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Copper Alloy C51000 · supply condition

Copper Alloy C51000-H06

Properties of the H06 condition, compared with the other C51000 tempers.

Step between hard and spring temper for flat springs with only straight-line forming.

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What is C51000-H06?

C51000-H06 is C51000 supplied in the H06 condition — step between hard and spring temper for flat springs with only straight-line forming. C51000-H06 has a yield strength of 560 MPa (81.2 ksi) and a tensile strength of 620 MPa (89.9 ksi) — stronger than 93% of copper alloy grades. Elongation at break is 8% and the elastic modulus is 110 GPa (16 Msi). C51000-H06 has a density of 8.86 g/cm³ (0.32 lb/in³), heavier than 67% of copper alloy grades. It melts at 954°C (1,749 °F). O is the default condition FabDigit quotes; H06 is available on request or by drawing note.

Advantages

  • High strength — 560 MPa (81.2 ksi), better than 93% of copper alloy grades

Limitations

  • Difficult to machine — 25/100, worse than 85% of copper alloy grades
  • Limited ductility — 8%, worse than 83% of copper alloy grades
  • High embodied carbon — 4.3 kg CO₂/kg, worse than 78% of copper alloy grades

C51000-H06 properties

Typical room-temperature values for C51000-H06 — 8 properties are specific to this condition; the rest are grade-level values shared by every C51000 temper. Each bar shows where the value sits among the copper alloy grades in FabDigit's library — further right is higher.

Physical3

C51000-H06 has a density of 8.86 g/cm³ (0.32 lb/in³), heavier than 67% of copper alloy grades. It melts at 954°C (1,749 °F).

Density8.86 g/cm³0.32 lb/in³
Melting Point (Solidus)954°C1,749 °F
Liquidus Temperature1,049°C1,920 °F

Mechanical11

C51000-H06 has a yield strength of 560 MPa (81.2 ksi) and a tensile strength of 620 MPa (89.9 ksi) — stronger than 93% of copper alloy grades. Elongation at break is 8% and the elastic modulus is 110 GPa (16 Msi).

Elastic (Young's) Modulus110 GPa16 Msi
Shear Modulus41 GPa5.9 Msi
Bulk Modulus115 GPa16.7 Msi
Poisson's Ratio0.34
Tensile Strength (Ultimate)620 MPa89.9 ksi
Yield Strength (0.2% offset)560 MPa81.2 ksi
Elongation at Break8%
Shear Strength350 MPa50.8 ksi
Fatigue Strength (Endurance Limit)235 MPa34.1 ksi
Hardness, Brinell80 HB
Hardness, Vickers195 HV

Thermal6

C51000-H06 is rated for continuous service to 200°C (392 °F). It conducts heat at 69 W/m·K (39.9 BTU/hr·ft·°F), worse than 56% of copper alloy grades. Thermal expansion is 17.8 µm/m·K (9.89 µin/in·°F).

Thermal Conductivity69 W/m·K39.9 BTU/hr·ft·°F
Specific Heat Capacity380 J/kg·K0.09 BTU/lb·°F
Thermal Expansion (CTE, 20–100 °C)17.8 µm/m·K9.9 µin/in·°F
Latent Heat of Fusion200 J/g86 BTU/lb
Max Service Temperature (continuous)200°C392 °F
Min Service Temperature-200°C-328 °F

Electrical3

C51000-H06 conducts electricity at 15 % IACS, worse than 54% of copper alloy grades.

Electrical Conductivity15 % IACS
Electrical Resistivity1.15×10⁻⁷ Ω·m4.53 µΩ·in
Magnetic Responsenon-magnetic

Chemical & Environmental3

Corrosion resistance is good (68/100), better than 69% of copper alloy grades.

Galvanic Potential (seawater, vs SCE)-0.3 V
Corrosion ResistanceGood68/100
Chemical Resistance SummaryGood in seawater, fresh water, neutral salts, steam and most organic acids; resists dezincification and is far less stress-corrosion prone than brass. Attacked by ammonia/amines, oxidizing acids (nitric), ferric/cupric salts, sulfides and strong alkali with oxidizers.

Sustainability4

Producing a kilogram of C51000-H06 takes about 68 MJ of energy and emits 4.3 kg of CO₂ — more than 83% of copper alloy grades. Typical recycled content is 40%.

Embodied Energy (primary production)68 MJ/kg29,235 BTU/lb
Embodied Carbon (primary production)4.3 kg CO₂/kg
Embodied Water260 L/kg31.2 gal/lb
Typical Recycled Content40%

Manufacturability8

C51000-H06's machinability is poor (25/100, worse than 85% of copper alloy grades); weldability fair (45/100); formability poor (30/100).

MachinabilityPoor25/100
Machinability Rating (AISI 1212 = 100 %)20%
WeldabilityFair45/100
Formability (cold)Poor30/100
CastabilityPoor30/100
Brazeability / SolderabilityExcellent90/100
PolishabilityVery good75/100
Anodizing Responsen/a — copper alloy; use tin, nickel, silver or gold plating instead

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

Other C51000 tempers and conditions

C51000 is also supplied in 8 other conditions. The full side-by-side table is on the C51000 overview.

Working with C51000-H06

Is C51000 easy to machine?

Gummy and abrasive to tooling — rating ~20 % of free-cutting brass; use sharp positive-rake carbide, high speed, light feed and good coolant, or switch to C54400 for turned parts.

Can C51000 be welded?

Best joined by soft soldering (excellent) or brazing/GTAW with phosphor-bronze filler; oxyacetylene welding is not recommended and hot-short cracking plus tin oxide inclusions must be controlled.

Can C51000 be formed, bent or molded?

Excellent cold formability in O/H01 tempers (deep draws, coining); harder tempers need generous bend radii, grain-direction control and a 175–230 °C stress-relief bake after forming to limit springback and relaxation.

What surface finishes work on C51000?

Not anodizable; takes bright tin, nickel, silver and gold plating readily, buffs to a warm bronze luster, and may be chemically blackened or lacquered for decorative use.

C51000 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. Nominal is the typical mid-range value.

ElementSpec limit (wt %)Nominal
Sn4.2 – 5.85
Pdeoxidizer, raises strength0.03 – 0.350.15
Zn≤ 0.3
Fe≤ 0.1
Pb≤ 0.05
CuCu + named elements 99.5 % min; Ag counted as Cubalance

C51000-H06 — frequently asked

What is C51000-H06 used for?

C51000-H06 is typically used for electrical connector contacts, precision strip springs and spring clips, switch and relay blades, diaphragms, bellows and fasteners and washers. In short: best spring-tempered bronze.

What is the yield strength of C51000-H06?

C51000-H06 has a typical yield strength of 560 MPa (81.2 ksi) and a tensile strength of 620 MPa (89.9 ksi) — stronger than 93% of copper alloy grades. Strength varies by condition: see the 9 listed tempers.

Is C51000-H06 easy to machine?

Not especially — machinability is rated poor (25/100, worse than 85% of copper alloy grades). Gummy and abrasive to tooling — rating ~20 % of free-cutting brass; use sharp positive-rake carbide, high speed, light feed and good coolant, or switch to C54400 for turned parts.

Can C51000-H06 be welded?

With care — weldability is rated fair (45/100). Best joined by soft soldering (excellent) or brazing/GTAW with phosphor-bronze filler; oxyacetylene welding is not recommended and hot-short cracking plus tin oxide inclusions must be controlled.

What surface finishes work on C51000-H06?

Not anodizable; takes bright tin, nickel, silver and gold plating readily, buffs to a warm bronze luster, and may be chemically blackened or lacquered for decorative use.

Can C51000-H06 be formed, bent or molded?

Excellent cold formability in O/H01 tempers (deep draws, coining); harder tempers need generous bend radii, grain-direction control and a 175–230 °C stress-relief bake after forming to limit springback and relaxation.

What is the maximum service temperature of C51000-H06?

C51000-H06 is rated for continuous use to about 200°C (392 °F). Strength falls off well before that limit — check the elevated-temperature data for load-bearing parts.

What is the difference between C51000-O and C51000-H10?

O is the default condition — pick for deep drawing, severe bending or forming before a final stress-relief/age. H10: maximum-strength strip for the highest contact forces in thin gauges; forming essentially limited to flat blanking. Yield strength is 140 MPa in O versus 630 MPa in H10.

Can FabDigit make parts in C51000-H06?

Yes — C51000-H06 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. ASTM B103/B103M — Phosphor Bronze Plate, Sheet, Strip and Rolled BarASTM International (2019)
  2. ASTM B139/B139M — Phosphor Bronze Rod, Bar and ShapesASTM International (2017)
  3. C51000 alloy datasheetCopper Development Association (copper.org) (2023)
  4. ASM Handbook Vol. 2 — Properties and Selection: Nonferrous AlloysASM International (1990)
  5. EN 1654 / CW451K CuSn5 strip for springs and connectorsCEN (2019)
  6. GB/T 2059 / GB/T 2049 (2017)

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.