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Effect of chromium on the mechanical properties of powder-processed Fe-0.45wt.% P alloys

机译:铬对粉末加工Fe-0.45wt。%P合金力学性能的影响

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摘要

The present investigation shows the role of chromium in Fe-P binary and Fe-P-Cr ternary alloys. The compositions are characterized in terms of microstructure, porosity content, hardness and tensile properties. The alloys were made using a hot powder forging technique. In this process mild steel encapsulated powders were hot forged into slabs. Then the slabs were hot rolled and annealed to relieve the residual stresses. Densifications as high as 98.9% of theoretical density have been realized. Microstructures of these alloys consist of single-phase ferrite only. Both Fe-0.45P and Fe-0.45P-3Cr alloys showed very high strength. As forged and hot rolled Fe-0.45P alloy showed low elongation. It was observed that, the addition of Cr to Fe-P based alloys caused an increase in strength associated with the reduction in ductility. Alloys developed in the present investigation were capable of hot working to very thin gage of sheets and wires.
机译:本研究表明铬在Fe-P二元和Fe-P-Cr三元合金中的作用。该组合物的特征在于微观结构,孔隙率含量,硬度和拉伸性能。使用热粉末锻造技术制造合金。在此过程中,将低碳钢封装的粉末热锻成板坯。然后将板坯热轧并退火以消除残余应力。已经实现了高达理论密度的98.9%的致密化。这些合金的微观结构仅由单相铁素体组成。 Fe-0.45P和Fe-0.45P-3Cr合金均显示出很高的强度。 Fe-0.45P合金经锻造和热轧后显示出低伸长率。观察到,将Cr添加到Fe-P基合金中会导致强度的提高,并伴随延展性的降低。在本研究中开发的合金能够热加工至非常薄的薄板和线材。

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