首页> 外文会议>ASME Pressure Vessels Piping Conference >RESEARCH AND DEVELOPMENT OF THREE-DIMENSIONAL ISOLATION SYSTEM FOR SODIUM-COOLED FAST REACTOR: PART 4 — PROPOSAL OF OPTIMAL COMBINATION METHOD FOR DISC SPRING UNITS AND NEWLY FRICTION MODEL FOR SLIDING ELEMENTS
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RESEARCH AND DEVELOPMENT OF THREE-DIMENSIONAL ISOLATION SYSTEM FOR SODIUM-COOLED FAST REACTOR: PART 4 — PROPOSAL OF OPTIMAL COMBINATION METHOD FOR DISC SPRING UNITS AND NEWLY FRICTION MODEL FOR SLIDING ELEMENTS

机译:钠冷快速反应器三维隔离系统的研究与开发:第4部分—碟形弹簧单元最佳组合方法和新型滑动元件摩擦模型的建议

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The authors proposed a newly three-dimensional isolation system, consisting of a rubber bearing, vertical oil dampers and disc spring units, to reduce the seismic response in the vertical direction as well as horizontal direction. This isolation system is employed with a number of disc spring units to provide the vertical restoring force to the superstructure. The disc spring units are combined by three disc springs in parallels and they are are stacked in six serials. The vertical restoring force has susceptible to the variation forces for the individual disc springs because the disc spring units are combined in the six serials. The The purpose of this paper is to present two kinds of proposal to improve the quality control of our isolation system and the prediction accuracy of seismic response. The first is to create the the optimal combination method for the disc spring units using the meta-heuristic algorithm to minimize the variation of vertical vertical restoring force. The proposed optimal method was verified through the result of static loading tests using the 72 disc springs which have the half dimensions to full scale. The second is to create a newly analytical model for the friction force caused by polymeric materials. The proposed analytical model was verified by comparing the loading test results. Moreover, the seismic isolation performances were clarified by the seismic response analysis that consider the vertical restoring force of the disc spring units which were combined using the optimal method and the friction force of sliding elements which were modeled by the proposed friction model. This analytical result revealed that our isolation system can reduce the seismic response not only for the high frequency components but also the low frequency ones.
机译:作者提出了一种新的三维隔离系统,该系统由橡胶轴承,垂直油阻尼器和碟形弹簧单元组成,以减少垂直方向和水平方向的地震响应。该隔离系统与许多碟形弹簧单元一起使用,以向上部结构提供垂直的恢复力。碟形弹簧单元由三个平行的碟形弹簧组合而成,并以六个序列堆叠。垂直复位力容易受到各个碟形弹簧的变化力的影响,因为碟形弹簧单元分为六个系列。本文的目的是提出两种建议,以改善隔离系统的质量控制和地震响应的预测精度。首先是使用元启发式算法为碟形弹簧单元创建最佳组合方法,以最大程度地减小垂直竖向恢复力的变化。通过使用72个碟形弹簧进行静态负载测试的结果验证了所提出的最佳方法,该碟形弹簧的一半尺寸为满量程。第二个是为聚合物材料产生的摩擦力创建新的分析模型。通过比较负载测试结果验证了所提出的分析模型。此外,通过考虑最佳方法组合的碟形弹簧单元的垂直恢复力和通过所提出的摩擦模型建模的滑动元件的摩擦力,通过地震响应分析阐明了隔震性能。分析结果表明,我们的隔离系统不仅可以降低高频分量的地震响应,还可以降低低频分量的地震响应。

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