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Avoiding sealing failure of flanged connection for tubes made of dissimilar materials subjected to elevated temperature

机译:避免由异种材料制成的管承受高温的法兰连接的密封失效

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摘要

Carbonic composite materials and ceramics appear to be excellent structural materials for parts sub-jected to very high temperatures in molten salt reactors (MSRs), in which the reactor core outlet temperature is normally above 700 °C. Because of the high temperature, there are major challenges in the sealing of flanged con-nections for tubes made of alloys and nonmetallic materi-als. In this study, an improved method for sealing bolted flange connections for tubes made of dissimilar materials at high temperature is analyzed. The study focuses on the compensation mechanism for the difference in thermal expansion between the bolts and the flanges. An angle is introduced for the sealing surface in the flanged connection to provide effective sealing. The arctangent of the angle is the ratio of the thickness between the theoretical core of the sealing surface and the outside end face of the flange to the distances between the axis of the flanged joint and the theoretical core of the sealing surface of the flange; the sealing surface of the flange, which is made of the same material as the fastening assemblies, faces the fastening assemblies. To ensure effective sealing, the frictional coefficient between the two sealing surfaces should not exceed the tangent of the angle. This result does not agree well with the solution given by previous researchers. Fur-ther, in the modified flanged connection, the compression of each bolt in the clamped condition is increased to maintain the compaction force unchanged without increasing the number of bolts on the flanged joint.
机译:对于熔融盐反应堆(MSR)中承受极高温度的零件,碳复合材料和陶瓷似乎是极好的结构材料,在该反应堆堆芯出口温度通常高于700°C。由于高温,在密封合金和非金属材料制成的管的法兰连接时面临着重大挑战。在这项研究中,分析了一种在高温下密封由异种材料制成的管的螺栓法兰连接的改进方法。这项研究的重点是针对螺栓和法兰之间热膨胀差异的补偿机制。为法兰连接中的密封表面引入一个角度,以提供有效的密封。角度的反正切是密封表面的理论芯与法兰的外端面之间的厚度与法兰接头的轴线与法兰的密封表面的理论芯之间的距离之比。由与紧固组件相同的材料制成的凸缘的密封表面面向紧固组件。为确保有效密封,两个密封表面之间的摩擦系数不应超过角度的切线。这个结果与以前的研究人员给出的解决方案不太吻合。此外,在改进的法兰连接中,在夹紧状态下增加每个螺栓的压缩力,以保持压紧力不变,而不会增加法兰接头上的螺栓数量。

著录项

  • 来源
    《核技术(英文版)》 |2019年第1期|1-6|共6页
  • 作者单位

    Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China;

    Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China;

    Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China;

    Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China;

    Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China;

    Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 04:26:14
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