Except
Rockwell hardness (HRB) of detection, it is essential that electrical
conductivity measuring in tungsten copper composite materials as heat sink
materials. Electrical conductivity is an important indicator to measure ability
to conduct electricity of tungsten copper heat sink, which directly affects the
final properties of products. The stronger ability to conduct electricity, the
smaller electrical resistance, on the contrary, electrical resistance is
greater. For hardness testing, if tungsten copper material over-burning, the
inside Cu phase will exude and lead to the emergence of the hole, making the
overall decrease in hardness; while the precipitation of Cu phase of segregation
occurred, and thus will make the hardness not dropped significantly. Based on the
theory, the relevant researchers have concluded that the most likely two
factors tungsten copper electrical conductivity of heat sink, one is copper
content, the other is the porosity.
Under
the intervention of external electric field, the outermost valence band
electrons gain a little extra energy without violating the exclusion principle
to reach many empty places within the band near. Compared with thermal
excitation out-of-order, Excited electrons by the electric field and the field
in the direction opposite to the momentum, it will produce a collective motion
in the crystal, thereby forming current. For tungsten copper heat sink, due to
different equivalent orbital and atom distance of W and Cu atoms, the band (or
empty) overlap, constitutes a full conduction band, and has excellent
electrical conductivity. For copper with divalent, its valence band is full
band, which the valence band and a higher band overlaps, filled with electrons
can occupy the vacated belt so that it has good conductivity; while tungsten
with hexa-valence, its valence band is not full and the electrical conductivity
is lower than copper phase. So this is a good proof of the conductivity of
tungsten copper heat sink materials or conductivity depends on copper content.
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