Home-made Electrical ApparatusMorgan, Alfred Powell
Science
Home-made Electrical Apparatus
Morgan, Alfred Powell
Electric apparatus and appliances -- Amateurs' manuals
The right hand sketch in Figure 52 shows how the electrodes should
appear when they are mounted in position on the underside of the cover.
They are placed about two and one-half inches to three inches apart.
The solution is formed by dissolving sodium-phosphate in water until a
"saturated solution" is formed, that is, until the water will not
dissolve any more. Sodium-phosphate dissolves rather slowly and it will
be necessary to stir the solution and crush the lumps which form with a
stick or glass rod.
Fill the jars nearly to the top and then place the electrodes into
position.
[Illustration: FIG 51.—A Cast Electrode will last much longer than one
cut from Sheet Metal. Cast Electrodes like that above are on the market
and can be purchased very reasonably.]
The action of the electrolytic rectifier, in changing alternating
current into direct current, is interesting and peculiar. The rectifier
acts much like a valve which opens one way and closes the other.
If a battery is connected to the electrodes of a rectifier, the positive
pole of the battery being connected to the lead or iron electrode and
the negative of the battery to the aluminum electrode of the rectifier,
the current from the battery will flow through the rectifier and nothing
unusual will happen. If, however, the poles are reversed so that the
positive pole is connected to the aluminum electrode, oxygen gas will
form on the aluminum. The action of the oxygen gas is to combine with
the aluminum and form a coating of *aluminum oxide* all over the
electrode. Aluminum oxide is an insulator and it therefore quickly forms
an insulating coating which shields the electrode from the solution and
stops the passage of the current. This action is almost instantaneous.
[Illustration: FIG. 52.—A completed single Cell Rectifier. The right
hand sketch shows how the Electrodes are mounted on the underside of the
cover.]
If the rectifier is connected to an alternating current supply it will
act just like a valve permitting the current to flow in one direction
but stopping it whenever the aluminum electrode is *positive*. The
resulting current is therefore, under proper conditions, an intermittent
current flowing only in one direction.
An alternating current may be represented by a wavy line drawn above and
below a straight line. Every time that the wavy line crosses the
straight line it represents an alternation or a reversal of the
direction in which the current flows.
[Illustration: FIG. 53.—A Diagram showing how a Rectifier cuts off
one-half of the Alternating Current Wave and changes it into Pulsating
Direct Current.]
The direct current from an electrolytic rectifier working under proper
conditions is practically one-half of the alternating current wave and
may be represented by the series of waves marked by "C" in the lower
part of the illustration in Figure 53.
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