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EFFECT OF LOCAL STRAIN AND GND DENSITY ON CRACK INITIATION IN ALLOY 600

机译:局部应变和GND密度对合金600裂纹起始的影响

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In this work, strain and geometric necessarydislocation (GNDs) have been measured around variousgrain boundaries after subjected to a 4-point bend test insimulated PWR primary water conditions, with the aim ofclarifying which local conditions trigger SCC initiation.Three different regions are compared: in a cracked grainboundary, the cracked and the uncracked portions arecompared to a similar grain boundary in the as-receivedmaterial. l. To study this, “on-axis” Transmission KikuchiDiffraction (TKD) with a step size of 1 nm followed byGND analysis and cross-correlation based strainmapping, was performed. Results together with adiscussion on the limitations of the approach will bepresented.
机译:在这项工作中,应变和几何必要脱位(GNDS)已经围绕各种测量谷物边界后经过4分弯曲试验模拟PWR初级水条件,目的是澄清哪个局部条件触发SCC启动。比较三个不同的区域:在裂纹的谷物中边界,破裂和未包埋的部分是与接收的类似晶界相比材料。湖研究这一点,“轴上”传输kikuchi衍射(TKD),步长为1nm,然后是GND分析与基于互相关的应变映射,进行了。结果与a一起讨论方法的局限性提出了。

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