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Enhancement of oxidation resistance of modified P91 grade ferritic-martensitic steel by surface modification using laser shock peening

机译:通过激光冲击喷丸进行表面改性来增强改性P91级铁素体-马氏体钢的抗氧化性

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摘要

In this paper, effect of laser shock peening (LSP) on high temperature oxidation behavior of P91 steel has been studied. P91 samples were subjected to single and triple LSP treatments at a constant laser power density of 3.9 GW.cm(-2). Single and triple LSP treatment led to the formation of ultrafine subgrains of sizes similar to 300 +/- 30 and similar to 105 +/- 10 nm respectively at near surface comparing to unpeened P91 sample (similar to 1200 +/- 120 nm). Further, unpeened and LSP treated samples were oxidized at temperatures of 600, 650 and 700 degrees C for time 5 to 200 h in air. Compare to unpeened sample, single and triple peened samples exhibited two and five fold reduction in weight gain after 200 h of oxidation at highest WA temperature (700 degrees C). Improvement of oxidation resistance in LSP treated samples is attributed to the formation of continuous layer of protective oxides such as (Fe,Cr)(2)O-3, Cr2O3 and MnCr2O4 due to enhanced diffusivity of Cr and Mn from bulk during early stage of oxidation. The enhanced diffusivity Cr and Mn in LSP treated samples have been further supported by reduction in apparent activation energy of oxidation, which is evaluated by modelling the time-temperature dependence of weight gain data in purview of kinetics theory.
机译:本文研究了激光冲击喷丸(LSP)对P91钢高温氧化行为的影响。 P91样品在3.9 GW.cm(-2)的恒定激光功率密度下经受了单次和三次LSP处理。与未喷丸的P91样品(类似于1200 +/- 120 nm)相比,单次和三次LSP处理导致在近表面形成尺寸分别类似于300 +/- 30和类似于105 +/- 10 nm的超细亚晶粒。此外,未喷丸和经LSP处理的样品在空气中于600、650和700摄氏度的温度下氧化5至200小时。与未喷丸的样品相比,在最高WA温度(700摄氏度)下氧化200小时后,单喷丸和三喷丸样品的重量增加减少了2倍和5倍。 LSP处理过的样品中抗氧化性的提高归因于保护性氧化物如(Fe,Cr)(2)O-3,Cr2O3和MnCr2O4的连续层的形成,这是由于Cr和Mn从铁素体的早期扩散而来的。氧化。通过降低表观氧化活化能进一步支持了LSP处理样品中Cr和Mn扩散系数的提高,这是通过在动力学理论范围内对重量增加数据的时间-温度依赖性建模来评估的。

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