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The Phase Conversion in Stainless Steel under LSW Processing

机译:LSW工艺下不锈钢的相变

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There is a laser processing method known as LSW (laser shock waves in transparent condensed medium), which provides great surface compression and low plastic deformation and could be used for modification of material properties. The influence of laser shock waves in transparent condensed medium on phase conversion in stainless steel X18H10T is studied by M?ssbauer spectroscopy and electroresistance methods. The shock waves were generated by impact of nanosecond laser pulses with power density q ~ 1013 W/m2. It is shown that shock waves passage in this material causes martensite conversion and increases corrosion stability. Austenite obtained in such a way has increased corrosion stability in liquid lithium in comparison with austenite obtained after conventional thermal treatment. The formation of austenite by the shock waves mechanism is connected with two rival action factors: great (2 GPa) compression and low (ε ~ 0,001) plastic deformation degree. The selective dissipation of LSW is the main factor which causes the cleaning of the grain border from the impurities and the homogenizing of structure. A similar effect of homogenization and ordering after LSW-treatment was observed in IV - VI semiconductors.
机译:有一种称为LSW(透明冷凝介质中的激光冲击波)的激光加工方法,该方法可提供较大的表面压缩率和较低的塑性变形,并可用于修改材料特性。通过Msssbauer光谱学和电阻法研究了透明凝聚介质中的激光冲击波对X18H10T不锈钢相变的影响。冲击波是由功率密度为q〜10 13 W / m 2 的纳秒激光脉冲的冲击产生的。结果表明,冲击波在这种材料中的通过会引起马氏体转变并增加腐蚀稳定性。与常规热处理后获得的奥氏体相比,以这种方式获得的奥氏体在液态锂中具有增强的腐蚀稳定性。冲击波机制引起的奥氏体形成与两个相互竞争的作用因素有关:较大的(2 GPa)压缩和较低的(ε〜0,001)塑性变形程度。 LSW的选择性耗散是导致杂质清除晶界和使结构均匀化的主要因素。在IV-VI半导体中观察到LSW处理后的均质化和有序化的相似效果。

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