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EN
There is increasing interest in the synthesis of aluminium-based alloys by mechanical alloying (MA). These materials possess a high specific strength and in high temperature applications, exhibit attractive mechanical properties. The aim of this work was to study the structural and phase transformations that take place during mechanical alloying of the ternary Al50Fe25Ti25 alloy in a high energy planetary ball mill. Two experiments were performed: one with an addition of ethanol and the other without any additional agent. The nanocrystalline composite powder, consisting of titanium carbide distributed in the Fe(Al) matrix was the final product of the process performed with the addition of ethanol. After milling without any agent an amorphous phase was observed to form. When this phase was then subjected to heating in a calorimeter the ternary phase tau2(Al2FeTi) and Fe(Al, Ti) solid solution appeared.
EN
The paper presents the results investigations carried out in the frame of the Project CT 96-0750 MicroAlu of Inco-Copernicus program. The investigated materials are PM aluminium alloys with high contents of silicon. The aim of this part is a comprehensive characterisation of microstructure features and specific parameters at the example of an AlSi27Ni6 alloy. The experiments on the plastic and viscoplastic behaviour of this alloy (compressive and tensile tests) at different temperatures and strain rates were done to identify the material properties. The evolution of the microstructure of the tested specimens due to temperature rise and deformation process was investigated with optical and electron microscopy as well as with X-ray analysis technique. The alloy was compacted by a PM extrusion process to a preform and then forged to a final product -connecting rod. From the performed experiments the constitutive parameters were identified and the connecting rod forging process has been simulated by means of a general purpose FEM program.
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