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Experimental Investigation of Material Constant for Perforated Plate

机译:多孔板材料恒定的实验研究

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RCC-MR (2007) has been used as a design/manufacturing code for intermediate heat exchanger (IHX) in Prototype Fast Breeder Reactor (PFBR). The code uses equivalent solid plate (ESP) methodology for modeling a tube sheet to carry out stress analysis. Structural integrity assessment of tube sheets with ESP concept is the same as that of solid plate except that it uses an effective elastic constant (E* and v*) in place of the actual material constants, E and v. In the latest version of design code RCC-MR_X (2012), values of effective elastic constants are provided for circular pitch pattern. Effective Young's modulus E* and Poisson's ratio v* values are provided for the ligament efficiency (η) range between 0.1 to 0.6 and 0.3 to 0.6, respectively. In case of PFBR-IHX and IHX of future reactors, ligament efficiency of tube sheet is ~0.255 for which effective Poisson's ratio v* value is not available in design codes as well as in the open literature and also it cannot be extrapolated. Hence, an experiment was conducted to obtain the loaddeflection curve, extract the values of strain and subsequently estimate the effective elastic constant (v*). Toward this, scaled down IHX tube sheet models (3 Nos. perforated plates) of desired ligament efficiency were employed. In this paper, the experimental setup, load-deflection curve for IHX tube sheet scaled-down models, strain in tube sheet, estimation of v*, comparison of experimental results with Finite Element (FE) analysis results are discussed. It is observed that (i) the measured deflection values near the inner edge are higher than the FE analysis values in actual model and, (ii) in ESP model, for material constants of E* and v* (calculated from experiment), the achieved deflection values at various radial locations closely match with the experimental results and hence, can be used for modeling of equivalent solid plates.
机译:RCC-MR(2007)已被用作原型快速育种反应器(PFBR)中的中间热交换器(IHX)的设计/制造代码。该代码使用等效的固体板(ESP)方法来建模管纸以进行应力分析。具有ESP概念的管板的结构完整性评估与固体板的结构完整性评估除了它使用有效的弹性常数(E *和V *)来代替实际材料常数,E和v。在最新版本的设计中代码RCC-MR_X(2012),提供有效弹性常数的值用于圆形俯仰模式。提供有效的杨氏模量E *和泊松比V *值分别为韧带效率(η)范围分别为0.1至0.6至0.3至0.6。在PFBR-IHX和未来反应器的IHX的情况下,管板的韧带效率为约0.255,其中有效的泊松比V *值在设计代码中,以及开放文献中,也不能推断。因此,进行实验以获得LoadDefLection曲线,提取菌株的值并随后估计有效弹性常数(V *)。向此朝向这一点,采用了所需韧带效率的缩小IHX管板材(3号穿孔板)。本文讨论了实验设置,用于IHX管板缩小模型的载荷偏转曲线,管材中的应变,v *的估计,具有有限元(Fe)分析结果的实验​​结果的比较。观察到(i)内边缘附近的测量偏转值高于实际模型中的FE分析值,(ii)在ESP模型中,用于E *和V *的材料常数(从实验计算),在与实验结果密切匹配的各种径向位置的偏转值可用于对等效固体板的建模。

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