Gold Binary Eutectic Alloys - Melting Points

Calculator for melting points of gold binary eutectic alloys. View composition data and convert between temperature scales (Kelvin, Celsius, Fahrenheit) for various Au-based alloys including Bismuth, Cadmium, Cerium, Germanium, Lanthanum, Magnesium, Manganese, Sodium, Lead, Antimony, Silicon, Tin, Tellurium, Thallium, and Uranium.

Alloy ComponentElement SymbolWeight of Component (%)Melting Point (K)Melting Point (°C)Melting Point (°F)
BismuthBi85514241466
CadmiumCd57773500932
CeriumCe81793520968
GermaniumGe12629356673
LanthanumLa788345611042
MagnesiumMg628485751067
ManganeseMn1212339601760
Sodium (Natrium)Na2.311498761609
Lead (Plumbum)Pb85488215419
Antimony (Stibium)Sb24.8633360680
SiliconSi3.15636363685
Tin (Stannum)Sn19.9551278532
TelluriumTe83689416781
ThalliumTl73404131268
UraniumU1611288551571
Calculator

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Results

Temperature (°C)-- °C
Temperature (K)-- K

Gold Binary Eutectic Alloys

A eutectic mixture is the specific composition of two or more elements where the melting point reaches its minimum value. This table presents binary gold-based eutectic alloys with their composition by weight and corresponding melting points in Kelvin (K), Celsius (°C), and Fahrenheit (°F).

Temperature Conversion Formula

Celsius to Fahrenheit: T (°C) = 5/9 × [T (°F) - 32]

Key Properties

  • The melting point of an alloy depends on the relative proportions of its components
  • Eutectic compositions represent the lowest possible melting point for that alloy system
  • Gold alloys with bismuth and lead have particularly low eutectic melting points
  • Gold alloys with manganese and sodium have higher melting points
Gold Binary Eutectic Alloys - Melting Points | MEPKit Engineering Tools | MEPKit