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Synthesis of Nano-Structured Duplex and Ferritic Stainless Steel Powders by Planetary Milling: an Experimental and Simulation Study

机译:行星铣削合成纳米结构双相和铁素体不锈钢粉末的实验与模拟研究

摘要

Nano-structured duplex and ferritic stainless steel powders were prepared by planetary milling of elemental Fe, Ni and Cr powder compositions (duplex: 69Fe-18Cr-13Ni and ferritic:82Fe-17Cr-1Ni) in a dual drive planetary mill for 10 hours. The feasibility for solid solution formation of Cr and Ni in Fe matrix were studied. The samples were collected at regular time intervals and characterized for their morphological and phase analysis using X-Ray diffraction (XRD) and scanning electron microscopy (SEM). It has been observed that as the milling time increases crystallite size decreases and lattice strain increases. Powders were then compacted and sintered at the temperature of 1000 °C with a holding time of 1 hour. The sintered samples were again characterized for their morphological and phase change analysis using same techniques. Thermodynamic aspects of milled stainless steel powders were performed using Miedema model. The theoretical values of ?H, ?S and ?G were calculated and found to be -14.32kJ/mol, 6.93J/mol and -16.39 kJ/mol for duplex stainless steel and -2.81kJmol, 4.35Jmol and -4.11 kJ/mol for ferritic stainless steel respectively. The thermodynamic parameters were further experimentally calculated by differential scanning calorimetry (DSC) and the value of ?H was found to be -174.9 kJ/mol for duplex stainless steel and -134.2 kJ/mol for ferritic stainless steel respectively.udud
机译:纳米结构的双相和铁素体不锈钢粉末是通过在双驱动行星式研磨机中行星式研磨元素Fe,Ni和Cr粉末成分(双相:69Fe-18Cr-13Ni和铁素体:82Fe-17Cr-1Ni)10小时而制得的。研究了在Fe基体中固溶形成Cr和Ni的可行性。以规则的时间间隔收集样品,并使用X射线衍射(XRD)和扫描电子显微镜(SEM)对样品进行形态和相分析。已经观察到,随着研磨时间的增加,微晶尺寸减小并且晶格应变增大。然后将粉末压实并在1000°C的温度下烧结1小时。再次使用相同技术表征烧结样品的形态和相变分析。使用Miedema模型进行研磨后的不锈钢粉末的热力学方面的研究。计算出ΔH,ΔS和ΔG的理论值,发现双相不锈钢分别为-14.32kJ / mol,6.93J / mol和-16.39 kJ / mol,以及-2.81kJmol,4.35Jmol和-4.11kJ /。铁素体不锈钢分别为mol。通过差示扫描量热法(DSC)通过实验进一步计算了热力学参数,发现双相不锈钢的ΔH值为-174.9 kJ / mol,铁素体不锈钢的ΔH值为-134.2 kJ / mol。

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    Gupta Shalabh;

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  • 年度 2015
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