AURORADESIGN SYSTEMS
HomeMaterials EngineeringMetals & Alloys
Metals and alloys engineering visual
Materials Engineering · Category 02

Metals & Alloys

Ferrous and non-ferrous engineering alloys organized by chemistry, product form, heat treatment, microstructure, joining route, environment and qualification state—with dedicated coverage for steel, aluminum, titanium, superalloys and other critical metal families.

Eight controlled daughter gatewaysGrade / temper / product form explicit16:9 full-subject card standard
WEB-MAT Phase 5.2 · CAT 02 review candidate · accepted CAT 01 family architecture
8 Level-3 daughter pages · all cards route to dedicated pages

Steels & Stainless Steels

Carbon steels, HSLA, alloy steels, stainless, precipitation-hardening, maraging and tool-steel families organized by strength, toughness, corrosion, temperature and manufacturability.

Aluminum Alloys

Wrought and cast aluminum families spanning non-heat-treatable and precipitation-hardenable systems for lightweight structures, thermal hardware, transportation and aerospace.

Titanium Alloys

Commercially pure, alpha, alpha-beta and beta titanium families for high specific strength, corrosion resistance, fatigue performance and elevated-temperature aerospace or biomedical service.

Nickel & Cobalt Superalloys

Nickel- and cobalt-base alloy families engineered for creep, oxidation, corrosion and strength retention in turbines, combustors, reactors and severe hot-section service.

Copper & Conductive Alloys

High-conductivity copper, precipitation-strengthened copper alloys, copper-nickel and traditional brasses/bronzes for electrical, thermal, joining and corrosion-controlled service.

Magnesium Alloys

Ultra-light wrought and cast magnesium families for transportation, housings, aerospace components and weight-critical structures where corrosion and flammability controls are explicit.

Refractory Metals

Tungsten, molybdenum, tantalum, niobium and related alloys for extreme-temperature, vacuum, radiation, electrode, furnace and propulsion environments.

Advanced / High-Entropy Alloys

High-entropy, medium-entropy and other compositionally complex alloy systems explored for combinations of strength, toughness, corrosion, radiation and elevated-temperature performance.

Phase-5.2 qualitative architecture
Alloy familyRepresentative families / gradesCore engineering functionsProcessing / qualification focus
Steels & Stainless SteelsLow-carbon and medium-carbon steels; HSLA; Cr-Mo alloy steels; 304/316 austenitic stainless; 410/420 martensitic stainless; duplex stainless; 17-4PH; maraging and tool steels.Load-bearing structures and pressure boundaries; Wear-, tool- and drivetrain componentsHot/cold rolling, forging, casting, normalizing, annealing, quench-and-temper, solution treatment/aging, welding, machining and surface treatment.
Aluminum Alloys1xxx commercially pure Al; 2xxx Al-Cu; 3xxx Al-Mn; 5xxx Al-Mg; 6xxx Al-Mg-Si; 7xxx Al-Zn-Mg(-Cu); Al-Li families; common casting alloys such as Al-Si-Mg and Al-Si-Cu.Lightweight airframes, vehicles and structures; Heat sinks, enclosures and thermal spreadersRolling, extrusion, forging, casting, solution heat treatment, quenching, natural/artificial aging, welding/brazing, machining, anodizing and additive routes.
Titanium AlloysCommercially pure Ti grades; alpha and near-alpha alloys; Ti-6Al-4V and other alpha-beta families; metastable beta alloys; high-temperature titanium families and titanium aluminide-adjacent systems.Aerospace structures and rotating hardware; Corrosion-resistant chemical/process equipmentForging, rolling, sheet forming, machining, vacuum heat treatment, solution treatment/aging, HIP, welding, additive manufacturing and surface finishing.
Nickel & Cobalt SuperalloysSolid-solution nickel alloys; precipitation-strengthened Ni-base superalloys such as 718-class systems; corrosion-resistant Ni-Cr-Mo families; cobalt-base wear/hot-corrosion alloys; wrought, cast and directionally solidified/single-crystal families.Turbine disks, blades and combustor hardware; Reactor and high-temperature process componentsVacuum melting/remelting, forging, investment casting, solution treatment/aging, HIP, welding/brazing, coating, machining and additive manufacturing.
Copper & Conductive AlloysC110-type ETP copper; oxygen-free high-conductivity copper; CuCrZr and related strengthened coppers; Cu-Ni; brasses; phosphor/aluminum bronzes and specialized contact alloys.Electrical busbars, contacts and interconnects; Heat exchangers and high-flux thermal hardwareCasting, hot/cold working, drawing, extrusion, precipitation treatment, annealing, brazing/soldering, welding, electroplating and surface finishing.
Magnesium AlloysAZ31-class wrought alloys; AZ91-class casting alloys; ZK-series; rare-earth-containing WE-series such as WE43-class systems; specialized heat-resistant and biomedical-research magnesium families.Ultra-light housings and transportation structures; Cast gearboxes, frames and equipment enclosuresDie/sand/permanent-mold casting, extrusion, rolling, forging, heat treatment, machining, protective conversion/coating and controlled joining.
Refractory MetalsW and W alloys; Mo and TZM-type alloys; Ta and Ta alloys; Nb and Nb-based alloys including C-103-class aerospace systems; refractory-metal composites and dispersion-strengthened variants.High-temperature furnaces and electrodes; Rocket/nozzle and hot-spacecraft componentsPowder metallurgy, sintering, HIP, forging/rolling, electron-beam/vacuum melting, machining, welding/brazing and oxidation-protective coating systems.
Advanced / High-Entropy AlloysCoCrFeMnNi-family FCC HEAs; refractory HEA families; Al-containing multiphase HEAs; medium-entropy alloys; compositionally complex and nanostructured/ODS-adjacent advanced alloy systems.Advanced structural and extreme-environment research; Radiation-tolerant and energy-system candidatesArc/induction/vacuum melting, powder metallurgy, mechanical alloying, additive manufacturing, homogenization, thermomechanical processing and controlled precipitation/annealing.
uniform 16:9 full-subject visual framing

Heat Treatment & Temper Control

Thermal history is a primary material-state variable across steels, aluminum, titanium and superalloys.

View Topic →

Joining & Welding

Weld metallurgy, HAZ state, filler selection and post-weld condition can dominate performance.

View Topic →

Corrosion & Environmental Compatibility

Alloy selection must bind environment, finish, galvanic couples, stress and service temperature.

View Topic →

Additive Metal Systems

Powder/feedstock state, build parameters, orientation, HIP/heat treatment and defect population become part of the material record.

View Topic →

Surface Engineering

Coatings, conversion layers, nitriding, plating and tribological treatments are controlled interfaces, not cosmetic add-ons.

View Topic →
8daughter gateways
16:9card image standard
0self-link topic cards
Phase 5.2CAT 02 review candidate