3 research outputs found

    Nanostructured nickel made by cumulative plastic deformation involving hydrostatic extrusion and ECAP processes

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    W pracy przedstawiono ewolucję mikrostruktury oraz właściwości niklu w funkcji rosnącego odkształcenia plastycznego, generowanego poprzez procesy przeciskania przez zagięty kanał kątowy (ECAP) i wyciskania hydrostatycznego (HE) oraz kombinację tych procesów. W wyniku badań otrzymano nanostrukturalny nikiel o wielkości ziarna 100 nm, i bardzo wysokiej wytrzymałości (R0.2 = 1180 MPa) w kombinacji z relatywnie wysoką plastycznością na poziomie 11% wydłużenia.The microstructure evolution and properties of nickel during increasing deformation by ECAP and HE and their combination have been presented. As a result, the nanocrystalline nickel of 100 nm in grain size and high yield strength YS = 1180 MPa with relatively high elongation 11% has been obtained

    Structure and properties of nanomaterials produced by severe plastic deformation

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    In recent years, a number of methods for refining the structure of metals by severe plastic deformation (SPD) have been developed. Some of those methods permit grain refinement to a nanometric level. These methods include, among others, high pressure torsion (HPT), equal channel angular pressing (ECAP) and hydrostatic extrusion (HE). The aim of this paper was a more detailed description of these methods and presentation of exemplary applications of these methods for structure refinement and improvement of mechanical properties of chosen materials. The results obtained in the present study show that the microstructures of the materials subjected to SPD studied in this work displayed considerable refinement, characterised by the formation of nanosized grains. Such a refinement resulted in increased tensile strength and hardness of the SPD materials studied in this work. In view of the results obtained on a large number of metals and alloys, a conclusion can be drawn that SPD could become an attractive way of processing materials for variety of applications
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