首页> 外文会议>International conference on nuclear engineering >ANALYSIS OF REASONS FOR NON-CONFORMANCE OF THE MOVABLE LATCH LOCK PLUNGER RELEASING CURRENT OF CONTROL ROD DRIVE MECHANISM AND IMPROVEMENT MEASURES
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ANALYSIS OF REASONS FOR NON-CONFORMANCE OF THE MOVABLE LATCH LOCK PLUNGER RELEASING CURRENT OF CONTROL ROD DRIVE MECHANISM AND IMPROVEMENT MEASURES

机译:动闩锁柱塞松动的原因分析及控制杆驱动机理及改进措施

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As one of the most important equipment for reactivity control, Control Rod Drive Mechanism (CRDM), which is widely used in pressurized water reactor (PWR) nuclear power plant, has a series of important security functions. As an important component of the claw part in CRDM, the nonmagnetic shim materials have big influence on the movable latch lock plunger releasing current of CRDM. When cutting off the coil power, the nonmagnetic shim materials can block the magnetic circuit between the pole and latch lock plunger effectively and reduce the remanence suction force between magnetic pole and latch lock plunger, which can promote a quick latch lock plunger's action and finish the step-jump and rod-release. In this paper, we introduce the background of non-conformance of the movable latch lock plunger releasing current of CRDM of PWR plant simply, and then we analyze the reasons of the non-conformance in detail, including a comprehensive analysis of various factors and a series of retest conclusions. Through specific analysis, the important role of nonmagnetic shims in CRDM and its big influence on movable latch lock plunger releasing current are proved. Based on research and test results, we show our optimized measures on the movable latch lock plunger releasing current in detail, from the perspective of technical specification for raw materials and improved processing technology during production. At last, one latch unit which occurred the movable latch lock plunger releasing current non-conformance and experienced a 1.7 million steps performance test is used in the following performance verification test. Being installed in this latch mechanism, our nonmagnetic shims finished an integral series of cold test, hot test and cold test after hot test. All of the test results meet our design requirements and all of the releasing current under cold condition is better than the results of 1.7 million steps performance test. Especially, the independently developed nonmagnetic shims improved the movable latch lock plunger releasing current significantly. In addition, other current results of hot test are equal to that of 1.7 million steps performance test. In conclusion, these optimized measures may not only provide data for solving the problem completely, but also provide reference for the manufacture of nonmagnetic shim materials in the future nuclear power plant.
机译:作为反应控制最重要的设备之一,控制棒驱动机构(CRDM)已广泛应用于压水堆(PWR)核电站,具有一系列重要的安全功能。作为CRDM爪部的重要组成部分,非磁性垫片材料对CRDM的可动闩锁柱塞释放电流有很大的影响。切断线圈电源时,非磁性垫片材料可以有效地阻塞磁极和闩锁锁芯之间的磁路,并降低磁极和闩锁锁芯之间的剩磁吸力,从而可以促进快速闩锁锁芯的作用并完成跳和杆释放。本文简单介绍了压水堆电厂CRDM动闩锁释放柱塞不合格的背景,然后详细分析了不合格的原因,包括对各种因素的综合分析和对策。一系列的重新测试结论。通过具体分析,证明了非磁性垫片在CRDM中的重要作用及其对可动闩锁柱塞释放电流的巨大影响。基于研究和测试结果,我们从原材料的技术规格和生产过程中改进的加工技术的角度详细介绍了可动闩锁柱塞释放电流的优化措施。最后,在随后的性能验证测试中,使用了一个发生可移动闩锁锁定柱塞而释放电流不合格并经历了170万步的性能测试的闩锁单元。通过安装在这种闩锁机构中,我们的非磁性垫片完成了一系列的冷测试,热测试和热测试后的冷测试。所有测试结果均符合我们的设计要求,并且在寒冷条件下的所有释放电流均优于170万步性能测试的结果。特别是,独立开发的非磁性垫片极大地改善了可移动闩锁锁定柱塞的释放电流。此外,其他当前的热测试结果等于170万步性能测试的结果。综上所述,这些优化措施不仅可以为彻底解决问题提供数据,而且还可以为未来核电厂非磁性垫片材料的生产提供参考。

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