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Safety and protection of 8 T NbTi gyrotron magnet in persistent mode

机译:持久模式下的8 T NbTi回旋管磁体的安全性和保护

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摘要

To achieve high mechanical stability of a superconducting winding, numerical stress-strain analyses of the winding structure and appropriate stress-strain analyses of the winding structure and appropriate epoxy-impregnation technology were applied. To improve further winding mechanical stability, an initially round 1-mm-diameter varnish-insulated conductor was flattened to rack-track cross section (1.25 mm*0.75 mm for the inner section, 1.31 mm*0.65 mm for the rest of the magnet). The stainless steel road (1 mm diameter) of the bandage was flattened in the same way (up to 1.14 mm*0.77 mm). The danger of creating a hot spot region was limited by radial magnet sectioning and section shunting by low ohmic shunts. The superconducting switch was protected by a pair of antiparallel silicon diodes mounted between magnet flanges in parallel to it. The high threshold voltages of the diodes at 4.2 K allow system run-up with relatively high speed without any limitation on the sign of the magnet field polarity.
机译:为了获得超导绕组的高机械稳定性,应用了绕组结构的数值应力-应变分析,绕组结构的适当应力-应变分析和适当的环氧浸渍技术。为了进一步提高绕组的机械稳定性,将最初为圆形的直径为1毫米的清漆绝缘导体压扁到机架轨道的横截面(内部横截面为1.25 mm * 0.75 mm,其余为1.31 mm * 0.65 mm)。 。用相同的方法将绷带的不锈钢道(直径1毫米)弄平(最大1.14毫米* 0.77毫米)。通过径向磁体切片和通过低欧姆分流器分流来限制产生热点区域的危险。超导开关由一对反平行硅二极管保护,该二极管以平行于它的磁体法兰之间安装。二极管在4.2 K时的高阈值电压允许系统以相对较高的速度启动,而对磁场极性的符号没有任何限制。

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