This document provides a comprehensive comparison between the UNS C95500 and UNS C95400 copper alloys, detailing their chemical composition, mechanical properties, temperature performance, industry applications, shapes and sizes, production standards, processing techniques, advantages and disadvantages, and similar products, all presented in table formats.

Composition chimique

ÉlémentUNS C95500 Content (%)UNS C95400 Content (%)
Cuivre, Cu78.083.0
Aluminium, Al10.0 – 11.510.0
Nickel, Ni3.0 – 5.501.0 – 1.5
Fer, Fe3,0 – 5,03,0 – 5,0
Manganèse, Mn3.500.5

Propriétés mécaniques

UNS C95500

PropriétéMétriqueImpérial
Hardness, Brinell (sand cast)192192
Résistance à la traction585 – 660 MPa84800 – 95700 psi
Limite d'élasticité240 – 360 MPa34800 – 52200 psi
Allongement à la rupture5.00% – 25.00%5.00% – 25.00%
Compressive Strength240 – 690 MPa34800 – 100000 psi

UNS C95400

PropriétéMétriqueImpérial
Dureté, Brinell170 – 210170 – 210
Résistance à la traction380 – 550 MPa55000 – 80000 psi
Limite d'élasticité200 – 300 MPa29000 – 43500 psi
Allongement à la rupture10.00% – 30.00%10.00% – 30.00%
Compressive Strength200 – 500 MPa29000 – 72500 psi

Performances à différentes températures

PropriétéC95500C95400
Coefficient de dilatation thermique16.2 µm/m°C16,5 µm/m°C
Conductivité thermique42.0 W/mK35.0 W/mK

Applications industrielles

ApplicationC95500C95400
Composants marinsShafting, fittingsPropellers, valves
ÉlectriqueElectrical connectorsComposants électriques
AutomobileTransmission partsGears and bushings

Formes et tailles

FormeC95500C95400
Standard FormsRods, tubes, castingsRods, plates, tubes
Custom SizesAvailable on requestAvailable on request

Normes de production

StandardC95500C95400
ASTHMEB148, B271B148, B271
MILNot applicableMIL B-24480

Processing Techniques

Soudage

TechniqueC95500C95400
Méthodes préféréesBrazing, solderingBrazing, soldering
Non recommandéSoudage à l'oxyacétylèneSoudage à l'oxyacétylène

Usinabilité

Alloy Rating (C36000 = 100)C95500C95400
Cote d'usinabilité50%60%

Traitement thermique

Traitement thermiqueC95500C95400
Stress Relieving Temperature316°C (600°F)316°C (600°F)
Reaction to Heat TreatmentDoes not react significantlySlight improvement in strength

Avantages et inconvénients

C95500

AvantagesDésavantages
High strength and hardnessHigher cost per unit
Good fatigue resistanceMore complex processing

C95400

AvantagesDésavantages
Excellent corrosion resistanceLower strength than C95500
Bonne usinabilitéLimited applications in high-stress environments

produits similaires

produits similairesC95500C95400
Other Copper AlloysC95600, C95200C95200, C93200
Bronze AlloysAluminum bronze, tin bronzeAluminum bronze, tin bronze

This comparison provides a detailed overview of the properties and characteristics of UNS C95500 and UNS C95400 copper alloys, assisting in material selection for specific applications. If you have further inquiries or require additional information, please feel free to ask!