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Chemical composition
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Ag (Silver), %
Al (Aluminium), %
Al + Mg (Aluminium + Magnesium), %
As (Arsenic), %
Au (Gold), %
B (Bor), %
Ba (Barium), %
Be (Beryllium), %
Bi (Bismuth), %
C (Carbon), %
Ca (Calcium), %
Cd (Cadmium), %
Ce (Cerium), %
Cl (Chlorine), %
Co (Cobalt), %
Cr (Chrome), %
Cu (Copper), %
Cu + P (Copper + Phosphorus), %
Cu+Ag (Copper+Silver), %
Dy (Dysprosium), %
Er (Erbium), %
Eu (Europium), %
F (Fluorine), %
Fe (Iron), %
Ga (Gallium), %
Gd (Gadolinium), %
Ge (Germanium), %
H (Hydrogen), %
Hf (Hafnium), %
Hg (Mercury), %
Ho (Holmium), %
In (Indium), %
Ir (Iridium), %
La (Lanthanum), %
Li (Li), %
Lu (Lutetium), %
Mg (Magnesium), %
Mn (Manganese), %
Mo (Molybdenum), %
N (Nitrogen), %
Na (Sodium), %
Nb (Niobium), %
Nd (Neodymium), %
Ni (Nickel), %
Ni + Co (Nickel + Cobalt), %
O (Oxygen), %
Os (Osmium), %
Oxide Th (Thorium Oxide), %
P (Phosphorus), %
Pb (Lead), %
Pb+Cd (Lead + Cadmium), %
Pd (Palladium), %
Pm (Promethium), %
Pr (Praseodymium), %
Pt (Platinum), %
Re (Rhenium), %
Rh (Rhodium), %
Ru (Ruthenium), %
S (Sulfur), %
Sb (Antimony), %
Sc (Scandium), %
Se (Selenium), %
Si (Silicon), %
Sm (Samarium), %
Sn (Tin), %
Sr (Strontium), %
Ta (Tantalum), %
TaC (Tantalum carbide), %
Tb (Terbium), %
Te (Tellurium), %
Th (Thorium), %
Ti (Titan), %
Ti + Cr + Zr (Titanium + Chrome + Zirconia), %
TiC (Titanium carbide), %
Tl (Thallium), %
Tm (Thulium), %
U (Uranus), %
V (Vanadium), %
W (Tungsten), %
WC (Wolfram carbide), %
Y (Yttrium), %
Yb (Ytterbium), %
Zn (Zinc), %
Zr (Zirconium), %
Zr+Hf, %
РЗЭ (Rare earth elements), %
Physical characteristics
Specify the same values in both fields to search for the exact number
$$E\cdot 10^{9}$$
(Elastic modulus),
$$MPa$$
$$\alpha\cdot 10^{6}$$
(Coefficient of thermal (linear) expansion (range 20°C–T)),
$$K^{-1}$$
$$\varkappa$$
(Coefficient of thermal conductivity (the heat capacity of the material)),
$$\frac{W}{m\cdot K}$$
$$\rho$$
(The density of the material),
$$\frac{kg}{m^3}$$
$$c\cdot 10^{-3}$$
(The specific heat of the material (range 20°C–T)),
$$\frac{J}{kg\cdot K}$$
$$R\cdot 10^{-6}$$
(Electrical resistivity),
$$\Omega\cdot m$$
Mechanical properties
Specify the same values in both fields to search for the exact number
$$\sigma_{Y}$$
(Yield strength),
$$MPa$$
$$\sigma_{0.2}$$
(Tensile stress required to produce a total elongation of 0.2%),
$$MPa$$
$$\sigma_{0.5}$$
(Tensile stress required to produce a total elongation of 0.5%),
$$MPa$$
$$S_{e}$$
(Endurance limit),
$$MPa$$
$$\sigma _{U}$$
(Ultimate tensile strength),
$$MPa$$
$$\sigma_{P}$$
(Proportionality limit),
$$MPa$$
$$\epsilon_L$$
(Elongation at break (longitudinal)), %
$$\epsilon_{L (L_0 = 80 mm)}$$
(Elongation at break (longitudinal) (for L
0
= 80 mm)), %
$$\epsilon_{L (L_0 = 5.65\sqrt{S_o})}$$
(Elongation at break (longitudinal) (for L
0
= 5.65√So)), %
$$\epsilon_T$$
(Elongation at break (transverse)), %
$$\epsilon_{T (L_0 = 80 mm)}$$
(Elongation at break (transverse) (for L
0
= 80 mm)), %
$$\epsilon_{T (L_0 = 5.65\sqrt{S_o})}$$
(Elongation at break (transverse) (for L
0
= 5.65√So)), %
$$\epsilon_P$$
(Elongation at break (parallel)), %
$$\epsilon_{P (L_0 = 80 mm)}$$
(Elongation at break (parallel) (for L
0
= 80 mm)), %
$$\epsilon_{P (L_0 = 5.65\sqrt{S_o})}$$
(Elongation at break (parallel) (for L
0
= 5.65√So)), %
$$R_{eH}$$
(Upper yield point),
$$MPa$$
$$\psi$$
(Reduction in cross section on fracture), %
$$KV_{L}$$
(Impact energy (longitudinal)),
$$J$$
$$KV_{T}$$
(Impact energy (transverse)),
$$J$$
$$KU$$
(Impact energy),
$$J$$
$$KCU\cdot 10^{3}$$
(Impact toughness),
$$\frac{J}{m^2}$$
Hardness
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Brinell hardness number, HBW
Твёрдость по Викерсу, HV
Твёрдость по Роквеллу, HRC
Casting and technological parameters
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melting point (The temperature at which solid crystalline body makes the transition to the liquid state and Vice versa), °C
linear shrinkage (The difference between model dimensions and the model casting), %
the temperature of the casting (The temperature of the molten polymer is extruded from the heating cylinder into the mold), °C
Hot working temperature (The temperature at which the plastic-deformed metal recrystallizes during the pressure treatment), °C
annealing temperature (The temperature at which the processes return recrystallization and homogenization of the metal to reduce its hardness for subsequent machining), °C
the crystallization temperature (The temperature at which the free energies of liquid and solid States of the metal is equal to), °C
temperature fill (The temperature at which the fill metal in the form), °C
melting point, solidus (The temperature at which melts the low melting component), °C
melting point, liquidus (The temperature at which equilibrium falls first crystal), °C
Boiling temperature (The boiling point, boiling point is the temperature at which the liquid under constant pressure boils.), °C
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