...
首页> 外文期刊>E3S Web of Conferences >Analysis and Performance Evaluation of Casting Inclusions in the Reactor Coolant Pump Casing of Nuclear Power Plant
【24h】

Analysis and Performance Evaluation of Casting Inclusions in the Reactor Coolant Pump Casing of Nuclear Power Plant

机译:核电站反应器冷却剂泵壳铸造夹杂物的分析与性能评价

获取原文
           

摘要

The casting quality of the coolant pump casing of the nuclear power plant reactor is directly related to the operational reliability and safety of the nuclear main pump, and plays a key role in the integrity of the pressure-bearing boundary of the reactor primary loop. In this paper, aiming at the low impact performance of the sample during the casting process of the main pump casing of a nuclear power plant, through using failure analysis tools like fishbone diagram from multiple dimensions such as material selection, design and technology, melting analysis, pouring process, riser design, and heat treatment process, and combining with metal macro-fracture analysis and micro-electron microscopy scanning methods for cause analysis, finally, it was found that the basic reason for the low impact performance of the pump shell is that the secondary inclusions appear on the fracture of the sample during the solidification of the molten steel. Using test-retest inspection and finite element mechanics simulation analysis, the comprehensive evaluation of the impact performance of the sample was obtain, which provides an effective solution for the analysis and evaluation of casting inclusions in water pumps of nuclear power plants, and also provides an important reference for the structural optimization and equipment research and development of water pump equipment of nuclear power plants.
机译:核电厂电抗器的冷却剂泵壳体的铸造质量与核主泵的操作可靠性和安全性直接相关,并在反应器初级环路的压力边界的完整性中起着关键作用。在本文中,旨在在核电站主泵壳的铸造过程中采用施铸过程的低冲击性能,通过使用诸如材料选择,设计和技术,融化分析等多维尺寸等诸如钓鱼骨图中的失效分析工具,浇注过程,提升管设计和热处理过程,以及金属宏观裂缝分析和微电子显微镜扫描方法的原因分析,最后,发现泵壳的低冲击性能的基本原因是次级夹杂物在钢水凝固过程中出现在样品的断裂上。使用试验检测和有限元力学模拟分析,获得了样品的冲击性能的综合评价,为核电厂水泵中的铸造包裹物进行了分析和评估,为综合评估提供了有效的解决方案,并提供了一种核电厂水泵设备结构优化和设备研究和发展的重要参考。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号