International Equivalent Standards

NegaraStandard CodeEquivalent DesignationComposition SimilarityPerformance Match
Amerika SerikatUNS C95510Aluminum Bronze100%Reference Standard
JermanDIN CuAl10Ni5Fe4Nickel Aluminum Bronze95%High
InggrisBS 2M40Naval Brass90%Substantial
JepangJIS H5120CAC40688%Bagus
PerancisNF A57-101CuAl10Ni5Fe92%Very Good

Chemical Composition Analysis

Typical Composition Range (%)

ElemenComposition Range
Tembaga75.0 – 82.0
Aluminium8.5 – 11.5
Nikel4.0 – 6.0
Besi3.5 – 5.5
Manganese<1.0

Mechanical Properties Comparison

PropertyTypical ValuePerformance Characteristic
Daya tarik550 – 700 MPaExtremely High
Kekuatan hasil250 – 400 MPaSuperior
Pemanjangan12 – 20%Moderate
Kekerasan160 – 220 HBHigh

Performance Characteristics

Key Attributes

  • Exceptional Corrosion Resistance
  • High Strength-to-Weight Ratio
  • Excellent Wear Resistance
  • Good Fatigue Strength
  • Superior in Marine Environments

Critical Application Domains

Industry SectorTypical Applications
Marine EngineeringPropeller Shafts, Marine Fittings
Offshore Oil & GasValve Components, Pumps
luar angkasaPrecision Mechanical Parts
Naval DefenseSeawater-Exposed Equipment
Heavy ManufacturingHigh-Stress Mechanical Components

Environmental Performance

Exposure ConditionPerformance Rating
SeawaterBagus sekali
Chemical EnvironmentsVery Good
High TemperatureBagus
Corrosive Industrial SettingsSuperior

Comparative Analysis with Similar Alloys

CiriC95510C95800C95200
KekuatanHighestHighModerate
Tahan korosiBagus sekaliVery GoodBagus
CostModerate-HighHighModerate
Typical ApplicationsSpecializedExtreme ConditionsGeneral Purpose

Selection Criteria

Recommended When Requiring:

  • Extreme Corrosion Resistance
  • High Mechanical Strength
  • Performance in Harsh Environments
  • Critical Mechanical Components

Economic Considerations

Cost FactorComparative Analysis
Base Material Cost20-30% Premium
Long-Term PerformanceCost-Effective
Replacement FrequencyLow
Maintenance RequirementsMinimal

Emerging Technological Trends

  1. Advanced Surface Treatments
  2. Nano-Structured Metallurgy
  3. Additive Manufacturing Compatibility
  4. Enhanced Corrosion Protection Techniques

Professional Recommendation

Critical Selection Guidance:

  • Conduct comprehensive application-specific testing
  • Consult metallurgical experts
  • Consider total lifecycle performance
  • Evaluate environmental conditions thoroughly

Conclusion

C95510 represents a high-performance aluminum bronze alloy with exceptional characteristics, particularly suited for demanding engineering applications requiring superior strength and corrosion resistance.

Final Insight: Precision in material selection determines ultimate system performance and reliability.