Enter the composition of up to three alloys (e.g. base metal, filler, and a second base metal for dissimilar joints) and a single dilution value. The tool calculates Creq/Nieq for each diagram, plots tie lines between them, and estimates the diluted weld metal's solidification mode, Schaeffler phase, and solidification-cracking risk (including a rapid-solidification/laser-welding comparison).
Filler contributes the remainder: 70%
Boundary and contour lines are approximate, reconstructed from D.J. Kotecki & T.A. Siewert, "WRC-1992 Constitution Diagram for Stainless Steel Weld Metals," Welding Journal 71(5), 1992; A.L. Schaeffler, "Constitution Diagram for Stainless Steel Weld Metal," Metal Progress 56, 1949; and N. Suutala's solidification-cracking work as compared against rapid-solidification (laser) behavior in the Lippold/Pacary literature. The Suutala/Lippold cracking-lobe boundaries are a first-pass hand-estimate from the source figures, not yet a calibrated digitization, so treat the exact threshold position as indicative only until refined. It is not a certified digitization; see disclaimer above.
This calculator is free to use. If you need a custom calculation, a proprietary alloy model, or procedure-specific analysis for your program, that's exactly the kind of work Jeffrium takes on.