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Synthesis and Characterization of 17 Cr Ferritic ODS Steel Developed Through Vacuum Hot Pressing

机译:通过真空热压开发17 CR铁素体ODS钢的合成与表征

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In the present investigation, on 17 Cr ferritic oxide dispersion strengthened (ODS) steel composition of (430L + 0.3Y_2O_3 + 0.5ZrO_2 + 0.1Ti) wt% (alloy A) and (430L + 0.3Y_2O_3 + 0.5ZrO_2 + 0.1Ti + 4AI) wt% (alloy B) were developed through mechanical alloying (MA) using VHP (vacuum hot pressing). The mechanically alloyed powders were taken at different milling time intervals for confirming the nanocrystalline size using X-Ray Diffraction (XRD). Finally, 20 h of milled powders were consolidated through vacuum hot pressing (VHP) at 1180°C in the pressure levels of 60 MPa, and the cooling rate of 50°C/min. Throughout the experiments, the vacuum level was maintained by 10~(-3) Torr. Hot-pressed samples were subjected to densification studies; microstructural examination and hardness were analyzed in the current study. The nanocrystalline size of 3.6 nm (alloy A) and 6 nm (alloy B) were obtained at 20 h of milling time. The highest hot-pressed density of 7.60 g/cc (99% theoretical density) was acquired for aluminium-free ferritic ODS steel (alloy A) pressure at 60 MPa, whereas aluminium-contained alloy B lesser hot-pressed density of 7.34 g/cc was obtained. The microstructures of alloy A and alloy B containing ferrite along with complex oxides such as (Y-Zr-Ti-O) and (Y-Zr-Ti-Al-O), which is evident from TEM-EDS analysis. Alloy A has a higher hardness (870 VHN) due to the fine grains structure of material compared with alloy B (764 VHN).
机译:在本研究中,在17 Cr铁素体氧化物分散体加强(ODS)钢组合物(430L + 0.3Y_2O_3 + 0.5×2 + 0.1Ti)wt%(合金A)和(430L + 0.3Y_2O_3 + 0.5 Zro_2 + 0.1ti + 4a )通过使用VHP(真空热压)通过机械合金化(MA)开发WT%(合金B)。以不同的研磨时间间隔拍摄机械合金粉末,用于使用X射线衍射(XRD)来确认纳米晶体尺寸。最后,将20小时在1180℃下在60MPa的压力水平下通过真空热压(VHP)固结,冷却速率为50℃/ min。在整个实验中,真空水平由10〜(3)托进行。进行热压样品进行致密化研究;本研究分析了微观结构检查和硬度。在20小时的研磨时间获得3.6nm(合金A)和6nm(合金B)的纳米晶体尺寸。在60MPa的无铝铁素体ODS钢(合金A)压力下获得最高的热压密度为7.60g / cc(理论密度为99%的理论密度),而铝合金合金B小于热压密度为7.34克/获得了CC。铁素体的合金A和合金B与诸如(Y-ZR-Ti-O)和(Y-ZR-Ti-Al-O)的复合氧化物的微观结构是从TEM-EDS分析中明显的。与合金B(764 VHN)相比,合金A具有较高的硬度(870 VHN),其材料与材料的细粒结构相比。

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