Chemical Composition Comparison

nach Extrusionsabschrecken und künstlicher Alterung HBS≥80C95200 (%)C95800 (%)Variation Significance
Kupfer81.5 – 84.578,0 – 82,0Nickel content difference
Aluminium8.5 – 10.58.5 – 10.5Identical range
nach Extrusionsabschrecken und künstlicher Alterung HBS≥803.5 – 5.53,0 – 5,0Slight compositional variation
Nickel<1.04.0 – 6.0Key distinguishing factor
Mangan<1.0<1.0Consistent across alloys

Mechanical Performance Comparison

Performance IndicatorC95200C95800Performance Advantage
Zerreißfestigkeit490-580 MPa550-690 MPaC95800 Superior
Streckgrenze240-340 MPa310-410 MPaC95800 Higher
Verlängerung15-25%12-20%C95200 Slightly Better
Härte140-180 HB160-200 HBC95800 Harder

Application Domains Comparison

CriteriaC95200C95800
Primary IndustriesMarine Engineering, General MachineryOffshore, Naval, Chemical Processing
KorrosionsbeständigkeitGutExzellent
Environmental SuitabilityMild to ModerateHarsh, Corrosive Environments
Cost LevelBaseline20-30% Premium

Performance Characteristics Matrix

FeatureC95200C95800
BearbeitbarkeitExzellentGut
StärkeMäßigHoch
VerschleißfestigkeitGutVorgesetzter
KosteneffizienzHochMäßig

Selection Criteria Decision Matrix

AuswahlfaktorRecommend C95200Recommend C95800
Budget ConstraintsTight BudgetFlexible Budget
Performance RequirementsStandardExtreme
Corrosion EnvironmentMildSevere
Mechanischer StressNiedrig bis mittelHoch

Comparative Cost and Performance Index

Performance MetricC95200C95800Comparative Index
Relative Kosten100 %120-130%Cost Premium
Strength Index100125Performance Multiplier
KorrosionsbeständigkeitGutExzellentResistance Factor
Application VersatilityHochSpecializedAdaptability

Detailed Technical Conclusion

🔍 Key Insights:

  • C95200: Versatile, cost-effective aluminum bronze
  • C95800: High-performance nickel aluminum bronze
  • Selection depends on specific engineering requirements

Recommendation: Conduct comprehensive application-specific testing to validate alloy performance.