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Mechanical behaviour of metals

In this chapter, we will explain the mechanisms behind the plastic deformation of metals. Afterwards, we will discuss how the stress required for plastic deformation can be increased, thus strengthening the material. [Pg.165]


Lo J, Finello D, Schmerling M, Marcus HL, Interface structure of heat treated aluminum-graphite fiber composites, JE Hack, Amateau MF eds.. Mechanical Behaviour of Metal-Matrix Composites, The Metallurgical Society of AIME, Warrendale, 77, 1983. [Pg.650]

At first sight, the mechanical behaviour of metallic foams appears as the simplest among competing GDL solutions, as their structure offers homogenised properties. This is only partially achievable, however, due to their non-periodic structure and the effect of the number of struts [8]. Non-negligible anisotropy, non-uniform deformation patterns and considerable scatter in the measurements of identical samples are reported [8, 96]. Nevertheless, simple relations based on analytical considerations on the possible deformation modes of simplified unit... [Pg.131]


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