首页> 外国专利> NMR magnet with superconducting coil in supercooled helium bath - is kept at atmospheric presure and with temp. of supercooled helium in first cyrostat chamber less than 4.2 k with cryostat having at least one further chamber

NMR magnet with superconducting coil in supercooled helium bath - is kept at atmospheric presure and with temp. of supercooled helium in first cyrostat chamber less than 4.2 k with cryostat having at least one further chamber

机译:过冷氦浴中带有超导线圈的NMR磁体-保持在大气压力和温度下。在第一恒温器腔室中的过冷氦气小于4.2 k且低温恒温器具有至少一个其他腔室

摘要

The first chamber (1) of the cryostat (4) is connected with a secondary chamber so that the supercooled liquid helium contained in the first chamber (1) is likewise at atmospheric pressure. The secondary chamber (2) of the cryostat (4) contains liquid helium with a temp. of about 4.2 K and essentially at atmospheric pressure. The electric supply lines for the charging of the superconducting magnetic coil (3), before the entry in to the first chamber of the cryostat, are first led through the further chamber of the cryostat. A refrigerator (6) is provided in the first chamber, so that the liquid helium can be cooled to a temp. (T) of 4.2 K esp. less than 2.3 K. USE/ADVANTAGES - NMR magnetic system with superconducting coil. Electrical entry to magnetic coil is considerably simplified, and no vacuum lead in is necessary.
机译:低温恒温器(4)的第一腔室(1)与第二腔室相连,使得容纳在第一腔室(1)中的过冷液氦同样处于大气压下。低温恒温器(4)的二级腔(2)内装有温度为60°C的液氦。大约4.2K并且基本上在大气压下。在进入低温恒温器的第一腔室之前,用于引导超导电磁线圈(3)充电的供电线首先穿过低温恒温器的另一腔室。在第一腔室中设置有致冷器(6),从而可以将液氦冷却到一定温度。 (T)为4.2 K esp。小于2.3K。用途/优点-具有超导线圈的NMR磁系统。大大简化了电磁线圈的电气入口,并且不需要引入真空。

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