add permittivity, compressive strength and annotation for mechanical properties and seven new materials
This commit is contained in:
@@ -36,7 +36,7 @@
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"alpha": [23.3, "m/µm/K"],
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"alpha": [23.3, "µm/m/K"],
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"lambda": ["110-130", "W/m/K"],
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"cp": [900, "J/kg/K"]
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}
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@@ -40,7 +40,8 @@
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"p_b(T)": "Vapor pressure \\(p\\) in pascals: \\[\\log(p/Pa) = 5.006 + A + BT^{-1} + C\\log{T} + DT^3\\] where temperature T in K; p. 6-72",
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"Electromagnetic Data": {
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"chi_m": "Magnetic susceptibility; Molar susceptibility \\[\\chi\\ti{m} = \\kappa V\\ti{m} = \\kappa M / \\rho \\] where \\(\\kappa\\) is the volume susceptibility, \\(V\\ti{m}\\) is the molar volume of the substance, \\(M\\) the molar mass, and \\(\\rho\\) the mass density. \\(\\kappa = \\bold{M}/\\bold{H}\\) where \\(\\bold{H}\\) is the magnetic filed and \\(\\bold{M}\\) is magnetic moment per unit volume.",
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"sigma": "Electrical conductivity σ"
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"sigma": "Electrical conductivity σ",
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"epsilon_r": "Relative permittivity (aka dielectric constant), default values at 18 °C and 50 Hz"
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},
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"Mechanical Properties": {
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"T": "Reference temperature",
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@@ -56,6 +57,7 @@
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"R_p10": "load corresponding to a no proportional charge equal to a 1% of length L_0"
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},
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"R_m": "Ultimate tensile strength; it is the ratio between the maximum applied force and the original cross-sectional area of the specimen",
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"R_m'": "Compressive strength, resistance to pressure",
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"Elongation": {
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"A": "permanent elongation of length L_0, expressed in per cent of length L_0",
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"A_0": "permanent elongation for proportional specimens with length L_0 equal to 100 mm (used for diameter lower than 4 mm)",
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@@ -72,7 +74,8 @@
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"Anodising": {
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"AH": "Hard anodising rating",
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"ASA": "Sulphuric acid (Decorative Type II) anodising rating"
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}
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},
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"Annotation": "Annotation"
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},
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"Heat treatment": {
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"Hardening": "Precipitation hardening or age hardening or particle hardening",
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21
src/data/Mg.json
Executable file
21
src/data/Mg.json
Executable file
@@ -0,0 +1,21 @@
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{
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"Name": "Magnesium",
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"Formula": "Mg",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [1738, "kg/m³"],
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"E": [45, "GPa"],
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"G": [17, "GPa"],
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"K": [45, "GPa"],
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"nu": 0.29,
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"Hardness": {
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"HM": 2.5,
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"HB": [260, "MPa"]
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}
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"lambda": [156, "W/m/K"]
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}
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}
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}
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15
src/data/PA.json
Executable file
15
src/data/PA.json
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@@ -0,0 +1,15 @@
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{
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"Name": "Polyamide",
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"Formula": "PA",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [1140, "kg/m³"],
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"E": [3, "GPa"],
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"R_m": [2.3, "MPa"]
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"lambda": [0.25, "W/m/K"]
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}
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}
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}
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18
src/data/Si.json
Executable file
18
src/data/Si.json
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@@ -0,0 +1,18 @@
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{
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"Name": "Silicon",
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"Name_de": "Silicium, Silizium",
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"Formula": "Si",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [2329, "kg/m³"],
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"E": ["159±29", "GPa"],
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"G": ["65.5±14.5", "GPa"],
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"K": [97.6, "GPa"],
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"nu": "0.172±0.108"
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"lambda": [149, "W/m/K"]
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}
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}
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}
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26
src/data/SiO2-Al2O3-MgO-K2O-Na2O-F.json
Executable file
26
src/data/SiO2-Al2O3-MgO-K2O-Na2O-F.json
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@@ -0,0 +1,26 @@
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{
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"Name": "VITRONIT",
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"Formula": "SiO2-Al2O3-MgO-K2O-Na2O-F",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [2660, "kg/m³"],
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"E": [74.5, "GPa"],
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"G": [29, "GPa"],
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"nu": 0.24,
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"R_m'": [450, "MPa"],
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"Annotation": "Similar to Macor"
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"alpha": ["10.4±0.9", "µm/m/K"],
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"lambda": [1.72, "W/m/K"],
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"cp": [789, "J/kg/K"]
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}
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},
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"Source": [
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{
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"Type": "Web",
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"URL": "http://www.vitron.de/spanend-bearbeitbare-Keramik/Daten-Glaskeramik.php"
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}
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]
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}
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24
src/data/SiO2-B2O3.json
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24
src/data/SiO2-B2O3.json
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@@ -0,0 +1,24 @@
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{
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"Name": "BOROFLOAT® 33, Borosilicate glass",
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"Formula": "SiO2-B2O3",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [2230, "kg/m³"],
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"E": [64, "GPa"],
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"nu": 0.2,
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"R_m": [25, "MPa"],
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"Annotation": "T_Max<10h = 500 °C; T_Max>=10h = 450 °C"
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"alpha": [3.25, "µm/m/K"],
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"lambda": [1.2, "W/m/K"]
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}
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},
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"Source": [
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{
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"Type": "Web",
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"URL": "http://www.us.schott.com/borofloat/english/attribute/mechanical/index.html"
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}
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]
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}
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17
src/data/SiO2-MgO-Al2O3-K20-B2O3-F.json
Executable file
17
src/data/SiO2-MgO-Al2O3-K20-B2O3-F.json
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@@ -0,0 +1,17 @@
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{
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"Name": "Macor",
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"Formula": "SiO2-MgO-Al2O3-K2O-B2O3-F",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [2520, "kg/m³"],
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"E": [66.9, "GPa"],
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"nu": 0.29,
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"R_m'": [350, "MPa"]
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"alpha": [9.3, "µm/m/K"],
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"lambda": [1.46, "W/m/K"]
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}
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}
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}
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28
src/data/SiO2.json
Executable file
28
src/data/SiO2.json
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@@ -0,0 +1,28 @@
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{
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"Name": "Fused quartz",
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"Name_de": "Quarzglas",
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"Formula": "SiO2",
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"Electromagnetic Data": {
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"epsilon_r": ["7±1", "F/m"]
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},
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [2203, "kg/m³"],
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"E": [71.4, "GPa"],
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"G": [31.26, "GPa"],
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"K": [37, "GPa"],
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"nu": 0.17,
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"R_m": [48.3, "MPa"],
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"R_m'": [">1100", "MPa"],
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"Hardness": {
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"HM": "5.9±0.6"
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}
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"alpha": [0.55, "µm/m/K"],
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"lambda": [1.3, "W/m/K"],
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"cp": [830, "J/kg/K"]
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}
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}
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}
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@@ -17,7 +17,8 @@
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},
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"Electromagnetic Data": {
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"chi_m": [16.5e-6, "cm³/mol"],
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"sigma": ["16-18", "m/Ω/mm²"]
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"sigma": ["16-18", "m/Ω/mm²"],
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"epsilon_r": ["7±1", "F/m"]
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},
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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@@ -30,23 +31,27 @@
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"R_p02": ["110-130", "MPa"]
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},
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"R_m": ["230-290", "MPa"],
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"R_m'": [">1100", "MPa"],
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"Elongation": {
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"A_5": ["10-15", "%"]
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},
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"Hardness": {
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"HM": 2.5,
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"HB": [260, "MPa"],
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"HBW": ["68-75", "2.5/62.5"]
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},
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"Anodising": {
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"AH": 2,
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"ASA": 4
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}
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},
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"Annotation": "T_Max<10h = 500 °C; T_Max>=10h = 450 °C"
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},
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"Heat treatment": {
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"Temper": "homogenized and stress relieved, O3"
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"alpha": [23.3, "m/µm/K"],
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"alpha": [23.3, "µm/m/K"],
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"lambda": ["110-130", "W/m/K"],
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"cp": [900, "J/kg/K"]
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}
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