The system divides the filler metals into eight classes. The class to which a filler metal is assigned is based in most cases on the major element present but in some instances, it has been decided by the similarity ofthe filler metal to others in the same class.
The eight classes are as follows.
1) al: filler metals containing aluminium as the major element.
2) ag: filler metals containing silver as a significant addition, even ifnot the major element.
3) cp: filler metals containing copper as the major element with an addition ofphosphorus.
4) cu: filler metals containing copper as the major element, not elsewhere classified.
5) ni: filler metals containing nickel as the major element.
6) co: filler metals containing cobalt as the major element.
7) pd: filler metals containing palladium, in any amount.
8) au: filler metals containing gold, in any amount.
The code for each flller metal consists ofthe two letters for the class followed by three digits, allocated sequentially, starting at 101. Some classes have been sub-divided, with the digits starting at 101 for the first sub-division, 201 forthe second, etc.
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We hold immense expertise in making available Copper in many forms including LME registered and non registered cathodes, billets, rods, cakes, bars, foil, sheet, granules, plates, powder, shot, turnings, wire, insulated wire, mesh and “evaporation slugs”. Copper is one of the most important metals. Copper is reddish with a bright metallic lustre. It is malleable, ductile, and a good conductor of heat and electricity (second only to silver in electrical conductivity). Its alloys, brass and bronze, are very important. Monel and gun metals also contain copper. The most important compounds are the oxide and the sulphate, (blue vitriol
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Lead powder and lead concentrate are different forms of lead that serve various industrial purposes. Here's an overview of each: Lead Powder: Form: Lead powder refers to finely ground particles of lead metal, typically in powder or granular form. Uses: Battery Manufacturing: Lead powder is often used in the production of lead-acid batteries. Radiation Shielding: Lead is known for its ability to absorb and shield against radiation, and lead powder can be used in various applications where radiation protection is required. Ammunition: Lead powder is a component in the production of ammunition and bullets. Metal Coatings: It may be used in the manufacturing of certain types of paints and coatings. Lead Concentrate: Form: Lead concentrate is a raw material derived from the mining and processing of lead ores. It is not a pure form of lead but rather a mixture containing lead and other minerals. Composition: Lead concentrate typically contains lead sulfide (galena) as the primary mineral, along with other sulfide minerals. Processing: The lead concentrate is further processed through smelting to extract pure lead metal. Uses: Lead concentrate is a crucial intermediate product in the production of refined lead. It is an essential raw material for lead smelters, where the lead is separated from impurities and processed into the desired forms. Lead concentrate may also contain valuable by-products such as silver and zinc.
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