include valve seats and gates, pump shafts and bearings, erosion shields, and rolling couples. It is often used self-mated.Stellite 6 is available as welding wire, rod, powder, and electrodes, finished castings and powdermetallurgy parts. A separate brochure is available for the wrought forms of this alloy, namely Stellite 6B and Stellite 6K. Stellite 6 can be supplied to the following specifications:
cabalt based alloys hot extrusion die cabalt based alloys hot extrusion die cabalt based alloys hot extrusion Rod, Castings, Powder metallurgy Parts, Electrode, Wire, Castings etc.
STELLITECOBALT-BASED ALLOYS
cobalt based alloys valve seat for metallurgy cobalt based alloys valve seat for metallurgy
consist of complex carbides in an alloy matrix. They are resistant to wear, galling, and corrosion and retain these properties at high temperatures. Their exceptional wear resistance is due mainly to the unique inherent characteristics of the hard carbide phase dispersed in a CoCr alloy matrix.
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