Method for preparing K418 nickel-based high temperature alloy charging turbine based on selective laser melting forming technology
A laser selective melting, nickel-based superalloy technology, applied in turbines, mechanical equipment, additive manufacturing, etc., can solve problems such as high cost, long cycle, and many defects, achieve rapid development and verification, avoid parts defects, and guarantee products performance effect
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[0027] 1. Select the spherical K418 nickel-based superalloy powder with good powder fluidity and chemical composition that meets the requirements of the national standard as the raw material for laser selective melting and forming. Its specific composition is C: 0.08~0.16wt%, Cr: 11.50~13.50wt%, Mo: 3.8~4.80wt%, Al: 5.50~6.40wt%, Ti: 0.50~1.00wt%, Fe≤1.00wt%, Nb: 1.80~2.50wt%, B: 0.008~0.020wt%, Zr: 0.060~0.150wt%, Mn≤0.50wt%, Si≤0.50wt%, P≤0.015wt%, S≤0.010wt% and the balance Ni; its particle size distribution is: D10 is 24.57μm, D50 is 36.27μm, D90 is 49.22μm, which meets the requirements of laser selective melting powder particle size distribution; its bulk density is 4.47g / cm 3 , the tap density is 5.12g / cm 3 .
[0028] 2. Construct the model of the K418 turbocharger, import the turbocharger STL parts to the Magics RP interface, check and repair various model errors in the STL file, establish the FS271M virtual printing platform, place the parts, and design the basic sup...
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