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Typical alloys are 3–4% silver, 0.5–0.7% copper, and the balance (95%+) tin. [3] For example, the common "SAC305" solder is 3.0% silver and 0.5% copper. Cheaper alternatives with less silver are used in some applications, such as SAC105 and SAC0307 (0.3% silver, 0.7% copper), at the expense of a somewhat higher melting point.
Soldering performed using alloys with a melting point above 450 °C (840 °F; 720 K) is called "hard soldering", "silver soldering", or brazing. In specific proportions, some alloys are eutectic — that is, the alloy's melting point is the lowest possible for a mixture of those components, and coincides with the freezing point.
15: Ag 50 Cu 15.5 Zn 15.5 Cd 16 Ni 3: Ag–Cu–Zn 635/655 [1] 630/690 [61] 632/688 [67] Cd BAg-3, AMS 4771, AG 351, Easy-Flo 3, Silvaloy 50N, Mattibraze 50N, Silver Alloy 50Ni3. For 300-series stainless steel. For joining tungsten carbide, beryllium copper and aluminium bronze to steel. Introduced as a replacement of BAg-1a due to its ...
The zinc content can vary between few % to about 40%; as long as it is kept under 15%, it does not markedly decrease corrosion resistance of copper. Brasses can be sensitive to selective leaching corrosion under certain conditions, when zinc is leached from the alloy ( dezincification ), leaving behind a spongy copper structure.
Decarburizing, AWS type 2, "endothermic generated atmospheres. 70–71% N 2, 5–6% CO 2, 9–10% CO, 14–15% H 2. For copper, silver, copper-phosphorus and copper-zinc filler metals. For brazing copper, brass, nickel alloys, Monel, medium carbon steels. Combusted fuel gas
Silver mica, glass, silicon, air-gap and vacuum capacitors are named for their dielectric. Overview over the most commonly used fixed capacitors in electronic equipment In addition to the above shown capacitor types, which derived their name from historical development, there are many individual capacitors that have been named based on their ...
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