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Free-flowing, most fluid of aluminium filler metals. General purpose filler metal, can be used with brazeable aluminiums in all types of brazing. For joining aluminium and its alloys. Can be used for joining aluminium and titanium to dissimilar metals; the risk of galvanic corrosion then has to be considered.
For copper, silver, nickel, copper-phosphorus and copper-zinc filler metals. Nitrogen+hydrogen+carbon monoxide Cryogenic or purified (AWS type 6B). 70–99% N 2, 2–20% H 2, 1–10% CO. For copper, silver, nickel, copper-phosphorus and copper-zinc filler metals. For brazing copper, brass, low-nickel alloys, medium and high carbon steels. Nitrogen
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The oxidation states are also maintained in articles of the elements (of course), and systematically in the table {{Infobox element/symbol-to-oxidation-state}} See also [ edit ]
This is a list of named alloys grouped alphabetically by the metal with the highest percentage. Within these headings, the alloys are also grouped alphabetically. Within these headings, the alloys are also grouped alphabetically.
Carbon dioxide: 3.640 0.04267 Carbon disulfide: 11.77 0.07685 Carbon monoxide: 1.505 0.0398500 Carbon tetrachloride: 19.7483 0.1281 Chlorine: 6.579 0.05622 Chlorobenzene: 25.77 0.1453 Chloroethane: 11.05 0.08651 Chloromethane: 7.570 0.06483 Cyanogen: 7.769 0.06901 Cyclohexane: 23.11 0.1424 Cyclopropane [2] 8.34 0.0747 Decane [2] 52.74 0.3043 1 ...
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These are metal-ligand complexes where carbon monoxide is bonded to individual atoms of metals . Iron carbonyl is stable as iron pentacarbonyl , where five carbon monoxide molecules are pendently bonded to the iron atom, while nickel carbonyl is stable as nickel tetracarbonyl, which has four carbon monoxide molecules pendantly bonded [ jargon ...