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Effect of Nanosize Yittria and Tungsten Addition to Duplex Stainless Steel During High Energy Planetary Milling

机译:高能量行星铣削过程中纳米尺寸和钨加入双相不锈钢的影响

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In this present investigation, elemental powders of duplex stainless steel composition (Fe-18Cr-13Ni) with 1 wt. % nano yittria and tungsten were milled separately in dual drive planetary mill (DDPM) for 10 h to fabricate yittria dispersed and tungsten dispersed duplex stainless steel powders. The milled powder samples were characterized by X-Ray diffraction and scanning electron microscopy (SEM) to study the size, morphology and phase evolution during milling. The gradual transformation from ferrite to austenite is evident from XRD spectra during milling. The crystallite size and lattice strain of yittria dispersed duplex stainless steel after 10 h milling were found to be 7 nm and 1.1% respectively. The crystallite size of tungsten dispersed duplex stainless steel was 5 nm. It has been observed from SEM analysis that particles size has been reduced from 40 to 5 urn in both cases. Annealing of 10 h milled powder was performed at 750°C for 1 h under argon atmosphere to study phase transformation in both yittria and tungsten dispersed duplex stainless steel. The XRD analysis of annealed stainless steel depicts the phase transformation from a-Fe to y-Fe with the formation of oxides of Y,Fe and Cr. The differential scanning calorimetry analysis was conducted by heating the milled powder from room temperature to 1200°C under argon atmosphere to investigate the thermal analysis of both the stainless steel powders.
机译:在本前研究中,具有1wt的双相不锈钢组合物(Fe-18Cr-13Ni)的元素粉末。 %纳米yittria和钨在双驱动行星磨机(DDPM)中分别研磨10小时,以制造yittraia分散和钨分散的双链不锈钢粉末。通过X射线衍射和扫描电子显微镜(SEM)以研磨的扫描电子显微镜(SEM)为特征来研究研磨过程中的尺寸,形态和相位演化。在研磨过程中,铁素体与奥氏体的逐渐转化是从XRD光谱中明显的。将10 H铣削后的yittria分散双相不锈钢的微晶尺寸和晶格菌株分别为7nm和1.1%。钨分散双相不锈钢的微晶尺寸为5 nm。从SEM分析中观察到,在两种情况下,粒子尺寸的粒度减少到5瓮。在氩气氛下在750℃下在750℃下进行10小时粉末的退火,以研究yittria和钨分散双相不锈钢中的相变。退火不锈钢的XRD分析描述了y,Fe和Cr的氧化物形成的A-Fe至Y-Fe的相变。通过在氩气氛下将研磨的粉末从室温加热至1200℃来进行差分扫描量热法分析,以研究不锈钢粉末的热分析。

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