SU205301A1 - Superconducting alloy based on niobium - Google Patents
Superconducting alloy based on niobiumInfo
- Publication number
- SU205301A1 SU205301A1 SU1014348A SU1014348A SU205301A1 SU 205301 A1 SU205301 A1 SU 205301A1 SU 1014348 A SU1014348 A SU 1014348A SU 1014348 A SU1014348 A SU 1014348A SU 205301 A1 SU205301 A1 SU 205301A1
- Authority
- SU
- USSR - Soviet Union
- Prior art keywords
- niobium
- alloy based
- superconducting
- superconducting alloy
- zirconium
- Prior art date
Links
Landscapes
- Superconductors And Manufacturing Methods Therefor (AREA)
Description
Изобретение относитс к области сверхпровод идих сплавов.This invention relates to the field of superconducting id alloys.
Получение сильных магнитных полей с помощью сверхпровод щих соленоидов позволит резко снизить энергетические затраты.Obtaining strong magnetic fields using superconducting solenoids will dramatically reduce energy costs.
Известны сверхпровод щие сплавы ниоби с цирконием, разработана технологи изготовлени из них сверхпровод щей проволоки.Superconducting alloys of niobium with zirconium are known, and a technology has been developed for the manufacture of superconducting wires from them.
Цель изобретени - повысить физико-механические и технологические свойства сплава . Достигаетс это тем, что сплав ниоби с 25-50о/5 циркони дополнительно легируют лантаном или церием. The purpose of the invention is to improve the physicomechanical and technological properties of the alloy. This is achieved by the fact that the niobium alloy with 25-50 ° / 5 zirconium is additionally alloyed with lanthanum or cerium.
Плавку можно вести в дуговой печи с расходуемым или нерасходуемым электродомMelting can be carried out in an arc furnace with a consumable or non-consumable electrode
или в электроннолучевой печи с введением редкоземельных добавок через дозатор в количестве 0,03-0,50/0.or in an electron-beam furnace with the introduction of rare-earth additives through a dispenser in an amount of 0.03-0.50 / 0.
Предлой енный сплав обладает повыщенной технологичностью, возрастает и критическа плотность тока.The proposed alloy possesses improved processability, and the critical current density increases.
Предмет изобретени Subject invention
Сверхпровод щий сплав на основе ниоби , содержащий 25-50% циркони , отличающийс тем, что, с целью повышени физико-механических и технологических свойств, он легирован 0,03-0, лантана или цери .A superconducting niobium-based alloy containing 25-50% zirconium, characterized in that it is doped with 0.03-0% lanthanum or cerium to increase its physical, mechanical and technological properties.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
SU1014348A SU205301A1 (en) | 1965-06-10 | 1965-06-10 | Superconducting alloy based on niobium |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
SU1014348A SU205301A1 (en) | 1965-06-10 | 1965-06-10 | Superconducting alloy based on niobium |
Publications (1)
Publication Number | Publication Date |
---|---|
SU205301A1 true SU205301A1 (en) | 1967-11-13 |
Family
ID=39967697
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
SU1014348A SU205301A1 (en) | 1965-06-10 | 1965-06-10 | Superconducting alloy based on niobium |
Country Status (1)
Country | Link |
---|---|
SU (1) | SU205301A1 (en) |
-
1965
- 1965-06-10 SU SU1014348A patent/SU205301A1/en active
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US3124455A (en) | Fabrication of n | |
SU205301A1 (en) | Superconducting alloy based on niobium | |
GB1266787A (en) | ||
GB1101728A (en) | Improvements in or relating to steel alloys | |
GB1471520A (en) | Welding materials | |
DE2530740C2 (en) | ||
SU197969A1 (en) | Superconducting alloy | |
GB1101279A (en) | Improvements in or relating to arc-electrodes | |
SU206095A1 (en) | HIGH ELECTRICAL WIRING ALLOY BASED ON COPPER | |
SU190586A1 (en) | ALLOY ON THE BASIS OF NIOBIA ..:, x .- :.cc; - ..; - I:; i; i "": \ ni!. ^; | |
AT262717B (en) | Tungsten electrode for arc welding under protective gas | |
SU172050A1 (en) | HIGH-STRENGTH MAGNETIC ALLOY | |
SU258601A1 (en) | Superconducting alloy | |
Berbasov et al. | Experimental investigation of the role of electric field fluctuations in the current- passage mechanism for a magnetron diode in the cutoff regime(Anode current in magnetron diode in cut-off regime, determining association with electron diffusion from cathode to anode and electric field fluctuation effects) | |
AT53530B (en) | Device for forming the arc in arc lamps with horizontally superimposed parallel or approximately parallel electrodes. | |
ES276475A1 (en) | Procedure for obtaining superconductive materials (Machine-translation by Google Translate, not legally binding) | |
FR2079408A3 (en) | Separation electrode for metals | |
GB1047030A (en) | Improvements in or relating to anodes suitable for use in cathodic protection and other electrolytic processes | |
SU287310A1 (en) | Superconducting alloy | |
SU444428A1 (en) | Copper-base alloy | |
DE443171C (en) | Stranded high voltage conductor | |
GB1065792A (en) | Improvements in or relating to electrolytic cells for the production of aluminium and current conductors therefor | |
FR2305830A1 (en) | Super conducting cable has filaments with superconducting cores - and has some filaments without superconducting cores to prevent evolved heat from degrading cable | |
US1226667A (en) | Electromagnetic element or structure. | |
GB1122490A (en) | A copper casting alloy |