Welding reviews 

1.Inverters

Inverters are fast taking over from other types of welding machines. These machines are able to provide AC and smooth stable DC output at high-efficiency levels, and feature lightweight construction. The machines operate on either 240 V or 415 V AC input current and immediately rectify this to DC using a series of high temperature diodes. This DC current is stored in filter capacitors and then converted to an oscillated AC output in an oscillator stage at a much higher frequency than the input supply. This high-voltage/high-frequency signal is then fed into a high-efficiency transformer primary coil and high-frequency AC current is produced in the secondary coil. The frequency can be anything from 5 kHz upward, depending on the design and type of output required. Due to the high-frequency AC generated by the oscillator, the weight of transformers can be reduced dramatically because there is no magnetic loss or heat loss through the windings, and much greater transformer efficiencies can be achieved. Now that a high-frequency, low voltage, but high current power supply has been created it can be used as high-frequency AC welding power for MMAW or GTAW of aluminium. Alternatively the AC can then be rectified into DC current again and passed through a second filtering system to produce a very smooth current flow. Welding machines with an output frequency of around 5 kHz demonstrate a characteristic whistling sound during welding. Inverter welding machines have very good electronic controls that can regulate the voltage and current. They are also very efficient and highly portable due to their reduced weight.

The inverter cycle 1. Mains current rectified to DC and stored. 2. DC is oscillated to a high frequency. 3. High-frequency/high voltage AC is transformed to low voltage AC. 4. AC rectified to produce DC. 5. DC filtered to a smooth current. Inverters and advantages 1 Weight reduction, hence portability. 2 Multi process application SMAW,GTAW,GMAW 3 DC output for variety of applications 4 Efficiency 80-90 percent 5 Best performanceEase of controls 

2.Basic SMAW

  Control of arc blow: 1. Use AC instead of DC 2. Weld away from work lead 3. Use shorter arc length 4. Change welding direction Size of electrode to be used 1.Thickness of plates 2.Welding position 3.Type of joint 4.Welder skill

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Soldering

Soldering processes using electrical soldering iron , wave soldering , resistance heating are very popular for electrical , electronic appliances and circuit boards manufacture. Soldering and brazing only differ with respect to filler metal melting temperature. (solders have less than 450oC melting temperature). Lead-tin solders are extensively used for electric applications.

High temperature soldering fillers have melting range between 371 and and 427 deg.c Low temperature fillers have melting temperatures below 312deg.c. Some of the widely used soldering alloys are Pb-Sn ,Sn-Pb-Sb,Sn-Zn. Electrical industries depend to a great extent on soldering to join wire to strip,wire to wire  joints.Printed circuit boards manufacture uses Wave soldering equipment for various applications. Many other areas include temperature sensitive components , instrumentation, plumbing, radiators,armatures, tin ware etc.

Vacuum brazing

Any heating system along with vacuum environment provides clean joints required for critical components. High quality joints without flux can be produced and highly accurate assemblies are possible which can be used directly without further operations.