By Karl U. Kainer
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34 31 32 1 Basics of Metal Matrix Composites The actual infiltration process for the production of metallic composite materials consists of several indexing steps: the formation of a contact between the melt and the reinforcement at the surface of a fiber or particle preform, the infiltration with the melt flow through the preform and the solidification procedure. At the beginning of the infiltration a minimum pressure must usually be developed, so that infiltration can follow. Usually a pressure-free spontaneous infiltration is not the rule, and is only possible with thin preforms with reactive systems and with long process times.
Fig. 5 Structure and Properties of Light Metal Composite Materials Structure of a titan matrix composite material of SiC monofilaments . Fig. 50 monofilament-reinforced materials and with wire composite superconductors (Fig. 52) the uniformity of the fiber arrangement which result from the production process is remarkable. 6 the material properties of different light alloy composite materials with continuous fibers are shown. 53 shows typical structure images of short-fiber reinforced light alloys.
4 Interface Influence Schematic presentation of solidification with external heat loss during a unidirectional infiltration . Fig. 39 dissipation, as represented in Fig. 39. The heat dissipation in the system preform/liquid or solidified melt is essentially determined by the thermal characteristics of the components (specific heat, thermal conductivity). Thus the reinforcements possess essentially higher specific heat values and smaller heat conductivities (exceptions are carbon fibers). 5 these characteristic values are summarized for C and Al2O3 fibers.
Metal Matrix Composites Kainer by Karl U. Kainer
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