Casting Material Selection: One Map from Gray Iron to Nickel Alloys

One decision map for choosing a casting material: iron, carbon steel, low alloy, stainless and aluminum families matched to load, environment and budget.

Quick Answer

Casting material selection reduces to three questions asked in order. First: what does the environment do to the part — nothing (dry, lubricated), water, chlorides, acids, or heat? Second: what does the load ask — mass, stiffness, strength, impact, or wear? Third: what does the budget allow? Answer those and the family picks itself; the grade inside the family is then a data lookup. This page is the map; each family links to its detailed guide.

The Decision Map

Environment → Load First-choice family Deep dive
Benign + mass/damping Gray iron (A48) A48 classes
Benign + strength/impact Ductile iron (A536) A536 grades
Benign + high stress / welding Carbon steel (A216) WCB guide
Benign + extreme stress/wear Low alloy steel, Q&T Low alloy grades
Cold climate (<−29°C) A352 LCB/LCC family WCB vs LCB vs WCC
Water/food, no chlorides CF8 (cast 304) CF8 family compared
Chlorides, marine, CIP CF8M / CF3M (cast 316) CF8M guide
Chlorides + high stress/abrasion Duplex CD4MCu CD4MCu guide
Sulfuric/phosphoric acid CN7M (Alloy 20) CN7M guide
Wear + moderate corrosion 17-4 PH (CB7Cu-1) 17-4 PH guide
Weight-critical Aluminum A356-T6 A356 guide
Heat >425°C, pressure A217 chrome-moly (WC6/WC9) Ask with design temperature

The Three Cross-Family Rules

  • Buy the environment first. Under-specifying corrosion is the expensive direction — a corroded CF8 part in chloride service costs a warranty claim; an over-specified CF3M part in clean water only costs a premium. When in doubt between two families, price both and state the media honestly in the RFQ.
  • Strength is heat treatment as much as chemistry. The same low-alloy casting spans 500–1,100 MPa depending on its cycle — specify grade and condition and hardness window. The mechanics are in our heat treatment guide.
  • Weldability is binary at design time. Iron families: assume no structural welding. Steel families: weldable with procedure discipline. This single fact sorts many part-material pairs immediately.

Material × Process: The Second Axis

Family choice constrains process choice: aluminum favors gravity/low-pressure casting; steels and stainless run investment or sand casting by size and finish; irons live in sand and shell molding. If a material-process pair looks exotic, the price will say so — sometimes switching family beats forcing a process.

What to Send a Foundry for a Material Recommendation

  • Part drawing or model, with functional surfaces marked
  • Media, temperature range, and cleaning chemicals if any
  • Load case in plain words: static, cyclic, impact, abrasive
  • Annual volume and target price context
  • Any code (ASME, API, PED) governing the assembly

With those five items, a competent foundry returns a grade recommendation with DFM notes in days — ours come with the inspection plan attached.

FAQ

What is the cheapest casting material overall?

Gray iron, nearly always — lowest melt cost, best castability, fastest machining. Every step away from it buys a property gray iron lacks.

Can I switch material without new tooling?

Within a family (iron to iron, steel grade to steel grade) usually yes with shrinkage checks; across families (iron to steel, steel to aluminum) shrinkage differences typically require pattern rework.

Who should own material selection — designer or foundry?

The designer owns the requirement; the foundry validates castability and often knows a cheaper equivalent grade. The best results come from stating requirements and inviting counter-proposals.

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