![]() Cryogenic system
专利摘要:
The invention relates to the field of cryogenic electrical engineering and can be used as a superconducting magnetic system in physical research, or in NMR tomography. The invention is the reduction of heat leakage to the cryostat by the current leads used to control the system. In a superconducting magnetic system of this type, a superconducting solenoid and a short-circuited correction winding of its field are contained. According to the conditions of work, all of them must be powered independently of one another, therefore the correction windings are supplied with thermal keys, i.e. a portion of the winding is the current-carrying element of such a key and is located in the dielectric frame with the heater supplied outside the cryostat. If a predetermined current is passed through the heater, the current-carrying element enters the normal state. At the same time, it is possible to excite a continuous T. OKI in a magnetic field of windings with a magnetic field. With the standard method for independent control of heaters, it is necessary, p p - 1 wires, i.e. p p - 1. To reduce the heat influxes into the cryostat from the wires, the following scheme is used to control the heaters p. If the heater current is less than a certain threshold value, then it generally does not translate the current-carrying element into the normal state. Therefore, the heaters are connected to the matrix in such a way that, in parallel with the heater of this correction winding, two keys-two heaters are turned on. The operating currents of the heaters are chosen in such a way that a normal state is formed only in the circuit of this winding. The analysis shows that since the heaters of the switches are indifferent to the polarity of the current, for p heaters, the number of wires required is n, and p $ n (n - 1) / 2. If the p windings are large enough, then winning in the number of wires for their control turns out to be significant. and SO co. a: so -vi NU s 公开号:SU1356974A3 申请号:SU792734108 申请日:1979-02-20 公开日:1987-11-30 发明作者:Диви Кнейп Джордж (Младший) 申请人:Вариан Ассошиэйтс,Инк (Фирма); IPC主号:
专利说明:
one, ; The invention relates to cryogenic electrical engineering and can be used as a superconducting magnetic system in physical research or in NMR tomography. The aim of the invention is to reduce the heat leakage into the cryostat from the current leads used to control the system. Figure 1 shows schematically the thermal switches of the correction windings and the standard connection of heaters for their independent control; on - dependence of time, after which the superconducting key element enters the normal state from the current through the heater; in FIG. 3, a heater connection diagram; Fig. 4 is a diagram of the connection of the heater of this winding to two selected control wires. , The cryogenic system contains above the wire solenoid and p windings of magnetic field correction placed in a cryostat. The solenoid and correction windings are powered independently of each other. For this, each of the windings is provided with a thermal key (FIG. 1 1 The key consists of a superconducting current-carrying element 1, which is part of the correction winding, and a heater 2, powered by a current outside the cryostat, placed in the dielectric matrix 3. The key works as follows. Because of the thermal conductivity between the helium bath and the superconductor, there is a threshold current I R necessary for converting the superconducting current-carrying element 1 to a normal state. A current of less than I "or (about .45 mA) does not translate the current-carrying element into a normal state at all, and a current, for example, 60 mA translates in 5 s (Fig. 2). To control the washing the induced continuous currents p of the correction windings, by maintaining the required number in the superconducting closed state, organize a matrix of key heaters (Fig. 3). In addition, for each selected pair of wires parallel to the key heater of this correction winding, two key heaters of the other two windings are turned on (Fig. 4). Assuming that they are identical, the operating currents of the key heaters are selected so that the normal state is formed by casting in the circuit of this winding. The analysis shows that in this case, since the key heaters are indifferent to the polarity of the current, for the p switches the number of wires needed is n, and r yp (n-1) / 2, The proposed solution makes sense only if p is greater than 1, i.e. for n greater than 2, with the standard connection method (fig. 1), p + 1 wires, i.e., p n - 1, are required for controlling the llen keys with p.
权利要求:
Claims (1) [1] Invention Formula A cryogenic system containing a device in a cryostat with tilting to control it, characterized in that, in order to increase the efficiency of the system by reducing the heat influx through the current lead, powered independently of each other, each of the windings is provided with a heat switch operated from a heater current exceeding a predetermined value, and the number n of power wires, derived into the warm zone from the cryostat from p to yuchey, satisfies the relationship: (n - 1) / 2 wherein 10- 8- 6- 4- 2- 0 20 40 6th FIG. 2 IN 700 J X Fig Editor I.Rybchenko Compiled by A.Vaganov Tehred I.Popovich Order 5818/59 Circulation 697 Subscription VNIIPI USSR State Committee for inventions and discoveries 113035, Moscow, Zh-35, Raushsk nab., 4/5 Production and printing company, Uzhgorod, st. Project, 4 Proofreader V.Girn to
类似技术:
公开号 | 公开日 | 专利标题 SU1356974A3|1987-11-30|Cryogenic system US4807084A|1989-02-21|Superconducting magnet apparatus with emergency run down unit US4763221A|1988-08-09|Superconducting magnet apparatus with emergency run down unit CA1050614A|1979-03-13|Current-limiting devices GB986832A|1965-03-24|Superconductive devices for producing magnetic fields US3278808A|1966-10-11|Superconducting device JPH01130302A|1989-05-23|Magneto-optical recorder and driving circuit used for recorder like this US4906861A|1990-03-06|Superconducting current reversing switch US3359394A|1967-12-19|Persistent current switch JPH01201905A|1989-08-14|Magnet system JPS60142506A|1985-07-27|Superconductive magnetic field generating apparatus JPH01117004A|1989-05-09|Superconducting magnet CA1039779A|1978-10-03|Shorting element for closing a super conducting current path US3336509A|1967-08-15|Method and means for obtaining high magnetic fields SU680511A1|1982-01-15|Superconducting magnetic system JPH01278003A|1989-11-08|Method of preventing breakdown of superconducting magnet SU1616457A1|1994-09-15|Superconducting key JPS5988882A|1984-05-22|Thermal type superconductive switch JPS584906A|1983-01-12|Exciting method for superconductive magnet SU987862A1|1983-01-07|Three-phase electric heating device SU474865A1|1975-06-25|Time relay SU1029349A2|1983-07-15|Linear d.c. motor US3414743A|1968-12-03|Commutating arrangements for electric machines with superconducting armature windings JPH03191255A|1991-08-21|Electric circuit of midnight water heater JPH01126140A|1989-05-18|Superconductive energy storage apparatus
同族专利:
公开号 | 公开日 US4173775A|1979-11-06| JPS6244684B2|1987-09-22| JPS54125993A|1979-09-29| CA1148613A|1983-06-21|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US3419904A|1966-05-05|1968-12-31|Varian Associates|Superconductive solenoid having winding segments additionally energized for gradient control| US3419794A|1966-05-05|1968-12-31|Varian Associates|Superconductive magnet having an automatic coolant low level warning and shut down means| US3412320A|1966-05-16|1968-11-19|Varian Associates|Cryostat having an effective heat exchanger for cooling its input leads and other leak paths| FR1504537A|1966-07-20|1967-12-08|Commissariat Energie Atomique|Electromagnetic accumulator device| US3826972A|1973-08-17|1974-07-30|Univ Leland Stanford Junior|Method and apparatus for detecting nuclear magnetic resonance| US4084209A|1976-05-21|1978-04-11|The United States Of America As Represented By The United States Department Of Energy|Rotating superconductor magnet for producing rotating lobed magnetic field lines|JPH0319685B2|1982-04-26|1991-03-15|Mitsubishi Electric Corp| US4535291A|1982-08-09|1985-08-13|Varian Associates, Inc.|Method for superconducting magnet shimming| US4585992A|1984-02-03|1986-04-29|Philips Medical Systems, Inc.|NMR imaging methods| US4673882A|1984-03-06|1987-06-16|Buford J Philip|Magnetic system for nuclear magnetic resonance diagnostic device| DE3511303A1|1985-03-28|1986-10-02|Spectrospin AG, Fällanden, Zürich|METHOD AND DEVICE FOR HOMOGENIZING THE FIELD OF A MAGNETIC COIL| US6014069A|1998-12-18|2000-01-11|Havens; Timothy John|Superconducting magnet correction coil adjustment mechanism| DE102004057204B4|2004-11-26|2012-06-14|Siemens Ag|Superconducting device with cryosystem and superconducting switch| DE102004058006B3|2004-12-01|2006-06-08|Siemens Ag|Superconducting device with cryosystem and superconducting switch| WO2010120498A2|2009-04-01|2010-10-21|The University Of North Carolina At Chapel Hill|Device for particulate nmr samples in a fluid and related methods|
法律状态:
优先权:
[返回顶部]
申请号 | 申请日 | 专利标题 US05/879,293|US4173775A|1978-02-21|1978-02-21|Selective excitation of coils comprising a superconducting magnet| 相关专利
Sulfonates, polymers, resist compositions and patterning process
Washing machine
Washing machine
Device for fixture finishing and tension adjusting of membrane
Structure for Equipping Band in a Plane Cathode Ray Tube
Process for preparation of 7 alpha-carboxyl 9, 11-epoxy steroids and intermediates useful therein an
国家/地区
|