add thirteen new materials
This commit is contained in:
23
src/data/Cu.json
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23
src/data/Cu.json
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{
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"Name": "Copper",
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"Name_de": "Kupfer",
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"Formula": "Cu",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [8920, "kg/m³"],
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"E": ["115±15", "GPa"],
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"G": [48, "GPa"],
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"K": [140, "GPa"],
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"nu": "0.345±5‰",
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"Hardness": {
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"HM": 3,
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"HB": [874, "MPa"],
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"HV": [369, "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": [400, "W/m/K"]
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}
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}
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}
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27
src/data/Cu99.95.json
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27
src/data/Cu99.95.json
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{
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"Name": "Cu99.95",
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"Formula": "Cu99.95",
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"Standard": {
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"ISO": "Cu-OF, CW008A",
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"WERKSTOFFNUMMER": "OF-Cu, 2.0040",
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"ASTM": "C10200",
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"Type": "Pure copper"
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},
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"Mechanical Properties": {
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"Vacuum": "yes"
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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.steelnumber.com/en/steel_alloy_composition_eu.php?name_id=1263"
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},
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{
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"Type": "Web",
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"URL": "https://www.aurubis.com/binaries/content/assets/aurubisrelaunch/files/datenblatter/cu-of/cu-of-c10200_de.pdf"
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},
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{
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"Type": "Web",
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"URL": "https://www.alcumet.de/daten/Datenblatt%20-%20OF-Cu%20-%20CW008A.pdf"
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}
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]
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}
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22
src/data/Cu99.99.json
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22
src/data/Cu99.99.json
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{
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"Name": "Cu99.99",
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"Formula": "Cu99.99",
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"Standard": {
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"ISO": "Cu-OFE, CW009A",
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"ASTM": "C10100",
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"Type": "Pure copper"
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},
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"Mechanical Properties": {
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"Vacuum": "yes"
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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.mkm.eu/files/pdfs/MKMHE_Factsheet%20CU-OFE%20C10100_EN_V03.pdf"
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},
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{
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"Type": "Web",
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"URL": "https://www.kupferinstitut.de/fileadmin/user_upload/kupferinstitut.de/de/Documents/Shop/Verlag/Downloads/Werkstoffe/Datenblaetter/Kupfer/Cu-OFE.pdf"
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}
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]
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}
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23
src/data/CuP0.005.json
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23
src/data/CuP0.005.json
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{
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"Name": "CuP0.005",
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"Formula": "CuP0.005",
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"Standard": {
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"ISO": "Cu-HCP, CW021A",
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"WERKSTOFFNUMMER": "SE-Cu, 2.0070",
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"ASTM": "C10300",
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"Type": "Pure copper"
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},
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"Mechanical Properties": {
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"Vacuum": "yes"
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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.steelnumber.com/en/steel_alloy_composition_eu.php?name_id=1274"
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},
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{
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"Type": "Web",
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"URL": "https://www.abmkupral.hu/letoltes/certec/Cu-HCP.pdf"
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}
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]
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}
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23
src/data/CuP0.03.json
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23
src/data/CuP0.03.json
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{
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"Name": "CuP0.03",
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"Formula": "CuP0.03",
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"Standard": {
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"ISO": "Cu-DHP, CW024A",
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"WERKSTOFFNUMMER": "SF-Cu, 2.0090",
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"ASTM": "C12200",
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"Type": "Pure copper"
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},
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"Mechanical Properties": {
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"Vacuum": "yes"
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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.steelnumber.com/en/steel_alloy_composition_eu.php?name_id=1280"
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},
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{
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"Type": "Web",
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"URL": "https://www.abmkupral.hu/letoltes/certec/Cu-DHP.pdf"
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}
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]
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}
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18
src/data/FeC0.02Cr17Ni13Mo3.json
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18
src/data/FeC0.02Cr17Ni13Mo3.json
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{
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"Name": "FeC0.02Cr17Ni13Mo3",
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"Formula": "FeC0.02Cr17Ni13Mo3",
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"Standard": {
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"ISO": "X2CrNiMo17-13-3",
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"WERKSTOFFNUMMER": "1.4429",
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"SAE": "316LN",
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"Type": "Austenitic stainless steel grades"
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},
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"Electromagnetic Data": {
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"mu_r": ["<=1.005"]
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},
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"Vacuum": "yes",
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"Annotation": "Usually not available as sheet metal. For safety-related components that can not be cleaned regularly or are wetted by water."
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}
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}
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17
src/data/FeC0.02Cr18Ni14Mo3.json
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17
src/data/FeC0.02Cr18Ni14Mo3.json
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{
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"Name": "FeC0.02Cr18Ni14Mo3",
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"Formula": "FeC0.02Cr18Ni14Mo3",
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"Standard": {
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"ISO": "X2CrNiMo18-14-3",
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"WERKSTOFFNUMMER": "1.4435",
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"SAE": "316L",
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"Type": "Austenitic stainless steel grades"
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},
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"Electromagnetic Data": {
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"mu_r": ["<=1.005"]
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},
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"Vacuum": "yes"
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}
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}
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@@ -10,6 +10,7 @@
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"EN-AW": "DIN EN 573-3 Standard Aluminium and aluminium alloys",
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"WERKSTOFFNUMMER": "DIN Werkstoffnummer",
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"SAE": "AISI/SAE steel grade. The 'L' in SAE grades means that the carbon content of the alloy is below 0.03%.",
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"ASTM": "ASTM International (American Society for Testing and Materials)",
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"Type": [
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"Aluminium:",
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"- Pure aluminium",
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@@ -18,7 +19,9 @@
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"Steel:",
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"- Austenitic stainless steel grades",
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"- Martensitic stainless steel grades",
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"- Ferritic stainless steel grades"
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"- Ferritic stainless steel grades",
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"Copper:",
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"- Pure copper"
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]
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},
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"Mol. weight": "Molecular weight (relative molar mass)",
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@@ -58,8 +61,8 @@
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"R_p02": "load corresponding to a no proportional charge equal to a 0.2% of length L_0",
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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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"R_m": "(aka Flexural strength for brittle materials, de: Biegefestigkeit) 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'": "(de: Druckfestigkeit) 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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12
src/data/Mo.json
Executable file
12
src/data/Mo.json
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{
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"Name": "Molybdenum",
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"Name_de": "Molybdän",
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"Formula": "Mo",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [10280, "kg/m³"],
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"Hardness": {
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"HM": 5.5
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}
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}
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}
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22
src/data/Ni.json
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22
src/data/Ni.json
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{
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"Name": "Nickel",
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"Formula": "Ni",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [8908, "kg/m³"],
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"E": [200, "GPa"],
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"G": [76, "GPa"],
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"K": [180, "GPa"],
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"nu": 0.31,
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"Hardness": {
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"HM": 4,
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"HB": [700, "MPa"],
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"HV": [638, "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": [90.9, "W/m/K"]
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}
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}
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}
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22
src/data/Pb.json
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22
src/data/Pb.json
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{
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"Name": "Lead",
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"Name_de": "Blei",
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"Formula": "Pb",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [11340, "kg/m³"],
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"E": [16, "GPa"],
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"G": [5.6, "GPa"],
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"K": [46, "GPa"],
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"nu": 0.44,
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"Hardness": {
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"HM": 1.5,
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"HB": [38.3, "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": [35.3, "W/m/K"]
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}
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}
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}
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75
src/data/Plutonit-Gabbro-Impala.json
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75
src/data/Plutonit-Gabbro-Impala.json
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{
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"Name": "Gabbro Impala",
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"Standard": {
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"Type": "Plutonit-Gabbro-Norite-Impala"
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},
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [2.9, "kg/dm³"],
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"E": ["75±15", "GPa"],
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"R_m": ["17.5±7.5", "MPa"],
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"R_m'": ["<250", "MPa"],
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"Hardness": {
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"HM": 7.5,
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"HB": [2570, "MPa"],
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"HV": [3430, "MPa"]
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}
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},
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"Thermodynamic Properties": {
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"Crystal": {
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"alpha": ["6±1", "µm/m/K"],
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"lambda": [3.0, "W/m/K"],
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"cp": [845, "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": "https://en.wikipedia.org/wiki/Intrusive_rock"
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},
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{
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"Type": "Web",
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"URL": "https://de.wikipedia.org/wiki/Magmatisches_Gestein"
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},
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{
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"Type": "Web",
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"URL": "https://de.wikipedia.org/wiki/Plutonit"
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},
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{
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"Type": "Web",
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"URL": "https://en.wikipedia.org/wiki/Mafic"
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},
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{
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"Type": "Web",
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"URL": "https://de.wikipedia.org/wiki/Mafische_Minerale"
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},
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{
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"Type": "Web",
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"URL": "https://en.wikipedia.org/wiki/Gabbro"
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},
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{
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"Type": "Web",
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"URL": "https://de.wikipedia.org/wiki/Gabbro"
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},
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{
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"Type": "Web",
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"URL": "https://en.wikipedia.org/wiki/Norite"
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},
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{
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"Type": "Web",
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"URL": "https://de.wikipedia.org/wiki/Norit"
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},
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{
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"Type": "Web",
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"URL": "https://de.wikipedia.org/wiki/Impala_(Naturstein)"
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},
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{
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"Type": "Web",
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"URL": "http://www.oelze.de/en/construction-features"
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},
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{
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"Type": "Web",
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"URL": "http://www.oelze.de/_internal/style/frontend/pdf/OELZE_Katalog.pdf"
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}
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]
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}
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13
src/data/Ta.json
Executable file
13
src/data/Ta.json
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@@ -0,0 +1,13 @@
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{
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"Name": "Tantalum",
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"Name_de": "Tantal",
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"Formula": "Ta",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": [16650, "kg/m³"],
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"Hardness": {
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"HM": 6.50,
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"HV": ["90±30", "MPa"]
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}
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}
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}
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23
src/data/W.json
Executable file
23
src/data/W.json
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@@ -0,0 +1,23 @@
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{
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"Name": "Tungsten",
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"Name_de": "Wolfram",
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"Formula": "W",
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"Mechanical Properties": {
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"T": ["20-25", "°C"],
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"rho": ["19275±25", "kg/m³"],
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"E": [411, "GPa"],
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"G": [161, "GPa"],
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"K": [310, "GPa"],
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"nu": 0.28,
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"Hardness": {
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"HM": 7.5,
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"HB": [2570, "MPa"],
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"HV": [3430, "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": [173, "W/m/K"]
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}
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}
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}
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@@ -28,7 +28,7 @@
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"E": [70, "GPa"],
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"G": [26, "GPa"],
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"K": [70, "GPa"],
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"nu": 0.35,
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"nu": "0.345±5‰",
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"Yield strength": {
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"R_p": ["110-130", "MPa"],
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"R_p02": ["110-130", "MPa"]
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