Functionally Gradient Material Fabrication Based on Cr, Ti, Fe, Ni, Co, Cu Metal Layers via Spark Plasma Sintering

Author:

Shichalin Oleg O.ORCID,Papynov Evgeniy K.ORCID,Buravlev Igor Yu.ORCID,Buravleva Anastasiya A.,Chuklinov Sergey V.,Gridasova Ekaterina A.,Pogodaev Anton V.,Nepomnyushchaya Valreiia A.,Kornakova Zlata E.,Lembikov Alexey O.ORCID,Gritsuk Danila V.,Kapustina Olesya V.,Gribanova Sofia S.,Shi YunORCID

Abstract

The paper presents a method of obtaining functionally graded material (FGM) of heterogeneous (layered) type based on joined metals Cr-Ti-Fe-Co-Ni-Cu using spark plasma sintering (SPS) technology. The structure, elemental and phase composition of FGM obtained on the basis of joined metals with different values of the temperature coefficient of linear expansion (CTLE) were studied by SEM, EDS and XRD methods with regard to the phase states of the alloy system. Based on the Vickers microhardness data, the evaluation of the mechanical characteristics of FGM in the whole sample body and locally at the contact boundaries of the joined metals was carried out. The results of the study are new and represent a potential for FGM, as well as functionally graded coatings (FGC), which have special physical, chemical and mechanical properties and are highly demanded for the manufacture of structures and products for industrial applications.

Funder

the Ministry of Science and Higher Education of the Russian Federation

the National Natural Science Foundation of China

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

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