Process for making a sintered body from ultra-fine superconductive particles
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
C04B-033/32
C04B-035/622
C01B-013/34
출원번호
US-0495796
(1995-06-27)
발명자
/ 주소
Stangle Gregory C. (Alfred NY) Venkatachari Koththavasal R. (Rochester NY) Ostrander Steven P. (Scotia NY) Schulze Walter A. (Alfred Station NY) Pietras John D. (Alfred Station NY)
출원인 / 주소
Alfred University (Alfred NY 02)
인용정보
피인용 횟수 :
12인용 특허 :
0
초록▼
A process for producing a sintered body from untra-fine superconductive particles. In the first step of this process, a ceramic precursor material containing yttrium, barium and copper cations, a nitrogen-containing material, a solvent, and an anion capable of participating in an anionic oxidation-r
A process for producing a sintered body from untra-fine superconductive particles. In the first step of this process, a ceramic precursor material containing yttrium, barium and copper cations, a nitrogen-containing material, a solvent, and an anion capable of participating in an anionic oxidation-reduction reaction with the nitrogen-containing material, is provided; the nitrogen-containing material contains at least three nitrogen atoms, at least one oxygen atom, and at least one carbon atom. In the second step of the process, droplets of such ceramic precursor material are formed. In the third step of the process, the droplets are dried until particles which contain less than about 15 weight percent of solvent are produced. In the fourth step of this process, such particles are ignited in an atmosphere which contains substantially less than about 60 weight percent of the solvent\s saturation value in such atmosphere. A green body is formed from the calcined particles which is subjected to temperature to form a sintered body.
대표청구항▼
A process for producing a fixed body from ultra-fine superconductive particles, comprising the steps of: (a) forming droplets of a ceramic precursor mixture containing an yttrium ion, a barium ion, a copper ion, a nitrogen-containing fuel, a solvent, and an anion capable of participating in an anion
A process for producing a fixed body from ultra-fine superconductive particles, comprising the steps of: (a) forming droplets of a ceramic precursor mixture containing an yttrium ion, a barium ion, a copper ion, a nitrogen-containing fuel, a solvent, and an anion capable of participating in an anionic oxidation-reduction reaction with the nitrogen-containing fuel, wherein said nitrogen-containing fuel is of the formula R.(HA)a, and wherein: 1. a is an integer of from 0 to 2, 2. HA is selected from the group consisting of HNO3, HCl, HBr, HI, H2SO4, H2O, and CH3COOH, 3. R is of the formula [Figure] wherein: R1, R2, R3, and R4 are independently selected from the group consisting of hydrogen, alkyl of from 1 to 4 carbon atoms, and phenyl, a′is an integer of from 0 to 2, b is an integer of from 1 to 2, c is an integer of from 0 to 2, and a′plus c is at least 1; (b) removing at least about 85 weight percent of the solvent from the droplets of the ceramic precursor mixture to form particles comprising the metal cations, the anion, and the nitrogen-containing fuel; and (c) thermally initiating an anionic oxidation-reduction reaction between the anion and the nitrogen-containing fuel in said particles under conditions which permit the anion and the nitrogen-containing fuel to react in a vigorous manner and to form a combusted powder, thereby producing particles comprised of said yttrium, said barium, and said copper and in an atmosphere with a relative humidity of less than about 60 percent; (d) calcining said particles by heating them to a temperature of from about 700 to about 1,010 degrees centigrade, thereby producing calcined particles; (e) forming a green body from said calcined particles; (f) raising the temperature of said green body from ambient temperature to a temperature of from about 1,030 to about 1,120 degrees centigrade at a rate of from about 300 to about 450 degrees centigrade per hour while contacting said green body with an oxygen-containing gas; (g) subjecting said green body to said temperature of from about 1,030 to about 1,120 degrees centigrade for at least about 30 minutes; (h) cooling said green body to a peritectic temperature of from about 940 to about 1,010 degrees centigrade at a rate of from about 300 to about 500 degrees centigrade per hour; and (i) cooling said green body from said peritectic temperature at a rate of from about 1 to about 40 degrees centigrade per hour.
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