By S. Zinn
This e-book offers an exceptional evaluate of the variety of purposes of induction heating with equipment in which traditional in addition to certain heating jobs might be designed round the features of the process.
The publication discusses the speculation of induction heating, tuning of induction heating circuits and cargo matching and summarizes significant apparatus issues in designing induction heating structures. layout approaches are completely lined for warmth treating. The e-book incorporates a designated dialogue on basics of technique keep watch over for a number of induction heating concerns.
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Extra resources for Elements of Induction Heating: Design Control and Applications (06522G)
Capacitor connections are generally made by connecting the terminals of individual capacitors to a c o m m o n bus. This can be accomplished by use of bolted links, or large washers under the nut on the stud, where the stud is normally insulated from the bus. When changes must be made frequently, as in melting systems, a remote switching system is normally provided that operates individual contactors to connect the stud to the bus. ) C1 (a) -Q ( C2 Ca Coil 0 Coil (b) Fig. 13. Schematic circuit diagrams of low- to medium-frequency heat stations illustrating capacitor and transformer adjustments when using (a) an eutotransformer (for high-impedance induction coils) end (b) an iosolation transformer (for low-impedance induction coils) because the impedance would change dramatically if the part were not in place.
Solid-State Inverters With the development of high-power silicon-controlled rectifiers (SCR's) having rapid turn on/turn off times, it became possible to provide an equivalent to the motor-generator system. While eliminating a number of basic disadvantages, not the least of which is inefficient operation, the solid-state inverter provides some new and unique operational capabilities. The first development in this field was that of the swept- (or variable-) frequency inverter. With this system (Fig.
Laminated core and primary winding for an induction unit used to expand bearings: (a) "split-yoke" system and (b) production bearing heater (from C. A. Tudbury, Basics of Induction Heating, Vol 2, John F. , New York, 1988; Read Electric Sales and Supply) The 180-Hz supply, also known as a tripler because it is derived directly from 60-Hz line current, is composed of three saturable reactors, each of which is connected between one leg of a Y-connected secondary and a singlephase load. The voltages from the secondaries are 120 ° apart.
Elements of Induction Heating: Design Control and Applications (06522G) by S. Zinn