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Note that the eutectic mixture at point E always has the same composition.
A eutectic alloy is characterized by having a single melting point.
For an in depth discussion of the physics and chemistry, see eutectic point.
To improve the salt properties it must be mixed in a eutectic mixture.
This leads to a poor adhesion of the eutectic bond.
The eutectic mixture melts at the relatively low temperature of 183 C.
The surface preparation is the most important step to accomplish a successful eutectic bonding.
The mixture at the dip point of the diagram is called a eutectic alloy.
It has a eutectic point of 21.2 C and 23.3% salt by mass.
The temperature of the eutectic bonding procedure is dependent on the used material.
The procedure of eutectic bonding is divided into following steps:
The explanation given for the unusual speed of these reactions at such a low temperature is eutectic freezing.
A eutectic alloy freezes at a single, sharp temperature.
Its extra copper content encourages the eutectic behaviour and gives a lower freezing point.
Conversely, when a well mixed, eutectic alloy melts it does so at a single temperature.
Reactor salts are usually close to eutectic mixtures to reduce their melting point.
Microscopic examinations show that crystals of zinc are embedded in the eutectic mixture.
Small crystals of cadmium are interspersed in the finely divided eutectic mixture.
Sodium chloride and water form a eutectic mixture.
Pure and eutectic metals usually have narrow solidification ranges.
This can occur at lower temperatures if a eutectic uranium oxide-zirconium composition is formed.
Eutectic alloys melt at single temperature, without mushy region.
The most important parameters for eutectic bonding are:
Late '60 Cold Car started a new production in refrigerated vehicles using eutectic plates.
The resulting solid macrostructure from a eutectic reaction depends on a few factors.