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Voltage-pulsed and laser-pulsed atom probe tomography of a multiphase high-strength low-carbon steel

机译:多相高强度低碳钢的电压脉冲和激光脉冲原子探针层析成像

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摘要

The differences in artifacts associated with voltage-pulsed and laser-pulsed (wavelength = 532 or 355 nm) atom-probe tomographic (APT) analyses of nanoscale precipitation in a high-strength low-carbon steel are assessed using a local-electrode atom-probe tomograph. It is found that the interfacial width of nanoscale Cu precipitates increases with increasing specimen apex temperatures induced by higher laser pulse energies (0.6-2 nJ pulse~(-1) at a wavelength of 532 nm). This effect is probably due to surface diffusion of Cu atoms. Increasing the specimen apex temperature by using pulse energies up to 2 nJ pulse~(-1) at a wavelength of 532 nm is also found to increase the severity of the local magnification effect for nanoscale M2C metal carbide precipitates, which is indicated by a decrease of the local atomic density inside the carbides from 68 ± 6 nm~(-3) (voltage pulsing) to as small as 3.5 ± 0.8 nm~(-3). Methods are proposed to solve these problems based on comparisons with the results obtained from voltage-pulsed APT experiments. Essentially, application of the Cu precipitate compositions and local atomic density of M_2C metal carbide precipitates measured by voltage-pulsed APT to 532 or 355 nm wavelength laser-pulsed data permits correct quantification of precipitation.
机译:使用局部电极原子-评估与高强度低碳钢中纳米级析出物的电压脉冲和激光脉冲(波长532或355 nm)原子探针层析成像(APT)分析相关的伪影差异。探头断层扫描仪。研究发现,随着较高激光脉冲能量(波长为532 nm的0.6-2 nJ脉冲〜(-1))的诱导,随着样品顶点温度的升高,纳米级Cu沉淀物的界面宽度也随之增加。这种影响可能是由于Cu原子的表面扩散所致。还发现通过在532 nm的波长下使用高达2 nJ pulse〜(-1)的脉冲能量来提高标本的顶点温度,会增加纳米级M2C金属碳化物沉淀的局部放大效应的严重性,这表明减小碳化物内部的局部原子密度从68±6 nm〜(-3)(电压脉冲)降至3.5±0.8 nm〜(-3)。通过与电压脉冲APT实验获得的结果进行比较,提出了解决这些问题的方法。本质上,通过对532或355 nm波长的激光脉冲数据进行电压脉冲APT测得的Cu沉淀成分和M_2C金属碳化物沉淀的局部原子密度,可以对沉淀进行正确定量。

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