Analysis of Mercury Diffusion Pumps

K. Dunn
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Abstract

Several mercury diffusion pump stages in the Tritium Purification process at the Savannah River Site (SRS) have been removed from service for scheduled preventive maintenance. These stages have been examined to determine if failure has occurred. Evidence of fatigue around the flange portion of the pump has been seen. In addition, erosion and cavitation inside the throat of the venturi tube and corrosion on the other surface of the venturi tube has been observed. Several measures are being examined in an attempt to improve the performance of these pumps. These measures, as well as the noted observations, are described. Six stages [two machined (MP) and four electron beam (EB) welded] from the mercury diffusion pumps operating in the Tritium Purification process at SRS have been analyzed to determine their condition after nine months of usage. Several cracks were found around the necked region of the two MP stages. The EB welded stages, however, seemed to perform better in service; only two of four stages showed cracking. The cracking is caused by fatigue that has been enhanced by high stresses and tritium in the flange area. The EB welded stage appears to be a step in the right direction. Since the EB weld is a shrink fit, the surface is in compression, thereby eliminating crack propagation. In addition, shot peening has been employed to produce a compressive material surface since fatigue usually originates at the surface. Pitting was observed down the throat of the venturi. This pitting was caused by cavitation and erosion along the length of the venturi tube. Corrosion and pitting was seen on the exterior walls of the diffuser tubes. Stress-corrosion cracks were observed emanating from these corrosion pits. The corrosion likely occurred from the chloride ions present in the process cooling water. Shot peening is now being used in an attempt to place the outside of the diffuser tube in compression to eliminate the stress-corrosion cracking.
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汞扩散泵的分析
萨凡纳河站点(SRS)氚净化过程中的几个汞扩散泵级已从服务中移除,以进行定期预防性维护。对这些阶段进行了检查,以确定是否发生了故障。泵的法兰部分周围出现了疲劳迹象。此外,还观察到文丘里管喉部内部的侵蚀和空化现象,以及文丘里管另一侧表面的腐蚀现象。为了改进这些泵的性能,正在研究几种措施。文中描述了这些措施以及注意到的观察结果。对SRS氚净化过程中运行的汞扩散泵的六个阶段[两个机械加工(MP)和四个电子束焊接(EB)]进行了分析,以确定其使用9个月后的状况。在两个MP阶段的颈部周围发现了一些裂纹。然而,EB焊接级在使用中似乎表现更好;四个阶段中只有两个阶段出现裂缝。裂纹是由法兰区域的高应力和氚加剧的疲劳引起的。EB焊接阶段似乎是朝着正确方向迈出的一步。由于EB焊接是收缩配合,表面处于压缩状态,从而消除了裂纹扩展。此外,由于疲劳通常起源于表面,因此采用喷丸强化来产生压缩材料表面。在文丘里管的喉部观察到点蚀。这种点蚀是由沿文丘里管长度的空化和侵蚀引起的。扩散管的外壁出现腐蚀和点蚀。在这些腐蚀坑中发现了应力腐蚀裂纹。腐蚀可能是由工艺冷却水中的氯离子引起的。喷丸强化现在正被用于试图将扩散管的外部置于压缩中,以消除应力腐蚀开裂。
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