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Rapidia IN625 Nickel Superalloy – 1000cc
Commonly known as Inconel™ 625, this nickel-chrome superalloy offers extreme-environment corrosion resistance beyond that of 316L. It maintains its strength to a temperature near its melting point, making Superalloy 625 a desirable choice for high-temperature and high-pressure applications. Its extreme corrosion resistance also makes it suitable for harsh chemical and oxidizing environments.
Common Applications
IN625 is famously difficult to machine, and additive manufacturing can significantly reduce headaches in part production. Download the material properties datasheet here.
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Rapidia IN625 Nickel Superalloy – 1000cc
Commonly known as Inconel™ 625, this nickel-chrome superalloy offers extreme-environment corrosion resistance beyond that of 316L. It maintains its strength to a temperature near its melting point, making Superalloy 625 a desirable choice for high-temperature and high-pressure applications. Its extreme corrosion resistance also makes it suitable for harsh chemical and oxidizing environments.
Common Applications
IN625 is famously difficult to machine, and additive manufacturing can significantly reduce headaches in part production. Download the material properties datasheet here.
Advanced materials for your application
Our growing materials portfolio includes several metals as well as an evaporative support material to unlock impossible part geometry and eliminate the need for support removal processes.
Our Conflux 1 printer has dual extruders which allows the printing of evaporative support inside and outside any metal part. Evaporative support serves two purposes:
1 – Design Freedom
Allows printing of any overhang. Metal Paste Deposition can print overhangs up to 45° without printed support. Using evaporative support in the second extruder allows any overhang, including completely horizontal overhangs, to be printed on Conflux 1.
2 – Easy Removal
Functions as a release layer between metal surfaces. Since cantilevered shapes are prone to sag during sintering, it is often helpful to print metal supports to provide support through sintering. By printing a layer of evaporative material between metal supports and the part, these supports are prevented from bonding to the part during sintering and can be removed by hand.