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Aluminum 1050 · temper

Aluminum 1050-H16

Properties of the H16 condition, compared with the other 1050 tempers.

For flat parts, roll-formed profiles and nameplates needing extra stiffness with only mild bending.

What is 1050-H16?

1050-H16 is 1050 in the H16 temper — for flat parts, roll-formed profiles and nameplates needing extra stiffness with only mild bending. 1050-H16 has a yield strength of 110 MPa (16 ksi) and a tensile strength of 130 MPa (18.9 ksi) — weaker than 81% of aluminum grades. Elongation at break is 4% and the elastic modulus is 69 GPa (10 Msi). 1050-H16 has a density of 2.71 g/cm³ (0.0977 lb/in³), lighter than 54% of aluminum grades. It melts at 646°C (1,195 °F). H14 is the default condition FabDigit quotes; H16 is available on request or by drawing note.

Advantages

  • Conducts heat well — 229 W/m·K (132.3 BTU/hr·ft·°F), better than 96% of aluminum grades
  • High electrical conductivity — 61 % IACS, better than 96% of aluminum grades
  • Readily welded — 92/100, better than 95% of aluminum grades
  • Good corrosion resistance — 78/100, better than 94% of aluminum grades
  • Polishes to a fine finish — 78/100, better than 91% of aluminum grades

Limitations

  • Difficult to machine — 33/100, worse than 87% of aluminum grades
  • Low strength — 110 MPa (16 ksi), worse than 81% of aluminum grades

1050-H16 properties

Typical room-temperature values for 1050-H16 — 9 properties are specific to this condition; the rest are grade-level values shared by every 1050 temper. Each bar shows where the value sits among the aluminum grades in FabDigit's library — further right is higher.

Physical3

1050-H16 has a density of 2.71 g/cm³ (0.0977 lb/in³), lighter than 54% of aluminum grades. It melts at 646°C (1,195 °F).

Density2.71 g/cm³0.1 lb/in³
Melting Point (Solidus)646°C1,195 °F
Liquidus Temperature657°C1,215 °F

Mechanical11

1050-H16 has a yield strength of 110 MPa (16 ksi) and a tensile strength of 130 MPa (18.9 ksi) — weaker than 81% of aluminum grades. Elongation at break is 4% and the elastic modulus is 69 GPa (10 Msi).

Elastic (Young's) Modulus69 GPa10 Msi
Shear Modulus26 GPa3.8 Msi
Bulk Modulus75 GPa10.9 Msi
Poisson's Ratio0.33
Tensile Strength (Ultimate)130 MPa18.9 ksi
Yield Strength (0.2% offset)110 MPa16 ksi
Elongation at Break4%
Shear Strength76 MPa11 ksi
Fatigue Strength (Endurance Limit)48 MPa7 ksi
Hardness, Brinell33 HB
Hardness, Vickers33 HV

Thermal6

1050-H16 is rated for continuous service to 150°C (302 °F). It conducts heat at 229 W/m·K (132.3 BTU/hr·ft·°F), better than 96% of aluminum grades. Thermal expansion is 23.6 µm/m·K (13.1 µin/in·°F).

Thermal Conductivity229 W/m·K132 BTU/hr·ft·°F
Specific Heat Capacity900 J/kg·K0.21 BTU/lb·°F
Thermal Expansion (CTE, 20–100 °C)23.6 µm/m·K13.1 µin/in·°F
Latent Heat of Fusion397 J/g171 BTU/lb
Max Service Temperature (continuous)150°C302 °F
Min Service Temperature-270°C-454 °F

Electrical3

1050-H16 conducts electricity at 61 % IACS, better than 96% of aluminum grades.

Electrical Conductivity61 % IACS
Electrical Resistivity2.83×10⁻⁸ Ω·m1.11 µΩ·in
Magnetic Responsenon-magnetic

Chemical & Environmental3

Corrosion resistance is very good (78/100), better than 94% of aluminum grades.

Galvanic Potential (seawater, vs SCE)-0.84 V
Corrosion ResistanceVery good78/100
Chemical Resistance SummaryVery good in neutral water, atmosphere and most organics thanks to a stable oxide film; attacked by strong alkalis (pH>9), strong mineral acids, mercury salts and chlorides in stagnant crevices; galvanically vulnerable when coupled to copper or steel.

Sustainability4

Producing a kilogram of 1050-H16 takes about 205 MJ of energy and emits 12.5 kg of CO₂ — more than 75% of aluminum grades. Typical recycled content is 20%.

Embodied Energy (primary production)205 MJ/kg88,134 BTU/lb
Embodied Carbon (primary production)12.5 kg CO₂/kg
Embodied Water1,100 L/kg132 gal/lb
Typical Recycled Content20%

Manufacturability7

1050-H16's machinability is poor (33/100, worse than 87% of aluminum grades); weldability excellent (92/100); formability very good (70/100).

MachinabilityPoor33/100
Machinability Rating (AISI 1212 = 100 %)30%
WeldabilityExcellent92/100
Formability (cold)Very good70/100
Brazeability / SolderabilityExcellent85/100
PolishabilityVery good78/100
Anodizing Responseexcellent — high purity gives clear, bright and decorative anodic films; standard choice for bright-anodized reflectors and trim

Values are nominal handbook figures for design screening. Certified mill or lot data ships with every FabDigit order on request.

Other 1050 tempers and conditions

1050 is also supplied in 12 other conditions. The full side-by-side table is on the 1050 overview.

Working with 1050-H16

Is 1050 easy to machine?

Soft and gummy — use polished high-rake carbide, high speed, low feed and flood coolant or lubricant; harder H16/H18 tempers cut and deburr much more cleanly.

Can 1050 be welded?

Excellent by GTAW/GMAW with 1100 or 1188 filler (4043 for restraint-free joints); the weld and HAZ revert to the O-temper strength.

Can 1050 be formed, bent or molded?

Outstanding cold formability — O/H22/H24 tempers deep-draw, spin and roll-form with very tight bend radii; expect strong springback-free but low-strength parts.

What surface finishes work on 1050?

Ideal for bright and clear anodizing, chemical brightening and mirror polishing; also takes conversion coating and painting well, but the soft surface scratches easily.

1050 chemical composition (wt %)

Limits by weight percent from the governing specification, written the way the spec states them — a single maximum for impurities, a range for alloying elements, and the base element as balance.

ElementSpec limit (wt %)
Si≤ 0.25
Fe≤ 0.4
Cu≤ 0.05
Mn≤ 0.05
Mg≤ 0.05
Zn≤ 0.05
V≤ 0.05
Ti≤ 0.03
Others (each)each other element, max≤ 0.03
Al≥ 99.5 (balance)

1050-H16 — frequently asked

What is 1050-H16 used for?

1050-H16 is typically used for chemical storage tanks, architectural panels and cladding, heat-exchanger plate, busbar and electrical conductors, spun lighting reflectors and food and chemical process vessels. In short: pure aluminum; excellent corrosion.

What is the yield strength of 1050-H16?

1050-H16 has a typical yield strength of 110 MPa (16 ksi) and a tensile strength of 130 MPa (18.9 ksi) — weaker than 81% of aluminum grades. Strength varies by condition: see the 13 listed tempers.

Is 1050-H16 easy to machine?

Not especially — machinability is rated poor (33/100, worse than 87% of aluminum grades). Soft and gummy — use polished high-rake carbide, high speed, low feed and flood coolant or lubricant; harder H16/H18 tempers cut and deburr much more cleanly.

Can 1050-H16 be welded?

Yes — weldability is rated excellent (92/100). Excellent by GTAW/GMAW with 1100 or 1188 filler (4043 for restraint-free joints); the weld and HAZ revert to the O-temper strength.

What surface finishes work on 1050-H16?

Ideal for bright and clear anodizing, chemical brightening and mirror polishing; also takes conversion coating and painting well, but the soft surface scratches easily.

Can 1050-H16 be formed, bent or molded?

Outstanding cold formability — O/H22/H24 tempers deep-draw, spin and roll-form with very tight bend radii; expect strong springback-free but low-strength parts.

What is the maximum service temperature of 1050-H16?

1050-H16 is rated for continuous use to about 150°C (302 °F). Strength falls off well before that limit — check the elevated-temperature data for load-bearing parts.

What is the difference between 1050-H14 and 1050-H111?

H14 is the default condition — the general-purpose stocked temper: usable strength and stiffness with still-good bending for sheet, coil and tread plate. H111: nearly soft sheet/plate that has picked up slight work during flattening or straightening; formability close to O. Yield strength is 90 MPa in H14 versus 25 MPa in H111.

Can FabDigit make parts in 1050-H16?

Yes — 1050-H16 is available for CNC machining and sheet metal with instant online pricing. Upload a STEP file to get a price and a DFM check.

Sources

  1. International Alloy Designations and Chemical Composition Limits for Wrought Aluminum (Teal Sheets)The Aluminum Association (2018)
  2. EN 485-2 Aluminium and aluminium alloys — Sheet, strip and plate: mechanical propertiesCEN (2016)
  3. ASTM B209 / B209M Standard Specification for Aluminum and Aluminum-Alloy Sheet and PlateASTM (2021)
  4. ASM Handbook Vol. 2 — Properties and Selection: Nonferrous AlloysASM International (1990)
  5. ASM Handbook Vol. 13B — Corrosion: MaterialsASM International (2005)

Property data is compiled from published supplier and standards handbooks and normalised for comparison. Nothing on this page is a certification — request mill certs, CoC or material test reports with your order.