Merely rely on raising the temperature of the tungsten blanks
shrink to increase the density, which is difficult to control precisely. Such
as the deviation of heat matching, it is the major influencing factor of
conventional infiltration hermeticity. Some researchers try to ultrafine
tungsten powder added to certain activators, such as nickel (Ni), cobalt (Co),
iron (Fe), etc., and then mixed with copper powder. After pressing and
activated sintering, the relative density of tungsten copper can reach 98 % or
more, which can be a good solution to tungsten copper heat sink material hermeticity
issue. But it added activator of Ni, Co, Fe and other elements will be Cu and
W-phase and phase mutually dissolved, and magnetic Fe, Cu content changes will
directly affect the conductivity and the thermal conductivity of the material,
so not suitable in the heat sink industry applications.
Therefore, on this basis, the researchers conducted a process
optimization, the tungsten powder mixed with a small amount of copper powder,
copper powder can effectively preserve this part of the green bodies connected
pores, when carried out at high temperature and pressure infiltration of liquid
copper can be fully effective filled tungsten skeleton.
This
section is also known as copper induction of copper, its main role lies in two
main aspects, one is to enhance the strength of tungsten blanks, and the other
is infiltration process hermeticity guarantee.
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