MAT GRADES • 105 VERIFIED MATERIALS • SOURCE-LINKED PROPERTIES

Material Comparison

Compare verified engineering materials side by side with condition-specific mechanical properties.

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Material A (Baseline)
Material B (Comparison)
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Temper & Metallurgical Context Qualification:The selected records contain different or missing source contexts. Values shown in separate rows are not directly matched. Typical and estimated values are not guaranteed minima; matching context alone does not establish interchangeability.
1. Identity, Classification & Standards
ParameterSterling Silver 925Fine Silver 999
Material FamilySilver & Silver AlloysSilver & Silver Alloys
SubfamilySterling SilverFine Silver
UNS DesignationP07925P07010
ISO DesignationAg925Ag99.9
ASTM DesignationB742 Grade 92.5Grade 99.90
DIN DesignationAg925Ag99.9
W-Nr Designation2.12132.1211
UK-HALLMARK Designation925999
SPECIFICATION DesignationASTM B742 Standard Specification for Fine Silver Contact Material (Grade 92.5)ASTM B742 Standard Specification for Fine Silver Contact Material
2. Chemical Composition Limits (wt %)Source-specific limits and typical values
ElementSterling Silver 925Fine Silver 999
Ag (Silver)≥ 92.5%≥ 99.9%
Cu (Copper)7.2 – 7.5%≤ 0.08%
Fe (Iron)—≤ 0.01%
Pb (Lead)—≤ 0.015%
Bi (Bismuth)—≤ 0.005%
3. Physical Properties
PropertySterling Silver 925Fine Silver 999
Density · TYPICAL · 20 °CUnit: g/cm³10.36 g/cm³10.49 g/cm³
4. Contextual Mechanical PropertiesUnit: SI
Mechanical ParameterSterling Silver 925Annealed (O Temper)Fine Silver 999Annealed (Soft)
Modulus of Elasticity · TYPICALUnit: GPa82 GPa76 GPa
Poisson's Ratio · TYPICALUnit: dimensionless0.36 dimensionless0.37 dimensionless
Yield Strength (0.2% Offset) · Strip, Sheet, Wire · Annealed (O Temper) · TYPICALUnit: MPa≥ 125 MPa— MPa
Yield Strength (0.2% Offset) · Strip, Sheet, Wire, Bar · Annealed (Soft) · TYPICALUnit: MPa— MPa≥ 40 MPa
Ultimate Tensile Strength · Strip, Sheet, Wire · Annealed (O Temper) · TYPICALUnit: MPa≥ 220 MPa— MPa
Ultimate Tensile Strength · Strip, Sheet, Wire, Bar · Annealed (Soft) · TYPICALUnit: MPa— MPa≥ 125 MPa
Elongation at Break · Strip, Sheet, Wire · in 50 mm (2 in) · Annealed (O Temper) · TYPICALUnit: %≥ 28 %— %
Elongation at Break · Strip, Sheet, Wire, Bar · in 50 mm (2 in) · Annealed (Soft) · TYPICALUnit: %— %≥ 40 %
5. Electrical & Thermal Conductive Properties
PropertySterling Silver 925Fine Silver 999
Electrical Conductivity · TYPICAL · 20 °CCategory: ELECTRICAL • Unit: % IACS84 % IACS106 % IACS
Electrical Resistivity · TYPICAL · 20 °CCategory: ELECTRICAL • Unit: nΩ·m20.5 nΩ·m15.9 nΩ·m
Thermal Conductivity · TYPICAL · 20 °CCategory: THERMAL • Unit: W/(m·K)410 W/(m·K)429 W/(m·K)
Melting Range (Solidus-Liquidus) · RANGECategory: THERMAL • Unit: °C779–893 °C— °C
Melting Point · TYPICALCategory: THERMAL • Unit: °C— °C962 °C
Specific Heat Capacity · TYPICAL · 20 °CCategory: THERMAL • Unit: J/(kg·K)— J/(kg·K)235 J/(kg·K)
6. Hardness Evaluation (Discrete Scales Preserved)No cross-scale mathematical conversion
Hardness ScaleSterling Silver 925Fine Silver 999
HV Hardness · Annealed (O Temper) · TYPICAL62–78 HV25–35 HV
7. Fabrication & Processing Comparison
Sterling Silver 925 Characteristics:

Machinability: Rated at approximately 45% relative to C36000. Chips shear more cleanly than fine silver; tool life is good when using positive rake carbide inserts and flood oil/emulsion coolant.

Weldability: Readily brazed using silver solder (AWS BAg-1 to BAg-7). Subject to firescale (subsurface cuprous oxide Cu2O formation) when heated in oxidizing atmospheres without flux.

Formability / Cold Working: Excellent cold working characteristics; readily stamped, coined, and rolled with periodic annealing at 600°C.

Heat Treatment & Annealing: Precipitation hardenable: Solution heat treat at 740°C to 760°C for 15-30 minutes and rapid water quench; artificial age at 280°C to 300°C for 45-60 minutes to achieve peak hardness of 110-140 HV.

Fine Silver 999 Characteristics:

Machinability: Rated at approximately 30% relative to free-cutting brass (C36000). Highly ductile and gummy; produces long continuous chips. Requires sharp high-rake carbide or diamond tooling, light feed rates, and continuous flood coolant to prevent tearing and galling.

Weldability: Weldable with gas tungsten arc (GTAW/TIG) and resistance welding; requires significant preheat and higher heat input due to extremely high thermal diffusivity (1.74 cm²/s). Readily brazed with silver-bearing fluxed fillers.

Formability / Cold Working: Exceptional cold workability. Capable of severe deep drawing, spinning, wire drawing down to micro-diameters, and cold swaging without intermediate annealing.

Heat Treatment & Annealing: Full recrystallization annealing occurs between 200°C and 300°C (392°F to 572°F) for 30 minutes, followed by rapid water quench or air cooling to preserve soft annealed ductility.