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NMR magnet for highly homogeneous magnetic field - uses at least one superconducting magnetic coil in first chamber of cryostat in deep cooled liquid helium

机译:用于高度均匀磁场的NMR磁体-在深冷液氦中的低温恒温器的第一腔室中至少使用一个超导磁线圈

摘要

The supercooled liquid helium in the first chamber of the cryostat (4) is arranged with a temp. of less than 4.2 K. The cryostat has at least one further chamber, which contains a liquid helium standing at atmospheric pressure with a temp. of about 4.2 K. The first chamber (1) is connected with the second chamber (2) in such a way, that the supercooled liquid helium found in the first chamber is also at atmospheric pressure, and the first and at least a second chamber (1, 2) together form a divided tank. The first chamber arranged with the supercooled liquid helium is arranged underneath the further chamber (2) with the helium of 4.2 K. The first chamber is separated from the further chamber by a heat insulating barrier (10), and the barrier consists of at least two plates (12, 13), which are separated by a vacuum. USE/ADVANTAGE - NMR magnetic system. Electrical entry to magnetic coil is considerably simplified. No vacuum passage is required and specific helium consumption is considerably reduced compared to known supercooled systems.
机译:低温恒温器(4)的第一个腔室中的过冷液态氦以一定温度布置。低温恒温器的压力小于4.2K。低温恒温器至少有一个另外的腔室,其中装有液氦在大气压力下保持温度。第一腔室(1)与第二腔室(2)以这种方式连接,使得在第一腔室中发现的过冷液氦也处于大气压,并且第一腔室和至少第二腔室(1、2)一起形成一个分隔的水箱。布置有过冷液氦的第一腔室布置在氦气为4.2 K的另一腔室(2)的下方。第一腔室通过隔热屏障(10)与另一腔室隔开,该屏障至少包括两个板(12、13),它们被真空隔开。使用/优点-NMR磁系统。电磁线圈的电气入口已大大简化。与已知的过冷系统相比,不需要真空通道,并且可以显着减少氦的比消耗。

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