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Pulvermetallurgische Erzeugung von SiC‐ und Al2O3‐verstärkten Al‐Cu‐Legierungen
Authors:H Podlesak  S Siebeck  S Mücklich  M Hockauf  LW Meyer  B Wielage  D Weber
Affiliation:1. TU Chemnitz, Institut für Werkstoffwissenschaft und Werkstofftechnik, D‐09107 Chemnitz;2. Lehrstuhl Werkstoffe des Maschinenbaus, TU Chemnitz
Abstract:Powder metallurgical fabrication of SiC and Al2O3 reinforced Al‐Cu alloys Based on metallographic studies the states of composite powder formation during high‐energy ball milling will be discussed. Spherical powder of aluminium alloy AA2017 was used as feedstock material for the matrix. SiC and Al2O3 powders of submicron and micron grain size (<2 μm) were chosen as reinforcement particles with contents of 5 and 15 vol.‐% respectively. The milling duration amounted to a maximum of 4 hours. The abrasion of the surface of the steel balls, the rotor and the vessel is indicated by the content of ferrous particles in the powder. High‐energy ball milling leads to satisfying particle dispersion for both types of reinforcement particles. Further improvements are intended. The microstructure of compact material obtained by hot isostatic pressing and extrusion was studied in detail by scanning and transmission electron microscopy. For both types of reinforcement the microstructure of composites is similar. The microporosity is low. The interface between reinforcement particles and matrix is free of brittle phases and microcracks. In the case of SiC reinforcement particles, a small interface interaction is detectable which implies a good embedding of reinforcement particles. High‐energy ball milling under air‐atmosphere leads to the formation of the spinel phase MgAl2O4 during the subsequent powder‐metallurgical processing. Because of the size, rate and dispersion of the spinel particles, an additional reinforcement effect is expected.
Keywords:Hochenergiekugelmahlen  Aluminiummatrix‐Verbundwerkstoff  EN AW‐2017  SiC‐ und Al2O3‐Partikelverstä  rkung  Mikrostruktur  High‐energy ball milling  Aluminium matrix composite  AA2017  SiC and Al2O3 particle reinforcement  Microstructure
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