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  2. Lead - Wikipedia

    en.wikipedia.org/wiki/Lead

    Lead (/ l ɛ d /) is a chemical element; it has symbol Pb (from Latin plumbum) and atomic number 82. It is a heavy metal that is denser than most common materials. Lead is soft and malleable, and also has a relatively low melting point. When freshly cut, lead is a shiny gray with a hint of blue. It tarnishes to a dull gray color when exposed to ...

  3. Melting points of the elements (data page) - Wikipedia

    en.wikipedia.org/wiki/Melting_points_of_the...

    The Gmelin rare earths handbook lists 1522 °C and 1550 °C as two melting points given in the ... 82 Pb lead; use: 600.61 K: 327.46 °C: 621.43 °F WEL: 600.61 K:

  4. Melting point - Wikipedia

    en.wikipedia.org/wiki/Melting_point

    The melting point (or, rarely, liquefaction point) of a substance is the temperature at which it changes state from solid to liquid. ... Lead: 11.342: 600.61: 2,022 ...

  5. Metals of antiquity - Wikipedia

    en.wikipedia.org/wiki/Metals_of_antiquity

    The metals of antiquity generally have low melting points, with iron being the exception. Mercury melts at −38.829 °C (−37.89 °F) [21] (being liquid at room temperature). Tin melts at 231 °C (449 °F) [21] Lead melts at 327 °C (621 °F) [21] Silver at 961 °C (1763 °F) [21] Gold at 1064 °C (1947 °F) [21] Copper at 1084 °C (1984 °F ...

  6. Pewter - Wikipedia

    en.wikipedia.org/wiki/Pewter

    In the past, it was an alloy of tin and lead, but most modern pewter, in order to prevent lead poisoning, is not made with lead. Pewter has a low melting point, around 170–230 °C (338–446 °F), depending on the exact mixture of metals.

  7. Tin-silver-copper - Wikipedia

    en.wikipedia.org/wiki/Tin-silver-copper

    The melting point of SAC alloys is 217–220 °C, or about 34 °C higher than the melting point of the eutectic tin-lead (63/37) alloy. This requires peak temperatures in the range of 235–245 °C to achieve wetting and wicking .

  8. Liquation - Wikipedia

    en.wikipedia.org/wiki/Liquation

    The cakes are heated in a liquation furnace, usually four or five at once, to a temperature above the melting point of lead (327°C), but below that of copper (1084 °C), so that the silver-rich lead melts and flows away. [5] As the melting point of lead is so low a high-temperature furnace is not required and it can be fuelled with wood. [7]

  9. Lead-bismuth eutectic - Wikipedia

    en.wikipedia.org/wiki/Lead-bismuth_eutectic

    Lead-bismuth alloys with between 30% and 75% bismuth all have melting points below 200 °C/392 °F. Alloys with between 48% and 63% bismuth have melting points below 150 °C/302 °F. [3] While lead expands slightly on melting and bismuth contracts slightly on melting, LBE has negligible change in volume on melting.