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Grain refinement and deformation behavior of ultrafine grained Pd and Pd-Ag alloys produced by HPT

机译:HPT生产的Pd和Pd-Ag超细晶粒合金的晶粒细化和变形行为

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Investigations of mechanical properties of nanocrystalline (nc) materials are still in interest of materials science, because they offer wide application as structural materials thanks to their outstanding mechanical properties. NC materials demonstrate superior hardness and strength as compared with their coarse grained counterparts, but very often they possess a limited ductility or show low uniform elongation due to poor strain hardening ability. Here, we present the results of investigation of the microstructure and mechanical properties of nc Pd and Pd-x%Ag (x=20, 60) alloys. The initially coarse grained Pd-x% Ag samples were processed by high pressure torsion, which resulted in formation of homogenous ultrafine grain structure. The increase of Ag contents led to the decrease of the resulted grain size and change in deformation behavior, because of decreasing of stacking fault energy (SFE). The samples with larger Ag contents demonstrated the higher values of hardness, yield stress and ultimate stress. Remarkably the uniform elongation had also increased with increase of strength.
机译:纳米晶(nc)材料的机械性能研究仍是材料科学领域的研究热点,因为它们具有出色的机械性能,因此可作为结构材料广泛应用。与粗糙颗粒的NC材料相比,NC材料具有优异的硬度和强度,但是由于应变硬化能力差,它们通常具有有限的延展性或均匀伸长率低。在这里,我们介绍了对nc Pd和Pd-x%Ag(x = 20,60)合金的组织和力学性能的研究结果。最初粗大的Pd-x%Ag样品经过高压扭转处理,从而形成了均匀的超细晶粒结构。由于堆垛层错能(SFE)的降低,Ag含量的增加导致所得晶粒尺寸的减小和变形行为的改变。 Ag含量较高的样品表现出较高的硬度,屈服应力和极限应力值。明显地,均匀伸长率也随着强度的增加而增加。

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