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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/53735


    Title: 以即時中子繞射量測鎳基合金之應變速率效應;Strain-rate-effect on the Lattice-strain Evolution in Polycrystalline Nickel Alloy
    Authors: 吳珊瑀;Wu,Shan-Yu
    Contributors: 化學工程與材料工程研究所
    Keywords: 及時中子繞射;應變效應;楊氏模數;拉伸試驗;Young's modulus;strain rate effect;in-situ neutron diffraction;tensile test
    Date: 2012-07-27
    Issue Date: 2012-09-11 18:12:43 (UTC+8)
    Publisher: 國立中央大學
    Abstract: 本研究使用 Inconel 617 鎳基合金來探討應變速率效應。Inconel 617是第四代先進核反應系統的熱交換器候選材料之一。這個實驗在美國橡樹嶺國家實驗室進行,利用VULCAN在高能量的spallation中子源和搭配新開發動態讀取軟體來建立一個連續即時量測的環境。一般來說,楊氏模數會隨應變速率增快而增加。此實驗發現不同微觀模數會隨應變速率改變。在微觀下,{111}晶面的模數和巨觀的模數改變趨勢相反。我們搭配分子模擬及電子穿透顯微鏡來比較觀測到的應變速率效應。Inconel 617 is a structural-material candidate for the intermediate heat exchanger used in the Generation IV Reactor Power Plant. It is important to investigate its strain rate effect. We use both the high-flux neutrons at the Spallation Neutron Source and the novel data acquisition with reduction technique at the VULCAN Engineering Diffractometer to create in-situ experimental environment. Upon different strain rates, a change in the lattice modulus was discovered. In general, the greater Young’s moduli are typically in proportional to the bulk strain rate. The trend of the lattice-modulus transition is opposite to the changes of bulk modulus as a function of the strain rates. We also apply molecular dynamics (MD) simulation and transmission electron microscopy (TEM) to compare the measured strain rate effect.
    Appears in Collections:[National Central University Department of Chemical & Materials Engineering] Electronic Thesis & Dissertation

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