NIST High Temp. Superconducting Materials (HTS) Database:

NIST Standard Reference Database 62

Last Update to Data Content: 1996

DOI: https://doi.org/10.18434/T4KP8J


Bibliographic Information

Title: Dependence of thermal conductivity on temperature for Ag sheathed Bi2Sr2CaCu2Ox tape
Author(s): Not Available
Publication: STA Project Data Volume: Not Available Issue: Not Available Year: 1993 Page(s): Not Available
Editor(s): Not Available
Publisher: Science and Technology Agency of Japan
Language: Japanese
Notes: STA sheet number: 6274,6278
Keywords: Material Specification, Thermal Conductivity

Materials and Properties

Bi:2223; [Bi-Sr-Ca-Cu-O]
Material Specification for Bi:2223; [Bi-Sr-Ca-Cu-O] Process:
Notes:
Formula: Bi2Sr2Ca2Cu3O10
Informal Name: Bi:2223
Chemical Family: Bi-Sr-Ca-Cu-O
Chemical Class: Oxide
Structure Type:
Manufacturer:
Commercial Name:
Production Date:
Lot Number: 92TFJBH-1-29
Production Form: Thin Film

Thermal Conductivity for Bi:2223; [Bi-Sr-Ca-Cu-O]
Tc(end) (K) Temperature (K) Thermal Conductivity (W m-1 K-1)
98.2 16.4 1548
98.2 16.3 1450
98.2 16.3 1509
98.2 21.4 1248
98.2 21.5 1228
98.2 21.5 1217
98.2 26.4 962
98.2 26.4 957
98.2 26.4 951
98.2 31.6 687
98.2 31.6 694
98.2 31.6 694
98.2 36.7 521
98.2 36.7 521
98.2 36.7 523
98.2 42.0 412
98.2 42.0 412
98.2 42.0 417
98.2 47.1 352
98.2 47.1 352
98.2 47.1 352
98.2 52.2 311
98.2 52.2 311
98.2 52.2 309
98.2 57.3 283
98.2 57.3 285
98.2 57.3 284
98.2 62.4 265
98.2 62.4 267
98.2 62.4 266
98.2 67.5 257
98.2 67.5 258
98.2 67.5 255
98.2 72.7 249
98.2 72.7 249
98.2 72.7 249
98.2 77.8 243
98.2 77.8 244
98.2 77.7 245
98.2 82.8 240
98.2 82.8 240
98.2 82.7 240
98.2 87.8 238
98.2 87.7 239
98.2 87.7 240
98.2 92.8 237
98.2 92.8 236
98.2 92.7 237
98.2 97.8 237
98.2 97.8 237
98.2 97.8 237
98.2 102.9 236
98.2 102.9 237
98.2 102.9 237
98.2 108.0 237
98.2 108.0 237
98.2 108.0 238
98.2 113.0 236
98.2 113.0 239
98.2 113.0 238
98.2 117.9 239
98.2 117.9 239
98.2 117.9 239
98.2 122.9 238
98.2 122.9 239
98.2 122.9 240
98.2 127.9 240
98.2 127.9 241
98.2 127.9 241
98.2 132.9 242
98.2 132.9 244
98.2 132.9 244
98.2 137.9 243
98.2 137.9 243
98.2 137.9 244
98.2 142.9 244
98.2 142.9 245
98.2 142.9 245
98.2 147.9 246
98.2 147.9 246
98.2 147.9 245
98.2 152.8 245
98.2 152.8 246
98.2 152.8 244
98.2 157.9 249
98.2 157.9 248
98.2 157.9 248
98.2 162.9 249
98.2 162.9 248
98.2 162.9 250
98.2 167.9 249
98.2 167.9 249
98.2 167.9 250
98.2 173.0 251
98.2 173.1 250
98.2 172.9 253
98.2 178.0 251
98.2 178.0 251
98.2 178.0 254
98.2 183.0 255
98.2 183.0 255
98.2 183.0 256
98.2 188.0 256
98.2 188.0 256
98.2 188.0 258
98.2 193.1 258
98.2 193.0 258
98.2 193.0 260
98.2 198.0 264
98.2 198.0 267
98.2 198.0 265
98.2 202.9 260
98.2 202.9 262
98.2 202.9 260
Measurement Method: Heat-flux
Test facility: Faculty of Engineering, Iwate University Location: Lab. of Material Property, Iwate University Start date: 1989/2/7 End date: 1989/2/8 Environment temperature: 18 °C Environment humidity: 60 % Test temperature: room temperature Applied pressure: 0.27 mPa (2x10-6 Torr) Remark on test condition: taking a chamber with room temperature and vacuum (about 0.27 mPa) as adiabatic space, cooling the sample stage to the start temperature, adusting sample temperature with a heater Test equipment (1): helium freezer Maker of test equipment (1): Sumitomo Zyuki Model of test equipment (1): SRD204 Test equipment (2): NEC PC-9801RX personal computer Test equipment (3): digital multimeter Maker of test equipment (3): Yokogawa Model of test equipment (3): 2501A Test equipment (4): program power source Maker of test equipment (4): Keithley Model of test equipment (4): Model220 Test equipment (5): scanner Maker of test equipment (5): Advantest Model of test equipment (5): TR7200 Test equipment (6): CGR resistance thermometer Test equipment (7): Au + 0.07 % Fe-Cr thermocouple Remark on test equipments: using a personal computer to realize the automatic measurement Specimen length: 35 mm Specimen width: 4 mm Specimen thickness: 0.18 mm Distance between specimen and thermometer: 7.7 mm Width of superconductor: 2.6 mm Thickness of superconductor: 0.07 mm Superconductor core ratio: 25.3 % Remark on specimen: fixing sample by using In and ceramic solder, attaching a thermocouple on the sample by using insulation varnish (GE7031). Data comment: saving the test result in a floppy disk, and printing it out after the test is over Data comment: including the cross section area of Ag sheath when calculating the thermal conductivity at Tc=92.6K

Cautions: Research Data